IKW50N65WR5XKSA1 Overview
The IKW50N65WR5XKSA1 is a high-performance Insulated Gate Bipolar Transistor (IGBT) designed for demanding industrial and power conversion applications. This device combines robust power handling capabilities with fast switching performance, making it an excellent fit for modern electronic systems that require efficient energy management. With its optimized structure and advanced process technology, this IGBT supports high voltage operation and current ratings. As a result, the component is ideal for engineers seeking reliable, compact solutions for motor drives, inverters, and power supply designs. For more technical details, visit IC Manufacturer.
IKW50N65WR5XKSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | Insulated Gate Bipolar Transistor (IGBT) |
| Configuration | Single |
| Collector-Emitter Voltage (VCES) | 650 V |
| Continuous Collector Current (IC) | 100 A |
| Maximum Power Dissipation | 520 W |
| Gate Charge (Qg) | 330 nC |
| Collector-Emitter Saturation Voltage (VCE(sat)) | 1.7 V (typical) |
| Package | TO-247-3 |
| Mounting Type | Through Hole |
IKW50N65WR5XKSA1 Key Features
- High voltage tolerance of 650 V enables use in a wide range of industrial and power conversion applications, delivering robust insulation and safety margins.
- High continuous collector current rating (100 A) supports demanding loads, making the device suitable for high-power motor drives and inverters.
- Low collector-emitter saturation voltage (1.7 V typical) reduces conduction losses, improving system energy efficiency and minimizing heat generation.
- Fast switching capability due to optimized gate charge (330 nC), allowing for efficient operation in high-frequency switching topologies.
- TO-247-3 standard package offers ease of integration and reliable thermal performance for industrial PCB designs.
IKW50N65WR5XKSA1 Advantages vs Typical Alternatives
Compared to typical alternatives, this IGBT offers a superior combination of high voltage tolerance and high current capability. Its low saturation voltage minimizes energy losses, which is crucial for efficiency-driven designs. The device??s fast switching performance and robust package enhance reliability in demanding environments, giving engineers confidence in both performance and long-term operation for industrial applications.
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Typical Applications
- Industrial motor drives: The device??s high current and voltage ratings make it ideal for variable speed drives, supporting efficient control of AC motors in manufacturing and automation equipment.
- Power inverters: Used in inverters for renewable energy systems, such as solar or wind, where robust and efficient switching performance is required.
- Uninterruptible Power Supplies (UPS): Provides reliable high-power switching in backup power systems to ensure continuous operation during outages.
- Welding equipment: Delivers the necessary power handling and fast switching for industrial welding machines, optimizing arc stability and energy efficiency.
IKW50N65WR5XKSA1 Brand Info
The IKW50N65WR5XKSA1 represents a product engineered to deliver consistent, high-quality performance for industrial power management. Manufactured with advanced process technologies, this component is tailored for professionals who demand reliability and efficiency in their designs. Its specification profile highlights a commitment to robust construction and versatile application, making it a trusted choice for engineers and sourcing specialists across the power electronics sector.
FAQ
What makes the IKW50N65WR5XKSA1 suitable for high-power applications?
The combination of a high collector-emitter voltage rating and substantial continuous collector current capacity ensures that this device can handle significant power loads, making it well-suited for motor drives, inverters, and other demanding applications.
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What are the key benefits of the TO-247-3 package for this IGBT?
The TO-247-3 package provides excellent heat dissipation and mechanical stability, allowing the component to operate reliably in high-power environments. This package type is also industry-standard, facilitating straightforward system integration and replacement.
How does the low collector-emitter saturation voltage affect system efficiency?
A lower VCE(sat) means reduced conduction losses when the device is on. This translates to higher energy efficiency, less power wasted as heat, and potentially lower cooling requirements in the end application.
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Can this IGBT be used in switching applications with high frequencies?
Yes, the optimized gate charge value enables fast switching operations, making it suitable for high-frequency designs such as inverters and pulse-width modulation (PWM) controllers where rapid transitions are essential.
Is the IKW50N65WR5XKSA1 appropriate for use in renewable energy systems?
Absolutely. Its voltage and current capabilities, combined with efficient switching performance, make it an excellent choice for solar inverters, wind turbine converters, and other renewable energy power conversion systems.






