RJH1CF5RDPQ-80#T2 Allicdata Electronics
Allicdata Part #:

RJH1CF5RDPQ-80#T2-ND

Manufacturer Part#:

RJH1CF5RDPQ-80#T2

Price: $ 0.00
Product Category:

Discrete Semiconductor Products

Manufacturer: Renesas Electronics America
Short Description: IGBT 1200V 50A 192.3W TO247
More Detail: IGBT 1200V 50A 192.3W Through Hole TO-247
DataSheet: RJH1CF5RDPQ-80#T2 datasheetRJH1CF5RDPQ-80#T2 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tube 
Part Status: Active
IGBT Type: --
Voltage - Collector Emitter Breakdown (Max): 1200V
Current - Collector (Ic) (Max): 50A
Vce(on) (Max) @ Vge, Ic: 2.4V @ 15V, 25A
Power - Max: 192.3W
Switching Energy: --
Input Type: Standard
Td (on/off) @ 25°C: --
Test Condition: --
Operating Temperature: 150°C (TJ)
Mounting Type: Through Hole
Package / Case: TO-247-3
Supplier Device Package: TO-247
Description

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Introduction to RJH1CF5RDPQ-80#T2 Application Field, Working Principle, and Advantages

What is an RJH1CF5RDPQ-80#T2 IGBT?

RJH1CF5RDPQ-80#T2, also known as an Insulated Gate Bipolar Transistor (IGBT), is a power semiconductor device commonly used in power electronics applications. An IGBT combines the attributes of a MOSFET and a BJT, allowing for high efficiency and low switching losses in power conversion applications. It is also a voltage-controlled device, as opposed to bipolar transistors and MOSFETs which are current-controlled. These attributes make IGBTs ideal for applications such as motor control, solar power conversion, electric vehicle power electronics, and DC/DC converters.

Application Fields

IGBTs are used in a variety of applications, from solar-powered applications to electric vehicle power electronic systems. In solar-powered applications, IGBTs are used for inverter applications and other power conversion applications such as phase-shifting or dynamic voltage limiting.In electric vehicle drives and propulsion systems, IGBTs can be used to control the high power necessary for accelerating and braking. As IGBTs are voltage-controlled devices, they offer low switching losses when compared to BJT-based power devices. Furthermore, in combination with an RLC circuit, IGBTs can be used to limit current flow during overload conditions, greatly increasing the safety of the electric vehicular applications.Additionally, IGBTs are used across different motor control applications such as high efficiency induction motor control, brushless dc motor control, and large synchronous motor control applications. Since IGBTs are voltage-controlled, they are able to be controlled more precisely than other power devices, allowing for higher power efficiency.

Working Principle

The working of IGBTs is similar to that of a BJT device, with a few key differences. The major difference lies in the gate, which is insulated from the collector, meaning that the gate voltage can be set independent of the collector voltage. IGBTs are voltage-controlled devices, meaning that a smaller gate voltage can be used to control the device compared to control current in BJTs.In an IGBT, the collector junction is reverse-biased, allowing for electrons to flow from the emitter to the collector. A voltage applied to the gate that is greater than the collector voltage allows for the resulting current between the gate and the collector to turn on the device. The gate voltage controls the current flow between the collector and the emitter, allowing for efficient switching and control of the device.

Advantages of IGBTs

The most notable advantages of IGBTs are their high efficiency, low switching losses, and reliability. Due to their voltage control operation, IGBTs can be used to minimize power losses, allowing for high efficiency in power control applications. Additionally, IGBTs are able to operate at high frequencies and in high-temperature environments, leading to increased lifetimes and improved reliability.Another advantage of IGBTs is their circuit simplification compared to BJTs. IGBTs are voltage-controlled devices, meaning that fewer components are needed to control them, leading to simpler circuit designs. Furthermore, IGBTs are able to operate at higher voltages than their BJT counterparts, allowing for cost-effective implementation of applications requiring high voltages.

Conclusion

In conclusion, the RJH1CF5RDPQ-80#T2 IGBT is an incredibly versatile and reliable device that is used in many power control applications, from solar-powered applications to electric vehicle drives and propulsion systems. IGBTs offer high efficiency and low switching losses due to their voltage control operation, and their circuit simplification eliminates the need for additional components to control the device. The advantages of IGBTs, along with their reliable and versatile operation, make them ideal for many power electronics applications.

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

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