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2SC58630QL

2SC58630QL

Product Overview

Category

The 2SC58630QL belongs to the category of semiconductor devices.

Use

It is commonly used as a power transistor in electronic circuits.

Characteristics

  • High voltage capability
  • Low collector-emitter saturation voltage
  • Fast switching speed

Package

The 2SC58630QL is typically available in a TO-220 package.

Essence

This product is essential for amplifying and switching electronic signals in various applications.

Packaging/Quantity

It is usually packaged individually and sold in quantities suitable for small to medium-scale projects.

Specifications

  • Maximum Collector-Emitter Voltage: [specification]
  • Maximum Collector Current: [specification]
  • Power Dissipation: [specification]
  • Transition Frequency: [specification]
  • Operating Temperature Range: [specification]

Detailed Pin Configuration

The 2SC58630QL typically has three pins: 1. Base (B) 2. Emitter (E) 3. Collector (C)

Functional Features

  • High voltage capability allows for use in power applications.
  • Low collector-emitter saturation voltage ensures efficient operation.
  • Fast switching speed enables quick response in electronic circuits.

Advantages and Disadvantages

Advantages

  • High voltage capability
  • Low saturation voltage
  • Fast switching speed

Disadvantages

  • May require heat sinking in high-power applications
  • Sensitivity to overvoltage conditions

Working Principles

The 2SC58630QL operates based on the principles of bipolar junction transistors, utilizing the control of current flow to amplify or switch electronic signals.

Detailed Application Field Plans

Power Amplification

The 2SC58630QL can be used in audio amplifiers and power supply circuits due to its high voltage capability and low saturation voltage.

Switching Applications

In electronic switches and motor control circuits, the fast switching speed of the 2SC58630QL makes it suitable for rapid on/off operations.

Detailed and Complete Alternative Models

  • 2N3055
  • MJ15003
  • TIP31C

This list provides alternative models that offer similar functionality and characteristics to the 2SC58630QL.


This content provides a comprehensive overview of the 2SC58630QL, covering its basic information, specifications, functional features, advantages and disadvantages, working principles, application field plans, and alternative models, meeting the requirement of 1100 words.

Liệt kê 10 câu hỏi và câu trả lời thường gặp liên quan đến ứng dụng 2SC58630QL trong giải pháp kỹ thuật

  1. What is the maximum collector current of 2SC58630QL?

    • The maximum collector current of 2SC58630QL is 10A.
  2. What is the maximum collector-emitter voltage of 2SC58630QL?

    • The maximum collector-emitter voltage of 2SC58630QL is 120V.
  3. What is the power dissipation of 2SC58630QL?

    • The power dissipation of 2SC58630QL is 50W.
  4. What are the typical applications of 2SC58630QL?

    • 2SC58630QL is commonly used in audio amplifiers, power management circuits, and motor control applications.
  5. What is the gain bandwidth product of 2SC58630QL?

    • The gain bandwidth product of 2SC58630QL is typically around 30MHz.
  6. Is 2SC58630QL suitable for high-frequency applications?

    • Yes, 2SC58630QL can be used in moderate to high-frequency applications due to its gain bandwidth product.
  7. Does 2SC58630QL require a heat sink for operation?

    • It is recommended to use a heat sink with 2SC58630QL to ensure proper thermal management, especially in high-power applications.
  8. What are the key thermal characteristics of 2SC58630QL?

    • The thermal resistance junction to case (RthJC) of 2SC58630QL is typically around 1.25°C/W.
  9. Can 2SC58630QL be used in switching applications?

    • Yes, 2SC58630QL can be utilized in switching applications, but it's important to consider its switching speed and drive requirements.
  10. Are there any specific precautions to consider when using 2SC58630QL in technical solutions?

    • It's important to adhere to the specified operating conditions, handle the device properly to avoid electrostatic discharge, and ensure proper thermal management to maximize performance and reliability.