IRF7205TRPBF Overview
The IRF7205TRPBF is a high-performance dual N-channel MOSFET designed for demanding industrial and commercial power management applications. With its advanced Trench technology and low on-resistance, this device is optimized for high efficiency and fast switching, making it an ideal solution for synchronous buck converters, load switches, and power OR-ing circuits. Packaged in a space-saving SO-8 form factor, the IRF7205TRPBF delivers reliable operation and ease of integration for engineers seeking robust solutions. Discover more from IC Manufacturer.
IRF7205TRPBF Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | N-Channel MOSFET (Dual) |
| Drain-Source Voltage (VDS) | 20V |
| Continuous Drain Current (ID) | 6.5A |
| On-Resistance (RDS(on)) | 0.038?? @ 4.5V VGS |
| Gate-Source Voltage (VGS) | ?I12V |
| Power Dissipation (PD) | 2.5W |
| Package / Case | SO-8 |
| Mounting Type | Surface Mount |
IRF7205TRPBF Key Features
- Dual N-channel configuration enables compact, efficient designs by integrating two MOSFETs in a single SO-8 package.
- Low on-resistance reduces conduction losses, directly improving overall system power efficiency for sensitive applications.
- High continuous drain current rating supports demanding load requirements, making it suitable for power switching and conversion circuits.
- Advanced Trench MOSFET technology delivers fast switching speeds, minimizing transition losses and enhancing circuit responsiveness.
IRF7205TRPBF Advantages vs Typical Alternatives
This dual N-channel MOSFET offers lower on-resistance and higher current handling than many conventional devices in similar SO-8 packages. Its efficient Trench technology enables reduced heat generation and improved reliability, making it a preferred choice where board space and performance are both critical. Integration of two MOSFETs further streamlines design and assembly processes.
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Typical Applications
- Synchronous buck converters: Its dual configuration and low RDS(on) are ideal for high-efficiency step-down voltage regulators in industrial and computing equipment.
- Load switching: Suitable for enabling or disconnecting power to critical circuits with minimal power loss and fast response.
- Power OR-ing circuits: Ensures smooth power source selection in redundant power architectures, improving system reliability.
- DC-DC converters: Widely used for efficient power conversion in battery-powered and portable devices where board space is limited.
IRF7205TRPBF Brand Info
The IRF7205TRPBF is manufactured by a globally recognized leader in power semiconductor technology. This device showcases the brand??s commitment to quality and innovation, leveraging advanced MOSFET process technologies to deliver optimal performance in demanding applications. Designed for integration and reliability, it is backed by a strong reputation for delivering high-quality, application-focused components tailored to industrial, telecom, and computing markets.
FAQ
What is the voltage and current rating of the IRF7205TRPBF?
The device supports a maximum drain-source voltage of 20V and a continuous drain current of 6.5A, making it suitable for low-voltage, high-current switching applications commonly found in power management circuits.
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What type of package does the IRF7205TRPBF use?
This dual MOSFET is provided in a compact SO-8 surface mount package. The package design allows for efficient board space utilization and is compatible with automated assembly processes in modern electronics manufacturing.
How does the low RDS(on) benefit power supply designs?
The low on-resistance (0.038?? at 4.5V gate drive) minimizes conduction losses, which is critical in power supply designs aiming for higher efficiency and reduced thermal management requirements.
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Can the IRF7205TRPBF be used in synchronous rectification?
Yes, its dual N-channel configuration and fast switching capability make it well-suited for synchronous rectification in DC-DC converters and switching power supplies, where efficiency and board space are essential.
What are the key considerations when integrating this MOSFET into a design?
Engineers should consider the device??s voltage and current ratings, thermal management needs, and gate drive requirements. The SO-8 package facilitates easy integration, but adequate PCB layout for heat dissipation should also be ensured.






