FP10R12W1T4B11BOMA1 Allicdata Electronics
Allicdata Part #:

FP10R12W1T4B11BOMA1-ND

Manufacturer Part#:

FP10R12W1T4B11BOMA1

Price: $ 23.27
Product Category:

Discrete Semiconductor Products

Manufacturer: Infineon Technologies
Short Description: IGBT MODULE VCES 600V 100A
More Detail: IGBT Module Three Phase Inverter 1200V 20A 105W C...
DataSheet: FP10R12W1T4B11BOMA1 datasheetFP10R12W1T4B11BOMA1 Datasheet/PDF
Quantity: 1000
24 +: $ 21.15180
Stock 1000Can Ship Immediately
$ 23.27
Specifications
Series: --
Part Status: Active
IGBT Type: --
Configuration: Three Phase Inverter
Voltage - Collector Emitter Breakdown (Max): 1200V
Current - Collector (Ic) (Max): 20A
Power - Max: 105W
Vce(on) (Max) @ Vge, Ic: 2.25V @ 15V, 10A
Current - Collector Cutoff (Max): 1mA
Input Capacitance (Cies) @ Vce: 600pF @ 25V
Input: Standard
NTC Thermistor: Yes
Operating Temperature: -40°C ~ 150°C
Mounting Type: Chassis Mount
Package / Case: Module
Supplier Device Package: Module
Description

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Introduction

FP10R12W1T4B11BOMA1 is a multiphase IGBT module developed by IXYS Corporation. It is a basic IGBT module composed of four IGBT power switching chips, four reverse blocking thyristors, and two snubber capacitors. It is a contemporary solution in the field of power conversion, power factor correction and control, as well as motor and motion control. The FP10R12W1T4B11BOMA1 offers a wide range of features for optimal performance, reliability and cost effectiveness.

Reliability and Temperature Range

Reliability is essential in any application. The FP10R12W1T4B11BOMA1 offers low failure rate. The unit has very low parts per million (PPM) risk through its well-designed advanced IGBT technology and high-grade components. The unit meets a wide temperature range of -55°C to 150°C and is rated for an operating temperature of 125°C.

Innovative Design and Component Selection

To increase its performance, the design of the FP10R12W1T4B11BOMA1 divides up its energy flow into four IGBTs connected in parallel. This not only increases the power handling capacity by allowing more current flow at lower voltage levels, but also increases the efficiency of the module. Since each IGBT will share the load, no single IGBT is burdened with too much current and the stress on the device is minimized. The use of reverse blocking thyristors allows for dynamic branch current sharing and improved power distribution. The snubber capacitors provide essential transient protection, ensuring less current spikes and peak voltages.

Applications

The FP10R12W1T4B11BOMA1 can be used in a variety of applications such as solar inverters, switch-mode power supplies, motor drives, UPS systems, and industrial automation. The module is particularly suitable for power factor correction and power conversion purposes as it can handle up to ten times more energy than MOSFET modules. Furthermore, it is designed for high-current applications with a nominal current of approximately 750A at 100KHz.

Working Principle

The basic working principle of the FP10R12W1T4B11BOMA1 module is based on the concept of IGBT switching current. The module is composed of four IGBTs connected in parallel, with each IGBT switching its own current. The four IGBTs are driven in parallel, allowing current to flow from input to output within a given voltage range. The IGBTs are connected to two reverse blocking thyristors which allow incremental current sharing between the four IGBTs, increasing power distribution, and a pair of snubber capacitors which allow for transient protection and reduced power consumption.

Conclusion

FP10R12W1T4B11BOMA1 is a multiphase IGBT module developed by IXYS Corporation that is perfect for use in power conversion, power factor correction and control, as well as motor and motion control applications. The unit provides low PPM risk, wide temperature range and optimized component selection. The IGBT module is composed of four IGBTs connected in parallel, two reverse blocking thyristors and two snubber capacitors. It provides dynamic current sharing, increased power handling, and improved efficiency. As a result, the FP10R12W1T4B11BOMA1 is an ideal solution for high-current applications.

The specific data is subject to PDF, and the above content is for reference

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