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TISP4165L3AJR-S

TISP4165L3AJR-S

Product Overview

The TISP4165L3AJR-S belongs to the category of surge protection devices and is designed for use in telecommunications and data line applications. This device is characterized by its high surge current capability, low capacitance, and robust packaging, making it suitable for protecting sensitive equipment from transient voltage events. The TISP4165L3AJR-S is typically available in a surface-mount package and is commonly used in telecommunication and networking equipment.

Specifications

  • Surge Current Capability: 100A (8/20µs)
  • Capacitance: 1.5pF (TYP)
  • Package: SOT-23-6
  • Quantity: Typically supplied in reels of 3000 units

Detailed Pin Configuration

The TISP4165L3AJR-S features a 6-pin SOT-23 package with the following pin configuration: 1. GND 2. I/O 3. NC 4. I/O 5. I/O 6. VCC

Functional Features

  • High surge current handling capability
  • Low capacitance for minimal signal distortion
  • Robust packaging for reliable performance
  • Designed for telecom and data line applications

Advantages and Disadvantages

Advantages: - High surge current capability - Low capacitance - Compact surface-mount package

Disadvantages: - Limited to telecom and data line applications - May require additional components for comprehensive surge protection

Working Principles

The TISP4165L3AJR-S operates based on the principles of avalanche breakdown and crowbar protection. When subjected to a transient voltage event, the device rapidly conducts excess current to ground, diverting the surge away from sensitive equipment. Its low capacitance ensures minimal impact on signal integrity during normal operation.

Detailed Application Field Plans

The TISP4165L3AJR-S is ideally suited for use in various telecommunication and networking equipment, including but not limited to: - Modems - Routers - Switches - Network interface cards - Telecommunication infrastructure equipment

Detailed and Complete Alternative Models

  • TISP4180H3BJR
  • TISP4185H3BJR
  • TISP4185J1BJR
  • TISP4185L3BJR
  • TISP4185L3BJR-S

In conclusion, the TISP4165L3AJR-S is a surge protection device specifically designed for telecom and data line applications, offering high surge current capability, low capacitance, and robust packaging. Its application extends to various telecommunication and networking equipment, providing essential protection against transient voltage events.

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Liste 10 perguntas e respostas comuns relacionadas à aplicação de TISP4165L3AJR-S em soluções técnicas

  1. What is the TISP4165L3AJR-S?

    • The TISP4165L3AJR-S is a silicon voltage suppressor designed to protect sensitive electronics from voltage transients induced by lightning and other transient voltage events.
  2. What is the maximum working voltage of TISP4165L3AJR-S?

    • The maximum working voltage of TISP4165L3AJR-S is 65V.
  3. What is the peak pulse current handling capability of TISP4165L3AJR-S?

    • The TISP4165L3AJR-S can handle a peak pulse current of 100A.
  4. What are the typical applications of TISP4165L3AJR-S?

    • Typical applications of TISP4165L3AJR-S include protection of telecommunications equipment, data lines, and industrial control systems from transient voltage events.
  5. What is the response time of TISP4165L3AJR-S?

    • The response time of TISP4165L3AJR-S is typically less than 1 nanosecond.
  6. What is the operating temperature range of TISP4165L3AJR-S?

    • The operating temperature range of TISP4165L3AJR-S is -40°C to 125°C.
  7. Does TISP4165L3AJR-S require external components for operation?

    • No, TISP4165L3AJR-S does not require external components for operation.
  8. Is TISP4165L3AJR-S RoHS compliant?

    • Yes, TISP4165L3AJR-S is RoHS compliant.
  9. Can TISP4165L3AJR-S be used in high-speed data line protection?

    • Yes, TISP4165L3AJR-S is suitable for high-speed data line protection due to its fast response time.
  10. What are the recommended PCB layout guidelines for TISP4165L3AJR-S?

    • The recommended PCB layout guidelines for TISP4165L3AJR-S include minimizing trace lengths, providing adequate clearance, and ensuring proper grounding for effective transient voltage suppression.