S10C70 MOSPEC | Alldatasheet
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4 MOSPEC $10C70 thru $10C100
Schottky Barrier Rectifiers SCHOTTKY BARRIER RECTIFIERS Using the Schottky Barrier principle with a Molybdenum barrier metal. These state-of-the-art geometry features epitaxial 10 AMPERES construction with oxide passivation and metal overlay contact. 70 — 100 VOLTS ideally suited for low voltage, high frequency rectification, or as free wheeling and polarity protection diodes. * Low Forward Voltag. * Low Switching noise. * High Current Capacity * Guarantee Reverse Avalance. * Guard-Ring for Stress Protection. * Low Power Loss & High efficiency. * 125°C Operating Junction Temperature * Low Stored Charge Majority Carrier Cnduction. * Plastic Material used Carries Underwriters Laboratory Flammability Classification 94V-O TO-220AB MAXIMUM RATINGS , 2 c Peak Repetitive Reverse Voltage Varn Working Peak Reverse Voltage Vewm 70 Vv ne + DC Blocking Voltage Ve T RMS Reverse Vatage [Vans | | pe pm [Vv | ; Average Rectifier Forward Current bray 5.0 A wegpes y Total Device (Rated V,),T.=100°C 10 + Peak Repetitive Forward Current Non-Repetitive Peak Surge Current A A 11468 | 15.32 ( Surge applied at rate load condi- B 978 | 10.42 tions halfware,single phase,60Hz ) Cc 6.01 6.52 Operating and Storage Junction Ty. Tug °c D | 13.06 | 14.62 ‘Temperature Range , = 65 to + 125 E | 387 | 407 G 1.12 1.36 H 0.72 0.96 1 4.22 | 4.98 J 1.14 1.36 ELECTRICAL CHARACTERISTICS K | oe | oe $10 m | 248 | 298 fe} 3.70 3.90 Maximum Instantaneous Forward V, Vv 1 Common Cathod Voltage . iearee Suffix" C* (1,=5.0 Amp, T, = 100 °C) 0.67 0.76 oe Ke Common Anode Maxit Instantaneous Reverse mA ; Summ" laximum Current OF He Double ( Rated DC Voltage, T, = 25 °C) Suffix" D” ( Rated DC Voltage, T, = 100 °C)
$10C70 , S10C80 faa ae eh FIG-1 FORWARD CURRENT DERATING CURVE FIG-2 TYPICAL FORWARD CHARACTERISTICS ." a - ott e 4 E See o is] A OS CS A fal 2 a a et LOA : . == S Fa a a | a 2, LPI TTT tt it tf & 0 25 50 75 100 125 150 2 0 02 04 06 08 1 12 14 16 18 2 22 24 CASE TEMPERATURE (°c) FORWARD VOLTAGE (Volts.) FIG-3 TYPICAL REVERSE CHARACTERISTICS FIG-4 TYPICAL JUNCTION CAPACITANCE 20 2000 = SS SS om Ss ee ee ee ce ee Oe ee oo ¢ ~~ [| [ [| [ [/[ | @ SSaeec aa eear | ees Fe SH Pa ee ee oe oe ee : i sa
3 Ss cs —
2 a ae ee on on al | 2 niler | [ | Tt ‘00 2 0 20 40 60 80 100 120 140 1 5 10 50 80 PERCENT OF PEAK REVERSE VOLTAGE(%) REVERSE VOLTAGE (Volts.) FIG-5 PEAK FORWARD SURGE CURRENT | ATT 125 7 er ead HH = 100 i -4N POPs cH | el g Fs 23|--— | Fd | eo 10 100 NUMBER OF CYCLES AT 60 Hz
$10C90 , S10C100 ee FIG-1 FORWARD CURRENT DERATING CURVE FIG-2 TYPICAL FORWARD CHARACTERISTICS => _ eS SS AS SS C—O =! F otttiel ttt a == = SS SS E B OEEPGEEEEEEEA 2g 2 SSS SS SS SS g 2 Se eee =z 2 = Fy 5 a on _ 2 4, CAPE & 0 25 50 15 100 425 150 2 0 02 04 06 08 1 12 14 16 18 2 22 24 CASE TEMPERATURE (°C) FORWARD VOLTAGE (Volts.) FIG-3 TYPICAL REVERSE CHARACTERISTICS FIG-4 TYPICAL JUNCTION CAPACITANCE 20 se | T] 2000 SSS ‘000 | Ls ——— @ J) SSH s a ae as ee a ee a a a fr a a oe) NY ee 80 ee f ; St Eq a a eee eS ee 3 | | | } ity) 3 0 20 40 60 80 100 120140 1 5 10 80 100 PERCENT OF PEAK REVERSE VOLTAGE(%) REVERSE VOLTAGE (Volts.) FIG-5 PEAK FORWARD SURGE CURRENT 150 > a ~ 125 FON = X eM | mn 2 = i F PT z 5 s LUM TT 1 10 100 NUMBER OF CYCLES AT 60 Hz