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SMBJ9.0CE3/TR13

SMBJ9.0CE3/TR13

Product Overview

Category

The SMBJ9.0CE3/TR13 belongs to the category of transient voltage suppressor diodes.

Use

It is primarily used for surge and ESD protection in sensitive electronics.

Characteristics

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

Package

The SMBJ9.0CE3/TR13 is available in a surface mount DO-214AA (SMB) package.

Essence

The essence of this product lies in its ability to protect electronic circuits from voltage transients and surges.

Packaging/Quantity

It is typically packaged in reels with a quantity of 3000 units per reel.

Specifications

  • Standoff Voltage: 9.0V
  • Breakdown Voltage: 10V
  • Maximum Peak Pulse Current: 30A
  • Operating Temperature Range: -55°C to +150°C

Detailed Pin Configuration

The SMBJ9.0CE3/TR13 has two pins, with the anode connected to pin 1 and the cathode connected to pin 2.

Functional Features

  • Provides effective protection against voltage transients
  • Fast response time ensures minimal impact on the protected circuit
  • Low clamping voltage prevents damage to sensitive components

Advantages and Disadvantages

Advantages

  • High surge capability
  • Compact surface mount package
  • Wide operating temperature range

Disadvantages

  • Limited maximum peak pulse current compared to some alternative models
  • May require additional components for comprehensive surge protection in high-power applications

Working Principles

The SMBJ9.0CE3/TR13 operates by diverting excess transient current away from the protected circuit, thereby limiting the voltage across it.

Detailed Application Field Plans

This product is commonly used in: - Telecommunication equipment - Consumer electronics - Industrial automation systems - Automotive electronics

Detailed and Complete Alternative Models

Some alternative models to consider include: - SMAJ9.0A - P6SMBJ9.0A - SMCJ9.0A

In conclusion, the SMBJ9.0CE3/TR13 transient voltage suppressor diode offers reliable surge and ESD protection for a wide range of electronic applications, making it a valuable component in safeguarding sensitive circuits from voltage transients and surges.

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Énumérez 10 questions et réponses courantes liées à l'application de SMBJ9.0CE3/TR13 dans les solutions techniques

Sure, here are 10 common questions and answers related to the application of SMBJ9.0CE3/TR13 in technical solutions:

  1. What is the maximum peak pulse power dissipation of SMBJ9.0CE3/TR13?

    • The maximum peak pulse power dissipation is 600 watts for a 10/1000μs waveform.
  2. What is the breakdown voltage of SMBJ9.0CE3/TR13?

    • The breakdown voltage is typically 9.0 volts.
  3. What is the operating temperature range for SMBJ9.0CE3/TR13?

    • The operating temperature range is -55°C to +150°C.
  4. Can SMBJ9.0CE3/TR13 be used for overvoltage protection in power supply circuits?

    • Yes, SMBJ9.0CE3/TR13 is commonly used for overvoltage protection in power supply circuits.
  5. What is the response time of SMBJ9.0CE3/TR13 during transient voltage events?

    • The response time is very fast, typically responding within nanoseconds to clamp transient voltages.
  6. Is SMBJ9.0CE3/TR13 suitable for surge protection in communication equipment?

    • Yes, SMBJ9.0CE3/TR13 is often used for surge protection in communication equipment due to its fast response and high power dissipation capability.
  7. What is the reverse stand-off voltage of SMBJ9.0CE3/TR13?

    • The reverse stand-off voltage is typically 9.0 volts.
  8. Can SMBJ9.0CE3/TR13 be used for ESD protection in electronic devices?

    • Yes, SMBJ9.0CE3/TR13 is commonly employed for ESD protection in electronic devices due to its low clamping voltage and fast response.
  9. What is the package type of SMBJ9.0CE3/TR13?

    • SMBJ9.0CE3/TR13 is available in a surface mount DO-214AA (SMB) package.
  10. Are there any specific layout considerations when using SMBJ9.0CE3/TR13 in a PCB design?

    • It is recommended to keep short traces between the SMBJ9.0CE3/TR13 and the protected circuitry and to ensure a low impedance path to ground for effective transient voltage suppression.

I hope these questions and answers are helpful for your technical solutions! Let me know if you need further assistance.