Transistors - IGBTs - Modules

Image Part Number Description / PDF Quantity Rfq
F475R07W2H3B51BPSA1

F475R07W2H3B51BPSA1

IR (Infineon Technologies)

IGBT MODULE 650V 75A 250W

0

FD800R33KL2C-K_B5

FD800R33KL2C-K_B5

IR (Infineon Technologies)

IGBT MODULE

0

FZ1600R17KF6CB2S1NOSA1

FZ1600R17KF6CB2S1NOSA1

IR (Infineon Technologies)

IGBT MODULE

1

BSM25GB120DN2

BSM25GB120DN2

IR (Infineon Technologies)

IGBT MODULE

43

FS75R07N2E4BOSA1

FS75R07N2E4BOSA1

IR (Infineon Technologies)

IGBT MODULE 650V 75A 250W

0

FF600R12KE3NOSA1

FF600R12KE3NOSA1

IR (Infineon Technologies)

FF600R12 - IGBT MODULE

72

FF600R07ME4B11BPSA1

FF600R07ME4B11BPSA1

IR (Infineon Technologies)

MEDIUM POWER ECONO

0

BSM35GB120DN2HOSA1

BSM35GB120DN2HOSA1

IR (Infineon Technologies)

IGBT MOD 1200V 50A 280W

0

IFT150B12N3E4BOSA1

IFT150B12N3E4BOSA1

IR (Infineon Technologies)

MOD IGBT LOW PWR ECONO

0

BSM100GD120DLCBOSA1

BSM100GD120DLCBOSA1

IR (Infineon Technologies)

IGBT MODULE 1200V 100A

0

FS3L50R07W2H3FB11BPSA1

FS3L50R07W2H3FB11BPSA1

IR (Infineon Technologies)

IGBT MOD 650V 50A 20MW

12

DF80R12W2H3_B11

DF80R12W2H3_B11

IR (Infineon Technologies)

IGBT MODULE VCES 1200V 160A

0

FF600R12ME4CPBPSA1

FF600R12ME4CPBPSA1

IR (Infineon Technologies)

IGBT MODULE VCES 600V 600A

0

BSM150GB120DLCHOSA1

BSM150GB120DLCHOSA1

IR (Infineon Technologies)

IGBT MOD 1200V 300A 1250W

0

FF400R16KF4NOSA1

FF400R16KF4NOSA1

IR (Infineon Technologies)

IGBT MODULE

42

BSM10GD120DN2E3224BOSA1

BSM10GD120DN2E3224BOSA1

IR (Infineon Technologies)

IGBT MODULE 1200V 15A 80W

0

BSM150GB170DLCHOSA1

BSM150GB170DLCHOSA1

IR (Infineon Technologies)

IGBT MOD 1700V 300A 1250W

0

FF150R12KE3GHOSA1

FF150R12KE3GHOSA1

IR (Infineon Technologies)

IGBT MOD 1200V 225A 780W

0

FS100R12KT4_B11

FS100R12KT4_B11

IR (Infineon Technologies)

IGBT MODULE

257

FF450R33T3E3B5P4BPMA1

FF450R33T3E3B5P4BPMA1

IR (Infineon Technologies)

IHV IHM T XHP 3 3-6 5K

0

Transistors - IGBTs - Modules

1. Overview

Insulated Gate Bipolar Transistors (IGBTs) modules are hybrid semiconductor devices combining the high input impedance of MOSFETs with the low conduction losses of bipolar transistors. They serve as critical components in high-power switching applications, enabling efficient energy conversion in industrial, automotive, and consumer systems. Their ability to handle high voltage/current with fast switching characteristics makes them indispensable in modern power electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Standard IGBT ModulesGeneral-purpose, balanced conduction/switching lossesIndustrial motor drives, HVAC systems
High-Speed IGBTsOptimized for switching frequencies >20kHzWelding inverters, induction heating
Enhanced Dynamic IGBTsReduced tail current for lower switching lossesElectric vehicle (EV) on-board chargers
Trench IGBTsVertical trench gate structure for improved efficiencySolar inverters, energy storage systems
Double-Sided Cooling ModulesThermal management with cooling on both sidesHigh-power traction systems, wind turbines

3. Structure and Composition

IGBT modules typically consist of multiple IGBT dies and freewheeling diodes mounted on a ceramic substrate (usually Al2O3 or Si3N4). Key structural elements include:

  • Chip-level integration of IGBT and diode cells
  • DBC (Direct Bonded Copper) substrate for thermal conductivity
  • Thermoplastic/epoxy encapsulation for insulation
  • Aluminum wire bonds for die interconnection
  • Integrated temperature sensors in advanced modules

4. Key Technical Specifications

ParameterDescriptionImportance
Rated Collector Current (IC)Maximum continuous operating currentDetermines power handling capability
Breakdown Voltage (VCE)Max voltage before conductionSystem voltage rating compatibility
Conduction Voltage DropVoltage loss during on-stateImpacts efficiency and thermal design
Switching Losses (Eon/Eoff)Energy loss during state transitionsDictates maximum switching frequency
Operating Temperature RangeValid junction temperature rangeReliability and lifespan factor
Isolation VoltageDielectric strength between layersSafety compliance for high-voltage systems

5. Application Areas

  • Industrial: Motor drives, CNC machines, welding equipment
  • Automotive: EV traction inverters, PHEV battery management
  • Energy: Solar PV inverters, wind turbine converters
  • Consumer: High-end home appliances with variable speed drives
  • Rail: Traction systems for high-speed trains and metro networks

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
InfineonFF600R12KE4600A/1200V, 3-level topology, 175 C rating
ON SemiconductorNVHL015AN150A/1200V, automotive qualified
Mitsubishi ElectricCM400DY-34A400A/1700V, double-sided cooling
Fuji Electric2MBI150XAA120-50150A/1200V, intelligent power module
STMicroelectronicsSTGF8NC60KD8A/600V, through-hole package

7. Selection Guidelines

Key considerations include:

  • Matching voltage/current ratings with system requirements
  • Switching frequency vs. conduction loss trade-off
  • Thermal management capabilities (Rth values)
  • Short-circuit withstand capability
  • Package dimensions and cooling interface compatibility
  • Functional safety requirements (e.g., ISO 26262 for automotive)

8. Industry Trends

Emerging trends include:

  • Transition to SiC/GaN hybrid modules for higher efficiency
  • Development of 3D packaging for reduced parasitic inductance
  • Integration of gate drivers and sensors in smart modules
  • Growing adoption in EV charging infrastructure (800V+ systems)
  • Advancements in sintering technology for die attach reliability
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