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1N4760A A0G

1N4760A A0G

Product Overview

Category

The 1N4760A A0G belongs to the category of Zener diodes.

Use

It is commonly used for voltage regulation and protection in electronic circuits.

Characteristics

  • Zener voltage: 3.9V
  • Power dissipation: 1.3W
  • Package type: DO-41
  • Operating temperature range: -65°C to +200°C
  • Storage temperature range: -65°C to +200°C
  • Packaging/quantity: Tape & Reel, 5000 per reel

Specifications

  • Zener voltage: 3.9V
  • Power dissipation: 1.3W
  • Maximum forward voltage: 1.1V
  • Reverse current: 5µA
  • Temperature coefficient: 0.05%/°C

Detailed Pin Configuration

The 1N4760A A0G has a standard DO-41 package with two leads. The anode is connected to the positive side of the circuit, while the cathode is connected to the negative side.

Functional Features

  • Precise voltage regulation
  • Overvoltage protection
  • Stable operation over a wide temperature range

Advantages

  • High reliability
  • Low reverse leakage current
  • Compact size

Disadvantages

  • Limited power dissipation capability
  • Sensitivity to temperature variations

Working Principles

The 1N4760A A0G operates based on the Zener effect, where it maintains a constant voltage drop across its terminals when reverse-biased, allowing it to regulate the voltage in a circuit.

Detailed Application Field Plans

This Zener diode is widely used in voltage regulator circuits, power supplies, and surge suppressors. It is also employed in automotive electronics, industrial control systems, and consumer electronics.

Detailed and Complete Alternative Models

  • 1N4758A A0G (3.3V Zener voltage)
  • 1N4761A A0G (4.3V Zener voltage)
  • 1N4764A A0G (5.6V Zener voltage)

In conclusion, the 1N4760A A0G Zener diode offers precise voltage regulation and overvoltage protection, making it a crucial component in various electronic applications.

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10 سوال و پاسخ رایج مربوط به کاربرد 1N4760A A0G در راه حل های فنی را فهرست کنید

  1. What is the 1N4760A A0G diode used for?

    • The 1N4760A A0G diode is commonly used as a voltage regulator or in rectifier circuits to regulate or control the flow of electrical current.
  2. What are the key specifications of the 1N4760A A0G diode?

    • The 1N4760A A0G diode has a maximum forward voltage of 1.0V, a maximum reverse current of 5μA, and a power dissipation of 1.0W.
  3. How does the 1N4760A A0G diode compare to other similar diodes?

    • Compared to other diodes, the 1N4760A A0G offers a higher power dissipation capability and lower forward voltage drop, making it suitable for applications requiring higher power handling.
  4. Can the 1N4760A A0G diode be used in high-temperature environments?

    • Yes, the 1N4760A A0G diode is designed to operate effectively in high-temperature environments, with a maximum operating temperature of 175°C.
  5. What are some common applications of the 1N4760A A0G diode?

    • Common applications include voltage regulation in power supplies, reverse polarity protection, and signal demodulation in communication systems.
  6. What is the typical forward voltage drop of the 1N4760A A0G diode?

    • The typical forward voltage drop of the 1N4760A A0G diode is around 0.9V at a forward current of 1A.
  7. Is the 1N4760A A0G diode suitable for use in automotive electronics?

    • Yes, the 1N4760A A0G diode is often used in automotive electronics due to its high-temperature tolerance and robust construction.
  8. Can the 1N4760A A0G diode handle high current spikes?

    • Yes, the 1N4760A A0G diode is capable of handling short-duration high current spikes, making it suitable for surge protection applications.
  9. What are the recommended storage conditions for the 1N4760A A0G diode?

    • It is recommended to store the 1N4760A A0G diode in a dry environment at temperatures between -65°C and 175°C to maintain its performance and reliability.
  10. Are there any known failure modes or reliability issues associated with the 1N4760A A0G diode?

    • The 1N4760A A0G diode is known for its high reliability and low failure rates when operated within its specified parameters. However, exceeding the maximum ratings can lead to failure, so proper design considerations should be taken into account.