PM10CSJ060 MITSUBISHI | Alldatasheet

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Sep.1998 Description: Mitsubishi Intelligent Power Mod- ules are isolated base modules de- signed for power switching applica- tions operating at frequencies to 20kHz. Built-in control circuits pro- vide optimum gate drive and pro- tection for the IGBT and free-wheel diode power devices. Features: u Complete Output Power Circuit u Gate Drive Circuit u Protection Logic – Short Circuit – Over Current – Over Temperature – Under Voltage Applications: u Inverters u UPS u Motion/Servo Control u Power Supplies Ordering Information: Example: Select the complete part number from the table below -i.e. PM10CSJ060 is a 600V,

10 Ampere Intelligent Power Mod-

ule. Type Current Rating V CES Amperes Volts (x 10) PM 10 60 Dimensions Inches Millimeters C 2.99 76.0 D 2.300 ±0.02 58.42 ±0.5 H 1.01 25.7 J 0.75 19.0 Dimensions Inches Millimeters L 0.561 14.25 N 0.513 13.04 Q 0.300 7.62 R 0.20 Rad. Rad. 5.0 S 0.18 Dia. Dia. 4.5 T 0.14 3.5 V 0.100 ±0.01 2.54 ±0.25 MITSUBISHI INTELLIGENT POWER MODULES PM10CSJ060 FLAT-BASE TYPE INSULATED PACKAGE Outline Drawing and Circuit Diagram A E D C Q Q V Q H J FG T P K U V V V V V UPI 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. W V U N P V UPC VPI VPC V V WPI WPC NC MMMM 2.0 X 0.5 MM TAB (5 TYP .) PNUVW 21. 22. 23. F O V W U N N N W P WF O V P U P VF O OUF 234 5678 9 101112 131415161718 19 20 21 22 23 0.6 X 0.4 MM TAB (18 TYP .) (14 TYP .) N B L S - DIA. (2 TYP .) R (2 TYP .) T T C B GND P VV CC S I GND GND OUT UPI V UFO UP UPC F O IN VV CC S I GND GND OUT VPI V VFO VP VPC F O IN VV CC S I GND GND OUT WPI V W FO WP WPC F O IN U N V N W N F O V N1 V NCGND V CC F O W N V N U N O UN S UN O VN S VN O WN S WN UVWN

Sep.1998 Absolute Maximum Ratings, Tj = 25°C unless otherwise specified Ratings Symbol PM10CSJ060 Units Power Device Junction Temperature T j -20 to 150 °C Storage Temperature T stg -40 to 125 °C Case Operating Temperature T C -20 to 100 °C Mounting Torque, M4 Mounting Screws — 0.98 ~ 1.47 N · m Module Weight (Typical) — 60 Grams Supply Voltage Protected by OC and SC (VD = 13.5 - 16.5V, Inverter Part) V CC(prot.) 400 Volts Isolation Voltage (Main Terminal to Baseplate, AC 1 min.) V iso 2500 Vrms Control Sector Supply Voltage (Applied between VUP1 -VUPC , VVP1 -VVPC , VWP1 -VWPC , VN1 -VNC )V D 20 Volts Input Voltage (Applied between UP-VUPC , VP-VVPC , WP-VWPC , UN · VN · WN -VNC )V CIN 20 Volts Fault Output Supply Voltage (Applied between UFO -VUPC , VFO -VVPC , WFO -VWPC , FO -VNC ) VFO 20 Volts Fault Output Current (Sink Current of UFO , VFO , WFO and FO Terminal) I FO 20 mA IGBT Inverter Sector Collector-Emitter Voltage (VD = 15V, VCIN = 15V) V CES 600 Volts Collector Current, (TC = 25°C) I C 10 Amperes Peak Collector Current, (TC = 25°C) I CP 20 Amperes Supply Voltage (Applied between P - N) V CC 450 Volts Supply Voltage, Surge (Applied between P - N) V CC(surge) 500 Volts Collector Dissipation P C 39 Watts MITSUBISHI INTELLIGENT POWER MODULES PM10CSJ060 FLAT-BASE TYPE INSULATED PACKAGE

Sep.1998 Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units Control Sector Over Current Trip Level Inverter Part OC -20 °C ≤ T ≤ 125°C, VD = 15V 12 18 — Amperes Short Circuit Trip Level Inverter Part SC -20 °C ≤ T ≤ 125°C, VD = 15V — 27 — Amperes Over Current Delay Time t off(OC) VD = 15V — 10 — µs Over Temperature Protection OT Trip Level 100 110 120 °C OT r Reset Level — 90 — °C Supply Circuit Under Voltage Protection UV Trip Level 11.5 12.0 12.5 Volts UV r Reset Level — 12.5 — Volts Supply Voltage V D Applied between VUP1 -VUPC , 13.5 15 16.5 Volts VVP1 -VVPC , VWP1 -VWPC , VN1 -VNC Circuit Current I D VD = 15V, VCIN = 15V, VN1 -VNC —1 82 5 m A VD = 15V, VCIN = 15V, VXP1 -VXPC — 7 10 mA Input ON Threshold Voltage V th(on) Applied between 1.2 1.5 1.8 Volts Input OFF Threshold Voltage V th(off) UP-VUPC , VP-VVPC , WP-VWPC , 1.7 2.0 2.3 Volts U N · VN · WN -VNC PWM Input Frequency f PWM 3-φ Sinusoidal — 15 20 kHz Fault Output Current I FO(H) VD = 15V, VFO = 15V — — 0.01 mA IFO(L) VD = 15V, VFO = 15V — 10 15 mA Minimum Fault Output Pulse Width t FO VD = 15V 1.0 1.8 — ms MITSUBISHI INTELLIGENT POWER MODULES PM10CSJ060 FLAT-BASE TYPE INSULATED PACKAGE

Sep.1998 Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified Characteristics Symbol Test Conditions Min. Typ. Max. Units IGBT Inverter Sector Collector Cutoff Current I CES VCIN = 15V, VCE = VCES , Tj = 25°C — — 1.0 mA VCIN = 15V, VCE = VCES , Tj = 125°C— — 1 0 m A Diode Forward Voltage V EC -IC = 10A, VD = 15V, VCIN = 15V — 1.8 3.0 Volts Collector-Emitter Saturation Voltage V CE(sat) VD = 15V, VCIN = 0V, IC = 10A — 1.8 2.5 Volts VD = 15V, VCIN = 0V, IC = 10A, — 1.9 2.6 Volts Tj = 125°C Inductive Load Switching Times t on 0.3 0.5 1.5 µs trr VD = 15V, VCIN = 0 ↔ 15V — 0.12 0.3 µs tC(on) VCC = 300V, IC = 10A — 0.2 0.8 µs toff Tj = 125°C — 1.5 2.3 µs tC(off) — 0.4 1.2 µs Thermal Characteristics Characteristic Symbol Condition Min. Typ. Max. Units Junction to Case Thermal Resistance R th(j-c)Q Each IGBT — — 3.2 °C/Watt R th(j-c)F Each FWDi — — 4.5 °C/Watt Contact Thermal Resistance R th(c-f) Case to Fin — — 0.083 °C/Watt Thermal Grease Applied Recommended Conditions for Use Characteristic Symbol Condition Value Units Supply Voltage V CC Applied across P-N Terminals 0 ~ 400 Volts VD Applied between VUP1 -VUPC , 15 ± 1.5 Volts VN1 -VNC , VVP1 -VVPC , VWP1 -VWPC Input ON Voltage V CIN(on) Applied between 0 ~ 0.8 Volts Input OFF Voltage V CIN(off) U P-VUPC , VP-VVPC , WP-VWPC , 4.0 ~ V D Volts U N · VN · WN -VNC PWM Input Frequency f PWM Using Application Circuit 5 ~ 20 kHz Minimum Dead Time t dead Input Signal ≥ 2.0 µs MITSUBISHI INTELLIGENT POWER MODULES PM10CSJ060 FLAT-BASE TYPE INSULATED PACKAGE

Sep.1998 MITSUBISHI INTELLIGENT POWER MODULES PM10CSJ060 FLAT-BASE TYPE INSULATED PACKAGE SATURATION VOLTAGE CHARACTERISTICS (TYPICAL) COLLECTOR CURRENT, I C , (AMPERES) SATURATION VOLTAGE V CE(sat), (VOLTS) 00 52 5 10 15 20 VD = 15V VCIN = 0V Tj = 25oC Tj = 125oC 00 0 COLLECTOR-EMITTER SATURATION VOLTAGE CHARACTERISTICS (TYPICAL) SUPPLY VOLTAGE, V D , (VOLTS) COLLECTOR-EMITTER SATURATION VOLTAGE VCE(sat), (VOLTS) 12 14 16 18 20 IC = 10A VCIN = 0V Tj = 25oC Tj = 125oC OUTPUT CHARACTERISTICS (TYPICAL) COLLECTOR-EMITTER VOLTAGE, V CE(sat), (VOLTS) COLLECTOR CURRENT, I C , (AMPERES) 0123 Tj = 25oC VCIN = 0V VD = 17V 15 13 100 101 102 10-1 COLLECTOR CURRENT, I C , (AMPERES) SWITCHING TIMES, ton, toff, (µs) SWITCHING TIME VS. COLLECTOR CURRENT (TYPICAL) ton 100 101 toff VCC = 300V VD = 15V Inductive Load Tj = 25oC Tj = 125oC 100 101 102 10-1 COLLECTOR CURRENT, I C , (AMPERES) SWITCHING TIMES, tc(on), tc(off), (µs) SWITCHING TIME VS. COLLECTOR CURRENT (TYPICAL) tc(on) 100 101 tc(off) VCC = 300V VD = 15V Inductive Load Tj = 25oC Tj = 125oC 100 101 102 100 COLLECTOR REVERSE CURRENT, –I C , (AMPERES) REVERSE RECOVERY CURRENT, I rr, (AMPERES) REVERSE RECOVERY CURRENT VS. COLLECTOR CURRENT (TYPICAL) 101 102 VCC = 300V VD = 15V Inductive Load Tj = 25oC Tj = 125oC 00 1.0 2.5 100 EMITTER-COLLECTOR VOLTAGE, V EC , (VOLTS) COLLECTOR REVERSE CURRENT, –I C , (AMPERES) DIODE FORWARD CHARACTERISTICS 101 102 0.5 1.5 2.0 Tj = 25oC Tj = 125oC VD = 15V 100 110 OVER CURRENT TRIP LEVEL VS. SUPPLY VOLTAGE (TYPICAL) SUPPLY VOLTAGE, V D , (VOLTS) OVER CURRENT TRIP LEVEL % (NORMALIZED) 12 14 16 18 20 Tj = 25oC 0 0 120 OVER CURRENT TRIP LEVEL TEMPERATURE DEPENDENCY (TYPICAL) JUNCTION TEMPERATURE, T j, (oC) OVER CURRENT TRIP LEVEL % (NORMALIZED) 0 50 100 150-50 VD = 15V 110 100

Sep.1998 MITSUBISHI INTELLIGENT POWER MODULES PM10CSJ060 FLAT-BASE TYPE INSULATED PACKAGE CONTROL SUPPLY VOLTAGE TRIP-RESET LEVEL TEMPERATURE DEPENDENCY (TYPICAL) JUNCTION TEMPERATURE, T j, (oC) UV TRIP-RESET LEVEL, UV t, UVr, (VOLTS) -50 150 05 0 100 UV t UV r TIME, (s) TRANSIENT IMPEDANCE, Z th(j-c), (NORMALIZED VALUE) TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (Each IGBT) 101 10-1 100 101 100 10-1 10-2 10-3 SINGLE PULSE STANDARD VALUE = R th(j-c)Q = 3.2oC/W 10-210-3 TIME, (s) TRANSIENT IMPEDANCE, Z th(j-c), (NORMALIZED VALUE) TRANSIENT THERMAL IMPEDANCE CHARACTERISTICS (Each FWDi) 101 10-1 100 101 100 10-1 10-2 10-3 SINGLE PULSE STANDARD VALUE = R th(j-c)D = 4.5oC/W 10-210-3 1.0 1.5 2.0 2.5 3.0 FAULT OUTPUT PULSE WIDTH VS. TEMPERATURE (TYPICAL) JUNCTION TEMPERATURE, T j, (oC) FAULT OUTPUT PULSE WIDTH, t FO, (ms) -50 0 50 100 150 VD = 15V