UFT140 MICROSEMI | Alldatasheet
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Technical content
rp s——| N 4 Places bt Dim. Inches Millimeters Lh Min. Max. Min. Max. Notes hea 1 2 A 1.995 2.005 50.67 50.95 Tr 1? Ss C 0.495 0.505 12.57 12.83 LT Lt lal 8 | aa D 0182 ©0192 4.62 488 Dio. oe E 0.990 1.010 25.15 25.65 L -(8 L| Lx F 2.390 2.410 60.71 61.21 R 5 i 2 3 G 1.500 1.525 38.10 38.70 A=Common Anode H 0.120 0.130 3.05 3.30 F Joo 0.400 --- 10.16 Pl poo K 0.240 0.260 6.10 6.60to Lead C|| Hy 4 sh L 0.490 0.510 12.45 12.95 = M 0.330 0.350 8.38 6.90 M D=Doubler P 0.035 0.045 0.89 114 Notes: Q 0.445 0.455 11.30 11.56 Boseplate: Nickel plated copper; R_0.890__0.910_22.61 23.11 electrically isolated _ Pins: Nickel plated copper TO-249 Microsemi Working Peak Repetitive Peak Catalog Number Reverse Voltage Reverse Voltage UFT14010* 100V 100V Ultra Fast Recovery UFT14015* 150V 150V ° ; UFT14020" 200V 200V © 175°C Junction Temperature UFT14130* 300V 300V ¢ YRRM 100 to 800 Volts UFT14140* 400V 400V | a UFT14250*UFT14150* 500V 500V © Electrically isolated base UFT14260* 600V 600V . UFTI4270# s00V sOOv © 2X 70 Amp current rating UFT14280* B00V 800V *Add Suffix A for Common Anode, D for Doubler
Electrical Characteristics
Average forward current per pkg IF(AV) 140A 140A 140A Square Wave Average forward current per leg lE(AV) _70A 70A 70A Square Wave Case Temperature Tc 115° 97°C 92°C R@JC = 1.0°C/W Maximum surge current per leg lFsM 1000A 800A 700A 8.3ms, half sine, W = 175°C Max peak forward voltage per leg VeM = 75V1.25V1.35V IFM = 70A: TJ = 25°C Max reverse recovery time per leg trr 50ns_—60ns_—S75ns 1/2A, 14, 1/4A, TS = 25°C Max peak reverse current per leg IRM =) ——— 3.0mA ——— VRRM,TJ = 125°C* Max peak reverse current per leg IRM == ——— 25y)A ——— VRRM,TJ =_ 25°C Typical Junction capacitance CJ 300pF_-—«150pF 15 0pF VR = 10V,TJ = 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 ty -55°C to 175°C Max thermal resistance per leg Reuc 1.0°C/W Junction to case Max thermal resistance per pkg Resc 0.5°C/W Junction to case yypical thermal resistance (greased) Recs 0.1°C/W Case to sink founting Torque 15-20 inch pounds Weight 2.5 ounces fa grams) typical . COLORADO 800 Hoyt Street 8-30-00 Rev. 2 Broomfield, CO. 80020 jcrosemi 2" FAX: (303) 466-3775 www.microsemi.com
Typical Forward Characteristics - Per Leg Typical Junction Capacitance — Per Leg 1000 (-q{ J 90000 ee = SSS eo SSE 800 eee 4000 FT t wo FEE sooo ST Ae cco CETTE TTT HI A — SS SS Se 4 p-4 600 a A 200 7 3 re ee / 8 goo Et ST) ag A | 5 a a A & 200 ree See || 80 a A | 2 A § UM a a 100 en 0.4 0.5 1.0 5.0 10 50 100 ° EEC CCC “meee nee |/ Figure 4 8 00 h75PC b5q Forward Current Derating — Per Leg 5 © ! tos LTT 110 ee z 160 NN S30 eee 5 BRNNeEEe 2 80 eee 2 145 SS
369 DOD Deer NN
o L-EL_TyT yt tt tt tt ty 8 130 NS —— 3 49 LETT eT TPT Pt YT 8 BER NNee 2 4 S IS Qe LEVITT PTT TTT yyy | ans NI 2 fs N go ETAT TI = 100 520 co tt ttt | | ty 2,LU Sop LL Loot [add broisod | el 2 4 6 B 10 12 14 16 0 20 40 60 80 100 Instantaneous Forward Voltage — Volts Average Forward Current — Amperes Figure 2 Figure 5 Typical Reverse Characteristics — Per Leg Maximum Forward Power Dissipation —- Per Leg es 2 105 £0 GE eer TTT LLL & foe SSS SS SSS SS 51 LL a a g(t] LT IT be LPT |
2 SS SS SS SS SS g 60 eA 7
) pSeeeSS= CT eee oe 01 [125°C fee | 3 45 VE 7 2 —>——= === ee eee © 7 See es | | Arr 3 [SS SS = SSS SS — 15 4 Ze © oo) BCE 2 Ali iit 0 40 80 120 160 200 0 20 40 60 80 100 Reverse Voltage — Volts Average Forward Current — Amperes 8-30-00 Rev. 2
Typical Forward Characteristics - Per Leg Typical Junction Capacitance - Per Leg 1000 (-q{ J 9000 go FFP PP PPP 600 FE a a seoF- tT rrr ry rr rer goo ee a a A OO a
400 LT TTT TTT yyy tt ‘& 200 ae
I Ae vg I TTT PELL LAA LLL 5 380 See Ee EP-4 60 a A 200 7 8 a 8 § yf Ee eee /\\/\\ ° LT TTT Tri
100 KE 4 7 A I HH S&S of LITT TI TTT
eof} IT tyr tT tT pe 10 a a 0.1 0.5 1.0 5.0 10 50 100 ° EEC ECCCCCC “eee tees | Figure 4 800 175° | 25ec Forward Current Derating — Per Leg e AEE : - > : i <EReeeee 5 160} a 3 AN a S INN £80 rr 2 145 SS
869 FOU eee 5 BEANNEEE
es a 8 | 8 130 SS we s,,--LUET TTT tt tt tT & rE I OS,”S 5 =z ‘
2 CT UEET TT TTT TTT ans SASS
go UIT TT TT |e WS 8 = B20 ee} | UIT | N 2 io Sool 1 1 | todebd hoorhsol bes 0.2 6 10 14 18 22 26 0 20 40 60 80 100 Instantaneous Forward Voltage — Volts Average Forward Current — Amperes Figure 2 Figure 5 Typical Reverse Characteristics — Per Leg Maximum Forward Power Dissipation —- Per Leg <4 sec ; 90 f € ee c lage 180° 4 1 _——— s 75 4 a a & 60 LL tL ee PAY YE 2 — es oO A e .00| PC Bp 45 iy ra
3 SSS ES SSS a 30 b>
= =========— Ae Zee 2 ——— = | A ooo) 22C SE = 0 ALT itt 0 100 200 300 400 500 0 20 40 60 80 100 Reverse Voltage — Volts Average Forward Current - Amperes 8-30-00 Rev. 2
Typical Forward Characteristics - Per Leg Typical Junction Capacitance — Per Leg 1000 (-q{ J 9000 go FFP PP PPP 600 EE a a seoF- tT rrr ry rr rer goo PSS Pe a A GG a a
400 Pitty ttt yay ee 5B 900 SU ATOIIMM iM UOSttOa NRT
LETT ALT): SS SS ae 200 7/7 80 oo § »~fK Ee ee /| / ° LT TTT Tri too + 4+} 4A AA +} ++ § of LO Te 80 a A A A 2 A § Fe a A 10 en a A 0.1 0.5 1.0 5.0 10 50 100 ° EECCA CCC “eee tees / Figure 4 3 °0 sel /| bc Forward Current Derating — Per Leg a § 180 E J ' 40 3 160 =I a 3 NS =p SOOO eee 5 INQ 280 ee 2 140 an
8609 FOO Pee 5 BERNE
o LETT it tT Tt tt tt ty 3 120 SS 8,,-L ETT TT tt tt tt 8 BERENS 5* @ NOON ETT TTT TTT TT TY | a" TINT Po LUT TTT TTT TT) (ee N § 20 coop + tT | TN 2 0 Sg LLL delebld baohecs! | dl 0.2 6 10 14 18 22 26 0 20 40 60 80 100 Instantaneous Forward Voltage — Volts Average Forward Current - Amperes Figure 2 Figure 5 Typical Reverse Characteristics — Per Leg Maximum Forward Power Dissipation — Per Leg ee —— & 140 a) a a ™ ELLE & fa a ee £ _ == SS 3 i © 00 Ro eer § | | AA i tt
3 CS £— 20 FF
© 000, SSR at 2 9 AT i i it iil 0 200 400 600 800 1000 0 20 40 60 80 100 Reverse Voltage - Volts Average Forward Current — Amperes 8-30-00 Rev. 2