JAN2N3764U4-Transistor NPN Power Transistor in TO-3P Package by ON Semiconductor

  • This transistor amplifies electrical signals, enhancing performance in various electronic circuits.
  • It features a specified voltage rating that ensures safe operation under expected electrical loads.
  • The compact package minimizes board space, allowing for efficient use in dense circuit designs.
  • Ideal for switching applications in consumer electronics, improving response time and energy efficiency.
  • Manufactured to meet industry standards, ensuring consistent reliability and long-term durability.
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JAN2N3764U4-Transistor Overview

The JAN2N3764U4 is a high-power NPN bipolar junction transistor designed for robust switching and amplification applications. Engineered to deliver reliable performance under demanding conditions, this transistor features a high collector-emitter voltage and substantial collector current capacity. It is optimized for industrial and military-grade circuits requiring durability and precision. With a complementary balance of voltage, current, and power handling, it supports efficient thermal management and stable operation. This makes the device well-suited for power regulation, motor control, and signal amplification tasks. For detailed sourcing and technical data, visit the IC Manufacturer website.

JAN2N3764U4-Transistor Technical Specifications

ParameterValueUnit
Collector-Emitter Voltage (VCEO)100V
Collector-Base Voltage (VCBO)120V
Emitter-Base Voltage (VEBO)5V
Collector Current (IC) – Continuous10A
Power Dissipation (Ptot)125W
DC Current Gain (hFE)20 – 70(typical)
Transition Frequency (fT)4MHz
Operating Junction Temperature (TJ)200??C

JAN2N3764U4-Transistor Key Features

  • High voltage tolerance: Supports up to 100 V collector-emitter voltage, enabling use in high-voltage power switching circuits.
  • Robust current handling: Continuous collector current rating of 10 A ensures suitability for demanding load conditions.
  • Wide operating temperature range: Capable of functioning reliably up to 200??C junction temperature, increasing device longevity in harsh environments.
  • Moderate gain performance: DC current gain range from 20 to 70 balances amplification needs with stability across applications.

Typical Applications

  • Power amplification stages in industrial motor control systems, where high current handling and voltage ratings are crucial for performance and safety.
  • Switching regulators and power supply circuits requiring stable operation under variable load conditions.
  • Audio amplification circuits that benefit from the transistor??s linear gain and power dissipation capacity.
  • Military and aerospace electronics where reliability under extreme temperature and voltage stresses is mandatory.

JAN2N3764U4-Transistor Advantages vs Typical Alternatives

This transistor offers superior voltage and current ratings compared to typical small-signal counterparts, ensuring enhanced power handling and durability. Its ability to operate at elevated temperatures makes it a reliable choice for industrial and military applications requiring long-term stability. The moderate gain and transition frequency provide a balanced solution between amplification efficiency and switching speed, distinguishing it from lower power or less rugged devices.

JAN2N3764U4-Transistor Brand Info

The JAN2N3764U4 is a military-grade transistor originally manufactured to meet strict U.S. Department of Defense standards, indicated by the JAN (Joint Army-Navy) prefix. This classification guarantees rigorous quality control, reliability, and performance under extreme conditions. The transistor is often supplied by multiple reputable semiconductor manufacturers specializing in high-reliability components for aerospace, defense, and industrial markets. Its legacy design continues to be favored where dependable power transistors are essential.

FAQ

What is the maximum collector current rating of this transistor?

The maximum continuous collector current for this device is 10 amperes, allowing it to handle relatively high load currents in power applications without degradation.

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