画像はイメージの場合もございます。
商品詳細は仕様をご覧ください。
BC183C_J35Z

BC183C_J35Z

Product Overview

Category

The BC183C_J35Z belongs to the category of integrated circuits (ICs) and specifically falls under the class of transistors.

Use

This product is commonly used in electronic circuitry for amplification and switching purposes.

Characteristics

  • The BC183C_J35Z is a small signal NPN bipolar junction transistor.
  • It has a low power dissipation and high current gain, making it suitable for low to medium power applications.
  • The transistor is designed for general purpose amplifier and switching applications.

Package

The BC183C_J35Z is typically available in a TO-92 package, which is a widely used through-hole package for transistors.

Essence

The essence of this product lies in its ability to amplify and switch electronic signals with efficiency and reliability.

Packaging/Quantity

It is commonly packaged in reels or tubes containing a quantity of 1000 units per package.

Specifications

  • Collector-Base Voltage (VCBO): 50V
  • Collector-Emitter Voltage (VCEO): 45V
  • Emitter-Base Voltage (VEBO): 6V
  • Collector Current (IC): 100mA
  • Power Dissipation (PD): 625mW
  • DC Current Gain (hFE): 110 - 800
  • Transition Frequency (fT): 250MHz

Detailed Pin Configuration

The BC183C_J35Z transistor has three pins: 1. Collector (C) 2. Base (B) 3. Emitter (E)

Functional Features

  • High current gain
  • Low power dissipation
  • Wide range of hFE values for flexibility in design

Advantages

  • Versatile application in various electronic circuits
  • Suitable for low to medium power applications
  • Wide range of hFE values allows for customization based on specific requirements

Disadvantages

  • Limited power handling capability compared to higher power transistors
  • Sensitive to temperature variations due to its small size

Working Principles

The BC183C_J35Z operates based on the principles of bipolar junction transistors, utilizing the flow of charge carriers to amplify or switch electronic signals. When a small current flows into the base terminal, it controls a larger current flowing between the collector and emitter terminals, enabling signal amplification or switching.

Detailed Application Field Plans

The BC183C_J35Z finds extensive use in the following applications: - Audio amplifiers - Signal amplification in sensor circuits - Switching circuits in electronic devices - Oscillator circuits

Detailed and Complete Alternative Models

Some alternative models to the BC183C_J35Z include: - BC547 - 2N2222 - 2N3904 - BC337

In conclusion, the BC183C_J35Z transistor offers a versatile and reliable solution for amplification and switching needs in electronic circuits, with its compact size and wide range of applications making it a popular choice among designers and engineers.

[Word count: 410]

技術ソリューションにおける BC183C_J35Z の適用に関連する 10 件の一般的な質問と回答をリストします。

  1. What is BC183C_J35Z?

    • BC183C_J35Z is a specific type of transistor commonly used in electronic circuits for amplification and switching purposes.
  2. What are the key specifications of BC183C_J35Z?

    • The key specifications of BC183C_J35Z include its maximum voltage and current ratings, gain bandwidth product, and package type.
  3. How is BC183C_J35Z typically used in technical solutions?

    • BC183C_J35Z is often used in audio amplifier circuits, signal processing applications, and as a switch in digital logic circuits.
  4. What are the typical operating conditions for BC183C_J35Z?

    • BC183C_J35Z is typically operated within a specific range of voltages, currents, and temperatures to ensure proper performance and reliability.
  5. Can BC183C_J35Z be used in high-frequency applications?

    • BC183C_J35Z is not typically recommended for high-frequency applications due to its limited bandwidth and frequency response.
  6. Are there any common alternatives to BC183C_J35Z?

    • Common alternatives to BC183C_J35Z include other bipolar junction transistors with similar characteristics, such as BC547 or 2N3904.
  7. What are the potential challenges when using BC183C_J35Z in a circuit?

    • Potential challenges may include thermal considerations, voltage and current limitations, and ensuring proper biasing for optimal performance.
  8. Can BC183C_J35Z be used in low-power applications?

    • Yes, BC183C_J35Z can be used in low-power applications where moderate amplification or switching capabilities are required.
  9. What are some best practices for designing with BC183C_J35Z?

    • Best practices include proper biasing, thermal management, and consideration of the transistor's gain and frequency response in the circuit design.
  10. Where can I find detailed datasheets and application notes for BC183C_J35Z?

    • Detailed datasheets and application notes for BC183C_J35Z can typically be found on semiconductor manufacturer websites or distributor platforms.