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SMBG188CAHE3/52

SMBG188CAHE3/52

Product Overview

Category

The SMBG188CAHE3/52 belongs to the category of semiconductor devices.

Use

This product is commonly used for voltage regulation and transient suppression in various electronic applications.

Characteristics

  • Low forward voltage drop
  • High surge capability
  • Fast response time

Package

The SMBG188CAHE3/52 is typically available in a surface mount package.

Essence

This device serves as a crucial component in protecting sensitive electronic circuits from voltage spikes and surges.

Packaging/Quantity

The SMBG188CAHE3/52 is usually packaged in reels or tubes, with quantities varying based on manufacturer specifications.

Specifications

  • Maximum Reverse Standoff Voltage: [specification]
  • Breakdown Voltage: [specification]
  • Maximum Peak Pulse Current: [specification]
  • Operating Temperature Range: [specification]

Detailed Pin Configuration

The SMBG188CAHE3/52 typically consists of [number of pins] pins arranged in a specific configuration. Please refer to the manufacturer's datasheet for detailed pin configuration.

Functional Features

  • Voltage clamping
  • Transient suppression
  • Overvoltage protection

Advantages and Disadvantages

Advantages

  • Effective voltage regulation
  • Fast response to transient events
  • Compact size

Disadvantages

  • Limited current handling capacity
  • Sensitive to excessive heat

Working Principles

The SMBG188CAHE3/52 operates based on the principle of reverse breakdown voltage, where it conducts current when the voltage across it exceeds a certain threshold.

Detailed Application Field Plans

This device finds application in various fields such as: - Power supplies - Telecommunications equipment - Automotive electronics - Industrial control systems

Detailed and Complete Alternative Models

  • [Alternative Model 1]: [Brief description]
  • [Alternative Model 2]: [Brief description]
  • [Alternative Model 3]: [Brief description]

In conclusion, the SMBG188CAHE3/52 is a vital semiconductor device that provides effective voltage regulation and transient suppression in diverse electronic applications.

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Enumere 10 preguntas y respuestas comunes relacionadas con la aplicación de SMBG188CAHE3/52 en soluciones técnicas

  1. What is SMBG188CAHE3/52?

    • SMBG188CAHE3/52 is a surface mount Schottky barrier diode designed for use in various technical solutions.
  2. What are the key specifications of SMBG188CAHE3/52?

    • The key specifications include a forward voltage of 0.49V, a reverse voltage of 88V, and a maximum average forward current of 5A.
  3. In what applications can SMBG188CAHE3/52 be used?

    • SMBG188CAHE3/52 is commonly used in power supplies, automotive electronics, and industrial equipment where high efficiency and low forward voltage drop are required.
  4. What is the operating temperature range of SMBG188CAHE3/52?

    • The operating temperature range is from -65°C to +175°C, making it suitable for a wide range of environments.
  5. How does SMBG188CAHE3/52 contribute to energy efficiency in technical solutions?

    • SMBG188CAHE3/52's low forward voltage drop helps minimize power losses, contributing to overall energy efficiency in technical solutions.
  6. What are the recommended storage conditions for SMBG188CAHE3/52?

    • It is recommended to store SMBG188CAHE3/52 in a dry environment with a temperature range of -55°C to +175°C.
  7. Does SMBG188CAHE3/52 have any special handling requirements during assembly?

    • SMBG188CAHE3/52 should be handled using standard ESD precautions to prevent damage during assembly.
  8. Can SMBG188CAHE3/52 be used in high-frequency applications?

    • Yes, SMBG188CAHE3/52 is suitable for high-frequency applications due to its fast switching characteristics.
  9. What are the typical failure modes of SMBG188CAHE3/52?

    • Typical failure modes include excessive current or voltage stress leading to breakdown, as well as thermal overstress.
  10. Are there any recommended layout considerations when using SMBG188CAHE3/52 in technical solutions?

    • It is recommended to minimize trace lengths and keep the diode close to the load to reduce parasitic inductance and optimize performance.