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  • 型号: B32672L8153J
  • 制造商: EPCOS
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B32672L8153J产品简介:

ICGOO电子元器件商城为您提供B32672L8153J由EPCOS设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 提供B32672L8153J价格参考以及EPCOSB32672L8153J封装/规格参数等产品信息。 你可以下载B32672L8153J参考资料、Datasheet数据手册功能说明书, 资料中有B32672L8153J详细功能的应用电路图电压和使用方法及教程。

产品参数 图文手册 常见问题
参数 数值
产品目录

电容器

描述

CAP FILM 0.015UF 2KVDC RADIAL

ESR(等效串联电阻)

-

产品分类

薄膜电容器

品牌

EPCOS Inc

数据手册

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产品图片

产品型号

B32672L8153J

PCN封装

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PCN设计/规格

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rohs

无铅 / 符合限制有害物质指令(RoHS)规范要求

产品系列

B32672L

产品目录绘图

产品目录页面

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介电材料

聚丙烯(PP), 金属化

其它名称

495-3234
B32672L8153J000

包装

散装

大小/尺寸

0.709" 长 x 0.335" 宽(18.00mm x 8.50mm)

安装类型

通孔

容差

±5%

封装/外壳

径向

工作温度

-55°C ~ 125°C

应用

高脉冲,DV/DT

引线间距

0.591"(15.00mm)

标准包装

500

特性

-

电容

0,015µF

端接

PC 引脚

额定电压-AC

700V

额定电压-DC

2000V(2kV)

高度-安装(最大值)

0.571"(14.50mm)

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PDF Datasheet 数据手册内容提取

Film Capacitors Metallized Polypropylene Film Capacitors (MKP) Series/Type: B32671L, B32672L Date: June 2018 ©EPCOSAG2018.Reproduction,publicationanddisseminationofthispublication,enclosuresheretoandthe informationcontainedthereinwithoutEPCOS'priorexpressconsentisprohibited. EPCOSAGisaTDKGroupCompany.

Metallized polypropylene film capacitors (MKP) B32671L, B32672L High V AC, high temperature (wound) Typical applications Dimensional drawing Electronic ballasts (resonant circuits) SMPS High-frequency AC loads Pulse circuits Climatic Max. operating temperature: 125 °C Climatic category (IEC 60068-1:2013): 55/110/56 Construction Dimensions in mm Dielectric: metallized polypropylene (PP) Wound capacitor technology Lead spacing Lead diameter Type Plastic case (UL 94 V-0) ±0.4 d ±0.05 Epoxy resin sealing 1 10 0.6 B32671L Features 15 0.8 B32672L Very high AC voltages for all frequency ranges Very small dimensions High peak voltage for short time periods High peak current High pulse withstand capability RoHS-compatible Halogen-free capacitors available on request AEC-Q200D compliant Terminals Parallel wire leads, lead-free tinned Special lead lengths available on request Marking Manufacturer's logo lot number, series number Rated capacitance (coded) Capacitance tolerance (code letter) Rated voltage Date of manufacture (coded) Delivery mode Bulk (untaped) Taped (Ammo pack or reel) For notes on taping, refer to chapter "Taping and packing“. PleasereadCautionsandwarningsand Page2of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Overview of available types Lead spacing 10 mm 15 mm Type B32671L B32672L Page 4 6 V (V AC) 200 250 250 500 600 700 160 200 250 250 500 600 700 900 RMS V (V DC) 400 630 1000 1000 1600 2000 250 450 630 1000 1300 1600 2000 2000 R C (nF) R 1.0 1.2 1.5 2.2 2.7 3.3 3.9 4.7 5.6 6.2 6.8 8.2 10 12 15 22 33 47 56 68 100 150 220 330 390 470 680 1000 PleasereadCautionsandwarningsand Page3of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Ordering codes and packing units (lead spacing 10 mm) V V C Max. dimensions Ordering code Ammo Reel Untaped RMS R R f ≤1 kHz w × h × l (composition see pack V AC V DC nF mm below) pcs./MOQ pcs./MOQ pcs./MOQ 200 400 22 4.0 × 9.0 × 13.0 B32671L4223+*** 4000 6800 4000 33 4.0 × 9.0 × 13.0 B32671L4333+*** 4000 6800 4000 47 5.0 × 11.0 × 13.0 B32671L4473+*** 3320 5200 4000 68 5.0 × 11.0 × 13.0 B32671L4683+*** 3320 5200 4000 100 6.0 × 12.0 × 13.0 B32671L4104+*** 2720 4400 4000 250 630 15 4.0 × 9.0 × 13.0 B32671L6153+*** 4000 6800 4000 22 5.0 × 11.0 × 13.0 B32671L6223+*** 3320 5200 4000 33 5.0 × 11.0 × 13.0 B32671L6333+*** 3320 5200 4000 47 6.0 × 12.0 × 13.0 B32671L6473+*** 2720 4400 4000 56 6.0 × 12.0 × 13.0 B32671L6563+*** 2720 4400 4000 250 1000 4.7 4.0 × 9.0 × 13.0 B32671L9472+*** 4000 6800 4000 6.8 4.0 × 9.0 × 13.0 B32671L9682+*** 4000 6800 4000 10 5.0 × 11.0 × 13.0 B32671L9103+*** 3320 5200 4000 15 5.0 × 11.0 × 13.0 B32671L9153+*** 3320 5200 4000 22 6.0 × 12.0 × 13.0 B32671L9223+*** 2720 4400 4000 500 1000 3.3 4.0 × 9.0 × 13.0 B32671L0332+*** 4000 6800 4000 3.9 4.0 × 9.0 × 13.0 B32671L0392+*** 4000 6800 4000 4.7 4.0 × 9.0 × 13.0 B32671L0472+*** 4000 6800 4000 5.6 5.0 × 11.0 × 13.0 B32671L0562+*** 3320 5200 4000 6.2 5.0 × 11.0 × 13.0 B32671L0622+*** 3320 5200 4000 6.8 5.0 × 11.0 × 13.0 B32671L0682+*** 3320 5200 4000 8.2 6.0 × 12.0 × 13.0 B32671L0822+*** 2720 4400 4000 10 6.0 × 12.0 × 13.0 B32671L0103+*** 2720 4400 4000 12 6.0 × 12.0 × 13.0 B32671L0123+*** 2720 4400 4000 MOQ = Minimum Order Quantity, consisting of 4 packing units. Further E series, intermediate capacitance values and closer tolerances on request. Compositionoforderingcode += Capacitancetolerancecode: ***= Packagingcode: K= ±10% 289= Straightterminals,Ammopack J= ±5% 189= Straightterminals,Reel 003= Straightterminals,untaped(leadlength 3.2±0.3mm) 000= Straightterminals,untaped(leadlength 6(cid:4)1mm) PleasereadCautionsandwarningsand Page4of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Ordering codes and packing units (lead spacing 10 mm) V V C Max. dimensions Ordering code Ammo Reel Untaped RMS R R f ≤1 kHz w × h × l (composition see pack V AC V DC nF mm below) pcs./MOQ pcs./MOQ pcs./MOQ 600 1600 1.2 4.0 × 9.0 × 13.0 B32671L1122+*** 4000 6800 4000 1.5 4.0 × 9.0 × 13.0 B32671L1152+*** 4000 6800 4000 2.2 5.0 × 11.0 × 13.0 B32671L1222+*** 3320 5200 4000 2.7 5.0 × 11.0 × 13.0 B32671L1272+*** 3320 5200 4000 3.3 6.0 × 12.0 × 13.0 B32671L1332+*** 2720 4400 4000 3.9 6.0 × 12.0 × 13.0 B32671L1392+*** 2720 4400 4000 4.7 6.0 × 12.0 × 13.0 B32671L1472+*** 2720 4400 4000 700 2000 1.0 4.0 × 9.0 × 13.0 B32671L8102+*** 4000 6800 4000 1.2 4.0 × 9.0 × 13.0 B32671L8122+*** 4000 6800 4000 1.5 4.0 × 9.0 × 13.0 B32671L8152+*** 4000 6800 4000 2.2 5.0 × 11.0 × 13.0 B32671L8222+*** 3320 5200 4000 2.7 5.0 × 11.0 × 13.0 B32671L8272+*** 3320 5200 4000 3.3 5.0 × 11.0 × 13.0 B32671L8332+*** 3320 5200 4000 3.9 6.0 × 12.0 × 13.0 B32671L8392+*** 2720 4400 4000 4.7 6.0 × 12.0 × 13.0 B32671L8472+*** 2720 4400 4000 MOQ = Minimum Order Quantity, consisting of 4 packing units. Further E series, intermediate capacitance values and closer tolerances on request. Compositionoforderingcode += Capacitancetolerancecode: ***= Packagingcode: K= ±10% 289= Straightterminals,Ammopack J= ±5% 189= Straightterminals,Reel 003= Straightterminals,untaped(leadlength 3.2±0.3mm) 000= Straightterminals,untaped(leadlength 6(cid:4)1mm) PleasereadCautionsandwarningsand Page5of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Ordering codes and packing units (lead spacing 15 mm) V V C Max. dimensions Ordering code Ammo Reel Untaped RMS R R f ≤1 kHz w × h × l (composition see pack V AC V DC nF mm below) pcs./MOQ pcs./MOQ pcs./MOQ 160 250 150 5.0 × 10.5 × 18.0 B32672L2154+*** 4680 5200 4000 220 6.0 × 11.0 × 18.0 B32672L2224+*** 3840 4400 4000 330 7.0 × 12.5 × 18.0 B32672L2334+*** 3320 3600 4000 470 8.5 × 14.5 × 18.0 B32672L2474+*** 2720 2800 2000 680 9.0 × 17.5 × 18.0 B32672L2684+*** 2560 2800 2000 1000 11.0 × 18.5 × 18.0 B32672L2105+*** (cid:4) 2200 1200 200 450 68 5.0 × 10.5 × 18.0 B32672L4683+*** 4680 5200 4000 100 5.0 × 10.5 × 18.0 B32672L4104+*** 4680 5200 4000 150 6.0 × 11.0 × 18.0 B32672L4154+*** 3840 4400 4000 220 7.0 × 12.5 × 18.0 B32672L4224+*** 3320 3600 4000 330 8.0 × 14.0 × 18.0 B32672L4334+*** 2920 3000 2000 470 9.0 × 17.5 × 18.0 B32672L4474+*** 2560 2800 2000 680 11.0 × 18.5 × 18.0 B32672L4684+*** (cid:4) 2200 1200 250 630 33 5.0 × 10.5 × 18.0 B32672L6333+*** 4680 5200 4000 47 5.0 × 10.5 × 18.0 B32672L6473+*** 4680 5200 4000 68 6.0 × 11.0 × 18.0 B32672L6683+*** 3840 4400 4000 100 7.0 × 12.5 × 18.0 B32672L6104+*** 3320 3600 4000 150 8.5 × 14.5 × 18.0 B32672L6154+*** 2720 2800 2000 220 9.0 × 17.5 × 18.0 B32672L6224+*** 2560 2800 2000 390 11.0 × 18.5 × 18.0 B32672L6394+*** (cid:4) 2200 1200 MOQ = Minimum Order Quantity, consisting of 4 packing units. Further E series, intermediate capacitance values and closer tolerances on request. Compositionoforderingcode += Capacitancetolerancecode: ***= Packagingcode: K= ±10% 289= Straightterminals,Ammopack J= ±5% 189= Straightterminals,Reel 003= Straightterminals,untaped(leadlength 3.2±0.3mm) 000= Straightterminals,untaped(leadlength 6(cid:4)1mm) PleasereadCautionsandwarningsand Page6of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Ordering codes and packing units (lead spacing 15 mm) V V C Max. dimensions Ordering code Ammo Reel Untaped RMS R R f ≤1 kHz w × h × l (composition see pack V AC V DC nF mm below) pcs./MOQ pcs./MOQ pcs./MOQ 250 1000 10 5.0 × 10.5 × 18.0 B32672L0103+*** 4680 5200 4000 15 5.0 × 10.5 × 18.0 B32672L0153+*** 4680 5200 4000 22 5.0 × 10.5 × 18.0 B32672L0223+*** 4680 5200 4000 33 6.0 × 11.0 × 18.0 B32672L0333+*** 3840 4400 4000 47 7.0 × 12.5 × 18.0 B32672L0473+*** 3320 3600 4000 68 8.5 × 14.5 × 18.0 B32672L0683+*** 2720 2800 2000 100 9.0 × 17.5 × 18.0 B32672L0104+*** 2560 2800 2000 150 11.0 × 18.5 × 18.0 B32672L0154+*** (cid:4) 2200 1200 500 1300 6.8 5.0 × 10.5 × 18.0 B32672L7682+*** 4680 5200 4000 10 5.0 × 10.5 × 18.0 B32672L7103+*** 4680 5200 4000 22 7.0 × 12.5 × 18.0 B32672L7223+*** 3320 3600 4000 33 8.5 × 14.5 × 18.0 B32672L7333+*** 2720 2800 2000 47 9.0 × 17.5 × 18.0 B32672L7473+*** 2560 2800 2000 68 11.0 × 18.5 × 18.0 B32672L7683+*** (cid:4) 2200 1200 600 1600 6.2 5.0 × 10.5 × 18.0 B32672L1622+*** 4680 5200 4000 6.8 5.0 × 10.5 × 18.0 B32672L1682+*** 4680 5200 4000 8.2 6.0 × 11.0 × 18.0 B32672L1822+*** 3840 4400 4000 10 6.0 × 11.0 × 18.0 B32672L1103+*** 3840 4400 4000 12 6.0 × 12.0 × 18.0 B32672L1123+*** 3840 4400 4000 15 7.0 × 12.5 × 18.0 B32672L1153+*** 3320 3600 4000 22 8.5 × 14.5 × 18.0 B32672L1223+*** 2720 2800 2000 33 9.0 × 17.5 × 18.0 B32672L1333+*** 2560 2800 2000 47 11.0 × 18.5 × 18.0 B32672L1473+*** (cid:4) 2200 1200 MOQ = Minimum Order Quantity, consisting of 4 packing units. Further E series, intermediate capacitance values and closer tolerances on request. Compositionoforderingcode += Capacitancetolerancecode: ***= Packagingcode: K= ±10% 289= Straightterminals,Ammopack J= ±5% 189= Straightterminals,Reel 003= Straightterminals,untaped(leadlength 3.2±0.3mm) 000= Straightterminals,untaped(leadlength 6(cid:4)1mm) PleasereadCautionsandwarningsand Page7of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Ordering codes and packing units (lead spacing 15 mm) V V C Max. dimensions Ordering code Ammo Reel Untaped RMS R R f ≤1 kHz w × h × l (composition see pack V AC V DC nF mm below) pcs./MOQ pcs./MOQ pcs./MOQ 700 2000 1.0 5.0 × 10.5 × 18.0 B32672L8102+*** 4680 5200 4000 1.2 5.0 × 10.5 × 18.0 B32672L8122+*** 4680 5200 4000 1.5 5.0 × 10.5 × 18.0 B32672L8152+*** 4680 5200 4000 2.2 5.0 × 10.5 × 18.0 B32672L8222+*** 4680 5200 4000 2.7 5.0 × 10.5 × 18.0 B32672L8272+*** 4680 5200 4000 3.3 5.0 × 10.5 × 18.0 B32672L8332+*** 4680 5200 4000 3.9 5.0 × 10.5 × 18.0 B32672L8392+*** 4680 5200 4000 4.7 5.0 × 10.5 × 18.0 B32672L8472+*** 4680 5200 4000 5.6 6.0 × 11.0 × 18.0 B32672L8562+*** 3840 4400 4000 6.2 6.0 × 11.0 × 18.0 B32672L8622+*** 3840 4400 4000 6.8 6.0 × 11.0 × 18.0 B32672L8682+*** 3840 4400 4000 8.2 6.0 × 12.0 × 18.0 B32672L8822+*** 3840 4400 4000 10 7.0 × 12.5 × 18.0 B32672L8103+*** 3320 3600 4000 12 8.5 × 14.5 × 18.0 B32672L8123+*** 2720 2800 2000 15 8.5 × 14.5 × 18.0 B32672L8153+*** 2720 2800 2000 22 9.0 × 17.5 × 18.0 B32672L8223+*** 2560 2800 2000 33 11.0 × 18.5 × 18.0 B32672L8333+*** (cid:4) 2200 1200 MOQ = Minimum Order Quantity, consisting of 4 packing units. Further E series, intermediate capacitance values and closer tolerances on request. Compositionoforderingcode += Capacitancetolerancecode: ***= Packagingcode: K= ±10% 289= Straightterminals,Ammopack J= ±5% 189= Straightterminals,Reel 003= Straightterminals,untaped(leadlength 3.2±0.3mm) 000= Straightterminals,untaped(leadlength 6(cid:4)1mm) PleasereadCautionsandwarningsand Page8of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Ordering codes and packing units (lead spacing 15 mm) V V C Max. dimensions Ordering code Ammo Reel Untaped RMS R R f ≤1 kHz w × h × l (composition see pack V AC V DC nF mm below) pcs./MOQ pcs./MOQ pcs./MOQ 900 2000 1.0 5.0 × 10.5 × 18.0 B32672L9102+*** 4680 5200 4000 1.2 6.0 × 11.0 × 18.0 B32672L9122+*** 3840 4400 4000 1.5 6.0 × 11.0 × 18.0 B32672L9152+*** 3840 4400 4000 2.2 7.0 × 12.5 × 18.0 B32672L9222+*** 3320 3600 4000 2.7 8.0 × 14.0 × 18.0 B32672L9272+*** 2920 3000 2000 3.3 8.5 × 14.5 × 18.0 B32672L9332+*** 2720 2800 2000 3.9 9.0 × 17.5 × 18.0 B32672L9392+*** 2560 2800 2000 4.7 9.0 × 17.5 × 18.0 B32672L9472+*** 2560 2800 2000 5.6 11.0 × 18.5 × 18.0 B32672L9562+*** (cid:4) 2200 1200 6.2 11.0 × 18.5 × 18.0 B32672L9622+*** (cid:4) 2200 1200 6.8 11.0 × 18.5 × 18.0 B32672L9682K*** (cid:4) 2200 1200 MOQ = Minimum Order Quantity, consisting of 4 packing units. Further E series, intermediate capacitance values and closer tolerances on request. Compositionoforderingcode += Capacitancetolerancecode: ***= Packagingcode: K= ±10% 289= Straightterminals,Ammopack J= ±5% 189= Straightterminals,Reel 003= Straightterminals,untaped(leadlength 3.2±0.3mm) 000= Straightterminals,untaped(leadlength 6(cid:4)1mm) PleasereadCautionsandwarningsand Page9of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Technical data Reference standard: IEC 60384-16:2005 and AEC-Q200D. All data given at T = 20 °C, unless otherwise specified. Rated temperature T +85 °C R Operating temperature Max. operating temperature T +125 °C op,max range Upper category temperature T +110 °C max Lower category temperature Tmin (cid:4)55 °C Rated temperature T +85 °C R Dissipation factor tan δ at ≤27 nF 27 nF< C ≤0.1 μF 0.1 μF < C ≤1 μF >1 μF R R (in 10-3) at 20 °C 1 kHz 0.8 0.8 0.8 0.8 (upper limit values) 10 kHz 1.0 1.0 1.0 (cid:4) 100 kHz 2.0 3.0 (cid:4) (cid:4) Insulation resistance R 100 GΩ (C ≤ 0.33 μF) ins R or time constant 30000 s (C > 0.33 μF) R τ = CR (cid:5) Rinsat 20 °C, rel. humidity ≤ 65% (minimum as-delivered values) DC test voltage 1.6 (cid:5) VR, 2 s Category voltage V T (°C) DC voltage derating AC voltage derating C op (continuous operation T ≤ 85 V = V V = V op C R C,RMS RMS with VDCor VAC at f ≤1 kHz) 85<Top≤110 VC = VR (cid:5) (165(cid:4)Top)/80 VC,RMS=VRMS (cid:5) (165(cid:4)Top)/80 Operating voltage V for T (°C) DC voltage (max. hours) AC voltage (max. hours) op op short operating periods Top ≤ 100 Vop = 1.25 (cid:5) VC (2000 h) Vop = 1.0 (cid:5) VC,RMS (2000 h) (VDC or VAC at f ≤1 kHz) 100<Top≤125 Vop = 1.25 (cid:5) VC (1000 h) Vop = 1.0 (cid:5) VC,RMS (1000 h) Biased humidity 1000 h / 40 °C / 93% relative humidity with V R,DC Limit values after test Capacitance change (cid:6)ΔC/C(cid:6) ≤ 5% Dissipation factor change Δ tan δ ≤ 0.002 (at 1 kHz) Insulation resistance R ≥ 200 MΩ ins Reliability: Failure rate λ 1 fit (≤ 1 (cid:5) 10-9/h) at 0.5 (cid:5) VR, 40 °C Service life tSL 200 000 h at 1.0 (cid:5) VR, 85 °C For conversion to other operating conditions and temperatures, refer to chapter "Quality, 2 Reliability". Failure criteria: Total failure Short circuit or open circuit Failure due to variation Capacitance change (cid:6)ΔC/C(cid:6) > 10% of parameters Dissipation factor tan δ > 4 (cid:5) upper limit values Insulation resistance R < 1500 MΩ ins PleasereadCautionsandwarningsand Page10of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Pulse handling capability "dV/dt" represents the maximum permissible voltage change per unit of time for non-sinusoidal voltages, expressed in V/μs. "k " represents the maximum permissible pulse characteristic of the waveform applied to the 0 capacitor, expressed in V2/μs. Note: The values of dV/dt and k provided below must not be exceeded in order to avoid damaging the 0 capacitor. These parameters are given for isolated pulses in such a way that the heat generated by one pulse will be completely dissipated before applying the next pulse. For a train of pulses, please refer to the curves of permissible AC voltage-current versus frequency. dV/dt values Lead spacing 10 mm Type B32671L V (V AC) 200 250 500 600 700 RMS V (V DC) 400 630 1000 1000 1600 2000 R C (nF) dV/dt in V/μs R 1.0 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 11000 1.2 (cid:4) (cid:4) (cid:4) (cid:4) 6000 10000 1.5 (cid:4) (cid:4) (cid:4) (cid:4) 5600 9500 2.2 (cid:4) (cid:4) (cid:4) (cid:4) 5200 9000 2.7 (cid:4) (cid:4) (cid:4) (cid:4) 5000 8600 3.3 (cid:4) (cid:4) (cid:4) 4700 4700 8500 3.9 (cid:4) (cid:4) (cid:4) 4300 4500 8200 4.7 (cid:4) (cid:4) 810 3800 4000 8000 5.6 (cid:4) (cid:4) (cid:4) 3400 (cid:4) (cid:4) 6.2 (cid:4) (cid:4) (cid:4) 3200 (cid:4) (cid:4) 6.8 (cid:4) (cid:4) 810 3100 (cid:4) (cid:4) 8.2 (cid:4) (cid:4) (cid:4) 2700 (cid:4) (cid:4) 10 (cid:4) (cid:4) 810 2500 (cid:4) (cid:4) 12 (cid:4) (cid:4) (cid:4) 2300 (cid:4) (cid:4) 15 (cid:4) 540 810 (cid:4) (cid:4) (cid:4) 22 400 540 810 (cid:4) (cid:4) (cid:4) 33 400 540 (cid:4) (cid:4) (cid:4) (cid:4) 47 400 540 (cid:4) (cid:4) (cid:4) (cid:4) 56 (cid:4) 540 (cid:4) (cid:4) (cid:4) (cid:4) 68 400 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 100 400 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) PleasereadCautionsandwarningsand Page11of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) dV/dt values Lead spacing 15 mm Type B32672L V (V AC) 160 200 250 500 600 700 900 RMS V (V DC) 250 450 630 1000 1300 1600 2000 2000 R C (nF) dV/dt in V/μs R 1.0 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 10000 15000 1.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 9400 14100 1.5 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 9000 13500 2.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 7500 11000 2.7 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 7100 10600 3.3 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 6800 10000 3.9 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 6000 9000 4.7 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 5500 8200 5.6 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 5000 7500 6.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 3600 4700 7000 6.8 (cid:4) (cid:4) (cid:4) (cid:4) 1000 3500 4500 6700 8.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 3100 4200 (cid:4) 10 (cid:4) (cid:4) (cid:4) 445 1000 2800 3900 (cid:4) 12 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 2600 3600 (cid:4) 15 (cid:4) (cid:4) (cid:4) 445 (cid:4) 2300 3300 (cid:4) 22 (cid:4) (cid:4) (cid:4) 445 1000 2000 2900 (cid:4) 33 (cid:4) (cid:4) 300 445 1000 1700 2300 (cid:4) 47 (cid:4) (cid:4) 300 445 1000 1400 (cid:4) (cid:4) 56 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 68 (cid:4) 200 300 445 1000 (cid:4) (cid:4) (cid:4) 100 (cid:4) 200 300 445 (cid:4) (cid:4) (cid:4) (cid:4) 150 170 200 300 445 (cid:4) (cid:4) (cid:4) (cid:4) 220 170 200 300 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 330 170 200 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 390 (cid:4) (cid:4) 300 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 470 170 200 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 680 170 200 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 1000 170 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) PleasereadCautionsandwarningsand Page12of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) k values 0 Lead spacing 10 mm Type B32671L V (V AC) 200 250 500 600 700 RMS V (V DC) 400 630 1000 1000 1600 2000 R C (nF) k in V2/μs R 0 1.0 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 25000000 1.2 (cid:4) (cid:4) (cid:4) (cid:4) 14400000 23000000 1.5 (cid:4) (cid:4) (cid:4) (cid:4) 14000000 22500000 2.2 (cid:4) (cid:4) (cid:4) (cid:4) 13800000 22000000 2.7 (cid:4) (cid:4) (cid:4) (cid:4) 13600000 21500000 3.3 (cid:4) (cid:4) (cid:4) 9400000 13300000 21000000 3.9 (cid:4) (cid:4) (cid:4) 8600000 13100000 20900000 4.7 (cid:4) (cid:4) 400000 8200000 12000000 20800000 5.6 (cid:4) (cid:4) (cid:4) 7600000 (cid:4) 6.2 (cid:4) (cid:4) (cid:4) 6800000 (cid:4) 6.8 (cid:4) (cid:4) 400000 6200000 (cid:4) 8.2 (cid:4) (cid:4) (cid:4) 5400000 (cid:4) 10 (cid:4) (cid:4) 400000 5000000 (cid:4) 12 (cid:4) (cid:4) (cid:4) 4600000 (cid:4) 15 (cid:4) 200000 400000 (cid:4) (cid:4) 22 150000 200000 400000 (cid:4) (cid:4) 33 150000 200000 (cid:4) (cid:4) (cid:4) 47 150000 200000 (cid:4) (cid:4) (cid:4) 56 (cid:4) 200000 (cid:4) (cid:4) (cid:4) 68 150000 (cid:4) (cid:4) (cid:4) (cid:4) 100 150000 (cid:4) (cid:4) (cid:4) (cid:4) PleasereadCautionsandwarningsand Page13of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) k values 0 Lead spacing 15 mm Type B32672L V (V AC) 160 200 250 500 600 700 900 RMS V (V DC) 250 450 630 1000 1300 1600 2000 2000 R C (nF) k in V2/μs R 0 1.0 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 20300000 30000000 1.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 19600000 29400000 1.5 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 19200000 28000000 2.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 18600000 27500000 2.7 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 18200000 27300000 3.3 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 18000000 27000000 3.9 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 16800000 25200000 4.7 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 15800000 23500000 5.6 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 13100000 19500000 6.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 11520000 12700000 19000000 6.8 (cid:4) (cid:4) (cid:4) (cid:4) 3000000 11200000 12300000 18400000 8.2 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 9920000 11800000 (cid:4) 10 (cid:4) (cid:4) (cid:4) 1000000 3000000 8960000 11100000 (cid:4) 12 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 8320000 10600000 (cid:4) 15 (cid:4) (cid:4) (cid:4) 1000000 (cid:4) 7360000 10400000 (cid:4) 22 (cid:4) (cid:4) (cid:4) 1000000 3000000 6400000 9300000 (cid:4) 33 (cid:4) (cid:4) 500000 1000000 3000000 5440000 9000000 (cid:4) 47 (cid:4) (cid:4) 500000 1000000 3000000 4480000 (cid:4) (cid:4) 56 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 68 (cid:4) 120000 500000 1000000 3000000 (cid:4) (cid:4) (cid:4) 100 (cid:4) 120000 500000 1000000 (cid:4) (cid:4) (cid:4) (cid:4) 150 100000 120000 500000 1000000 (cid:4) (cid:4) (cid:4) (cid:4) 220 100000 120000 500000 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 330 100000 120000 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 390 (cid:4) (cid:4) 500000 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 470 100000 120000 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 680 100000 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) 1000 100000 (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) (cid:4) PleasereadCautionsandwarningsand Page14of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Impedance Z versus frequency f (typical values) PleasereadCautionsandwarningsand Page15of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Permissible AC voltage V versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 10 mm 400 V DC/200 V AC 630 V DC/250 V AC 1000 V DC/250 V AC 1000 V DC/500 V AC PleasereadCautionsandwarningsand Page16of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Permissible AC voltage V versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 10 mm 1600 V DC/600 V AC 2000 V DC/700 V AC PleasereadCautionsandwarningsand Page17of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Permissible AC voltage V versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 15 mm 250 V DC/160 V AC 450 V DC/200 V AC 630 V DC/250 V AC 1000 V DC/250 V AC PleasereadCautionsandwarningsand Page18of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Permissible AC voltage V versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 15 mm 1300 V DC/500 V AC 1600 V DC/600 V AC 2000 V DC/700 V AC 2000 V DC/900 V AC PleasereadCautionsandwarningsand Page19of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Permissible current I versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 10 mm 400 V DC/200 V AC 630 V DC/250 V AC 1000 V DC/250 V AC 1000 V DC/500 V AC PleasereadCautionsandwarningsand Page20of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Permissible current I versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 10 mm 1600 V DC/600 V AC 2000 V DC/700 V AC PleasereadCautionsandwarningsand Page21of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Permissible current I versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 15 mm 250 V DC/160 V AC 450 V DC/200 V AC 630 V DC/250 V AC 1000 V DC/250 V AC PleasereadCautionsandwarningsand Page22of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Permissible current I versus frequency f (for sinusoidal waveforms T ≤100 °C) RMS A For T >100 °C, please use derating factor F . A T Lead spacing 15 mm 1300 V DC/500 V AC 1600 V DC/600 V AC 2000 V DC/700 V AC 2000 V DC/900 V AC PleasereadCautionsandwarningsand Page23of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Maximum AC voltage (V ), current (I ) versus frequency and temperature for T >100 °C RMS RMS A The graphs described in the previous section for the permissible AC voltage (V ) or current RMS (I ) versus frequency are given for a maximum ambient temperature T ≤100 ºC. In case of RMS A higher ambient temperatures (T ), the self-heating (ΔT) of the component must be reduced to A avoid that temperature of the component (T = T + ΔT) reaches values above maximum op A operating temperature.The factor F shall be applied in the following way: T And F is given by the following curve: T PleasereadCautionsandwarningsand Page24of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Operation at overvoltages during heating and ignition of lamps (T ≤40 °C) A In lighting applications, the capacitors can be subjected to overvoltages during the heating and ig- nition periods. An overvoltage occurs when the operation voltage exceeds the permissible AC voltage at the resonant frequency f. r For a repetitive application of on/off switching pulses (as for example in the life tests applied by electronic ballast manufacturers), limits have to be imposed on the time periods under overvolt- age and on the duty cycle, in order to keep the capacitance value within the required margins: The overvoltage time t should be less than 1 sec. OV The K calculated in the overvoltage period (see general technical information) shall be lower 0 than the maximum K provided. 0 The maximum duty cycle of the overvoltage is given by where V is the RMS voltage during period t RMS,ov OV and V is the permissible AC voltage for continuous operation at the resonant frequency f RMS r (given by the “permissible AC voltage versus frequency f” graphics in theprevious pages). The drift of capacitance depends on the V attained, and the total time under overvoltage, pp which is calculated in hours as follows: (Ni (cid:5) tOV) / 3600 where N is the number of overvoltage impulses and t is expressed in seconds. i OV The maximum drift of capacitance as a function of both parameters is provided graphically in the following pages. PleasereadCautionsandwarningsand Page25of39 Importantnotesattheendofthisdocument.

B32671L High V AC, high temperature (wound) Estimation of the maximum drift of capacitance value in function of the number of total hours overvoltage Lead spacing 10 mm 500 V AC/1000 V DC 600 V AC/1600 V DC PleasereadCautionsandwarningsand Page26of39 Importantnotesattheendofthisdocument.

B32672L High V AC, high temperature (wound) Estimation of the maximum drift of capacitance value in function of the number of total hours overvoltage Lead spacing 15 mm 600 V AC/1600 V DC 700 V AC/2000 V DC PleasereadCautionsandwarningsand Page27of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Testing and Standards Test Reference Conditions of test Performance requirements Electrical IEC 60384-16:2005 Voltage proof, 1.6 V , 1 minute Within specified limits R para- Insulation resistance, R ins meters Capacitance, C Dissipation factor, tan δ Robust- IEC Tensile strength (test Ua1) Capacitance and tan δ ness of ter- 60068-2-21:2006 Wire diameter Tensile force within specified limits minations 0.5 < d1 ≤ 0.8 mm 10 N Resis- IEC Solder bath temperature at 260±5°C, ΔC/C ≤ 2% 0 tance to 60068-2-20:2008, immersion for 10 seconds (cid:6)Δ tan δ(cid:6) ≤ 0.002 soldering test Tb, heat method 1A Rapid IEC 60384-16:2005 T = lower category temperature A change of T = upper category temperature B tempera- Five cycles, duration t = 30 min. ture Vibration IEC 60384-16:2005 Test Fc: vibration sinusoidal No visible damage Displacement: 0.75 mm Accleration: 98 m/s2 Frequency: 10 Hz ... 500 Hz Test duration: 3 orthogonal axes, 2 hours each axe Bump IEC 60384-16:2005 Test Eb: Total 4000 bumps with No visible damage 390 m/s2 mounted on PCB (cid:6)ΔC/C0(cid:6) ≤ 2% (cid:6)Δ tan δ(cid:6) ≤ 0.002 Duration: 6 ms R ≥ 50% of initial limit ins Climatic IEC 60384-16:2005 Dry heat Tb / 16 h No visible damage sequence Damp heat cyclic, 1st cycle (cid:6)ΔC/C0(cid:6) ≤ 3% +55 °C / 24 h / 95% ... 100% RH (cid:6)Δ tan δ(cid:6) ≤ 0.001 Cold Ta / 2 h R ≥ 50% of initial limit ins Damp heat cyclic, 5 cycles +55 °C / 24 h / 95% ... 100% RH Damp IEC 60384-16:2005 Test Ca No visible damage heat, 40 °C / 93% RH / 56 days (cid:6)ΔC/C0(cid:6) ≤ 3% steady (cid:6)Δ tan δ(cid:6) ≤ 0.001 state R ≥ 50% of initial limit ins Advanced 60 °C / 95% RH / 1000 hours with V No visible damage R,DC biased (cid:6)ΔC/C0(cid:6) ≤ 10% humidity (cid:6)Δ tan δ(cid:6) ≤ 0.002 R ≥ 50% of initial limit ins PleasereadCautionsandwarningsand Page28of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Test Reference Conditions of test Performance requirements Endurance IEC 60384-16:2005 85 °C / 1.25 V / 2000 hours No visible damage R (cid:6)ΔC/C0(cid:6) ≤ 5% (cid:6)Δ tan δ(cid:6) ≤ 0.002 R ≥ 50% of initial limit ins Endurance IEC 60384-16:2005 110 °C / 1.25 V / 2000 hours No visible damage C (cid:6)ΔC/C0(cid:6) ≤ 10% (cid:6)Δ tan δ(cid:6) ≤ 0.002 R ≥ 50% of initial limit ins Mounting guidelines 1 Soldering 1.1 Solderability of leads The solderability of terminal leads is tested to IEC 60068-2-20, test Ta, method 1. Before a solderability test is carried out, terminals are subjected to accelerated ageing (to IEC 60068-2-2, test Ba: 4 h exposure to dry heat at 155 °C). Since the ageing temperature is far higher than the upper category temperature of the capacitors, the terminal wires should be cut off from the capacitor before the ageing procedure to prevent the solderability being impaired by the products of any capacitor decomposition that might occur. Solder bath temperature 235 ±5 °C Soldering time 2.0 ±0.5 s Immersion depth 2.0 +0/(cid:4)0.5 mm from capacitor body or seating plane Evaluation criteria: Wetting of wire surface by new solder ≥90%, Visual inspection free-flowing solder PleasereadCautionsandwarningsand Page29of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) 1.2 Resistance to soldering heat Resistance to soldering heat is tested to IEC 60068-2-20, test Tb, method 1. Conditions: Series Solder bath temperature Soldering time MKT boxed (except 2.5 × 6.5 × 7.2 mm) 260 ±5 °C 10 ±1 s coated uncoated (lead spacing >10 mm) MFP MKP (lead spacing >7.5 mm) MKT boxed (case 2.5 × 6.5 × 7.2 mm) 5 ±1 s MKP (lead spacing ≤7.5 mm) <4 s MKT uncoated (lead spacing ≤10 mm) recommended soldering insulated (B32559) profile for MKT uncoated (lead spacing ≤ 10 mm) and insulated (B32559) Immersion depth 2.0 +0/(cid:4)0.5 mm from capacitor body or seating plane Shield Heat-absorbing board, (1.5 ±0.5) mm thick, between capacitor body and liquid solder Evaluation criteria: Visual inspection No visible damage 2% for MKT/MKP/MFP ΔC/C 0 5% for EMI suppression capacitors tan δ As specified in sectional specification PleasereadCautionsandwarningsand Page30of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) 1.3 General notes on soldering Permissible heat exposure loads on film capacitors are primarily characterized by the upper cate- gory temperature T . Long exposure to temperatures above this type-related temperature limit max can lead to changes in the plastic dielectric and thus change irreversibly a capacitor's electrical characteristics. For short exposures (as in practical soldering processes) the heat load (and thus the possible effects on a capacitor) will also depend on other factors like: Pre-heating temperature and time Forced cooling immediately after soldering Terminal characteristics: diameter, length, thermal resistance, special configurations (e.g. crimping) Height of capacitor above solder bath Shadowing by neighboring components Additional heating due to heat dissipation by neighboring components Use of solder-resist coatings The overheating associated with some of these factors can usually be reduced by suitable coun- termeasures. For example, if a pre-heating step cannot be avoided, an additional or reinforced cooling process may possibly have to be included. EPCOS recommendations As a reference, the recommended wave soldering profile for our film capacitors is as follows: PleasereadCautionsandwarningsand Page31of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Body temperature should follow the description below: MKP capacitor During pre-heating: T ≤110 °C p During soldering: T ≤120 °C, t ≤45 s s s MKT capacitor During pre-heating: T ≤125 °C p During soldering: T ≤160 °C, t ≤45 s s s When SMD components are used together with leaded ones, the film capacitors should not pass into the SMD adhesive curing oven. The leaded components should be assembled after the SMD curing step. Leaded film capacitors are not suitable for reflow soldering. In order to ensure proper conditions for manual or selective soldering, the body temperature of the capacitor (T ) must be ≤120 °C. s One recommended condition for manual soldering is that the tip of the soldering iron should be <360 °C and the soldering contact time should be no longer than 3 seconds. For uncoated MKT capacitors with lead spacings ≤10 mm (B32560/B32561) the following mea- sures are recommended: pre-heating to not more than 110 °C in the preheater phase rapid cooling after soldering Please refer to EPCOS Film Capacitor Data Book in case more details are needed. PleasereadCautionsandwarningsand Page32of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Cautions and warnings Do not exceed the upper category temperature (UCT). Do not apply any mechanical stress to the capacitor terminals. Avoid any compressive, tensile or flexural stress. Do not move the capacitor after it has been soldered to the PC board. Do not pick up the PC board by the soldered capacitor. Do not place the capacitor on a PC board whose PTH hole spacing differs from the specified lead spacing. Do not exceed the specified time or temperature limits during soldering. Avoid external energy inputs, such as fire or electricity. Avoid overload of the capacitors. Consult us if application is with severe temperature and humidity condition. There are no serviceable or repairable parts inside the capacitor. Opening the capacitor or any attempts to open or repair the capacitor will void the warranty and liability of EPCOS. Please note that the standards referred to in this publication may have been revised in the meantime. The table below summarizes the safety instructions that must always be observed. A detailed de- scription can be found in the relevant sections of the chapters "General technical information" and "Mounting guidelines". Topic Safety information Reference chapter "General technical information" Storage Make sure that capacitors are stored within the specified 4.5 conditions range of time, temperature and humidity conditions. "Storage conditions" Flammability Avoid external energy, such as fire or electricity (passive 5.3 flammability), avoid overload of the capacitors (active "Flammability" flammability) and consider the flammability of materials. Resistance to Do not exceed the tested ability to withstand vibration. 5.2 vibration The capacitors are tested to IEC 60068-2-6:2007. "Resistance to EPCOS offers film capacitors specially designed for vibration" operation under more severe vibration regimes such as those found in automotive applications. Consult our catalog "Film Capacitors for Automotive Electronics". Topic Safety information Reference chapter "Mounting guidelines" Soldering Do not exceed the specified time or temperature limits 1 "Soldering" during soldering. Cleaning Use only suitable solvents for cleaning capacitors. 2 "Cleaning" PleasereadCautionsandwarningsand Page33of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Topic Safety information Reference chapter "Mounting guidelines" Embedding of When embedding finished circuit assemblies in plastic 3 "Embedding of capacitors in resins, chemical and thermal influences must be taken capacitors in finished finished into account. assemblies" assemblies Caution: Consult us first, if you also wish to embed other uncoated component types! Display of ordering codes for EPCOS products The ordering code for one and the same product can be represented differently in data sheets, data books, other publications and the website of EPCOS, or in order-related documents such as shipping notes, order confirmations and product labels. The varying representations of the or- dering codes are due to different processes employed and do not affect the specifications of the respective products. Detailed information can be found on the Internet under www.epcos.com/orderingcodes. PleasereadCautionsandwarningsand Page34of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Symbols and terms Symbol English German α Heat transfer coefficient Wärmeübergangszahl α Temperature coefficient of capacitance Temperaturkoeffizient der Kapazität C A Capacitor surface area Kondensatoroberfläche β Humidity coefficient of capacitance Feuchtekoeffizient der Kapazität C C Capacitance Kapazität C Rated capacitance Nennkapazität R ΔC Absolute capacitance change Absolute Kapazitätsänderung ΔC/C Relative capacitance change (relative Relative Kapazitätsänderung (relative deviation of actual value) Abweichung vom Ist-Wert) ΔC/C Capacitance tolerance (relative deviation Kapazitätstoleranz (relative Abweichung R from rated capacitance) vom Nennwert) dt Time differential Differentielle Zeit Δt Time interval Zeitintervall ΔT Absolute temperature change Absolute Temperaturänderung (self-heating) (Selbsterwärmung) Δtan δ Absolute change of dissipation factor Absolute Änderung des Verlustfaktors ΔV Absolute voltage change Absolute Spannungsänderung dV/dt Time differential of voltage function (rate Differentielle Spannungsänderung of voltage rise) (Spannungsflankensteilheit) ΔV/Δt Voltage change per time interval Spannungsänderung pro Zeitintervall E Activation energy for diffusion Aktivierungsenergie zur Diffusion ESL Self-inductance Eigeninduktivität ESR Equivalent series resistance Ersatz-Serienwiderstand f Frequency Frequenz f Frequency limit for reducing permissible Grenzfrequenz für thermisch bedingte 1 AC voltage due to thermal limits Reduzierung der zulässigen Wechselspannung f Frequency limit for reducing permissible Grenzfrequenz für strombedingte 2 AC voltage due to current limit Reduzierung der zulässigen Wechselspannung f Resonant frequency Resonanzfrequenz r F Thermal acceleration factor for diffusion Therm. Beschleunigungsfaktor zur D Diffusion F Derating factor Deratingfaktor T i Current (peak) Stromspitze I Category current (max. continuous Kategoriestrom (max. Dauerstrom) C current) PleasereadCautionsandwarningsand Page35of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Symbol English German I (Sinusoidal) alternating current, (Sinusförmiger) Wechselstrom RMS root-mean-square value i Capacitance drift Inkonstanz der Kapazität z k Pulse characteristic Impulskennwert 0 L Series inductance Serieninduktivität S λ Failure rate Ausfallrate λ Constant failure rate during useful Konstante Ausfallrate in der 0 service life Nutzungsphase λ Failure rate, determined by tests Experimentell ermittelte Ausfallrate test P Dissipated power Abgegebene Verlustleistung diss P Generated power Erzeugte Verlustleistung gen Q Heat energy Wärmeenergie ρ Density of water vapor in air Dichte von Wasserdampf in Luft R Universal molar constant for gases Allg. Molarkonstante für Gas R Ohmic resistance of discharge circuit Ohmscher Widerstand des Entladekreises R Internal resistance Innenwiderstand i R Insulation resistance Isolationswiderstand ins R Parallel resistance Parallelwiderstand P R Series resistance Serienwiderstand S S severity (humidity test) Schärfegrad (Feuchtetest) t Time Zeit T Temperature Temperatur τ Time constant Zeitkonstante tan δ Dissipation factor Verlustfaktor tan δ Dielectric component of dissipation Dielektrischer Anteil des Verlustfaktors D factor tan δ Parallel component of dissipation factor Parallelanteil des Verlfustfaktors P tan δ Series component of dissipation factor Serienanteil des Verlustfaktors S T Temperature of the air surrounding the Temperatur der Luft, die das Bauteil A component umgibt T Upper category temperature Obere Kategorietemperatur max T Lower category temperature Untere Kategorietemperatur min t Operating life at operating temperature Betriebszeit bei Betriebstemperatur und OL and voltage -spannung T Operating temperature, T + ΔT Beriebstemperatur, T + ΔT op A A T Rated temperature Nenntemperatur R T Reference temperature Referenztemperatur ref t Reference service life Referenz-Lebensdauer SL PleasereadCautionsandwarningsand Page36of39 Importantnotesattheendofthisdocument.

B32671L, B32672L High V AC, high temperature (wound) Symbol English German V AC voltage Wechselspannung AC V Category voltage Kategoriespannung C V Category AC voltage (Sinusförmige) C,RMS Kategorie-Wechselspannung V Corona-discharge onset voltage Teilentlade-Einsatzspannung CD V Charging voltage Ladespannung ch V DC voltage Gleichspannung DC V Fly-back capacitor voltage Spannung (Flyback) FB V Input voltage Eingangsspannung i V Output voltage Ausgangssspannung o V Operating voltage Betriebsspannung op V Peak pulse voltage Impuls-Spitzenspannung p V Peak-to-peak voltage Impedance Spannungshub pp V Rated voltage Nennspannung R Amplitude of rated AC voltage Amplitude der Nenn-Wechselspannung R V (Sinusoidal) alternating voltage, (Sinusförmige) Wechselspannung RMS root-mean-square value V S-correction voltage Spannung bei Anwendung "S-correction" SC V Snubber capacitor voltage Spannung bei Anwendung sn "Beschaltung" Z Impedance Scheinwiderstand Lead spacing Rastermaß PleasereadCautionsandwarningsand Page37of39 Importantnotesattheendofthisdocument.

Important notes The following applies to all products named in this publication: 1. Some parts of this publication contain statements about the suitability of our products for certain areas of application. These statements are based on our knowledge of typical re- quirements that are often placed on our products in the areas of application concerned. We nevertheless expressly point out that such statements cannot be regarded as binding statements about the suitability of our products for a particular customer application. As a rule, EPCOS is either unfamiliar with individual customer applications or less familiar with them than the customers themselves. For these reasons, it is always ultimately incum- bent on the customer to check and decide whether an EPCOS product with the properties de- scribed in the product specification is suitable for use in a particular customer application. 2. We also point out that in individual cases, a malfunction of electronic components or failure before the end of their usual service life cannot be completely ruled out in the current state of the art, even if they are operated as specified. In customer applications requiring a very high level of operational safety and especially in customer applications in which the malfunction or failure of an electronic component could endanger human life or health (e.g. in accident prevention or lifesaving systems), it must therefore be ensured by means of suitable design of the customer application or other action taken by the customer (e.g. installation of protective circuitry or redundancy) that no injury or damage is sustained by third parties in the event of malfunction or failure of an electronic component. 3. The warnings, cautions and product-specific notes must be observed. 4. In order to satisfy certain technical requirements, some of the products described in this publication may contain substances subject to restrictions in certain jurisdictions (e.g. because they are classed as hazardous). Useful information on this will be found in our Ma- terial Data Sheets on the Internet (www.epcos.com/material). Should you have any more de- tailed questions, please contact our sales offices. 5. We constantly strive to improve our products. Consequently, the products described in this publication may change from time to time. The same is true of the corresponding product specifications. Please check therefore to what extent product descriptions and specifications contained in this publication are still applicable before or when you place an order. We also reserve the right to discontinue production and delivery of products. Consequently, we cannot guarantee that all products named in this publication will always be available. The aforementioned does not apply in the case of individual agreements deviating from the fore- going for customer-specific products. 6. Unless otherwise agreed in individual contracts, all orders are subject to the current ver- sion of the "General Terms of Delivery for Products and Services in the Electrical In- dustry" published by the German Electrical and Electronics Industry Association (ZVEI). Page38of39

Important notes 7. Our manufacturing sites serving the automotive business apply the IATF 16949 standard. The IATF certifications confirm our compliance with requirements regarding the quality management system in the automotive industry. Referring to customer requirements and customer specific requirements (“CSR”) TDK always has and will continue to have the policy of respecting individual agreements. Even if IATF 16949 may appear to support the acceptance of unilateral requirements, we hereby like to emphasize that only requirements mutually agreed upon can and will be implemented in our Quality Management System. For clarification purposes we like to point out that obligations from IATF 16949 shall only become legally binding if individually agreed upon. 8. The trade names EPCOS, CeraCharge, CeraDiode, CeraLink, CeraPad, CeraPlas, CSMP, CTVS, DeltaCap, DigiSiMic, ExoCore, FilterCap, FormFit, LeaXield, MiniBlue, MiniCell, MKD, MKK, MotorCap, PCC, PhaseCap, PhaseCube, PhaseMod, PhiCap, PowerHap, PQSine, PQvar, SIFERRIT, SIFI, SIKOREL, SilverCap, SIMDAD, SiMic, SIMID, SineFormer, SIOV, ThermoFuse, WindCap are trademarks registered or pending in Europe and in other coun- tries. Further information will be found on the Internet at www.epcos.com/trademarks. Release 2018-06 Page39of39

Mouser Electronics Authorized Distributor Click to View Pricing, Inventory, Delivery & Lifecycle Information: E PCOS / TDK: B32671L103J B32671L123J B32671L332J B32671L392J B32671L412J B32671L472J B32671L622J B32671L682J B32671L822J B32672L8412J000 B32672L8432J189 B32672L8182J189 B32672L8172J000 B32672L8182J000 B32672L8183J000 B32672L8183K000 B32672L8912J000 B32672L8912K000 B32672L1472J189 B32672L8182J289 B32672L1722K000 B32672L1882J000 B32672L8172J289 B32672L8512J289 B32671L1332J000