The TPSMC13AHE3B/I belongs to the category of semiconductor devices and is specifically a Transient Voltage Suppressor (TVS) diode. This product is commonly used for protecting sensitive electronics from voltage transients induced by lightning, electrostatic discharge (ESD), and other transient voltage events. The TPSMC13AHE3B/I is characterized by its high surge capability, low clamping voltage, and fast response time. It is typically packaged in a small, surface-mount package and is available in various packaging quantities to suit different application needs.
The TPSMC13AHE3_B/I TVS diode typically has two pins, with the cathode and anode connections clearly marked on the device. The pin configuration is as follows: - Pin 1: Cathode - Pin 2: Anode
The TPSMC13AHE3_B/I operates based on the principle of avalanche breakdown. When a transient voltage event occurs, the TVS diode rapidly conducts, diverting the excess current away from the protected circuitry and limiting the voltage across it to a safe level. This action effectively suppresses the transient voltage and protects the connected electronics.
The TPSMC13AHE3_B/I is widely used in various electronic systems, including: - Telecommunication equipment - Automotive electronics - Industrial control systems - Consumer electronics - Power supplies
Alternative Model 1: TPSMC15AHE3_B/I
Alternative Model 2: TPSMC18AHE3_B/I
Alternative Model 3: TPSMC24AHE3_B/I
In conclusion, the TPSMC13AHE3_B/I TVS diode offers robust transient voltage suppression capabilities, making it an essential component in safeguarding sensitive electronics from damaging voltage transients.
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Sure, here are 10 common questions and answers related to the application of TPSMC13AHE3_B/I in technical solutions:
What is the maximum repetitive peak reverse voltage of TPSMC13AHE3_B/I?
What is the forward voltage drop of TPSMC13AHE3_B/I at a specified current?
What is the maximum average forward rectified current for TPSMC13AHE3_B/I?
What is the typical junction capacitance of TPSMC13AHE3_B/I at a specified voltage?
What is the operating temperature range for TPSMC13AHE3_B/I?
Can TPSMC13AHE3_B/I be used for surge protection in power supply applications?
Is TPSMC13AHE3_B/I suitable for overvoltage protection in automotive electronics?
What are the typical applications of TPSMC13AHE3_B/I in circuit protection?
Does TPSMC13AHE3_B/I meet the requirements for RoHS compliance?
What are the key advantages of using TPSMC13AHE3_B/I in technical solutions?