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MXP6KE9.1CAE3

MXP6KE9.1CAE3 Encyclopedia Entry

Product Overview

Category

The MXP6KE9.1CAE3 belongs to the category of transient voltage suppressor (TVS) diodes.

Use

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

Characteristics

  • Package: The MXP6KE9.1CAE3 is available in a DO-15 package.
  • Essence: It provides robust protection against voltage surges.
  • Packaging/Quantity: Typically packaged in reels or tubes, with quantities varying based on manufacturer specifications.

Specifications

The MXP6KE9.1CAE3 has a peak power dissipation of 600W and a breakdown voltage of 9.1V. It features low clamping voltage and fast response time to transient events.

Detailed Pin Configuration

The MXP6KE9.1CAE3 TVS diode typically consists of two leads, with the anode and cathode clearly marked for easy identification.

Functional Features

  • Transient Voltage Suppression: Effectively clamps transient voltages to safe levels, protecting downstream components.
  • Fast Response Time: Rapid reaction to transient events ensures minimal impact on the protected circuitry.

Advantages and Disadvantages

Advantages

  • Robust protection against voltage transients
  • Fast response time
  • Compact form factor

Disadvantages

  • Limited to specific voltage ratings
  • May require additional circuitry for comprehensive surge protection

Working Principles

The MXP6KE9.1CAE3 operates by diverting excess transient energy away from sensitive components, thereby limiting the voltage across them to a safe level. This is achieved through the use of avalanche breakdown and clamping mechanisms within the diode structure.

Detailed Application Field Plans

The MXP6KE9.1CAE3 is commonly employed in various applications including: - Power supply units - Communication equipment - Industrial control systems - Automotive electronics - Consumer electronics

Detailed and Complete Alternative Models

Some alternative models to the MXP6KE9.1CAE3 include: - SMAJ9.0A - P6SMB9.1CA - 1.5KE9.1A

In conclusion, the MXP6KE9.1CAE3 transient voltage suppressor diode offers robust protection against transient voltage events, making it an essential component in safeguarding sensitive electronic circuits across a wide range of applications.

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Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de MXP6KE9.1CAE3 en soluciones técnicas

Sure, here are 10 common questions and answers related to the application of MXP6KE9.1CAE3 in technical solutions:

  1. What is the maximum peak pulse power dissipation of MXP6KE9.1CAE3?

    • The maximum peak pulse power dissipation of MXP6KE9.1CAE3 is 600 watts for a 10/1000 μs waveform.
  2. What is the breakdown voltage of MXP6KE9.1CAE3?

    • The breakdown voltage of MXP6KE9.1CAE3 is 9.1V.
  3. What is the typical clamping voltage of MXP6KE9.1CAE3?

    • The typical clamping voltage of MXP6KE9.1CAE3 is 14.5V at 16A.
  4. What is the operating temperature range of MXP6KE9.1CAE3?

    • The operating temperature range of MXP6KE9.1CAE3 is -55°C to +175°C.
  5. What are the typical applications of MXP6KE9.1CAE3?

    • MXP6KE9.1CAE3 is commonly used in surge protection for sensitive electronics, such as telecommunications equipment, industrial control systems, and automotive electronics.
  6. What is the response time of MXP6KE9.1CAE3?

    • The response time of MXP6KE9.1CAE3 is less than 1 picosecond.
  7. Is MXP6KE9.1CAE3 RoHS compliant?

    • Yes, MXP6KE9.1CAE3 is RoHS compliant, meaning it meets the Restriction of Hazardous Substances directive.
  8. Can MXP6KE9.1CAE3 be used for overvoltage protection in power supply circuits?

    • Yes, MXP6KE9.1CAE3 can be used for overvoltage protection in power supply circuits to protect sensitive components from voltage spikes.
  9. What is the packaging type of MXP6KE9.1CAE3?

    • MXP6KE9.1CAE3 is available in a DO-15 package.
  10. Does MXP6KE9.1CAE3 require any special handling during assembly?

    • MXP6KE9.1CAE3 should be handled with standard ESD precautions during assembly to prevent damage to the device.

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