MBR6050PT THRU MBR60100PT 60.0 AMPS. Schottky Barrier Rectifiers Voltage Range 50 to 100 Volts Current 60.0 Amperes TO-3P/TO-247AD Features aPlastic material used carries Underwriters Laboratory Classifications 94V-0 aMetal silicon rectifier, majority carrier conduction aLow power loss, high efficiency aHigh current capability, low forward voltage drop aHigh surge capability aFor use in low voltage, high frequency inverters, free wheeling, and polarity protection applications aGuardring for overvoltage protection aHigh temperature soldering guaranteed: 260oC/10 seconds,0.17”(4.3mm)from case Mechanical Data aaaaaaCases: JEDEC TO-3P/TO-247AD molded plastic body Terminals: Leads solderable per MIL-STD-750, Method 2026 Polarity: As marked Mounting position: Any Mounting torque: 10 in. - lbs. max Weight: 0.2 ounce, 5.6 grams Dimensions in inches and (millimeters) Maximum Ratings and Electrical Characteristics Rating at 25+ambient temperature unless otherwise specified. Single phase, half wave, 60 Hz, resistive or inductive load. For capacitive load, derate current by 20% Type Number Symbol MBR6050PT MBR6060PT MBR60100PT Units Maximum Recurrent Peak Reverse Voltage 50 60 100 V VRRM Maximum RMS Voltage 35 42 70 V VRMS Maximum DC Blocking Voltage 50 60 100 V VDC Maximum Average Forward Rectified Current at Tc=125OC Peak Repetitive Forward Current (Rated VR, Square Wave, 20KHz) at Tc=120oC Peak Forward Surge Current, 8.3 ms Single Half Sine-wave Superimposed on Rated Load (JEDEC method ) Peak Repetitive Reverse Surge Current (Note 1) Maximum Instantaneous Forward Voltage at (Note 2) IF=30A, Tc=25OC IF=30A, Tc=125OC Maximum Instantaneous Reverse Current @Tc=25+ Tc=125+ at Rated DC Blocking Voltage Per Leg @ (Note 1) Voltage Rate of Change at (Rated VR) Typical Thermal Resistance Per Leg (Note 3) Operating Junction Temperature Range Storage Temperature Range I(AV) IFRM IFSM IRRM VF IR dV/dt RJC TJ TSTG 60 60.0 A A 500 A 1.0 A 0.72 0.62 V mA mA V/uS +/W + + 1.0 100.0 1,000 1.2 -65 to +150 -65 to +175 Notes: 1. 2.0us Pulse Width, f=1.0 KHz 2. Pulse Test: 300us Pulse Width, 1% Duty Cycle
3. Thermal Resistance from Junction to Case Per Leg
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RATINGSANDCHARACTERISTICCURVES(MBR6050PTTHRUMBR60100PT)FIG.1-FORWARDCURRENTDERATINGCURVE75600RESISTIVEORINDUCTIVELOAD60FIG.2-MAXIMUMNON-REPETITIVEFORWARDSURGECURRENTPERLEGPEAKFORWARDSURGECURRENT.(A)Tj=Tjmax.8.3msSingleHalfSineWaveJEDECMethodAVERAGEFORWARDCURRENT.(A)5004003004530200100150050CASETEMPERATURE.(C)o1001500110NUMBEROFCYCLESAT60Hz100FIG.3-TYPICALINSTANTANEOUSFORWARDCHARACTERISTICSPERLEG50050FIG.4-TYPICALREVERSECHARACTERISTICSPERLEGINSTANTANEOUSFORWARDCURRENT.(A)INSTANTANEOUSREVERSECURRENT.(mA)10010Tj=1500CTj=1250C110Tj=250CTj=750C0.11PulseWidth=300s1%DutyCycle0.01Tj=250C0.100.10.20.30.40.50.60.70.80.91.01.11.20.001020406080100120140FORWARDVOLTAGE.(V)PERCENTOFRATEDPEAKREVERSEVOLTAGE.(%)FIG.5-TYPICALJUNCTIONCAPACITANCEPERLEG5,000100FIG.6-TYPICALTRANSIENTTHERMALIMPEDANCEPERLEGJUNCTIONCAPACITANCE.(pF)Tj=250Cf=1.0MHzVsig=50mVp-pTRANSIENTTHERMALIMPEDANCE.(OC/W)10010.01,00011000.1110REVERSEVOLTAGE.(V)0.10.010.11T,PULSEDURATION.(sec)10100-161-
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