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P4KE150

P4KE150

Introduction

P4KE150 is a transient voltage suppressor (TVS) diode belonging to the category of electronic components used for protecting sensitive electronic devices from voltage spikes and transients. This entry provides an overview of the basic information, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models of P4KE150.

Basic Information Overview

  • Category: Electronic Component
  • Use: Protection against voltage spikes and transients
  • Characteristics: Fast response time, high surge capability, low clamping voltage
  • Package: DO-41, SMA, SMB, SMC
  • Essence: TVS Diode
  • Packaging/Quantity: Tape & Reel, 5000 units per reel

Specifications

  • Voltage - Reverse Standoff (Typ): 128V
  • Voltage - Breakdown (Min): 142V
  • Voltage - Clamping (Max) @ Ipp: 207V
  • Current - Peak Pulse (10/1000µs): 6.5A
  • Power - Peak Pulse: 400W
  • Type: Zener

Detailed Pin Configuration

The P4KE150 TVS diode has two pins, anode, and cathode, which are connected in reverse bias across the circuit to be protected.

Functional Features

  • Fast response time
  • High surge capability
  • Low clamping voltage
  • RoHS compliant

Advantages and Disadvantages

Advantages

  • Effective protection against voltage transients
  • Fast response time
  • Wide operating temperature range

Disadvantages

  • Limited power dissipation capability
  • May require additional circuitry for comprehensive protection

Working Principles

When a voltage transient occurs, the P4KE150 TVS diode conducts and clamps the transient voltage to a safe level, protecting the downstream circuitry.

Detailed Application Field Plans

P4KE150 is widely used in various applications including: - Power supplies - Telecommunication equipment - Automotive electronics - Industrial control systems - Consumer electronics

Detailed and Complete Alternative Models

  • P4KE6.8
  • P4KE10
  • P4KE15
  • P4KE18
  • P4KE22
  • P4KE33
  • P4KE43
  • P4KE51
  • P4KE68
  • P4KE75

In conclusion, P4KE150 is a crucial component in safeguarding electronic circuits from voltage transients and spikes, finding extensive use across diverse industries and applications.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací P4KE150 v technických řešeních

  1. What is P4KE150?

    • P4KE150 is a type of transient voltage suppressor diode, commonly used to protect electronic circuits from voltage spikes and transients.
  2. What is the maximum peak pulse power of P4KE150?

    • The maximum peak pulse power of P4KE150 is 400 watts.
  3. What is the breakdown voltage of P4KE150?

    • The breakdown voltage of P4KE150 is 150 volts.
  4. How does P4KE150 protect electronic circuits?

    • P4KE150 clamps the voltage during transient events, diverting excess current away from sensitive components and preventing damage.
  5. What are the typical applications of P4KE150?

    • P4KE150 is commonly used in power supplies, telecommunications equipment, automotive electronics, and industrial control systems for surge protection.
  6. What is the response time of P4KE150?

    • The response time of P4KE150 is very fast, typically in the nanosecond range, providing quick protection against voltage spikes.
  7. Can P4KE150 be used for overvoltage protection in automotive applications?

    • Yes, P4KE150 is suitable for overvoltage protection in automotive electronics, such as in vehicle control units and infotainment systems.
  8. Is P4KE150 RoHS compliant?

    • Yes, P4KE150 is RoHS compliant, meeting the requirements for restriction of hazardous substances in electronic products.
  9. What is the operating temperature range of P4KE150?

    • The operating temperature range of P4KE150 is typically -55°C to 175°C, making it suitable for a wide range of environments.
  10. Are there any specific layout considerations when using P4KE150 in a circuit?

    • It is important to minimize the length of the traces connecting P4KE150 to the protected circuit and to ensure proper grounding to maximize its effectiveness in suppressing transients.