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Home > Products > Electronic Components & Semiconductors > Infineon PrimePACK IGBT IPM Module For New Energy Power Electronics

Infineon PrimePACK IGBT IPM Module For New Energy Power Electronics

Product Details

Place of Origin: Japan

Certification: IEC 60747、IEC 60749、IEC 60068 、 RoHS

Payment & Shipping Terms

Minimum Order Quantity: 1

Price: $40-$1500

Delivery Time: 3-5Workday

Payment Terms: L/C,D/A,D/P,T/T,Western Union

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Highlight:

Infineon PrimePACK IGBT IPM Module

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New Energy Power IPM Module

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Infineon PrimePACK IGBT IPM

Type:
IGBT Moduel
Rated Voltage (V):
1200V 1700V 2300V
Rated Current (A):
150A 400A 450A 600A 800A 1000A 1200A 1800A 2400A
Warranty:
Original Manufacturer's Warranty
Pakage:
Original Pakage
Shipping Term:
International Express(DHL/FEDEX/TNT/UPS/ARAMEX)/Sea Freight / Air Freight / International Special Line
Freight Charge:
For Industrial Equipment (E.G., PLC Modules, Inverters..), Shipping Cost Varies By Package Weight/Volume And Delivery Location. Contact Our Sales Team For A Customized Shipping Solution And Quote
Type:
IGBT Moduel
Rated Voltage (V):
1200V 1700V 2300V
Rated Current (A):
150A 400A 450A 600A 800A 1000A 1200A 1800A 2400A
Warranty:
Original Manufacturer's Warranty
Pakage:
Original Pakage
Shipping Term:
International Express(DHL/FEDEX/TNT/UPS/ARAMEX)/Sea Freight / Air Freight / International Special Line
Freight Charge:
For Industrial Equipment (E.G., PLC Modules, Inverters..), Shipping Cost Varies By Package Weight/Volume And Delivery Location. Contact Our Sales Team For A Customized Shipping Solution And Quote
Infineon PrimePACK IGBT IPM Module For New Energy Power Electronics

Infineon PrimePACK IGBT Modules High Power Density High Reliability for New Energy Power Electronics

PrimePACK IGBT Modules
PrimePACK IGBT Modules deliver exceptional high power density and industry-leading high reliability, making them the ideal power semiconductor solution for a wide range of new energy power electronics applications. Engineered with advanced IGBT chip technologies, optimized packaging design and integrated thermal management features, these modules support high-efficiency energy conversion, stable long-term operation and compact system integration, perfectly meeting the demanding performance and durability requirements of renewable energy generation, energy storage and other new energy power systems.
Key Features
  • Industry-leading high power density enables compact, high-performance power electronics designs
  • Superior long-term reliability ensures stable operation under harsh industrial and new energy conditions
  • Advanced IGBT chip technologies deliver low conduction and switching losses for higher efficiency
  • Wide voltage and current ranges cover 1200V, 1700V and 2300V applications
  • Optimized thermal design with integrated NTC sensors for reliable thermal management
  • Pin-compatible packages simplify system upgrade and reduce assembly time
  • Ideal for photovoltaic inverters, wind converters, energy storage systems and industrial drives
Technical Specifications
Parameter Details
Product Series Infineon PrimePACK™ IGBT Modules
Package Types PrimePACK™ 2, PrimePACK™ 3, PrimePACK™ 3+
Voltage Class 1200 V, 1700 V, 2300 V
Rated Current 450 A - 2400 A
Chip Technology IGBT4, IGBT5, IGBT7
Topology Configurations Half-bridge, three-phase bridge, chopper
Maximum Junction Temperature 175 °C (overload)
Thermal Features Pre-applied TIM, low thermal resistance, integrated NTC temperature sensor
Isolation & Safety High creepage distance, high electrical clearance, high CTI insulation
Compatibility Pin-compatible designs for easy platform upgrade
Typical Applications Photovoltaic inverters, wind converters, energy storage PCS, industrial drives
Product Models and Applications
Model Chip Technology Voltage Class Rated Current Max Junction Temp Key Parameters Applications
FF450R12KE4P IGBT4 1200V 450A 175℃ Half-bridge configuration, integrated NTC, high isolation New energy (wind, photovoltaic), industrial frequency converters
FF400R17KE4P IGBT4 1700V 400A 175℃ TRENCHSTOP™ technology, low conduction & switching losses Photovoltaic inverters, energy storage PCS, UPS systems
FF500R17KE4P IGBT4 1700V 500A 175℃ High current density, robust packaging, excellent thermal cycling High-voltage frequency converters, rail transit, smart grid
FF1000R17IE4P IGBT4 1700V 1000A 175℃ Pre-applied TIM, low switching losses, integrated NTC Large-scale wind power converters, high-power industrial drives
FF1200R17IP5 IGBT5 1700V 1200A 175℃ Emitter-controlled diode, low Vce(sat), high power cycling Traction drives, high-power converters, wind turbines
6THE150MI IGBT4 1200V 150A 175℃ Three-phase full-bridge topology, automotive-grade reliability Commercial vehicle traction inverters, electric commercial vehicles
FF1800R23IE7 IGBT7 2300V 1800A 175℃ TRENCHSTOP™ IGBT7, high DC stability at 1500V Large-scale solar central inverters, high-voltage energy storage
FF2400R17IE5 IGBT5 1700V 2400A 175℃ .XT interconnection technology, 30% higher output current Megawatt-level wind power converters, high-power industrial drives
FF600R12IE5P IGBT5 1200V 600A 175℃ Low switching losses, high efficiency, integrated NTC Industrial automation, induction heating, photovoltaic string inverters
FF800R23IE7P IGBT7 2300V 800A 175℃ High reliability, low thermal resistance, strong resistance to harsh conditions Large-scale solar power plants, high-voltage energy storage PCS
Frequently Asked Questions
Can PrimePACK 2/3/3+ packages be directly replaced?
No. They're pin-compatible but not fully interchangeable—check installation size and heat design first.
Why do modules fail fast in outdoor new energy projects?
Mostly due to poor heat management or exceeding 175℃ junction temperature.
Is extra insulation needed for high-voltage use?
No. They have high creepage distance and meet overseas high-voltage standards.
What's the real difference between IGBT4/5/7?
IGBT4: stable, cost-effective; IGBT5: lower loss; IGBT7: high-power density (ideal for large PV plants).
Can the same heatsink be used for different current models?
Not recommended. Higher current = more heat—match heatsink to thermal resistance.