IPW60R018CFD7XKSA1 Overview
The IPW60R018CFD7XKSA1 is a high-performance N-channel MOSFET designed for demanding industrial and power management applications. With its advanced CoolMOS? C7 technology, this device delivers exceptionally low on-resistance and fast switching capabilities, enabling greater efficiency in high-voltage circuits. Its TO-247 3-pin package supports high power densities and robust thermal performance, making it suitable for environments where reliability and efficiency are essential. For engineers and sourcing specialists looking for a competitive edge in system design, this MOSFET offers a compelling mix of performance, thermal management, and rugged construction. Discover more at IC Manufacturer.
IPW60R018CFD7XKSA1 Technical Specifications
| Parameter | Value |
|---|---|
| Device Type | N-Channel MOSFET |
| Technology | CoolMOS? C7 |
| Drain-to-Source Voltage (VDS) | 600 V |
| On-Resistance (RDS(on)) | 0.018 ?? |
| Continuous Drain Current (ID) | Known value as per datasheet |
| Gate Charge (Qg) | Known value as per datasheet |
| Package | TO-247, 3-pin |
| Mounting Type | Through Hole |
| Polarity | N-Channel |
| Channel Mode | Enhancement |
IPW60R018CFD7XKSA1 Key Features
- Ultra-low on-resistance of 0.018 ?? minimizes conduction losses, improving overall system efficiency and reducing heat generation.
- Advanced CoolMOS? C7 technology enables fast switching, which is crucial for high-frequency power conversion and minimizes switching losses.
- Robust TO-247 package enhances thermal management and supports high power dissipation, making it ideal for industrial environments.
- High voltage rating (600 V) allows for use in demanding power supply and inverter topologies, supporting a wide range of industrial and commercial applications.
IPW60R018CFD7XKSA1 Advantages vs Typical Alternatives
Compared to standard MOSFETs, this component delivers lower on-resistance and higher efficiency, which directly translates to reduced power losses and thermal stress. The integration of CoolMOS? C7 technology ensures faster switching speeds and improved reliability, providing a superior option for engineers seeking enhanced performance, reduced energy consumption, and robust system integration in power electronics.
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Typical Applications
- Switch-mode power supplies (SMPS): Essential for high-efficiency energy conversion in industrial, telecom, and server power systems, leveraging the device??s low on-resistance and fast switching.
- Motor drives: Suitable for industrial drives and automation, where precise control and high reliability are required.
- Solar inverters: Supports the rigorous demands of photovoltaic inverters, maximizing power conversion efficiency in solar energy systems.
- Uninterruptible power supplies (UPS): Used in backup power systems to ensure consistent energy delivery and minimize heat in critical infrastructure.
IPW60R018CFD7XKSA1 Brand Info
This MOSFET is part of a reputable series recognized for its innovative CoolMOS? C7 technology. The product is specifically engineered to meet the needs of modern industrial and high-performance power applications, offering a robust TO-247 package for easy integration and reliable operation. Its blend of low on-resistance, high voltage capability, and advanced thermal management reflects the manufacturer??s commitment to quality and efficiency in power semiconductor devices.
FAQ
What are the main benefits of using the IPW60R018CFD7XKSA1 in high-power designs?
The main benefits include ultra-low on-resistance for minimized conduction losses, fast switching for improved efficiency, and a robust TO-247 package that handles high thermal loads, making it ideal for high-power industrial and energy conversion systems.
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Is the IPW60R018CFD7XKSA1 suitable for compact designs?
While the TO-247 package is typically used in higher power applications, it offers excellent thermal performance which can help reduce the need for extensive cooling solutions in compact, high-density systems.
How does CoolMOS? C7 technology impact the device??s performance?
This technology allows for significantly lower switching and conduction losses, enabling higher operating frequencies and improved overall system efficiency compared to traditional MOSFET technologies.
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Can this device be used in renewable energy systems?
Yes, its high voltage and efficiency characteristics make it especially suitable for renewable energy applications such as solar inverters, where maximizing conversion efficiency and reliability is critical.
What mounting options are available for this MOSFET?
The device comes in a through-hole TO-247 package, supporting straightforward installation and reliable electrical and thermal connections needed in industrial and power electronic assemblies.






