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AUIRG4PH50S
+Lista de MateriaisIGBT 1200V 57A TO247AC
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FabricanteTecnologias Infineon
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Peça do Fabricante #AUIRG4PH50S
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Ficha Técnica AUIRG4PH50S DataSheet
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Pacote PG-TO247-3
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Especificações
| Atributo | Valor |
| Package | Bulk,Tube |
| Series | Automotive, AEC-Q101 |
| ProductStatus | Active |
| Voltage-CollectorEmitterBreakdown(Max) | 1200 V |
| Current-Collector(Ic)(Max) | 141 A |
| Current-CollectorPulsed(Icm) | 99 A |
| Vce(on)(Max)@VgeIc | 1.7V @ 15V, 33A |
| Power-Max | 543 W |
| SwitchingEnergy | 16mJ (off) |
| InputType | Standard |
| GateCharge | 227 nC |
| Td(on/off)@25°C | -/616ns |
| TestCondition | 600V, 33A, 5Ohm, 15V |
| OperatingTemperature | -55°C ~ 150°C (TJ) |
| MountingType | Through Hole |
| Package/Case | TO-247-3 |
Visão Geral
Description
Key characteristics of the AUIRG4PH50S include:
1. Voltage and Current Ratings: It's designed for medium to high-power applications, with specific voltage and current ratings that allow it to handle substantial power loads efficiently.
2. Switching Speed: The device offers fast switching capabilities, making it ideal for applications requiring rapid on/off cycling.
3. Thermal Performance: Enhanced thermal performance is a hallmark, allowing the device to operate effectively under high-temperature conditions.
4. Robustness: Built to withstand high voltages and currents, the AUIRG4PH50S is suitable for automotive applications, among others, where reliability is critical.
5. Application Areas: Commonly used in automotive electronics, motor drives, renewable energy systems, and industrial equipment.
Overall, the AUIRG4PH50S IGBT provides a reliable solution for high-efficiency power management and conversion applications.
Equivalent
1. Infineon IKW40N120T2
2. STMicroelectronics STGWA40V60DF
3. Toshiba GT40J325
4. ON Semiconductor FGA40N120ANTD
Ensure to compare specifications like voltage, current ratings, and switching characteristics to confirm suitability for your application, as equivalent components may have variations.
Features
1. Voltage and Current Ratings: It offers a high voltage capability and substantial current handling, making it suitable for demanding automotive environments.
2. Ruggedness: It is designed to withstand harsh automotive conditions, offering robust performance even under stress.
3. Low RDS(on): The device features a low on-state resistance which helps to minimize conduction losses, enhancing efficiency.
4. Fast Switching Speeds: This MOSFET supports rapid switching, which is vital for applications requiring quick response times.
5. Thermal Performance: It is optimized for better thermal performance, which helps to manage heat dissipation effectively.
6. Automotive-Grade Reliability: Qualified to meet automotive industry standards, ensuring reliability and longevity.
7. Package Type: It typically comes in a standard package that supports easy integration into automotive systems.
These features make the AUIRG4PH50S a suitable choice for high-performance automotive applications.
Pinout
The three pins in the TO-247 package are configured as follows:
1. Collector (C): This is the pin through which the main current flows when the IGBT is in the 'on' state.
2. Emitter (E): This is the pin through which the current exits when the IGBT is conducting.
3. Gate (G): This pin is used to control the switching state of the IGBT. Applying a voltage to the gate allows the IGBT to conduct between the collector and emitter.
These pins play a crucial role in allowing the IGBT to function effectively in power electronics applications, such as inverters, motor drives, and power supplies.
Manufacturer
Application
1. Automotive Inverters: Used in electric and hybrid vehicles for efficient power conversion.
2. Motor Drives: Facilitates control in automotive motor drive systems.
3. Power Supply Systems: Enhances performance in DC-DC converters and other power management systems.
4. Battery Management: Used in systems requiring efficient battery energy management.
5. Traction Inverters: Supports high-power applications in electric vehicle traction systems.
These applications leverage the IGBT's ability to handle high voltages and currents with efficient switching and thermal performance.