P4KE36A - Diode TVS
Basic Information Overview
- Category: Diode Transient Voltage Suppressor (TVS)
- Use: Protection against voltage transients in electronic circuits
- Characteristics: Fast response time, low clamping voltage, high surge capability
- Package: DO-41 or SMA package
- Essence: Provides overvoltage protection to sensitive electronic components
- Packaging/Quantity: Available in tape and reel packaging, quantity varies by manufacturer
Specifications
- Peak Pulse Power: 400 W
- Breakdown Voltage Range: 30 V to 33 V
- Maximum Clamping Voltage: 48.4 V at 10 A
- Operating Temperature Range: -55°C to +175°C
- Storage Temperature Range: -55°C to +175°C
Detailed Pin Configuration
The P4KE36A diode TVS has a standard axial lead configuration with two leads.
Functional Features
- Transient Voltage Suppression: Protects against voltage transients caused by lightning, ESD, or switching transients
- Fast Response Time: Quickly clamps transient voltages to safe levels
- Low Clamping Voltage: Limits the voltage across the protected circuit to minimize damage
Advantages and Disadvantages
Advantages
- Effective protection against voltage transients
- Fast response time
- Low clamping voltage
Disadvantages
- Limited surge capability compared to higher power TVS diodes
- Requires careful consideration of placement in circuit design
Working Principles
The P4KE36A operates by diverting excess transient voltage away from sensitive electronic components, thereby protecting them from damage. When a transient voltage exceeds the breakdown voltage of the diode, it conducts and clamps the voltage to a safe level.
Detailed Application Field Plans
The P4KE36A is commonly used in various electronic systems, including:
- Power supplies
- Communication equipment
- Automotive electronics
- Industrial control systems
- Consumer electronics
Detailed and Complete Alternative Models
- P4KE6.8A: Lower breakdown voltage (6.8 V)
- P4KE51A: Higher breakdown voltage (51 V)
- P4KE440A: Higher peak pulse power (440 W)
This completes the entry for the P4KE36A diode TVS, providing comprehensive information on its product category, basic overview, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.
Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de P4KE36A en soluciones técnicas
Sure, here are 10 common questions and answers related to the application of P4KE36A in technical solutions:
What is P4KE36A?
- P4KE36A is a type of transient voltage suppressor diode designed to protect electronic circuits from voltage spikes and transients.
What is the maximum peak pulse power of P4KE36A?
- The maximum peak pulse power of P4KE36A is typically 400 watts.
What is the breakdown voltage of P4KE36A?
- The breakdown voltage of P4KE36A is 36 volts.
How does P4KE36A protect electronic circuits?
- P4KE36A clamps the voltage across the circuit it is protecting by diverting excess current away from sensitive components when a transient event occurs.
What are the typical applications of P4KE36A?
- P4KE36A is commonly used in power supplies, automotive electronics, telecommunications equipment, and industrial control systems to protect against voltage surges.
Can P4KE36A be used for overvoltage protection in DC power lines?
- Yes, P4KE36A can be used to protect DC power lines from overvoltage events.
What is the response time of P4KE36A during a transient event?
- The response time of P4KE36A is very fast, typically in the nanosecond range, providing quick protection to the circuit.
Is P4KE36A suitable for high-frequency applications?
- Yes, P4KE36A is suitable for high-frequency applications due to its fast response time and low capacitance.
What is the operating temperature range of P4KE36A?
- The operating temperature range of P4KE36A is typically -55°C to 175°C, making it suitable for a wide range of environments.
Are there any specific mounting or handling considerations for P4KE36A?
- P4KE36A should be mounted close to the protected circuit and proper ESD precautions should be taken during handling to avoid damaging the diode.
I hope these answers provide the information you were looking for! If you have any more questions, feel free to ask.