MIG50J7CSB1W TOSHIBA | Alldatasheet
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Technical content
TOSHIBA Intelligent Power Module Silicon N Channel IGBT MIG50J7CSB1W (600V/50A 7in1) High Power Switching Applications Motor Control Applications /Gb7/G20Integrates inverter, brake power circuit and control circuits (IGBT drive units, and units for protection against short-circuit current, over-current, under-voltage and over-temperature) into a single package. /Gb7/G20The electrodes are isolated from the case /Gb7/G20Low thermal resistance /Gb7/G20V CE (sat) = 1.8 V (typ.) /Gb7/G20UL recognized: File No.E87989 /Gb7/G20Weight: 278 g (typ.) Equivalent Circuit 16 19 20 W V U B N P FO IN V D GND GND VS OUT FO IN V D GND GND VS OUT FO IN V D GND GND VS OUT FO IN V D GND GND VS OUT GND IN FO V D GND V S OUT GND IN FO V D GND V S OUT GND IN FO V D GND V S OUT 18 17 14 1315 12 11 10 9 8 7 6 5 4 3 2 1
Package Dimensions: TOSHIBA 2-108G1A Unit: mm 19. IN (Z) 20. GND (L)
Unit: mm 19. IN (Z) 20. GND (L)
Maximum Ratings (Tj /G3d/G3d/G3d/G3d 25°C) Stage Characteristic Condition Symbol Rating Unit Supply voltage P-N Power terminal V CC 450 V Collector-emitter voltage /Gbe V CES 600 V Collector current Tc /G3d 25°C, DC I C 50 A Forward current Tc /G3d 25°C, DC I F 50 /G20 A Collector power dissipation Tc /G3d 25°C, DC P C 340 W Inverter Junction temperature /Gbe Tj 150 °C Supply voltage P-N Power terminal V CC 450 V Collector-emitter voltage /Gbe V CES 600 V Collector current Tc /G3d 25°C, DC I C 50 A Reverse voltage /Gbe V R 600 V Forward current Tc /G3d 25°C, DC I F 50 A Collector power dissipation Tc /G3d 25°C P C 340 W Brake Junction temperature /Gbe Tj 150 °C Control supply voltage V D-GND Terminal V D 20 V Input voltage IN-GND Terminal V IN 20 V Fault output voltage FO-GND Terminal V FO 20 V Control Fault output current FO sink current I FO 14 mA Operating temperature /Gbe Tc /G2d20~ /G2b 100 °C Storage temperature range /Gbe Tstg /G2d40~ /G2b 125 °C Isolation voltage AC 1 min V ISO 2500 V Screw torque (Terminal) M4 /Gbe 2 Module Screw torque (Mounting) M5 /Gbe 3 N・m
Electrical Characteristics
- Inverter stage Characteristics Symbol Test Condition Min Typ. Max Unit Tj /G3d 25°C /Gbe /Gbe 1 Collector cut-off current I CEX V CE /G3d 600 V Tj /G3d 125°C /Gbe /Gbe 10 mA Tj /G3d 25°C 1.5 1.8 2.2 Collector-emitter saturation voltage V CE (sat) VD /G3d 15 V IC /G3d 50 A VIN /G3d 15 V /Gae 0 V Tj /G3d 125°C /Gbe 2.0 /Gbe/G20 V Forward voltage V F I F /G3d 50 A, Tj /G3d 25°C /Gbe 2.0 2.5 /G20V ton /Gbe/G201.3 2.2 tc (on) /Gbe 0.25 /Gbe/G20 trr /Gbe 0.2 /Gbe/G20 toff /Gbe 1.1 2.1 Switching time tc (off) VCC /G3d 300 V, IC /G3d 50 A VD /G3d 15 V, VIN /G3d 15 V /Gab 0 V Tj /G3d 25°C, Inductive load (Note 1) /Gbe/G200.2 /Gbe/G20 /G6ds Note 1: Switching time test circuit & timing chart
- Brake stage Characteristics Symbol Test Condition Min Typ. Max Unit Tj /G3d 25°C /Gbe /Gbe 1 Collector cut-off current I CEX V CE /G3d 600 V Tj /G3d 125°C /Gbe /Gbe 10 mA Tj /G3d 25°C /Gbe 1.8 2.2 Collector-emitter saturation voltage V CE (sat) VD /G3d 15 V IC /G3d 50 A VIN /G3d 15 V /Gae 0 V Tj /G3d 125°C /Gbe 2.0 /Gbe/G20 V Tj /G3d 25°C /Gbe /Gbe 1 Reverse current I R V R = 600 V Tj /G3d 125°C /Gbe /Gbe 10 mA Forward voltage V F I F /G3d 50 A, Tj /G3d 25°C 1.5 1.9 2.3 /G20V ton /Gbe/G201.3 1.8 tc (on) /Gbe 0.65 /Gbe/G20 trr /Gbe 0.8 /Gbe/G20 toff /Gbe 1.1 2.1 Switching time tc (off) VCC /G3d 300 V, IC /G3d 50 A VD /G3d 15 V, VIN /G3d 15 V /Gab 0 V Tj /G3d 25°C, Inductive load (Note 1) /Gbe 0.2 /Gbe/G20 /G6ds Note 1: Switching time test circuit & timing chart 3. Control stage (Tj /G3d/G3d/G3d/G3d 25°C) Characteristics Symbol Test Condition Min Typ. Max Unit High side I D( H ) /Gbe/G2013 17Control circuit current Low side I D (L) VD /G3d 15 V /Gbe 52 68 mA Input on signal voltage V IN (on) 1.4 1.6 1.8 Input off signal voltage V IN (off) VD /G3d 15 V 2.2 2.5 2.8 V Protection I FO (on) /Gbe/G2010 12 Fault output current Normal I FO (off) VD /G3d 15 V /Gbe /Gbe 0.1 mA Inverter 80 /Gbe /Gbe Over current protection trip level Brake OC V D /G3d 15 V, Tj /G3c/G3d125°C 80 /Gbe /Gbe A Inverter 80 /Gbe /Gbe Short circuit protection trip level Brake SC V D /G3d 15 V, Tj /G3c/G3d125°C 80 /Gbe /Gbe A Over cuttent cut-off time t off (OC) V D /G3d 15 V /Gbe 5 /Gbe /G6ds Trip level OT 110 118 125Over temperature protection Reset level OTr Case temperature /Gbe 98 /Gbe Trip level UV 11.0 12.0 12.5Control supply under voltage protection Reset level UVr /Gbe 12.0 12.5 13.0 V Fault output pulse width t FO V D /G3d 15 V 1 2 3 ms 4. Thermal resistance (Tc/G3d/G3d/G3d/G3d 25°C) Characteristics Symbol Test Condition Min Typ. Max Unit Inverter IGBT /Gbe /Gbe 0.360 Inverter FRD /Gbe /Gbe 0.550 Brake IGBT /Gbe /Gbe 0.360 Junction to case thermal resistance R th (j-c) Brake FRD /Gbe /Gbe 0.600 °C/W Case to fin thermal resistance R th (c-f) Compound is applied /Gbe 0.017 /Gbe °C/W
Switching Time Test Circuit Timing Chart PG TLP559 15 V 0.1 /G6dF 10 /G6dF 15 k/G57 Intelligent power module VD IN GND OUT VS GND U (V, W, B) P VCC 15 V 0.1 /G6dF 10 /G6dF 15 k/G57 VD IN GND OUT VS GND IF /G3d 16mA N Input pulse VIN Waveform IC Waveform VCE Waveform 2.5 V 1.6 V 15 V 10% 10% toff tc (off) 10% 10% ton tc (on) 90% Irr trr Irr 20% Irr 90%
- Recommended conditions for application Characteristics Symbol Test Condition Min Typ. Max Unit Supply voltage V CC P-N Power terminal /Gbe 300 400 V Control supply voltage V D V D-GND Signal terminal 13.5 15 16.5 V Carrier frequency fc PWM Control /Gbe/G20 /Gbe 20 kHz Dead time tdead Switching time test circuit (See page.6) (Note 2) 3 /Gbe /Gbe/G20 /G6ds Note 2: The table lists Dead time requirements for the module input, excluding photocoupler delays. When specifying dead time requirements for the photocoupler input, please add photocoupler delays to the dead time given above. Dead Time Timing Chart tdead 15 V VIN Waveform VIN Waveform 15 V tdead
0.01 0 10 30 60 0.1 20 40 50 Tj = 125°C VCC /G3d 300 V VD /G3d 15 V L-Load ton toff tc (on) tc (off) 100 0 1 3 4 VD /G3d 17 V Common emitter Tj = 125°C 13 V 15 V 0.01 0 10 30 60 0.1 20 40 50 Tj = 25°C VCC /G3d 300 V VD /G3d 15 V L-Load ton toff tc (on) tc (off) 0.03 0.05 0.3 0.5 100 0 1 3 4 VD /G3d 17 V Common emitter Tj = 25°C 13 V 15 V Forward current I F (A) Switching time ( /G6ds) Collector-emitter voltage V CE ( V ) IC – VCE Collector current I C (A) Collector-emitter voltage V CE ( V ) IC – VCE Collector current I C (A) Collector current I C (A) Switching time – IC Switching time ( /G6ds) Collector current I C (A) Switching time – IC Forward voltage V F (V) IF – VF Forward current I F (A) trr, Irr – IF Peak reverse recovery current Irr (A) Peak reverse recovery time trr ( /Gb410ns) 0 1 3 2 4 Common cathode :Tj = 25°C :Tj = 125°C 100 100 0 10 30 60 20 40 50 Common cathode :Tj = 25°C :Tj = 125°C trr Irr
0.001 0.001 0.01 1 0.003 0.1 0.01 0.005 0.03 0.1 0.05 0.3 0.5 Tc /G3d 25°C Diode Transistor 100 0 200 600 400 OC 100 0 5 15 25 VD /G3d 15 V Tj = 25°C 0 5 15 25 VD /G3d 15 Tj = 25°C 200 0 25 75 150 100 150 50 100 125 VD /G3d 15 V Inverter stage Brake stage Transient thermal resistance Rth (t) (°C /W) Collector current I C (A) Case temperature T C ( ° C ) OC – TC Over current protection trip level OC (A) Carrier frequency f c (kHz) ID (H) – fc High side control circuit current I D (H) (mA) Carrier frequency f c (kHz) ID (L) – fc Low side control circuit current I D (L) (mA) Collector-emitter voltage V CE ( V ) Reverse bias SOA Pulse width tw (s) Rth (t) – tw Inverter stage Pulse width tw (s) Rth (t) – tw Brake stage Transient thermal resistance Rth (t) (°C /W) 0.001 0.001 0.01 1 0.003 0.1 0.01 0.005 0.03 0.1 0.05 0.3 0.5 Tc /G3d 25°C Diode Transistor Tj /G3c/G3d125°C VD /G3d 15 V 100 300 500 700
Collector current I C (A) Collector current I C ( A ) Turn off loss Eoff (mJ) Turn on loss Eon (mJ) 0.01 0.1 0.3 30 6020 40 VCC /G3d 300 V VD /G3d 15 V L-LOAD : Tj /G3d 25°C : Tj /G3d 125°C 10 50 0.03 0.05 0.5 0.01 0.1 0.3 30 6020 40 VCC /G3d 300 V VD /G3d 15 V L-LOAD : Tj /G3d 25°C : Tj /G3d 125°C 10 50 0.03 0.05 0.5
/Gb7/G20TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such TOSHIBA products could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent TOSHIBA products specifications. Also, please keep in mind the precautions and conditions set forth in the “Handling Guide for Semiconductor Devices,” or “TOSHIBA Semiconductor Reliability Handbook” etc.. /Gb7/G20The TOSHIBA products listed in this document are intended for usage in general electronics applications (computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances, etc.). These TOSHIBA products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and/or reliability or a malfunction or failure of which may cause loss of human life or bodily injury (“Unintended Usage”). Unintended Usage include atomic energy control instruments, airplane or spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments, medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA products listed in this document shall be made at the customer’s own risk. /Gb7/G20The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others. /Gb7/G20The information contained herein is subject to change without notice. 000707EAARESTRICTIONS ON PRODUCT USE