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MPSH10_D74Z

MPSH10_D74Z

Product Overview

Category

MPSH10_D74Z belongs to the category of small-signal transistors.

Use

It is commonly used in low-power amplification and switching applications.

Characteristics

  • Small size
  • Low power consumption
  • High gain
  • Fast switching speed

Package

MPSH10_D74Z is typically available in a SOT-23 package.

Essence

The essence of MPSH10_D74Z lies in its ability to provide high gain and fast switching in a compact form factor.

Packaging/Quantity

It is usually packaged in reels with quantities varying based on manufacturer specifications.

Specifications

  • Maximum Collector-Base Voltage: 60V
  • Maximum Collector Current: 100mA
  • Power Dissipation: 225mW
  • Transition Frequency: 250MHz
  • Noise Figure: 1dB

Detailed Pin Configuration

MPSH10_D74Z has three pins: 1. Emitter (E) 2. Base (B) 3. Collector (C)

Functional Features

  • High voltage capability
  • Low leakage current
  • Wide operating temperature range

Advantages

  • Small form factor
  • High gain
  • Low noise figure

Disadvantages

  • Limited maximum collector current
  • Moderate transition frequency

Working Principles

MPSH10_D74Z operates based on the principles of bipolar junction transistors, utilizing the flow of charge carriers to amplify or switch electronic signals.

Detailed Application Field Plans

MPSH10_D74Z finds application in various fields including: - Audio amplification - Sensor interfacing - Oscillator circuits - Signal switching

Detailed and Complete Alternative Models

Some alternative models to MPSH10_D74Z include: - 2N3904 - BC547 - 2SC945 - BC337

This comprehensive entry provides an in-depth understanding of MPSH10_D74Z, covering its basic information, specifications, functional features, advantages, disadvantages, working principles, application field plans, and alternative models.

Liste 10 perguntas e respostas comuns relacionadas à aplicação de MPSH10_D74Z em soluções técnicas

  1. What is MPSH10_D74Z?

    • MPSH10_D74Z is a high-frequency NPN transistor designed for use in RF amplifiers and oscillators.
  2. What are the key specifications of MPSH10_D74Z?

    • The key specifications of MPSH10_D74Z include a maximum collector current of 50mA, a maximum power dissipation of 300mW, and a transition frequency of 600MHz.
  3. In what technical solutions can MPSH10_D74Z be used?

    • MPSH10_D74Z can be used in various technical solutions such as RF amplifiers, oscillators, signal generators, and high-frequency applications.
  4. What are the typical operating conditions for MPSH10_D74Z?

    • The typical operating conditions for MPSH10_D74Z include a collector-emitter voltage (Vce) of 30V, a collector current (Ic) of 5mA, and a base current (Ib) of 0.5mA.
  5. How does MPSH10_D74Z compare to similar transistors in its class?

    • MPSH10_D74Z offers high frequency performance and low noise characteristics compared to similar transistors in its class, making it suitable for demanding RF applications.
  6. Can MPSH10_D74Z be used in low-power applications?

    • Yes, MPSH10_D74Z can be used in low-power applications due to its low power dissipation and efficient performance at lower current levels.
  7. What are the recommended mounting and handling practices for MPSH10_D74Z?

    • It is recommended to use appropriate ESD precautions during handling and to mount MPSH10_D74Z on a suitable heat sink to ensure proper thermal management.
  8. Are there any known limitations or sensitivities of MPSH10_D74Z?

    • MPSH10_D74Z may exhibit some sensitivity to static discharge and should be handled with care to avoid damage to the device.
  9. Can MPSH10_D74Z be used in high-temperature environments?

    • MPSH10_D74Z has a maximum junction temperature of 150°C, allowing it to be used in moderately high-temperature environments with proper thermal considerations.
  10. Where can I find detailed application notes and reference designs for using MPSH10_D74Z in technical solutions?

    • Detailed application notes and reference designs for MPSH10_D74Z can be found in the product datasheet, technical documentation provided by the manufacturer, and relevant application guides for RF circuit design.