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VESD12A1C-HD1-GS08

VESD12A1C-HD1-GS08

Product Overview

Category

The VESD12A1C-HD1-GS08 belongs to the category of ESD (Electrostatic Discharge) protection devices.

Use

It is used to protect electronic circuits and components from damage caused by electrostatic discharge events.

Characteristics

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

Package

The VESD12A1C-HD1-GS08 comes in a small outline plastic package (SOD-323).

Essence

The essence of this product lies in its ability to provide robust protection against ESD events, ensuring the reliability and longevity of electronic devices.

Packaging/Quantity

The VESD12A1C-HD1-GS08 is typically packaged in reels with a quantity of 3000 units per reel.

Specifications

  • Standoff Voltage: 12V
  • Breakdown Voltage: 15V
  • Maximum Clamping Voltage: 21V
  • Peak Pulse Current: 2A
  • Operating Temperature Range: -55°C to 125°C

Detailed Pin Configuration

The VESD12A1C-HD1-GS08 has two pins, with pin 1 being the anode and pin 2 being the cathode.

Functional Features

  • ESD protection for high-speed data lines
  • Low capacitance for minimal signal distortion
  • Bi-directional protection

Advantages and Disadvantages

Advantages

  • Robust ESD protection
  • Fast response time
  • Low clamping voltage

Disadvantages

  • Limited peak pulse current compared to some higher-end models
  • Sensitive to reverse polarity connection

Working Principles

The VESD12A1C-HD1-GS08 works by diverting the energy from an ESD event away from the protected circuit, thereby preventing damage.

Detailed Application Field Plans

This device is commonly used in applications such as: - USB ports - HDMI interfaces - Ethernet ports - Display interfaces

Detailed and Complete Alternative Models

Some alternative models to the VESD12A1C-HD1-GS08 include: - VESD05A1B-HD1-GS08 - VESD24A1B-HD1-GS08 - VESD15A1B-HD1-GS08

In conclusion, the VESD12A1C-HD1-GS08 is a reliable ESD protection device with high surge capability and fast response time, making it suitable for a wide range of electronic applications.

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  1. What is the VESD12A1C-HD1-GS08?

    • The VESD12A1C-HD1-GS08 is a high-speed, low-capacitance, bidirectional ESD protection diode designed to safeguard sensitive electronics from electrostatic discharge events.
  2. What are the key features of the VESD12A1C-HD1-GS08?

    • The key features include ultra-low capacitance, high surge capability, low clamping voltage, and compatibility with high-speed data interfaces.
  3. In what applications can the VESD12A1C-HD1-GS08 be used?

    • It can be used in a wide range of applications such as USB ports, HDMI interfaces, Ethernet ports, and other high-speed data lines in consumer electronics, industrial equipment, and automotive systems.
  4. What is the maximum working voltage of the VESD12A1C-HD1-GS08?

    • The maximum working voltage is 12V, making it suitable for protecting devices operating at lower voltage levels.
  5. How does the VESD12A1C-HD1-GS08 protect against ESD events?

    • It provides a low clamping voltage to divert the excess energy from an ESD strike away from the protected circuitry, thereby preventing damage.
  6. What is the typical capacitance of the VESD12A1C-HD1-GS08?

    • The typical capacitance is very low, which helps to minimize signal distortion in high-speed data transmission.
  7. Is the VESD12A1C-HD1-GS08 RoHS compliant?

    • Yes, it is RoHS compliant, ensuring that it meets environmental standards for hazardous substances.
  8. Can the VESD12A1C-HD1-GS08 be used in automotive applications?

    • Yes, it is suitable for use in automotive applications due to its robustness and ability to withstand harsh operating conditions.
  9. Does the VESD12A1C-HD1-GS08 require any external components for proper operation?

    • No, it is a standalone ESD protection diode and does not require any external components for its operation.
  10. What are the recommended layout guidelines for using the VESD12A1C-HD1-GS08 in a PCB design?

    • It is recommended to place the diode as close as possible to the protected I/O pins, minimize trace lengths, and provide a low-impedance path to ground for optimal performance.