SMQ-Series(Snap-in) ALUMINUM ELECTROLYTIC CAPACITORS LARGE CAPACITANCE ALUMINUM ELECTROLYTIC CAPACITORS Inverter-use screw terminal, 85C RWY @High ripple capability @Endurance with ripple current : 85C 5000 hours @Cost-down design for three-phase input inverters low price version RWF ?SPECIFICATIONS Items Category Temperature Range Rated Voltage Range Capacitance Tolerance Leakage Current Dissipation Factor (tane) Low Temperature Characteristics Insulation Resistance Insulation Withstanding Voltage Endurance Shelf Life Characteristics -25 to +85C 350 to 450Vdc P20% (M) I=0.02CV or 5mA, whichever is smaller. Where, I : Max. leakage current (MA), C : Nominal capacitance (MF), V : Rated voltage (V) (at 20C, 120Hz) (at 20C after 5 minutes) 0.12 max. (at 20C, 120Hz) Capacitance change C(-25C)/C(+20C)]0.7 (at 120Hz) When it is measured between the terminals shor ted each other and the mounting clamp on the insulating sleeve covering the case by using an insulation resistance meter of 500Vdc, the insulation resistance shall not be less than 100MO. When a voltage of 2000Vac is applied for 1 minute between the terminals shorted each other and the mounting clamp on the insulating sleeve covering the case, there shall not be electrical damage. The following specifications shall be satisfied when the capacitors are restored to 20C after subjected to DC voltage with the rated ripple current is applied for 5000 hours at 85C. Capacitance change [P20% of the initial value D.F. (tanE) [200% of the initial specified value Leakage current [The initial specified value The following specifications shall be satisfied when the capacitors are restored to 20C after exposing them for 1000 hours at 85C without voltage applied. Capacitance change [P20% of the initial value D.F. (tanE) [200% of the initial specified value Leakage current [The initial specified value ?DIMENSIONS (Terminal Type=LGSN) [mm] @B Type of Mounting Clamp AP1 WP1 4.5 BP1 45P5 8 J GP1 fD 50 63.5 76 F50 to F76 : G=6 F89 : G=4 F100 : G=10 A 78 90 104.5 B 64 76 90 W F 68 22.4 80 28.0 93.5 31.5 fD 63.5 76 89 100 4.5 6 30P5 360 3 KP1 EP1 FP1 L+4max. FD+1.8max. Sleeve @C Type of Mounting Clamp E 38.1 44.5 50.8 56.5 K 43.5 50.0 56.5 63.4 F 28.0 31.5 31.5 41.5 J 14.0 14.0 16.0 18.0 F50 to F89 Plus hexagon-headed screw : M5B0.8B10 Maximum screw tightening torque : 3.23Nm F100 Cross-recessed head (Phillips) screw : M8B1.25B16 Spring washer Washer Maximum screw tightening torque : 6.31Nm * The screw and the mounting clamp are separately supplied and not attached to the product. ?PART NUMBERING SYSTEM RWY 400 LGSN 5700 M C Type of mounting clamp, if required Capacitance tolerance (P20%) Nominal capacitance in MF Screw terminal type Rated voltage in volts Series name (1/2) CAT. No. E1001D SMQ-Series(Snap-in) ALUMINUM ELECTROLYTIC CAPACITORS LARGE CAPACITANCE ALUMINUM ELECTROLYTIC CAPACITORS Inverter-use screw terminal, 85C ?STANDARD RATINGS Case size fDbL (mm) Vdc 350 400 SV 400 450 Items Capacitance (mF) 20c, 120Hz Rated ripple current (Arms) 85c, 300Hz Capacitance (mF) 20c, 120Hz 450 500 Rated ripple current (Arms) 85c, 300Hz Capacitance (mF) 20c, 120Hz Rated ripple current (Arms) 85c, 300Hz 50b75 750 5.1 620 4.6 500 4.0 50b96 1,100 6.9 880 6.1 710 5.2 50b105 1,300 7.8 1,000 6.8 840 5.9 50b130 1,600 9.5 1,400 8.9 1,100 7.5 50b145 1,900 10.7 1,600 9.9 1,300 8.4 63.5b96 1,800 10.0 1,500 9.1 1,200 7.8 63.5b115 2,400 12.6 2,000 11.5 1,600 9.8 63.5b130 2,800 14.3 2,300 13.0 1,800 10.9 63.5b155 3,400 17.1 2,800 15.5 2,300 13.3 63.5b170 3,800 18.8 3,200 17.3 2,500 14.5 76b115 3,500 16.9 2,900 15.4 2,300 13.0 76b130 4,000 19.0 3,400 17.5 2,700 14.8 76b155 5,000 23.0 4,200 21.1 3,300 17.7 76b170 5,600 25.3 4,600 23.0 3,700 19.5 89b155 6,900 27.2 5,700 24.7 4,600 22.2 89b170 7,700 29.6 6,400 27.0 5,100 24.1 89b190 8,400 32.9 7,000 30.0 5,700 27.1 100b190 9,500 37.3 7,900 34.0 6,400 30.6 100b220 11,000 42.9 9,400 39.6 7,600 35.6 100b270 14,000 53.1 12,000 49.2 9,500 43.7 ?RATED RIPPLE CURRENT MULTIPLIERS @Frequency Multipliers Frequency (Hz) 120 Coefficient 0.83 300 1.0 1k 1.25 3k 1.33 Note : The endurance of capacitors is shorted with internal heating produced by ripple currents at the rate of halving the lifetime with every 5 to 10C rise. When long life performance is required in actual use, the rms ripple current has to be reduced. Also, for RWY series capacitors, using them at operating voltage less than their rated voltage can extend their lifetime. For the details, please contact a representative of Nippon Chemi-Con. (2/2) CAT. No. E1001D