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SS24-M3/5BT

SS24-M3/5BT Product Overview

Introduction

The SS24-M3/5BT is a surface mount Schottky barrier rectifier diode designed for various electronic applications. This entry provides an in-depth overview of the product, including its basic information, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.

Basic Information Overview

  • Category: Electronic Components
  • Use: Rectification and voltage regulation in electronic circuits
  • Characteristics: High efficiency, low forward voltage drop, fast switching speed
  • Package: Surface mount SMB (DO-214AA)
  • Essence: Schottky barrier rectifier diode
  • Packaging/Quantity: Tape and reel packaging, quantity varies based on supplier

Specifications

  • Maximum Average Forward Current: 2A
  • Peak Forward Surge Current: 60A
  • Reverse Voltage: 40V
  • Forward Voltage Drop: 0.49V at 1A
  • Operating Temperature Range: -65°C to +125°C

Detailed Pin Configuration

The SS24-M3/5BT follows the standard SMB (DO-214AA) package configuration with two pins for surface mounting onto PCBs.

Functional Features

  • Efficient rectification of AC to DC
  • Fast switching speed for high-frequency applications
  • Low forward voltage drop minimizes power loss
  • High surge current capability for robust performance

Advantages and Disadvantages

Advantages

  • High efficiency
  • Fast switching speed
  • Low forward voltage drop
  • Robust surge current capability

Disadvantages

  • Limited reverse voltage rating compared to some alternatives
  • Sensitive to overvoltage conditions

Working Principles

The SS24-M3/5BT operates based on the Schottky barrier principle, where the metal-semiconductor junction allows for faster switching and lower forward voltage drop compared to standard PN-junction diodes.

Detailed Application Field Plans

The SS24-M3/5BT is commonly used in the following applications: - Switching power supplies - Voltage clamping circuits - Reverse polarity protection - DC-DC converters - Solar panel bypass diodes

Detailed and Complete Alternative Models

  • SS34-M3/5BT: Higher reverse voltage (40V)
  • SS26-M3/5BT: Lower forward voltage drop (0.38V at 2A)
  • SS210-M3/5BT: Higher average forward current (3A)

In conclusion, the SS24-M3/5BT is a versatile surface mount Schottky barrier rectifier diode with efficient rectification, fast switching speed, and a compact SMB package, making it suitable for various electronic applications.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací SS24-M3/5BT v technických řešeních

  1. What is the SS24-M3/5BT?

    • The SS24-M3/5BT is a Schottky diode with a maximum forward current of 2A and a reverse voltage of 40V.
  2. What are the typical applications of the SS24-M3/5BT?

    • It is commonly used in power supply circuits, reverse polarity protection, and low voltage rectification.
  3. What is the maximum forward voltage drop of the SS24-M3/5BT?

    • The maximum forward voltage drop at 2A is typically around 0.45V.
  4. Can the SS24-M3/5BT be used for high-frequency applications?

    • Yes, it has a fast switching speed and can be used in high-frequency circuits.
  5. What is the operating temperature range of the SS24-M3/5BT?

    • The operating temperature range is typically -65°C to 125°C.
  6. Is the SS24-M3/5BT suitable for automotive applications?

    • Yes, it is often used in automotive electronics due to its reliability and performance.
  7. Does the SS24-M3/5BT have a small form factor?

    • Yes, it comes in a small SOD-123 package, making it suitable for compact designs.
  8. Can the SS24-M3/5BT handle surge currents?

    • It has a low thermal resistance and can handle short-duration surge currents effectively.
  9. What are the key advantages of using the SS24-M3/5BT in technical solutions?

    • Some advantages include low forward voltage drop, fast switching, and low leakage current.
  10. Are there any specific layout considerations when using the SS24-M3/5BT?

    • It is important to minimize trace lengths and keep the diode close to the load to reduce parasitic effects and ensure optimal performance.