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Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 8
Technical content
Features
- Very low dissipation factor - High ripple current capability - Self-healing - Long lifetime - Aluminum case - RoHS compliant (2011/65/EU)
Applications
- High power frequency converters - Motion control, welding equipment, elevators - Electric and hybrid electric vehicles - Photovoltaic and wind inverters Item Characteristics Climatic Category 55/85/56 (IEC 61071) Operating Temperature –55 ~ +85 °C (θhotspot ≤ 85 °C) Storage Temperature –55 ~ +85 °C Rated Voltage URDC 600 ~ 2000VDC Capacitance Range 100 ~ 3100 µF Capacitance Tolerance ±10 % (K), ±5 % (J) Voltage between Terminals UTT 1,5 * URDC (20 °C, 10 s) Voltage between Terminals and Case UTC 2 * URDC / √2 + 1000 V or 3000 VAC (20 °C, 50 Hz, 10 s) Max. Overvoltage 1,1 * URDC (30 % of time under load) 1,15 * URDC (30 min. per day) 1,2 * URDC (5 min. per day) 1,3 * URDC (1 min. per day) 1,5 * URDC (max. 30 ms, 100ms per day) Insulation Resistance Ri * C ≥ 10.000 MΩ µF (20 °C, 100 VDC, 1 min) Capacitor Dissipation Factor tan δ tan δ ≤ 15 * 10-4 (20 °C, 100 Hz) Dielectric Dissipation Factor tan δo tan δo ≤ 2 * 10-4 (20 °C, 100 Hz) Life Time Expectancy ≥ 100.000 h, failure rate ≤ 50 FIT (θhotspot ≤ 70 °C, URDC) Reference Standard IEC 61071:2007, REACH, RoHS Ratings for CBB 131 DL Series URDC CR Imax (1) (A) Rth(2) Î (3) RS(4) LS(5) D H P/N (VDC) (μF) 40℃ 50℃ 60℃ (K/W) (A) (mΩ) (nH) (mm) (mm) 600 480 67 58 47 5,6 4800 1,6 ≤60 76 95 FCC2SDL487*H095*31E3 650 84 73 60 5,1 5200 1,1 ≤60 85/86 95 FCC2SDL657095*3**1E3 67 58 47 4,7 5200 1,9 ≤60 76 120 FCC2SDL657*H120*3**1E3 770 88 76 62 4,3 6160 1,2 ≤60 76 136 FCC2SDL777*H136*31E3 880 81 70 57 4,7 6248 1,3 ≤60 85/86 120 FCC2SDL887120*3**1E3 950 82 71 58 4,2 6650 1,4 ≤60 76 175 FCC2SDL957*H175*32E3 1000 79 68 56 4,6 6700 1,4 ≤60 85/86 136 FCC2SDL108136*3**1E3 1200 96 83 68 5,4 7200 0,8 ≤60 116 95 FCC2SDL128*P095*51E3 1300 96 83 68 4,3 7800 1,0 ≤80 85/86 175 FCC2SDL138175*3**2E3 1600 94 82 67 5,0 9600 0,9 ≤60 116 120 FCC2SDL168*P120*51E3 1800 95 83 67 4,0 10800 1,1 ≤80 85/86 225 FCC2SDL188225*3**2E3 1900 86 75 61 4,9 11400 1,1 ≤60 116 136 FCC2SDL198*P136*5**1E3 2100 100 100 96 3,6 11550 0,6 ≤80 116 155 FCC2SDL218*P155*5**2E3 2400 100 100 96 3,4 12000 0,6 ≤80 116 175 FCC2SDL248*P175*5**2E3 3000 100 100 96 2,7 15000 0,8 ≤80 116 230 FCC2SDL308*P230*5**2E3 (1) Maximum permissible r.m.s. ripple current (1 kHz) at given ambient temperature “*” to be defined, see ordering code table (2) Thermal resistance from hotspot to ambient (free convection) (3) Maximum permissible peak current (4) Series resistance at 20°C ambient temperature, 1kHz (5) Self-inductance at 20°C ambient temperature Customized products are available on request. 2016 v8.3
Ratings for CBB 131 DL Series URDC CR Imax (1) (A) Rth(2) Î (3) RS(4) LS(5) D H P/N (VDC) (μF) 40℃ 50℃ 60℃ (K/W) (A) (mΩ) (nH) (mm) (mm) 800 280 57 49 40 5,6 2800 2,2 ≤60 76 95 FCC2KDL287*H095*3**1E3 350 60 50 40 4,7 3500 2,4 ≤60 76 120 FCC2KDL357*H120*31E3 370 72 63 51 5,1 3700 1,5 ≤60 85/86 95 FCC2KDL377095*3**1E3 380 58 51 41 4,7 3800 2,5 ≤60 76 120 FCC2KDL387*H120*3**1E3 400 57 49 40 4,6 3800 2,7 ≤60 76 136 FCC2KDL407*H136*3**1E3 430 57 49 40 4,6 4300 2,7 ≤60 76 136 FCC2KDL437*H136*3**1E3 470 76 66 54 4,3 4700 1,6 ≤60 76 155 FCC2KDL477*H155*32E3 480 61 54 43 4,7 3840 2,3 ≤60 85/86 120 FCC2KDL487120*31E3 510 71 61 50 4,7 5100 1,7 ≤60 85/86 120 FCC2KDL517120*31E3 550 58 50 40 4,6 3850 2,6 ≤60 85/86 136 FCC2KDL557136*3**1E3 560 73 63 51 4,2 5600 1,8 ≤60 76 175 FCC2KDL567*H175*32E3 580 68 59 48 4,6 5800 1,9 ≤60 85/86 136 FCC2KDL587136*31E3 640 91 79 64 4,4 6400 1,1 ≤60 85/86 155 FCC2KDL647155*3**2E3 710 82 71 58 5,4 7100 1,1 ≤60 116 95 FCC2KDL717*P095*51E3 750 85 73 60 4,3 7500 1,3 ≤80 85/86 175 FCC2KDL757175*3**2E3 970 82 71 58 5,0 7760 1,2 ≤60 116 120 FCC2KDL977*P120*51E3 1000 85 73 60 4,0 8000 1,4 ≤80 85/86 225 FCC2KDL108225*5**2E3 76 66 54 4,9 8000 1,4 ≤60 116 136 FCC2KDL108*P136*5**1E3 1100 76 66 54 4,9 8800 1,4 ≤60 116 136 FCC2KDL118*P136*5**1E3 1200 100 100 83 3,6 9600 0,8 ≤80 116 155 FCC2KDL128*P155*5**2E3 1400 100 100 86 3,4 11200 0,8 ≤80 116 175 FCC2KDL148*P175*5**2E3 1800 100 100 86 2,7 11700 1,0 ≤80 116 230 FCC2KDL188*P230*5**2E3 1900 100 100 86 2,7 11750 1,0 ≤80 116 230 FCC2KDL198*P230*5**2E3 2000 100 100 98 3,0 12000 0,7 ≤100 136 175 FCC2KDL208*T175*5**2E3 2700 100 100 93 2,9 16200 0,8 ≤100 136 230 FCC2KDL278*T230*5**2E3 3100 100 100 100 2,0 18600 1,0 ≤100 136 252 FCC2KDL318*T252*5**2E3 900 280 55 47 39 5,6 2800 2,4 ≤60 76 95 FCCR2DL287*H095*3**1E3 350 54 46 38 4,7 3500 2,9 ≤60 76 120 FCCR2DL357*H120*31E3 370 70 61 50 5,1 3700 1,6 ≤60 85/86 95 FCCR2DL377095*3**1E3 380 56 49 40 4,7 3800 2,7 ≤60 76 120 FCCR2DL387*H120*3**1E3 430 55 47 39 4,6 4300 2,9 ≤60 76 136 FCCR2DL437*H136*3**1E3 470 74 64 52 4,3 4700 1,7 ≤60 76 155 FCCR2DL477*H155*32E3 510 69 60 49 4,7 5100 1,8 ≤60 85/86 120 FCCR2DL517120*3**1E3 560 69 60 49 4,2 5600 2,0 ≤60 76 175 FCCR2DL567*H175*32E3 580 64 56 46 4,6 5800 2,1 ≤60 85/86 136 FCCR2DL587136*31E3 640 87 75 62 4,4 6400 1,2 ≤60 85/86 155 FCCR2DL647155*3**2E3 710 79 68 56 5,4 7100 1,2 ≤60 116 95 FCCR2DL717*P095*51E3 750 82 71 58 4,3 7500 1,4 ≤80 85/86 175 FCCR2DL757175*3**2E3 970 79 68 55 5,0 7600 1,3 ≤60 116 120 FCCR2DL977*P120*51E3 1000 82 71 58 4,0 8000 1,5 ≤80 85/86 225 FCCR2DL108225*5**2E3 74 64 52 4,9 8000 1,5 ≤60 116 136 FCCR2DL108*P136*5**1E3 1100 60 52 42 4,9 6600 2,3 ≤60 116 136 FCCR2DL118*P136*5***E3 1200 100 92 75 3,6 9600 1,0 ≤80 116 155 FCCR2DL128*P155*5**2E3 1400 100 99 81 3,4 11200 0,9 ≤80 116 175 FCCR2DL148*P175*5**2E3 1800 100 100 82 2,7 11700 1,1 ≤80 116 230 FCCR2DL188*P230*5**2E3 1900 88 76 63 2,7 11400 1,9 ≤80 116 230 FCCR2DL198*P230*5***E3 2000 100 100 91 3,0 12000 0,8 ≤100 136 175 FCCR2DL208*T175*5**2E3 2700 100 100 88 2,9 16200 0,9 ≤100 136 230 FCCR2DL278*T230*5**2E3 3100 100 100 95 2,0 18600 1,1 ≤100 136 252 FCCR2DL318*T252*5**2E3 1000 220 55 47 39 5,6 2420 2,4 ≤60 76 95 FCC3ADL227*H095*31E3 290 68 59 48 5,1 3190 1,7 ≤60 85/86 95 FCC3ADL297095*3**1E3 300 55 48 39 4,7 3300 2,8 ≤60 76 120 FCC3ADL307*H120*3**1E3 330 54 47 38 4,6 3630 3,0 ≤60 76 136 FCC3ADL337*H136*3**1E3 360 72 62 51 4,3 3960 1,8 ≤60 76 155 FCC3ADL367*H155*32E3 400 67 58 47 4,7 4400 1,9 ≤60 85/86 120 FCC3ADL407120*3**1E3 420 69 60 49 4,2 4620 2,0 ≤60 76 175 FCC3ADL447*H175*32E3 450 64 56 46 4,6 4950 2,1 ≤60 85/86 136 FCC3ADL457136*31E3 500 87 75 62 4,4 5000 1,2 ≤60 85/86 155 FCC3ADL507155*3**2E3 540 79 68 56 5,4 5400 1,2 ≤60 116 95 FCC3ADL547*P095*51E3 560 82 71 58 4,3 5600 1,4 ≤80 85/86 175 FCC3ADL567175*3**2E3 (1) Maximum permissible r.m.s. ripple current (1 kHz) at given ambient temperature “*” to be defined, see ordering code table (2) Thermal resistance from hotspot to ambient (free convection) (3) Maximum permissible peak current (4) Series resistance at 20°C ambient temperature,1kHz (5) Self-inductance at 20°C ambient temperature Customized pr oducts are available on request. 2016 v8.3
Ratings for CBB 131 DL Series URDC CR Imax (1) (A) Rth(2) Î (3) RS(4) LS(5) D H P/N (VDC) (μF) 40℃ 50℃ 60℃ (K/W) (A) (mΩ) (nH) (mm) (mm) 1000 740 79 68 55 5,0 7600 1,3 ≤60 116 120 FCC3ADL747*P120*51E3 810 81 79 65 3,0 8100 1,6 ≤80 85/86 225 FCC3ADL817225*3**2E3 860 71 62 51 4,9 8600 1,6 ≤60 116 136 FCC3ADL867*P136*5**1E3 900 100 96 79 3,6 8760 0,9 ≤80 116 155 FCC3ADL907*P155*5**2E3 1100 100 99 81 3,4 8800 0,9 ≤80 116 175 FCC3ADL118*P175*5**2E3 1400 100 100 82 2,7 11200 1,1 ≤80 116 230 FCC3ADL148*P230*5**2E3 1500 100 100 91 3,0 12000 0,8 ≤100 136 175 FCC3ADL158*T175*5**2E3 2100 100 100 88 2,9 12600 0,8 ≤100 136 230 FCC3ADL218*T230*5**2E3 2400 100 100 95 2,0 14400 1,1 ≤100 136 252 FCC3ADL248*T252*5**2E3 1100 170 55 45 36 5,6 2040 2,7 ≤60 76 95 FCCA3DL177*H095*3**1E3 240 64 56 45 4,7 2880 1,9 ≤60 76 120 FCCA3DL247*H120*31E3 52 45 37 5,1 2880 3,1 ≤60 85/86 95 FCCA3DL247095*3**1E3 270 51 44 36 4,6 3240 3,4 ≤60 76 136 FCCA3DL277*H136*3**1E3 300 68 59 48 4,3 3600 2,0 ≤60 76 155 FCCA3DL307*H155*32E3 320 62 54 44 4,7 3840 2,2 ≤60 85/86 120 FCCA3DL327120*3**1E3 350 64 56 46 4,2 4200 2,3 ≤60 76 175 FCCA3DL357*H175*32E3 420 60 52 43 4,6 5040 2,4 ≤60 85/86 136 FCCA3DL427136*31E3 81 70 57 4,4 5040 1,4 ≤60 85/86 155 FCCA3DL427155*3**2E3 450 75 65 53 5,4 5400 1,3 ≤60 116 95 FCCA3DL457*P095*51E3 480 76 66 54 4,3 5760 1,6 ≤80 85/86 175 FCCA3DL487175*32E3 600 71 61 50 4,0 6000 2,0 ≤80 85/86 225 FCCA3DL607225*3**2E3 610 73 63 52 5,0 6100 1,5 ≤60 116 120 FCCA3DL617*P120*5**1E3 620 73 63 52 5,0 6200 1,5 ≤60 116 120 FCCA3DL627*P120*51E3 650 75 65 53 4,00 6500 1,8 ≤80 85/86 225 FCCA3DL657225*3**2E3 680 69 60 49 4,9 6800 1,7 ≤60 116 136 FCCA3DL687*P136*5**1E3 690 69 60 49 4,9 6900 1,7 ≤60 116 136 FCCA3DL697*P136*5**1E3 770 100 91 75 3,6 7700 1,0 ≤80 116 155 FCCA3DL777*P155*5**2E3 910 100 94 77 3,4 9100 1,0 ≤80 116 175 FCCA3DL917*P175*5**2E3 1200 100 96 79 2,7 9600 1,2 ≤80 116 230 FCCA3DL128*P230*5**2E3 100 100 86 3,0 9600 0,9 ≤100 136 175 FCCA3DL128*T175*5**2E3 1700 100 100 83 2,9 13600 1,0 ≤100 136 230 FCCA3DL178*T230*5**2E3 1900 100 100 95 2,0 15200 1,1 ≤100 136 252 FCCA3DL198*T252*5**2E3 1200 140 49 42 35 5,6 1680 3,0 ≤60 76 95 FCC3BDL147*H095*31E3 190 61 53 43 5,1 2280 2,1 ≤60 85/86 95 FCC3BDL197095*3**1E3 200 50 43 35 4,7 2400 3,4 ≤60 76 120 FCC3BDL207*H120*3**1E3 220 48 42 34 4,6 2640 3,7 ≤60 76 136 FCC3BDL227*H136*3**1E3 240 65 56 46 4,3 2880 2,2 ≤60 76 155 FCC3BDL247*H155*32E3 260 60 52 42 4,7 3120 2,4 ≤60 85/86 120 FCC3BDL267120*3**1E3 280 62 53 44 4,2 3360 2,5 ≤60 76 175 FCC3BDL287*H175*32E3 300 58 50 41 4,6 3600 2,6 ≤60 85/86 136 FCC3BDL307136*31E3 330 78 67 55 4,4 3960 1,5 ≤60 85/86 155 FCC3BDL337155*3**2E3 360 73 63 51 5,4 4320 1,4 ≤60 116 95 FCC3BDL367*P095*51E3 380 72 62 51 4,3 4560 1,8 ≤80 85/86 175 FCC3BDL387175*3**2E3 450 62 54 44 4,9 4650 2,1 ≤60 116 136 FCC3BDL457*P136*5**1E3 470 67 58 48 4,0 4700 2,2 ≤80 86 225 FCC3BDL477*L225*3**2E3 500 69 59 49 5,0 5500 1,7 ≤60 116 120 FCC3BDL507*P120*51E3 540 71 61 50 4,0 5940 2,0 ≤80 85/86 225 FCC3BDL547225*3**2E3 570 66 57 46 4,9 6270 1,9 ≤60 116 136 FCC3BDL577*P136*5**1E3 620 100 87 71 3,6 6820 1,1 ≤80 116 155 FCC3BDL627*P155*5**2E3 720 100 90 73 3,4 7920 1,1 ≤80 116 175 FCC3BDL727*P175*5**2E3 950 100 92 75 2,7 9500 1,3 ≤80 116 230 FCC3BDL957*P230*5**2E3 1000 100 100 82 3,0 10000 1,0 ≤100 136 175 FCC3BDL108*T175*5**2E3 1400 100 97 79 2,9 14000 1,1 ≤100 136 230 FCC3BDL148*T230*5**2E3 1600 100 100 91 2,0 16000 1,2 ≤100 136 252 FCC3BDL168*T252*5**2E3 1300 100 45 39 32 5,6 1400 3,4 ≤60 76 95 FCCO3DL107*H095*3**1E3 120 47 40 33 5,6 1440 3,3 ≤60 76 95 FCCO3DL127*H095*3**1E3 160 57 51 41 4,7 1920 2,3 ≤60 76 120 FCCO3DL167*H120*31E3 48 42 34 5,1 1920 3,7 ≤60 85/86 95 FCCO3DL167095*3**1E3 180 46 40 33 4,6 2160 4,1 ≤60 76 136 FCCO3DL187*H136*3**1E3 210 62 54 44 4,3 2520 2,4 ≤60 76 155 FCCO3DL217*H155*32E3 220 57 50 40 4,7 2640 2,6 ≤60 85/86 120 FCCO3DL227120*3**1E3 (1) Maximum permissible r.m.s. ripple current (1 kHz) at given ambient temperature “*” to be defined, see ordering code table (2) Thermal resistance from hotspot to ambient (free convection) (3) Maximum permissible peak current (4) Series resistance at 20°C ambient temperature, 1kHz (5) Self-inductance at 20°C ambient temperature Customized pr oducts are available on request. 2016 v8.3
Ratings for CBB 131 DL Series URDC CR Imax (1) (A) Rth(2) Î (3) RS(4) LS(5) D H P/N (VDC) (μF) 40℃ 50℃ 60℃ (K/W) (A) (mΩ) (nH) (mm) (mm) 1300 240 58 51 41 4,2 2880 2,8 ≤60 76 175 FCCO3DL247*H175*32E3 250 55 47 39 4,6 3000 2,9 ≤60 85/86 136 FCCO3DL257136*31E3 280 73 63 52 4,4 3360 1,7 ≤60 85/86 155 FCCO3DL287155*3**2E3 310 68 59 48 5,4 3720 1,5 ≤60 116 95 FCCO3DL317*P095*51E3 320 70 61 49 4,3 3840 1,9 ≤80 85/86 175 FCCO3DL327175*3**2E3 420 67 58 47 5,0 5040 1,8 ≤60 116 120 FCCO3DL427*P120*51E3 450 67 58 48 4,0 5400 2,2 ≤80 85/86 225 FCCO3DL457225*32E3 470 67 58 48 4,0 5640 2,2 ≤80 85/86 225 FCCO3DL477225*3**2E3 480 62 54 44 4,9 5760 2,1 ≤60 116 136 FCCO3DL487*P136*5**1E3 530 100 87 71 3,6 6360 1,1 ≤80 116 155 FCCO3DL537*P155*5**2E3 630 100 90 73 3,4 7560 1,1 ≤80 116 175 FCCO3DL637*P175*5**2E3 820 99 86 70 2,7 9840 1,5 ≤80 116 230 FCCO3DL827*P230*5**2E3 880 100 95 78 3,0 10560 1,1 ≤100 136 175 FCCO3DL887*T175*5**2E3 1200 100 93 76 2,9 13200 1,2 ≤100 136 230 FCCO3DL128*T230*5**2E3 1300 100 100 88 2,0 14300 1,3 ≤100 136 252 FCCO3DL138*P252*52E3 1500 170 52 45 37 4,7 2040 3,1 ≤60 85/86 120 FCCC3DL177120*31E3 210 67 58 48 4,4 2520 2,0 ≤60 85/86 155 FCCC3DL217155*3**2E3 310 62 53 44 5,0 3720 2,1 ≤60 116 120 FCCC3DL317*P120*51E3 330 63 55 45 4,0 3960 2,5 ≤80 85/86 225 FCCC3DL337225*3**2E3 400 89 77 63 3,6 4800 1,1 ≤80 116 155 FCCC3DL407*P155*5**2E3 600 93 81 66 2,7 7200 1,7 ≤80 116 230 FCCC3DL607*P230*52E3 1700 130 49 43 35 4,7 1560 3,5 ≤60 85/86 120 FCCF3DL137120*31E3 160 63 54 44 4,4 1920 2,3 ≤60 85/86 155 FCCF3DL167155*3**2E3 240 58 50 41 5,0 2880 2,4 ≤60 116 120 FCCF3DL247*P120*31E3 250 59 51 42 4,0 3000 2,9 ≤80 85/86 225 FCCF3DL257225*3**2E3 300 83 72 59 3,6 3600 1,6 ≤80 116 155 FCCF3DL307*P155*3**2E3 460 88 76 62 2,7 5520 1,9 ≤80 116 230 FCCF3DL467*P230*32E3 2000 100 46 40 33 4,7 1200 4,0 ≤60 85/86 120 FCC3DDL107120*31E3 120 60 52 43 4,4 1440 2,5 ≤60 85/86 155 FCC3DDL127155*3**2E3 190 54 47 38 5,0 2280 2,7 ≤60 116 120 FCC3DDL197*P120*31E3 55 48 39 4,0 2280 3,3 ≤80 85/86 225 FCC3DDL197225*3**2E3 240 79 68 56 3,6 2880 1,8 ≤80 116 155 FCC3DDL247*P155*3**2E3 370 82 71 58 2,7 4440 2,2 ≤80 116 230 FCC3DDL377*P230*3**1E3 (1) Maximum permissible r.m.s. ripple current (1 kHz) at given ambient temperature “*” to be defined, see ordering code table (2) Thermal resistance from hotspot to ambient (free convection) (3) Maximum permissible peak current (4) Series resistance at 20°C ambient temperature, 1kHz (5) Self-inductance at 20°C ambient temperature Customized pr oducts are available on request. Marking No. Item
1 Brand
2 Series Designation
3 Capacitance and Tolerance
4 UR Rated Voltage
5 UTC Voltage between Terminals and Case, Frequency
6 Temperature Range, Reference Standard
7 Safety Warning
8 Date Code
2016 v8.3
Can Style “A” Can Style “B” Can Style “C” Can Style “D” Can Style “E/F/G” Aluminum Case with Flanging Aluminum Case without Flanging Aluminum/Plastic Case Aluminum/Plastic Case Anti-Creep Insulation Enlarged Casing Aluminum/Plastic Case Anti-Creep Insulation DT = 12mm DT = 12mm DT = 16mm DT = 12mm Can Style “E”: DT = 12mm Can Style “F”: DT = 14mm Can Style “G”: DT = 16mm M6 * 10 screw female M6 * 10 screw female M6 * 10 screw female M8 * 10 screw female M6 * 10 screw female Can Style “E”: M6 * 10 screw female Can Style “F”: M6 * 10 screw female M8 * 10 screw female Can Style “G”: M8 * 10 screw female M10 * 10 screw female H1 = H + 5mm H, H1 +/- 1mm H1 = H + 5mm H, H1 +/- 1mm H1 = H + 5mm H, H1 +/- 1mm H1 = H + 5mm H, H1 +/- 1mm H1 = H + 5mm H, H1 +/- 1mm Terminals with male screws on request. Max. Torque for terminals: 5 Nm (M6), 6 Nm (M8), 8 Nm (M10) Max. Torque for stud mounting screws: 12 Nm (M12), 15Nm (M16) 2016 v8.3
Internal Construction (Example: Can Style “C”, double inner construction) No. Item Material No. Item Material
1 Winding Core PC 6 Aluminum Case Al
2 Metallized Film PP + Al, Zn 7 Potting Compound PU resin
3 Metal Sprayed
Electrode Zn + Sn/Zn 8 Connection Electrode Cu
4 Terminals Cu, Sn-plated 9 Insulation Cover PP
5 Deck PC 10 Winding Insulation Paper + PP
2016 v8.3
Accessories for bracket mounting (order code “2”) For Diameter 76- 86mm For Diameter 116mm Ordering Code 2016 v8.3
Warranty: The information contained in this datasheet does neither form part of any quotation nor of a contract, it is believed to be accurate, reliable and up to date. Quality data are based on the statistical evaluations of a large quantity of parts and do not constitute a guarantee in a legal sense. However, agreement on these specifications does mean that the customer may claim for replacement of individual defective capacitors within the terms of delivery. We cannot assume any liability beyond the replacement of defective components. This applies in particular to any further consequences of component failure. Furthermore it must be taken into consideration that the figures stated for lifetime, failure rates and outlier percentages refer to the average production status and are therefore to be understood as mean values (statistical expectations) for a large number of delivery lots of identical capacitors. These figures are based on application experience and data obtained from preceding tests under normal conditions, or – for purpose of accelerated aging – more severe conditions. JIANGHAI reserves the right to change these specifications without prior notice. Any application information given is advisory and does not form part of any specification. The products are not primarily designed for use in life supporting applications, devices or systems where malfunction of these products can reasonably be expected to result in personal injury. JIANGHAI customers using or selling these products for use in such applications without prior written consent of JIANGHAI do so at their own risk and agree fully to indemnify JIANGHAI for any damage resulting from such improper use or sale. This version of the datasheet supersedes all previous versions. Rated Voltage UR: Rated Voltage is the maximum operating peak voltage of either polarity but of a non- reversing type waveform, for which the capacitor has been designed, for continuous operation. The Rated Voltage is marked on the capacitor and defined in the datasheets as UR. Operating voltage: The plastic film capacitor varies in the maximum applicable voltage depending on the applied voltage waveform, current waveform, frequency, ambient temperature (capacitor surface temperature), capacitance value, etc. Be sure to use capacit ors within the specified values by checking the voltage waveform, current waveform, and frequency applied to them (In the application of high frequency, the permissible voltage varies with the type of the capacitor. Refer to the specification for details.). Non-recurrent surge voltage Us:Peak voltage induced by a switching or any other disturbance of the system which is allowed for a limited number of times and for durations shorter than the basic period. - Maximum duration: 50 ms / pulse - Maximum number of occurrences: 1000 (during load) Maximum rate of voltage rise dV/dt : Maximum permissible repetitive rate of voltage rise of the operational voltage. Charging and discharging : Because the charging and discharging current of capacitor is obtained by the product of voltage rise rate (dV/dt) and capacitance, low voltage charging and discharging may also cause deterioration of capacitor such as shorting and open due to sudden charging and discharging current. When charging and discharging, pass through a res istance of 20Ω/V to1000Ω/V or more to limit the current. When connecting multiple film capacitors in parallel in withstand voltage test or life test, connect a resistance of 20Ω/V to1000Ω/V or more in series to each capacitor (For detail see the specificat ion). In addition, capacitors must be discharged via a resistor before handling. Because the capacitors do not have any discharge resistors built -in, there is a risk of residual voltages and electric energy contents that maybe dangerous. Operating Current :The pulse (or AC) current flowing through the capacitor is expressed as: I = C x dV/dt. Due to the fact that the dissipation factor of the capacitor is greater than zero, heat will be generated in any application where alternating currents or pulses occur. The resulting internal temperature rise may cause a severe deterioration of the capacitor’s withstanding voltage, or may lead to a breakdown (even smoke or fire may result).Therefore, the safe use of capacitor must be within the rated voltage (or category voltage) and the permissible current ranges. The rated current must be considered by dividing into pulse current (peak current) and continuous current (rms current) depending on the break down mode, and when using, should make sure the both currents are w ithin the permissible range. Temperature range: Use film capacitors only within the specified operating temperature range. Expected lifetime :The expected lifetime of the capacitor depends on the applied voltage and the hot spot temperature during operation. For capacitors applied in different situations, the obtainable average service lives are different. The capacitors used in DC-Link circuits will have an expected lifetime of approximately 100000 hours at rated voltage and 70℃ hot spot temperature. Insulation voltage Ui: rms value of AC voltage designed for the insulation between terminals of the capacitor to case or earth. The insulation voltage is equal to the rated voltage of the capacitor, divided by , unless otherwise specified. Voltage between terminals U TT: Voltage between terminals (at 20°C, 10s) : 1.5×URDC Voltage between terminals and case U TC: Voltage between terminals and case (at 20°C, 10s): 2 × Ui + 1000 or 3000 (V AC), whichever value is larger. Buzzing noise : Any buzzing noise produced by a capacitor is caused by the vibration of the film due to the Coulomb force that is generated between the electrodes with opposite poles. If the wave- form with a high distortion rate or frequency is applied across the capacitor, the buzzing noise will become louder. But the buzzing noise is of no harm to the capacitor. Surface over temperature △ θ case: When current continuously flow through the capacitor, the temperature inside the capacitor will rise induced by dissipated heat. If t he temperature exceeds the maximum allowed hot -spot temperature, it might cause a short circuit or fire. The limits described in the catalogue must not be exceeded and it's necessary to check the temperature on the capacitor’s surface in operation. Flame r etardation : Although flame retarding PU resin or plastic case material is used in the coating or encapsulation of plastic film capacitors, continuous exposure to high temperature ambient or fire will break the coating layer or plastic case of the capacitor , and may lead to melting and ignition of the capacitor element. Humid ambient : If used for a long time in a humid ambient, the capacitor might absorb humidity and oxidize the electrodes causing damage to the capacitor . In case of AC application, high humidity would increase the corona effect. This phenomenon causes a drop in capacitance and a n increase of capacitor losses. Storage conditions: 1) Capacitors must not be stored in corrosive atmospheres, particularly not when chlorides, sulfides, acids, lye, salts, organic solvents or similar substances are present. 2) It must not be stored in high temperature and/or high humidity environments. The following storage conditions must be kept (applicable only for storage in the original package): Temperature: ≤ 35 °C Humidity: ≤ 80% RH, no dew allowed on the capacitor. Storage time: ≤ 24 months (from the date marked on the capacitor's body or on the label sticking to the package) Mounting: Other devices, which are mounted near the capacitor, should not touch the capacitor. Additional heat coming from other components near the capacitor may reduce the lifetime of the capacitor. Do never attempt to bend or twist the capacitor after mounting and avoid any mechanical stress on the terminals. Never exceed the max. permissible torques when tightening the terminal screws or the mounting bolt’s cap nuts. Caution during use of Capacitors: Do not touch the terminals of capacitors. Keep the capacitor free from conductive solution, such as acid s, alkali and so on. Ensure that the operating environment of the equipment into which the capacitor has been built is within the specified conditions mentioned in the catalogue or specification sheets. Definition of electrical parameters: Separate documents as application notes, equivalent circuit diagrams and so on are available on request. Packaging: Please refer to the data book for details. Further information is available on request. Jianghai Europe Electronic Components GmbH v2 0514