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˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 Manganese dioxide typeE/SV Series Standard / RoHS Compliant (Unit: mm) /L50237 FEATURES /L50098Lead-free Type. RoHS Compliant. /L50098Offer a range of small, high-capacity models. /L50098Succeed to the latest technology plus outstanding peformance. /L50098Halogen free, Antimony free and Red Phosphorous free resin is applied to the exterior mold resin. /L50237 DIMENSIONS [mm] Case EIA code L W1 W2 H Z Code ZZ H LW 1 [J, P, A2, A cases] [B3, B2 cases] [C2, C, V, D cases] ZZ H LW 1 ZZ H L

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series Manganese dioxide type /L50237 STANDARD C-V VALUE REFERENCE BY CASE CODE ESV D 0G 687 M DC rated voltage in volts Capacitance tolerance Capacitance (pF) First two digits represent significant figures. Third digit specifies number of zeros to follow. M K : ±20% : ±10% Case code E/SV Series TE [Bulk] [Tape and Reel] ESVD0G687M 12 R Packing Orientation Tape width R: Cathode on the Side of Sproket Hole Part number of Bulk Tape and Reel TL ESVD0G687M 12 R E Indicates 330mm φ reelTape and Reel TL : 330 mm φ reel TE : 180 mm φ reel 8 : 8 mm (J, P , A2, A, B3, B2 case) 12 : 12 mm (C2, C, V, D case) 0E : 2.5 V, 0G : 4 V, 0J : 6.3 V, 1A : 10 V, 1C : 16 V, 1D : 20 V, 1E : 25 V, 1V : 35 V /L50237 PART NUMBER SYSTEM 2.5V 6.3V 10V 16V 20V 25V 35V 0.47 0.68 1.0 1.5 2.2 3.3 4.7 6.8 100 150 220 330 470 680 474 684 105 155 225 335 475 685 106 156 226 336 476 686 107 157 227 337 477 687 P P J, P J, A J, P, A2, A P, A2, A A2, A A, B3 A, B3, B2 A, B2 B3, B2, C B2, C2, C C, D C, D D P, A2, A A2, A, B3 A2, A, B3, B2 B3, B2 C B2, C2, C, D D C, D A A A2, A A A, B2 B3, B2 C C C, D D P J, P J, P J, P, A2 J, P, A2, A A2, A P, A2, A, B2 A2, B3 A, B3, B2 B3, B2 A, B2, C2, C B2, C2, C B2, C2, C, V, D V, D D A A P, A2, A A A B3, B2 C2, C C D D P J J J, P, A J, P, A2 J, P, A2, A P, A2, A P, A2, A, B3, B2 A2, A, B3 A, B3, B2, C A, B3, B2, C2 A, B3, B2, C2, C B2, C B2, C, V, D V, D D P J J, P P P, A2, A P, A2, A P, A2, A, B3 A, B3 A2, A, B3, B2, C2 B2, C2 B2, C C, V D D J J P, A2 P, A2 P, A2, A A A, B3, B2 A, B3, C2 B3, B2, C2 B3, B2, C B2, C, D UR /L50528F UR :Rated Voltage

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series /L50237 MARKINGS The standard marking shows capacitance, DC rated voltage, and polarity. [B3, B2, C2, C, V, D cases Production date code]Capacitance ( /L50528F) AA Polarity Marking Code (DC Rated Voltage and Capacitance) J Polarity Marking Code (DC Rated Voltage and Capacitance) J106 Polarity Capacitance (pF) Capacitance ( /L50528F) DC Rated Voltage Code Polarity Production Date Code DC Rated Voltage DC Rated Voltage Polarity Production Date Code 220 [P case] (ex. 1 /L50528F / 10 V) [J case] (ex. 4.7 /L50528F / 6.3 V) [A2, A cases] (ex. 10 /L50528F / 6.3 V) [B3, B2 cases] (ex. 47 /L50528F / 6.3 V) [C2, C, V, D cases] (ex. 220 /L50528F / 6.3 V) NOTE: Production date code will resume beginning in 2015. 2011 abcde fgh jklm 2012 npq rs tuvwxyz

2013 ABCDEFGHJKLM

2014 NPQRS TUVWXYZ

/L50528F 2.5 V 4 V 6.3 V 10 V 16 V 20V 25V 0.47 CS 0.68 CW

1 AA CA EA

1.5 JE AE

2.2 AJ CJ DJ

3.3 GN AN CN

4.7 JS AS

6.8 JW

10 GA JA AA

15 GE JE

[J case Marking Code] /L50528F 2.5 V 4 V 6.3 V 10 V 16 V 1.0 1.5 2.2 3.3 A 4.7 J 6.8 G 10 e UR C A JJ A [P case Marking Code] UR [P, A2, A, cases DC Rated Voltage code] Code e Rated 2.5 V 4 V 6.3 V 10 V 16 V 20 V 25 V 35VVoltage G J J A e C C GJACDEV UR :Rated Voltage

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series Manganese dioxide type /L50237 PERFORMANCE CHARACTERISTICS Test Conditions : Conform to IEC 60384-1 at 85℃ at 125℃ at 85℃ at 120 Hz at 100 kHz solder dip : 260℃, 5sec solder reflow : 260℃,10sec 25V 16V 33V 35V 22V 46V 16V 10V 20V 20V 13V 26V 6.3V 10V 6.3V 13V 2.5V 1.6V 3.3V 2.5V 5.2V Lower than 2 times initial specification (P, J case) or 1.25 times initial specification Parts shall be temperature cycled over a temperature range of –55 to +125℃, five times continuously as follow. Step 1: –55 ℃, 30±3min. Step 2: room temp. 10 to 15min. Step 3: 125 ℃, 30±3min. Step 4: room temp, 10 to 15min. Refer to Standard Ratings at 40℃ at 90 to 95% RH 500 hour at 85℃: Rated voltage at 125℃: Derated voltage 2000 hour Strength : 4.9N Time : 10±0.5sec. (two directions) 0.125C • V( /L50528A) or 6.25/L50528A, which ever is greater Lower than initial specification Lower than initial specification PERFORMANCE TEST CONDITION Operating temperature Rated voltage (V.dc) Derated voltage (V.dc) Surge voltage (V.dc) Capacitance Capacitance tolerance DC Leakage Current (L.C) Dissipation Factor Equivalent Series Resistance –55℃ to +125℃ ITEM Surge voltage test 0.47 /L50528F to 680 /L50528F L.C Refer to Standard Ratings Refer to Standard Ratings Refer to Standard Ratings at 120 Hz ±20% or ±10% (P,J case: ±20%) λ0=1% / 1000 hour Visual: There shall be no evidence of mechanical damage Refer to Standard Ratings Refer to Standard Ratings Refer to Standard Ratings at 85℃: Rated voltage at 125℃: Derated voltage 2000 hour Lower than initial specification Lower than initial specification Endurance Damp heat Failure Rate Terminal Strength Conform to IEC60384–1Conform to IEC60384–1Others Lower than 1.5 times initial specification Voltage: Rated voltage for 5min. Temperature : 85±2℃ Applied voltage : Surge voltage Series resistance : 33 ohm Duration of surge : 30±5 sec Time between surge : 5.5min. Number of cycle : 1000 0.01C • V(/L50528A) or 0.5 /L50528A , whichever is greater Lower than initial specification Lower than initial specification Capacitance change DF(%) Lower than initial specification Rapid change of temperature Resistance to Soldering heat Characteristic at high and low temperature Lower than initial specification –55℃ +85℃ +125℃ Not to exceed –20% (P, J case) or –12% Not to exceed +20% (P, J case) or +12% Lower than initial specification Refer to Standard Ratings Refer to Standard Ratings Not to exceed +20% (P, J case) or +15% 0.1C • V(/L50528A) or 5/L50528A, which ever is greater Step 1: 25±2℃ Step 2: –55 ℃ Step 3: 25±2℃ Step 4: 125 ℃ ———— Derated voltage at 85℃ at more [UT] = [UR] – [UR] – [UC] Reference : Derated voltage (85 to 125°C) [UT] : Derated voltage at operating temperature [UR] : Rated voltage [UC] : Derated voltage at 125°C T : Operating temperature (T–85)

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series 2.5 10 J ESVJ0E106M 0.5 20 6.5 30 30 ±20% ±20% 15 J ESVJ0E156M 0.5 20 8 30 30 ±20% ±20% 22 P ESVP0E226M 0.5 20 4 30 30 ±20% ±20% 22 A2 ESVA20E226M 0.5 12 3 20 14 ±12% ±12% 33 A2 ESVA20E336M 0.8 12 4 22 14 ±12% ±12% 33 P ESVP0E336M 0.8 20 4 30 30 ±20% ±20% 47 P ESVP0E476M 1.1 30 6 60 40 ±20% ±20% 47 A2 ESVA20E476M 1.1 12 4.5 22 14 ±12% ±12% 47 A ESVA0E476M 1.1 12 4.5 22 16 ±12% ±12% 68 A ESVA0E686M 1.7 18 4.5 34 20 ±12% ±12% 100 A ESVA0E107M 2.5 30 2 60 40 ±20% ±20% 100 B3 ESVB30E107M 2.5 18 1.3 34 20 ±15% ±15% 100 B2 ESVB20E107M 2.5 8 1 14 10 ±12% ±12% 150 A ESVA0E157M 3.7 30 2 60 40 ±20% ±20% 150 B3 ESVB30E157M 3.7 20 1 40 30 ±15% ±15% 150 C2 ESVC20E157M 3.7 12 0.8 26 18 ±12% ±12% 220 B3 ESVB30E227M 5.5 30 1 60 40 ±15% ±15% 220 B2 ESVB20E227M 5.5 18 0.6 34 20 ±12% ±12% 220 C2 ESVC20E227M 5.5 12 0.8 26 18 ±12% ±12% 330 B3 ESVB30E337M 8.2 30 1 60 40 ±15% ±15% 330 B2 ESVB20E337M 8.2 25 0.6 50 30 ±12% ±20% 330 C ESVC0E337M 8.2 16 0.3 34 18 ±12% ±12% 470 B2 ESVB20E477M 11.7 35 0.6 70 50 ±20% ±20% 470 C ESVC0E477M 11.7 18 1.5 34 20 ±12% ±12% 470 D ESVD0E477M 11.7 14 0.5 18 16 ±12% ±12% 3.3 P ESVP0G335M 0.5 20 20 30 30 ±20% ±20% 6.8 J ESVJ0G685M 0.5 20 7.5 30 30 ±20% ±20% 10 J ESVJ0G106M 0.5 20 6.5 30 30 ±20% ±20% 10 P ESVP0G106M 0.5 20 6 30 30 ±20% ±20% 15 P ESVP0G156M 0.6 20 5 30 30 ±20% ±20% 22 P ESVP0G226M 0.8 20 4 30 30 ±20% ±20% 22 A2 ESVA20G226M 0.8 12 2.8 22 16 ±12% ±12% 22 A ESVA0G226M 0.8 8 2.5 12 10 ±12% ±12% 33 P ESVP0G336M 1.3 20 4 30 30 ±20% ±20% 33 A2 ESVA20G336M 1.3 8 4.5 14 10 ±12% ±12% 33 A ESVA0G336M 1.3 10 3 14 12 ±12% ±12% 47 P ESVP0G476M 1.8 30 3 60 40 ±20% ±20% 47 A2 ESVA20G476M 1.8 15 4.5 30 20 ±12% ±12% 47 A ESVA0G476M 1.8 12 2.5 22 14 ±12% ±12% 47 B3 ESVB30G476M 1.8 12 1.7 18 15 ±15% ±15% 68 A ESVA0G686M 2.7 12 2.5 22 14 ±12% ±12% 68 B3 ESVB30G686M 2.7 15 1.5 28 17 ±15% ±15%

100 A2 ESVA20G107M 4 30 2 60 40 ±20% ±20%

100 A ESVA0G107M 4 30 2 60 40 ±20% ±20%

100 B3 ESVB30G107M 4 20 1.3 38 22 ±15% ±15% 100 B2 ESVB20G107M 4 12 0.8 22 14 ±12% ±12% 100 C2 ESVC20G107M 4 10 0.8 18 12 ±12% ±12% 150 B2 ESVB20G157M 6 18 0.7 34 20 ±12% ±12% 150 C2 ESVC20G157M 6 10 0.8 18 12 ±12% ±12% 220 B2 ESVB20G227M 8.8 18 0.5 34 20 ±12% ±12% 220 C ESVC0G227M 8.8 12 0.6 22 14 ±12% ±12% 330 C ESVC0G337M 13.2 14 0.2 26 16 ±12% ±12% 330 V ESVV0G337M 13.2 12 0.5 18 14 ±12% ±12% 470 D ESVD0G477M 18.8 16 0.3 30 18 ±12% ±12% 680 D ESVD0G687M 27.2 24 0.3 46 26 ±12% ±12% 6.3 1.5 P ESVP0J155M 0.5 10 25 15 15 ±20% ±20% 2.2 J ESVJ0J225M 0.5 20 17.5 30 30 ±20% ±20% 3.3 J ESVJ0J335M 0.5 20 13.5 30 30 ±20% ±20% 4.7 J ESVJ0J475M 0.5 20 8.5 30 30 ±20% ±20% 4.7 P ESVP0J475M 0.5 20 10 30 30 ±20% ±20% 4.7 A ESVA0J475M 0.5 8 5.5 12 10 ± 5% ±10% 6.8 J ESVJ0J685M 0.5 20 7 30 30 ±20% ±20% 6.8 P ESVP0J685M 0.5 20 7 30 30 ±20% ±20% CapacitanceVoltage (V) Case Code Part Number (Bulk)( /L50528F) Rated Capacitance Change at Endurance-55℃ +125℃ Soldering Heat at Resistance to at Damp Heat at Surge Voltage Leakage Current Max DF Max ESR Max (%)( /L50528A) DF (%) Max (/L50529) /L50237 STANDARD RATINGS

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series Manganese dioxide type 6.3 6.8 A2 ESVA20J685M 0.5 8 6.5 12 10 ±12% ±12% 10 J ESVJ0J106M 0.6 20 8 38 22 ±20% ±20% 10 P ESVP0J106M 0.6 20 6 30 30 ±20% ±20% 10 A2 ESVA20J106M 0.6 8 4.5 12 10 ±12% ±12% 10 A ESVA0J106M 0.6 8 3.2 12 10 ±12% ±12% 15 P ESVP0J156M 0.9 20 5 30 30 ±20% ±20% 15 A2 ESVA20J156M 0.9 12 4 22 14 ±12% ±12% 15 A ESVA0J156M 0.9 8 3 12 10 ±12% ±12% 22 P ESVP0J226M 1.3 20 4 38 22 ±20% ±20% 22 A2 ESVA20J226M 1.3 12 2.8 22 14 ±12% ±12% 22 A ESVA0J226M 1.3 10 3 14 12 ±12% ±12% 22 B3 ESVB30J226M 1.3 8 2 12 10 ±15% ±15% 22 B2 ESVB20J226M 1.3 8 1.6 12 10 ± 5% ±10%

33 A2 ESVA20J336M 2 18 3 34 20 ±20% ±20%

33 A ESVA0J336M 2 12 2.5 22 14 ±12% ±12% 33 B3 ESVB30J336M 2 12 1.7 18 15 ±15% ±15% 47 A ESVA0J476M 2.9 12 2 22 14 ±12% ±12% 47 B3 ESVB30J476M 2.9 12 1.7 18 15 ±15% ±15% 47 B2 ESVB20J476M 2.9 8 1.3 12 10 ± 5% ±10% 47 C ESVC0J476M 2.9 8 0.9 12 10 ± 5% ±10% 68 A ESVA0J686M 4.2 30 2 60 40 ±12% ±12% 68 B3 ESVB30J686M 4.2 20 2 38 22 ±15% ±15% 68 B2 ESVB20J686M 4.2 10 1 18 12 ±12% ±12% 68 C2 ESVC20J686M 4.2 10 0.8 14 12 ±12% ±12% 100 A ESVA0J107M 6.3 25 2 60 40 ±20% ±20% 100 B3 ESVB30J107M 6.3 20 1.3 38 22 ±15% ±15% 100 B2 ESVB20J107M 6.3 12 0.9 22 14 ±12% ±12% 100 C2 ESVC20J107M 6.3 10 0.8 18 12 ±12% ±12% 100 C ESVC0J107M 6.3 10 0.6 14 12 ±12% ±12% 150 B2 ESVB20J157M 9.4 12 1 22 14 ±12% ±12% 150 C ESVC0J157M 9.4 10 0.6 18 12 ±12% ±12% 220 B2 ESVB20J227M 13.8 18 1 34 20 ±12% ±12% 220 C ESVC0J227M 13.8 14 1.2 26 16 ±12% ±12% 220 V ESVV0J227M 13.8 12 0.5 18 14 ±12% ±12% 220 D ESVD0J227M 13.8 12 0.5 18 14 ±12% ±12% 330 V ESVV0J337M 20.7 14 0.5 26 16 ±5% ±10% 330 D ESVD0J337M 20.7 14 0.5 26 16 ±12% ±12% 470 D ESVD0J477M 29.6 20 0.3 38 22 ±20% ±20% 1 P ESVP1A105M 0.5 10 25 15 15 ±20% ±20% 1.5 J ESVJ1A155M 0.5 20 25.5 30 30 ±20% ±20% 1.5 P ESVP1A155M 0.5 20 25 30 30 ±20% ±20% 2.2 J ESVJ1A225M 0.5 20 17.5 30 30 ±20% ±20% 2.2 P ESVP1A225M 0.5 20 19 30 30 ±20% ±20% 3.3 J ESVJ1A335M 0.5 20 25 30 30 ±20% ±20% 3.3 P ESVP1A335M 0.5 20 13 30 30 ±20% ±20% 3.3 A2 ESVA21A335M 0.5 8 8 12 10 ±12% ±12% 4.7 J ESVJ1A475M 0.5 20 10 30 30 ±20% ±20% 4.7 P ESVP1A475M 0.5 20 6 30 30 ±20% ±20% 4.7 A2 ESVA21A475M 0.5 8 8 12 10 ±12% ±12% 4.7 A ESVA1A475M 0.5 8 4.5 12 10 ±12% ±12% 6.8 A2 ESVA21A685M 0.6 8 8 12 10 ±12% ±12% 6.8 A ESVA1A685M 0.6 8 4.5 12 10 ±12% ±12%

10 P ESVP1A106M 1 20 6 30 30 ±20% ±20%

10 A2 ESVA21A106M 1 8 8 12 10 ±12% ±12%

10 A ESVA1A106M 1 8 3.2 12 10 ±12% ±12% 10 B2 ESVB21A106M 1 8 2.4 12 10 ± 5% ±10% 15 A2 ESVA21A156M 1.5 12 3 22 14 ±12% ±12% 15 B3 ESVB31A156M 1.5 8 2.7 12 10 ±15% ±15% 22 A ESVA1A226M 2.2 12 2.5 22 14 ±12% ±12% 22 B3 ESVB31A226M 2.2 8 1.9 12 10 ±15% ±15% 22 B2 ESVB21A226M 2.2 8 1.4 12 10 ± 5% ±10% 33 B3 ESVB31A336M 3.3 12 1.7 18 15 ±15% ±15% 33 B2 ESVB21A336M 3.3 8 1.4 12 10 ± 5% ±10% CapacitanceVoltage (V) Case Code Part Number (Bulk)( /L50528F) Rated Capacitance Change at Endurance-55℃ +125℃ Soldering Heat at Resistance to at Damp Heat at Surge Voltage Leakage Current Max DF Max ESR Max (%)( /L50528A) DF (%) Max (/L50529)

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series 47 A ESVA1A476M 4.7 20 5 36 24 ±20% ±20% 47 B2 ESVB21A476M 4.7 8 1 12 10 ±12% ±12% 47 C2 ESVC21A476M 4.7 8 1 14 10 ±12% ±12% 47 C ESVC1A476M 4.7 8 0.9 12 10 ± 5% ±10% 68 B2 ESVB21A686M 6.8 12 0.9 14 14 ±12% ±12% 68 C2 ESVC21A686M 6.8 10 1 18 14 ±12% ±12% 68 C ESVC1A686M 6.8 8 0.7 12 10 ±12% ±12% 100 B2 ESVB21A107M 10 16 1.4 20 20 ±20% ±30% 100 C2 ESVC21A107M 10 10 0.8 18 14 ±12% ±12% 100 C ESVC1A107M 10 10 0.5 18 12 ±12% ±12% 100 V ESVV1A107M 10 8 0.5 18 10 ±12% ±12% 100 D ESVD1A107M 10 8 0.6 18 10 ± 5% ±10% 150 V ESVV1A157M 15 8 0.5 18 10 ±12% ±12% 150 D ESVD1A157M 15 10 0.6 18 12 ±12% ±12% 220 D ESVD1A227M 22 12 0.6 22 14 ±12% ±12% 0.47 P ESVP1C474M 0.5 10 35 15 15 ±20% ±20% 0.68 P ESVP1C684M 0.5 10 25 15 15 ±20% ±20% 1 J ESVJ1C105M 0.5 10 25.5 30 15 ±20% ±20% 1 P ESVP1C105M 0.5 10 20 15 15 ±20% ±20% 1.5 J ESVJ1C155M 0.5 10 25 20 15 ±20% ±20% 1.5 A ESVA1C155M 0.5 4 6 8 6 ± 5% ±10% 2.2 J ESVJ1C225M 6.8 20 20 30 30 ±20% ±20% 2.2 P ESVP1C225M 0.5 10 19 15 15 ±20% ±20% 2.2 A2 ESVA21C225M 0.5 6 10 10 8 ±12% ±12% 2.2 A ESVA1C225M 0.5 6 6 10 8 ± 5% ±10% 3.3 P ESVP1C335M 0.5 10 8 15 15 ±20% ±20% 3.3 A2 ESVA21C335M 0.5 8 7 14 10 ±12% ±12% 3.3 A ESVA1C335M 0.5 6 4.5 10 8 ±12% ±12% 4.7 A2 ESVA21C475M 0.7 8 4.5 14 10 ±12% ±12% 4.7 A ESVA1C475M 0.7 6 4 10 8 ±12% ±12%

6.8 A ESVA1C685M 1 6 4 10 8 ±12% ±12%

6.8 B3 ESVB31C685M 1 6 4.1 10 8 ±15% ±15% 10 A ESVA1C106M 1.6 8 3.2 12 10 ±12% ±12% 10 B3 ESVB31C106M 1.6 8 3.5 14 10 ±15% ±15% 10 B2 ESVB21C106M 1.6 6 2 10 8 ± 5% ±10% 15 A ESVA1C156M 2.4 12 5 22 14 ±12% ±12% 15 B2 ESVB21C156M 2.4 6 2 10 8 ± 5% ±10% 22 B3 ESVB31C226M 3.5 10 2.2 18 12 ±15% ±15% 22 B2 ESVB21C226M 3.5 6 2.2 10 8 ± 5% ±10% 22 C ESVC1C226M 3.5 6 1.5 10 8 ± 5% ±10% 33 B2 ESVB21C336M 5.2 8 1.4 14 10 ±5% ±10% 33 C2 ESVC21C336M 5.2 6 1.4 10 8 ±12% ±12% 33 C ESVC1C336M 5.2 6 1.1 10 8 ± 5% ±10% 47 C ESVC1C476M 7.5 6 0.8 10 8 ±12% ±12% 47 D ESVD1C476M 7.5 6 0.7 10 8 ± 5% ±10% 68 C ESVC1C686M 10.8 6 0.7 16 10 ±12% ±12% 68 D ESVD1C686M 10.8 6 0.7 10 8 ± 5% ±10% 100 D ESVD1C107M 16 8 0.5 18 10 ±12% ±12% 0.47 A2 ESVA21D474M 0.5 6 25 10 8 ± 5% ±10% 0.68 A2 ESVA21D684M 0.5 6 15 10 8 ± 5% ±10% 1 A2 ESVA21D105M 0.5 6 12 10 8 ±12% ±12% 1.5 A2 ESVA21D155M 0.5 6 7.4 10 8 ±12% ±12% 2.2 P ESVP1D225M 0.5 10 8 15 15 ±20% ±20% 2.2 A2 ESVA21D225M 0.5 6 7 10 8 ±12% ±12% 2.2 A ESVA1D225M 0.5 6 6 10 8 ±12% ±12% 3.3 A2 ESVA21D335M 0.6 8 5 14 10 ±12% ±12% 3.3 A ESVA1D335M 0.6 6 5 10 8 ±12% ±12% 3.3 B3 ESVB31D335M 0.6 6 3.9 10 8 ±15% ±15% 4.7 A2 ESVA21D475M 0.9 15 5 30 20 ±12% ±12% 4.7 A ESVA1D475M 0.9 6 5 10 8 ±12% ±12% 4.7 B3 ESVB31D475M 0.9 6 3 10 8 ±15% ±15% 4.7 B2 ESVB21D475M 0.9 6 3 10 8 ± 5% ±10% 6.8 B3 ESVB31D685M 1.3 6 3 10 8 ±15% ±15% CapacitanceVoltage (V) Case Code Part Number (Bulk)( /L50528F) Rated Capacitance Change at Endurance-55℃ +125℃ Soldering Heat at Resistance to at Damp Heat at Surge Voltage Leakage Current Max DF Max ESR Max (%)( /L50528A) DF (%) Max (/L50529)

˔"MMTQFDJGJDBUJPOTJOUIJTDBUBMPHBOEQSPEVDUJPOTUBUVTPGQSPEVDUTBSFTVCKFDUUPDIBOHFXJUIPVUOPUJDF1SJPSUPUIFQVSDIBTF QMFBTFDPOUBDU/&$50,*/GPSVQEBUFEQSPEVDUEBUB ˔1MFBTFSFRVFTUGPSBTQFDJGJDBUJPOTIFFUGPSEFUBJMFEQSPEVDUEBUBQSJPSUPUIFQVSDIBTF ˔#FGPSFVTJOHUIFQSPEVDUJOUIJTDBUBMPH QMFBTFSFBE1SFDBVUJPOTBOEPUIFSTBGFUZQSFDBVUJPOTMJTUFEJOUIFQSJOUFEWFSTJPODBUBMPH 9653TCAVOL14E1109E0 E/SV Series Manganese dioxide type 6.8 B2 ESVB21D685M 1.3 6 2.8 10 8 ± 5% ±10% 10 B2 ESVB21D106M 2 6 2.5 10 8 ± 5% ±10% 15 C ESVC1D156M 3 6 1.7 10 8 ± 5% ±10% 22 B2 ESVB21D226M 4.4 6 3 10 8 ±20% ±20% 22 C2 ESVC21D226M 4.4 6 1.4 10 8 ±12% ±12% 22 C ESVC1D226M 4.4 6 1.4 10 8 ±12% ±12% 22 D ESVD1D226M 4.4 6 0.8 10 8 ± 5% ±10% 33 D ESVD1D336M 6.6 6 0.8 10 8 ± 5% ±10% 47 C ESVC1D476M 9.4 6 1 10 8 ±12% ±12% 47 D ESVD1D476M 9.4 6 0.7 10 8 ± 5% ±10% 0.47 A ESVA1E474M 0.5 4 13 8 6 ± 5% ±10% 0.68 A ESVA1E684M 0.5 6 9 10 8 ± 5% ±10% 1 P ESVP1E105M 0.5 6 8 10 8 ±20% ±20% 1 A2 ESVA21E105M 0.5 6 13 10 8 ±12% ±12% 1 A ESVA1E105M 0.5 6 8 10 8 ± 5% ±10% 2.2 A ESVA1E225M 0.5 6 7 10 8 ±12% ±12% 3.3 A ESVA1E335M 0.8 6 7 10 8 ±12% ±12% 4.7 B3 ESVB31E475M 1.1 6 3 10 8 ±15% ±15% 4.7 B2 ESVB21E475M 1.1 6 3 10 8 ± 5% ±10% 6.8 B2 ESVB21E685M 1.7 6 2.5 10 8 ± 5% ±10% 10 C2 ESVC21E106M 2.5 6 2 10 8 ±12% ±12% 10 C ESVC1E106M 2.5 6 1.5 10 8 ± 5% ±10% 15 C ESVC1E156M 3.7 6 1.5 10 8 ±12% ±12% 22 D ESVD1E226M 5.5 6 0.8 10 8 ± 5% ±10% 33 D ESVD1E336M 8.2 6 0.7 10 8 ± 5% ±10% 0.47 A ESVA1V474M 0.5 6 12 10 8 ± 5% ±10% 0.68 A ESVA1V684M 0.5 6 8 10 8 ± 5% ±10% 1 A2 ESVA21V105M 0.5 6 13 10 8 ±12% ±12% 1 A ESVA1V105M 0.5 6 7 10 8 ±12% ±12% 1.5 A ESVA1V155M 0.5 6 7 10 8 ±12% ±12% 2.2 A ESVA1V225M 0.7 6 5 10 8 ±12% ±12% 2.2 B2 ESVB21V225M 0.7 6 4 10 8 ± 5% ±10% 3.3 B3 ESVB31V335M 1.1 6 3 10 8 ±15% ±15% 3.3 B2 ESVB21V335M 1.1 6 3.5 10 8 ± 5% ±10% 4.7 C ESVC1V475M 1.6 6 2.2 10 8 ± 5% ±10% 6.8 C ESVC1V685M 2.3 6 1.9 10 8 ± 5% ±10% 10 C ESVC1V106M 3.5 6 1.5 10 8 ± 5% ±10% 10 D ESVD1V106M 3.5 6 1 10 8 ± 5% ±10% 15 D ESVD1V156M 5.2 6 0.9 10 8 ± 5% ±10% CapacitanceVoltage (V) Case Code Part Number (Bulk)( /L50528F) Rated Capacitance Change at Endurance-55℃ +125℃ Soldering Heat at Resistance to at Damp Heat at Surge Voltage Leakage Current Max DF Max ESR Max (%)( /L50528A) DF (%) Max (/L50529)