S30C30 MOSPEC | Alldatasheet
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4 MOSPEC $30C30 Thru $30C60
Schottky Barrier Rectifiers SCHOTTKY BARRIER RECTIFIERS Using the Schottky Barrier principle with a Molybdenum barrier metal. These state-of-the-art geometry features epitaxial 30 AMPERES construction with oxide passivation and metal overlay contact. 30 -- 60 VOLTS Ideally suited for low voltage, high frequency rectification, or as free wheeling and polarity protection diodes. * Low Forward Voitag. *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 + a4 ef Characteristic Symbol $30C une | w S T Te Peak Repetitive Reverse Voltage Verm } tas i Working Peak Reverse Voltage Vawm | 30 |35 | 40 | 45 | 50 v £ DC Blocking Voltage Ve D Vagus, | 2 [24 [28 | Average Rectifier Forward Current ley) 15 A wenn S saaee Total Device (Rated V,),T.=100°C 30 | Peak Repetitive Forward Current A | ( Rate V,,Square Wave,20kHz ) 30 [min | MAX | Non-Repetitive Peak Surge Current les A A | 14.68 | 15.32 ( Surge applied at rate load condi- 250 B 9.78 | 10.42 tions halfware,single phase,60Hz ) c 6.01 6.52 Operating and Storage Junction Ty Tota °C 2 1306 “ Be Temperature Range -65 to + 125 F 2.42 2.66 SG 1.12 1.36 | H 0.72 0.96 | J 1.14 1.36 ELECTRICAL CHARACTERISTICS x | 220 | 297 Peery $30C L 0.33 0.55 Characteristic Symbol um | 243 | 298 | 30 | 36 | 40 | 45 | 50 | 60 | o | 370 | 390 Maximum Instantaneous Forward Vr, Vv Voltage ore Common Cathod (p= 15 Amp, Te = 25 °C) 0.55 0.65 3 i (I= 18 Amp, T= 100 °C) 0.46 0.56 rey 2 Common Anode Maximum Instantaneous Reverse mA : Suffix” A Current ore Double (Rated DC Voltage, T, = 25 °C) 5.0 % Suffix" D" (Rated DC Voltage, T, = 100 °C) 80
$30C30 thru S30C45 Pl teal FIG-1 FORWARD CURRENT DERATING CURVE FIG-2 TYPICAL FORWARD CHARACTERISTICS s4a_| | AL | = & % a a a a es a 5a Ve 5 HZ tt B 5 a rs ey | -—-—— z |_| g i t+} + 2 5 OE = SS SS i SS = 5 a a ee | a gy 2, Jt] | | | [ J & 0 ey 50 75 100 128 150 0 02 04 06 08 1 120 1416 CASE TEMPERATURE (°C) FORWARD VOLTAGE (Volts.) FIG-3 TYPICAL REVERSE CHARACTERISTCS FIG-4 TYPICAL JUNCTION CAPACITANCE 30 3000 a ES ES RS OS | i : SSS oN | 5 ee es ee ee ee ee | a S _—— | : LW Fae SS ee
80 See — es | ES
& se & ce ee ee SSS? LL ME Te Ea a eed | 100 2 0 20 40 60 80 100 120 140 1 5 10 40 PERCENT OF PEAK REVERSE VOLTAGE(%) REVERSE VOLTAGE (Volts.) FIG-S PEAK FORWARD SURGE CURRENT LL ani — at T TTTI i eta eee gq ™ oS a | | | eel : eee 2 100 [7 a ee ge % ee ell 1 10 100 NUMBER OF CYCLES AT 60 Hz
$30C50 , S30C60 ttl tine FIG-1 FORWARD CURRENT DERATING CURVE FIG-2 TYPICAL FORWARD CHARACTERISTICS 0 80 eS eS gow t+ § See Bon Pg we if | 2 |_| \\ 8 Sea SS SSS e * rt LN | 2 ey a a re a | = E. i, eseeeeeeee i it iN 2 5 5 2 — SS Pt TN | ER Er a Qo z oA en |_| & 0 5 50 78 100 125 60 2 0 02 04 06 08 1 12 14 16 18 2 z CASE TEMPERATURE (°C) FORWARD VOLTAGE (Volts.) FIG-3 TYPICAL REVERSE CHARACTERISTICS FIG-4 TYPICAL JUNCTION CAPACITANCE 30 3000 es NS SS SO oe ee ee ee ; ES PL | TT eS eer 1080 SEE eee a) ee OO ———— se a e fot [> tats | 7 Sees s CTT Tit gs _ TE | 2 & — a ee en 7 eee | Py {0 B 0 20 40 60 80 100 120140 1 5 10 60 PERCENT OF PEAK REVERSE VOLTAGE(%), REVERSE VOLTAGE (Volts.) FIG-5 PEAK FORWARD SURGE CURRENT | HTT ff | — 20 a HECeot DM FA 200 SU ry 5 eal Base Li 8 i] ee | PA