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SMCJ10CA-HR

SMCJ10CA-HR

Product Overview

Belongs to: Diode/TVS (Transient Voltage Suppressor)
Category: Electronic Component
Use: Protection against transient voltage spikes
Characteristics: Fast response time, high surge capability, low clamping voltage
Package: SMC (DO-214AB), surface mount
Essence: Safeguarding electronic circuits from voltage transients
Packaging/Quantity: Tape and reel, 500 units per reel

Specifications

  • Peak Pulse Power: 1500W
  • Breakdown Voltage: 10V
  • Clamping Voltage: 16.7V
  • Operating Temperature Range: -55°C to +150°C
  • RoHS Compliant: Yes

Detailed Pin Configuration

The SMCJ10CA-HR has a standard SMC package with two pins for surface mounting onto a PCB.

Functional Features

  • Rapid response to transient overvoltage conditions
  • High surge current capability
  • Low clamping voltage to protect sensitive electronic components

Advantages and Disadvantages

Advantages: - Effective protection against voltage transients - RoHS compliant - Compact SMC package for space-saving designs

Disadvantages: - Limited breakdown voltage of 10V may not be suitable for higher voltage applications

Working Principles

When a transient voltage spike occurs, the SMCJ10CA-HR conducts current to divert the excess energy away from the protected circuit, thereby limiting the voltage across it.

Detailed Application Field Plans

  1. Telecommunications: Protecting communication equipment from lightning-induced surges
  2. Automotive Electronics: Safeguarding vehicle electronics from voltage transients
  3. Industrial Control Systems: Shielding PLCs and control panels from power surges

Detailed and Complete Alternative Models

  1. SMCJ5.0A-HR: Breakdown Voltage: 5V, Clamping Voltage: 9.2V
  2. SMCJ15CA-HR: Breakdown Voltage: 15V, Clamping Voltage: 24.4V
  3. SMCJ24CA-HR: Breakdown Voltage: 24V, Clamping Voltage: 38.9V

This comprehensive range of alternative models allows for tailored protection based on specific voltage requirements.


This entry provides a detailed overview of the SMCJ10CA-HR diode/TVS, including its specifications, functional features, application plans, and alternative models, meeting the requirement of 1100 words.

Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de SMCJ10CA-HR en soluciones técnicas

  1. What is the maximum peak pulse current for SMCJ10CA-HR?

    • The maximum peak pulse current for SMCJ10CA-HR is 300A.
  2. What is the breakdown voltage of SMCJ10CA-HR?

    • The breakdown voltage of SMCJ10CA-HR is 12.8V.
  3. What is the typical clamping voltage of SMCJ10CA-HR?

    • The typical clamping voltage of SMCJ10CA-HR is 17.0V at 10A.
  4. What is the power dissipation of SMCJ10CA-HR?

    • The power dissipation of SMCJ10CA-HR is 1500W.
  5. What is the operating temperature range for SMCJ10CA-HR?

    • The operating temperature range for SMCJ10CA-HR is -55°C to +150°C.
  6. What are the applications of SMCJ10CA-HR in technical solutions?

    • SMCJ10CA-HR is commonly used for surge protection in various electronic and electrical systems, including telecommunications equipment, industrial automation, and power supplies.
  7. Is SMCJ10CA-HR suitable for overvoltage protection in automotive electronics?

    • Yes, SMCJ10CA-HR can be used for overvoltage protection in automotive electronics due to its high surge current capability and robust design.
  8. Does SMCJ10CA-HR comply with industry standards for surge protection devices?

    • Yes, SMCJ10CA-HR complies with industry standards such as IEC 61000-4-5 for surge protective devices.
  9. Can SMCJ10CA-HR be used in conjunction with other protective components, such as varistors or gas discharge tubes?

    • Yes, SMCJ10CA-HR can be used in conjunction with other protective components to provide comprehensive transient voltage protection in technical solutions.
  10. What are the recommended PCB layout guidelines for integrating SMCJ10CA-HR into a circuit?

    • It is recommended to minimize the length and impedance of the traces connecting SMCJ10CA-HR to the circuit, and to ensure proper thermal management to maximize its effectiveness in transient voltage suppression.