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SMCJ5665A/TR13

SMCJ5665A/TR13

Product Overview

Category

The SMCJ5665A/TR13 belongs to the category of transient voltage suppressor diodes.

Use

It is used to protect sensitive electronic components from voltage transients induced by lightning, inductive load switching, and electrostatic discharge.

Characteristics

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

Package

The SMCJ5665A/TR13 is typically available in a DO-214AB (SMC) package.

Essence

The essence of the SMCJ5665A/TR13 lies in its ability to divert excessive current away from sensitive components, thereby safeguarding them from damage.

Packaging/Quantity

The SMCJ5665A/TR13 is commonly packaged in reels or tubes, with quantities varying based on manufacturer specifications.

Specifications

  • Peak Pulse Power: 1500W
  • Breakdown Voltage Range: 61.1V to 67.8V
  • Maximum Clamping Voltage: 99.2V at 10A
  • Operating Temperature Range: -55°C to 150°C

Detailed Pin Configuration

The SMCJ5665A/TR13 typically has two pins, with the anode and cathode connections clearly marked on the device.

Functional Features

  • Bi-directional clamping capability
  • Low leakage current
  • RoHS compliant

Advantages and Disadvantages

Advantages

  • High surge current handling capability
  • Fast response to transient events
  • Compact form factor

Disadvantages

  • Limited breakdown voltage range
  • Higher clamping voltage compared to some alternative models

Working Principles

When a transient voltage spike occurs, the SMCJ5665A/TR13 conducts current to ground, limiting the voltage across the protected circuit.

Detailed Application Field Plans

The SMCJ5665A/TR13 is commonly used in: - Telecommunication equipment - Industrial control systems - Power supplies - Automotive electronics

Detailed and Complete Alternative Models

Some alternative models to the SMCJ5665A/TR13 include: - P6SMBJ62CA - 1.5SMC68CA - SMBJ64CA

In conclusion, the SMCJ5665A/TR13 transient voltage suppressor diode offers reliable protection against voltage transients for a wide range of electronic applications, making it an essential component in ensuring the longevity and reliability of sensitive electronic circuits.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací SMCJ5665A/TR13 v technických řešeních

  1. What is the maximum peak pulse power dissipation of SMCJ5665A/TR13?

    • The maximum peak pulse power dissipation of SMCJ5665A/TR13 is 1500 watts.
  2. What is the breakdown voltage of SMCJ5665A/TR13?

    • The breakdown voltage of SMCJ5665A/TR13 is 56.65 volts.
  3. What is the typical reverse stand-off voltage of SMCJ5665A/TR13?

    • The typical reverse stand-off voltage of SMCJ5665A/TR13 is 56.65 volts.
  4. What is the clamping voltage of SMCJ5665A/TR13 at a specified peak pulse current?

    • The clamping voltage of SMCJ5665A/TR13 at a specified peak pulse current is typically 91.2 volts.
  5. What is the maximum junction capacitance of SMCJ5665A/TR13?

    • The maximum junction capacitance of SMCJ5665A/TR13 is 500 pF.
  6. What is the operating temperature range for SMCJ5665A/TR13?

    • The operating temperature range for SMCJ5665A/TR13 is -55°C to +150°C.
  7. What are the typical applications of SMCJ5665A/TR13 in technical solutions?

    • SMCJ5665A/TR13 is commonly used for transient voltage suppression in various electronic systems, including power supplies, telecommunications equipment, and automotive electronics.
  8. What is the package type of SMCJ5665A/TR13?

    • SMCJ5665A/TR13 is available in a SMC (DO-214AB) package.
  9. What are the key features of SMCJ5665A/TR13 that make it suitable for technical solutions?

    • SMCJ5665A/TR13 offers high surge capability, low clamping voltage, and fast response time, making it ideal for protecting sensitive electronic components from voltage transients.
  10. Are there any recommended layout considerations when using SMCJ5665A/TR13 in a circuit?

    • It is recommended to minimize the length and area of the traces connecting SMCJ5665A/TR13 to the circuit to reduce parasitic inductance and ensure optimal performance.