RPEF51H224Z2M1A03A MURATA | Alldatasheet

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Cat.No.C49E-21 Radial Lead Type Monolithic Ceramic Capacitors !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 review our product specifications or consult the approval sheet for product specifications before ordering.C49E.pdf May.10,2011

!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 review our product specifications or consult the approval sheet for product specifications before ordering.C49E.pdf May.10,2011 o Part Numbering (Part Number) w qProduct ID wSeries/Terminal RP RH RD E E/D E Radial Lead Type Monolithic Ceramic Capacitors (DC25V-DC100V) Radial Lead Type Monolithic Ceramic Capacitors (For Commercial Use Only) (DC25V-DC630V) Radial Lead Type Monolithic Ceramic Capacitors 150°C max. (for Automotive) (DC50V-DC100V) Product ID Series/Terminal RP q E e r t 104 u i y K o A03 A tCapacitance Expressed by three-digit alphanumerics. The unit is pico-farad (pF). The first and second figures are significant digits, and the third figure expresses the number of zeros that follow the two numbers. If there is a decimal point, it is expressed by the capital letter "R ." In this case, all figures are significant digits. yCapacitance Tolerance Code C D J K M Z C0G C0G/X8G X7S/X7T/X7R/ X8L X7S/X7T/X7R/ X8L F/Y5V Radial Lead Type Monolithic Ceramic Capacitors eTemperature Characteristics Code 25 to 125°C 25 to 150°C -55 to 125°C -55 to 125°C -25 to 85°C -30 to 85°C -55 to 125°C 125 to 150°C -55 to 125°C Temperature Range 0–30ppm/°C 0–30ppm/°C –22% +22, -33% +30, -80% +22, -82% –15% +15, -40% –15% Capacitance Change or Temperature Coefficient -55 to 125°C -55 to 150°C -55 to 125°C -55 to 125°C -25 to 85°C -30 to 85°C -55 to 150°C -55 to 125°C Operating Temperature Range C0G* X8G* X7S X7T F Y5V X8L X7R Temperature Characteristics rRated Voltage Code DC25V DC50V DC100V DC250V DC450V DC630V Rated Voltage Temperature Characteristics V5pF : 1pF Step 6 to 9pF : 1pF Step U10 : E12 Series E6 Series E3 Series E3 Series Capacitance Step –0.25pF –0.5pF –5% –10% –20% +80%, -20% Capacitance Tolerance Reference Temperature 25°C 25°C 25°C 25°C 20°C 25°C 25°C 25°C Char. C0G X8G Nominal Values (ppm/˚C) *1 -55˚C Max. Min. Capacitance Change from 25˚C (%) -30˚C Max. Min. -10˚C Max. Min. * Please refer to table for Capacitance change under reference temperature.
  • Capacitance change from each temperature *1: Nominal values denote the temperature coefficient within a range of 25 to 125˚C. Continued on the following page.

!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 review our product specifications or consult the approval sheet for product specifications before ordering. C 49E.pdf M ay.10,2011 oIndividual Specification Code Expressed by three-digit alphanumerics uDimensions (LxW) Code U W 4.0g3.5mm or 5.0g3.5mm (Depends on Part Number List) 7.5g7.5mm* 10.0g10.0mm 12.5g12.5mm 7.5g5.5mm 7.7g12.5mm* 5.5g7.5mm iLead Style Code Lead Style Lead Spacing A 2 B 1 C 1 D B E1/E2 K 1 M 1/M 2 S1/S2 2.5mm 5.0mm 10.0mm 2.5mm 5.0mm 5.0mm 5.0mm 2.5mm 2.5mm Straight Long Straight Long Straight Long Straight Taping Straight Taping Inside Crimp Inside Crimp Taping Outside Crimp Outside Crimp Taping Dimensions (LxW) Lead distance between reference and bottom planes. E1: H = 17.5–0.5mm E2: H = 20.0–0.5mm !0Packaging Code A B Ammo Pack Bulk Packaging * DC630V: W+0.5mm Continued from the preceding page.

C49E.pdf May.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Radial Lead Type Monolithic Ceramic Capacitors RPE Series (DC25V-DC100V) n Features 1. The RPE series capacitors have small dimensions, large capacitance, and a capacity volume ratio of 10 micro F/cm cubed, close to that of electrolytic capacitors. They do not have polarity. 2. Excellent frequency characteristics and due to their small internal inductance are suitable for high frequencies. 3. Not coated with wax so there is no change in their exterior appearance due to the outflow of wax during soldering or solvent during cleansing. 4. They are highly nonflammable, having characteristics equivalent to the UL94V-0 standard. (in mm) L max. ød : 0.5–0.05 T max. W max.25.0 min. W1 max. F–0.8 ∗ ∗ Coating extension does not exceed the end of the lead bend.
  • Lead Wire : Solder Coated Copper Wire or Solder Coated CP Wire Dimensions code: 2/3 Lead style code: P1 (in mm) ∗ Coating extension does not exceed the end of the lead bend.
  • Lead Wire : Solder Coated Copper Wire or Solder Coated CP Wire ød : 0.5–0.05 T max.L max. W max.25.0 min. W1 max. F–0.8 Dimensions code: 2/3/8 Lead style code: K1 (in mm) T max.L max. ød : 0.5–0.05 W max.25.0 min. 1.5 max. F–0.8
  • Lead Wire : Solder Coated Copper Wire or Solder Coated CP Wire Dimensions code: 5/6/7 Lead style code: B1/C1 n Dimensions Dimensions and Lead Style Code Dimensions (mm) L W W1 T F d 2P1/2S1/2S2 2K1/2M1/2M2 3P1/3S1/3S2 3K1/3M1/3M2 5B1/5E1/5E2 6B1/6E1/6E2 7C1

0.52.56.3 See

4.55.0 0.55.0-7.57.5 0.55.0-10.010.0 0.510.0-12.512.5 Continued on the following page.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Continued from the preceding page. n Marking Type Temp. Char. Individual Specification Code App Bpp Zpp Individual Specification Code Except App Bpp Zpp Dimensions Code 3, 8 5, 6, 7 Temperature Characteristics Nominal Capacitance Capacitance Tolerance Rated Voltage Manufacturer's Identification Temperature Compensating Type High Dielectric Constant Type C0G X7R Y5V 102J 222K 224Z5A 682 J5A M M 224 K5C 225 K5C 684 K5C M M M 474 Z5F M U nder 100pF: Actual value 100pF and over: m arked w ith 3 figures — — M arked w ith code M arked w ith code (C 0G char.: A, X7R char.: C , Y5V char.: F) A part is om itted (Please refer to the m arking exam ple.) M arked w ith code (D C 25V: 2, D C 50V: 5, D C 100V: 1) A part is om itted (Please refer to the m arking exam ple.) M arked w ith A part is om itted (Please refer to the m arking exam ple.) M arked on both sides

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Tem perature C om pensating Type, C 0G C haracteristics Part Number Temp. Char. Rated Voltage (Vdc) Capacitance (pF) Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) R PE5C 1H 100J2ppZ03p C0G 50 10 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 100J2ppZ03p C0G 50 10 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 120J2ppZ03p C0G 50 12 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 120J2ppZ03p C0G 50 12 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 150J2ppZ03p C0G 50 15 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 150J2ppZ03p C0G 50 15 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 180J2ppZ03p C0G 50 18 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 180J2ppZ03p C0G 50 18 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 220J2ppZ03p C0G 50 22 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 220J2ppZ03p C0G 50 22 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 270J2ppZ03p C0G 50 27 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 270J2ppZ03p C0G 50 27 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 330J2ppZ03p C0G 50 33 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 330J2ppZ03p C0G 50 33 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 390J2ppZ03p C0G 50 39 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 390J2ppZ03p C0G 50 39 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 470J2ppZ03p C0G 50 47 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 470J2ppZ03p C0G 50 47 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 560J2ppZ03p C0G 50 56 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 560J2ppZ03p C0G 50 56 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 680J2ppZ03p C0G 50 68 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 680J2ppZ03p C0G 50 68 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 820J2ppZ03p C0G 50 82 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 820J2ppZ03p C0G 50 82 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 101J2ppA 03p C0G 50 100 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 101J2ppA 03p C0G 50 100 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 121J2ppA 03p C0G 50 120 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 121J2ppA 03p C0G 50 120 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 151J2ppA 03p C0G 50 150 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 151J2ppA 03p C0G 50 150 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 181J2ppA 03p C0G 50 180 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 181J2ppA 03p C0G 50 180 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 221J2ppA 03p C0G 50 220 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 221J2ppA 03p C0G 50 220 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 271J2ppA 03p C0G 50 270 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 271J2ppA 03p C0G 50 270 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 Continued on the following page.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Part Number Temp. Char. Rated Voltage (Vdc) Capacitance (pF) Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) Continued from the preceding page. R PE5C 1H 331J2ppA 03p C0G 50 330 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 331J2ppA 03p C0G 50 330 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 391J2ppA 03p C0G 50 390 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 391J2ppA 03p C0G 50 390 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 471J2ppA 03p C0G 50 470 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 471J2ppA 03p C0G 50 470 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 561J2ppA 03p C0G 50 560 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 561J2ppA 03p C0G 50 560 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 681J2ppA 03p C0G 50 680 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 681J2ppA 03p C0G 50 680 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 821J2ppA 03p C0G 50 820 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 821J2ppA 03p C0G 50 820 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 102J2ppA 03p C0G 50 1000 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 1H 102J2ppA 03p C0G 50 1000 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 1H 122J2ppA 03p C0G 50 1200 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 122J2ppA 03p C0G 50 1200 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 152J2ppA 03p C0G 50 1500 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 152J2ppA 03p C0G 50 1500 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 182J2ppC 03p C0G 50 1800 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 182J2ppA 03p C0G 50 1800 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 222J2ppC 03p C0G 50 2200 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 222J2ppA 03p C0G 50 2200 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 272J2ppC 03p C0G 50 2700 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 272J2ppA 03p C0G 50 2700 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 332J2ppC 03p C0G 50 3300 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 332J2ppA 03p C0G 50 3300 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 392J2ppC 03p C0G 50 3900 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 392J2ppA 03p C0G 50 3900 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 472J2ppC 03p C0G 50 4700 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 472J2ppA 03p C0G 50 4700 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 562J2ppC 03p C0G 50 5600 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 1H 562J2ppA 03p C0G 50 5600 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 682J2ppC 03p C0G 50 6800 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 822J2ppC 03p C0G 50 8200 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 1H 103J2ppC 03p C0G 50 10000 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 2A 100J2ppZ03p C0G 100 10 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 100J2ppZ03p C0G 100 10 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 120J2ppZ03p C0G 100 12 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 120J2ppZ03p C0G 100 12 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 Continued on the following page.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Part Number Temp. Char. Rated Voltage (Vdc) Capacitance (pF) Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) Continued from the preceding page. R PE5C 2A 150J2ppZ03p C0G 100 15 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 150J2ppZ03p C0G 100 15 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 180J2ppZ03p C0G 100 18 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 180J2ppZ03p C0G 100 18 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 220J2ppZ03p C0G 100 22 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 220J2ppZ03p C0G 100 22 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 270J2ppZ03p C0G 100 27 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 270J2ppZ03p C0G 100 27 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 330J2ppZ03p C0G 100 33 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 330J2ppZ03p C0G 100 33 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 390J2ppZ03p C0G 100 39 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 390J2ppZ03p C0G 100 39 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 470J2ppZ03p C0G 100 47 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 470J2ppZ03p C0G 100 47 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 560J2ppZ03p C0G 100 56 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 560J2ppZ03p C0G 100 56 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 680J2ppZ03p C0G 100 68 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 680J2ppZ03p C0G 100 68 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 820J2ppZ03p C0G 100 82 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 820J2ppZ03p C0G 100 82 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 101J2ppA 03p C0G 100 100 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 101J2ppA 03p C0G 100 100 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 121J2ppA 03p C0G 100 120 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 121J2ppA 03p C0G 100 120 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 151J2ppA 03p C0G 100 150 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 151J2ppA 03p C0G 100 150 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 181J2ppA 03p C0G 100 180 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 181J2ppA 03p C0G 100 180 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 221J2ppA 03p C0G 100 220 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 221J2ppA 03p C0G 100 220 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 271J2ppA 03p C0G 100 270 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 271J2ppA 03p C0G 100 270 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 331J2ppA 03p C0G 100 330 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 331J2ppA 03p C0G 100 330 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 391J2ppA 03p C0G 100 390 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 391J2ppA 03p C0G 100 390 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 471J2ppA 03p C0G 100 470 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 471J2ppA 03p C0G 100 470 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 561J2ppA 03p C0G 100 560 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 561J2ppA 03p C0G 100 560 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 681J2ppA 03p C0G 100 680 –5% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PE5C 2A 681J2ppA 03p C0G 100 680 –5% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PE5C 2A 821J2ppA 03p C0G 100 820 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 2A 821J2ppA 03p C0G 100 820 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 2A 102J2ppA 03p C0G 100 1000 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 2A 102J2ppA 03p C0G 100 1000 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 2A 122J2ppA 03p C0G 100 1200 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 2A 122J2ppA 03p C0G 100 1200 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PE5C 2A 152J2ppA 03p C0G 100 1500 –5% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PE5C 2A 152J2ppA 03p C0G 100 1500 –5% 5.0 x 3.5 3.15 5.0 K1 M1 M2 Tw o blank colum ns are filled w ith the lead style code. Please refer to the 3 colum ns on the right for the appropriate code. The last blank colum n is filled w ith the packaging code. (B: bulk, A: am m o pack)

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. H igh D ielectric C onstant Type, X7R C haracteristics Part Number Temp. Char. Rated Voltage (Vdc) Capacitance Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) R PER 71H 221K 2ppA 03p X7R 50 220pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 221K 2ppA 03p X7R 50 220pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 331K 2ppA 03p X7R 50 330pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 331K 2ppA 03p X7R 50 330pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 471K 2ppA 03p X7R 50 470pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 471K 2ppA 03p X7R 50 470pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 681K 2ppA 03p X7R 50 680pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 681K 2ppA 03p X7R 50 680pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 102K 2ppA 03p X7R 50 1000pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 102K 2ppA 03p X7R 50 1000pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 152K 2ppA 03p X7R 50 1500pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 152K 2ppA 03p X7R 50 1500pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 222K 2ppA 03p X7R 50 2200pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 222K 2ppA 03p X7R 50 2200pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 332K 2ppA 03p X7R 50 3300pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 332K 2ppA 03p X7R 50 3300pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 472K 2ppA 03p X7R 50 4700pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 472K 2ppA 03p X7R 50 4700pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 682K 2ppA 03p X7R 50 6800pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 682K 2ppA 03p X7R 50 6800pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 103K 2ppA 03p X7R 50 10000pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 103K 2ppA 03p X7R 50 10000pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 153K 2ppA 03p X7R 50 15000pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 153K 2ppA 03p X7R 50 15000pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 223K 2ppA 03p X7R 50 22000pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 71H 223K 2ppA 03p X7R 50 22000pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 71H 333K 2ppA 03p X7R 50 33000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 71H 333K 2ppA 03p X7R 50 33000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 71H 473K 2ppA 03p X7R 50 47000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 71H 473K 2ppA 03p X7R 50 47000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 71H 683K 2ppA 03p X7R 50 68000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 71H 683K 2ppA 03p X7R 50 68000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 Continued on the following page.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Part Number Temp. Char. Rated Voltage (Vdc) Capacitance Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) Continued from the preceding page. R PER 72A 221K 2ppB 03p X7R 100 220pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 221K 2ppB 03p X7R 100 220pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 331K 2ppB 03p X7R 100 330pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 331K 2ppB 03p X7R 100 330pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 471K 2ppB 03p X7R 100 470pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 471K 2ppB 03p X7R 100 470pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 681K 2ppB 03p X7R 100 680pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 681K 2ppB 03p X7R 100 680pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 102K 2ppA 03p X7R 100 1000pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 102K 2ppA 03p X7R 100 1000pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 152K 2ppA 03p X7R 100 1500pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 152K 2ppA 03p X7R 100 1500pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 222K 2ppA 03p X7R 100 2200pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 222K 2ppA 03p X7R 100 2200pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 332K 2ppA 03p X7R 100 3300pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 332K 2ppA 03p X7R 100 3300pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 472K 2ppA 03p X7R 100 4700pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 472K 2ppA 03p X7R 100 4700pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 682K 2ppA 03p X7R 100 6800pF –10% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PER 72A 682K 2ppA 03p X7R 100 6800pF –10% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PER 72A 103K 2ppA 03p X7R 100 10000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 72A 103K 2ppA 03p X7R 100 10000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 72A 153K 2ppA 03p X7R 100 15000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 72A 153K 2ppA 03p X7R 100 15000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 72A 223K 2ppA 03p X7R 100 22000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 72A 223K 2ppA 03p X7R 100 22000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 72A 333K 2ppC 03p X7R 100 33000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 72A 333K 2ppC 03p X7R 100 33000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 72A 473K 2ppC 03p X7R 100 47000pF –10% 5.0 x 3.5 3.15 2.5 P1 S1 S2 R PER 72A 473K 2ppC 03p X7R 100 47000pF –10% 5.0 x 3.5 3.15 5.0 K1 M1 M2 R PER 72A 683K 3ppC 07p X7R 100 68000pF –10% 5.0 x 4.5 3.15 2.5 P1 S1 S2 R PER 72A 683K 3ppC 07p X7R 100 68000pF –10% 5.0 x 4.5 3.15 5.0 K1 M1 M2 Tw o blank colum ns are filled w ith the lead style code. Please refer to the 3 colum ns on the right for the appropriate code. The last blank colum n is filled w ith the packaging code. (B: bulk, A: am m o pack) H igh D ielectric C onstant Type, Y5V C haracteristics Part Number Temp. Char. Rated Voltage (Vdc) Capacitance Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) R PEF51H 102Z2ppA 03p Y5V 50 1000pF +80/-20% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PEF51H 102Z2ppA 03p Y5V 50 1000pF +80/-20% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PEF51H 222Z2ppA 03p Y5V 50 2200pF +80/-20% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PEF51H 222Z2ppA 03p Y5V 50 2200pF +80/-20% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PEF51H 472Z2ppA 03p Y5V 50 4700pF +80/-20% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PEF51H 472Z2ppA 03p Y5V 50 4700pF +80/-20% 5.0 x 3.5 2.5 5.0 K1 M1 M2 Continued on the following page.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Part Number Temp. Char. Rated Voltage (Vdc) Capacitance Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) Continued from the preceding page. R PEF51H 103Z2ppA 03p Y5V 50 10000pF +80/-20% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PEF51H 103Z2ppA 03p Y5V 50 10000pF +80/-20% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PEF51H 223Z2ppA 03p Y5V 50 22000pF +80/-20% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PEF51H 223Z2ppA 03p Y5V 50 22000pF +80/-20% 5.0 x 3.5 2.5 5.0 K1 M1 M2 R PEF51H 473Z2ppA 03p Y5V 50 47000pF +80/-20% 5.0 x 3.5 2.5 2.5 P1 S1 S2 R PEF51H 473Z2ppA 03p Y5V 50 47000pF +80/-20% 5.0 x 3.5 2.5 5.0 K1 M1 M2 Tw o blank colum ns are filled w ith the lead style code. Please refer to the 3 colum ns on the right for the appropriate code. The last blank colum n is filled w ith the packaging code. (B: bulk, A: am m o pack)

C 49E.pdf M ay.10,2011 Continued on the following page. The capacitance change should be m easured after 5 m in. at each specified tem perature stage. (1) Tem perature C om pensating Type The tem perature coefficient is determ ined using the capacitance m easured in step 3 as a reference. W hen cycling the tem perature sequentially from step 1 through 5 (-55 to +125˚C ) the capacitance should be w ithin the specified tolerance for the tem perature coefficient and capacitance change as show n in Table A. The capacitance drift is calculated by dividing the differences betw een the m axim um and m inim um m easured values in step 1, 3 and 5 by the cap. value in step 3. (2) H igh D ielectric C onstant Type The ranges of capacitance change com pared w ith the 25˚C value over the tem perature ranges as show n in Table B should be w ithin the specified ranges. Capacitance Temperature Characteristics Capacitance Change W ithin the specified tolerance (Table A on last colum n) W ithin the specified tolerance (Table B on last colum n) Temperature Coefficient W ithin the specified tolerance (Table A on last colum n) Capacitance Drift W ithin –0.2% or –0.05pF, w hichever is larger 8 Q/Dissipation Factor (D.F.) 30pF m in. : Q U 1,000 30pF m ax. : Q U 400+20C C : N om inal capacitance (pF) C har. X7R : 0.025 m ax. C har. Y5V : 0.05 m ax. The capacitance, Q /D .F. should be m easured at 25˚C at the frequency and voltage show n in the table.

7 Capacitance W ithin the specified tolerance

The insulation resistance should be m easured w ith a D C voltage not exceeding the rated voltage at norm al tem perature and hum idity and w ithin 2 m in. of charging. (C harge/D ischarge current V 50m A)

6 Insulation

C V 0.047µF : 10,000M Ω m in. C G 0.047µF : 500M Ω • µF m in. C : N om inal capacitance The capacitors should not be dam aged w hen D C voltages of 300% * of the rated voltage are applied betw een the term inals for 1 to 5 sec. (C harge/D ischarge current V 50m A) *250% for char. X7R , Y5V

5 Dielectric

Terminals N o defects or abnorm alities Body Insulation N o defects or abnorm alities The capacitor is placed in a container w ith m etal balls of 1m m diam eter so that each term inal, short-circuited, is kept approxim ately 2m m from the balls as show n in the figure, and 250% of the rated D C voltage is im pressed for 1 to 5 sec. betw een capacitor term inals and m etal balls. (C harge/D ischarge current V 50m A) Visual inspection, Vernier C aliper4 Dimension and Marking See previous pages Visual inspection3 Appearance N o defects or abnorm alities The rated voltage is defined as the m axim um voltage that m ay be applied continuously to the capacitor. W hen AC voltage is superim posed on D C voltage, VP-P or V0-P, w hichever is larger, should be m aintained w ithin the rated voltage range.

2 Rated Voltage See previous pages

–1 Operating Temperature Range -55 to +125˚C C har. X7R : -55 to +125˚C C har. Y5V : -30 to +85˚C No. Test Method Specifications Temperature Compensating Type High Dielectric Constant Type Item Approx. 2m m M etal balls Capacitance Item 1000pF and below 1–0.1M H z AC 0.5 to 5V (r.m .s.) more than 1000pF 1–0.1kH z AC 1–0.2V (r.m .s.) Frequency Voltage Step Temperature (°C) 25–2 -55–3 25–2 125–3 25–2 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 review our product specifications or consult the approval sheet for product specifications before ordering.

C 49E.pdf M ay.10,2011 Continued from the preceding page. Continued on the following page. First, repeat the follow ing tem perature/tim e cycle 5 tim es: low est operating tem perature –3˚C /30–3 m in. ordinary tem perature/3 m in. m ax. highest operating tem perature –3˚C /30–3 m in. ordinary tem perature/3 m in. m ax. N ext, repeat tw ice the successive cycles of im m ersion, each cycle consisting of im m ersion in a fresh w ater at 65+5 –0˚C for 15 m in. and im m ersion in a saturated aqueous solution of salt at 0–3˚C for 15 m in. The capacitor is then prom ptly w ashed in running w ater, dried w ith a drying cloth, and allow ed to sit at room tem perature for 24–2 hrs. (tem perature com pensating type) or 48–4 hrs. (high dielectric type).

  • Initial m easurem ent for high dielectric constant type The capacitors are heat treated for 1 hr. at 150+ 0 –10 ˚C , allow ed to sit at room tem perature for 48 –4 hrs., and given an initial m easurem ent. Temperature and Immersion Cycle Appearance N o defects or abnorm alities Capacitance Change W ithin –5% or –0.5pF (w hichever is larger) C har. X7R : W ithin –12.5% C har. Y5V : W ithin –30% Q/D.F. 30pF m in. : Q U 350 10pF to 30pF : Q U 275+5C /2 10pF m ax. : Q U 200+10C C : N om inal capacitance (pF) C har. X7R : 0.05 m ax. C har. Y5V : 0.075 m ax. Insulation Resistance 1,000M Ω or 50M Ω • µF m in. (w hichever is sm aller) Dielectric Strength (Between Terminals) N o defects or abnorm alities The lead w ire is im m ersed in the m elted solder 1.5m m to 2m m from the m ain body at 350–10˚C for 3.5–0.5 sec. The specified item s are m easured after 24–2 hrs. (tem perature com pensating type) or 48–4 hrs. (high dielectric type).
  • Initial m easurem ent for high dielectric constant type The capacitors are heat treated for 1 hr. at 150+ 0 –10 ˚C , allow ed to set at room tem perature for 48–4 hrs., and given an initial m easurem ent. Resistance to Soldering Heat Appearance N o defects or abnorm alities Capacitance Change W ithin –2.5% or –0.25pF (w hichever is larger) C har. X7R : W ithin –7.5% C har. Y5V : W ithin –20% Dielectric Strength (Between Terminals) N o defects The term inal of a capacitor is dipped into a 25% ethanol (JIS-K-8101) solution of rosin (JIS-K-5902) and then into m olten solder for 2–0.5 sec. In both cases the depth of dipping is up to about 1.5m m to 2m m from the term inal body. Tem p. of solder:245–5˚C Lead Free Solder (Sn-3.0Ag-0.5C u) 235–5˚C H 60A or H 63A Eutectic Solder

12 Solderability of Leads Lead w ire should be soldered w ith uniform coating on the axial

direction over 3/4 of the circum ferential direction. The capacitor is soldered securely to a supporting term inal and a 10 to 55H z vibration of 1.5m m peak- peak am plitude is applied for 6 hrs. total, 2 hrs. in each m utually perpendicular direction. Allow 1 m in. to cycle the frequency from 10H z to 55H z and the converse.

11 Vibration

Appearance N o defects or abnorm alities Capacitance W ithin the specified tolerance Q/D.F. 30pF m in. : Q U 1,000 30pF m ax. : Q U 400+20C C : N om inal capacitance (pF) C har. X7R : 0.025 m ax. C har. Y5V : 0.05 m ax. As in the figure, fix the capacitor body, apply the force gradually to each lead in the radial direction of the capacitor until reaching 10N and then keep the force applied for 10–1 sec.

10 Terminal

Strength Term ination not to be broken or loosened Bending Strength Term ination not to be broken or loosened Each lead w ire should be subjected to a force of 2.5N and then bent 90˚ at the point of egress in one direction. Each w ire is then returned to the original position and bent 90˚ in the opposite direction at the rate of one bend per 2 to 3 sec. No. Test Method Specifications Temperature Compensating Type High Dielectric Constant Type Item F 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 review our product specifications or consult the approval sheet for product specifications before ordering.

C 49E.pdf M ay.10,2011 Continued from the preceding page. Char. Nominal Values (ppm/˚C) *1 0–30C 0G Max. 0.58 Min. -0.24 Max. 0.40 Min. -0.17 Max. -55˚C Capacitance Change from 25˚C (%) -30˚C -10˚C 0.25 Min. -0.11 *1: N om inal values denote the tem perature coefficient w ithin a range of 25 to 125˚C Table A Char. Temp. Range -55 to +125˚C -30 to + 85˚C X7R Y5V Reference Temp. 25˚C Cap. Change Rate W ithin – 15% W ithin +22 –82% Table B The capacitor should be fully im m ersed, unagitated, in reagent at 20 to 25˚C for 30–5 sec. and then rem oved gently. M arking on the surface of the capacitor should im m ediately be visually exam ined. R eagent:

  • Isopropyl alcohol

18 Solvent

Appearance N o defects or abnorm alities Marking Legible Apply 200% of the rated voltage for 1000 +48 – 0 hrs. at the m axim um operating tem perature. R em ove and set for 24–2 hrs. (tem perature com pensating type) and 48 –4 hrs. (high dielectric constant type) at room tem perature, then m easure. (C harge/D ischarge current V 50m A)

  • Initial m easurem ent for high dielectric constant type A voltage treatm ent should be given to the capacitor in w hich a D C voltage of 200% of the rated voltage is applied for 1 hr. at the m axim um operating tem perature –3˚C . Then set for 48–4 hrs. at room tem perature and conduct initial m easurem ent. High Temperature Load Appearance N o defects or abnorm alities Capacitance Change W ithin –3% or –0.3pF (w hichever is larger) C har. X7R : W ithin –12.5% C har. Y5V : W ithin –30% Q/D.F. 30pF m in. : Q U 350 10pF to 30pF : Q U 275+5C /2 10pF m ax. : Q U 200+10C C : N om inal capacitance (pF) C har. X7R : 0.04 m ax. C har. Y5V : 0.075 m ax. Insulation Resistance 1,000M Ω or 50M Ω • µF m in. (w hichever is sm aller) Apply the rated voltage for 500 +24 – 0 hrs. at 40–2˚C and in 90 to 95% hum idity. R em ove and set for 24–2 hrs. (tem perature com pensating type) and 48–4 hrs. (high dielectric constant type) at room tem perature, then m easure. (C harge/D ischarge current V 50m A)

16 Humidity

Appearance N o defects or abnorm alities Capacitance Change W ithin –7.5% or –0.75pF (w hichever is larger) C har. X7R : W ithin –12.5% C har. Y5V : W ithin –30% Q/D.F. 30pF m in. : Q U 200 30pF m ax. : Q U 100+10C /3 C : N om inal capacitance (pF) C har. X7R : 0.05 m ax. C har. Y5V : 0.075 m ax. Insulation Resistance 500M Ω or 25M Ω • µF m in. (w hichever is sm aller) Set the capacitor for 500 +24 – 0 hrs. at 40–2˚C in 90 to 95% hum idity. R em ove and set for 24–2 hrs. (tem perature com pensating type) and 48–4 hrs. (high dielectric constant type) at room tem perature, then m easure. Humidity (Steady State) Appearance N o defects or abnorm alities Capacitance Change W ithin –5% or –0.5pF (w hichever is larger) C har. X7R : W ithin –12.5% C har. Y5V : W ithin –30% Q/D.F. 30pF m in. : Q U 350 10pF to 30pF : Q U 275+5C /2 10pF m ax. : Q U 200+10C C : N om inal capacitance (pF) C har. X7R : 0.05 m ax. C har. Y5V : 0.075 m ax. Insulation Resistance 1,000M Ω or 50M Ω • µF m in. (w hichever is sm aller) No. Test Method Specifications Temperature Compensating Type High Dielectric Constant Type Item 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 review our product specifications or consult the approval sheet for product specifications before ordering.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Radial Lead Type Monolithic Ceramic Capacitors R PE Series Sm all Size, Large C apacitance (D C 50V) n Features 1. The R PE series capacitors have sm all dim ensions, large capacitance, and a capacity volum e ratio of 10 m icro F/cm cubed, close to that of electrolytic capacitors. They do not have polarity. 2. Excellent frequency characteristics and due to their sm all internal inductance are suitable for high frequencies. 3. They are not coated w ith w ax so there is no change in their exterior appearance due to the outflow of w ax during soldering or solvent during cleansing. 4. They are highly nonflam m able, having characteristics equivalent to the U L94V-0 standard. 5. W e design capacitors in m uch m ore com pact size than current R PE Series, having reduced the diam eter by 70% m ax. (in m m ) ∗ C oating extension does not exceed the end of the lead bend.
  • Lead W ire : Solder C oated C opper W ire or Solder C oated C P W ire ød : 0.5–0.05 T m ax.L m ax. W m ax.25.0 m in. W 1 m ax. F–0.8 Dimensions code: 2/3 Lead style code: K1 (in m m ) ∗ C oating extension does not exceed the end of the lead bend.
  • Lead W ire : Solder C oated C opper W ire or Solder C oated C P W ire ød : 0.5–0.05 T m ax.L m ax. W m ax.25.0 m in. W 1 m ax. F–0.8 Dimensions code: W Lead style code: K1 n Dimensions Dimensions and Lead Style Code Dimensions (mm) dW1WL 2K 1/2M 1 0.5 3K 1/3M 1 0.5 F 5.0 5.0 T Depends on Part Number List 6.0 7.5 4.0 5.0 5.5 5.5 Continued on the following page.

C 49E.pdf M ay.10,2011 !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 review our product specifications or consult the approval sheet for product specifications before ordering. Continued from the preceding page. n Marking Rated Voltage Temp. Char.Dimensions Code DC50V X7R 225 K5C M Temperature Characteristics Nominal Capacitance Capacitance Tolerance Rated Voltage Manufacturer's Identification M arked w ith 3 figures M arked w ith code M arked w ith code (X7R char.: C ) M arked w ith code (D C 50V: 5) MM arked w ith 475 K5C M W 106 M 5C M H igh D ielectric C onstant Type, X7R C haracteristics Part Number Temp. Char. Rated Voltage (Vdc) Capacitance (µF) Dimensions LxW (mm) Dimension T (mm) Lead Space F (mm) Lead Style Code Bulk Lead Style Code Taping (1) Lead Style Code Taping (2) R PER 71H 106M W ppC 60p X7R 50 10 –20% 5.5 x 7.5 4.0 5.0 K1 M1 - Tw o blank colum ns are filled w ith the lead style code. Please refer to the 3 colum ns on the right for the appropriate code. The last blank colum n is filled w ith the packaging code. (B: bulk, A: am m o pack)

C 49E.pdf M ay.10,2011 The capacitor should be firm ly soldered to the supporting lead w ire and vibrated at a frequency range of 10 to 55H z, 1.5m m in total am plitude, w ith about a 1 m inute rate of vibration change from 10H z to 55H z and back to 10H z. Apply for a total of 6 hrs., 2 hrs. each in 3 m utually perpendicular directions.

10 Vibration

Appearance N o defects or abnorm alities As in the figure, fix the capacitor body, apply the force gradually to each lead in the radial direction of the capacitor until reaching 10N and then keep the force applied for 10T1 sec.

9 Terminal

Strength Term ination not to be broken or loosened The capacitance change should be m easured after 5 m in. at each specified tem perature stage. Capacitance Temperature Characteristics W ithin T15% 7 Dissipation Factor (D.F.) 0.025 m ax. The capacitance/D .F. should be m easured at the frequency of 1T0.1kH z and a voltage of AC 1T0.2V(r.m .s.)

6 Capacitance W ithin the specified tolerance

The insulation resistance should be m easured w ith a D C voltage not exceeding the rated voltage at norm al tem perature and hum idity and w ithin 2 m in. of charging. (C harge/D ischarge current V 50m A)

5 Insulation

Terminals 500M Ω · µF m in. The capacitor should not be dam aged w hen D C voltage of 250% of the rated voltage is applied betw een the term inations for 1 to 5 sec. (C harge/D ischarge current V 50m A)

4 Dielectric

Terminals N o defects or abnorm alities Visual inspection, Vernier C aliper3 Dimension and Marking See previous pages Visual inspection2 Appearance N o defects or abnorm alities –1 Operating Temperature Range -55 to +125˚C No. Test MethodSpecificationsItem Continued on the following page. D.F. 0.025 m ax. Capacitance W ithin the specified tolerance Each lead w ire should be subjected to a force of 2.5N and then bent 90˚ at the point of egress in one direction. Each w ire is then returned to the original position and bent 90˚ in the opposite direction at the rate of one bend per 2 to 3 sec. Bending Strength Term ination not to be broken or loosened The capacitor is placed in a container w ith m etal balls of 1m m diam eter so that each term inal, short-circuit, is kept approxim ately 2m m from the balls as show n in the figure, and 250% of the rated D C voltage is im pressed for 1 to 5 sec. betw een capacitor term inals and m etal balls. (C harge/D ischarge current V 50m A) Body Insulation N o defects or abnorm alities R PE Series Sm all Size, Large C apacitance Specifications and Test M ethods Approx. 2m m M etal balls F Temperature (˚C)Step 25T2 -55T3 25T2 125T3 25T2 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 review our product specifications or consult the approval sheet for product specifications before ordering.

C 49E.pdf M ay.10,2011 The capacitor should be fully im m ersed, unagitated, in reagent at 20 to 25 ˚C for 30T5 sec. and then rem oved gently. M arking on the surface of the capacitor should im m ediately be visually exam ined. R eagent :

  • Isopropyl alcohol

17 Solvent

Appearance N o defects or abnorm alities Apply a D C voltage of 150% of the rated voltage for 1000 WY480 hrs. at the m axim um operating tem perature. R em ove and set for 48T4 hrs. at room tem perature, then m easure. (C harge/D ischarge current V 50m A)

  • Pretreatm ent Apply test voltage for 1 hr., at test tem perature. R em ove and set for 48T4 hrs. at room tem perature. High Temperature Load Appearance N o defects or abnorm alities Apply the rated voltage at 40T2˚C and relative hum idity of 90 to 95% for 500 WY240 hrs. R em ove and set for 48T4 hrs. at room tem perature, then m easure. (C harge/D ischarge current V 50m A)

15 Humidity

Appearance N o defects or abnorm alities Set the capacitor at 40T2˚C and relative hum idity of 90 to 95% for 500 WY240 hrs. R em ove and set for 48T4 hrs. at room tem perature, then m easure. Humidity (Steady State) Appearance N o defects or abnorm alities The capacitor should be subjected to 200 tem perature cycles. (5 tem perature cycles for dim ensions code W )

13 Temperature

Appearance N o defects or abnorm alities The lead w ire is im m ersed in the m elted solder 1.5 to 2m m from the m ain body at 350T10˚C for 3.5T0.5 sec. The specified item s are m easured after 48T4 hrs.

  • Pretreatm ent Perform a heat treatm ent at 150+0/-10˚C for 1 hr., and then let sit at room tem perature for 48T4 hrs. Resistance to Soldering Heat Appearance N o defects or abnorm alities The term inal of a capacitor is dipped into a solution of ethanol (JIS-K-8101) and rosin (JIS-K-5902) (25% rosin in w eight proportion) and then into m olten solder (JIS- Z-3282) for 2T0.5 sec. In both cases the depth of dipping is up to about 1.5 to 2m m from the term inal body. Tem p. of solder: 245T5˚C Lead Free Solder (Sn-3.0Ag-0.5C u) 235T5˚C H 60A or H 63A Eutectic Solder

11 Solderability of Leads Lead w ire should be soldered w ith uniform coating on the axial

direction over 3/4 of the circum ferential direction. No. Test MethodSpecificationsItem Continued from the preceding page. Marking Legible Insulation Resistance 50M Ω · µF m in. D.F. 0.04 m ax. Capacitance Change W ithin T12.5% Insulation Resistance 50M Ω · µF m in. D.F. 0.05 m ax. Capacitance Change W ithin T12.5% Insulation Resistance 50M Ω · µF m in. D.F. 0.05 m ax. Capacitance Change W ithin T12.5% Dielectric Strength (Between Terminals) N o defects or abnorm alities Insulation Resistance 50M Ω · µF m in. D.F. 0.05 m ax. Capacitance Change W ithin T12.5% Dielectric Strength (Between Terminals) N o defects Capacitance Change W ithin T7.5% R PE Series Sm all Size, Large C apacitance Specifications and Test M ethods Temperature (˚C)Step -55T3 R oom Tem p. 125T3 R oom Tem p. Time (min) 30T3 3 m ax. 30T3 3 m ax. 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 review our product specifications or consult the approval sheet for product specifications before ordering.

Click to View Pricing, Inventory, Delivery & Lifecycle Information: Murata: RPER71H224K2M2C03A RPE5C2A1R0C1A1D02B RPE5C2A122J2M1D03A RPER71H154K2M2C03A RPER72A333K2P1C03B RPE5C2A222J2S1D03A RPE5C2A1R2C1A1D02B RPER72A333K2M1C03A RPER71H184K2M2C03A RPER72A182K1A1D02B RPE5C2A102J2S2Y03A RPER72A821K1A1D02B RPE5C1H182J1A1D02B RPE5C1H3R0C1A1D02B RPER72A333K2S2C03A RPER71H271K1A1D02B RPE6R1H100J1A1D02B RPE5C2A222J2S2D03A RPE5C1H182J2K1Y03B RPE5C1H152J2S2Y03A RPE5C1H123J4M2F03A RPEF51H474Z2K1C03B RPEE41H683M1A1D02B RPER71H474K2S1C03A RPER71H824K3S1C03A RPE5C2A122J2S2D03A RPE5C1H182J2P1Y03B RPE5C2A182J2M1D03A RPER72A333K2S1D03A RPE6R1H150J1A1D02B RPE5C2A2R0C1A1D02B RPEF51H474Z2M2C03A RPER71H391K1A1D02B RPER72A223K2K1D03B RPE5C2A122J2S1D03A RPE5C2A222J2M1D03A RPER72A223K2M2D03A RPER72A333K2K1C03B RPE5C2A182J2K1D03B RPE5C2A152J2S2D03A RPE6R1H470J1A1D02B RPE5C1H822J4M2F03A RPE5C2A152J2M1D03A RPER72A223K2P1D03B RPE5C1H152J2S1Y03A RPE5C2A182J2M2D03A RPER71H274K2M2C03A RPE5C1H182J2S2Y03A RPE5C1H182J2S1Y03A RPEE42A682M1A1D02B RPEE41H334M3S2C03A RPE5C1H3R9C1A1D02B RPER71H124K2M2C03A RPER72A333K2S2D03A RPEF51H474Z2S2C03A RPE6R1H220J1A1D02B RPE6R1H271J1A1D02B RPE5C2A152J2S1D03A RPE5C1H122J2S1Y03A RPE6R1H181J1A1D02B RPE5C2A4R3C1A1D02B RPE5C1H103J4M2F03A RPE5C2A272J3M1D03A RPER71H224K2S1C11A RPE5C2A152J2P1D03A RPE5C1H223J6B1F12A RPE5C1H333J6E2F02A RPER72A102K2S1A03A RPER72A332K2S2B03A RPE5C1H391J2S1Y03A RPE5C2A102J2K1Y11B RPE5C1H681J2M2A03A RPER71H183K1A1C03B RPE5C1H271J2S2A03A RPER71H154K2S2C03A RPE5C1H181J2P1A03A RPE5C2A272J3M1D02A RPE5C2A121J2P1Z03A RPE5C1H152J2P1A03A RPER71H682K2S1A03A RPEF51H153Z2M1A03A RPE5C1H333J6E2F03A RPE5C2A751J1A1D02B RPE5C2A270J1A1Y02B RPE5C1H680J2S1Z03A RPE5C2A471J2M2Z03A RPER72A332K2K1B03B RPER71H153K2S1B03A RPER72A104K3P1D02B RPE5C1H471J2M2Y03A RPEE41H105M4M1E12P RPE5C1H392J2M2D03A RPE5C2A060D1A1D02B RPE5C1H183J5E2X03A RPER72A472K2M1A03A RPER71H642K1A1D02B RPEE42A223M2P1D03B RPER71H274K3K1D03B RPER71H563K2M2A03A RPER72A474K5E1D02A