MIKROE-5065 USB TO I2C 2 CLICK prototype board
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In Stock
SKU
325728558290
£63.46
The TSM7NC65CF C0G is a high-performance N-channel MOSFET designed for a wide range of power switching applications. With a drain-source voltage rating of 650V and a continuous drain current of 7A, this MOSFET is well-suited for applications such as power supplies, motor control, and lighting systems. The ITO220S package provides excellent thermal performance, enhancing the device's reliability and performance in demanding environments. Its key features include low gate charge, fast switching speed, and robust avalanche characteristics, making it an ideal choice for efficient and reliable power conversion.
This MOSFET utilizes advanced trench MOSFET technology to achieve low on-resistance (RDS(on)), minimizing conduction losses and improving overall system efficiency. The low gate charge (Qg) and gate-to-drain charge (Qgd) contribute to faster switching speeds, reducing switching losses and enabling higher frequency operation. The TSM7NC65CF C0G is also designed to withstand high avalanche energy, providing added protection against voltage transients and ensuring robust performance in harsh operating conditions. The insulated ITO220S package further enhances its safety and reliability.
The TSM7NC65CF C0G is particularly well-suited for applications where high efficiency and reliability are critical. The ITO220S package provides excellent thermal dissipation, allowing the device to operate at higher power levels without overheating. This makes it an ideal choice for use in power supplies, motor drives, and other applications where high power density is required. The device's high voltage and current ratings also make it suitable for use in high-power applications, such as solar inverters and uninterruptible power supplies (UPS).
When selecting a MOSFET for your application, it's crucial to consider factors such as voltage and current ratings, on-resistance, switching speed, and thermal performance. The TSM7NC65CF C0G excels in all these areas, making it a versatile and reliable choice. Its low on-resistance minimizes power losses, while its fast switching speed reduces switching losses. The ITO220S package provides excellent thermal dissipation, ensuring that the device operates within safe temperature limits. This MOSFET is a cost-effective solution for a wide range of power switching applications.
Upgrade your power electronics designs with the TSM7NC65CF C0G MOSFET. Experience the benefits of its high voltage and current ratings, low on-resistance, and fast switching speed. Its robust design and excellent thermal performance ensure reliable operation in demanding applications. Order yours today and take your power electronics designs to the next level. Don't miss out on this opportunity to improve the efficiency and reliability of your products. Click here to purchase now and revolutionize your power solutions!
| Product Name | MIKROE-5065 USB TO I2C 2 CLICK prototype board |
|---|---|
| SKU | 325728558290 |
| Price | £63.46 |
| MIKROE-5065 USB TO I2C 2 CLICK prototype board Color | As per image |
| Category | Integrated Circuits |
| Brand | Nikko Electronics ltd |
| Product Code | 325728558290 |
| Availability | Yes |
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Yes, MIKROE-5065 USB TO I2C 2 CLICK prototype board can be purchased in smaller quantities, with no minimum order requirement.
Check the installation, connections, and power supply, and consult the troubleshooting section in the manual.
All our MIKROE-5065 USB TO I2C 2 CLICK prototype board go through strict quality control procedures before being shipped.
Bulk discounts may be available when ordering large quantities of MIKROE-5065 USB TO I2C 2 CLICK prototype board. Please mail us for the same.
Proper handling ensures the longevity of MIKROE-5065 USB TO I2C 2 CLICK prototype board.
Many MIKROE-5065 USB TO I2C 2 CLICK prototype board are designed for high-temperature environments, but it's important to check the specifications.
MIKROE-5065 USB TO I2C 2 CLICK prototype board offers superior reliability and efficiency, especially in demanding applications.