SFF2004G TSC | Alldatasheet

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/cuspopen Low forward voltage drop /cuspopen High current capability /cuspopen High reliability /cuspopen High surge current capability Mechanical Data /cuspopen Cases: ITO-220AB Molded plastic /cuspopen Epoxy: UL 94V-0 rate flame retardant /cuspopen Terminals: Leads solderable per MIL-STD-202, Method 208 guaranteed /cuspopen Polarity: As marked /cuspopen High temperature soldering guaranteed: 2 6 0 oC/10 seconds .16”,(4.06mm) from case. /cuspopen Weight: 2.24 grams ITO-220AB Dimensions in inches and (millimeters) Maximum Ratings and Electrical Characteristics Rating at 25℃ambient temperature unless otherwise specified. Single phase, half wave, 60 Hz, resistive or inductive load. For capacitive load, derate current by 20% Type Number Symbol SFF2004G SFF2005G Units Maximum Recurrent Peak Reverse Voltage VRRM 200 300 V Maximum RMS Voltage VRMS 140 210 V Maximum DC Blocking Voltage VDC 200 300 V Maximum Average Forward Rectified Current @TC = 100℃ I(AV) 20.0 A Peak Forward Surge Current, 8.3 ms Single Half Sine-wave Superimposed on Rated Load (JEDEC method ) IFSM 180 A Maximum Instantaneous Forward Voltage @ 10.0A VF 0.975 1.30 V Maximum DC Reverse Current @ TA=25℃ at Rated DC Blocking Voltage @ TA=100℃ IR 10 400 uA uA Maximum Reverse Recovery Time (Note 1) Trr 35 nS Typical Junction Capacitance (Note 2) Cj 90 pF Typical Thermal Resistance (Note 3) RθJC 2.5 ℃/W Operating Temperature Range TJ -65 to +150 ℃ Storage Temperature Range TSTG -65 to +150 ℃ Notes: 1. Reverse Recovery Test Conditions: IF=0.5A, IR=1.0A, IRR=0.25A 2. Measured at 1 MHz and Applied Reverse Voltage of 4.0 V D.C. 3. Thermal Resistance from Junction to Case Mounted on Heatsink. /K2E/K32/K37/K32/K28/K36/K2E /K39/K29 /K2E/K32/K34/K38/K28/K36/K2E /K33/K29 /K2E/K35/K34/K33/K28/K31/K33/K2E/K38/K29 /K2E/K35/K31/K32/K28/K31/K33/K2E/K32/K29 /K2E/K31 /K31/K30/K28/K32/K2E/K38/K29 /K2E/K30/K39/K38/K28/K32/K2E/K35/K29 /K2E/K36/K30/K36/K28/K31/K35/K2E/K35/K29 /K2E/K35/K38/K33/K28/K31/K34/K2E/K38/K29 /K2E/K31 /K31/K32/K28/K32/K2E/K38/K35/K29 /K2E/K31/K30/K30/K28/K32/K2E/K35/K35/K29 /K2E/K31/K33/K34/K28/K33/K2E/K34/K29/K44/K49/K41 /K2E/K31 /K31 /K33/K28/K33/K2E/K30 /K29/K44/K49/K41

  • 291 - FIG.3- TYPICAL REVERSE CHARACTERISTICS 0 20 40 60 80 100 120 140 1000 0.1 100 PERCENT OF RATED PEAK REVERSE VOLTAGE. (%) TJ=75 C0 TJ=100 C0 INSTANTANEOUS REVERSE CURRENT .( A ) FIG.1- REVERSE RECOVERY TIME CHARACTERISTIC AND TEST CIRCUIT DIAGRAM 50/c87 NONINDUCTIVE /c49/c87 NON INDUCTIVE OSCILLOSCOPE (NOTE 1) PULSE GENERATOR (NOTE 2) DUT (+) 50Vdc (approx) (-) NOTES: 1. Rise Time=7ns max. Input Impedance= 1 megohm 22pf 2. Rise Time=10ns max. Sourse Impedance= 50 ohms (-) (+) 10/c87 NONINDUCTIVE -1.0A -0.25A +0.5A trr 1cm SET TIME BASE FOR 5/ 10ns/ cm RATINGS AND CHARACTERISTIC CURVES (SFF2004G THRU SFF2005G) FIG.6- TYPICAL FORWARD CHARACTERISTICS PER LEG INSTANTANEOUS FOR WARD CURRENT . (A) 0.01 0.1 0.03 0.3 100 FORWARD VOLTAGE. (V) FIG.5- TYPICAL JUNCTION CAPACITANCE PER LEG CAPACITANCE.(pF) 15 2 10 20 50 100 200 500 100 REVERSE VOLTAGE. (V) Tj=25 C0 FIG.2- MAXIMUM FORWARD CURRENT DERATING CURVE AVERAGE FOR WARD CURRENT . (A) 0 50 100 150 CASE TEMPERATURE. ( C) o FIG.4- MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT PER LEG PEAK FOR WARD SURGE CURRENT . (A) 1 2 5 10 20 100 50 200 150 100 NUMBER OF CYCLES AT 60Hz 8.3ms Single Half Sine Wave JEDEC Method TJ=125 C0 Tj=25 C Pulse Width=300 s 1% Duty Cycle o SFF2005G SFF2004G 100040 250 TJ=25 C0