FST1080 MICROSEMI | Alldatasheet
Document overview
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Technical content
A F Cc Dim. Inches Millimeter B Minimum Maximum Minimum Maximum Notes A .390 “415 9.91 10.54 + Bo .045 .055 1.14 1.40 D c 180 -190 4.57 4.83 D245 .260 6.22 6.60 “TO € E 550 650 13.97 16.51 Fo 139 161 3.53 4.09 Dia. 123 G 100 135 2.54 3.43 H BASE J .500 580 12.70 14.73 L Z COMMON CATHODE K 190 -210 4.83 5.33 J P L 014 2022 .357 559 M — .080 115 2.03 2.92 N 2015 .040 -380 1.02 P .045 .070 1.14 1.78 ain boty R090 110 2.29 2.79 1 2 3 « PLASTIC TO-220AB Technical Bulletin © Schottky barrier rectifier © Guard ring for reverse Microsemi Catalog Repetitive Peak Transient Peak protection Number Reverse Voltage Reverse Voltage Low power loss, high FST1080 gov ov efficiency ; FST1090 90v 90V ¢ High surge capacity FST10100 100V 100V « YRRM 80 to 100 Volts
Electrical Characteristics
Average Forward Current per pkg. |F(AV) 10 Amps re = 1509C, Square wove, Resc = 2.8°C/W Average Forward Current per leg F(AV) 5 Amps C = 150°C, Square wave, S@JC = 5.6°C/W Maximum Surge Current per leg 'FSM 200 Amps 8.3ms, half sine,Ty = 175°C Max. Peak Forward Voltage per leg VEM .60 Volts VFM = 5A,TJ = 175°C Max. Peak Forward Voltage per leg VEM .85 Volts |FM = _5A,T = 25°C * Max. Peak Reverse Current per leg jRM 10 mA VRRM, Td = 125°C Max. Peak Reverse Current per leg RM 250 pA VRRM, Ty = 25°C Typical Junction Capacitance Cy 280 pF VR = 5.0V, TU = 25°C *Pulse test: Pulse width 300 psec Duty cycle 2% Thermal and Mechanical Characteristics Storage temp range Tst¢ —55°C to 175°C Operating junction temp range Ty -55°C to 175°C Max thermal resistance per leg Rec 5.6°C/W Max thermal resistance per pkg. ReJC 2.8°C/W Typical thermal resistance per leg Rec 4.7°C/W Mounting torque 15 inch pounds maximum (6-32 screw) Weight .08 ounces (2.3 grams) typical . COLORADO a 800 Hoyt Street 1-27-00 Rev. IR Broomfield, CO. 80020 jcrosemi 2% FAX: (303) 466-3775 www.microsemi.com
Typical Forward Characteristics — Per Leg Typical Junction Capacitance — Per Leg 100 1000 pe a SS 80 600 a a A A, a A a a A 400 CS A [Eee Se o LLEL Ay © seof HTH EERE LE LT INT) = 60 a A A OD 20 7 7 8 a | ( ee) / iM ded CA a ro EEL TAL rope | tt Sof a | A’ A A | a} 0 a ||| eof ttt trary yy pt 10 as oa 05 1.0 5.0 10 50 100 ao - tT TV VT Tt rt Ty Reverse Voltage - Volts “LE feof fA TT ETT TT IE: d Figure 4
8 Forward Current Derating — Per Leg
140 [ || / § 175}. eo Ty) i oe a a a) A rw £ a & 170 RON §& shoe eee 5 I RA Se a e165 Nae 8, -l 7A TT ttt tty ft 8 ZEANN Lt} tt 5° 2 160 2° [AHA TTT TTT TTT aT T TTY NCL AAMT TT TTT ETT) oe NY § 2 eyo | tL UT ENT LI < / 2 150 IN z 5 yas] sorry veoh] [ [bel] || A 3 ie) 7 9 11 1.3 1.5 0 1 2 3 4 5 6 7 8 9 10 Instantaneous Forward Voltage — Volts Average Forward Current — Amperes Figure 2 Figure 5 Typical Reverse Characteristics — Per Leg Maximum Forward Power Dissipation - Per Leg GOO 2 7
40 BL] 1 TELELELLLe |
BA === == === Bee a a | 3 3 14 g ——_—S==S==S==S===SSSSSSay = [ . 0 SSS S55 5 5— 656545655555 é 1 | = oo, eC re 2 0 | 0 10 20 30 40 50 60 70 80 90 100 0 1 2 3 4 5 6 7 8 9 10 Reverse Voltage — Volts Average Forward Current — Amperes 1-27-00 Rev. IR