IKP15N65H5XKSA1 Overview
The IKP15N65H5XKSA1 is a robust power MOSFET optimized for high-voltage, high-speed switching applications in industrial electronics. Designed with advanced silicon technology, this device enables efficient energy conversion and precise control in demanding environments. Its low RDS(on) and high voltage rating make it ideal for applications like switched-mode power supplies (SMPS), motor drives, and inverters. Engineers benefit from its reliability and compact TO-220 package, which streamlines integration into existing designs. For more details, please visit IC Manufacturer.
IKP15N65H5XKSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Technology | Power MOSFET |
| Drain-Source Voltage (VDS) | 650 V |
| Continuous Drain Current | 15 A |
| RDS(on) (max) | 0.29 ?? |
| Gate Charge (typ) | 76 nC |
| Package | TO-220 |
| Polarity | N-channel |
| Operating Temperature Range | -55??C to +150??C |
| Mounting Type | Through Hole |
IKP15N65H5XKSA1 Key Features
- High Voltage Capability (650 V): Enables safe operation in demanding industrial power systems, supporting robust protection against voltage spikes.
- Low RDS(on): Reduces conduction losses, leading to improved energy efficiency and lower device heating in power switching applications.
- Fast Switching Performance: The optimized gate charge allows for rapid switching, minimizing power dissipation and enhancing overall system responsiveness.
- TO-220 Package: Offers versatile, industry-standard packaging for straightforward PCB integration and effective heat dissipation.
IKP15N65H5XKSA1 Advantages vs Typical Alternatives
Compared with standard power MOSFETs, this device delivers a compelling combination of high voltage tolerance, low on-resistance, and fast switching characteristics. These attributes result in lower power losses, increased system reliability, and greater design flexibility for industrial and commercial electronics. The robust TO-220 package further enhances mechanical and thermal stability for demanding applications.
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Typical Applications
- Switched-Mode Power Supplies (SMPS): Well-suited for primary-side switching, ensuring efficient power conversion and stable operation in industrial and commercial power systems.
- Motor Drives: Enables precise speed and torque control, supporting energy-efficient operation in automation and HVAC systems.
- Inverters: Provides reliable switching for renewable energy inverters, optimizing conversion efficiency and minimizing thermal stress.
- Uninterruptible Power Supplies (UPS): Enhances backup power reliability by delivering fast response and stable switching in emergency power applications.
IKP15N65H5XKSA1 Brand Info
This product is manufactured by a globally recognized leader in semiconductor technology, known for delivering high-performance discrete components for industrial and power electronics. The IKP15N65H5XKSA1 is part of a comprehensive MOSFET portfolio that prioritizes efficiency, reliability, and ease of integration. Its proven design and quality assurance make it a preferred choice for critical applications where stability and long-term performance are essential.
FAQ
What is the maximum drain-source voltage rating for this power MOSFET?
The device offers a drain-source voltage rating of 650 V, allowing it to be used safely in high-voltage environments typical of industrial power supplies and converters.
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Which package type does the IKP15N65H5XKSA1 use, and what are its integration benefits?
This MOSFET comes in a TO-220 package, which is favored for its ease of mounting, effective heat dissipation, and suitability for through-hole PCB assembly in industrial applications.
How does the low RDS(on) value affect performance in power applications?
A low RDS(on) of 0.29 ?? minimizes conduction losses, helping to improve overall energy efficiency and reduce heat generation during high-current operation in switching circuits.
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What types of systems commonly use this N-channel MOSFET?
It is widely used in switched-mode power supplies, motor drives, inverters, and uninterruptible power supplies where high-voltage, high-speed switching, and reliability are required.
Can this device handle fast switching frequencies typical in modern SMPS designs?
Yes, with a typical gate charge of 76 nC and optimized design, the device is suitable for fast switching, making it ideal for high-frequency power supply and inverter applications.





