243NQ100 MICROSEMI | Alldatasheet
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Technical content
J Std. Polortt Dim. Inches Millimeter . Polari { 1 L Base te cathode Minimum Maximum Minimum Maximum Notes T Rev. Polarity A 152 1.56 38.86 39.62 Base is anode Bo 725 775 18.42 19.69 © 605 625 15.37 15.88 K F D (1,182 1192 30.02 30.28 H c — 745 755 18.92 19.18 Sq. f= E | Fo 452 160 3.86 4.06 Dio. { 6 1/4-20 UNC-28 HH .570 ‘580 14.49 14.73, Jo 156 160 3.96 4.06 { K 495 505 12.57 12.83 Dia. L120 1303.05 3.30 rp, Microsemi Industry Working Peak Repetitive Peak . Catalog Number Part Number Reverse Voltage Reverse Voltage © Schottky Barrier Rectifier HS24380* 243NQ080 80v 80V * Guard Ring Protection HS24390* MBR24080 gov gov . 240 Amperes/80 to 100 Volts HS243100* 243NQ100 100V 100V © 175°C Junction Temperature MBR240100 © Reverse Energy Tested *Add Suffix R for Reverse Polarity
Electrical Characteristics
Average forward current 'F(AV) 240 Amps. Tc = 122°C, Square wave,ReJc =.24°C/W Maximum surge current 'FSM 3300 Amps 8.3ms, half sine, TJ = 175°C Maximum repetitive reverse current IR(OV) 2 Amps f = 1 KHZ, 25°C Max peak forward voltage VFM 0.72 Volts IFM = 240A: TJ = 175°C* Max peak forward voltage VFM 0.86. Volts IFM = 240A: TJ = 25°C* Max peak reverse current IRM 200mA VRRM, TJ = 125°C* Max peak reverse current IRM 8.0mA VRRM, Td = 25°C Typical junction capacitance Cy 6400pF VR = 5.0V, TC = 25°C *Pulse test: Pulse width 300 usec, Duty cycle 2% Thermal and Mechanical Characteristics Storage temp range Tst¢ 55°C to 175°C Operating junction temp range TJ =55°C to 175°C Max thermal resistance Reuc 0.24°C/W Junction to case Typical thermal resistance (greased) Recs 0.12°C/W Case to sink Terminal Torque 35-40 inch pounds Mounting Base Torque 20-25 inch pounds Weight 1.1 ounces (32 grams) typical . COLORADO a 800 Hoyt Street 11-15-01 Rev. 2 Broomfield, CO. 80020 icrosemi :2" FAX: (503) 466-3775 www.microsemi.com
Typical Forward Characteristics Typical Junction Capacitance 10,000 4 oo 100,000 con EEE EEE tom Se e000 FEI I 40,000 it} | 0007 en 4000 ttt ‘5 2000—ET HFT TTT 1 = TTT soon tet LITT LI /| L | E~ 6000 a A A 2000 7 7 i a | V) Y & 4900 Cor So A) «aE EEHHEI PBS
1000 AAR 2 2000 eS
A | 3 1000 so PEE a A 0.1 05 1.0 5.0 10 50 100 “ FREE “eee eee i ware PTT pores 8 ooo |_| ise JL | | ashe oS 9 1 400 | | § 170E Sg PE s Nl OK 8 80 rr = 160 NI 8 oo See s I WXEL EEE LI » [LTT rrr yr tt ty 3 150 NN ‘ s.- [7A FT TT ttt eet ty 8 1] WK EET 4 2 140 . S go ee Nene ee ee SS 5 2 5 ott | IN NI I
5 E199 IN
3, Ul Sol L_berll rtlaricos! od) | |_| é 10 | 2 0 pyi209}180°| OC 0.2 04 06 08 10 12 14 16 0 100 200 500 400 500 Instantaneous Forward Voltage — Volts Average Forward Current — Amperes Figure 2 Figure 5 Typical Reverse Characteristics Maximum Forward Power Dissipation eS SS SS SSS SSS LSS SSS = a ee beeeeaasSS Cer Fd 10§ Eee 5 150 4 BSSSS=sss= ye a EE a2 100 LLL Ee SSeS See Wha 3 01 =e es | |ARLIT LL SSS = eS = eZ SS | AC 9 2 lA 0 20 40 60 80 100 0 100 200 300 400 500 Reverse Voltage — Volts Average Forward Current - Amperes 11-15-01 Rev. 2