The 3SMC48A TR13 is a component belonging to the category of surface mount TVS diodes. This entry provides an overview of its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models.
The 3SMC48A TR13 has a standard SMC package with two pins for surface mounting onto circuit boards. The pin configuration is as follows: - Pin 1: Anode - Pin 2: Cathode
The 3SMC48A TR13 operates based on the principle of avalanche breakdown. When a transient voltage event occurs, the diode rapidly conducts to divert excess current away from sensitive components, thereby limiting the voltage across the protected circuit.
The 3SMC48A TR13 is commonly used in various applications including: - Power supplies - Telecommunication equipment - Automotive electronics - Industrial control systems - Consumer electronics
Some alternative models to the 3SMC48A TR13 include: - SMAJ48A - P6SMB48A - SMBJ48A - SMCJ48A
In conclusion, the 3SMC48A TR13 is a vital component in protecting sensitive electronics from transient voltage events. Its robust characteristics, fast response time, and high surge capability make it suitable for a wide range of applications.
Word count: 389
Sure, here are 10 common questions and answers related to the application of 3SMC48A TR13 in technical solutions:
What is the voltage rating of 3SMC48A TR13?
What is the maximum peak pulse current it can handle?
What is the typical capacitance of 3SMC48A TR13?
What is the operating temperature range for 3SMC48A TR13?
Is 3SMC48A TR13 RoHS compliant?
What are the typical applications for 3SMC48A TR13?
Does 3SMC48A TR13 have a low leakage current?
What is the package type for 3SMC48A TR13?
Can 3SMC48A TR13 be used for overvoltage protection in power supplies?
Are there any recommended layout guidelines for using 3SMC48A TR13?
I hope these answers provide the information you were looking for! If you need further details on any specific question, feel free to ask.