IPW60R040C7XKSA1 Overview
The IPW60R040C7XKSA1 is a high-performance N-channel power MOSFET developed for demanding industrial and power supply applications. With advanced silicon technology and optimized packaging, this device is engineered for efficient switching and robust operation in high-voltage circuits. The IPW60R040C7XKSA1 delivers low on-resistance and high-speed switching, supporting designers in achieving increased system efficiency, reduced power loss, and reliable operation in a variety of applications. For more details, visit IC Manufacturer.
IPW60R040C7XKSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET |
| Drain-Source Voltage (VDS) | 600 V |
| Continuous Drain Current (ID) | 41 A |
| RDS(on) (Max) | 0.040 ?? |
| Gate Charge (Qg) | 186 nC |
| Power Dissipation (PD) | 208 W |
| Package | TO-247-3 |
| Operating Temperature Range | -55??C to +150??C |
IPW60R040C7XKSA1 Key Features
- Low RDS(on) of 0.040 ?? minimizes conduction losses, enabling superior energy efficiency in high-power circuits.
- High voltage capability (600 V) supports robust operation in industrial power conversion and switching applications.
- High continuous drain current rating (41 A) makes it suitable for applications requiring significant power handling and reliability.
- Gate charge of 186 nC allows for fast switching, reducing switching losses and supporting high-frequency operation.
IPW60R040C7XKSA1 Advantages vs Typical Alternatives
This device delivers a compelling balance of low on-resistance and high voltage capability, improving efficiency and reducing heat generation compared to standard MOSFETs. Its robust current handling and efficient switching performance make it a preferred choice for engineers seeking enhanced reliability and power density in demanding industrial and power supply designs.
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Typical Applications
- Switching power supplies: The device is ideal for use in high-efficiency SMPS designs, supporting reliable and low-loss operation at both primary and secondary stages.
- Motor drives: Suitable for industrial and commercial motor control where high current, fast switching, and rugged performance are essential.
- Power factor correction circuits: Enables improved energy efficiency and reduced harmonic distortion in power conversion systems.
- Renewable energy inverters: Useful in solar inverters and other renewable energy interfaces, providing high reliability under fluctuating load conditions.
IPW60R040C7XKSA1 Brand Info
The IPW60R040C7XKSA1 is part of a well-established portfolio of high-voltage power MOSFETs, recognized for their advanced technology and robust construction. This product is engineered to meet the requirements of industrial automation, energy, and high-power conversion markets, offering consistent performance in challenging environments. Its proven reliability and efficiency make it a trusted solution for engineers and sourcing specialists seeking dependable semiconductor devices for critical applications.
FAQ
What are the primary benefits of using this MOSFET in high-voltage applications?
The main advantages include its high breakdown voltage (600 V), low on-resistance (0.040 ??), and strong current handling (41 A). These features contribute to reduced conduction losses, robust operation, and increased system efficiency in high-voltage environments.
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Is the device suitable for fast-switching applications?
Yes, with a gate charge of 186 nC, the MOSFET supports fast switching speeds, making it well-suited for high-frequency applications such as switch mode power supplies and motor drives that require efficient and rapid transitions.
In what package is the component available?
The product is supplied in a TO-247-3 package, which is designed for high-power dissipation and reliable thermal management. This makes it ideal for demanding industrial and energy-related applications that require solid mechanical and thermal characteristics.
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Can this device be used in renewable energy systems?
Absolutely. Its high voltage and current ratings, combined with efficient switching, make it a strong candidate for use in solar inverters and other renewable energy conversion systems, providing reliable operation even under variable load conditions.
What should be considered regarding thermal management?
With a maximum power dissipation of 208 W and an operating temperature range from -55??C to +150??C, appropriate heatsinking and board design are recommended to maintain optimal operating conditions and ensure long-term device reliability in power-intensive applications.






