SBT6040 MICROSEMI | Alldatasheet
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8 Le D=DOUBLER A — 875 — 22.23 Dia. te 1 2 B .250 450 6.35 11.43 c C435 — 11.05 —_— T aL D 057 065 1.45 1.65 Dia. D — 1477 1.197 29.90 30.40 H case F655 675 16.64 17.15 tt 2 M S G 420 440 10.67 11.18 coke. ay A=ANODE HO o— 525 — 13.34 Rod. ~ i 3 J 151 161 (3.84 4.09 Dia. 1 2 K —.205 2255.21 5.72 F J L — 135 — 3.43 E _ — 180 — 4.57 Rad. CASE “ores TO-204AE (LARGE PIN TO-3) Microsemi Working Peak Repetitive Peak . a Catalog Number Reverse Voltage Reverse Voltage © Schottky Barrier Rectifier © Guard Ring Protection 5876040" tov ‘ov © 175°C Operation SBT6045* 45V 45V @VRRM - 40 to 50V SBT6050* 50V 50V © 60 Amperes © Reverse Energy Tested *Add D, C, or A Electrical Characteristics Per Leg Average forward current per leg 'F(AV) 30 Amps Tc = 147°C, square wave, R@JC = 1.2°C/W Average forward current per leg 'F(AV) 30 Amps Te = 130°C, square wave, REJC = 2.0°C/W Maximum surge current ‘FSM 600 Amps 8.3 ms, half sine TJ = 175°C Max repetitive peak reverse current _!R(OV) 2 Amps f = 1 KHz, 25°C, 1 psec square wave Max peak forward voltage VFM .55 Volts IFM = 30A: Ty = 175°C* Max peak forward voltage VFM .68 Volts IFM = 30A: Ty = 25°C* Max peak reverse current 'RM 15 mA VRRM, Ty = 125°C* Max peak reverse current IRM 1.2 mA VRRM, TJ = 25°C Typical junction capacitance per leg Cy 1800 pF. VR = 5.0V, W = 25°C *Pulse test: Pulse width 300 usec, Duty cycle 2% Thermal and Mechanical Characteristics Operating junction temp range TsG -65°C to 175°C Storage temp range J -65°C to 175°C Maximum thermal resistance (standard polarity) R @JC 1.2°C/W Junction to case Maximum thermal resistance (reverse polarity) R eu 2.0°C/W Junction to case Typical thermal resistance (greased) Recs 0.5°C/W Case to sink Weight 1.0 ounces (28 grams) typical 5-2-00 Rev. 1 . COLORADO 800 Hoyt Street Broomfield, CO. 80020 jcrosemi 2% FAX: (303) 466-3775 www.microsemi.com
Typical Forward Characteristics Typical Junction Capacitance 1000 41.0000 pp a == a a — | Sa SS SS Se ne ieee ee imeeeciii i a 4000 Ft ot) wo PEE oo ES ATs veo | TN TUT VA VA) = 600 a A BB 200 yf 8 a VV, 8 oo Eo Ww, S 4007 in) mt As ecco 80 a es a 2 A Q A 5
6 PP yy 100
[Ty TTA yy Ty ty rt 04 0.5 1.0 5.0 10 50 100 o HAA Reverse Voltage - Volts PITT e VE ey yy amet igure ES V s 175 z | ero | | TTT TT Ty a a | 3s RUE 5 8.0 eS a Ss 165 N 880 eee e WN
860 CO eee 5 P| NEE EEE
o ELTA TP ry yp rr g 160 NN s.o_T/A TTT TTT tty 8 PT TINE EE Et = 4. 2 155 . el] TA TTT ETT TET | a’ TITEL Po CUTIE ET TT) oe S 520 swt TU TN TTT of | € 2,U Sol bolleodborlhsod [| | | 2 4 6 8B 10 12 14 0 5 10 15 20 25 30 35 40 45 50 Instantaneous Forward Voltage — Volts Average Forward Current Per Leg - Amperes Figure 2 Figure 5 Typical Reverse Characteristics Maximum Forward Power Dissipation — Standard Polarity ——— 2 35 SSSSSSS=— POT 6g 30 € ———S===S=SS cc go Ct TT ET S SS % 20 ape § aS = S SSS at Tf [fat PL] | 7a SSS SS => & 10 BaP Zee © 0 SS §
8 SSS SS SS SS £5 AF a
= & © oo) BCR Sa tt Zo Passes 0 10 20 30 40 50 0 5 10 15 20 25 30 35 40 45 50 Reverse Voltage - Volts Average Forward Current Per Leg — Amperes 5-2-00 Rev. 1