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BZV55-C9V1,135

BZV55-C9V1,135

Introduction

The BZV55-C9V1,135 is a component belonging to the category of Zener diodes. This entry provides an overview of its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.

Basic Information Overview

  • Category: Zener diode
  • Use: Voltage regulation and protection in electronic circuits
  • Characteristics: Precise voltage regulation, low impedance, and high reliability
  • Package: SOD80C
  • Essence: Semiconductor device for maintaining a stable voltage across a load
  • Packaging/Quantity: Tape and reel packaging, quantity varies by manufacturer

Specifications

  • Voltage - Zener (Nom) (Vz): 9.1V
  • Power - Max: 500mW
  • Impedance (Max) (Zzt): 20 Ohm
  • Current - Reverse Leakage @ Vr: 100nA @ 6.8V
  • Tolerance: ±5%
  • Operating Temperature: -65°C ~ 150°C

Detailed Pin Configuration

The BZV55-C9V1,135 typically has two pins, with the cathode identified by a band around one end of the body.

Functional Features

  • Precise voltage regulation under reverse bias conditions
  • Low impedance at operating voltage
  • High reliability and stability over a wide temperature range

Advantages and Disadvantages

Advantages

  • Provides stable voltage regulation
  • Low cost and easy to use
  • Wide operating temperature range

Disadvantages

  • Limited power dissipation capability
  • Sensitivity to temperature variations

Working Principles

The BZV55-C9V1,135 operates based on the Zener effect, where it maintains a constant voltage drop across its terminals when reverse biased, allowing it to regulate voltage in electronic circuits.

Detailed Application Field Plans

The BZV55-C9V1,135 finds applications in various electronic circuits requiring precise voltage regulation and protection against voltage spikes. Common uses include: - Voltage regulators in power supplies - Overvoltage protection in automotive electronics - Signal clamping and voltage reference circuits

Detailed and Complete Alternative Models

Some alternative models to the BZV55-C9V1,135 include: - BZX84C9V1: SOT-23 package, 350mW power dissipation - 1N4739A: Axial lead package, 1W power dissipation - MM3Z9V1ST1G: SOD-323 package, 200mW power dissipation

In conclusion, the BZV55-C9V1,135 Zener diode offers precise voltage regulation and protection in electronic circuits, making it a crucial component in various applications.

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Senaraikan 10 soalan dan jawapan biasa yang berkaitan dengan aplikasi BZV55-C9V1,135 dalam penyelesaian teknikal

  1. What is the maximum continuous forward current for BZV55-C9V1,135?

    • The maximum continuous forward current for BZV55-C9V1,135 is 200 mA.
  2. What is the reverse voltage for BZV55-C9V1,135?

    • The reverse voltage for BZV55-C9V1,135 is 9.1 V.
  3. Can BZV55-C9V1,135 be used in voltage regulation applications?

    • Yes, BZV55-C9V1,135 can be used in voltage regulation applications due to its zener diode characteristics.
  4. What is the power dissipation of BZV55-C9V1,135?

    • The power dissipation of BZV55-C9V1,135 is 500 mW.
  5. Is BZV55-C9V1,135 suitable for overvoltage protection?

    • Yes, BZV55-C9V1,135 can be used for overvoltage protection due to its zener diode properties.
  6. What is the temperature coefficient of BZV55-C9V1,135?

    • The temperature coefficient of BZV55-C9V1,135 is approximately 5 mV/°C.
  7. Can BZV55-C9V1,135 be used in voltage reference circuits?

    • Yes, BZV55-C9V1,135 is suitable for use in voltage reference circuits.
  8. What is the typical junction capacitance of BZV55-C9V1,135?

    • The typical junction capacitance of BZV55-C9V1,135 is 40 pF.
  9. Does BZV55-C9V1,135 require a heatsink for certain applications?

    • For most applications, BZV55-C9V1,135 does not require a heatsink due to its low power dissipation.
  10. What are some common applications for BZV55-C9V1,135 in technical solutions?

    • Common applications for BZV55-C9V1,135 include voltage regulation, overvoltage protection, voltage reference circuits, and precision voltage clamping.