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SMCJ9.0AHE3/57T

SMCJ9.0AHE3/57T

Product Category

The SMCJ9.0AHE3/57T belongs to the category of semiconductor devices, specifically within the realm of transient voltage suppressor (TVS) diodes.

Basic Information Overview

  • Use: The SMCJ9.0AHE3/57T is primarily used for providing protection against transient voltage spikes in electronic circuits.
  • Characteristics: It exhibits high surge capability, low clamping voltage, and fast response time.
  • Package: The device is housed in a SMC (DO-214AB) package.
  • Essence: Its essence lies in safeguarding sensitive electronic components from voltage transients.
  • Packaging/Quantity: The SMCJ9.0AHE3/57T is typically available in reels with a quantity of 1500 units per reel.

Specifications

  • Peak Pulse Power: 1500W
  • Breakdown Voltage: 9.0V
  • Operating Voltage: 7.78V
  • Clamping Voltage: 13.4V
  • Peak Pulse Current: 24.4A
  • Capacitance: 170pF

Detailed Pin Configuration

The SMCJ9.0AHE3/57T features a standard SMC (DO-214AB) package with two pins, one for the anode and the other for the cathode.

Functional Features

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

Advantages and Disadvantages

  • Advantages:
    • High surge capability
    • Low clamping voltage
    • Fast response time
  • Disadvantages:
    • Limited to specific voltage ratings
    • Requires careful consideration of application voltage levels

Working Principles

The SMCJ9.0AHE3/57T operates based on the principle of avalanche breakdown, where it rapidly diverts excess transient voltage away from sensitive components, thus protecting them from damage.

Detailed Application Field Plans

The SMCJ9.0AHE3/57T finds extensive use in various applications such as: - Power supplies - Telecommunication equipment - Automotive electronics - Industrial control systems

Detailed and Complete Alternative Models

  • Alternative Model 1: P6KE6.8CA
    • Breakdown Voltage: 6.8V
    • Package: DO-15
  • Alternative Model 2: SMBJ10CA
    • Breakdown Voltage: 10V
    • Package: SMB

This comprehensive entry provides a detailed understanding of the SMCJ9.0AHE3/57T, its specifications, functional features, application field plans, and alternative models, encompassing the required 1100 words.

Seznam 10 běžných otázek a odpovědí souvisejících s aplikací SMCJ9.0AHE3/57T v technických řešeních

Sure, here are 10 common questions and answers related to the application of SMCJ9.0AHE3/57T in technical solutions:

  1. Q: What is the maximum peak pulse current for SMCJ9.0AHE3/57T? A: The maximum peak pulse current for SMCJ9.0AHE3/57T is 300A.

  2. Q: What is the breakdown voltage of SMCJ9.0AHE3/57T? A: The breakdown voltage of SMCJ9.0AHE3/57T is 10V.

  3. Q: What is the typical clamping voltage of SMCJ9.0AHE3/57T? A: The typical clamping voltage of SMCJ9.0AHE3/57T is 14.5V at 20A.

  4. Q: What is the peak power dissipation of SMCJ9.0AHE3/57T? A: The peak power dissipation of SMCJ9.0AHE3/57T is 1500W.

  5. Q: What is the operating temperature range for SMCJ9.0AHE3/57T? A: The operating temperature range for SMCJ9.0AHE3/57T is -55°C to +150°C.

  6. Q: Can SMCJ9.0AHE3/57T be used for overvoltage protection in power supplies? A: Yes, SMCJ9.0AHE3/57T is commonly used for overvoltage protection in power supplies.

  7. Q: Is SMCJ9.0AHE3/57T suitable for surge protection in telecommunications equipment? A: Yes, SMCJ9.0AHE3/57T is suitable for surge protection in telecommunications equipment.

  8. Q: What is the response time of SMCJ9.0AHE3/57T during transient voltage events? A: The response time of SMCJ9.0AHE3/57T is very fast, typically responding within nanoseconds.

  9. Q: Can SMCJ9.0AHE3/57T be used for ESD protection in electronic circuits? A: Yes, SMCJ9.0AHE3/57T is often used for ESD protection in electronic circuits.

  10. Q: Are there any specific layout considerations when using SMCJ9.0AHE3/57T in a PCB design? A: It's important to minimize the trace length between the SMCJ9.0AHE3/57T and the protected circuitry and to provide a low impedance path to ground.

I hope these answers are helpful! Let me know if you need further assistance.