Infineon FZ1800R45HL4BPSA1 Single IGBT Module, 1.8 kA 4500 V AG-IHVB190

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£1,805.28

(exc. VAT)

£2,166.34

(inc. VAT)

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RS Stock No.:
236-5195
Mfr. Part No.:
FZ1800R45HL4BPSA1
Brand:
Infineon
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Brand

Infineon

Maximum Continuous Collector Current

1.8 kA

Maximum Collector Emitter Voltage

4500 V

Maximum Gate Emitter Voltage

± 20V

Number of Transistors

3

Maximum Power Dissipation

4000 kW

Package Type

AG-IHVB190

Configuration

Single

Channel Type

N

Dimensions

190 x 140 x 38.5mm

Minimum Operating Temperature

-40 °C

Maximum Operating Temperature

+150 °C

Gate Capacitance

297nF

Infineon IGBT Module, 1.8 kA Maximum Continuous Collector Current, 4500V Maximum Collector Emitter Voltage - FZ1800R45HL4BPSA1


This IGBT module is designed for high-power applications within the power electronics sector. It features a maximum continuous collector current of 1.8kA and a collector-emitter voltage of up to 4500V, making it suitable for demanding environments. The dimensions of this compact module are 190 x 140 x 38.5 mm, ensuring flexible integration into various systems.

Features & Benefits


• High DC stability ensures consistent performance in challenging conditions
• Emitter-controlled 4 diode enhances short-circuit current handling
• Low collector-emitter saturation voltage improves energy efficiency
• Capable of high dynamic robustness for reliable operation
• Enhanced gate capacitance optimises switching performance

Applications


• Used for high-power converters in industrial environments
• Ideal for medium-voltage converter systems
• Suitable for power transmission and distribution networks

What is the significance of the collector-emitter voltage rating?


The collector-emitter voltage rating of 4500V ensures that the module can operate effectively even in high-voltage applications, preventing early failure and ensuring reliable performance.

How does the module enhance energy efficiency in power systems?


A low collector-emitter saturation voltage contributes to reduced energy losses during switching, making it ideal for applications requiring high energy efficiency.

What kind of thermal management solutions does it incorporate?


The module features an AlSiC base plate for improved thermal cycling capability, allowing it to operate efficiently even in fluctuating temperature conditions.

How does the dynamic robustness of this module benefit industrial automation?


Its high dynamic robustness facilitates reliable operation under varying load conditions, thus enhancing the overall stability and efficiency of industrial automation processes.

Can this module handle short-circuit conditions effectively?


Yes, the design includes emitter-controlled diodes that provide excellent short-circuit capability, allowing it to endure transient conditions without damage.