Order this document by MSRB860–1/D SEMICONDUCTOR TECHNICAL DATA D2PAK–SL Straight Lead SOFT RECOVERY POWER RECTIFIER 8.0 AMPERES 600 VOLTS Designed for use as free wheeling diodes in variable speed motor control applications and other average frequency switching power supplies. These state–of–the–art devices have the following features: • Soft Recovery with Guaranteed Low Reverse Recovery Charge (QRR) and Peak Reverse Recovery Current (IRRM) • 150°C Operating Junction Temperature • Epoxy meets UL94, VO @ 1/8″ • Low Forward Voltage • Low Leakage Current • High Temperature Glass Passivated Junction Mechanical Characteristics: • Case: Molded Epoxy • Weight: 1.9 Grams (approximately) • Finish: All External Surfaces Corrosion Resistant and Terminal Leads Readily Solderable • Lead Temperature for Soldering Purposes: 260°C Max. for 10 Seconds • Shipped in 50 Units per Plastic Tube • Marking: MSRB860 CASE 418C–01, Style 2 D2PAK–SL MAXIMUM RATINGS Rating Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage Average Rectified Forward Current (At Rated VR, TC = 125°C) Peak Repetitive Forward Current (At Rated VR, Square Wave, 20 kHz, TC = 125°C) Non–Repetitive Peak Surge Current (Surge applied at rated load conditions, halfwave, single phase, 60 Hz) Storage / Operating Case Temperature Operating Junction Temperature Symbol Value Unit VRRM VRWM VR IO 600 V 8.0 A IFRM IFSM 16 A 100 A Tstg, TC TJ – 65 to 150 °C – 65 to 150 °C RqJC RqJA 1.6 72.8 °C/W THERMAL CHARACTERISTICS Thermal Resistance — Junction–to–Case Thermal Resistance — Junction–to–Ambient ELECTRICAL CHARACTERISTICS Maximum Instantaneous Forward Voltage g ((1)) (I ( F = 8.0 A)) VF TJ = 25°C 1.7 1.4 TJ = 150°C 1.3 1.1 V IR TJ = 25°C 10 2.0 TJ = 150°C 1000 80 mA trr TJ = 25°C 120 95 TJ = 125°C 190 125 ns s = tb/ta 2.5 3.0 IRRM QRR 5.8 8.3 A 350 700 nC Typical Maximum Instantaneous Reverse Current ((VR = 600 V)) Typical Maximum Reverse Recoveryy Time (2) ( ) (V ( R = 400 V, IF = 8.0 A, di/dt = 200 A/ms)) Typical Typical Recovery Softness Factor (VR = 400 V, IF = 8.0 A, di/dt = 200 A/ms) Typical Peak Reverse Recovery Current (VR = 400 V, IF = 8.0 A, di/dt = 200 A/ms) Typical Reverse Recovery Charge (VR = 400 V, IF = 8.0 A, di/dt = 200 A/ms) This document contains information on a product under development. Motorola reserves the right to change or discontinue this product without notice. (1) Pulse Test: Pulse Width ≤ 380 µs, Duty Cycle ≤ 2% (2) TRR measured projecting from 25% of IRRM to zero current Switchmode is a trademark of Motorola, Inc. Rectifier Motorola Motorola, Inc. 1997 Device Data 1 MSRB860-1 TYPICAL ELECTRICAL CHARACTERISTICS 100 100 IR , REVERSE CURRENT (m A) TJ = 150°C 1.0 25°C 25°C 300 400 500 600 Figure 2. Typical Reverse Current 0.7 0.9 1.1 1.3 1.5 1.7 1.9 dc 10 SQUARE WAVE 8.0 6.0 4.0 RATED VR APPLIED 2.0 0 0 40 120 80 160 Figure 3. Current Derating, Case PF(AV) , AVERAGE POWER DISSIPATION (WATTS) Figure 1. Typical Forward Voltage 2.0 dc 1.5 SQUARE WAVE 1.0 RATED VR APPLIED 0 12 TC, CASE TEMPERATURE (°C) 2.5 0.5 14 VF, INSTANTANEOUS FORWARD VOLTAGE (VOLTS) 3.0 0 200 VR, REVERSE VOLTAGE (VOLTS) 10 0.5 IF(AV) , AVERAGE FORWARD CURRENT (AMPS) 100°C 100 1.0 40 120 80 TA, AMBIENT TEMPERATURE (°C) Figure 4. Current Derating, Ambient 2 125°C 10 0.1 100°C IF(AV) , AVERAGE FORWARD CURRENT (AMPS) IF, INSTANTANEOUS FORWARD CURRENT (AMPS) TJ = 150°C 160 16 14 12 10 SQUARE WAVE dc 8.0 6.0 4.0 TJ = 150°C 2.0 0 0 4.0 8.0 2.0 6.0 10 12 IF(AV), AVERAGE FORWARD CURRENT (AMPS) 14 Figure 5. Power Dissipation Motorola Rectifier Device Data MSRB860-1 TYPICAL ELECTRICAL CHARACTERISTICS 250 TJ = 25°C VR = 400 V 140 120 t rr , REVERSE RECOVERY TIME (ns) t rr , REVERSE RECOVERY TIME (ns) 160 IF = 16 A 100 80 8A 60 4A 40 20 0 100 TJ = 125°C VR = 400 V 200 IF = 16 A 150 8A 100 4A 50 0 200 300 400 100 500 200 dIF/dt (A/mS) IF = 16 A 6.0 8A 4A 4.0 2.0 TJ = 25°C VR = 400 V 0 300 400 500 dIF/dt (A/mS) IRRM, PEAK REVERSE RECOVERY CURRENT (AMPS) I RRM , PEAK REVERSE RECOVERY CURRENT (AMPS) 8.0 200 500 14 12 IF = 16 A 10 8.0 4A 8A 6.0 4.0 TJ = 125°C VR = 400 V 2.0 0 100 200 300 400 500 dIF/dt (A/mS) Figure 9. Typical Peak Reverse Recovery Current Figure 8. Typical Peak Reverse Recovery Current 900 Q RR , REVERSE RECOVERY CHARGE (nC) 350 Q RR , REVERSE RECOVERY CHARGE (nC) 400 Figure 7. Typical Reverse Recovery Time Figure 6. Typical Reverse Recovery Time 100 300 dIF/dt (A/mS) 300 250 IF = 16 A 200 8A 150 4A 100 TJ = 25°C VR = 400 V 50 0 100 200 300 400 dIF/dt (A/mS) Figure 10. Typical Reverse Recovery Charge Motorola Rectifier Device Data 500 800 IF = 16 A 700 600 8A 500 400 4A 300 200 TJ = 125°C VR = 400 V 100 0 100 200 300 400 500 dIF/dt (A/mS) Figure 11. Typical Reverse Recovery Charge 3 MSRB860-1 250 IF = 16 A 80 E OFF , SWITCHING OFF LOSSES ( m J) E OFF , SWITCHING OFF LOSSES ( m J) 90 70 60 50 8A 40 30 4A 20 TJ = 25°C VR = 400 V 10 IF = 16 A 200 150 8A 100 4A 50 TJ = 125°C VR = 400 V 0 0 100 200 300 dlF/dt (A/mS) 400 500 200 100 300 dIF/dt (A/mS) 400 500 Figure 13. Typical Switching Off Losses Figure 12. Typical Switching Off Losses r(t), TRANSIENT THERMAL RESPONSE (NORMALIZED) 1.0 D = 0.5 0.1 0.1 0.05 P(pk) 0.01 t1 SINGLE PULSE t2 DUTY CYCLE, D = t1/t2 ZθJC(t) = r(t) RθJC RθJC = 1.6°C/W MAX D CURVES APPLY FOR POWER PULSE TRAIN SHOWN READ TIME AT t1 TJ(pk) – TC = P(pk) ZθJC(t) 0.01 0.01 0.1 1.0 10 100 1000 t, TIME (ms) Figure 14. Thermal Response 4 Motorola Rectifier Device Data MSRB860-1 PACKAGE DIMENSIONS C E V –B– 4 W A 1 2 3 –T– SEATING PLANE F S K J G D DIM A B C D E F G H J K S V W INCHES MIN MAX 0.340 0.380 0.380 0.405 0.160 0.190 0.020 0.035 0.045 0.055 0.039 REF 0.100 BSC 0.080 0.110 0.018 0.025 0.280 0.360 0.276 REF 0.045 0.055 0.423 0.462 MILLIMETERS MIN MAX 8.64 9.65 9.65 10.29 4.06 4.83 0.51 0.89 1.14 1.40 1.00 REF 2.54 BSC 2.03 2.79 0.46 0.64 7.11 9.14 7.00 REF 1.14 1.40 10.75 11.75 H 3 PL 0.13 (0.005) NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. M T B M STYLE 2: PIN 1. 2. 3. 4. GATE DRAIN SOURCE DRAIN CASE 418C–01 ISSUE O Motorola Rectifier Device Data 5 MSRB860-1 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. Motorola does not convey any license under its patent rights nor the rights of others. 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