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SS8P3CL-M3/87A

SS8P3CL-M3/87A

Introduction

The SS8P3CL-M3/87A is a semiconductor product belonging to the category of Schottky diodes. This component is widely used in electronic circuits for its unique characteristics and performance.

Basic Information Overview

  • Category: Schottky diode
  • Use: Rectification and voltage clamping in electronic circuits
  • Characteristics: Low forward voltage drop, fast switching speed, low reverse leakage current
  • Package: SOD-123FL
  • Essence: High-efficiency rectification and voltage clamping
  • Packaging/Quantity: Available in tape and reel packaging, quantity varies by manufacturer

Specifications

  • Forward Voltage Drop: Typically 0.35V at 1A
  • Reverse Leakage Current: Maximum 5µA at 30V
  • Maximum Continuous Forward Current: 1A
  • Maximum Reverse Voltage: 30V
  • Operating Temperature Range: -65°C to 125°C

Detailed Pin Configuration

The SS8P3CL-M3/87A follows the standard SOD-123FL pin configuration with the anode connected to pin 1 and the cathode connected to pin 2.

Functional Features

  • Efficient rectification of AC to DC due to low forward voltage drop
  • Fast switching speed enables high-frequency operation
  • Low reverse leakage current minimizes power loss

Advantages and Disadvantages

Advantages

  • Low forward voltage drop reduces power dissipation
  • Fast switching speed allows for high-frequency applications
  • Compact SOD-123FL package saves board space

Disadvantages

  • Limited maximum reverse voltage compared to other diode types
  • Susceptible to thermal runaway at high currents

Working Principles

The SS8P3CL-M3/87A operates based on the Schottky barrier principle, where the metal-semiconductor junction provides low forward voltage drop during conduction and fast switching speed due to the absence of minority carrier storage.

Detailed Application Field Plans

This Schottky diode finds extensive use in various applications including: - Switching power supplies - Voltage clamping circuits - Reverse polarity protection - Signal demodulation circuits

Detailed and Complete Alternative Models

  • SS14: Higher reverse voltage (40V) variant
  • SS24: Higher reverse voltage (60V) variant
  • SS36: Higher reverse voltage (60V) and higher current (3A) variant

In conclusion, the SS8P3CL-M3/87A Schottky diode offers efficient rectification and voltage clamping capabilities, making it a versatile component in modern electronic circuits.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací SS8P3CL-M3/87A v technických řešeních

  1. What is SS8P3CL-M3/87A?

    • SS8P3CL-M3/87A is a Schottky diode with a maximum average forward current of 8A and a reverse voltage of 30V.
  2. What are the typical applications of SS8P3CL-M3/87A?

    • It is commonly used in voltage clamping, protection circuits, and polarity correction in various technical solutions.
  3. What is the maximum forward voltage drop of SS8P3CL-M3/87A?

    • The maximum forward voltage drop at 8A is typically around 0.55V for SS8P3CL-M3/87A.
  4. What is the reverse leakage current of SS8P3CL-M3/87A?

    • The reverse leakage current at the maximum reverse voltage is typically very low, around a few microamps.
  5. Can SS8P3CL-M3/87A be used for high-frequency applications?

    • Yes, SS8P3CL-M3/87A is suitable for high-frequency applications due to its fast switching characteristics.
  6. What is the operating temperature range of SS8P3CL-M3/87A?

    • The operating temperature range is typically from -65°C to +125°C for SS8P3CL-M3/87A.
  7. Does SS8P3CL-M3/87A require a heat sink for high-power applications?

    • For high-power applications, it is recommended to use a heat sink to maintain optimal operating temperatures.
  8. Is SS8P3CL-M3/87A RoHS compliant?

    • Yes, SS8P3CL-M3/87A is compliant with the Restriction of Hazardous Substances (RoHS) directive.
  9. What is the package type of SS8P3CL-M3/87A?

    • SS8P3CL-M3/87A is available in a surface mount SMB package.
  10. Are there any specific layout considerations when using SS8P3CL-M3/87A in a circuit?

    • It is important to minimize trace lengths and keep the diode close to the components it is protecting to reduce parasitic inductance and ensure effective performance.