HS12510 MICROSEMI | Alldatasheet

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Technical content

J | Dim. Inches Millimeter Std. Polarity — - —— - Base is cathode Minimum Maximum Minimum Maximum Notes TT Base is anode Bo .725 7715 18.42 19.69 C605 625 15.37 15.88 D (1,182 1192 30.02 30.28 kK Fog E745 755 18.92 19.18 Sq. H Fo 452 160 3.86 4.06 Dio. f= E mal | G 1/420 UNC-28 t H 545 555 (13.84 14.10 Jo 156 160 3.96 4.06 K 495 505 12.57 12.83 Dia. { L120 130 3.05 3.30 a L HALF—PAK Microsemi Industry Working Peak Repetitive Peak © Schottky Barrier Rectifier Catalog Number Part Number Reverse Voltage Reverse Voltage © Guard Ring Protection © Low Forward Voltage HS12510* 10V 10V . HS12515* 125NQ015 15V 15V © 125°C Junction Temperature e YRRM 10-15 Volts * Add suffix R for Reverse Polarity © Reverse Energy Tested

Electrical Characteristics

Average forward current 'F(AV) 120 Amps Tc = 93°C, square wave, Reyc = 0.4°C/W Maximum surge current 'FSM_ 2000 Amps 8.3ms, half sine, TU = 125°C Maximum repetitive reverse current 'R(OV) 2 Amps f = 1 KHZ, 1 us square wave, J = 25°C Max peak forward voltage VFM ” 0.45 Volts IFM = 120A: TJ = 25°C* Max peak reverse current 'RM 1 Amp VRRM, Ty = 125°C* Max peak reverse current "RM 8mA VRRM, Tu = 25°C Typical junction capacitance cy 9500pF VR = 5.0V, TC = 25°C, f = 1MHz *Pulse test: Pulse width 300 usec, Duty cycle 2% Thermal and Mechanical Characteristics Storage temp range TsTG -55°C to 175°C Operating junction temp range TJ —55°C to 125°C Max thermal resistance Reuc 0.4°C/W junction to case Typical thermal resistance (greased) Recs 0.12°C/W case to sink Mounting Base Torque 15-25 inch pounds Terminal Torque 20-40 inch pounds Weight 1.1 ounces (32 grams) typical . COLORADO a 800 Hoyt Street 11-14-01 Rev. 2 Broomfield, CO. 80020 jcrosemi 3) FAX: (503) 466-3775 www.microsemi.com

Figure 1 . Figure 3 Typical Forward Characteristics Typical Junction Capacitance 100000 pp 1000 pq yy SO — eer ee a sl soo Pn Fe a a sooooL— A it) TFrrrryrerere eee) Cee 400 rrTtTli”ArLeereeey ‘p00 rr / + voor TENE TTT LITT TTT ge TINT TTT PITTA LTE 5 e000 Se 200 8 a a ae ae s Ce 5S ooo LTT TTT PTT 1 ° 3 a a ee ee soe tT yi Tr rrr 3 1000 a A 8 60 rr 102 5 1 2 5 10 20 50 100 LT TEE LE EEE Reverse Voltage - Volts alt UT Ty Ty yy ty Figure 4 LE TT TT TT | ature bet PTT TT TTT TT ET TT ge 2 2 5 | $130 E Bebe! | | | & 3 120 cee i 1 10 = 2 eeSeEEEEEEEE SES F ol see CN & CTT 8 110 _ = pS PSHE EEEEEEEEE SSSR eo LHT TTT TTT TT ett 2 100 SS a PMS Bool OEE TTT) BEET PT PT NN ESCHOCETEPETET 8 Cc PHT TTT ITT TTT) og” 8 4 £ ao fo LL TL bl boll wel [od § 0 15 30 45 60 75 90 105 120 135 150 2 10 Average Forward Current - Amperes 0 2 4 6 8 1.0 1.2 1.4 Instantaneous Forward Voltage — Volts Figure 2 Figure 5 Typical Reverse Characteristics Maximum Forward Power Dissipation 9000 es 2 7 a 2 § 1000 1% rt tt LE de be [ed E —— 5 50 wy LA 7 = — rr ena 0 ee @ 40 30°] 7 === = == == ee 208 Soo Sth eer Ee 5 30 HA a ee a E GrA- BO eS 3 Zea

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SF 0 2 4 6 8 10 12 14 16 18 20 0 15 30 45 60 75 90 105 120 135 150 Reverse Voltage — Volts Average Forward Current - Amperes 11-14-01 Rev. 2