IKW50N65ET7XKSA1 Overview
The IKW50N65ET7XKSA1 is a robust insulated-gate bipolar transistor (IGBT) optimized for industrial power control and high voltage switching. Engineered for efficiency, it operates reliably in demanding environments, making it suitable for applications such as inverters, motor drives, and power supplies. With its advanced trench field-stop technology, this device achieves low conduction and switching losses, resulting in minimized energy consumption and improved thermal performance. The IKW50N65ET7XKSA1 is designed to meet the rigorous requirements of modern industrial systems. For more information, visit IC Manufacturer.
IKW50N65ET7XKSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Part Number | IKW50N65ET7XKSA1 |
| Device Type | IGBT (Insulated Gate Bipolar Transistor) |
| Collector-Emitter Voltage (VCES) | 650 V |
| Continuous Collector Current (IC) | 50 A |
| Configuration | Single IGBT |
| Technology | Trench Field-Stop |
| Mounting Type | Through Hole |
| Package / Case | TO-247-3 |
IKW50N65ET7XKSA1 Key Features
- 650 V Collector-Emitter Voltage enables use in high voltage industrial and energy conversion systems, supporting robust insulation and operational safety.
- 50 A continuous collector current capability provides ample headroom for high power switching, ensuring reliable performance in demanding load conditions.
- Trench field-stop technology reduces both conduction and switching losses, improving overall system efficiency and minimizing heat generation.
- TO-247-3 package offers excellent thermal dissipation and mechanical durability, facilitating straightforward integration into existing power modules and assemblies.
IKW50N65ET7XKSA1 Advantages vs Typical Alternatives
Compared to standard IGBTs, this device stands out for its combination of high voltage handling and substantial current capacity, all within a rugged through-hole package. The use of advanced trench field-stop technology further reduces losses, resulting in superior efficiency and reliability for industrial applications. This makes it especially suitable for engineers seeking optimal performance, thermal management, and long-term operational stability in their power designs.
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Typical Applications
- Industrial inverters: The high voltage and current ratings, combined with efficient switching, make this component ideal for inverters used in factory automation, renewable energy systems, and drives.
- Motor drives: Its robust current handling and low losses enable efficient motor control in pumps, fans, compressors, and other heavy-duty equipment.
- Switch-mode power supplies: The device supports high efficiency and reliable operation in power conversion for industrial and telecom sectors.
- Uninterruptible power supplies (UPS): Its high reliability and performance help maintain stable power delivery in mission-critical backup systems.
IKW50N65ET7XKSA1 Brand Info
The IKW50N65ET7XKSA1 is produced by a leading global semiconductor manufacturer, recognized for innovation in power electronics. This specific model is part of a portfolio designed for high efficiency and ruggedness, catering to industrial, energy, and automation markets. It embodies the brand??s commitment to technological excellence, offering a well-balanced mix of performance, reliability, and ease of integration for power system designers.
FAQ
What type of applications benefit most from the IKW50N65ET7XKSA1?
This IGBT is particularly well-suited for high voltage, high current applications such as industrial inverters, motor drives, and robust power supplies. Its efficiency and reliability make it a preferred choice for demanding energy and automation environments.
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What packaging is available for this device?
The device comes in a TO-247-3 package, which is favored in industrial power applications due to its excellent thermal properties and ease of mounting for through-hole PCB designs.
How does the field-stop trench technology improve performance?
Field-stop trench technology significantly reduces conduction and switching losses compared to conventional IGBTs. This results in higher overall energy efficiency and lower heat dissipation, which is critical for compact or thermally constrained designs.
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Is this IGBT suitable for fast switching applications?
Yes, the device??s advanced technology enables efficient and rapid switching, making it suitable for modern power conversion systems that require high frequency and minimal loss during operation.
What is the maximum voltage and current rating?
The IGBT supports a maximum collector-emitter voltage of 650 V and a continuous collector current of 50 A, making it capable of handling substantial power levels in industrial and commercial systems.





