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FF100R12KS4
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FabricanteTecnologias Infineon
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Peça do Fabricante #FF100R12KS4
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Ficha Técnica FF100R12KS4 DataSheet
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Especificações
| Atributo | Valor |
| MountingStyle | Screw Mount |
| Package/Case | 62 mm |
| Technology | Si |
| MinimumOperatingTemperature | - 40 C |
| MaximumOperatingTemperature | + 125 C |
| Packaging | Tray |
| Brand | Infineon Technologies |
| ProductType | IGBT Modules |
| Subcategory | IGBTs |
| Configuration | Dual |
| Series | IGBT2 Fast |
| Height | 30.5 mm |
| Length | 106.4 mm |
| Product | IGBT Silicon Modules |
| FactoryPackQuantity:FactoryPackQuantity | 10 |
| Width | 61.4 mm |
| Part#Aliases | SP000100705 FF100R12KS4HOSA1 |
| UnitWeight | 12 oz |
| Collector-EmitterVoltageVCEOMax | 1.2 kV |
| ContinuousCollectorCurrentat25C | 150 A |
| MaximumGateEmitterVoltage | 20 V |
| Collector-EmitterSaturationVoltage | 3.2 V |
| Gate-EmitterLeakageCurrent | 400 nA |
| Pd-PowerDissipation | 780 W |
Visão Geral
Description
Key specifications include a rated current of 100A and a voltage rating of 1200V, making it suitable for medium-voltage applications. The FF100R12KS4 utilizes an integrated structure, which minimizes parasitic inductance and improves switching efficiency.
It also includes advanced features such as fast switching capabilities, low conduction losses, and protection against thermal overload, which contribute to overall system efficiency. This IGBT module is ideal for engineers seeking robust solutions in energy conversion systems while maintaining compactness and efficiency. Its easy integration into existing systems and compatibility with various control schemes further enhances its appeal in the power electronics market.
Equivalent
Features
1. Rated Current: 100A continuous current capacity, making it suitable for various industrial applications.
2. Voltage Rating: Operates at a maximum collector-emitter voltage of 1200V, providing robust performance in high-voltage environments.
3. High Efficiency: Low conduction and switching losses enhance overall system efficiency, which is crucial for energy-saving applications.
4. Thermal Management: Integrated thermal performance allows for better heat dissipation, extending the life of the module.
5. Fast Switching Speed: The module supports rapid switching, which improves the performance of inverter and converter designs.
6. Compact Design: Space-saving footprint facilitates easier integration into various systems.
7. Suitable for Various Applications: Commonly used in renewable energy systems, motor drives, and industrial automation.
This module combines reliability and efficiency, making it ideal for demanding applications in power electronics.
Pinout
The primary functions of the FF100R12KS4 are:
1. Switching: It allows for efficient switching of high power in applications such as inverters, converters, and motor drives.
2. Control: It is designed to handle high voltage and current, allowing for precise control in power electronics.
3. Thermal Management: The module is engineered to manage thermal performance effectively, assisting in heat dissipation during operation.
This IGBT module is suitable for various industrial applications, including renewable energy systems, industrial drives, and power generation.
Manufacturer
Infineon is known for its innovations in power management, which are crucial for applications such as electric vehicles, renewable energy systems, and smart grid technology. The FF100R12KS4 itself is part of Infineon's IGBT (Insulated Gate Bipolar Transistor) product line, specifically designed for high-power applications, providing efficient switching and thermal performance. Overall, Infineon plays a significant role in advancing technology and sustainability through its semiconductor products.
Application
1. Motor Drives: Used in industrial and commercial motor control systems for efficient speed and torque regulation.
2. Renewable Energy: Employed in solar inverters and wind turbine converters to convert DC to AC power.
3. Power Supplies: Utilized in uninterruptible power supplies (UPS) and switched-mode power supplies (SMPS) for efficient energy conversion.
4. Welding Equipment: Applied in induction heating and electric arc welding for precise control of power output.
5. HVDC Systems: Incorporated in high-voltage direct current systems for efficient long-distance power transmission.