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Document overview
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Technical content
http://www.formosams.com/ TEL:886-2-22696661 FAX:886-2-22696141 Document ID Issued Date Revised Date Revision Page. DS-222416 2008/02/10 2014/08/15 E 6 Formosa MSSuper Fast Recovery Rectifiers SF1605CT THRU SF1660CT
http://www.formosams.com/ TEL:886-2-22696661 FAX:886-2-22696141 16A Super Fast Recovery Rectifiers - 50V-600V Formosa MS Document ID Issued Date Revised Date Revision Page. Super Fast Recovery Rectifiers SF1605CT THRU SF1660CT Mechanical data Epoxy : UL94-V0 rated flame retardant
- Case : JEDEC TO-220AB molded plastic body over passivated chip
- Lead : Axial leads, solderable per MIL-STD-202, Method 208 guranteed
- Polarity:
- Mounting Position : Any
- Weight : Approximated 2.10 gram As marked
Features
- Dual rectifier construction, positive centetap, offer 8.0A half wave and 16.0A full wave rectification High surge current capability.
- Super fast recovery time for switching mode application. Glass passivated chip junctions. Lead-free parts meet environmental standards of MIL-STD-19500/228
- Suffix "-H" indicates Halogen-free parts, ex. SF1605CT-H.
- Low power loss Package outline Dimensions in inches and (millimeters) TO-220AB 0.419(10.66) 0.387(9.85) 0.139(3.55) MIN 0.624(15.87) 0.548(13.93) 0.269(6.85) 0.226(5.75) 1 2 3 0.177(4.50)MAX 0.50(12.70)MIN 0.196(5.00) 0.163(4.16) 0.038(0.96) 0.019(0.50) 0.1(2.54) PIN 1 PIN 3 PIN 2 0.054(1.39) 0.045(1.15) 0.025(0.65)MAX Maximum ratings (AT T =25A o C unless otherwise noted) Maximum repetitive peak reverse voltage Maximum RMS voltage Peak forward surge current 8.3ms single half sine-wave(JEDEC method) Maximum DC blocking voltage Maximum average forward rectified current Operating junction temperature range Storage temperature range Maximum forward voltage at IF=8Aper leg Maximum DC reverse current at TJ =25°C per leg at TJ =125°Cat rated DC blocking voltage Electrical Characteristics (AT T =25A o C unless otherwise noted) Thermal Characteristics Maximum reverse recovery time (Note 1)per leg Note 1: Reverse recovery time test condition, IF=0.5A, IR=1.0A, IRR=0.25A Typical thermal resistance junction to case per leg PARAMETER PARAMETER PARAMETER SYMBOLS SYMBOLS SYMBOLS VDC VRRM IFSM VRMS TSTG IO TJ VF IR RθJC trr SF1605CT SF1610CT 0.98 100 100 SF1620CT -55 to +150 -65 to +175 5.0 250 200 140 200 125 2.0 SF1640CT 400 280 400 1.30 SF1660CT 1.70 600 420 600 UNIT UNIT uA uA UNIT °C/W ns V V V A A V SF1605CT SF1610CT SF1620CT SF1640CT SF1660CT SF1605CT SF1610CT SF1620CT SF1640CT SF1660CT DS-222416 2008/02/10 2014/08/15 E 6
http://www.formosams.com/ TEL:886-2-22696661 FAX:886-2-22696141 Rating and characteristic curves (SF1605CT THRU SF1660CT) FIG.1-TYPICAL FORWARD CURRENT DERATING CURVE AVERAGE FORWARD CURRENT,(A) FIG.3-MAXIMUM NON-REPETITIVE FORWARD SURGE CURRENT 125 100 NUMBER OF CYCLES AT 60Hz 1 10 5 50 100 TJ=25°C 8.3ms Single Half Sine Wave JEDEC method 0 20 40 60 80 100 120 140 160 180 200 CASE TEMPERATURE,(°C) PEAK FORWARD SURGE CURRENT,(A) Document ID Issued Date Revised Date Revision Page. INSTANTANEOUS FORWARD CURRENT,(A) FORWARD VOLTAGE,(V) FIG.2-TYPICAL FORWARD 0.1 1.0 .01 CHARACTERISTICS 600V 50V~200V 400V Pulse Width 300us 1% Duty Cycle o TJ=25 C (+) (+) 25Vdc (approx.) ( ) ( ) PULSE GENERATOR (NOTE 2) OSCILLISCOPE (NOTE 1) NON- INDUCTIVE W NOTES: 1. Rise Time= 7ns max., Input Impedance= 1 megohm.22pF. 2. Rise Time= 10ns max., Source Impedance= 50 ohms. D.U.T. FIG.5- TEST CIRCUIT DIAGRAM AND REVERSE RECOVERY TIME CHARACTERISTICS NONINDUCTIVE NONINDUCTIVE W W +0.5A -0.25A -1.0A 1cm SET TIME BASE FOR 50 / 10ns / cm trr 100 FIG.4 - TYPICAL REVERSE CHARACTERISTICS REVERSE LEAKAGE CURRENT, (uA) PERCENT OF RATED PEAK REVERSE VOLTAGE,(%) Tj=125°C DS-222416 2008/02/10 2014/08/15 E 6
Pin Simplified outline Symbol Marking Type number Marking code SF1605CT SF1605CT SF1610CT SF1610CT SF1620CT SF1620CT SF1640CT SF1640CT SF1660CT SF1660CT Page 4 http://www.formosams.com/ TEL:886-2-22696661 FAX:886-2-22696141 PIN 1 PIN 3 PIN 2 Formosa MS Document ID Issued Date Revised Date Revision Page. Super Fast Recovery Rectifiers SF1605CT THRU SF1660CT 1 2 3 Tube packing TO-220AB 50 525*32*7.5 1000 555*150*40 580*230*175 5,000 15.0 PACKAGE TUBE TUBE SIZE BOX INNER BOX CARTON SIZE CARTON APPROX. GROSS WEIGHT (kg)(pcs)(m/m)(m/m)(pcs)(m/m)(pcs) DS-222416 2008/02/10 2014/08/15 E 6
http://www.formosams.com/ TEL:886-2-22696661 FAX:886-2-22696141 Formosa MS Document ID Issued Date Revised Date Revision Page. Super Fast Recovery Rectifiers SF1605CT THRU SF1660CT Suggested thermal profiles for soldering processes Temperature(°C) 1.Lead free temperature profile wave-soldering 0 20 40 60 80 100 120 140 160 180 200 220 240 Time(Sec) 100 120 140 160 180 200 220 240 260 280 Preheat Max gradient 2ºC/s Peak Max well time 5 Max Cool Down Max gradient-4ºC/s Suggested gradient 2ºC/s or less Peak soldering temperature not to exceed 260ºC DS-222416 2008/02/10 2014/08/15 E 6
http://www.formosams.com/ TEL:886-2-22696661 FAX:886-2-22696141 Formosa MS Document ID Issued Date Revised Date Revision Page. Super Fast Recovery Rectifiers SF1605CT THRU SF1660CT 1. Solder Resistance 2. Solderability 3. High Temperature Reverse Bias 4. Forward Operation Life 5. Intermittent Operation Life 6. Pressure Cooker 7. Temperature Cycling 8. Forward Surge 9. Humidity 10. High Temperature Storage Life at 260 5 for 10 2sec. immerse body into solder 1/16"±1/32" O at 245±5 C for 5 sec. O V =80% rate at T =150 C for 168 hrs.R J O Rated average rectifier current at T =25 C for 500hrs.A O T = 25 C, I = IA F O On state: power on for 5 min. off state: power off for 5 min. on and off for 500 cycles. O 15P at T =121 C for 4 hrs.SIG A O O -55 C to +125 C dwelled for 30 min. and transferred for 5min. total 10 cycles. 8.3ms single half sine-wave , one surge. O at T =85 C, RH=85% for 1000hrs.A O at 175 C for 1000 hrs. O ± C ± MIL-STD-750D METHOD-2031 MIL-STD-202F METHOD-208 MIL-STD-750D METHOD-1038 MIL-STD-750D METHOD-1027 MIL-STD-750D METHOD-1036 JESD22-A102 MIL-STD-750D METHOD-1051 MIL-STD-750D METHOD-4066-2 MIL-STD-750D METHOD-1021 MIL-STD-750D METHOD-1031 Item Test Conditions Reference High reliability test capabilities DS-222416 2008/02/10 2014/08/15 E 6