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P4KE6.8CA-E3/73

P4KE6.8CA-E3/73

Product Overview

Category

The P4KE6.8CA-E3/73 belongs to the category of transient voltage suppressor (TVS) diodes.

Use

It is used to protect electronic circuits from voltage transients induced by lightning, electrostatic discharge (ESD), and other transient voltage events.

Characteristics

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

Package

The P4KE6.8CA-E3/73 is typically available in a DO-41 package.

Essence

The essence of this product lies in its ability to divert excessive voltage away from sensitive components, thereby safeguarding them from damage.

Packaging/Quantity

The P4KE6.8CA-E3/73 is commonly packaged in reels or bulk packaging, with quantities varying based on manufacturer specifications.

Specifications

  • Reverse Standoff Voltage: 5.8V
  • Breakdown Voltage: 6.45V to 7.14V
  • Peak Pulse Power Dissipation: 400W
  • Operating Temperature Range: -55°C to 175°C

Detailed Pin Configuration

The P4KE6.8CA-E3/73 typically features two pins, with the anode and cathode connections clearly labeled for easy integration into circuit designs.

Functional Features

  • Bi-directional clamping capability
  • Low incremental surge resistance
  • High temperature stability

Advantages

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

Disadvantages

  • Limited power dissipation capability compared to larger TVS diodes
  • May require additional circuitry for comprehensive surge protection in high-power applications

Working Principles

When a transient voltage event occurs, the P4KE6.8CA-E3/73 rapidly conducts excess current away from the protected circuit, limiting the voltage across it to a safe level.

Detailed Application Field Plans

The P4KE6.8CA-E3/73 finds application in various industries, including: - Consumer electronics - Telecommunications - Automotive - Industrial automation

Detailed and Complete Alternative Models

  • P4KE6.0CA-E3/73
  • P4KE7.5CA-E3/73
  • P4KE10CA-E3/73
  • P4KE15CA-E3/73

In conclusion, the P4KE6.8CA-E3/73 transient voltage suppressor diode offers effective protection against voltage transients, making it a crucial component in ensuring the reliability and longevity of electronic systems across diverse industries.

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Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de P4KE6.8CA-E3/73 en soluciones técnicas

Sure, here are 10 common questions and answers related to the application of P4KE6.8CA-E3/73 in technical solutions:

  1. What is the voltage rating of P4KE6.8CA-E3/73?

    • The voltage rating of P4KE6.8CA-E3/73 is 6.8V.
  2. What type of diode is P4KE6.8CA-E3/73?

    • P4KE6.8CA-E3/73 is a transient voltage suppressor (TVS) diode.
  3. What is the maximum peak pulse power of P4KE6.8CA-E3/73?

    • The maximum peak pulse power of P4KE6.8CA-E3/73 is typically 400W.
  4. What are the typical applications for P4KE6.8CA-E3/73?

    • P4KE6.8CA-E3/73 is commonly used for overvoltage protection in various electronic circuits, such as power supplies, communication equipment, and automotive electronics.
  5. What is the operating temperature range of P4KE6.8CA-E3/73?

    • The operating temperature range of P4KE6.8CA-E3/73 is typically -55°C to +175°C.
  6. What is the reverse stand-off voltage of P4KE6.8CA-E3/73?

    • The reverse stand-off voltage of P4KE6.8CA-E3/73 is 5.8V.
  7. Does P4KE6.8CA-E3/73 meet any specific industry standards?

    • Yes, P4KE6.8CA-E3/73 may comply with industry standards such as AEC-Q101 for automotive applications.
  8. Can P4KE6.8CA-E3/73 be used for ESD protection?

    • Yes, P4KE6.8CA-E3/73 can be used for electrostatic discharge (ESD) protection in sensitive electronic components.
  9. What package type does P4KE6.8CA-E3/73 come in?

    • P4KE6.8CA-E3/73 is typically available in a DO-41 package.
  10. Are there any recommended layout or mounting considerations for using P4KE6.8CA-E3/73?

    • It is recommended to place P4KE6.8CA-E3/73 as close as possible to the protected circuit and to minimize the length of the connecting traces to reduce inductance.

I hope these answers provide the information you were looking for! If you have any more questions, feel free to ask.