2N6384-Darlington Transistor, High Gain Power Amplifier, TO-3 Package ?C ON Semiconductor

  • This transistor provides high current gain through its Darlington configuration, enabling efficient signal amplification.
  • Its voltage rating supports robust operation in circuits requiring reliable switching or amplification under stress.
  • The package design offers a compact footprint, allowing for efficient use of board space in dense electronic assemblies.
  • Ideal for motor control applications where stable current amplification enhances performance and responsiveness.
  • Manufactured with quality controls to ensure consistent operation and long-term reliability in various environments.
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2N6384-Darlington Overview

The 2N6384-Darlington is a high-voltage, high-current Darlington transistor designed for industrial power switching and amplification applications. Featuring a robust collector-emitter voltage and high gain, it enables efficient control of substantial loads with low input current requirements. This transistor??s rugged construction supports reliable operation under demanding conditions, making it ideal for power supply regulation, motor control, and amplifier stages. With a TO-3 metal can package, it ensures effective heat dissipation and mechanical durability. For detailed sourcing and technical support, visit IC Manufacturer.

2N6384-Darlington Technical Specifications

ParameterSpecificationUnits
Collector-Emitter Voltage (VCEO)100V
Collector-Base Voltage (VCBO)120V
Emitter-Base Voltage (VEBO)5V
Collector Current (IC)12A
Power Dissipation (PD)150W
Gain (hFE)10,000 (typical)(Unitless)
Transition Frequency (fT)3.0MHz
Junction Temperature (TJ)200??C

2N6384-Darlington Key Features

  • High voltage capability: Supports collector-emitter voltages up to 100 V, enabling reliable operation in demanding power switch circuits.
  • High current handling: Rated for collector currents up to 12 A, allowing control of substantial loads with ease.
  • Darlington configuration: Provides extremely high current gain (~10,000), reducing base drive requirements and improving system efficiency.
  • Robust power dissipation: Capable of dissipating up to 150 W, ensuring stable performance in high-power environments.
  • Thermally resilient TO-3 package: Offers excellent heat dissipation and mechanical strength for industrial reliability.
  • Moderate transition frequency: Suitable for applications requiring switching frequencies up to a few megahertz.
  • Wide operating temperature range: Junction temperature rating up to 200 ??C ensures performance stability under thermal stress.

Typical Applications

  • Industrial motor control circuits where high current and voltage switching is essential for reliable operation of motors and actuators.
  • Power supply regulation stages requiring efficient amplification of control signals to drive high-power loads.
  • Audio amplifier output stages benefiting from high gain and power handling to deliver robust sound reproduction.
  • Switching regulators and inverters where rugged, high-current transistors improve overall system efficiency and longevity.

2N6384-Darlington Advantages vs Typical Alternatives

This Darlington transistor offers superior current gain and voltage handling compared to standard bipolar junction transistors, reducing drive complexity and improving efficiency. Its high power dissipation rating and thermally robust TO-3 package enhance reliability in harsh industrial environments. The device??s combination of sensitivity and ruggedness makes it a preferred choice over discrete transistor pairs or lower-rated alternatives where compactness and performance are critical.

2N6384-Darlington Brand Info

The 2N6384-Darlington transistor is a well-established product typically supplied by leading semiconductor manufacturers specializing in power discrete devices. Known for their quality and reliability, these manufacturers provide comprehensive datasheets and support for industrial applications. The device is widely available through authorized distributors and is recognized for its consistent performance in high-voltage, high-current switching scenarios.

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