Infineon’s IPW60R024CFD7 is a high-voltage power MOSFET suitable for servers, telecommunications, and EV charging stations; Mingjiada Electronics specializes in supplying and recycling these components.
In today’s rapidly evolving era of digitalization and electrification, servers, telecommunications infrastructure, and electric vehicle charging stations place stringent demands on the efficiency and power density of power supply systems. Infineon’s IPW60R024CFD7, a flagship product of the CoolMOS™ CFD7 series, was specifically designed to address the energy efficiency challenges in these high-power applications. As a professional electronic component supplier, Mingjiada Electronics has long supplied large quantities of genuine IPW60R024CFD7 devices and offers recycling services for this model.
Product Overview: 600V CoolMOS™ CFD7 Super-Junction Technology
The IPW60R024CFD7 is an N-channel 600V super-junction power MOSFET housed in a TO-247-3 package. Based on Infineon’s revolutionary CoolMOS™ super-junction technology and featuring an integrated ultra-fast body diode, it is the latest platform specifically optimized for soft-switching topologies (such as phase-shifted full-bridge ZVS and LLC resonant circuits).
Key Parameters
Drain-Source Voltage (Vdss): 600V / 650V On-Resistance (RDS(on)) 24 mΩ @ 10V
Continuous Drain Current (Id): 49A–77A Gate Charge (Qg) 183 nC @ 10V
Power Dissipation (Pd): 320 W Package Type: TO-247-3
Operating Temperature: -55°C to +150°C Input Capacitance (Ciss): 7268 pF
Key Technical Advantages: Why Choose the IPW60R024CFD7?
This device achieves a perfect balance of efficiency and reliability in resonant topologies, primarily due to the following characteristics:
Industry-leading reverse recovery performance (Qrr): As the successor to the CFD2 series, CFD7 technology reduces reverse recovery charge (Qrr) by up to 69% compared to competing products, while featuring an ultra-fast body diode and an extremely short reverse recovery time (trr). This significantly reduces switching losses in LLC and ZVS topologies.
Ultra-low gate charge and on-resistance: An extremely low on-resistance of 24 mΩ, combined with low gate charge (Qg), delivers the industry’s lowest figure of merit (FOM: RDS(on) × Qg), ensuring ultra-high efficiency under both light-load and full-load conditions.
Outstanding Durability and Reliability: The device features excellent hard-switching robustness and improved tolerance to reverse diode dv/dt and diF/dt, enabling it to maintain high reliability even in harsh industrial environments while supporting higher power density designs.
Key Applications
The IPW60R024CFD7 is an ideal choice for resonant topologies in high-power switching power supplies (SMPS) and is widely used in the following areas:
Server and Data Center Power Supplies: Provides efficient, compact power conversion solutions for high-performance computing, meeting the growing demands of data processing.
Telecommunications Infrastructure Power Supplies: Significantly improves overall system efficiency and reduces thermal management costs in communication base stations and data transmission equipment.
Electric Vehicle (EV) Charging Stations: Suitable for off-vehicle DC fast-charging modules, shortening charging times and reducing operating costs by improving efficiency.
Other Industrial Power Supplies: Such as solar inverters, PC power supplies, and LLC resonant converters.
Product Supply and Recycling Services
As a well-known independent distributor in the industry, Mingjiada Electronics is committed to providing customers with reliable supply chain support:
Stable Spot Supply: Extensive spot inventory of the IPW60R024CFD7, guaranteed to be genuine OEM products, to support various R&D and mass production needs.
Professional Recycling Services: Mingjiada Electronics not only supplies new products but also recycles this model and various other electronic components, helping customers monetize their inventory assets.
Conclusion
With its cutting-edge CoolMOS™ CFD7 technology, the Infineon IPW60R024CFD7 sets a new efficiency standard for high-voltage power conversion. Whether handling the demanding loads of server power supplies or improving the energy efficiency of electric vehicle charging stations, it is the component of choice for engineers optimizing resonant topology designs. To obtain the latest pricing or manage your inventory, please contact Mingjiada Electronics immediately.
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