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SRAF08200 Datasheet(PDF) 1 Page - Mospec Semiconductor |
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SRAF08200 Datasheet(HTML) 1 Page - Mospec Semiconductor |
1 / 2 page MOSPEC SRAF08200 Full Plastic Schottky Barrier Rectifiers Using the Schottky Barrier principle with a Refractory metal capable of high temperature operation metal. The proprietary barrier technology allows for reliable operation up to 175℃ junction temperature. Typical application are in switching Mode Power Supplies such as adaptators, DC/DC converters, free- wheeling and polarity protection diodes. Features * Low Forward Voltage. * Low Switching noise. * High Current Capacity * Guarantee Reverse Avalanche. * Guard-Ring for Stress Protection. * Low Power Loss & High efficiency. * 175℃ Operating Junction Temperature * Low Stored Charge Majority Carrier Conduction. * Plastic Material used Carries Underwriters Laboratory Flammability Classification 94V-O *In compliance with EU RoHs 2002/95/EC directives MAXIMUM RATINGS Characteristic Symbol SRAF08200 Unit Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage VRRM VRWM VR 200 V RMS Reverse Voltage VR(RMS) 140 V Average Rectifier Forward Current Total Device (Rated VR), TC=125℃ IF(AV) 8 A Peak Repetitive Forward Current (Rate VR, Square Wave, 20kHz) IFM 16 A Non-Repetitive Peak Surge Current (Surge applied at rate load conditions halfware, single phase, 60Hz) IFSM 150 A Operating and Storage Junction Temperature Range TJ , Tstg -65 to +175 ℃ THERMAL RESISTANCES Typical Thermal Resistance junction to case Rθ j-c 4.0 ℃ /w ELECTRIAL CHARACTERISTICS Characteristic Symbol SRAF08200 Unit Maximum Instantaneous Forward Voltage ( IF =8 Amp TC = 25℃) ( IF =8 Amp TC = 125℃) VF 0.95 0.85 V Maximum Instantaneous Reverse Current ( Rated DC Voltage, TC = 25℃) ( Rated DC Voltage, TC = 125℃) IR 0.1 20 mA SCHOTTKY BARRIER RECTIFIERS 8 AMPERES 200 VOLTS ITO-220AC MILLIMETERS DIM MIN MAX A 15.05 15.15 B 13.35 13.45 C 10.00 10.10 D 6.55 6.65 E 2.65 2.75 F 1.00 G 1.15 1.25 H 0.55 0.65 I 4.80 5.20 J 3.00 3.20 K 1.10 1.20 L 0.55 0.65 M 4.40 4.60 N 1.15 1.25 O 3.35 3.45 P 2.65 2.75 Q 3.15 3.25 To evaluation the conduction losses use the following equation: P=0.65×IF(AV)+0.015×IF(RMS) 2 |
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