40SL MICROSEMI | Alldatasheet

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Also “4 if j Avapase Microsemi Corp. SUara oe” f The dose experts Tl SCOTTSDALE, AZ 7 v / For more information cll: / (602) 941-6300

4 AMP

DESCRIPTION/FEATURES = MAJORRATINGS AND AXIAL-LEAD CHARACTERISTICS VERY + ECONOMICAL 4 AMP Ip MOLDED Cra | FAST RECO’ DEVICE OFFERS CAPABILITY OF STUD- 7 RECTIFIER DIODES MOUNTED RECTIFIERS / +150 AMPS SURGE PROVIDES HIGH atMaxt [62 | ec | IN-RUSH CURRENT CAPABILITY bow atSoHe | 49 a _| * WIDE VOLTAGE RANGE AVAILABLE: lsu at 6OHZ

50 FO 1000 VOLTS Viet FeatsoHe [103 [es _|

FrateoHe | s4 | as | VOLTAGE RATINGS rs ee @ —— pe cam Va= (V) vega OL oes = = a 40stt 100 100 — et aoste 200 200 4oste 400 400 4osts 500 500 gases sets 0 Fed aoe aoste £00 800 40sL10 1000 1000 ELECTRICAL SPECIFICATIONS OO ost [unis [_~Conations | Tw Max. peak one-cycle non Mal oyein S0Hz eine wave Fojonina f maers Ad Sorrectngus poe, letngany wet Pt Max. Ft for fusing 403 1= 10 MS_ with rated Vaew applied following

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Sevice sing TEBS pa eit Te Gevice Wsing (note) MECHANICAL |W Max peakforwarsvonage [10 | V__[ raw 4A 6Apoaw) T= awO | CHARACTERISTICS Inv Max average reverse T= BFC, Van = rated Vea cc CASE: Molded plastic use Flame — wa [125°C TERMINALS: Axial leads, sol- iv Max. reverse recovery time | [om [RemenSiaucon derable per MIL-STD-202, “ip reverse recover time fava=esane | Method 208, Trurinecr Max, peak reverse = 25°C, eu = [ew iene’ TO [eee | POLARITY: Color hand denotes cathode. THERMAL MECHANICAL SPECIFICATIONS: — . T,__ Max operating junction temperature range MOUNTING POSITION: Any. Length oeads ( 2 (8732mm a DL Cergivorienes £10707 05mm [147] dogo 108 Length ofleads (2)(3/4") 18mm [200 | [_wi_Approximateweiont 50088) [ae =i Noted; Be Spann, auto side cotes measured 85 mm (0.75 in) rom Body 783

. CT ie EE RE : all A ea tt ttt SSSA : A ee TH 5 ad Pt Ty | PL eee ao eeemn| TL | TT <9 1 4 1 3 4 ‘Average Forward Current Over Full Cycle (Amperes) ° ‘Average Forward Current Over Full Cycle (Amperes) FIGURE 1 FIGURE 2 MAXIMUM LOW-LEVEL AVERAGE AVERAGE FORWARD CURRENT FORWARD POWER LOSS VS. VS. LEAD TEMPERATURE AVERAGE FORWARD CURRENT g +o 8 D1 ve 2 6 “se TNL te e OL ee il Po geese Bae Para Amer sien? osc 5 GOS SSR re te

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Bf onmetonrens YA Te es Sea eae 24 vn itt Ager tl & rer ie eH, Average Forward Current Over avoycle (amperes) Mare ‘Wave Pulse Duration (Seconds) FIGURE 3 FIGURE 4 MAXIMUM HIGH-LEVEL FORWARD MAXIMUM TRANSIENT THERMAL POWER LOSS VS. AVERAGE IMPEDANCE JUNCTION TO LEAD FORWARD CURRENT VS. PULSE DURATION

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. SSS SS SSS Sw | TT g 4 fo = a She (Seess SHSM : a £0 [ee TSS 2 ia Fs a 2a) Instantaneous Forward Voltage (Volts) ‘Number of Equal Half Cycle Current Pulses (N) FIGURE 5 FIGURE 6 7-64 MAXIMUM FORWARD VOLTAGE MAXIMUM NON-REPETITIVE VS. FORWARD CURRENT SURGE CURRENT VS. NUMBER OF CURRENT PULSES