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BZM55B33-TR

BZM55B33-TR Product Overview

Introduction

The BZM55B33-TR is a semiconductor product belonging to the category of voltage regulator diodes. This entry provides an overview of the basic information, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models of the BZM55B33-TR.

Basic Information Overview

  • Category: Voltage Regulator Diodes
  • Use: The BZM55B33-TR is used for voltage regulation in electronic circuits.
  • Characteristics: It exhibits stable voltage regulation, low power dissipation, and high reliability.
  • Package: SOD-80 package type.
  • Essence: The essence of the BZM55B33-TR lies in its ability to regulate voltage effectively in various electronic applications.
  • Packaging/Quantity: Available in tape and reel packaging with a quantity of 3000 units per reel.

Specifications

  • Voltage Regulation: 3.3V
  • Power Dissipation: 500mW
  • Operating Temperature Range: -65°C to +150°C
  • Forward Voltage Drop: 1V
  • Reverse Leakage Current: 5µA

Detailed Pin Configuration

The BZM55B33-TR has a standard SOD-80 package with two pins. Pin 1 is the anode, and pin 2 is the cathode.

Functional Features

  • Stable Voltage Regulation: Ensures consistent output voltage under varying load conditions.
  • Low Power Dissipation: Minimizes energy loss and heat generation.
  • High Reliability: Provides long-term performance and durability in electronic circuits.

Advantages and Disadvantages

Advantages

  • Precise voltage regulation
  • Low power dissipation
  • Compact package size

Disadvantages

  • Limited current handling capacity
  • Sensitive to voltage spikes

Working Principles

The BZM55B33-TR operates based on the principle of Zener breakdown, where it maintains a constant voltage drop across its terminals by conducting in reverse bias when the voltage exceeds the specified value.

Detailed Application Field Plans

The BZM55B33-TR finds extensive use in various electronic applications, including: - Voltage regulation in power supplies - Overvoltage protection in electronic circuits - Signal conditioning in sensor interfaces

Detailed and Complete Alternative Models

Some alternative models to the BZM55B33-TR include: - BZX84C3V3 - MMBZ5233BLT1G - LM336Z-3.3

In conclusion, the BZM55B33-TR is a reliable voltage regulator diode with precise regulation capabilities, making it suitable for a wide range of electronic applications.

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Lista 10 Vanliga frågor och svar relaterade till tillämpningen av BZM55B33-TR i tekniska lösningar

  1. What is BZM55B33-TR?

    • BZM55B33-TR is a Zener diode with a voltage of 3.3V and a power dissipation of 500mW.
  2. What are the typical applications of BZM55B33-TR?

    • BZM55B33-TR is commonly used in voltage regulation, overvoltage protection, and signal clamping applications.
  3. What is the maximum current that can flow through BZM55B33-TR?

    • The maximum current for BZM55B33-TR is typically around 100mA.
  4. How does BZM55B33-TR provide voltage regulation?

    • BZM55B33-TR operates in the reverse-biased breakdown region, maintaining a constant voltage across its terminals.
  5. Can BZM55B33-TR be used for overvoltage protection?

    • Yes, BZM55B33-TR can be used to limit the voltage across a circuit to its breakdown voltage, protecting sensitive components.
  6. What are the temperature specifications for BZM55B33-TR?

    • BZM55B33-TR typically has an operating temperature range of -65°C to +150°C.
  7. Is BZM55B33-TR suitable for battery-powered applications?

    • Yes, BZM55B33-TR's low power dissipation makes it suitable for battery-powered devices.
  8. Can BZM55B33-TR be used in automotive electronics?

    • Yes, BZM55B33-TR is often used in automotive electronics for voltage regulation and protection.
  9. What are the package options available for BZM55B33-TR?

    • BZM55B33-TR is commonly available in SOD-123 or SOD-323 packages.
  10. Are there any specific layout considerations when using BZM55B33-TR?

    • It is important to minimize trace lengths and keep the Zener diode close to the load to reduce noise and maintain stability.