IKWH50N65WR6XKSA1 Overview
The IKWH50N65WR6XKSA1 is a robust and high-performance insulated gate bipolar transistor (IGBT) designed for demanding industrial and power electronics applications. Engineered for optimal switching efficiency and reliability, this device offers significant advantages in terms of power handling and low-loss operation. Its advanced characteristics make it well-suited for use in motor drives, inverter systems, and industrial automation solutions. For sourcing and more detailed information on this IGBT, visit IC Manufacturer.
IKWH50N65WR6XKSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Product Category | IGBT Transistor |
| Configuration | Single |
| Collector-Emitter Voltage (Vce) | 650 V |
| Collector Current (Ic) | 80 A |
| Power Dissipation | 417 W |
| Gate-Emitter Voltage (Vge) | ?I20 V |
| Mounting Style | Through Hole |
| Package / Case | TO-247-3 |
IKWH50N65WR6XKSA1 Key Features
- High voltage capability of up to 650 V ensures suitability for a wide range of industrial power conversion applications, minimizing risk of breakdown.
- Substantial collector current rating of 80 A allows the device to handle large power loads, contributing to improved system performance and flexibility.
- Low power dissipation (417 W) optimizes efficiency, reducing thermal losses and the need for extensive cooling infrastructure in end systems.
- Robust TO-247-3 package supports secure through-hole mounting, enhancing reliability in harsh industrial environments and simplifying PCB assembly.
IKWH50N65WR6XKSA1 Advantages vs Typical Alternatives
This IGBT stands out from typical alternatives with its combination of high voltage and current handling, efficient power dissipation, and rugged packaging. These advantages translate to improved reliability, longer operational life, and reduced system-level energy losses??making it a preferred choice for demanding industrial and automation applications where performance and durability are crucial.
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Typical Applications
- Motor Drives: Ideal for industrial motor control systems, this device efficiently handles high switching frequencies and substantial current, supporting precise speed and torque regulation in automation and robotics.
- Power Inverters: Used in renewable energy systems and uninterruptible power supplies (UPS) to convert DC to AC, providing high efficiency and reliability in power conversion circuits.
- Welding Equipment: Supports robust operation in heavy-duty welding machinery, ensuring consistent performance under rapidly changing loads and harsh electrical conditions.
- Industrial Automation: Suitable for use in programmable logic controllers (PLCs), servo drives, and other automation hardware that require dependable high-power switching and control capabilities.
IKWH50N65WR6XKSA1 Brand Info
The IKWH50N65WR6XKSA1 represents a commitment to quality and innovation in the field of power semiconductors. Developed by a leading manufacturer, this IGBT device integrates advanced fabrication techniques and stringent quality controls to ensure consistent, high-level performance. Its design reflects a deep understanding of industrial requirements, offering a balance of electrical robustness, thermal efficiency, and ease of integration??qualities that make it a preferred solution for modern power electronics systems seeking reliability and longevity.
FAQ
What is the maximum voltage supported by the IKWH50N65WR6XKSA1?
The device supports a maximum collector-emitter voltage of 650 V, making it suitable for applications that require high-voltage operation, such as industrial motor drives and power inverters.
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Which package type does this IGBT use, and why is it important?
This IGBT is housed in a TO-247-3 package, which is well-regarded for its combination of mechanical strength and efficient thermal management. The through-hole mounting style ensures secure and stable installation in demanding industrial environments.
What are the key advantages of using the IKWH50N65WR6XKSA1 in inverter applications?
Its high voltage and current ratings, along with low power dissipation, make it highly effective for inverter circuits where efficiency, reliability, and the ability to handle rapid switching are critical for overall system performance.
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How does the power dissipation capability benefit industrial users?
The rated power dissipation of 417 W helps reduce energy losses during switching, which not only increases system efficiency but also minimizes heat buildup, thereby reducing cooling requirements and operational costs.
Is the IKWH50N65WR6XKSA1 suitable for use in harsh environments?
Yes, its robust package, high current handling, and strong voltage ratings make it well-suited for use in challenging environments, including industrial automation, motor drives, and heavy-duty power conversion systems.





