The 15KPA40CE3/TR13 is a high-performance transient voltage suppressor (TVS) diode designed to protect sensitive electronic equipment from voltage transients induced by lightning and other transient voltage events. This entry provides a comprehensive overview of the product, including its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
The 15KPA40CE3/TR13 TVS diode typically features a standard 2-lead axial package with the following pin configuration: - Pin 1: Anode - Pin 2: Cathode
The 15KPA40CE3/TR13 operates based on the principle of avalanche breakdown, where it rapidly conducts excess current when the voltage across it exceeds the breakdown voltage. This effectively diverts the transient energy away from sensitive components, protecting them from damage.
The 15KPA40CE3/TR13 is widely used in various applications requiring robust transient voltage protection, including: - Power supplies - Telecommunication equipment - Industrial control systems - Automotive electronics - Consumer electronics
Several alternative TVS diode models with similar performance characteristics include: - 15KPA Series (e.g., 15KPA36A, 15KPA48CA) - P6KE Series (e.g., P6KE39A, P6KE51CA) - SA Series (e.g., SA33A, SA43CA)
In summary, the 15KPA40CE3/TR13 TVS diode offers high-performance transient voltage protection for a wide range of electronic applications, making it an essential component in safeguarding sensitive equipment from damaging voltage transients.
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What is the application of 15KPA40CE3/TR13?
How does the 15KPA40CE3/TR13 protect electronic circuits?
What are the typical operating conditions for 15KPA40CE3/TR13?
Can the 15KPA40CE3/TR13 be used in automotive applications?
What is the breakdown voltage of 15KPA40CE3/TR13?
Is the 15KPA40CE3/TR13 RoHS compliant?
Can the 15KPA40CE3/TR13 be used in telecommunications equipment?
What package type does the 15KPA40CE3/TR13 come in?
Does the 15KPA40CE3/TR13 require any special heat management considerations?
Are there any recommended layout considerations when using 15KPA40CE3/TR13 in a PCB design?