Order this document by MUR120/D SEMICONDUCTOR TECHNICAL DATA . . . designed for use in switching power supplies, inverters and as free wheeling diodes, these state-of-the-art devices have the following features: * Ultrafast 25, 50 and 75 Nanosecond Recovery Times * 175C Operating Junction Temperature * Low Forward Voltage * Low Leakage Current * High Temperature Glass Passivated Junction * Reverse Voltage to 600 Volts Mechanical Characteristics: * Case: Epoxy, Molded * Weight: 0.4 gram (approximately) * Finish: All External Surfaces Corrosion Resistant and Terminal Leads are Readily Solderable * Lead and Mounting Surface Temperature for Soldering Purposes: 220C Max. for 10 Seconds, 1/16 from case * Shipped in plastic bags, 1000 per bag * Available Tape and Reeled, 5000 per reel, by adding a "RL'' suffix to the part number * Polarity: Cathode Indicated by Polarity Band * Marking: U120, U140, U160 MUR120, MUR140 and MUR160 are Motorola Preferred Devices ULTRAFAST RECTIFIERS 1.0 AMPERE 200-400-600 VOLTS CASE 59-04 PLASTIC MAXIMUM RATINGS MUR R i Rating S b l Symbol 120 140 160 U i Unit Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage VRRM VRWM VR 200 400 600 Volts Average Rectified Forward Current (Square Wave Mounting Method #3 Per Note 1) IF(AV) 1.0 @ TA = 130C Nonrepetitive Peak Surge Current (Surge applied at rated load conditions, halfwave, single phase, 60 Hz) IFSM 35 Amps TJ, Tstg *65 to +175 C RJA See Note 1 C/W Operating Junction Temperature and Storage Temperature 1.0 @ TA = 120C Amps THERMAL CHARACTERISTICS Maximum Thermal Resistance, Junction to Ambient ELECTRICAL CHARACTERISTICS Maximum Instantaneous Forward Voltage (1) (iF = 1.0 Amp, TJ = 150C) (iF = 1.0 Amp, TJ = 25C) vF Maximum Instantaneous Reverse Current (1) (Rated dc Voltage, TJ = 150C) (Rated dc Voltage, TJ = 25C) iR Maximum Reverse Recovery Time (IF = 1.0 Amp, di/dt = 50 Amp/s) (IF = 0.5 Amp, iR = 1.0 Amp, IREC = 0.25 A) trr Maximum Forward Recovery Time (IF = 1.0 A, di/dt = 100 A/s, IREC to 1.0 V) tfr Volts 0.710 0.875 1.05 1.25 50 2.0 150 5.0 35 25 75 50 25 50 A ns ns (1) Pulse Test: Pulse Width = 300 s, Duty Cycle 2.0%. SWITCHMODE is a trademark of Motorola, Inc. Preferred devices are Motorola recommended choices for future use and best overall value. Rev 3 Device Rectifier Motorola, Inc. 1996 Data 1 MUR120 100 10 TJ = 175C IR, REVERSE CURRENT (m A) 7.0 5.0 3.0 100C 25C 1.0 100C 0.1 0.01 25C 1.0 0.001 0.7 0 20 40 0.5 60 100 80 120 140 160 180 200 VR, REVERSE VOLTAGE (VOLTS) Figure 2. Typical Reverse Current* 0.3 * The curves shown are typical for the highest voltage device in the voltage grouping. Typical reverse current for lower voltage selections can be estimated from these same curves if VR is sufficiently below rated VR. 0.2 0.1 0.07 0.05 0.03 0.02 0.01 0.3 0.4 0.6 0.5 0.7 0.8 0.9 1.0 1.1 1.2 1.3 IF(AV) , AVERAGE FORWARD CURRENT (AMPS) i , INSTANTANEOUS FORWARD CURRENT (AMPS) F TJ = 175C 2.0 10 5.0 4.0 RATED VR RqJA = 50C/W 3.0 dc 2.0 SQUARE WAVE 1.0 0 0 vF, INSTANTANEOUS VOLTAGE (VOLTS) 50 100 150 200 250 TA, AMBIENT TEMPERATURE (C) Figure 1. Typical Forward Voltage 2 50 5.0 TJ = 175C 4.0 I (CAPACITIVE LOAD) PK I AV + 20 TJ = 25C 10 30 5.0 3.0 2.0 dc C, CAPACITANCE (pF) PF(AV) , AVERAGE POWER DISSIPATION (WATTS) Figure 3. Current Derating (Mounting Method #3 Per Note 1) 20 10 1.0 7.0 SQUARE WAVE 5.0 0 0 0.5 1.0 1.5 2.0 2.5 0 10 20 30 40 IF(AV), AVERAGE FORWARD CURRENT (AMPS) VR, REVERSE VOLTAGE (VOLTS) Figure 4. Power Dissipation Figure 5. Typical Capacitance 50 Rectifier Device Data MUR140, MUR160 400 10 100 IR, REVERSE CURRENT (m A) 7.0 5.0 3.0 100C 25C 10 4.0 100C 1.0 0.4 0.1 25C 0.04 1.0 0.01 0.004 0.7 0 100 200 0.5 300 400 500 600 700 VR, REVERSE VOLTAGE (VOLTS) Figure 7. Typical Reverse Current* 0.3 * The curves shown are typical for the highest voltage device in the voltage grouping. Typical reverse current for lower voltage selections can be estimated from these same curves if VR is sufficiently below rated VR. 0.2 0.1 0.07 0.05 0.03 0.02 0.01 0.3 0.5 0.9 0.7 1.1 1.3 1.5 1.7 2.1 1.9 2.3 IF(AV) , AVERAGE FORWARD CURRENT (AMPS) i , INSTANTANEOUS FORWARD CURRENT (AMPS) F TJ = 175C 2.0 TJ = 175C 40 5.0 4.0 RATED VR RqJA = 50C/W 3.0 2.0 dc 1.0 SQUARE WAVE 0 0 vF, INSTANTANEOUS VOLTAGE (VOLTS) 50 100 150 200 250 TA, AMBIENT TEMPERATURE (C) Figure 6. Typical Forward Voltage 20 5.0 TJ = 175C 4.0 TJ = 25C 5.0 3.0 (CAPACITIVE LOAD) I I 2.0 PK AV C, CAPACITANCE (pF) PF(AV) , AVERAGE POWER DISSIPATION (WATTS) Figure 8. Current Derating (Mounting Method #3 Per Note 1) 10 + 20 dc SQUARE WAVE 1.0 10 7.0 5.0 3.0 2.0 0 0 0.5 1.0 1.5 2.0 2.5 0 10 20 30 40 IF(AV), AVERAGE FORWARD CURRENT (AMPS) VR, REVERSE VOLTAGE (VOLTS) Figure 9. Power Dissipation Figure 10. Typical Capacitance Rectifier Device Data 50 3 NOTE 1 -- AMBIENT MOUNTING DATA Data shown for thermal resistance junction to ambient (RJA) for the mountings shown is to be used as typical guideline values for preliminary engineering or in case the tie point temperature cannot be measured. TYPICAL VALUES FOR RJA IN STILL AIR Mounting Method 1 2 RJA Lead Length, L 1/4 1/2 1/8 52 65 72 67 80 87 Units C/W C/W 50 C/W 3 MOUNTING METHOD 1 EEEEEEEEEEE EEEEEEEEEEE L L MOUNTING METHOD 2 EEEEEEEEEEEE EEEEEEEEEEEE L L Vector Pin Mounting EE EE EE EE EE EE EE MOUNTING METHOD 3 L = 3/8 Board Ground Plane P.C. Board with 1-1/2 X 1-1/2 Copper Surface 4 Rectifier Device Data PACKAGE DIMENSIONS NOTES: 1. ALL RULES AND NOTES ASSOCIATED WITH JEDEC DO-41 OUTLINE SHALL APPLY. 2. POLARITY DENOTED BY CATHODE BAND. 3. LEAD DIAMETER NOT CONTROLLED WITHIN F DIMENSION. B K D DIM A B D K A MILLIMETERS MIN MAX 5.97 6.60 2.79 3.05 0.76 0.86 27.94 --- INCHES MIN MAX 0.235 0.260 0.110 0.120 0.030 0.034 1.100 --- K CASE 59-04 ISSUE M Rectifier Device Data 5 Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. "Typical" parameters which may be provided in Motorola data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including "Typicals" must be validated for each customer application by customer's technical experts. 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