2N6284-Darlington Overview
The 2N6284-Darlington is a high-power NPN Darlington transistor designed for demanding industrial and power switching applications. Featuring a robust collector current rating of up to 10A and a collector-emitter voltage capacity of 100V, it offers reliable performance in high-current environments. Its complementary Darlington pair configuration ensures high current gain, making it ideal for use in power amplifiers, motor control, and relay driving circuits. The device??s TO-3 metal can package enhances thermal dissipation, supporting sustained operation under elevated power conditions. For detailed procurement and technical support, visit IC Manufacturer.
2N6284-Darlington Technical Specifications
| Parameter | Specification |
|---|---|
| Collector-Emitter Voltage (VCEO) | 100 V |
| Collector Current (IC) | 10 A |
| Power Dissipation (PD) | 115 W |
| DC Current Gain (hFE) | 1000 (min) |
| Transition Frequency (fT) | 3 MHz (typical) |
| Collector-Base Voltage (VCBO) | 120 V |
| Emitter-Base Voltage (VEBO) | 5 V |
| Operating Junction Temperature (TJ) | 200 ??C |
2N6284-Darlington Key Features
- High Current Handling: Supports collector currents up to 10A, enabling control of heavy loads with minimal external components.
- High Voltage Capability: Withstands collector-emitter voltages up to 100V, suitable for medium-power industrial switching applications.
- Exceptional Current Gain: The Darlington pair configuration provides a minimum DC gain of 1000, reducing the need for additional amplification stages.
- Robust Power Dissipation: Rated for 115W, it ensures reliable operation under high thermal stress when used with appropriate heat sinking.
Typical Applications
- Power Amplifiers: Ideal for use in audio and industrial power amplification circuits requiring high current gain and voltage tolerance.
- Motor Control: Drives small to medium DC motors in automation and robotics, benefiting from high current capacity and reliable switching.
- Relay Drivers: Efficiently operates electromagnetic relays and solenoids in control systems where high current switching is necessary.
- Power Switching: Suitable for general-purpose switching in industrial equipment and power management circuits.
2N6284-Darlington Advantages vs Typical Alternatives
The device offers superior current gain and power dissipation compared to standard transistors, reducing the need for complex driver circuits. Its high voltage and current ratings provide enhanced reliability and robustness in power control applications. This improves system efficiency and integration by minimizing component count and heat generation, making it a preferred choice over typical single-transistor alternatives in demanding industrial environments.
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2N6284-Darlington Brand Info
The 2N6284-Darlington transistor is a standard high-power device widely offered by multiple semiconductor manufacturers. It is commonly available from leading suppliers including ON Semiconductor and Fairchild Semiconductor (now part of ON Semiconductor). As a classic TO-3 packaged transistor, it has been a trusted component in power electronics for decades, known for its reliable performance and ease of integration in industrial control systems. The part number corresponds to JEDEC standards, ensuring compatibility and interchangeability across various brands.
FAQ
What is the maximum collector current rating of this Darlington transistor?
The maximum collector current rating is 10 amperes, allowing the device to handle substantial load currents in power switching and amplification applications without compromising reliability.
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Can this transistor be used for high-frequency switching?
While the 2N6284-Darlington transistor has a transition frequency around 3 MHz, it is primarily designed for medium-frequency power applications, making it suitable for switching but not optimized for very high-frequency circuits.
What package type does this device use, and how does it affect thermal performance?
This transistor comes in a TO-3 metal can package, which provides excellent heat dissipation capabilities. This







