Overview: The GT300HF120T2VH is an IGBT module designed for industrial applications, featuring low saturation voltage and trench IGBT technology for reduced switching loss. It is compliant with ROHS requirements and suitable for use in industrial inverters, servo applications, and electric vehicles (EV and EHV).
Features:- Short Circuit Rated for 10μs
- Low Saturation Voltage: VCE (sat) = 2.00V at IC = 300A, TC=25℃
- Trench IGBT with low switching loss
- 100% RBSOA Test (2×Ic)
- Low stray inductance
- HI-REL power terminals
- Lead-free and ROHS compliant
Applications:- Industrial Inverters
- Servo Applications
- Electric and Hybrid Electric Vehicles (EV and EHV)
Absolute Maximum Ratings:- Collector-Emitter Blocking Voltage (VCES): 1200V
- Gate-Emitter Voltage (VGES): ±20V
- Continuous Collector Current (IC): 300A at TC = 80℃, 450A at TC = 25℃
- Peak Collector Current (ICM): 600A at TJ = 125℃
- Diode Continuous Forward Current (IF): 300A at TJ = 125℃
- Short Circuit Withstand Time (tSC): >10μs at TJ = 150℃
- Maximum Power Dissipation (PD): 2140W at TC = 25℃
- Operating Junction Temperature (TJ): -40 to +175℃
- Storage Temperature (Tstg): -40 to +125℃
- Isolation Voltage (Viso): 2500V for 1 minute
Electrical Characteristics:- Collector-Emitter Breakdown Voltage (V(BR)CES): 1200V
- Collector-Emitter Leakage Current (ICES): 500μA at TJ = 25℃, 4mA at TJ = 125℃
- Gate-Emitter Threshold Voltage (VGE(th)): 4.5V to 6.5V
- Collector-Emitter Saturation Voltage (VCE(sat)): 2.00V to 2.48V
- Input Capacitance (Cies): 42.4nF
- Output Capacitance (Coes): 2.18nF
- Turn-on Delay Time (td(on)): 380ns
- Turn-off Delay Time (td(off)): 680ns
- Turn-on Switching Loss (Eon): 22.2mJ
- Turn-off Switching Loss (Eoff): 23.2mJ
Thermal Resistance Characteristics:- Junction-To-Case (IGBT Part, Per Leg): 0.07℃/W
- Junction-To-Case (Diode Part, Per Leg): 0.10℃/W
- Case-To-Sink (Conductive Grease Applied): 0.10℃/W
Figures and Graphs:- Fig.1: Typical Load Current vs. Frequency
- Fig.2: Typical Saturation Voltage Characteristics
- Fig.3: Typical Output Characteristics
- Fig.4: Forward Characteristics of FWD
- Fig.5: Capacitance Characteristics
- Fig.6: Typical Switching Loss vs. Collector Current
- Fig.7: Typical Switching Loss vs. Gate Resistance
- Fig.8: Reverse Bias Safe Operation Area (RBSOA)
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