DM10C151J5 SOSHIN | Alldatasheet

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SOSHIN ELECTRIC CO,.LTD DM CAPACITOR DATA SHEETS May. 112007 1. Scope This specification applies to DM mica capacitor. 2. Related Standard JISC 5102 Test methods of fixed mica capacitors for use in electronic equipment 3. Type designation DM 15 C ilk G 5 Y® 0 © © © (Type DM_: Dipped mica capacitor is meant. (2) Case code 05, 10, 15. 19, 20, 30 (3)Characteristic . code C,E,F : Temperature coefficient (4) Nominal 101:100pF Capacitance Identified by a three-degit number ;the first two degits represent significant figures in pF and the last degit specifies the number of zeros to follow. . (5) Capacitance G: £2% M:t05 pF, F:+1%. J:45%, K:+10%) Tolerance (6) Rated voltage 5:500 WV DC (05:50WV , 3:300WV. 5: 500W) 4. Marking . Refer to table.1. Table. 1 : Case code 05 10 15 19 20 30° ttem Indicated with one of characteristic indication marks . Nominal capacitance Indicated in real. [Identified by a three-digit number,the first two digits represent umber in unit of significant figures in pF and the last digit specified. . pF. ‘The tolerance is indicated by capital letter. Rated voltage No marking 5O0WV,100WV and 300WV are indicated as 05, 1 and 3 Respectively. 500WV is no marking. Manufacture No marking SE SOSHIN . name : 1

Ex. DM05C401G05 . ; - y Nominal capacitance: Th Real number in unit of pP. : 7 i ; * The characteristic, capacitance tolerance, ratings voltage, manufacture name marking is omitted. Ex.2 DM15C101G5 C101G oa SE . Sy “ “ \\ Capacitance tolerance Characteristics * m 1. v i \\, : Manufacturer’s name * im! | Nominal capacitance: ] Identified by a three-degit number ;the first two degits 4 represent significant figures in pF and the last degit specifies the number of zeros to follow. * The ratings voltage (500 WV) marking is omitted. 3 DMI . : Ex3 9C27253 « Nominal capacitance: / Identified by a three-degit number ;the first two degits / Yepresent significant figures in pF and the last degit . Characteristics “ specifies the number of zeros x v to follow. C 272 J3- “ts++..y Rated voltagr SOSHIN™. Goowy) ; Ss q “& Capacitance tolerance l in I | “4 Mannfacturer's name tl ' 2

  1. Dimensions Refer to figure.2 and table.2. aaa! T MAX VW \\V/ .

15.0 MIN

Fi . od st08 Table 2 : Unitimm [| DM05 | DM10 | DM15 | DMi9 | DM20 | DM30 Final 020 wo Toe [oe [oe [100] ‘olerance} >€W,H and T dimensions refer to the table of item 6. .

  1. . Dimensions according to capacity and an allowance according toa characteristic <<DM05>> Nominal Cepacitance! D | F 1G [J [K (oF) |+0.5pF] +1% | +26 | +5%|+10%x] wl H | T wlal[Tlwla[t ec] [tT yespfasysof fT ry a ee | ft ; a a a a [| f Pop yt [6 | | fT yc ee re pf [8 | a a ee pj | ft A ; Lf yc po | | Py yy. ; | [| [| [ ft ft yy jf ee ce{ | [cel | p | top tT { [| ee a [| ee ee [ [Ce ce [| || | [| ee Se | be PLERRERS | | a | j 1 [ce [| oe | 56 | Ee DD | [62 | a a a {| jf | yop a {| 58 eee . a | ; of | ty 4.5 | 120 J | jeF[72fesfast fT TT 7 [130 | | ot | 2) sstaot TT [iso [| icF] [| ae | iso [| or a a j45{ Tt | 220 [| Ce | xo [| jp | f top tT yy *] [20 ft jer] | J tt TT °° [300 [| jf fT | 330 fer, PTT Ty | 360 || a [30 | | : jcr{ [| JT tT yy [40 [| a |

<<DM10>> . Capacitance! “DF J |x cf fT ferfastas ty | 2 | a a ee se ee jp [| ff ft yf Pos} fr Lt ft tT [Te ee pf [ ft Tr [yy ee [3] [eT ee a | fo Ty [1 _Te ee [| a cet _[ “yce,_] ee py | [ fT [ [ Ty Pot oy ee [_|ce 93 a [| |} fae) LP yp Ty — Le a i ee [| [| a [| ee [a [ce [| pf ty [5] a [~e |] L_| a | [| ee a es Poa [ye rjcri[cr| | ee [100 [| ee | uo [| [96]: en | iz [| ee [330 || a [150 [| CO [0] a a | [20 [| a [20 [| P| fee] | Pot Toy [30 [| a p fy | 330 [| PP Ff fee fe [360] a a [40 fT mee} $e

<<DM15>> Nei Capacitree}] D [FTG] J [K (OF) _|+0.5pF} + 1% | £8 | +58 |10x] WH | twa [Tl wl] e Ly reperyas a a a A | 3 | a a a ee | 5 | a a ee ee a Lf ot | a pf fc a a ee a j | | a a cel | Jcelce a a a | ce a ee |_| a a A a | Geis ao CE a as[ [TT TT a a a ee pif crferlcr{ ire a a a a | ee a [| a [| _iso [| a ee {iso P| a a | [220 | | oP ja) [20 | | 119 ee ee ee [ 300 [| || ee |__s30 fT a ee = | | ey | | FEERES | ao [| Lc F| Ee SS | |) SE REPEEeS | _si0 [| re | Oe [oo [| a a ee | 1200 [| per} of [fier |ios| 63 [ia4{i06 | 60 | {130 [| a a [ ts00 fer> | Toy yy | | 1600 [| a a [__2000 [| Pot | ft fy yy

<<DM19>> ; Nomina Capacitance} D | F | G/ J ][K Po foc Pe fieaperpasy a a | || | a a ce {| [cefce | [ [ce a a | [| | ee | {| | rr ; |_| a ee === === . a | fy yy [100 CF a a GD a f [| [ yf [ yy [160 | es ee | | ee | | 270 [| a a [30 [| [fT yy tT [300 wofsot [ft TT {| 40 [| Ee | - 560 [ 165 ee ee | of a | . ee ee [1000 w2fss{ [Tf TT | 20 [| 16.7 re | 1300 | | ee |__1500 [| pep {2000 [| || a {2200 | | irofisat es [TT] a 13.7 | 66 | ~ [3900 175 |_4%00_ fT hee 139 189 [" 4700 [| [5600 || fcrl | | [eo [| ers pe] | 7500 | jp of | | 7 [seo [| fer] [oy PP 88 [90 [| a [000] cs

, <<DM20>> Nomina cml ETS] J (oF) _| 1% | +26 | +54 |+108| wT T [Pw [tl walt | cr CF 19.0] 12.7 eT pat roe ey ee fev nese ff tt . Pp [| J ft ft ty |__| [c F [20.0 | 8.6 | 20.0 ve2/ 78 | 8.6 | [ 8.6 | a ee fp : | | Fp ee ae A A

<<DM30>> Nominal OEY Lael sae] ao Lee eg Tr | crjissfasafes| [| TTT | ‘jissfarsfeo] ff tt 7 a ee tt a asfee| [| | Tot Ty fof ft ft yyy 198 a ee || ce 22.0 19.8] 21.8 FS |___[20.0] 22.3 a my 20.3) 22.6| 8.6 | [|__| El ee at 22.6 pee] 22.6 8.6 | ere =} + 4" Pats] ler] ToT Kg} eimai tines ler] TT aro a ee fer] | [oy tT . A ; 9

3 Dissipation factor It is assumed below the value shown in | JIS C 5102 7.9. is applied. Figure 3. Test frequency: 4 Withstanding voltage No visual damage, no insulated | JIS C 5102 7.1. is applied. 5 Insulation resistance More thana value to show for table4. | JISC 5102 7.6. is applied. Temperature | Characteristic Temperature Capacitance JIS C 5102 7.12. is applied. ‘17 | Viblation Be not do not disconnect or short- | Refer to JIS C 5102 8.2 is applied. Terminal Materials The surface of the CP wire JISC 5102 8.1.2(1). is applied. strength broken, and not loosen.

Solderability - Cover with solder with new JISC 5102 8.4 is applied. . 75% or more of the area of the The capacitor is immersed in molten terminal. solder. Solder temp.:2355°C Inmmersion time:2 + 0.5sec Solder:Sn-Pb solder Soldering [Appearance [Novisual damage =| SIS C 5102.85. is applied, heat Withstanding | No.4 is satisfied , More than a value to show for | Immersing time: 5+0.5sec Tesistance table4.(After an examination) Solder:Sn-Pb solder No.3 is satisfied. factor Capacitance | It is below the value of the larger one change either among 40.5% of the value before an examination, and +1pF. 11 | Temperat- [| Appearance [Novisual damage "| NISC 510294 is examined ure and No.4 is satisfied continuously after 9.3 is examined. immersion | voltage cycle Insulation More than a value to show for Dissipation | 150% or less of the value of the : Capacitance It is below the value of the larger one change either among +3% of the value before an examination, and +] pF. 12 | Moisture JIS C5102 9.6 method.1 is applied. Resistance No.4 is satisfied voltage Insulation More than a value to show for - Dissipation | 150% or less of the value of the factor regulation to No.3. Capacitance It is below the value of the larger one change either among +3% of the value before an examination, and +1 pF. 13 | Moisture JIS C5102 9.9 is applied. Resistance No4 is satisfied Test temp: 402°C Loading voltage Relative humidity: 90 to 95% Insulation More than a value to show for | Test time: 500 to 524h resistance table4.(After an examination) Loading voltage:100V DC : 200% or less of the value of the factor regulation to No.3. Capacitance It is below the value of the larger one change either among -£5% of the value before an examination, and +1pF. W

[Nef tem Specifications Testmetnod ——_| - 14 | High temperature No visual damage JIS C5102 9.10. is applied. Loading Test temp: 1253 Withstanding No4 is satisfied. Load voltage: 150V DC voltage Test time: 2000 to 2072h Insulation More than a value to show for resistance table4. (Initial) Dissipation 150% or less of the value of the Table.3 factor regulation to No.3. wos ° Characteristics value : Capacitance Below a large value among value = F change or £1 in Table 3 against the value before it examines it. Figure.3 Relation between nominal capacitance and dissipation factor Se || INET TTI LENT LETTE TTT PCI Ti - oot LNT Tvtes. rea: avez LEN TTT TTI . SE | ee | | iw] PE Tn oh HHO 2 eee s LTT INC Cee | ; 5 aon = EHESEN TN T TIS TTT l coo KEIM TEIN [ET Td . — a ts se ee ee ee eee ee eel a | | | Pt | | | eT ea ee a all o.ooor LL [UTM NcissrasmreD TTT LTT 1 10 100 1000 10000 100000 Capacitance (oF) . Table.4 Capacitance and relations with insulation resistance (Normal temperature, initial) (After an examination) *Q. Fis capacitance and insulation resistance and multiplication, and a unit is QF.