The SML4763A-E3/61 belongs to the category of surface mount TVS diodes. These diodes are designed to protect sensitive electronics from voltage transients induced by lightning, inductive load switching, and electrostatic discharge. The SML4763A-E3/61 is characterized by its high surge capability, low clamping voltage, and fast response time. It is available in a compact package, making it suitable for various applications where space is limited. The product is typically sold in reels or tubes, with a specific quantity per package.
The detailed pin configuration of the SML4763A-E3/61 includes [provide detailed pin configuration here].
The SML4763A-E3/61 offers robust transient voltage protection for sensitive electronics. Its fast response time ensures rapid clamping of transient voltages, while its low clamping voltage helps to minimize potential damage to the protected circuitry.
Advantages: - High surge capability - Fast response time - Low clamping voltage
Disadvantages: - [List any disadvantages here]
The working principle of the SML4763A-E3/61 involves diverting excessive transient current away from sensitive components by providing a low-impedance path to ground. This helps to limit the voltage across the protected circuitry, thereby safeguarding it from damage.
The SML4763A-E3/61 is commonly used in various applications, including: - Telecommunication equipment - Industrial control systems - Automotive electronics - Consumer electronics - Power supplies
Some alternative models to the SML4763A-E3/61 include: - SML4764A-E3/61 - SML4762A-E3/61 - [Add more alternative models as needed]
This comprehensive range of TVS diodes provides engineers with options to suit their specific design requirements.
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What is the SML4763A-E3/61?
What are the key features of the SML4763A-E3/61?
In what applications can the SML4763A-E3/61 be used?
What is the maximum peak pulse power of the SML4763A-E3/61?
What is the operating temperature range of the SML4763A-E3/61?
How does the SML4763A-E3/61 compare to similar TVS diodes on the market?
What is the recommended layout and circuit design for integrating the SML4763A-E3/61 into a technical solution?
Can the SML4763A-E3/61 be used in outdoor applications?
Are there any reliability tests or certifications associated with the SML4763A-E3/61?
Where can I find additional resources and support for implementing the SML4763A-E3/61 in my technical solution?