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FSV16B0683K Datasheet(PDF) 2 Page - AVX Corporation |
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FSV16B0683K Datasheet(HTML) 2 Page - AVX Corporation |
2 / 2 page 32 Medium Power Film Capacitors FSV (RoHS Compliant) Part Number Capacitance D max. Irms Rs Rth Typical (μF) mm (in) A (m ) °C/W Weight (g) FSV 600 V Vndc = 600V Vrms = 300V (Voltage Code K) FSV16K0683K-- 0.068 22 (0.866) 10 2.5 35 15 FSV26K0104K-- 0.10 25 (0.984) 15 2.1 25 25 FSV26K0154K-- 0.15 30 (1.181) 23 1.8 17 25 FSV 800 V Vndc = 800V Vrms = 400V (Voltage Code B FSV16B0473K-- 0.047 22 (0.866) 10 2.6 33 15 FSV26B0683K-- 0.068 25 (0.984) 15 2.2 23 25 FSV26B0823K-- 0.082 28 (1.102) 18 2.1 21 25 FSV26B0104K-- 0.100 30 (1.181) 23 1.9 16 25 FSV 1000 V Vndc = 1000V Vrms = 450V (Voltage Code L) FSV16L0333K-- 0.033 22 (0.866) 8 2.8 31 15 FSV26L0473K-- 0.047 25 (0.984) 12 2.3 22 25 FSV26L0683K-- 0.068 30 (1.181) 17 2.0 16 25 FSV 1200 V Vndc = 1200V Vrms = 500V (Voltage Code U) FSV16U0223K-- 0.022 22 (0.866) 7 3.2 34 15 FSV26U0333K-- 0.033 25 (0.984) 10 2.2 23 25 FSV26U0473K-- 0.047 30 (1.181) 14 2.1 16 25 FSV 1500 V Vndc = 1500V Vrms = 600V (Voltage Code R) FSV16R0153K-- 0.015 22 (0.866) 5 3.5 34 15 FSV26R0223K- 0.022 25 (0.984) 8 2.8 22 25 FSV26R0333K- 0.033 30 (1.181) 12 2.2 16 25 FSV 2000 V Vndc = 2000V Vrms = 650V (Voltage Code N) FSV16N0103K-- 0.010 22 (0.866) 5 3.4 34 15 FSV26N0153K-- 0.015 25 (0.984) 7 2.9 21 25 FSV26N0203K-- 0.020 27 (1.063) 10 2.4 16 25 FSV26N0223K-- 0.022 30 (1.181) 11 2.4 14 25 ELECTRICAL CHARACTERISTICS Capacitance Range Cn 0.010μF to 0.15μF Tolerance on Cn 10% Rated DC Voltage Vndc 600 to 2000 V Rated AC Voltage 300 to 650 Vrms Test Voltage between terminals @ 25°C 1.5 Vndc during 10s High dV/dt 10000 V/μs RMS Current Irms max = up to 23A The currents shown in the tables are maximum. It is necessary to respect the thermal limits of the dielectric 85°C See “Hot spot temperature calculation” Working Temperature -40°C +85°C (according to the power to be dissipated) Climatic Category 40/085/56 (IEC 60068) Hot Spot Calculation See Hot Spot Temperature page 3 For all applications, the temperature in the hot spot capacitor must be lower than 85°C Hot spot = ambient + (tan δ 0 x Q + Rs Irms 2 ) x Rth With tg δ o = 2.10-4 Q in vars Rs in Irms in A Rth in °C/W Dielectric Polypropylene RATINGS AND PART NUMBER REFERENCE |
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