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BT136X-800,127

BT136X-800,127

Product Overview

Category

The BT136X-800,127 belongs to the category of semiconductor devices.

Use

It is commonly used for controlling high power AC loads in applications such as light dimmers, motor speed controllers, and heating control.

Characteristics

  • The BT136X-800,127 is a sensitive gate silicon controlled rectifier (SCR) with a 4 A RMS on-state current.
  • It is designed for use in applications requiring high blocking voltage capability and high thermal cycling performance.

Package

The BT136X-800,127 is typically available in a TO-220AB package.

Essence

The essence of the BT136X-800,127 lies in its ability to efficiently control high power AC loads with reliability and precision.

Packaging/Quantity

It is commonly packaged in reels or tubes and is available in varying quantities based on customer requirements.

Specifications

  • Maximum RMS on-state current: 4 A
  • Repetitive peak off-state voltage: 800 V
  • Gate trigger current: 5 mA
  • Holding current: 10 mA
  • Operating temperature range: -40°C to 125°C

Detailed Pin Configuration

The BT136X-800,127 has a standard TO-220AB pin configuration: 1. Anode (A1) 2. Gate (G) 3. Cathode (A2)

Functional Features

  • High blocking voltage capability
  • Low holding current for improved noise immunity
  • Planar passivated for voltage ruggedness and reliability

Advantages

  • High thermal cycling performance
  • Precise control of high power AC loads
  • Suitable for a wide range of industrial and consumer applications

Disadvantages

  • Sensitive to voltage transients
  • Requires careful handling to prevent damage during installation

Working Principles

The BT136X-800,127 operates by controlling the flow of current between the anode and cathode terminals when triggered by the gate signal. It functions as a switch for AC loads, allowing precise control over power delivery.

Detailed Application Field Plans

The BT136X-800,127 finds extensive use in various applications including: - Light dimming systems - Motor speed control units - Heating control circuits - Power regulators

Detailed and Complete Alternative Models

Some alternative models to the BT136X-800,127 include: - BT137X-800,127 - BT138X-800,127 - BT139X-800,127

In conclusion, the BT136X-800,127 is a versatile semiconductor device that offers precise control over high power AC loads, making it suitable for a wide range of industrial and consumer applications.

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Lista 10 Vanliga frågor och svar relaterade till tillämpningen av BT136X-800,127 i tekniska lösningar

  1. What is the maximum RMS on-state current of BT136X-800,127?

    • The maximum RMS on-state current of BT136X-800,127 is 8A.
  2. What is the maximum repetitive peak off-state voltage of BT136X-800,127?

    • The maximum repetitive peak off-state voltage of BT136X-800,127 is 800V.
  3. Can BT136X-800,127 be used for AC switching applications?

    • Yes, BT136X-800,127 can be used for AC switching applications due to its high voltage capability.
  4. What is the recommended gate trigger current for BT136X-800,127?

    • The recommended gate trigger current for BT136X-800,127 is typically 5mA.
  5. Is BT136X-800,127 suitable for controlling inductive loads?

    • Yes, BT136X-800,127 is suitable for controlling inductive loads with appropriate snubber circuits.
  6. What is the maximum junction temperature of BT136X-800,127?

    • The maximum junction temperature of BT136X-800,127 is 125°C.
  7. Does BT136X-800,127 require a heat sink for operation?

    • It is recommended to use a heat sink for BT136X-800,127 to ensure proper thermal management, especially at higher currents.
  8. Can BT136X-800,127 be used in dimmer applications?

    • Yes, BT136X-800,127 can be used in dimmer applications for controlling the power to lighting loads.
  9. What are the typical applications of BT136X-800,127?

    • Typical applications of BT136X-800,127 include motor control, lighting control, and small appliance control.
  10. What are the key differences between BT136X-800,127 and other similar thyristors?

    • The key differences include the maximum voltage and current ratings, gate trigger characteristics, and thermal considerations.