
TC4426CPA Low-Side Gate Driver: Product Overview
Description
The TC4426CPA is a versatile and efficient low-side gate driver designed by Microchip Technology. This integrated circuit (IC) is tailored to drive N-Channel and P-Channel MOSFETs, making it an essential component in various electronic applications. With its robust design, the TC4426CPA delivers reliable performance in managing power levels effectively.
Operating within a supply voltage range of 4.5V to 18V, this device is optimized for versatility, accommodating a variety of circuit configurations. Its independent channel type allows for flexible integration in both simple and complex designs. The peak output current of 1.5A for both source and sink ensures that the TC4426CPA can handle the demands of most applications, while its inverting input type offers straightforward control logic.
Features
- Dual Driver Configuration: The TC4426CPA features two independent drivers, allowing for efficient control of multiple MOSFETs within a single package.
- High Efficiency: The device is designed to minimize rise and fall times, with typical values of just 19ns, enhancing the switching speed and overall efficiency of your application.
- Wide Supply Voltage Range: Operates at a voltage range from 4.5V to 18V, making it adaptable for various designs.
- Robust Output Current: Capable of delivering a peak output current of 1.5A, which is sufficient for driving high-performance MOSFETs.
- Inverting Input Logic: Simplifies the design by allowing easy integration with various control systems.
- Operating Temperature Range: Rated for an operating temperature of 0°C to 70°C, ensuring stable performance in different environmental conditions.
- Through-Hole Mounting: The 8-DIP package facilitates easy handling and assembly for prototyping and production.
Applications
The TC4426CPA is ideal for a wide range of applications, including:
- Motor Control: Used in driving motors in robotics and automotive systems.
- Power Management: Effectively controls MOSFETs in power converters and regulators.
- Switching Power Supplies: Facilitates the switching of power supply circuits for enhanced efficiency.
- Lighting Control: Utilized in LED drivers for dimming and switching applications.
- Industrial Automation: Essential in control circuits for industrial machinery and equipment.
Frequently Asked Questions (FAQs)
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What is the main function of the TC4426CPA?
- The TC4426CPA is designed to drive N-Channel and P-Channel MOSFETs in low-side configurations.
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What is the supply voltage range for the TC4426CPA?
- The device operates within a supply voltage range of 4.5V to 18V.
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Can the TC4426CPA drive multiple MOSFETs?
- Yes, it features two independent drivers, allowing you to control multiple MOSFETs simultaneously.
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What is the peak output current of the TC4426CPA?
- The TC4426CPA can deliver a peak output current of 1.5A for both sourcing and sinking.
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What type of input does the TC4426CPA use?
- It utilizes an inverting input type, which is compatible with various control logic levels.
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What is the rise and fall time of the TC4426CPA?
- The typical rise and fall times are 19ns, ensuring quick switching capabilities.
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What is the operating temperature range for this IC?
- The operating temperature range is 0°C to 70°C.
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How is the TC4426CPA packaged?
- It is available in an 8-DIP (0.300", 7.62mm) package, suitable for through-hole mounting.
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Is the TC4426CPA suitable for high-frequency applications?
- Yes, its low rise and fall times make it suitable for high-frequency switching applications.
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Where can I purchase the TC4426CPA?
- You can buy the TC4426CPA at Izzition Electronics.
Conclusion
The TC4426CPA Low-Side Gate Driver from Microchip Technology is an exceptional choice for designers seeking a reliable and efficient solution for driving MOSFETs in various applications. With its robust features, flexibility in configuration, and ability to deliver high performance, it stands out as a valuable component in modern electronic designs. For more information or to make a purchase, visit Izzition Electronics.