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BZX79C9V1-T50A

BZX79C9V1-T50A

Product Overview

Category

The BZX79C9V1-T50A belongs to the category of Zener diodes, which are semiconductor devices designed to maintain a fixed voltage across their terminals.

Use

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

Characteristics

  • Voltage: 9.1V
  • Power Dissipation: 500mW
  • Package: DO-35
  • Tolerance: ±5%
  • Operating Temperature Range: -65°C to +200°C

Packaging/Quantity

The BZX79C9V1-T50A is typically available in tape and reel packaging with quantities varying based on manufacturer specifications.

Specifications

  • Zener Voltage: 9.1V
  • Test Current: 5mA
  • Maximum Reverse Leakage Current: 0.5μA
  • Maximum Zener Impedance: 40Ω

Detailed Pin Configuration

The BZX79C9V1-T50A has two pins and follows the standard pin configuration for DO-35 package diodes.

Functional Features

  • Precise Voltage Regulation: The Zener diode maintains a constant voltage across its terminals, providing stability in electronic circuits.
  • Overvoltage Protection: It protects sensitive components by diverting excess voltage away from the circuit.

Advantages and Disadvantages

Advantages

  • Reliable Voltage Regulation
  • Compact Size
  • Low Cost

Disadvantages

  • Limited Power Dissipation
  • Sensitivity to Temperature Changes

Working Principles

The BZX79C9V1-T50A operates based on the principle of the Zener breakdown effect, where it begins conducting when the voltage across its terminals reaches the specified Zener voltage, effectively regulating the voltage in the circuit.

Detailed Application Field Plans

The BZX79C9V1-T50A finds applications in various electronic circuits such as: - Voltage Regulators - Overvoltage Protection Circuits - Signal Clipping Circuits

Detailed and Complete Alternative Models

Some alternative models to the BZX79C9V1-T50A include: - BZX79C9V1 - BZX85C9V1 - 1N4739A

In conclusion, the BZX79C9V1-T50A Zener diode offers precise voltage regulation and overvoltage protection, making it an essential component in many electronic circuits.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací BZX79C9V1-T50A v technických řešeních

  1. What is the BZX79C9V1-T50A diode used for?

    • The BZX79C9V1-T50A diode is commonly used for voltage regulation and transient voltage suppression in various technical solutions.
  2. What is the maximum voltage rating of the BZX79C9V1-T50A diode?

    • The maximum voltage rating of the BZX79C9V1-T50A diode is 9.1V.
  3. How does the BZX79C9V1-T50A diode provide voltage regulation?

    • The BZX79C9V1-T50A diode regulates voltage by conducting current when the voltage exceeds its breakdown voltage, effectively clamping the voltage to a safe level.
  4. Can the BZX79C9V1-T50A diode be used for overvoltage protection?

    • Yes, the BZX79C9V1-T50A diode can be used for overvoltage protection by diverting excess voltage away from sensitive components.
  5. What are the typical applications of the BZX79C9V1-T50A diode?

    • Typical applications include voltage clamping, overvoltage protection, voltage stabilization, and signal conditioning in electronic circuits.
  6. What is the power dissipation of the BZX79C9V1-T50A diode?

    • The power dissipation of the BZX79C9V1-T50A diode is typically around 500mW.
  7. Is the BZX79C9V1-T50A diode suitable for high-frequency applications?

    • Yes, the BZX79C9V1-T50A diode is suitable for high-frequency applications due to its fast response time and low capacitance.
  8. What is the temperature range for the BZX79C9V1-T50A diode?

    • The BZX79C9V1-T50A diode is typically rated for a temperature range of -65°C to 175°C.
  9. Can the BZX79C9V1-T50A diode be used in automotive electronics?

    • Yes, the BZX79C9V1-T50A diode is suitable for use in automotive electronics for voltage regulation and transient protection.
  10. Are there any alternative diodes with similar characteristics to the BZX79C9V1-T50A?

    • Yes, alternatives such as the BZX79 series or other Zener diodes with comparable voltage ratings and power dissipation may be suitable replacements.