1442116 MURATA | Alldatasheet
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Technical content
Cat.No.C85E-2 Safety Certified Ceramic Capacitors/ High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
- All the products in this catalog comply with EU RoHS.
- EU RoHS is "the European Directive 2002/95/EC on the Restriction of the Use of Certain Hazardous Substances in Electrical and Electronic Equipment".
- For more details, please refer to our website 'Murata's Approach for EU RoHS' (http://www.murata.com/info/rohs.html). !Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. 1CONTENTS Part Numbering 2 Type KY (Basic Insulation) -IEC60384-14 Class X1, Y2- 4 Type KH (Basic Insulation) -IEC60384-14 Class X1, Y2- 6 Type KX Small Size (Reinforced Insulation) -IEC60384-14 Class X1, Y1- 8 Type KX (Reinforced Insulation) -IEC60384-14 Class X1, Y1- 10 Type KY/KH/KX Specifications and Test Methods 12 DEJ Series -Based on the Electrical Appliance and Material Safety Law of Japan- 16 DEJ Series Specifications and Test Methods 17 Safety Certified Ceramic Capacitors Characteristics Data (Typical Example) 20 Safety Certified Ceramic Capacitors Packaging 23 Safety Certified Ceramic Capacitors !Caution 25 Safety Certified Ceramic Capacitors Notice 28 DES Series (125 deg. C Guaranteed/Low-dissipation Factor/DC500V-1kV) 29 DES Series Specifications and Test Methods 31 DEH Series (125 deg. C Guaranteed/Low-dissipation Factor/DC250V-3.15kV) 33 DEH Series Specifications and Test Methods 36 DEA Series (125 deg. C Guaranteed/Class 1/DC1k-3.15kV) 39 DEA Series Specifications and Test Methods 42 DEB Series (Class 2/DC1k-3.15kV) 44 DEB Series Specifications and Test Methods 47 DEC Series (Class 1, 2/DC6.3kV) 49 DEC Series Specifications and Test Methods 51 DEF Series (Only for LCD Backlight Inverter Circuit/6.3kVp-p) 53 DEF Series Specifications and Test Methods 55 High Voltage Ceramic Capacitors Characteristics Data (Typical Example) 57 High Voltage Ceramic Capacitors Packaging 58 High Voltage Ceramic Capacitors !Caution 60 High Voltage Ceramic Capacitors Notice 68 Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors ISO9000 Certifications 69
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. o Part Numbering (Part Number) Safety Standard Certified Ceramic Capacitors tCapacitance Expressed by three figures. The unit is pico-farad (pF). The first and second figures are significant digits, and the third figure expresses the number of zeros which follow the two numbers. oIndividual Specification Code In case part number cannot be identified without "Individual Specification", it is added at the end of part number. Expressed by three-digit alphanumerics. In case of Electrical Appliance and Material Safety Law of Japan, first three digits (qProduct ID and wSeries Category) express "Series Name". In case of Safety Certified Capacitors, first three digits express product code. The following fourth figure expresses certified type shown in rSafety Standard Certified Type column. Vertical Crimp Long Vertical Crimp Long Vertical Crimp Short Straight Long Straight Short Vertical Crimp Taping Straight Taping t 102 y M q DE u r KH e w i A o qProduct ID wSeries Category eTemperature Characteristics rRated Voltage/Safety Standard Certified Type Code KH KY KX yCapacitance Tolerance Capacitance ToleranceCode J K M Z T5% T10% T20% W80%, Y20% ContentsOutlineCode J Cap.Change or Temp. Coeff. Temperature Range Temperature Characteristics Rated Voltage Code T10% W20%,Y55% W30%,Y80% W350 to Y1000ppm/D Y25 to W85D W20 to W85D B E F SL Safety Standard Certified AC250V (r.m.s.) IEC60384-14 Class X1, Y1 IEC60384-14 Class X1, Y2 "Products which are based on the Electrical Appliance and Material Safety Law of Japan" AC250V X1, Y2; AC250V, (Safety Standard Certified Type KH) X1, Y2; AC250V, (Safety Standard Certified Type KY) X1, Y1; AC250V, (Safety Standard Certified Type KX) Product ID DE Safety Standard Certified Ceramic Capacitors / High Voltage Ceramic Capacitors uLead Style Lead StyleCode Lead Spacing Pitch of ComponentsLead Diameter Dimensions (mm) 7.5 7.5 7.5 7.5 7.5 7.5 7.5 ø0.6 T0.05 ø0.6 W0.1,Y0.05 ø0.6 T0.05 ø0.6 W0.1, Y0.05 ø0.6 T0.05 ø0.6 T0.05 ø0.6 T0.05 ø0.6 W0.1, Y0.05 ø0.6 T0.05 ø0.6 T0.05 Y/CR Y/CR Y/CR Y/CR 12.7 25.4 25.4 iPackaging PackagingCode A B Ammo Pack Taping Type Bulk Type
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. (Part N um ber) High Voltage Ceramic Capacitors (250V-6.3kV) tCapacitance Expressed by three figures. The unit is pico-farad (pF). The first and second figures are significant digits, and the third figure expresses the number of zeros which follow the two numbers. oIndividual Specification Code In case part number cannot be identified without "Individual Specification", it is added at the end of part number. Expressed by three-digit alphanumerics. First three digits (qProduct ID and wSeries Category) express "Series Name". Vertical Crimp Long Vertical Crimp Short Straight Long Straight Short Vertical Crimp Taping Straight Taping t 102 y K q D E u N 2 r e B 3 w B i A o qProduct ID wSeries Category eTemperature Characteristics rRated Voltage Code LH yCapacitance Tolerance Capacitance ToleranceCode C D J K Z T0.25pF T0.5pF T5% T10% W80%, Y20%ContentsOutlineCode A B C H S F Cap. Change or Temp. Coeff. Temperature Range Temperature Characteristics Rated Voltage Code B 3 C 3 R 3 D 3 T10% W20%,Y55% W30%,Y80% T20% W15%,Y30% T15% W15%,Y30% W20%,Y30%/CR W350 to Y1000ppm/D/CR 0T60ppm/D Y25 to W85D Y25 to W85D W85 to W125D Y25 to W85D W85 to W125D Y25 to W125D/CR W20 to W85D/CR W20 to W85D B E F C R D SL CH High Voltage Class 1 (Char. SL) DC1-3.15kV Rated Class 2 DC1-3.15kV Rated Class 1, 2 DC6.3kV Rated High Temperature Guaranteed, Low-dissipation Factor (Char. R, C) High Temperature Guaranteed, Low-dissipation Factor (Char. D) LCD Backlight Inverter Circuit DC250V DC500V DC1kV DC2kV DC3.15kV DC6.3kV 6.3kVp-p Product ID D E High Voltage Ceramic Capacitors (250V-6.3kV) / Safety Standard Certified Ceramic Capacitors uLead Style Lead StyleCode A 2 A 3 A 4 B 2/J2 B 3/J3 B 4 C 1 C 3 C 4 C D D 1 D 3 D D N 2 N 3 N 7 Lead Spacing Pitch of ComponentsLead Diameter Dimensions (mm) 7.5 7.5 7.5 7.5 7.5 7.5 7.5 7.5 7.5 ø 0.6T0.05 ø 0.6T0.05 ø 0.5T0.05 ø 0.6T0.05 ø 0.5T0.05 ø 0.5T0.05 ø 0.6T0.05 ø 0.5T0.05 ø 0.6T0.05 ø 0.6T0.05 Y/CR Y/CR Y/CR Y/CR 12.7 12.7 iPackaging PackagingCode A B Ammo Pack Taping Type Bulk Type
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Type KY (Basic Insulation) -IEC60384-14 Class X1, Y2- ød F–1.0 (in mm) D max. 25.0 min. e T max. 3.0 max. Lead Code Coating Extension e A2, A3 Up to the end of crimp ød 0.6–0.05 [Bulk] Vertical Crimp Long (A2, A3) ød F–0.8 D max. e T max. 3.0 max. 5.0–1.0 (in mm) Lead Code Coating Extension e B2, B3 Up to the end of crimp ød 0.6–0.05 [Bulk] Vertical Crimp Short (B2, B3) Standard No. Rated VoltageCertified No. UL CSA VDE BSI SEMKO DEMKO FIMKO NEMKO ESTI NSW E37921 1283280 40006273 KM 37901 812168 314115 24197 P08209361 08.0710 6824 AC250V(r.m.s.) UL1414 E384-14 IEC 60384-14 EN 60384-14 EN 60065 (8.8, 14.2) IEC 60384-14 EN 60384-14 IEC 60384-14 EN 60384-14 IEC 60384-14 AS3250
- The certification number might change by the revision of the application standard and the change within the range of acquisition.
- Please contact us when the certification of Chinese Safety Standard or South Korean Safety Standard is necessary. n Marking t Manufactured Date Code Class Code X1Y2 Rated Voltage Mark 250~ e Capacitance Tolerance w Nominal Capacitance (Under 100pF: Actual value, 100pF and over: Marked with 3 figures) q Type Designation KY r Company Name Code : Made in Taiwan : Made in Thailand 472M KY250~ X1 Y2 865 q w e rt Example Item 8 15 n Features 1. We design capacitors in much more compact size than type KH, having reduced the diameter by 25% max. 2. Operating temperature range guaranteed up to 125 degrees (UL: 85 deg.). 3. Dielectric strength: AC2000V (In case of lead spacing F=5mm) AC2600V (In case of lead spacing F=7.5mm) 4. Class X1/Y2 capacitors which are certified by UL/CSA/VDE/BSI/SEMKO/DEMKO/FIMKO/NEMKO/ESTI/ NSW. 5. Coated with flame-retardant epoxy resin (conforming to UL94V-0 standard). 6. Cost-saving automatic insertion available. n Applications 1. Ideal for use as X/Y capacitors for AC line filter and primary-secondary coupling on switching power supplies and AC adapters. 2. Ideal for use on D-A isolation and noise absorption for DAA modems without transformers. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors n Standard Certification
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Lead Spacing F=7.5m m Part Number AC Rated Voltage (Vac) Temp. Char. Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping (1) D E21XK Y100JpppM 02 250 SL 10 –5% 8 max. 7.5 5.0 max. A3B B3B N3A D E21XK Y150JpppM 02 250 SL 15 –5% 8 max. 7.5 5.0 max. A3B B3B N3A D E21XK Y220JpppM 02 250 SL 22 –5% 8 max. 7.5 5.0 max. A3B B3B N3A D E21XK Y330JpppM 02 250 SL 33 –5% 8 max. 7.5 5.0 max. A3B B3B N3A D E21XK Y470JpppM 02 250 SL 47 –5% 8 max. 7.5 5.0 max. A3B B3B N3A D E21XK Y680JpppM 02 250 SL 68 –5% 8 max. 7.5 5.0 max. A3B B3B N3A D E2B 3K Y101K pppM 02 250 B 100 –10% 7 max. 7.5 5.0 max. A3B B3B N3A D E2B 3K Y151K pppM 02 250 B 150 –10% 7 max. 7.5 5.0 max. A3B B3B N3A D E2B 3K Y221K pppM 02 250 B 220 –10% 7 max. 7.5 5.0 max. A3B B3B N3A D E2B 3K Y331K pppM 02 250 B 330 –10% 7 max. 7.5 5.0 max. A3B B3B N3A D E2B 3K Y471K pppM 02 250 B 470 –10% 7 max. 7.5 5.0 max. A3B B3B N3A D E2B 3K Y681K pppM 02 250 B 680 –10% 8 max. 7.5 5.0 max. A3B B3B N3A D E2E3K Y102M pppM 02 250 E 1000 –20% 7 max. 7.5 5.0 max. A3B B3B N3A D E2E3K Y152M pppM 02 250 E 1500 –20% 7 max. 7.5 5.0 max. A3B B3B N3A D E2E3K Y222M pppM 02 250 E 2200 –20% 8 max. 7.5 5.0 max. A3B B3B N3A D E2E3K Y332M pppM 02 250 E 3300 –20% 9 max. 7.5 5.0 max. A3B B3B N3A D E2E3K Y472M pppM 02 250 E 4700 –20% 10 max. 7.5 5.0 max. A3B B3B N3A D E2F3K Y103M pppM 02 250 F 10000 –20% 14 max. 7.5 5.0 max. A3B B3B N3A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the 3 colum ns on the right for the appropriate code. Individual specification code "M 02" expresses "sim plicity m arking and guarantee of dielectric strength betw een lead w ires: AC 2600V". M urata part num bers m ight be changed depending on lead code or any other changes. Therefore, please specify only the type nam e (KY) and capacitance of products in the parts list w hen it is required for applying safety standard of electric equipm ent. Lead Spacing F=5m m Part Number AC Rated Voltage (Vac) Temp. Char. Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping (1) D E21XK Y100JpppM 01 250 SL 10 –5% 8 max. 5.0 5.0 max. A2B B2B N2A D E21XK Y150JpppM 01 250 SL 15 –5% 8 max. 5.0 5.0 max. A2B B2B N2A D E21XK Y220JpppM 01 250 SL 22 –5% 8 max. 5.0 5.0 max. A2B B2B N2A D E21XK Y330JpppM 01 250 SL 33 –5% 8 max. 5.0 5.0 max. A2B B2B N2A D E21XK Y470JpppM 01 250 SL 47 –5% 8 max. 5.0 5.0 max. A2B B2B N2A D E21XK Y680JpppM 01 250 SL 68 –5% 8 max. 5.0 5.0 max. A2B B2B N2A D E2B 3K Y101K pppM 01 250 B 100 –10% 7 max. 5.0 5.0 max. A2B B2B N2A D E2B 3K Y151K pppM 01 250 B 150 –10% 7 max. 5.0 5.0 max. A2B B2B N2A D E2B 3K Y221K pppM 01 250 B 220 –10% 7 max. 5.0 5.0 max. A2B B2B N2A D E2B 3K Y331K pppM 01 250 B 330 –10% 7 max. 5.0 5.0 max. A2B B2B N2A D E2B 3K Y471K pppM 01 250 B 470 –10% 7 max. 5.0 5.0 max. A2B B2B N2A D E2B 3K Y681K pppM 01 250 B 680 –10% 8 max. 5.0 5.0 max. A2B B2B N2A D E2E3K Y102M pppM 01 250 E 1000 –20% 7 max. 5.0 5.0 max. A2B B2B N2A D E2E3K Y152M pppM 01 250 E 1500 –20% 7 max. 5.0 5.0 max. A2B B2B N2A D E2E3K Y222M pppM 01 250 E 2200 –20% 8 max. 5.0 5.0 max. A2B B2B N2A D E2E3K Y332M pppM 01 250 E 3300 –20% 9 max. 5.0 5.0 max. A2B B2B N2A D E2E3K Y472M pppM 01 250 E 4700 –20% 10 max. 5.0 5.0 max. A2B B2B N2A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the 3 colum ns on the right for the appropriate code. Individual specification code "M 01" expresses "sim plicity m arking and guarantee of dielectric strength betw een lead w ires: AC 2000V". M urata part num bers m ight be changed depending on lead code or any other changes. Therefore, please specify only the type nam e (KY) and capacitance of products in the parts list w hen it is required for applying safety standard of electric equipm ent.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Type KH (Basic Insulation) -IEC60384-14 Class X1, Y2- ød F–1.0 (in mm) D max. 25.0 min. e T max. 3.0 max. Lead Code Coating Extension e A3 Up to the end of crimp ød 0.6–0.05 [Bulk] Vertical Crimp Long (A3) ød F–0.8 D max. e T max. 3.0 max. 5.0–1.0 (in mm) Lead Code Coating Extension e B3 Up to the end of crimp ød 0.6–0.05 [Bulk] Vertical Crimp Short (B3) Standard No. Rated VoltageCertified No. UL CSA VDE BSI SEMKO DEMKO FIMKO NEMKO ESTI NSW E37921 1343805 40002796 KM 37901 812163 314578 24195 P08209182 08.0708 6529 AC250V(r.m.s.) UL1414 E384-14 IEC 60384-14 EN 60384-14 EN 60065 (8.8, 14.2) IEC 60384-14 EN 60384-14 IEC 60384-14 EN 60384-14 IEC 60384-14 AS3250
- The certification number might change by the revision of the application standard and the change within the range of acquisition.
- Please contact us when the certification of Chinese Safety Standard or South Korean Safety Standard is necessary. n Marking q Type Designation w Nominal Capacitance (Marked with 3 figures) e Capacitance Tolerance r Company Name Code : Made in Taiwan : Made in Thailand t Manufactured Date Code UL Approval Mark CSA Approval Mark VDE Approval Mark BSI Approval Mark SEMKO Approval Mark DEMKO Approval Mark FIMKO Approval Mark NEMKO Approval Mark ESTI Approval Mark Class Code Rated Voltage Mark KH /CR /CR BSI X1Y2 250~ FI N D KH472M X1Y2 BSI q w e r t MJ502 250~ Example Item FI N MJ502 8 15 D n Features 1. Operating temperature range guaranteed up to 125 degrees (UL: 85 deg.). 2. Dielectric strength: AC2600V 3. Class X1/Y2 capacitors which are certified by UL/CSA/VDE/BSI/SEMKO/DEMKO/FIMKO/NEMKO/ESTI/ NSW. 4. Coated with flame-retardant epoxy resin (conforming to UL94V-0 standard). 5. Cost-saving automatic insertion available. n Applications Ideal for use as X/Y capacitors for AC line filter and primary-secondary coupling on switching power supplies and AC adapters. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors n Standard Certification
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Part Number AC Rated Voltage (Vac) Temp. Char. Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping (1) D E2B 3K H 101K ppp 250 B 100 –10% 8 max. 7.5 7.0 max. A3B B3B N3A D E2B 3K H 151K ppp 250 B 150 –10% 8 max. 7.5 7.0 max. A3B B3B N3A D E2B 3K H 221K ppp 250 B 220 –10% 8 max. 7.5 7.0 max. A3B B3B N3A D E2B 3K H 331K ppp 250 B 330 –10% 8 max. 7.5 7.0 max. A3B B3B N3A D E2B 3K H 471K ppp 250 B 470 –10% 8 max. 7.5 7.0 max. A3B B3B N3A D E2B 3K H 681K ppp 250 B 680 –10% 9 max. 7.5 7.0 max. A3B B3B N3A D E2E3K H 102M ppp 250 E 1000 –20% 8 max. 7.5 7.0 max. A3B B3B N3A D E2E3K H 152M ppp 250 E 1500 –20% 9 max. 7.5 7.0 max. A3B B3B N3A D E2E3K H 222M ppp 250 E 2200 –20% 10 max. 7.5 7.0 max. A3B B3B N3A D E2E3K H 332M ppp 250 E 3300 –20% 12 max. 7.5 7.0 max. A3B B3B N3A D E2E3K H 472M ppp 250 E 4700 –20% 13 max. 7.5 7.0 max. A3B B3B N3A D E2F3K H 103M ppp 250 F 10000 –20% 16 max. 7.5 7.0 max. A3B B3B N7A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the 3 colum ns on the right for the appropriate code. M urata part num bers m ight be changed depending on lead code or any other changes. Therefore, please specify only the type nam e (KH ) and capacitance of products in the parts list w hen it is required for applying safety standard of electric equipm ent.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Type KX Small Size (Reinforced Insulation) -IEC60384-14 Class X1, Y1- ød F–1.0 (in mm) D max. 25.0 min. e T max. 3.0 max. Lead Code Coating Extension e A4 Up to the end of crimp ød 0.6–0.05 [Bulk] Vertical Crimp Long (A4) ød F–0.8 D max. e T max. 3.0 max. 5.0–1.0 (in mm) Lead Code Coating Extension e B4 Up to the end of crimp ød 0.6–0.05 [Bulk] Vertical Crimp Short (B4) n Features 1. We design capacitors in much more compact size than current Type KX, having reduced the diameter by 20% max. 2. Operating temperature range guaranteed up to 125 degrees (UL: 85 deg.). 3. Dielectric strength: AC4000V 4. Class X1/Y1 capacitors which are certified by UL/CSA/VDE/BSI/SEMKO/DEMKO/FIMKO/NEMKO/ESTI/ IMQ. 5. Possible to use with a component in appliance requiring reinforced insulation and double insulation based on UL1492, IEC60065 and IEC60950. 6. Coated with flame-retardant epoxy resin (conforming to UL94V-0 standard). 7. Cost-saving automatic insertion available. n Applications 1. Ideal for use as X/Y capacitors for AC line filter and primary-secondary coupling on switching power supplies and AC adapters. 2. Ideal for use on D-A isolation and noise absorption for DAA modems without transformers. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. *: Small sized Type KX differs from current Type KX in electrical characteristics, such as the voltage dependency, of capacitance temperature dependecy, and Dielectric strength. Therefore, before replacing current Type KX, please make a performance check by equipment. Please refer below too. [Notice(Rating) item 2. "Performance Check by Equipment".] Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Part Number AC Rated Voltage (Vac) Temp. Char. Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping (1) D E1B 3K X101K pppL01 250 B 100 –10% 8 max. 10.0 7.0 max. A4B B4B N4A D E1B 3K X151K pppL01 250 B 150 –10% 8 max. 10.0 7.0 max. A4B B4B N4A D E1B 3K X221K pppL01 250 B 220 –10% 8 max. 10.0 7.0 max. A4B B4B N4A D E1B 3K X331K pppL01 250 B 330 –10% 8 max. 10.0 7.0 max. A4B B4B N4A D E1B 3K X471K pppL01 250 B 470 –10% 8 max. 10.0 7.0 max. A4B B4B N4A D E1B 3K X681K pppL01 250 B 680 –10% 9 max. 10.0 7.0 max. A4B B4B N4A D E1E3K X102M pppL01 250 E 1000 –20% 7 max. 10.0 7.0 max. A4B B4B N4A D E1E3K X152M pppL01 250 E 1500 –20% 8 max. 10.0 7.0 max. A4B B4B N4A D E1E3K X222M pppL01 250 E 2200 –20% 9 max. 10.0 7.0 max. A4B B4B N4A D E1E3K X332M pppL01 250 E 3300 –20% 10 max. 10.0 7.0 max. A4B B4B N4A D E1E3K X472M pppL01 250 E 4700 –20% 12 max. 10.0 7.0 max. A4B B4B N4A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the 3 colum ns on the right for the appropriate code. M urata part num bers m ight be changed depending on lead code or any other changes. Therefore, please specify only the type nam e (KX) and capacitance of products in the parts list w hen it is required for applying safety standard of electric equipm ent. n Standard Certification Standard No. Rated VoltageCertified No. UL CSA VDE BSI SEMKO DEMKO FIMKO NEMKO ESTI IMQ E37921 1343810 40002831 KM 37901 812158 314577 24191 P08209173 08.0707 V4069 AC250V(r.m.s.) UL1414 E384-14 IEC 60384-14 EN 60384-14 EN 60065 (8.8, 14.2) IEC 60384-14 EN 60384-14 IEC 60384-14 EN 60384-14 EN 60384-14
- The certification num ber m ight change by the revision of the application standard and the change w ithin the range of acquisition.
- Please contact us w hen the certification of C hinese Safety Standard or South Korean Safety Standard is necessary. n Marking t M anufactured D ate C ode C lass C ode X1Y1 R ated Voltage M ark 250~ e C apacitance Tolerance w N om inal C apacitance (M arked w ith 3 figures) q Type D esignation KX 472M KX250~ X1 Y1 865 q w e rt Example Item r C om pany N am e C ode : M ade in Taiw an : M ade in Thailand8 15
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Type K X (R einforced Insulation) -IEC 60384-14 C lass X1, Y1- ød F–1.0 (in m m ) D m ax. 25.0 m in. e T m ax. 4.0 m ax. Lead Code Coating Extension e A5 U p to the end of crim p ø d 0.6–0.1 0.05 [Bulk] Vertical Crimp Long (A5) ød F–0.8 D m ax. e T m ax. 4.0 m ax. 5.0–1.0 (in m m ) Lead Code Coating Extension e B5 U p to the end of crim p ø d 0.6–0.1 0.05 [Bulk] Vertical Crimp Short (B5) Standard No. Rated VoltageCertified No. UL CSA VDE BSI SEMKO DEMKO FIMKO NEMKO ESTI IMQ E37921 1343810 40002831 KM 37901 812158 314577 24191 P08209173 08.0707 V4069 AC250V(r.m.s.) UL1414 E384-14 IEC 60384-14 EN 60384-14 EN 60065 (8.8, 14.2) IEC 60384-14 EN 60384-14 IEC 60384-14 EN 60384-14 EN 60384-14
- The certification num ber m ight change by the revision of the application standard and the change w ithin the range of acquisition.
- Please contact us w hen the certification of C hinese Safety Standard or South Korean Safety Standard is necessary. n Marking FI N D FI N D K X222M X1Y1 B SI q w e r t M J502 250~ Example Item M J502 q Type D esignation w N om inal C apacitance (U nder 100pF: Actual value, 100pF and over: M arked w ith 3 figures) e C apacitance Tolerance r C om pany N am e C ode : M ade in Taiw an : M ade in Thailand t M anufactured D ate C ode U L Approval M ark C SA Approval M ark VD E Approval M ark BSI Approval M ark SEM KO Approval M ark D EM KO Approval M ark FIM KO Approval M ark N EM KO Approval M ark ESTI Approval M ark IM Q Approval M ark C lass C ode R ated Voltage M ark KX BSI X1Y1 250~ 8 15 n Features 1. O perating tem perature range guaranteed up to 125 degrees (U L: 85 deg.). 2. D ielectric strength: AC 4000V 3. C lass X1/Y1 capacitors w hich are certified by U L/C SA/VD E/BSI/SEM KO /D EM KO /FIM KO /N EM KO /ESTI/ IM Q . 4. Possible to use w ith a com ponent in appliance requiring reinforced insulation and double insulation based on U L1492, IEC 60065 and IEC 60950. 5. C oated w ith flam e-retardant epoxy resin (conform ing to U L94V-0 standard). 6. C ost-saving autom atic insertion available. n Applications Ideal for use as X/Y capacitors for AC line filter and prim ary-secondary coupling on sw itching pow er supplies and AC adapters. D o not use these products in any Autom otive Pow er train or Safety equipm ent including Battery charger for Electric Vehicles and Plug-in H ybrid. O nly M urata products clearly stipulated as "for Autom otive use" on its catalog can be used for autom obile applications such as Pow er train and Safety equipm ent. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors n Standard Certification
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Part Number AC Rated Voltage (Vac) Temp. Char. Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping (1) D E11XK X100Jppp 250 SL 10 –5% 9 max. 10.0 8.0 max. A5B B5B N5A D E11XK X150Jppp 250 SL 15 –5% 9 max. 10.0 8.0 max. A5B B5B N5A D E11XK X220Jppp 250 SL 22 –5% 9 max. 10.0 8.0 max. A5B B5B N5A D E11XK X330Jppp 250 SL 33 –5% 9 max. 10.0 8.0 max. A5B B5B N5A D E11XK X470Jppp 250 SL 47 –5% 9 max. 10.0 8.0 max. A5B B5B N5A D E11XK X680Jppp 250 SL 68 –5% 9 max. 10.0 8.0 max. A5B B5B N5A D E1B 3K X101K ppp 250 B 100 –10% 9 max. 10.0 8.0 max. A5B B5B N5A D E1B 3K X151K ppp 250 B 150 –10% 9 max. 10.0 8.0 max. A5B B5B N5A D E1B 3K X221K ppp 250 B 220 –10% 9 max. 10.0 8.0 max. A5B B5B N5A D E1B 3K X331K ppp 250 B 330 –10% 9 max. 10.0 8.0 max. A5B B5B N5A D E1B 3K X471K ppp 250 B 470 –10% 9 max. 10.0 8.0 max. A5B B5B N5A D E1B 3K X681K ppp 250 B 680 –10% 10 max. 10.0 8.0 max. A5B B5B N5A D E1E3K X102M pppA 01 250 E 1000 –20% 8 max. 10.0 8.0 max. A5B B5B N5A D E1E3K X152M pppA 01 250 E 1500 –20% 9 max. 10.0 8.0 max. A5B B5B N5A D E1E3K X222M pppA 01 250 E 2200 –20% 10 max. 10.0 8.0 max. A5B B5B N5A D E1E3K X332M pppA 01 250 E 3300 –20% 12 max. 10.0 8.0 max. A5B B5B N5A D E1E3K X392M pppA 01 250 E 3900 –20% 13 max. 10.0 8.0 max. A5B B5B N5A D E1E3K X472M pppA 01 250 E 4700 –20% 15 max. 10.0 8.0 max. A5B B5B N5A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the 3 colum ns on the right for the appropriate code. M urata part num bers m ight be changed depending on lead code or any other changes. Therefore, please specify only the type nam e (KX) and capacitance of products in the parts list w hen it is required for applying safety standard of electric equipm ent.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
Specifications and Test M ethods No. Item Specifications Test Method To be easily legible 10000M Ω min. No marked defect on appearance form and dimensions are within specified range.Appearance and Dimensions Marking Insulation Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V within 60±5 sec. of charging. The voltage should be applied to the capacitor through a resistor of 1MΩ . The capacitor should be visually inspected. The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. Within specified toleranceCapacitance3 Dissipation Factor (D.F.) The capacitance, dissipation factor and Q should be measured max. No failure Dielectric Strength Between Lead Wires The capacitor should not be damaged when test voltages of Table 1 are applied between the lead wires for 60 sec. No failureBody Insulation First, the terminals of the capacitor should be connected together. Then, as shown in figure at right, a metal foil should be closely wrapped around the body of the capacitor to the distance of about 3 to 4mm from each terminal. Then, the capacitor should be inserted into a container filled with metal balls of about 1mm diameter. Finally, AC voltage of Table 2 is applied for 60 sec. between the capacitor lead wires and metal balls. (Temp. range: -25 to +85°C) (Temp. range: +20 to +85°C) Temperature Characteristics7 The capacitance measurement should be made at each step specified in Table 3. Char. B, E F SL D.F.V2.5% D.F.V5.0% Q U400+20C *1 (CF30pF) Q U1000 (CU30pF) Specifications Step 20±2 -25±2 20±2 85±2 20±2 Temperature (ºC) M etal Foil about 3 to 4m m M etal Balls <Table 3> <Table 1> Apply to Type KY/KH/KX Operating Temperature Range: -25 to +125° C (-25 to +85° C in case of the standard of UL) Type KY KH KX In case of lead spacing F=5mm AC2000V(r.m.s.) In case of lead spacing F=7.5mm AC2600V(r.m.s.) AC2600V(r.m.s.) AC4000V(r.m.s.) Test Voltage <Table 2> Type KY KH KX AC2600V(r.m.s.) AC2600V(r.m.s.) AC4000V(r.m.s.) Test Voltage Char. B E F Within ±10% Within +20 -55% Within +30 -80% Capacitance Change Char. SL +350 to -1000ppm/°C Temperature Coefficient The lead wire of a capacitor should be dipped into molten solder for 2±0.5 sec. The depth of immersion is up to about 1.5 to 2.0mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Solderability of Leads Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. C ontinued on the follow ing page. *1 "C" expresses nominal capacitance value (pF). Type K Y/K H /K X Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method C ontinued from the preceding page. C ontinued on the follow ing page. *1 "C" expresses nominal capacitance value (pF). *2 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa Vibration Resistance Specifications and Test M ethods The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. Appearance No marked defect Capacitance Within the specified tolerance D.F. Q Char. B, E F SL D.F.V2.5% D.F.V5.0% Q U400+20C *1 (CF30pF) Q U1000 (CU30pF) Specifications Humidity (Under Steady State) Appearance Capacitance Change D.F. Q I.R. 3000M Ω min. Dielectric Strength Per Item 6 No marked defect Set the capacitor for 500±12 hrs. at 40±2°C in 90 to 95% relative humidity. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*2. Char. B E, F SL Within ±10% Within ±15% Within ± 5% Capacitance Change Char. B, E F SL D.F.V5.0% D.F.V7.5% Q U275+5/2C*1 (CF30pF) Q U350 (CU30pF) Specifications No marked defect Humidity Loading Appearance Apply the rated voltage for 500±12 hrs. at 40±2°C in 90 to 95% relative humidity. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition* Capacitance Change D.F. Q I.R. 3000M Ω min. Dielectric Strength Per Item 6 Char. B E, F SL Within ±10% Within ±15% Within ± 5% Capacitance Change Char. B, E F SL D.F.V5.0% D.F.V7.5% Q U275+5/2C*1 (CF30pF) Q U350 (CU30pF) Specifications As shown in figure, the lead wires should be immersed in solder of 350±10°C or 260±5°C up to 1.5 to 2.0mm from the root of terminal for 3.5±0.5 sec. (10±1 sec. for 260±5°C). Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* 2 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*2. Soldering Effect (Non-Preheat) Appearance No marked defect Capacitance Change Within ±10% I.R. 1000M Ω min. Dielectric Strength Per Item 6 /,/,/, /,/,/,/, /,/,/,/,/,/, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* 2 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*2. Soldering Effect (On-Preheat) Appearance No marked defect Capacitance Change Within ±10% I.R. 1000M Ω min. Dielectric Strength Per Item 6 /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder Type K Y/K H /K X Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
Specifications and Test M ethods No. Item Specifications Test Method C ontinued from the preceding page. The capacitor flame discontinues as follows. Flame Test15 The capacitor should be subjected to applied flame for 15 sec. and then removed for 15 sec. until 5 cycles are completed. (in mm) C apacitor Flam e76 20° 38 127 G as Burner: Inside D ia. 9.5 Cycle 1 to 4 30 max. 60 max. Time (sec.) The cheese-cloth should not be on fire.Active Flammability17 The capacitor should be individually wrapped in at least one but not more than two complete layers of cheesecloth. The capacitor should be subjected to 20 discharges. The interval between successive discharges should be 5 sec. The U AC should be maintained for 2 min. after the last discharge. C 1,2 : 1µF±10% C 3 : 0.033µF±5% 10kV L1 to 4: 1.5mH±20% 16A Rod core choke C t : 3µF±5% 10kV R : 100Ω ±2% C x : Capacitor under testU AC : UR ±5% F : Fuse, Rated 10A U R : Rated Voltage U t : Voltage applied to Ct U tC tC xC 3C 2 L2 R C 1 S2Tr U AC F O scilloscope U x 5kV tim e Lead wire should not be cut off. Capacitor should not be broken. Robustness of Terminations Tensile Bending As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N and keep it for 10±1 sec. Each lead wire should be subjected to 5N weight and then a 90°bend, at the point of egress, in one direction, return to original position, and then apply a 90°bend in the opposite direction at the rate of one bend in 2 to 3 sec. W Life14 Impulse Voltage Each individual capacitor should be subjected to a 5kV (Type KX: 8kV) impulses for three times. After the capacitors are applied to life test. Apply a voltage of Table 4 for 1000 hrs. at 125+2/-0°C, and relative humidity of 50% max. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition* Front time (T1) =1.2µs=1.67T Time to half-value (T2) =50µs T 100 (% ) t AC425V(r.m.s.), except that once each hour the voltage Applied Voltage <Table 4> No marked defectAppearance Capacitance Change Within ±20% I.R. 3000M Ω min. Dielectric Strength Per Item 6 *2 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa C ontinued on the follow ing page. Type K Y/K H /K X Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
Specifications and Test M ethods No. Item Specifications Test Method C ontinued from the preceding page. No marked defectAppearance The capacitor should be subjected to 5 temperature cycles, then consecutively to 2 immersion cycles. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition*2 for 24±2 hrs. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*2. Capacitance Change Step -25+0/-3 Room temp. 125+3/-0 Room temp. Temperature (ºC) Time (min) <Temperature Cycle> Step 65+5/-0 0±3 Temperature (ºC) Time (min) Clean water Salt water Immersion Water <Immersion Cycle> Cycle time: 5 cycle Cycle time: 2 cycle *1 "C" expresses nominal capacitance value (pF). *2 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa Temperature and Immersion Cycle D.F. Q I.R. 3000M Ω min. Dielectric Strength Per Item 6 Char. B E, F SL Within ±10% Within ±20% Within ± 5% Capacitance Change Char. B, E F SL D.F.V5.0% D.F.V7.5% Q U275+5/2C*1 (CF30pF) Q U350 (CU30pF) Specifications The burning time should not exceed 30 sec. The tissue paper should not ignite.Passive Flammability18 The capacitor under test should be held in the flame in the position which best promotes burning. Each specimen should only be exposed once to the flame. Time of exposure to flame: 30 sec. Length of flame: 12±1mm Gas burner : Length 35mm min. Inside Dia.0.5±0.1mm Outside Dia.0.9mm max. Gas : Butane gas Purity 95% min. About 8m m 200T5m m Test Specim en Tissue About 10m m Thick Board 45° Type K Y/K H /K X Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. DEJ Series -Based on the Electrical Appliance and Material Safety Law of Japan- Lead Code Coating Extension e Up to the end of crimp 3.0 max. (in mm) ø d 0.6–0.05 0.6–0.05 Style Fig. 1 Fig. 2 D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 25.0 min. e ø d 25.0 min. F–1.0 [Bulk] Vertical Crimp Long (A3) Straight Long (C3) n Marking Temp. Char. Nominal Body Diameter Manufactured Date Code Abbreviation E, F Manufacturer's Identification Rated Voltage Marked with code Capacitance Tolerance Marked with code Nominal Capacitance ø9-11mm ø7-8mm Marked with 3 figures 102Z 250~ Marked with (omitted for nominal body diameter ø8mm and under) 332Z 250~ D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 5.0–1.0 F–0.8 e ø d 5.0–1.0 Lead Code Coating Extension e Up to the end of crimp 3.0 max. (in mm) ø d 0.6–0.05 0.6–0.05 Style Fig. 1 Fig. 2 [Bulk] Vertical Crimp Short (B3) Straight Short (D3) Part Number AC Rated Voltage (Vac) Temp. Char. Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping (1) Lead Package Taping (2) DEJE3E2102Z ppp 250 E 1000 +80/-20% 7 max. 7.5 4.0 max. C3B D3B N2A P3A DEJE3E2222Z ppp 250 E 2200 +80/-20% 8 max. 7.5 4.0 max. A3B B3B N2A N3A DEJE3E2332Z ppp 250 E 3300 +80/-20% 9 max. 7.5 4.0 max. A3B B3B N2A N3A DEJE3E2472Z ppp 250 E 4700 +80/-20% 11 max. 7.5 4.0 max. A3B B3B N2A N3A DEJF3E2472Z ppp 250 F 4700 +80/-20% 8 max. 7.5 4.0 max. A3B B3B N2A N3A DEJF3E2103Z ppp 250 F 10000 +80/-20% 11 max. 7.5 4.0 max. A3B B3B N2A N3A Three blank columns are filled with the lead and packaging codes. Please refer to the 3 columns on the right for the appropriate code. Taping (1): Lead spacing F=5.0mm, Taping (2): Lead spacing F=7.5mm. n Features 1. Coated with flame-retardant epoxy resin (conforming to UL94V-0 standard). 2. Cost-saving automatic insertion available. 3. This type is based on the electrical appliance and material safety law of Japan (separated table 4). n Applications Ideal for use on AC line filter and primary-secondary coupling for switching power supplies and AC adapters. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
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No. Item Specifications Test Method To be easily legible 10000M Ω min. No marked defect on appearance form and dimensions are within specified range.Appearance and Dimensions Marking Insulation Resistance (I.R.)
5 The insulation resistance should be measured with
DC500 ±50V within 60±5 sec. of charging. The capacitor should be visually inspected. The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. Within specified toleranceCapacitance3 The capacitance should be measured at 20˚C with 1±0.1kHz and AC5V(r.m.s.) max. Dissipation Factor (D.F.)4 The dissipation factor should be measured at 20˚C with No failure Dielectric Strength Between Lead Wires The capacitor should not be damaged when AC1500V(r.m.s.) are applied between the lead wires for 60 sec. No failureBody Insulation First, the terminals of the capacitor should be connected together. Then, as shown in figure at right, the capacitor should be immersed into 10% salt solution up to a position of about 3 to 4mm apart from the terminals. Finally, AC1500V(r.m.s.) is applied for 60 sec. between the capacitor lead wires and electrode plate. Temperature Characteristics7 The capacitance measurement should be made at each step specified in Table 1. No marked defect 1000M Ω min. Per Item 6 Discharge Test Appearance I.R. Dielectric Strength As in Figure 1, discharge is made 50 times at 5 sec. intervals from the capacitor (Cd) charged at DC voltage of specified. Ct: Capacitor under test R 2: 100MΩ S: High-voltage switch R 3: Surge resistance R 1: 1000Ω Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. Solderability of Leads9 The lead wire of a capacitor should be dipped into molten solder for 2±0.5 sec. The depth of immersion is up to about 1.5 to 2.0mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C C ontinued on the follow ing page. Char. E F D.F.V2.5% D.F.V5.0% Specifications Char. E F Within +20 -55% Within +30 -80% Capacitance Change Step 20±2 -25±2 20±2 85±2 20±2 Temperature (ºC) About 3 to 4m m Electrode Plate 10% Salt Solution Vs R 3 R 1 R 2 S C d C t <Table 1> Cd Vs 0.001µF DC10kV Fig.1 ! Apply to DEJ Series (Products which are based on the electrical appliance and material safety law of Japan) Operating Temperature Range: -25 to +85° C D EJ Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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No. Item Specifications Test Method The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. C ontinued from the preceding page. C ontinued on the follow ing page. Vibration Resistance Appearance Capacitance D.F. No marked defect
13 The capacitor should be immersed into a isopropyl alcohol for
30±5 sec. Solvent Resistance Appearance No marked defect Within the specified tolerance Char. E F D.F.V2.5% D.F.V5.0% Specifications Set the capacitor for 500±12 hrs. at 40±2˚C in 90 to 95% relative humidity. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Humidity (Under Steady State) Appearance No marked defect Capacitance Change *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa D.F. I.R. 1000M Ω min. Dielectric Strength Per Item 6 Char. E F Within ±20% Within ±30% Capacitance Change Char. E F D.F.V5.0% D.F.V7.5% Specifications The capacitor should be subjected to 40±2˚C, relative humidity of 90 to 98% for 8 hrs., and then removed in room temperature for 16 hrs. until 5 cycles. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Humidity Insulation Appearance No marked defect Capacitance Change D.F. I.R. 1000M Ω min. Dielectric Strength Per Item 6 Char. E F Within ±20% Within ±30% Capacitance Change Char. E F D.F.V5.0% D.F.V7.5% Specifications Per Item 6 Soldering Effect (Non-Preheat) Appearance I.R. Dielectric Strength As shown in figure, the lead wires should be immersed in solder of 350±10˚C up to 1.5 to 2.0mm from the root of terminal for 3.5±0.5 sec. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition* No marked defect 1000M Ω min. /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder Per Item 6 Soldering Effect (On-Preheat) Appearance I.R. Dielectric Strength First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition* No marked defect 1000M Ω min. /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder D EJ Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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No. Item Specifications Test Method Lead wire should not be cut off. Capacitor should not be broken. Robustness of Terminations Tensile Bending As shown in figure at right, fix the body of capacitor, apply a tensile weight gradually to each lead wire in the radial direction of capacitor up to 10N and keep it for 10±1 sec. Each lead wire should be subjected to 5N weight and then a 90°bend, at the point of egress, in one direction, return to original position, and then apply a 90°bend in the opposite direction at the rate of one bend in 2 to 3 sec. C ontinued from the preceding page. No marked defect Temperature and Immersion Cycle Appearance The capacitor should be subjected to 5 temperature cycles, then consecutively to 2 immersion cycles. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition*1 for 24±2 hrs. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*1. W Capacitance Change D.F. I.R. 1000M Ω min. Dielectric Strength Per Item 6 Char. E F Within ±20% Within ±30% Capacitance Change Char. E F D.F.V5.0% D.F.V7.5% Specifications Step -25+0/-3 Room temp. 85+3/-0 Room temp. Temperature (ºC) Time (min) <Temperature Cycle> Step 65+5/-0 0±3 Temperature (ºC) Time (min) Clean water Salt water Immersion Water <Immersion Cycle> Cycle time: 5 cycle Cycle time: 2 cycle *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa Apply a voltage of Table 2 for 1500 hrs. at 85±2˚C, relative humidity 50% max. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*1. Life Appearance No marked defect Capacitance Change The capacitor should be subjected to applied flame for 15 sec. and then removed for 15 sec. until 3 cycles are completed.Flame Test The capacitor flame discontinued as follows. I.R. 1000M Ω min. Dielectric Strength Per Item 6 Char. E F Within ±20% Within ±30% Capacitance Change Cycle 1 to 2 15 max. 60 max. Time (sec.) AC500V(r.m.s.), except that once each hour the voltage Applied Voltage <Table 2> C apacitor Flam e76 20° 38 127 (in mm)Gas Burner: Inside Dia. 9.5 Apply the rated voltage for 500±12 hrs. at 40±2˚C in 90 to 95% relative humidity. Pre-treatment: Capacitor should be stored at 85±2˚C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Humidity Loading Appearance No marked defect Capacitance Change D.F. I.R. 1000M Ω min. Dielectric Strength Per Item 6 Char. E F Within ±20% Within ±30% Capacitance Change Char. E F D.F.V5.0% D.F.V7.5% Specifications D EJ Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n Capacitance - Temperature Characteristics B B E Temperature (°C) -40 -20 -40 -60 -80 -100 -20 0 20 40 60 80 100 120 140 Cap. Change (%)E F F SL SL n Insertion Loss - Frequency Characteristics Type KY 1 10 100 1000 Frequency (MHz) Insertion Loss (dB) Type KY Signal power: 1mW AC240V(r.m.s.) / 60Hz is applied on the capacitor. (1) DE2B3KY101KA2BM01 (2) DE2B3KY221KA2BM01 (3) DE2B3KY471KA2BM01 (4) DE2E3KY102MA2BM01 (5) DE2E3KY222MA2BM01 (6) DE2E3KY472MA2BM01 (7) DE2F3KY103MA3BM02 (6) (7) (5) (4) (3) (2) (1) Type KH 1 10 100 1000 Frequency (MHz) Insertion Loss (dB) Type KH Signal power: 1mW AC240V(r.m.s.) / 60Hz is applied on the capacitor. (1) DE2B3KH101KA3B (2) DE2B3KH221KA3B (3) DE2B3KH471KA3B (4) DE2E3KH102MA3B (5) DE2E3KH222MA3B (6) DE2E3KH472MA3B (7) DE2F3KH103MA3B (7) (6) (5)(4)(3) (2) (1) Type KX Small Size 1 10 100 1000 Frequency (MHz) Insertion Loss (dB) Type KX Small Size Signal power: 1mW AC240V(r.m.s.) / 60Hz is applied on the capacitor. (1) DE1B3KX101KA4BL01 (2) DE1B3KX221KA4BL01 (3) DE1B3KX471KA4BL01 (4) DE1E3KX102MA4BL01 (5) DE1E3KX222MA4BL01 (6) DE1E3KX472MA4BL01 (6) (5) (4) (3) (1) (2) Type KX 1 10 100 1000 Frequency (MHz) Insertion Loss (dB) Type KX Signal power: 1mW AC240V(r.m.s.) / 60Hz is applied on the capacitor. (1) DE1B3KX101KA5B (2) DE1B3KX221KA5B (3) DE1B3KX471KA5B (4) DE1E3KX102MA5BA01 (5) DE1E3KX222MA5BA01 (6) DE1E3KX472MA5BA01 (6) (5) (4)(3) (2) (1) Safety Certified Ceramic Capacitors Characteristics Data (Typical Example)
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!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n Leakage Current Characteristics 1.0 AC voltage : 60H z Tem perature : 25°C Type KY (B char.) 0.8 0.6 0.4 0.2 0.0 0 1000 2000 3000 AC voltage [V(r.m .s.)] Leakage current [m A(r.m .s.)] DE2B3KY471KA2BM 01 D E2B3KY221KA2BM 01 D E2B3KY101KA2BM 01 Type KY (E,F char.) 0.0 1.0 2.0 3.0 4.0 5.0 6.0 0 1000 2000 3000 AC voltage [V(r.m .s.)] AC voltage : 60H z Tem perature : 25°C DE2F3KY103M A3BM 02 D E2E3KY472M A2BM 01 D E2E3KY222M A2BM 01 D E2E3KY102M A2BM 01 Leakage current [m A(r.m .s.)] 1.0 6.0 5.0 4.0 3.0 2.0 1.0 0.0 AC voltage : 60H z Tem perature : 25°C AC voltage : 60H z Tem perature : 25°C Type KH (B char.) Type KH (E, F char.) 0.8 0.6 0.4 0.2 0.0 0 1000 2000 3000 0 1000 2000 3000 Leakage current [m A(r.m .s.)] Leakage current [m A(r.m .s.)] DE2B3KH471KA3B DE2B3KH221KA3B D E2B3KH 101KA3B DE2F3KH103M A3B D E2E3KH 472M A3B D E2E3KH 222M A3B D E2E3KH 102M A3B 0 1000 2000 3000 4000 1.0 0.8 0.6 0.4 0.2 0.0 0 1000 2000 3000 4000 AC voltage : 60H z Tem perature : 25°C AC voltage : 60H z Tem perature : 25°C Type KX Sm all Size (B char.) Type KX Sm all Size (E char.) Leakage current [m A(r.m .s.)] Leakage current [m A(r.m .s.)] 4.0 3.0 2.0 1.0 0.0 D E1B3KX101KA4BL01 DE1B3KX221KA4BL01 D E1B3KX471KA4BL01 D E1E3KX102M A4BL01 D E1E3KX222M A4BL01 D E1E3KX472M A4BL01 Continued on the following page. Safety C ertified C eram ic C apacitors C haracteristics D ata (Typical Exam ple)
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!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Continued from the preceding page. 6.0 5.0 4.0 3.0 2.0 1.0 0.0 0 1000 2000 3000 4000 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0 1000 2000 3000 4000 AC voltage : 60H z Tem perature : 25°C AC voltage : 60H z Tem perature : 25°C Type KX (B char.) Type KX (E char.) Leakage current [m A(r.m .s.)] Leakage current [m A(r.m .s.)] DE1B3KX471KA5B DE1B3KX221KA5B D E1B3KX101KA5B DE1E3KX472M A5BA01 D E1E3KX222M A5BA01 D E1E3KX102M A5BA01 Safety C ertified C eram ic C apacitors C haracteristics D ata (Typical Exam ple)
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Length from hole center to component center Length from hole center to lead Body diameter Deviation along tape, left or right Carrier tape width Position of sprocket hole Lead distance between reference and bottom planes Protrusion length Diameter of sprocket hole Lead diameter Total tape thickness Total thickness, tape and lead wire Body thickness Portion to cut in case of defect Hold down tape width Hold down tape position Coating extension on lead Deviation across tape, front Deviation across tape, rear P F D W W 1 H 0 H r øD 0 ød T L W 0 W 2 e ∆h1 ∆h2 12.7 12.7–0.3 5.0 6.35–1.3 3.85–0.7 15.0 15.0–0.3 7.5–1.0 7.5–1.5 3.75–1.0 15.0 15.0–0.3 7.5–1.0 7.5–1.5 3.75–1.0 0–2.00–1.0 30.0 15.0–0.3 7.5–1.0 7.5–1.5 3.75–1.0 See the individual product specifications. 18.0–0.5 9.0–0.5 +0.5 to -1.0 4.0–0.1 0.6–0.3 1.5 m ax. See the individual product specifications. 11.0 11.5 m in. 1.5–1.5 20.0 25.4 12.7–0.3 10.0–1.0 7.7–1.5 2.0 m ax.1.0 m ax. (in m m ) N2 N3 P3 N7 N4 N5Code +0.8 –0.2 +1.5 –1.0 18.0 –+2.0 –0 18.0 +2.0 –1.0 12.7m m pitch / lead spacing 5m m taping Vertical crim p type (Lead C ode: N 2) 15m m pitch / lead spacing 7.5m m taping Vertical crim p type (Lead C ode: N 3) 0.6–0.05 30m m pitch / lead spacing 7.5m m taping Vertical crim p type (Lead C ode: N 7) 25.4m m pitch / lead spacing 10.0m m taping Vertical crim p type (Lead C ode: N 4, N 5) L P D F ød øD 0R W 0 W 1 W e W 2 H 0 L P D ∆S F ød øD 0R W 0 W 1 W H 0 e W 2 L P D ∆S F ød øD 0R W 0 W 2 W 1 W e H 0 15m m pitch / lead spacing 7.5m m taping Straight type (Lead C ode: P3) L P D ∆S F ød øD 0R W 0 W 2 W 1 W e H L P D F ød øD 0 R W 0 W 1 W e W 2 H 0 T m ax. ∆h1 ∆h2O M arked side t2 t1 0.6 +0.1 –0.05 C ontinued on the follow ing page. U p to the end of crim p U p to the end of crim p 3.0 m ax. Lead C ode N 2, N 3, N 4, N 7 4.0 m ax. Lead C ode N 5 Lead C ode H 0 H 0 Taping Specifications 3.0 m ax. !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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[Bulk] 1,000 pcs. [Taping] “M inim um Q uantity” m eans the num bers of units of each delivery or order. The quantity should be an integral m ultiple of the “m inim um quantity”. (In case of bulk packaging, m inim um quantities differ from packing quantities in a bulk bag.) TapingBulk Polyethylene Bag Am m o Pack Minimum Quantity (Order in Sets Only) Minimum Order Quantity C ontinued from the preceding page. Lead Code Type KY N 2 N 3, P3 N 7 N 4, N 5 1,000 900 Type KH 900 400 Type KX 500 DEJ Series 1,500 1,000 [Bulk] 3,000 pcs. [Taping] Lead Code Type KY N 2 N 3, P3 N 7 N 4, N 5 3,000 2,700 Type KH 2,700 2,000 Type KX 2,000 DEJ Series 3,000 3,000 (pcs.) (pcs.) Packaging Styles !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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W hen D C -rated capacitors are to be used in AC or ripple current circuits, be sure to m aintain the Vp-p value of the applied voltage or the Vo-p w hich contains D C bias w ithin the rated voltage range. W hen the voltage is applied to the circuit, starting or stopping m ay generate irregular voltage for a transit period because of resonance or sw itching. Be sure to use a capacitor w ith a rated voltage range that includes these irregular voltages. Voltage Positional Measurement DC Voltage DC+AC Voltage AC Voltage Pulse Voltage (1) Pulse Voltage (2) V0-p V0-p Vp-p Vp-p Vp-p 1. Operating Voltage Keep the surface tem perature of a capacitor below the upper lim it of its rated operating tem perature range. Be sure to take into account the heat generated by the capacitor itself. W hen the capacitor is used in a high- frequency current, pulse current or sim ilar current, it m ay have self-generated heat due to dielectric loss. Applied voltage load should be such that self-generated heat is w ithin 20°C under the condition w here the capacitor is subjected to an atm osphere tem perature of 25°C . W hen m easuring, use a therm ocouple of sm all therm al capacity-K of ø0.1m m under conditions w here the capacitor is not affected by radiant heat from other com ponents or w ind from surroundings. Excessive heat m ay lead to deterioration of the capacitor's characteristics and reliability. (N ever attem pt to perform m easurem ent w ith the cooling fan running. O therw ise, accurate m easurem ent cannot be ensured.) 2. Operating Temperature and Self-generated Heat (Apply to B/E/F Char.) Test equipm ent for AC w ithstanding voltage should be used w ith the perform ance of the w ave sim ilar to 50/60H z sine w ave. If the distorted sine w ave or overload exceeding the specified voltage value is applied, a defect m ay be caused. 3. Test Condition for Withstanding Voltage (1) Test Equipm ent Continued on the following page. n !Caution (Rating) !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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Continued from the preceding page. W hen the w ithstanding voltage is applied, capacitor's lead or term inal should be firm ly connected to the output of the w ithstanding voltage test equipm ent, and then the voltage should be raised from near zero to the test voltage. If the test voltage w ithout the raise from near zero voltage w ould be applied directly to capacitor, test voltage should be applied w ith the zero cross*. At the end of the test tim e, the test voltage should be reduced to near zero, and then capacitor's lead or term inal should be taken off the output of the w ithstanding voltage test equipm ent. If the test voltage w ithout the raise from near zero voltage w ould be applied directly to capacitor, the surge voltage m ay arise, and therefore, a defect m ay be caused. *ZER O C R O SS is the point w here voltage sine w ave passes 0V. See figure at right. (2) Voltage Applied M ethod zero cross Voltage sine w ave W hen capacitor is broken, failure m ay result in a short circuit. Be sure to provide an appropriate fail-safe function like a fuse on your product if failure could result in an electric shock, fire or fum ing. FAILURE TO FOLLOW THE ABOVE CAUTIONS MAY RESULT, WORST CASE, IN A SHORT CIRCUIT AND CAUSE FUMING OR PARTIAL DISPERSION WHEN THE PRODUCT IS USED. 4. Fail-Safe !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n !Caution (Storage and Operating Condition) O perating and Storage Environm ent The insulating coating of capacitors does not form a perfect seal; therefore, do not use or store capacitors in a corrosive atm osphere, especially w here chloride gas, sulfide gas, acid, alkali, salt or the like are present. And avoid exposure to m oisture. Before cleaning, bonding, or m olding this product, verify that these processes do not affect product quality by testing the perform ance of a cleaned, bonded or m olded product in the intended equipm ent. Store the capacitors w here the tem perature and relative hum idity do not exceed -10 to 40 degrees centigrade and 15 to 85% . U se capacitors w ithin 6 m onths after delivery. FAILU R E TO FO LLO W TH E ABO VE C AU TIO N S M AY R ESU LT, W O R ST C ASE, IN A SH O R T C IR C U IT AN D C AU SE FU M IN G O R PAR TIAL D ISPER SIO N W H EN TH E PR O D U C T IS U SED . n !Caution (Soldering and Mounting) 1. Vibration and Im pact D o not expose a capacitor or its leads to excessive shock or vibration during use. 2. Soldering W hen soldering this product to a PC B/PW B, do not exceed the solder heat resistance specifications of the capacitor. Subjecting this product to excessive heating could m elt the internal junction solder and m ay result in therm al shocks that can crack the ceram ic elem ent. W hen soldering capacitor w ith a soldering iron, it should be perform ed in the follow ing conditions. Tem perature of iron-tip: 400 degrees C . m ax. Soldering iron w attage: 50W m ax. Soldering tim e: 3.5 sec. m ax. 3. Bonding, R esin M olding and C oating Before bonding, m olding or coating this product, verify that these processes do not affect the quality of capacitor by testing the perform ance of the bonded, m olded or coated product in the intended equipm ent. In case the am ount of applications, dryness/hardening conditions of adhesives and m olding resins containing organic solvents (ethyl acetate, m ethyl ethyl ketone, toluene, etc.) are unsuitable, the outer coating resin of a capacitor is dam aged by the organic solvents and it m ay result, w orst case, in a short circuit. The variation in thickness of adhesive, m olding resin or coating m ay cause outer coating resin cracking and/or ceram ic elem ent cracking of a capacitor in a tem perature cycling. FAILU R E TO FO LLO W TH E ABO VE C AU TIO N S M AY R ESU LT, W O R ST C ASE, IN A SH O R T C IR C U IT AN D C AU SE FU M IN G O R PAR TIAL D ISPER SIO N W H EN TH E PR O D U C T IS U SED . n !Caution (Handling) Vibration and Im pact D o not expose a capacitor or its leads to excessive shock or vibration during use. FAILU R E TO FO LLO W TH E ABO VE C AU TIO N S M AY R ESU LT, W O R ST C ASE, IN A SH O R T C IR C U IT AN D C AU SE FU M IN G O R PAR TIAL D ISPER SIO N W H EN TH E PR O D U C T IS U SED . Safety C ertified C eram ic C apacitors !C aution
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
Safety C ertified C eram ic C apacitors N otice !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n Notice (Soldering and Mounting) C leaning (ultrasonic cleaning) To perform ultrasonic cleaning, observe the follow ing conditions. R inse bath capacity: O utput of 20 w atts per liter or less. R insing tim e: 5 m in. m axim um . D o not vibrate the PC B/PW B directly. Excessive ultrasonic cleaning m ay lead to fatigue destruction of the lead w ires. n Notice (Rating) 1. C apacitance C hange of C apacitors (1) In case of SL char. C apacitance m ight change a little depending on a surrounding tem perature or an applied voltage. Please contact us if you use for the strict constant tim e circuit. (2) In case of B/E/F char. C apacitors have an aging characteristic, w hereby the capacitor continually decreases its capacitance slightly if the capacitor is left on for a long tim e. M oreover, capacitance m ight change greatly depending on the surrounding tem perature or an applied voltage. So, it is not likely to be suitable for use in a constant tim e circuit. Please contact us if you need detailed inform ation. 2. Perform ance C heck by Equipm ent Before using a capacitor, check that there is no problem in the equipm ent's perform ance and the specifications. G enerally speaking, C LASS 2 (B/E/F char.) ceram ic capacitors have voltage dependence characteristics and tem perature dependence characteristics in capacitance. So, the capacitance value m ay change depending on the operating condition in the equipm ent. Therefore, be sure to confirm the apparatus perform ance of receiving influence in the capacitance value change of a capacitor, such as leakage current and noise suppression characteristic. M oreover, check the surge-proof ability of a capacitor in the equipm ent, if needed, because the surge voltage m ay exceed specific value by the inductance of the circuit.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. D ES Series (125 deg. C G uaranteed/Low -dissipation Factor/D C 500V-1kV) Lead Code Coating Extension e A2, A3 U p to the end of crim p (in m m ) ø d 0.6–0.05 D m ax. T m ax. 3.0 m ax. 25.0 m in. e ø dF–1.0 [Bulk] Vertical Crimp Long (A2,A3) D m ax. T m ax. 3.0 m ax. 3.5–0.5 F–0.8 e ø d 1.0 (in m m ) Lead Code Coating Extension e J2, J3 U p to the end of crim p ø d 0.6–0.05 [Bulk] Vertical Crimp Short (J2,J3) n Marking Nominal Body Diameter DC1kVDC500V ø 6mm ø 7-9mm ø 10-17mm Series Code Temperature Characteristic Nominal Capacitance Capacitance Tolerance Rated Voltage Manufacturer's Identification Manufactured Date Code Abbreviation (S) M arked w ith code M arked w ith 3 figures M arked w ith code (om itted for nom inal body diam eter ø6m m ) M arked w ith code (om itted for D C 500V) M arked w ith (om itted for nom inal body diam eter ø9m m and under) Abbreviation Rated Voltage S D 101 S D 102K S D 222K S D 101 1KV 66 S D 471K 1KV 66 S D 152K 1KV n Features 1. Low dissipation factor series w hich can be used for pow er supplies w ith an increased sw itching frequency. 2. The allow able pow er in the 100 to 300kH z band is im proved to approxim ately one-and-a-half tim es that of D EH series w hile rem aining the sam e size. 3. O perating tem perature range is guaranteed up to 125 degrees C . 4. C oated w ith flam e-retardant epoxy resin (equivalent to U L94V-0 standard). 5. Taping available for autom atic insertion. n Applications Ideal for use on high frequency pulse circuits such as snubber circuits for sw itching pow er supplies. D o not use these products in any Autom otive Pow er train or Safety equipm ent including Battery charger for Electric Vehicles and Plug-in H ybrid. O nly M urata products clearly stipulated as "for Autom otive use" on its catalog can be used for autom obile applications such as Pow er train and Safety equipm ent. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. D C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D ESD 32H 101K ppp 500 100 –10% 6 5.0 4.0 A2B J2B N2A D ESD 32H 151K ppp 500 150 –10% 6 5.0 4.0 A2B J2B N2A D ESD 32H 221K ppp 500 220 –10% 6 5.0 4.0 A2B J2B N2A D ESD 32H 331K ppp 500 330 –10% 6 5.0 4.0 A2B J2B N2A D ESD 32H 471K ppp 500 470 –10% 6 5.0 4.0 A2B J2B N2A D ESD 32H 681K ppp 500 680 –10% 6 5.0 4.0 A2B J2B N2A D ESD 32H 102K ppp 500 1000 –10% 8 5.0 4.0 A2B J2B N2A D ESD 32H 152K ppp 500 1500 –10% 9 5.0 4.0 A2B J2B N2A D ESD 32H 222K ppp 500 2200 –10% 10 5.0 4.0 A2B J2B N2A D ESD 32H 332K ppp 500 3300 –10% 12 7.5 4.0 A3B J3B N3A D ESD 32H 472K ppp 500 4700 –10% 14 7.5 4.0 A3B J3B N7A D ESD 33A 101K ppp 1000 100 –10% 6 5.0 4.5 A2B J2B N2A D ESD 33A 151K ppp 1000 150 –10% 6 5.0 4.5 A2B J2B N2A D ESD 33A 221K ppp 1000 220 –10% 6 5.0 4.5 A2B J2B N2A D ESD 33A 331K ppp 1000 330 –10% 6 5.0 4.5 A2B J2B N2A D ESD 33A 471K ppp 1000 470 –10% 7 5.0 4.5 A2B J2B N2A D ESD 33A 681K ppp 1000 680 –10% 8 5.0 4.5 A2B J2B N2A D ESD 33A 102K ppp 1000 1000 –10% 9 5.0 4.5 A2B J2B N2A D ESD 33A 152K ppp 1000 1500 –10% 10 5.0 4.5 A2B J2B N2A D ESD 33A 222K ppp 1000 2200 –10% 12 7.5 4.5 A3B J3B N3A D ESD 33A 332K ppp 1000 3300 –10% 14 7.5 4.5 A3B J3B N7A D ESD 33A 472K ppp 1000 4700 –10% 17 7.5 4.5 A3B J3B N7A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code.
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- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Operating Temperature Range Specifications -25 to +125°C Test Method
2 Appearance and Dimensions
No marked defect on appearance form and dimensions are within specified range. To be easily legible The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. 3 Marking The capacitor should be visually inspected.
4 Dielectric
The capacitor should not be damaged when DC voltage of 200% of the rated voltage (DC1kV) or DC voltage of 250% of the rated voltage (DC500V) is applied between the lead wires for 1 to 5 sec. (Charge/Discharge currentV50mA) The capacitor is placed in the container with metal balls of diameter 1mm so that each lead wire, short circuited, is kept about 2mm off the metal balls as shown in the figure at right, and AC1250V(r.m.s.) <50/60Hz> is applied for 1 to 5 sec. between capacitor lead wires and metal balls. (Charge/Discharge currentV50mA)
5 Insulation
Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V within 60±5 sec. of charging. About 2m m M etal balls 7 Dissipation Factor (D.F.) Between Lead Wires 10000M Ω min. 6 Capacitance The capacitance should be measured at 20°C with 1±0.2kHz and AC5V(r.m.s.) max.Within specified tolerance 0.3% max. The dissipation factor should be measured at 20°C with
8 Temperature Characteristics
The capacitance measurement should be made at each step specified in Table. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before measurements.
9 Strength of Lead
Lead wire should not be cut off. Capacitor should not be broken. As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N and keep it for 10±1 sec. Bending Each lead wire should be subjected to 5N of weight and bent 90°at the point of egress, in one direction, then returned to its original position and bent 90°in the opposite direction at the rate of one bend in 2 to 3 sec.
10 Vibration
Appearance No marked defect The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions.
11 Solderability of Leads
Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. The lead wire of a capacitor should be dipped into a ethanol solution of 25wt% rosin and then into molten solder for 2±0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Capacitance Within specified tolerance D.F. 0.3% max. Continued on the following page. Temp. (° C) 2 3 4 5 20±2 -25±3 20±2 125±2 20±2 Step 1 W * "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa
12 Soldering Effect
(Non-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±10% Per item 4. The lead wire should be immersed into the melted solder of 350±10°C up to about 1.5 to 2mm from the main body for 3.5±0.5 sec. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*. Within +20/-30% (Temp. range: -25 to +125°C) D ES Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method
15 Humidity (Under
Steady State) Appearance Capacitance Change D.F. I.R. No marked defect Within ±10% 0.4% max. 1000M Ω min. Set the capacitor for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*. 1000M Ω min.
16 Humidity
Appearance No marked defect Capacitance Change Within ±10% D.F. I.R. Apply the rated voltage for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. (Charge/Discharge currentV50mA) Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*. * "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa Continued from the preceding page.
14 Temperature
Appearance No marked defect Capacitance Change Within ±10% D.F. 0.4% max. I.R. 1000M Ω min. Dielectric Strength (Between Lead Wires) Per item 4. The capacitor should be subjected to 5 temperature cycles. <Temperature Cycle> Cycle time: 5 cycle Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*. Time (min) -25±3 30 2 Room Temp. 3 3 125±3 30 4 Room Temp. 3 Step Temperature (° C) 2000M Ω min.
17 Life
Appearance No marked defect Capacitance Change Within ±10% D.F. I.R. Apply a DC voltage of 200% of the rated voltage (DC500V) or DC voltage of 150% of the rated voltage (DC1kV) for 1000 +48/-0 hrs. at 125±2°C with a relative humidity of 50% max. (Charge/Discharge currentV50mA) Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. 0.6% max. 0.4% max.
13 Soldering Effect
(On-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±10% Per item 4. First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*. /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder D ES Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. DEH Series (125 deg. C Guaranteed/Low-dissipation Factor/DC250V-3.15kV) Lead Code Coating Extension e A2, A3, A4 Up to the end of crimp 3.0 max. (in mm) ø d 0.6–0.05 0.6–0.05 Style Fig. 1 Fig. 2 D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 25.0 min. e ø d 25.0 min. F–1.0 [Bulk] Vertical Crimp Long (Fig. 1) Straight Long (Fig. 2) D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 5.0–1.0 F–0.8 e ø d 5.0–1.0 Lead Code Coating Extension e B2, B3, B4 Up to the end of crimp 3.0 max. (in mm) ø d 0.6–0.05 0.6–0.05 Style Fig. 1 Fig. 2 [Bulk] Vertical Crimp Short (Fig. 1) Straight Short (Fig. 2) n Marking Nominal Body Diameter DC1-3.15kVDC500VDC250V RCR ø6mm ø7-9mm ø10-21mm High Temperature Guaranteed Code Temperature Characteristics Nominal Capacitance Capacitance Tolerance Manufacturer's Identification Manufactured Date Code DC250V DC500V DC1-3.15kV Rated Voltage HR Marked with code (omitted for nominal body diameter ø6mm) Marked with 3 figures Marked with code (omitted for nominal body diameter ø6mm) Marked with code (Marked with horizontal line over nominal capacitance for nominal body diameter ø6mm) Omitted Marked with code (In case of DC3.15kV, marked with 3KV) Marked with (omitted for nominal body diameter ø9mm and under) Abbreviation HR R 103K 250V HR C 472K HR R 272K 3KV HR R 332K 250V HR 102 HR 471 HR C 152K HR R 102K 1KV 66 Rated Voltage Temp. Char. n Features 1. Reduced heat dissipation permitted due to small dielectric loss of the ceramic material. 2. Operating temperature range is guaranteed up to 125 degrees C. 3. Coated with flame-retardant epoxy resin (equivalent to UL94V-0 standard). 4. Taping available for automatic insertion. n Applications Ideal for use on high frequency pulse circuits such as a horizontal resonance circuit for CTV and snubber circuits for switching power supplies. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. D C 250V, R C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EH R 32E221K ppp 250 220 –10% 6 5.0 4.0 A2B B2B N2A D EH R 32E331K ppp 250 330 –10% 6 5.0 4.0 A2B B2B N2A D EH R 32E471K ppp 250 470 –10% 6 5.0 4.0 A2B B2B N2A D EH R 32E681K ppp 250 680 –10% 6 5.0 4.0 A2B B2B N2A D EH R 32E102K ppp 250 1000 –10% 6 5.0 4.0 A2B B2B N2A D EH R 32E152K ppp 250 1500 –10% 7 5.0 4.0 A2B B2B N2A D EH R 32E222K ppp 250 2200 –10% 8 5.0 4.0 A2B B2B N2A D EH R 32E332K ppp 250 3300 –10% 9 5.0 4.0 A2B B2B N2A D EH R 32E472K ppp 250 4700 –10% 10 5.0 4.0 A2B B2B N2A D EH R 32E682K ppp 250 6800 –10% 12 5.0 4.0 A2B B2B N2A D EH R 32E103K ppp 250 10000 –10% 12 5.0 4.0 A2B B2B N2A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code. D C 500V, C C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EH C 32H 331K ppp 500 330 –10% 6 5.0 4.0 A2B B2B N2A D EH C 32H 471K ppp 500 470 –10% 6 5.0 4.0 A2B B2B N2A D EH C 32H 681K ppp 500 680 –10% 7 5.0 4.0 A2B B2B N2A D EH C 32H 102K ppp 500 1000 –10% 8 5.0 4.0 A2B B2B N2A D EH C 32H 152K ppp 500 1500 –10% 9 5.0 4.0 A2B B2B N2A D EH C 32H 222K ppp 500 2200 –10% 10 5.0 4.0 A2B B2B N2A D EH C 32H 332K ppp 500 3300 –10% 12 5.0 4.0 A2B B2B N2A D EH C 32H 472K ppp 500 4700 –10% 14 10.0 4.0 A4B B4B - Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code. D C 1-3.15kV, R C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EH R 33A 221K ppp 1000 220 –10% 7 5.0 4.5 A2B B2B N2A D EH R 33A 331K ppp 1000 330 –10% 7 5.0 4.5 A2B B2B N2A D EH R 33A 471K ppp 1000 470 –10% 7 5.0 4.5 A2B B2B N2A D EH R 33A 681K ppp 1000 680 –10% 8 5.0 4.5 A2B B2B N2A D EH R 33A 102K ppp 1000 1000 –10% 9 5.0 4.5 A2B B2B N2A D EH R 33A 152K ppp 1000 1500 –10% 11 5.0 4.5 A2B B2B N2A D EH R 33A 222K ppp 1000 2200 –10% 13 7.5 4.5 A3B B3B N3A D EH R 33A 332K ppp 1000 3300 –10% 15 7.5 4.5 A3B B3B N7A D EH R 33A 472K ppp 1000 4700 –10% 17 7.5 4.5 A3B B3B N7A D EH R 33D 221K ppp 2000 220 –10% 7 7.5 5.0 C3B D3B P3A D EH R 33D 271K ppp 2000 270 –10% 7 7.5 5.0 C3B D3B P3A D EH R 33D 331K ppp 2000 330 –10% 8 7.5 5.0 A3B B3B N3A D EH R 33D 391K ppp 2000 390 –10% 8 7.5 5.0 A3B B3B N3A D EH R 33D 471K ppp 2000 470 –10% 9 7.5 5.0 A3B B3B N3A D EH R 33D 561K ppp 2000 560 –10% 9 7.5 5.0 A3B B3B N3A D EH R 33D 681K ppp 2000 680 –10% 10 7.5 5.0 A3B B3B N3A D EH R 33D 821K ppp 2000 820 –10% 11 7.5 5.0 A3B B3B N3A D EH R 33D 102K ppp 2000 1000 –10% 12 7.5 5.0 A3B B3B N3A D EH R 33D 122K ppp 2000 1200 –10% 12 7.5 5.0 A3B B3B N3A D EH R 33D 152K ppp 2000 1500 –10% 12 7.5 5.0 A3B B3B N3A D EH R 33D 182K ppp 2000 1800 –10% 14 7.5 5.0 A3B B3B N7A Continued on the following page.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping Continued from the preceding page. D EH R 33D 222K ppp 2000 2200 –10% 15 7.5 5.0 A3B B3B N7A D EH R 33D 272K ppp 2000 2700 –10% 17 7.5 5.0 A3B B3B N7A D EH R 33D 332K ppp 2000 3300 –10% 19 10.0 5.0 A4B B4B - D EH R 33D 392K ppp 2000 3900 –10% 20 10.0 5.0 A4B B4B - D EH R 33D 472K ppp 2000 4700 –10% 21 10.0 5.0 A4B B4B - D EH R 33F151K ppp 3150 150 –10% 7 7.5 6.0 C3B D3B P3A D EH R 33F181K ppp 3150 180 –10% 7 7.5 6.0 C3B D3B P3A D EH R 33F221K ppp 3150 220 –10% 7 7.5 6.0 C3B D3B P3A D EH R 33F271K ppp 3150 270 –10% 7 7.5 6.0 C3B D3B P3A D EH R 33F331K ppp 3150 330 –10% 8 7.5 6.0 A3B B3B N3A D EH R 33F391K ppp 3150 390 –10% 9 7.5 6.0 A3B B3B N3A D EH R 33F471K ppp 3150 470 –10% 10 7.5 6.0 A3B B3B N3A D EH R 33F561K ppp 3150 560 –10% 10 7.5 6.0 A3B B3B N3A D EH R 33F681K ppp 3150 680 –10% 11 7.5 6.0 A3B B3B N3A D EH R 33F821K ppp 3150 820 –10% 12 7.5 6.0 A3B B3B N3A D EH R 33F102K ppp 3150 1000 –10% 13 7.5 6.0 A3B B3B N3A D EH R 33F122K ppp 3150 1200 –10% 14 7.5 6.0 A3B B3B N7A D EH R 33F152K ppp 3150 1500 –10% 15 7.5 6.0 A3B B3B N7A D EH R 33F182K ppp 3150 1800 –10% 16 7.5 6.0 A3B B3B N7A D EH R 33F222K ppp 3150 2200 –10% 17 7.5 6.0 A3B B3B N7A D EH R 33F272K ppp 3150 2700 –10% 19 10.0 6.0 A4B B4B - Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Operating Temperature Range Specifications -25 to +125°C Test Method No marked defect on appearance form and dimensions are within specified range. To be easily legible The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. 3 Marking The capacitor should be visually inspected. The capacitor should not be damaged when DC voltage of 200% of the rated voltage (DC1 to 3.15kV) or DC voltage of 250% of the rated voltage (DC250V, DC500V) is applied between the lead wires for 1 to 5 sec. (Charge/Discharge currentV50mA) The capacitor is placed in the container with metal balls of diameter 1mm so that each lead wire, short circuited, is kept about 2mm off the metal balls as shown in the figure at right, and AC1250V(r.m.s.) <50/60Hz> is applied for 1 to 5 sec. between capacitor lead wires and metal balls. (Charge/Discharge currentV50mA) Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V (Char. R [DC 250V]: DC100±15V) within 60±5 sec. of charging. About 2m m M etal balls 7 Dissipation Factor (D.F.) Between Lead Wires Char. R [DC1 to 3.15kV], Char. C : 10000MΩ min. Char. R [DC250V]: 1000MΩ min. 6 Capacitance The capacitance should be measured at 20°C with 1±0.2kHz and AC5V(r.m.s.) max.Within specified tolerance Char. R [DC250V]: 0.4% max. Char. R [DC1 to 3.15kV]: 0.2% max. Char. C: 0.3% max. The dissipation factor should be measured at 20°C with The capacitance measurement should be made at each step specified in Table. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before measurements. Lead wire should not be cut off. Capacitor should not be broken. As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N (5N for lead diameter 0.5mm), and keep it for 10±1 sec. Bending Each lead wire should be subjected to 5N (2.5N for lead diameter 0.5mm) of weight and bent 90°at the point of egress, in one direction, then returned to its original position and bent 90°in the opposite direction at the rate of one bend in 2 to 3 sec. Appearance No marked defect The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. The lead wire of a capacitor should be dipped into a ethanol solution of 25wt% rosin and then into molten solder for 2±0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Capacitance Within specified tolerance D.F. Char. R [DC250V]: 0.4% max. Char. R [DC1 to 3.15kV]: 0.2% max. Char. C: 0.3% max. Continued on the following page. Temp. (° C) 2 3 4 5 20±2 -25±3 20±2 125±2 20±2 Step 1 T. C. R C Temp. Char. -25 to +85° C +85 to +125° C Within ±15% Within ±20% Within +15/-30% W *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa D EH Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method Steady State) Appearance Capacitance Change D.F. I.R. No marked defect Within ±10% 0.4% max. 1000M Ω min. Set the capacitor for 500 +24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Measurement order: I.R. -> Pre-treatment -> Capacitance • D.F. -> Humidity test -> Post-treatment -> Capacitance • D.F. • I.R. (Char. R [DC250V]) Appearance No marked defect Capacitance Change Within ±10% D.F. 0.4% max. I.R. 1000M Ω min. Dielectric Strength (Between Lead Wires) Per item 4. The capacitor should be subjected to 5 temperature cycles. <Temperature Cycle> Cycle time: 5 cycle Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*1. Measurement order: I.R. • Dielectric strength -> Pre-treatment -> Capacitance • D.F. -> Temperature cycle test -> Post-treatment -> Capacitance
- D.F. • I.R. • Dielectric strength (Char. R [DC250V]) *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa Continued from the preceding page. Time (min) -25±3 30 2 Room Temp. 3 3 125±3 30 4 Room Temp. 3 Step Temperature (° C)
(Non-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±10% Per item 4. The lead wire should be immersed into the melted solder of 350±10°C up to about 1.5 to 2mm from the main body for 3.5±0.5 sec. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*1. Measurement order: Dielectric strength -> Pre-treatment -> Capacitance -> Soldering effect test ->Post-treatment -> Capacitance
- Dielectric strength (Char. R [DC250V])
(On-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±10% Per item 4. First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 24±2 hrs. at room condition*1. Measurement order: Dielectric strength -> Pre-treatment -> Capacitance -> Soldering effect test ->Post-treatment -> Capacitance • Dielectric strength (Char. R [DC250V]) /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder Continued on the following page. D EH Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method Appearance No marked defect Capacitance Change Within ±10% D.F. 0.6% max. I.R. 1000M Ω min. Apply the rated voltage for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. (Charge/Discharge currentV50mA) Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. (Char. R [DC1 to 3.15kV], Char. C) Post-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition*1 for 24±2 hrs. (Char. R [DC250V]) Measurement order: I.R. -> Pre-treatment -> Capacitance • D.F. -> Humidity loading test -> I.R.*2 -> Post-treatment -> Capacitance • D.F. (Char. R [DC250V]) Appearance No marked defect Capacitance Change Within ±10% D.F. 0.4% max. I.R. Char. R [DC1 to 3.15kV], Char. C : 2000MΩ min. Char. R [DC250V]: 1000MΩ min. Apply a DC voltage of 200% of the rated voltage (DC250V, DC500V) or DC voltage of 150% of the rated voltage (DC1 to 3.15kV) for 1000 +48/-0 hrs. at 125±2°C with a relative humidity of 50% max. (Charge/Discharge currentV50mA) Pre-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored at 125±3°C for 1 hr., then placed at room condition*1 for 24±2 hrs. Measurement order: I.R. -> Pre-treatment -> Capacitance • D.F. -> Life test -> I.R.*3 -> Post-treatment -> Capacitance • D.F. (Char. R [DC250V]) *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 The measurement of I.R. will be held in 1 to 2 hrs. after Humidity loading test. *3 The measurement of I.R. will be held in 12 to 24 hrs. after Life test. Continued from the preceding page. D EH Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. DEA Series (125 deg. C Guaranteed/Class 1/DC1k-3.15kV) Lead Code Coating Extension e A2, A3 C1, CD Up to the end of crimp 3.0 max. 3.0 max. (in mm) ø d 0.6–0.05 0.5–0.05 0.6–0.05 Style Fig. 1 Fig. 2 Fig. 2 D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 25.0 min. e ø d 25.0 min. F–1.0 [Bulk] Vertical Crimp Long (Fig. 1) Straight Long (Fig. 2) D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 5.0–1.0 F–0.8 e ø d 5.0–1.0 Lead Code Coating Extension e B2, B3 D1, DD Up to the end of crimp 3.0 max. 3.0 max. (in mm) ø d 0.6–0.05 0.5–0.05 0.6–0.05 Style Fig. 1 Fig. 2 Fig. 2 [Bulk] Vertical Crimp Short (Fig. 1) Straight Short (Fig. 2) n Marking SL ø4.5-5mm ø6mm ø7-9mm ø10-16mm Nominal Capacitance Capacitance Tolerance Rated Voltage Manufacturer's Identification Manufactured Date Code Under 100pF: Actual value, 100pF and over: Marked with 3 figures Marked with code (omitted for nominal body diameter ø6mm and under) Marked with code (In case of DC3.15kV, marked with 3KV) Marked with (omitted for nominal body diameter ø9mm and under) Abbreviation (omitted for nominal body diameter ø5mm and under) Temp. Char. Nominal Body Diameter 391J 3KV 3KV 1KV 181J 2KV n Features 1. Temperature compensating type ceramics realize low heat dissipation than DEH/DES series. 2. Operating temperature range is guaranteed up to 125 degrees C. 3. Coated with flame-retardant epoxy resin (equivalent to UL94V-0 standard). 4. Taping available for automatic insertion. n Applications 1. Ideal for use as the ballast in back lighting inverters for liquid crystal display. 2. Ideal for use on high frequency pulse circuits such as a horizontal resonance circuit for CTV and snubber circuits for switching power supplies. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. SL C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EA 1X3A 100Jppp 1000 10 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 120Jppp 1000 12 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 150Jppp 1000 15 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 180Jppp 1000 18 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 220Jppp 1000 22 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 270Jppp 1000 27 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 330Jppp 1000 33 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 390Jppp 1000 39 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 470Jppp 1000 47 –5% 4.5 5.0 4.0 C1B D1B P2A D EA 1X3A 560Jppp 1000 56 –5% 5 5.0 4.0 C1B D1B P2A D EA 1X3A 680Jppp 1000 68 –5% 5 5.0 4.0 C1B D1B P2A D EA 1X3A 820Jppp 1000 82 –5% 6 5.0 4.0 A2B B2B N2A D EA 1X3A 101Jppp 1000 100 –5% 6 5.0 4.0 A2B B2B N2A D EA 1X3A 121Jppp 1000 120 –5% 6 5.0 4.0 A2B B2B N2A D EA 1X3A 151Jppp 1000 150 –5% 7 5.0 4.0 A2B B2B N2A D EA 1X3A 181Jppp 1000 180 –5% 7 5.0 4.0 A2B B2B N2A D EA 1X3A 221Jppp 1000 220 –5% 8 5.0 4.0 A2B B2B N2A D EA 1X3A 271Jppp 1000 270 –5% 9 5.0 4.0 A2B B2B N2A D EA 1X3A 331Jppp 1000 330 –5% 10 5.0 4.0 A2B B2B N2A D EA 1X3A 391Jppp 1000 390 –5% 10 5.0 4.0 A2B B2B N2A D EA 1X3A 471Jppp 1000 470 –5% 11 5.0 4.0 A2B B2B N2A D EA 1X3A 561Jppp 1000 560 –5% 12 7.5 4.0 A3B B3B N3A D EA 1X3D 100Jppp 2000 10 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 120Jppp 2000 12 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 150Jppp 2000 15 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 180Jppp 2000 18 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 220Jppp 2000 22 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 270Jppp 2000 27 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 330Jppp 2000 33 –5% 4.5 5.0 5.0 C1B D1B P2A D EA 1X3D 390Jppp 2000 39 –5% 5 5.0 5.0 C1B D1B P2A D EA 1X3D 470Jppp 2000 47 –5% 6 5.0 5.0 A2B B2B N2A D EA 1X3D 560Jppp 2000 56 –5% 6 5.0 5.0 A2B B2B N2A D EA 1X3D 680Jppp 2000 68 –5% 6 5.0 5.0 A2B B2B N2A D EA 1X3D 820Jppp 2000 82 –5% 7 5.0 5.0 A2B B2B N2A D EA 1X3D 101Jppp 2000 100 –5% 7 5.0 5.0 A2B B2B N2A D EA 1X3D 121Jppp 2000 120 –5% 8 5.0 5.0 A2B B2B N2A D EA 1X3D 151Jppp 2000 150 –5% 8 5.0 5.0 A2B B2B N2A D EA 1X3D 181Jppp 2000 180 –5% 9 5.0 5.0 A2B B2B N2A D EA 1X3D 221Jppp 2000 220 –5% 10 5.0 5.0 A2B B2B N2A D EA 1X3D 271Jppp 2000 270 –5% 11 5.0 5.0 A2B B2B N2A D EA 1X3D 331Jppp 2000 330 –5% 12 7.5 5.0 A3B B3B N3A D EA 1X3D 391Jppp 2000 390 –5% 13 7.5 5.0 A3B B3B N3A D EA 1X3D 471Jppp 2000 470 –5% 14 7.5 5.0 A3B B3B N7A D EA 1X3D 561Jppp 2000 560 –5% 15 7.5 5.0 A3B B3B N7A D EA 1X3F100Jppp 3150 10 –5% 5 7.5 6.0 CDB DDB P3A D EA 1X3F120Jppp 3150 12 –5% 5 7.5 6.0 CDB DDB P3A D EA 1X3F150Jppp 3150 15 –5% 5 7.5 6.0 CDB DDB P3A D EA 1X3F180Jppp 3150 18 –5% 5 7.5 6.0 CDB DDB P3A D EA 1X3F220Jppp 3150 22 –5% 5 7.5 6.0 CDB DDB P3A D EA 1X3F270Jppp 3150 27 –5% 6 7.5 6.0 C3B D3B P3A D EA 1X3F330Jppp 3150 33 –5% 6 7.5 6.0 C3B D3B P3A D EA 1X3F390Jppp 3150 39 –5% 6 7.5 6.0 C3B D3B P3A D EA 1X3F470Jppp 3150 47 –5% 7 7.5 6.0 C3B D3B P3A D EA 1X3F560Jppp 3150 56 –5% 7 7.5 6.0 C3B D3B P3A Continued on the following page.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping Continued from the preceding page. D EA 1X3F680Jppp 3150 68 –5% 8 7.5 6.0 A3B B3B N3A D EA 1X3F820Jppp 3150 82 –5% 8 7.5 6.0 A3B B3B N3A D EA 1X3F101Jppp 3150 100 –5% 9 7.5 6.0 A3B B3B N3A D EA 1X3F121Jppp 3150 120 –5% 10 7.5 6.0 A3B B3B N3A D EA 1X3F151Jppp 3150 150 –5% 11 7.5 6.0 A3B B3B N3A D EA 1X3F181Jppp 3150 180 –5% 11 7.5 6.0 A3B B3B N3A D EA 1X3F221Jppp 3150 220 –5% 12 7.5 6.0 A3B B3B N3A D EA 1X3F271Jppp 3150 270 –5% 14 7.5 6.0 A3B B3B N7A D EA 1X3F331Jppp 3150 330 –5% 15 7.5 6.0 A3B B3B N7A D EA 1X3F391Jppp 3150 390 –5% 16 7.5 6.0 A3B B3B N7A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Operating Temperature Range Specifications -25 to +125°C Test Method No marked defect on appearance form and dimensions are within specified range. To be easily legible The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. 3 Marking The capacitor should be visually inspected.4 Dielectric Strength Between Lead Wires Body Insulation No failure No failure The capacitor should not be damaged when DC voltage of 200% of the rated voltage is applied between the lead wires for 1 to 5 sec. (Charge/Discharge currentV50mA) The capacitor is placed in the container with metal balls of diameter 1mm so that each lead wire, short circuited, is kept about 2mm off the metal balls as shown in the figure at right, and AC1250V(r.m.s.) <50/60Hz> is applied for 1 to 5 sec. between capacitor lead wires and metal balls. (Charge/Discharge currentV50mA) Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V within 60±5 sec. of charging. About 2m m M etal balls 7 Q Between Lead Wires 10000M Ω min. 6 Capacitance The capacitance should be measured at 20°C with 1±0.2MHz and AC5V(r.m.s.) max.Within specified tolerance 400+20C*2min. (30pF under) 1000 min. (30pF min.) +350 to -1000ppm/°C (Temp. range: +20 to +85°C) The Q should be measured at 20°C with 1±0.2MHz and AC5V(r.m.s.) max. The capacitance measurement should be made at each step specified in Table. Lead wire should not be cut off. Capacitor should not be broken. As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N (5N for lead diameter 0.5mm), and keep it for 10±1 sec. Bending Each lead wire should be subjected to 5N (2.5N for lead diameter 0.5mm) of weight and bent 90°at the point of egress, in one direction, then returned to its original position and bent 90°in the opposite direction at the rate of one bend in 2 to 3 sec. Appearance No marked defect The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. The lead wire of a capacitor should be dipped into a ethanol solution of 25wt% rosin and then into molten solder for 2±0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Capacitance Within specified tolerance Q 400+20C*2min. (30pF under) 1000 min. (30pF min.) Continued on the following page. Temp. (° C) 2 3 4 5 20±2 -25±3 20±2 85±2 20±2 Step 1 W *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 "C" expresses nominal capacitance value (pF). (Non-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±2.5% Per item 4. The lead wire should be immersed into the melted solder of 350±10°C (Body of ø5mm and under: 270±5°C) up to about 1.5 to 2mm from the main body for 3.5±0.5 sec. (Body of ø5mm and under: 5±0.5 sec.) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. D EA Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method Appearance No marked defect Capacitance Change Within ±5% Q 275+5/2C*2min. (30pF under) 350 min. (30pF min.) I.R. 1000M Ω min. Apply the rated voltage for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. (Charge/Discharge currentV50mA) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Appearance No marked defect Capacitance Change Within ±3% Q 275+5/2C*2min. (30pF under) 350 min. (30pF min.) I.R. 2000M Ω min. Apply a DC voltage of 150% of the rated voltage for 1000+48/-0 hrs. at 125±2°C with a relative humidity of 50% max. (Charge/Discharge currentV50mA) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Appearance No marked defect Capacitance Change Within ±5% Q 275+5/2C*2min. (30pF under) 350 min. (30pF min.) I.R. 1000M Ω min. Dielectric Strength (Between Lead Wires) Per item 4. The capacitor should be subjected to 5 temperature cycles. <Temperature Cycle> Cycle time: 5 cycle Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 "C" expresses nominal capacitance value (pF). Continued from the preceding page. Time (min) -25±3 30 2 Room Temp. 3 3 125±3 30 4 Room Temp. 3 Step Temperature (° C) Steady State) Appearance Capacitance Change Q I.R. No marked defect Within ±5% 275+5/2C* 2min. (30pF under) 350 min. (30pF min.) 1000M Ω min. Set the capacitor for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. (On-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±2.5% Per item 4. First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition* /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder D EA Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. DEB Series (Class 2/DC1k-3.15kV) Lead Code Coating Extension e A2, A3 C1, CD Up to the end of crimp 3.0 max. 3.0 max. (in mm) ø d 0.6–0.05 0.5–0.05 0.6–0.05 Style Fig. 1 Fig. 2 Fig. 2 D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 25.0 min. e ø d 25.0 min. F–1.0 [Bulk] Vertical Crimp Long (Fig. 1) Straight Long (Fig. 2) D max. T max.T max. <Fig. 1> <Fig. 2> 3.0 max. 5.0–1.0 F–0.8 e ø d 5.0–1.0 Lead Code Coating Extension e B2, B3 D1, DD Up to the end of crimp 3.0 max. 3.0 max. (in mm) ø d 0.6–0.05 0.5–0.05 0.6–0.05 Style Fig. 1 Fig. 2 Fig. 2 [Bulk] Vertical Crimp Short (Fig. 1) Straight Short (Fig. 2) n Marking EBF ø4.5-5mm ø6mm ø7-9mm ø10-16mm Temperature Characteristics Nominal Capacitance Capacitance Tolerance Rated Voltage Manufacturer's Identification Manufactured Date Code Marked with code for char. B and E (omitted for nominal body diameter ø9mm and under) Marked with 3 figures Marked with code (omitted for nominal body diameter ø6mm and under) Marked with code (In case of DC3.15kV, marked with 3KV) Marked with (omitted for nominal body diameter ø9mm and under) Abbreviation (omitted for nominal body diameter ø5mm and under) Temp. Char. Nominal Body Diameter 102 2KV 102 1KV 102Z 3KV B 332K 3KV E 472Z 3KV 103Z 2KV 331 3KV 221 3KV 102K 3KV 222 1KV 102 2KV 472Z 2KV n Features 1. Small size and high capacitance 2. Coated with flame-retardant epoxy resin (equivalent to UL94V-0 standard). 3. Taping available for automatic insertion. n Applications Ideal for use on decoupling circuits for power supplies. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. B C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EB B 33A 101K ppp 1000 100 –10% 4.5 5.0 4.0 C1B D1B P2A D EB B 33A 151K ppp 1000 150 –10% 4.5 5.0 4.0 C1B D1B P2A D EB B 33A 221K ppp 1000 220 –10% 4.5 5.0 4.0 C1B D1B P2A D EB B 33A 331K ppp 1000 330 –10% 4.5 5.0 4.0 C1B D1B P2A D EB B 33A 471K ppp 1000 470 –10% 5 5.0 4.0 C1B D1B P2A D EB B 33A 681K ppp 1000 680 –10% 6 5.0 4.0 A2B B2B N2A D EB B 33A 102K ppp 1000 1000 –10% 6 5.0 4.0 A2B B2B N2A D EB B 33A 152K ppp 1000 1500 –10% 8 5.0 4.0 A2B B2B N2A D EB B 33A 222K ppp 1000 2200 –10% 9 5.0 4.0 A2B B2B N2A D EB B 33A 332K ppp 1000 3300 –10% 10 5.0 4.0 A2B B2B N2A D EB B 33A 472K ppp 1000 4700 –10% 12 7.5 4.0 A3B B3B N3A D EB B 33A 682K ppp 1000 6800 –10% 15 7.5 4.0 A3B B3B N7A D EB B 33D 101K ppp 2000 100 –10% 4.5 5.0 5.0 C1B D1B P2A D EB B 33D 151K ppp 2000 150 –10% 4.5 5.0 5.0 C1B D1B P2A D EB B 33D 221K ppp 2000 220 –10% 4.5 5.0 5.0 C1B D1B P2A D EB B 33D 331K ppp 2000 330 –10% 5 5.0 5.0 C1B D1B P2A D EB B 33D 471K ppp 2000 470 –10% 6 5.0 5.0 A2B B2B N2A D EB B 33D 681K ppp 2000 680 –10% 7 5.0 5.0 A2B B2B N2A D EB B 33D 102K ppp 2000 1000 –10% 8 5.0 5.0 A2B B2B N2A D EB B 33D 152K ppp 2000 1500 –10% 9 5.0 5.0 A2B B2B N2A D EB B 33D 222K ppp 2000 2200 –10% 10 5.0 5.0 A2B B2B N2A D EB B 33D 332K ppp 2000 3300 –10% 12 7.5 5.0 A3B B3B N3A D EB B 33D 472K ppp 2000 4700 –10% 15 7.5 5.0 A3B B3B N7A D EB B 33F101K ppp 3150 100 –10% 5 7.5 6.0 CDB DDB P3A D EB B 33F151K ppp 3150 150 –10% 5 7.5 6.0 CDB DDB P3A D EB B 33F221K ppp 3150 220 –10% 5 7.5 6.0 CDB DDB P3A D EB B 33F331K ppp 3150 330 –10% 6 7.5 6.0 C3B D3B P3A D EB B 33F471K ppp 3150 470 –10% 7 7.5 6.0 C3B D3B P3A D EB B 33F681K ppp 3150 680 –10% 8 7.5 6.0 A3B B3B N3A D EB B 33F102K ppp 3150 1000 –10% 9 7.5 6.0 A3B B3B N3A D EB B 33F152K ppp 3150 1500 –10% 11 7.5 6.0 A3B B3B N3A D EB B 33F222K ppp 3150 2200 –10% 13 7.5 6.0 A3B B3B N3A D EB B 33F332K ppp 3150 3300 –10% 15 7.5 6.0 A3B B3B N7A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code. E C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EB E33A 102Zppp 1000 1000 +80/-20% 5 5.0 4.0 C1B D1B P2A D EB E33A 222Zppp 1000 2200 +80/-20% 7 5.0 4.0 A2B B2B N2A D EB E33A 472Zppp 1000 4700 +80/-20% 9 5.0 4.0 A2B B2B N2A D EB E33A 103Zppp 1000 10000 +80/-20% 13 7.5 4.0 A3B B3B N3A D EB E33D 102Zppp 2000 1000 +80/-20% 6 5.0 5.0 A2B B2B N2A D EB E33D 222Zppp 2000 2200 +80/-20% 8 5.0 5.0 A2B B2B N2A D EB E33D 472Zppp 2000 4700 +80/-20% 11 5.0 5.0 A2B B2B N2A D EB E33D 103Zppp 2000 10000 +80/-20% 16 7.5 5.0 A3B B3B N7A D EB E33F102Zppp 3150 1000 +80/-20% 7 7.5 6.0 C3B D3B P3A D EB E33F222Zppp 3150 2200 +80/-20% 10 7.5 6.0 A3B B3B N3A D EB E33F472Zppp 3150 4700 +80/-20% 13 7.5 6.0 A3B B3B N3A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. F C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EB F33A 222Zppp 1000 2200 +80/-20% 6 5.0 4.0 A2B B2B N2A D EB F33A 472Zppp 1000 4700 +80/-20% 7 5.0 4.0 A2B B2B N2A D EB F33A 103Zppp 1000 10000 +80/-20% 10 5.0 4.0 A2B B2B N2A D EB F33D 102Zppp 2000 1000 +80/-20% 5 5.0 5.0 C1B D1B P2A D EB F33D 222Zppp 2000 2200 +80/-20% 7 5.0 5.0 A2B B2B N2A D EB F33D 472Zppp 2000 4700 +80/-20% 9 5.0 5.0 A2B B2B N2A D EB F33D 103Zppp 2000 10000 +80/-20% 12 7.5 5.0 A3B B3B N3A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Operating Temperature Range Specifications -25 to +85°C Test Method No marked defect on appearance form and dimensions are within specified range. To be easily legible The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. 3 Marking The capacitor should be visually inspected. The capacitor should not be damaged when DC voltage of 200% of the rated voltage is applied between the lead wires for 1 to 5 sec. (Charge/Discharge currentV50mA) The capacitor is placed in the container with metal balls of diameter 1mm so that each lead wire, short circuited, is kept about 2mm off the metal balls as shown in the figure at right, and DC voltage of 1.3kV is applied for 1 to 5 sec. between capacitor lead wires and metal balls. (Charge/Discharge currentV50mA) Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V within 60±5 sec. of charging. About 2m m M etal balls 7 Dissipation Factor (D.F.) Between Lead Wires 10000M Ω min. 6 Capacitance The capacitance should be measured at 20°C with 1±0.2kHz and AC5V(r.m.s.) max.Within specified tolerance Char. B, E: 2.5% max. Char. F: 5.0% max. Char. B: Within ±10% Char. E: Within +20/-55% Char. F: Within +30/-80% The dissipation factor should be measured at 20°C with The capacitance measurement should be made at each step specified in Table. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before measurements. Lead wire should not be cut off. Capacitor should not be broken. As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N (5N for lead diameter 0.5mm), and keep it for 10±1 sec. Bending Each lead wire should be subjected to 5N (2.5N for lead diameter 0.5mm) of weight and bent 90°at the point of egress, in one direction, then returned to its original position and bent 90°in the opposite direction at the rate of one bend in 2 to 3 sec. Appearance No marked defect The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. The lead wire of a capacitor should be dipped into a ethanol solution of 25wt% rosin and then into molten solder for 2±0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Capacitance Within specified tolerance Char. F: 5.0% max. Continued on the following page. Temp. (° C) 2 3 4 5 20±2 -25±3 20±2 85±2 20±2 Step 1 W * "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa (Non-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Char. B: Within ±5% Char. E: Within ±15% Char. F: Within ±20% Per item 4. The lead wire should be immersed into the melted solder of 350±10°C (Body of ø5mm and under: 270±5°C) up to about 1.5 to 2mm from the main body for 3.5±0.5 sec. (Body of ø5mm and under: 5±0.5 sec.) Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*. D EB Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method Steady State) Appearance Capacitance Change D.F. I.R. No marked defect Char. B: Within ±10% Char. E: Within ±20% Char. F: Within ±30% Char. B, E: 5.0% max. Char. F: 7.5% max. 1000M Ω min. Set the capacitor for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*.16 Humidity Loading Appearance No marked defect Capacitance Change Char. B: Within ±10% Char. E: Within ±20% Char. F: Within ±30% Char. F: 7.5% max. I.R. 500M Ω min. Apply the rated voltage for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. (Charge/Discharge currentV50mA) Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. Appearance No marked defect Capacitance Change Char. B: Within ±10% Char. E: Within ±20% Char. F: Within ±30% Char. F: 7.5% max. I.R. 2000M Ω min. Apply a DC voltage of 150% of the rated voltage for 1000+48/-0 hrs. at 85±2°C with a relative humidity of 50% max. (Charge/Discharge currentV50mA) Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. Temperature and Immersion Cycle Appearance No marked defect Capacitance Change Char. B: Within ±10% Char. E: Within ±20% Char. F: Within ±30% Char. F: 7.5% max. I.R. 2000M Ω min. Dielectric Strength (Between Lead Wires) Per item 4. The capacitor should be subjected to 5 temperature cycles, then consecutively to 2 immersion cycles. <Temperature Cycle> Cycle time: 5 cycle <Immersion Cycle> Cycle time : 2 cycle Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*. * "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa Continued from the preceding page. Time (min) -25±3 30 2 Room Temp. 3 3 85±3 30 4 Room Temp. 3 Step Temperature (° C) Time (min) 1 65+5/-0 Clean water15 2 0±3 Salt water15 Step Temperature (° C) Immersion Water (On-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Char. B: Within ±5% Char. E: Within ±15% Char. F: Within ±20% Per item 4. First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* for 24±2 hrs. before initial measurements. Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*. /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder D EB Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. DEC Series (Class 1, 2/DC6.3kV) D max. T max. e ø d 25.0 min. F–1.0 T max. <Fig. 1> 4.0 max. 25.0 min. <Fig. 2> Lead Code Coating Extension e Up to the end of crimp 3.0 max. ø d 0.6–0.05 0.6–0.05 Style Fig. 1 Fig. 2 (in mm) [Bulk] Vertical Crimp Long (Fig. 1) Straight Long (Fig. 2) n Marking BSL E ø7mm ø8-9mm ø10-15mm Temperature Characteristics Nominal Capacitance Capacitance Tolerance Rated Voltage Manufacturer's Identification Manufactured Date Code Marked with code for char. B (omitted for nominal body diameter ø9mm and under) Under 100pF: Actual value, 100pF and over: Marked with 3 figures Marked with code Marked with code (In case of DC6.3kV, marked with 6KV) Marked with (omitted for nominal body diameter ø9mm and under) Abbreviation (omitted for nominal body diameter ø7mm) Temp. Char. Nominal Body Diameter 151J 6KV B 102K 6KV 222Z 6KV 47J 6KV 331K 6KV 10J 6KV SL Characteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) DEC1X3J100JA3BMS1 6300 10 –5% 7 7.5 7.0 DEC1X3J100JC4BMS1 6300 10 –5% 7 10.0 7.0 DEC1X3J120JA3B 6300 12 –5% 8 7.5 7.0 DEC1X3J120JC4B 6300 12 –5% 8 10.0 7.0 DEC1X3J150JA3B 6300 15 –5% 8 7.5 7.0 DEC1X3J150JC4B 6300 15 –5% 8 10.0 7.0 DEC1X3J180JA3B 6300 18 –5% 9 7.5 7.0 DEC1X3J180JC4B 6300 18 –5% 9 10.0 7.0 DEC1X3J220JA3B 6300 22 –5% 9 7.5 7.0 DEC1X3J220JC4B 6300 22 –5% 9 10.0 7.0 Continued on the following page. n Features Coated with flame-retardant epoxy resin (equivalent to UL94V-0 standard). n Applications 1. Ideal for use as the ballast in back lighting inverters for liquid crystal displays (SL Char.). 2. Ideal for use on high voltage circuits such as Cockcroft circuits (B Char.). Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Continued from the preceding page. D EC 1X3J470JA 3B 6300 47 –5% 9 7.5 7.0 D EC 1X3J470JC 4B 6300 47 –5% 9 10.0 7.0 D EC 1X3J560JC 4B 6300 56 –5% 10 10.0 7.0 D EC 1X3J680JC 4B 6300 68 –5% 12 10.0 7.0 D EC 1X3J820JC 4B 6300 82 –5% 12 10.0 7.0 D EC 1X3J101JC 4B 6300 100 –5% 13 10.0 7.0 D EC 1X3J121JC 4B 6300 120 –5% 14 10.0 7.0 D EC 1X3J151JC 4B 6300 150 –5% 15 10.0 7.0 B C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) D EC B 33J101K C 4B 6300 100 –10% 9 10.0 7.0 D EC B 33J151K C 4B 6300 150 –10% 9 10.0 7.0 D EC B 33J221K C 4B 6300 220 –10% 9 10.0 7.0 D EC B 33J331K C 4B 6300 330 –10% 9 10.0 7.0 D EC B 33J471K C 4B 6300 470 –10% 10 10.0 7.0 D EC B 33J681K C 4B 6300 680 –10% 11 10.0 7.0 D EC B 33J102K C 4B 6300 1000 –10% 13 10.0 7.0 E C haracteristics Part Number DC Rated Voltage (V) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) D EC E33J102ZC 4B 6300 1000 +80/-20% 11 10.0 7.0 D EC E33J222ZC 4B 6300 2200 +80/-20% 15 10.0 7.0 D EC 1X3J270JC 4B 6300 27 –5% 9 10.0 7.0 D EC 1X3J330JA 3B 6300 33 –5% 9 7.5 7.0 D EC 1X3J330JC 4B 6300 33 –5% 9 10.0 7.0 D EC 1X3J390JA 3B 6300 39 –5% 9 7.5 7.0 D EC 1X3J390JC 4B 6300 39 –5% 9 10.0 7.0 D EC 1X3J270JA 3B 6300 27 –5% 9 7.5 7.0
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Operating Temperature Range Specifications -25 to +85°C Test Method No marked defect on appearance form and dimensions are within specified range. To be easily legible The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. 3 Marking The capacitor should be visually inspected. The capacitor should not be damaged when DC voltage of 200% of the rated voltage is applied between the lead wires for 1 to 5 sec. (Charge/Discharge currentV50mA) The capacitor is placed in the container with metal balls of diameter 1mm so that each lead wire, short circuited, is kept about 2mm off the metal balls as shown in the figure at right, and DC voltage of 1.3kV is applied for 1 to 5 sec. between capacitor lead wires and metal balls. (Charge/Discharge currentV50mA) Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V within 60±5 sec. of charging. About 2m m M etal balls Q Dissipation Factor (D.F.) Between Lead Wires 10000M Ω min. 6 Capacitance The capacitance should be measured at 20°C with 1±0.2kHz Char. SL: 400+20C*2min. (30pF under) 1000 min. (30pF min.) Char. B, E: 2.5% max. Char. SL: +350 to -1000ppm/°C (Temp. range: +20 to +85°C) Char. B: Within ±10% Char. E: Within +20/-55% The dissipation factor and Q should be measured at 20°C with The capacitance measurement should be made at each step specified in Table. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before measurements. (Char. B, E) Lead wire should not be cut off. Capacitor should not be broken. As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N and keep it for 10±1 sec. Bending Each lead wire should be subjected to 5N of weight and bent 90°at the point of egress, in one direction, then returned to its original position and bent 90°in the opposite direction at the rate of one bend in 2 to 3 sec. Appearance No marked defect The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. The lead wire of a capacitor should be dipped into a ethanol solution of 25wt% rosin and then into molten solder for 2±0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Capacitance Within specified tolerance Q D.F. Char. SL: 400+20C*2min. (30pF under) 1000 min. (30pF min.) Char. B, E: 2.5% max. Continued on the following page. Temp. (° C) 2 3 4 5 20±2 -25±3 20±2 85±2 20±2 Step 1 W *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 "C" expresses nominal capacitance value (pF). (Non-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Char. SL: Within ±2.5% Char. B: Within ±5% Char. E: Within ±15% Per item 4. The lead wire should be immersed into the melted solder of 350±10°C up to about 1.5 to 2mm from the main body for 3.5±0.5 sec. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. (Char. B, E) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. (Char. SL) Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*1. (Char. B, E) D EC Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
No. Item Specifications Test Method Steady State) Appearance Capacitance Change Q D.F. No marked defect Char. SL: Within ±5% Char. B: Within ±10% Char. E: Within ±20% Char. SL: 275+5/2C*2min. (30pF under) 350 min. (30pF min.) Char. B, E: 5.0% max. I.R. 1000M Ω min. Set the capacitor for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. (Char. B, E) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Appearance No marked defect Capacitance Change Char. SL: Within ±7.5% Char. B: Within ±10% Char. E: Within ±20% Q Char. SL: 100+10/3C*2min. (30pF under) 200 min. (30pF min.) I.R. 500M Ω min. Apply the rated voltage for 500+24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. (Charge/Discharge currentV50mA.) Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. (Char. B, E) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. (Char. SL) Post-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. (Char. B, E) Appearance No marked defect Capacitance Change Char. SL: Within ±3% Char. B: Within ±10% Char. E: Within ±20% Q Char. SL: 275+5/2C*2min. (30pF under) 350 min. (30pF min.) I.R. 2000M Ω min. Apply a DC voltage of 150% of the rated voltage for 1000+48/-0 hrs. at 85±2°C with a relative humidity of 50% max. (Charge/Discharge currentV50mA.) Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. (Char. B, E) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. (Char. SL) Post-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. (Char. B, E) Temperature and Immersion Cycle Appearance No marked defect Capacitance Change Char. SL: Within ±3% Char. B: Within ±10% Char. E: Within ±20% Q Char. SL: 275+5/2C*2min. (30pF under) 350 min. (30pF min.) I.R. 2000M Ω min. Dielectric Strength (Between Lead Wires) Per item 4. The capacitor should be subjected to 5 temperature cycles, then consecutively to 2 immersion cycles. <Temperature Cycle> Cycle time: 5 cycle <Immersion Cycle> Cycle time: 2 cycle Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition*1 for 24±2 hrs. before initial measurements. (Char. B, E) Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*1. *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 "C" expresses nominal capacitance value (pF). Continued from the preceding page. Time (min) -25±3 30 2 Room Temp. 3 3 85±3 30 4 Room Temp. 3 Step Temperature (° C) Time (min) 1 65+5/-0 Clean water15 2 0±3 Salt water15 Step Temperature (° C) Immersion Water (On-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Char. SL: Within ±2.5% Char. B: Within ±5% Char. E: Within ±15% Per item 4. First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Pre-treatment: Capacitor should be stored at 85±2°C for 1 hr., then placed at room condition* 1 for 24±2 hrs. before initial measurements. (Char. B, E) Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. (Char. SL) Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition*1. (Char. B, E) /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder D EC Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. DEF Series (Only for LCD Backlight Inverter Circuit/6.3kVp-p) Lead Code Coating Extension e A3 Up to the end of crimp (in mm) ø d 0.6–0.05 D max. T max. 4.0 max. 25.0 min. e ø dF–1.0 [Bulk] Vertical Crimp Long (A3) D max. T max. 4.0 max. 3.5–0.5 F–0.8 e ø d 1.0 (in mm) Lead Code Coating Extension e J3 Up to the end of crimp ø d 0.6–0.05 [Bulk] Vertical Crimp Short (J3) n Marking SL ø7-9mm Temperature Characteristics Nominal Capacitance Capacitance Tolerance Rated Voltage Manufactured Date Code Actual value Marked with code Marked with code (Marked with 6K~) Abbreviation Upper horizontal line – Temp. Char. Nominal Body Diameter 33J 6K~ CH 10J 6K~ SL Characteristics Part Number Rated Voltage (Vp-p) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping DEF1XLH100J ppp 6300 10 –5% 7 7.5 6.0 A3B J3B N3A DEF1XLH120J ppp 6300 12 –5% 7 7.5 6.0 A3B J3B N3A DEF1XLH150J ppp 6300 15 –5% 7 7.5 6.0 A3B J3B N3A DEF1XLH180J ppp 6300 18 –5% 7 7.5 6.0 A3B J3B N3A DEF1XLH220J ppp 6300 22 –5% 7 7.5 6.0 A3B J3B N3A DEF1XLH270J ppp 6300 27 –5% 8 7.5 6.0 A3B J3B N3A DEF1XLH330J ppp 6300 33 –5% 9 7.5 6.0 A3B J3B N3A DEF1XLH390J ppp 6300 39 –5% 9 7.5 6.0 A3B J3B N3A DEF1XLH470J ppp 6300 47 –5% 9 7.5 6.0 A3B J3B N3A Three blank columns are filled with the lead and packaging codes. Please refer to the three columns on the right for the appropriate code. n Features 1. We design capacitors in much more compact size than DEC series, having reduced the diameter by 20% max. 2. Low self-heating at high frequency and high voltage due to low dielectric loss of the ceramic material. 3. Operating temperature range is guaranteed up to 105 degrees C. 4. Coated with flame-retardant epoxy resin (equivalent to UL94V-0 standard). 5. Taping available for automatic insertion. n Applications Ideal for use in LCD backlight inverter. Do not use these products in any Automotive Power train or Safety equipment including Battery charger for Electric Vehicles and Plug-in Hybrid. Only Murata products clearly stipulated as "for Automotive use" on its catalog can be used for automobile applications such as Power train and Safety equipment. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. C H C haracteristics Part Number Rated Voltage (Vp-p) Capacitance (pF) Body Dia. D (mm) Lead Spacing F (mm) Body Thickness T (mm) Lead Package Long Bulk Lead Package Short Bulk Lead Package Taping D EF2C LH 020C ppp 6300 2 –0.25pF 7 7.5 6.0 A3B J3B N3A D EF2C LH 030C ppp 6300 3 –0.25pF 7 7.5 6.0 A3B J3B N3A D EF2C LH 040C ppp 6300 4 –0.25pF 7 7.5 6.0 A3B J3B N3A D EF2C LH 050D ppp 6300 5 –0.5pF 7 7.5 6.0 A3B J3B N3A D EF2C LH 060D ppp 6300 6 –0.5pF 7 7.5 6.0 A3B J3B N3A D EF2C LH 070D ppp 6300 7 –0.5pF 8 7.5 6.0 A3B J3B N3A D EF2C LH 080D ppp 6300 8 –0.5pF 8 7.5 6.0 A3B J3B N3A D EF2C LH 090D ppp 6300 9 –0.5pF 8 7.5 6.0 A3B J3B N3A D EF2C LH 100Jppp 6300 10 –5% 8 7.5 6.0 A3B J3B N3A Three blank colum ns are filled w ith the lead and packaging codes. Please refer to the three colum ns on the right for the appropriate code.
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No. Item Operating Temperature Range Specifications -25 to +105°C Test Method No marked defect on appearance form and dimensions are within specified range. To be easily legible The capacitor should be visually inspected for evidence of defect. Dimensions should be measured with slide calipers. 3 Marking The capacitor should be visually inspected. The capacitor should not be damaged when DC12.6kV is applied between the lead wires for 1 to 5 sec. (Charge/Discharge currentV50mA) The capacitor is placed in the container with metal balls of diameter 1mm so that each lead wire, short circuited, is kept about 2.0mm off the metal balls as shown in the figure at right, and DC voltage of 1.3kV is applied for 1 to 5 sec. between capacitor lead wires and metal balls. (Charge/Discharge currentV50mA) Resistance (I.R.) The insulation resistance should be measured with DC500 ±50V within 60±5 sec. of charging. About 2.0m m M etal balls 7 Q Between Lead Wires 10000M Ω min. 6 Capacitance The capacitance should be measured at 20°C with 1±0.2MHz and AC5V(r.m.s.) max.Within specified tolerance 400+20C*2min. (30pF under) 1000 min. (30pF min.) The Q should be measured at 20°C with 1±0.2MHz and AC5V(r.m.s.) max. The capacitance measurement should be made at each step specified in Table. Lead wire should not be cut off. Capacitor should not be broken. As shown in the figure at right, fix the body of the capacitor and apply a tensile weight gradually to each lead wire in the radial direction of the capacitor up to 10N and keep it for 10±1 sec. Bending Each lead wire should be subjected to 5N of weight and bent 90°at the point of egress, in one direction, then returned to its original position and bent 90°in the opposite direction at the rate of one bend in 2 to 3 sec. Appearance No marked defect The capacitor should be firmly soldered to the supporting lead wire and vibrated at a frequency range of 10 to 55Hz, 1.5mm in total amplitude, with about a 1 minute rate of vibration change from 10Hz to 55Hz and back to 10Hz. Apply for a total of 6 hrs., 2 hrs. each in 3 mutually perpendicular directions. Lead wire should be soldered with uniform coating on the axial direction over 3/4 of the circumferential direction. The lead wire of a capacitor should be dipped into a ethanol solution of 25wt% rosin and then into molten solder for 2±0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2.0mm from the root of lead wires. Temp. of solder: Lead Free Solder (Sn-3Ag-0.5Cu) 245±5°C H63 Eutectic Solder 235±5°C Capacitance Within specified tolerance Q 400+20C*2min. (30pF under) 1000 min. (30pF min.) Continued on the following page. Temp. (° C) 2 3 4 5 20±2 -25±3 20±2 85±2 20±2 Step 1 W *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 "C" expresses nominal capacitance value (pF). (Non-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±2.5% Per item 4. The lead wire should be immersed into the melted solder of 350±10°C up to about 1.5 to 2.0mm from the main body for 3.5±0.5 sec. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition* Char. CH: 0±60ppm/°C Char. SL: +350 to -1000ppm/°C (Temp. range: +20 to +85°C) D EF Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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No. Item Specifications Test Method Steady State) Appearance Capacitance Change Q No marked defect Within ±5% 200+10C*2min. (10pF under) 275+5/2C*2min.(10pF min. and 30pF under) 350 min. (30pF min.) I.R. 1000M Ω min. Set the capacitor for 500 +24/-0 hrs. at 40±2°C in 90 to 95% relative humidity. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1.
16 Life
Appearance No marked defect Capacitance Change Within ±3% Q 200+10C*2min. (10pF under) 275+5/2C*2min.(10pF min. and 30pF under) 350 min. (30pF min.) I.R. 2000M Ω min. Apply 6.3kVp-p at the frequency in Table for 1000+48/-0 hrs. at 105±2°C with a relative humidity of 50% max. (Charge/Discharge currentV50mA.) <Frequency> Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition*1. Temperature and Immersion Cycle Appearance No marked defect Capacitance Change Within ±3% Q 200+10C* 2min. (10pF under) 275+5/2C*2min.(10pF min. and 30pF under) 350 min. (30pF min.) I.R. 2000M Ω min. Dielectric Strength (Between Lead Wires) Per item 4. The capacitor should be subjected to 5 temperature cycles, then consecutively to 2 immersion cycles. <Temperature Cycle> Cycle time: 5 cycle <Immersion Cycle> Cycle time: 2 cycle Post-treatment: Capacitor should be stored for 4 to 24 hrs. at room condition* *1 "room condition" Temperature: 15 to 35°C, Relative humidity: 45 to 75%, Atmospheric pressure: 86 to 106kPa *2 "C" expresses nominal capacitance value (pF). Continued from the preceding page. Time (min) -25±3 30 2 Room Temp. 3 3 105±3 30 4 Room Temp. 3 Step Temperature (° C) Time (min) 1 65+5/-0 Clean water15 2 0±3 Salt water15 Step Temperature (° C) Immersion Water (On-Preheat) Appearance Capacitance Change Dielectric Strength (Between Lead Wires) No marked defect Within ±2.5% Per item 4. First the capacitor should be stored at 120+0/-5°C for 60+0/-5 sec. Then, as in figure, the lead wires should be immersed in solder of 260+0/-5°C up to 1.5 to 2.0mm from the root of terminal for 7.5+0/-1 sec. Post-treatment: Capacitor should be stored for 1 to 2 hrs. at room condition* /, /, /, /, /, /, /, /, /, /, /, /, /, Therm al Screen C apacitor 1.5 to 2.0m m M olten Solder to 10 100 12 to 22 45 27 to 47 33 Capacitance (pF) Frequency (kHz) D EF Series Specifications and Test M ethods !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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H igh Voltage C eram ic C apacitors C haracteristics D ata (Typical Exam ple) !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n Capacitance - Temperature Characteristics -30 -20 -10 -40 -20 0 20 40 60 80 100 120 140 Tem perature (°C ) C ap. C hange (% ) D C R R C D CH, SL, B, E, F char. C, D, R char. -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 -40 -20 0 20 40 60 80 100 120 Tem p. (°C ) B E FF SL SL C ap. C hange (% ) C H E B C H n Capacitance - DC Bias Characteristics 0 500 1000 1500 2000 -20 -40 -60 -80 -100 D EA1X3D 221JA2B D EH R 33D 102KA3B D EBB33D 102KA2B D EBE33D 222ZA2B D C Bias (V) C ap. C hange (% ) D ESD 33A471KA2B
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Length from hole center to component center Length from hole center to lead Body diameter Deviation along tape, left or right Carrier tape width Position of sprocket hole Lead distance between reference and bottom planes Protrusion length Diameter of sprocket hole Lead diameter Total tape thickness Total thickness, tape and lead wire Body thickness Portion to cut in case of defect Hold down tape width Hold down tape position Coating extension on lead Deviation across tape, front Deviation across tape, rear P F D W W 1 H H 0 r φD 0 φd T L W 0 W 2 e ∆h1 ∆h2 15.0 20.0 15.0–0.3 7.5–1.0 7.5–1.5 3.75–1.0 0–2.0 0–1.0 30.0 See the individual product specifications. 18.0–0.5 9.0–0.5 18.0 2.0 m ax. 1.0 m ax. (in : m m ) P3 N3 N7Code 12.7–0.3 5.0 6.35–1.3 3.85–0.7 12.7 N2P2 +0.8 –0.2 +1.5 –1.0 +2.0 +0.5 to -1.0 4.0–0.1 0.6–0.05 0.6–0.3 1.5 m ax. See the individual product specifications. 11.0 11.5 m in. 1.5–1.5 3.0 m ax. (Vertical crim p type: U p to the end of crim p) –1.0 15.0m m pitch / lead spacing 7.5m m taping Straight type (Lead C ode: P3) 15.0m m pitch / lead spacing 7.5m m taping Vertical crim p type (Lead C ode: N 3) L P2 P D F ød øD 0R W 0 W 1 W H W 2 L F ød øD 0 R W 0 W 2 W 1 W H 0 e P D L P D ∆S F ød øD 0 R W 0 W 1 W H 0 e W 2 30.0m m pitch / lead spacing 7.5m m taping Vertical crim p type (Lead C ode: N 7) L P D ∆S F ød øD 0 R W 0 W 2 W 1 W H 0 e 12.7m m pitch / lead spacing 5.0m m taping Vertical crim p type (Lead C ode: N 2) L P D ∆S F ød øD 0 R W 0 W 2 W 1 W H e 12.7m m pitch / lead spacing 5.0m m taping Straight type (Lead C ode: P2) n Taping Specifications C ontinued on the follow ing page. T m ax. ∆h1 ∆h2 O ∗M arked side 3.0 m ax. Lead C ode N 2, N 3, N 7 H 0 Lead C ode P2, P3 4.0 m ax. Lead C ode N 3 Except D EF Series D EF Series H 0 ∗t2 +1.5 –1.020.0 +2.0 –018.0 e H igh Voltage C eram ic C apacitors Packaging !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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[Bulk] 1,000 pcs. [Taping] 1,500 pcs. (Lead C ode: P2, N 2) 1,000 pcs. (Lead C ode: P3, N 3*) 500 pcs. (Lead C ode: N 7) * 900 pcs. for 2kV, 3.15kV and D EF Series “M inim um Q uantity” m eans the num bers of units of each delivery or order. The quantity should be an integral m ultiple of the “m inim um quantity”. (Please note that the actual delivery quantity in a package m ay change som etim es.) TapingBulk Polyethylene Bag Am m o Pack n Minimum Quantity (Order in Sets Only) [Bulk] 3,000 pcs. [Taping] 3,000 pcs. (Lead C ode: P2, N 2) 3,000 pcs. (Lead C ode: P3, N 3*) 2,000 pcs. (Lead C ode: N 7) * 2,700 pcs. for 2kV, 3.15kV and D EF Series n Packaging Styles n Minimum Order Quantity C ontinued from the preceding page. H igh Voltage C eram ic C apacitors Packaging !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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When DC-rated capacitors are to be used in AC or ripple current circuits, be sure to maintain the Vp-p value of the applied voltage or the Vo-p which contains DC bias within the rated voltage range. When the voltage is applied to the circuit, starting or stopping may generate irregular voltage for a transit period because of resonance or switching. Be sure to use a capacitor with a rated voltage range that includes these irregular voltages. When using the low-dissipation DEA (SL Char.) /DEC (SL Char.) /DEH (C, R Char.) /DES (D Char.) series in a high- frequency and high-voltage circuit, be sure to read the instructions in item 4. When DC-rated capacitors are to be used in input circuits from commercial power source (AC filter), be sure to use Safety Certified Capacitors because various regulations on withstand voltage or impulse withstand established for each equipment should be taken into considerations. Keep the surface temperature of a capacitor below the upper limit of its rated operating temperature range. Be sure to take into account the heat generated by the capacitor itself. When the capacitor is used in a high- frequency current, pulse current or similar current, it may self-generate heat due to dielectric loss. The frequency of the applied sine wave voltage should be less than 300kHz. The applied voltage load (*) should be such that the capacitor's self-generated heat is within 20°C in an atmosphere temperature of 25°C. When measuring, use a thermocouple of small thermal capacity-K of ø0.1mm in conditions where the capacitor is not affected by radiant heat from other components or surrounding ambient fluctuations. Excessive heat may lead to deterioration of the capacitor's characteristics and reliability. (Never attempt to perform measurement with the cooling fan running. Otherwise, accurate measurement cannot be ensured.) *Before using the low-dissipation DEA/DEC (SL Char.) /DEH/DES series, be sure to read the instructions in item 4. Voltage Positional Measurement DC Voltage DC+AC Voltage AC Voltage Pulse Voltage (1) Pulse Voltage (2) V0-p V0-p Vp-p Vp-p Vp-p 1. Operating Voltage <DES/DEH/DEA/DEB/DEC Series> 2. Operating Temperature and Self-generated Heat When capacitor is broken, failure may result in a short circuit. Be sure to provide an appropriate fail-safe function like a fuse on your product if failure would follow an electric shock, fire or fume. 3. Fail-Safe Continued on the following page. n !Caution (Rating) High Voltage Ceramic Capacitors !Caution !Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
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D ue to the low self-heating characteristics of low - dissipation capacitors, the allow able electric pow er of these capacitors is generally m uch higher than that of B characteristic capacitors. H ow ever, in case the self- heating tem perature is 20°C under a high-frequency voltage w hose peak-to-peak value equals the capacitor's rated voltage, the capacitor's pow er consum ption m ay exceed its allow able electric pow er. Therefore, w hen using the D EA/D EC (SL C har.) /D EH /D ES series in a high-frequency and high-voltage circuit w ith a frequency of 1kH z or higher, m ake sure that the Vp-p values including the D C bias, do not exceed the applied voltage value specified in Table 1. Also m ake sure that the self-heating tem perature (the difference betw een the capacitor's surface tem perature and the capacitor's am bient tem perature ) at an am bient tem perature of 25°C does not exceed the value specified in Table 1. As show n in Fig. 2, the self-heating tem perature depends on the am bient tem perature. Therefore, if you are not able to set the am bient tem perature to approxim ately 25°C , please contact our sales representatives or product engineers. W e are offering free softw are, The C apacitor Selection Tool: by Voltage Form * w hich w ill assist you in selecting a suitable capacitor. The softw are can be dow nloaded from M urata's Internet W eb site. (http://w w w .m urata.com /designlib/m m csv_e.htm l) By inputting capacitance values and applied voltage w aveform of the specific capacitor series, this softw are w ill calculate the capacitor's pow er consum ption and list suitable capacitors. W hen the result of this softw are is different from the m easurem ent result of the self-heating tem perature on your side, please contact our sales representatives or product engineers. * Subject series are below .
- D EA/D EC (SL char.) /D EH /D ES/D EF Series FAILURE TO FOLLOW THE ABOVE CAUTIONS (ITEMS 1 TO 4) MAY RESULT, WORST CASE, IN A SHORT CIRCUIT AND CAUSE FUMING OR PARTIAL DISPERSION WHEN THE PRODUCT IS USED. 4. Load Reduction and Self-generated Heat During Application of High-frequency and High-voltage <Table 1> Allowable Conditions at High-frequency <Fig. 1> Relationship Between Applied Voltage and Self-heating Temperature (Allowable Self-heating Temp. at 25°C Ambient Temp.) Allowable Conditions at High-frequency *3 Series Temp. Char. DC Rated Voltage Applied Voltage (Max.) Self-heating Temp. (25°C Ambient Temp.) *1 Capacitor's Ambient Temp. *2 D EH D EA R C R SL 250V 500V 1kV 2kV 3.15kV 1kV 2kV 3.15kV 250Vp-p 500Vp-p 800Vp-p 1000Vp-p 1400Vp-p 2000Vp-p 1600Vp-p 3150Vp-p 1000Vp-p 2000Vp-p 3150Vp-p 10°C M ax. 20°C M ax. 20°C M ax. 5°C M ax. 20°C M ax. 5°C M ax. 20°C M ax. 5°C M ax. 5°C M ax. 6.3kV 6300Vp-pD EC SL 5°C M ax. D ES D 500V 500Vp-p 15°C M ax. 1kV 800Vp-p 1000Vp-p 5°C M ax. -25 to +85°C D EH Series R C har. (R ated Voltage: D C 1kV to 3.15kV) 100 1000 10000 Applied Voltage (Vp-p) Allow able Self-heating Tem p. (°C ) R ated Voltage: 1kV 2kV 3.15kV *1 Fig. 1 show s the relationship betw een the applied voltage and the allow able self- heating tem perature regarding 1 to 3.15kV rated voltage of the D EH series R characteristic and 1kV rated voltage of the D ES series D characteristic. *2 W hen the am bient tem perature is 85 to 125°C , the applied voltage needs to be further reduced. If the D EA/D EH /D ES series needs to be used at an am bient tem perature of 85 to 125°C , please contact our sales representatives or product engineers. *3 Fig. 3 show s reference data on the allow able voltage - frequency characteristics for a sine w ave voltage. D ES Series D C har. (R ated Voltage: D C 1kV) 100 1000 10000 Applied Voltage (Vp-p) Allow able Self-heating Tem p. (°C ) R ated Voltage: D C 1kV Continued from the preceding page. Continued on the following page. H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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<Fig. 2> Dependence of Self-heating Temperature on Ambient Temperature D EH Series R C har. (R ated Voltage: D C 250V) and D EA/D EC Series SL C har. (R ated Voltage: D C 1kV to 6.3kV) D EH Series C C har. and R C har. (R ated Voltage: D C 1kV to 3.15kV) 0 20 40 60 80 100 Am bient Tem perature (°C ) Self-heating Tem perature (°C ) (25) C C har. (500V) R C har. (1 to 3.15kV) 0 20 40 60 80 100 Am bient Tem perature (°C ) Self-heating Tem perature (°C ) (25) R C har. (250V) SL C har. (1 to 6.3kV) D ES Series D C har. (R ated Voltage: D C 500V to 1kV) 0 20 40 60 80 100 Am bient Tem perature (°C ) Self-heating Tem perature (°C ) (25) D C har. (500V to 1kV) Continued from the preceding page. Continued on the following page. H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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D EH Series R C har. (R ated Voltage: D C 1kV) 100 1 10 100 1000 1000 10000 Frequency (kH z) Allow able Voltage (Vp-p) 1000pF 220pF 470pF 2200pF 4700pF D EH Series R C har. (R ated Voltage: D C 2kV) 100 1 10 100 1000 1000 10000 Frequency (kH z) Allow able Voltage (Vp-p) 220pF 470pF 1000pF 2200pF 4700pF D EH Series R C har. (R ated Voltage: D C 3.15kV) 100 1 10 100 1000 1000 10000 (3150) Frequency (kH z) Allow able Voltage (Vp-p) 220pF 470pF 1000pF 2200pF Because of the influence of harm onics, w hen the applied voltage is a rectangular w ave or pulse w ave voltage (instead of a sine w ave voltage), the heat generated by the capacitor is higher than the value obtained by application of the sine w ave w ith the sam e fundam ental frequency. R oughly calculated for reference, the allow able voltage for a rectangular w ave or pulse w ave corresponds approxim ately to the allow able voltage for a sine w ave w hose fundam ental frequency is tw ice as large as that of the rectangular w ave or pulse w ave. This allow able voltage, how ever, varies depending on the voltage and current w aveform s. Therefore, you are requested to m ake sure that the self- heating tem perature is not higher than the value specified in Table 1. <Fig. 3> Allowable Voltage (Sine Wave Voltage) - Frequency Characteristics (At Ambient Temperature of 85°C or less) D EH Series R C har. (R ated Voltage: D C 250V) 100 1 10 100 1000 1000 (250) 10000 Frequency (kH z) Allow able Voltage (Vp-p) to 2200pF 4700pF 10000pF D EH Series C C har. (R ated Voltage: D C 500V) 100 1 10 100 1000 1000 (500) 10000 Frequency (kH z) Allow able Voltage (Vp-p) to 470pF 2200pF 1000pF 4700pF Continued from the preceding page. Continued on the following page. H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
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- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
D EA Series SL C har. (R ated Voltage: D C 3.15kV) 100 1 10 100 1000 1000 (3150) 10000 Frequency (kH z) Allow able Voltage (Vp-p) 10pF 220pF 100pF D EC Series SL C har. (R ated Voltage: D C 6.3kV) 100 1 10 100 1000 1000 10000 Frequency (kH z) Allow able Voltage (Vp-p) D EA Series SL C har. (R ated Voltage: D C 2kV) 100 1 10 100 1000 1000 10000 Frequency (kH z) Allow able Voltage (Vp-p) 10pF 100pF 220pF 470pF D EA Series SL C har. (R ated Voltage: D C 1kV) 100 1 10 100 1000 1000 10000 Frequency (kH z) Allow able Voltage (Vp-p) to 100pF 220pF 470pF Because of the influence of harm onics, w hen the applied voltage is a rectangular w ave or pulse w ave voltage (instead of a sine w ave voltage), the heat generated by the capacitor is higher than the value obtained by application of the sine w ave w ith the sam e fundam ental frequency. R oughly calculated for reference, the allow able voltage for a rectangular w ave or pulse w ave corresponds approxim ately to the allow able voltage for a sine w ave w hose fundam ental frequency is tw ice as large as that of the rectangular w ave or pulse w ave. This allow able voltage, how ever, varies depending on the voltage and current w aveform s. Therefore, you are requested to m ake sure that the self- heating tem perature is not higher than the value specified in Table 1. <Fig. 3 (continued)> Allowable Voltage (Sine Wave Voltage) - Frequency Characteristics (At Ambient Temperature of 85°C or less) Continued on the following page. to 22pF 47pF 100pF (6300) Continued from the preceding page. H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
Because of the influence of harm onics, w hen the applied voltage is a rectangular w ave or pulse w ave voltage (instead of a sine w ave voltage), the heat generated by the capacitor is higher than the value obtained by application of the sine w ave w ith the sam e fundam ental frequency. R oughly calculated for reference, the allow able voltage for a rectangular w ave or pulse w ave corresponds approxim ately to the allow able voltage for a sine w ave w hose fundam ental frequency is tw ice as large as that of the rectangular w ave or pulse w ave. This allow able voltage, how ever, varies depending on the voltage and current w aveform s. Therefore, you are requested to m ake sure that the self- heating tem perature is not higher than the value specified in Table 1. <Fig. 3 (continued)> Allowable Voltage (Sine Wave Voltage) - Frequency Characteristics (At Ambient Temperature of 85°C or less) Continued from the preceding page. 100 1 10 100 1000 1000 (500) 10000 to 1000pF 4700pF 2200pF 100 1 10 100 1000 1000 10000 100pF 470pF 220pF 1000pF 2200pF 4700pF D ES Series D C har. (R ated Voltage: D C 1kV) Frequency (kH z) Allow able Voltage (Vp-p) D ES Series D C har. (R ated Voltage: D C 500V) Frequency (kH z) Allow able Voltage (Vp-p) Continued on the following page. H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
The frequency of the applied sine w ave voltage should be less than 100kH z. The applied voltage should be less than the value show n in figure below . In case of non-sine w ave w hich includes a harm onic frequency, please contact our sales representatives or product engineers. Keep the surface tem perature of a capacitor below the upper lim it of its rated operating tem perature range. Be sure to take into account the heat generated by the capacitor itself. W hen the capacitor is used in a high- frequency current, pulse current or sim ilar current, it m ay self-generate heat due to dielectric loss. Excessive heat m ay lead to deterioration of the capacitor's characteristics and reliability. (N ever attem pt to perform m easurem ent w ith the cooling fan running. O therw ise, accurate m easurem ent cannot be ensured.) Voltage Positional Measurement AC Voltage Vp-p 1. Operating Voltage <DEF Series> 2. Operating Temperature and Self-generated Heat W hen capacitor is broken, failure m ay result in a short circuit. Be sure to provide an appropriate fail-safe function like a fuse on your product if failure could result in an electric shock, fire or fum e. 3. Fail-Safe The tem perature of the surface of capacitor: below the upper lim it of its rated operating tem perature range (including self-heating.) 12 to 22pF to 10pF 27 to 47pF The capacitor can be applied m axim um 6.3kVp-p at 100kH z w hen lam p turn on. Continued from the preceding page. 1000 1 10 100 10000 Frequency (kH z) Allow able Voltage (Vp-p) (6300) H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
H igh Voltage C eram ic C apacitors !C aution !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n !Caution (Storage and Operating Condition) O perating and Storage Environm ent The insulating coating of capacitors does not form a perfect seal; therefore, do not use or store capacitors in a corrosive atm osphere, especially w here chloride gas, sulfide gas, acid, alkali, salt or the like are present. And avoid exposure to m oisture. Before cleaning, bonding or m olding this product, verify that these processes do not affect product quality by testing the perform ance of a cleaned, bonded or m olded product in the intended equipm ent. Store the capacitors w here the tem perature and relative hum idity do not exceed -10 to 40 degrees centigrade and 15 to 85% . U se capacitors w ithin 6 m onths after delivery. FAILU R E TO FO LLO W TH E ABO VE C AU TIO N S M AY R ESU LT, W O R ST C ASE, IN A SH O R T C IR C U IT AN D C AU SE FU M IN G O R PAR TIAL D ISPER SIO N W H EN TH E PR O D U C T IS U SED . n !Caution (Soldering and Mounting) 1. Vibration and Im pact D o not expose a capacitor or its leads to excessive shock or vibration during use. 2. Soldering W hen soldering this product to a PC B/PW B, do not exceed the solder heat resistance specification of the capacitor. Subjecting this product to excessive heating could m elt the internal junction solder and m ay result in therm al shocks that can crack the ceram ic elem ent. W hen soldering capacitor w ith a soldering iron, it should be perform ed in follow ing conditions. Tem perature of iron-tip: 400 degrees C . m ax. Soldering iron w attage: 50W m ax. Soldering tim e: 3.5 sec. m ax. 3. Bonding, R esin M olding and C oating Before bonding, m olding or coating this product, verify that these processes do not affect the quality of capacitor by testing the perform ance of the bonded, m olded or coated product in the intended equipm ent. In case the am ount of applications, dryness/hardening conditions of adhesives and m olding resins containing organic solvents (ethyl acetate, m ethyl ethyl ketone, toluene, etc.) are unsuitable, the outer coating resin of a capacitor is dam aged by the organic solvents and it m ay result, w orst case, in a short circuit. The variation in thickness of adhesive, m olding resin or coating m ay cause outer coating resin cracking and/or ceram ic elem ent cracking of a capacitor in a tem perature cycling. FAILU R E TO FO LLO W TH E ABO VE C AU TIO N S M AY R ESU LT, W O R ST C ASE, IN A SH O R T C IR C U IT AN D C AU SE FU M IN G O R PAR TIAL D ISPER SIO N W H EN TH E PR O D U C T IS U SED . n !Caution (Handling) Vibration and Im pact D o not expose a capacitor or its leads to excessive shock or vibration during use. FAILU R E TO FO LLO W TH E ABO VE C AU TIO N S M AY R ESU LT, W O R ST C ASE, IN A SH O R T C IR C U IT AN D C AU SE FU M IN G O R PAR TIAL D ISPER SIO N W H EN TH E PR O D U C T IS U SED .
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
H igh Voltage C eram ic C apacitors N otice !N ote • Please read rating and !C AU TIO N (for storage, operating, rating, soldering, m ounting and handling) in this catalog to prevent sm oking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. n Notice (Soldering and Mounting) C leaning (ultrasonic cleaning) To perform ultrasonic cleaning, observe the follow ing conditions. R inse bath capacity: O utput of 20 w atts per liter or less. R insing tim e: 5 m in. m axim um . D o not vibrate the PC B/PW B directly. Excessive ultrasonic cleaning m ay lead to fatigue destruction of the lead w ires. n Notice (Rating) C apacitance C hange of C apacitor 1. D EA/D EC /D EF Series (Tem p. C har. C H , SL) C apacitance m ight change a little depending on the surrounding tem perature or an applied voltage. Please contact us if you intend to use this product in a strict tim e constant circuit. 2. D EB/D EC Series (Tem p. C har. B, E, F) C apacitors have an aging characteristic, w hereby the capacitor continually decreases its capacitance slightly if the capacitor is left on for a long tim e. M oreover, capacitance m ight change greatly depending on the surrounding tem perature or an applied voltage. So, it is not likely to be suitable for use in a tim e constant circuit. Please contact us if you need detailed inform ation. 3. D EH /D ES Series C apacitance m ight change greatly depending on the surrounding tem perature or an applied voltage. So, it is not likely to be suitable for use in a tim e constant circuit. Please contact us if you need detailed inform ation.
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
!Note • Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
- This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. Plant Applied Standard ISO9001Izumo Murata Manufacturing Co., Ltd. Taiwan Murata Electronics Co., Ltd. ISO9001Murata Electronics (Thailand), Ltd. ISO9001 Manufacturing plants which produce the products in this catalog have obtained the ISO9000 quality system certificate. Safety Certified Ceramic Capacitors/High Voltage Ceramic Capacitors ISO9000 Certifications
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29
- This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
- This PDF catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. !Note C85E.pdf 08.10.29