PM75RSK060
Intellimodâ„¢ Module
Three Phase + Brake IGBT Inverter Output
75 Amperes/600 Volts
552
Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (724) 925-7272
Electrical and Mechanical Characteristics, Tj = 25°C unless otherwise specified
Characteristics Symbol Test Conditions Min. Typ. Max. Units
IGBT Inverter Sector
Collector-Emitter Cutoff Current ICES VCE = VCES, VD = 15V, Tj = 25°C––1mA
VCE = VCES, VD = 15V, Tj = 125°C– – 10 mA
FWDi Forward Voltage VEC -IC = 75A, VD = 15V, VCIN = 15V – 2.2 3.3 Volts
Collector-Emitter Saturation Voltage VCE(sat) VD = 15V, VCIN = 0V, IC = 75A, Tj = 25°C – 1.8 2.7 Volts
VD = 15V, VCIN = 0V, IC = 75A, – 1.85 2.78 Volts
Tj = 125°C
Inductive Load Switching Times ton 0.4 0.8 2.0 µS
trr VD = 15V, V CIN = 0 ~ 15V, – 0.15 0.3 µS
tC(on) VCC = 300V, IC = 75A, – 0.4 1.0 µS
toff Tj = 125°C, Inductive Load – 2.0 2.9 µS
tC(off) – 0.5 1.0 µS
Brake Sector
Collector-Emitter Saturation Voltage VCE(sat) VD = 15V, VCIN = 0V, IC = 30A, Tj = 25°C – 1.8 2.7 Volts
VD = 15V, VCIN = 0V, IC = 30A, – 1.9 2.8 Volts
Tj = 125°C
FWDi Forward Voltage VEC -IC = 15A, VD = 15V, VCIN = 15V – 1.7 2.7 Volts
Collector-Emitter Cutoff Current ICES VCE = VCES, VD = 15V, Tj = 25°C––1mA
VCE = VCES, VD = 15V, Tj = 125°C– – 10 mA
Thermal Characteristics
Characteristic Symbol Condition Min. Typ. Max. Units
Junction to Case Thermal Resistance Rth(j-c)Q Each Inverter IGBT – – 1.0 °C/Watt
Rth(j-c)D Each Inverter FWDi – – 0.95 °C/Watt
Rth(j-c)Q Each Brake IGBT – – 1.66 °C/Watt
Rth(j-c)D Each Brake FWDi – – 1.9 °C/Watt
Contact Thermal Resistance Rth(c-f) Case to Fin Per Module – – 0.036 °C/Watt
Thermal Grease Applied
Recommended Conditions for Use
Characteristic Symbol Condition Value Units
Supply Voltage VCC Applied across P-N Terminals 0 ~ 800 Volts
VDApplied between VUP1-VUPC, 15 ± 1.5 Volts
VN1-VNC, VVP1-VVPC, VWP1-VWPC
Input ON Voltage VCIN(on) Applied between 0 ~ 0.8 Volts
Input OFF Voltage VCIN(off) UP, VP, WP, UN, VN, WN, Br4.0 ~ VDVolts
PWM Input Frequency fPWM Using Application Circuit 5 ~ 20 kHz
Minimum Dead Time tDEAD Input Signal ≥2.5 µS