2N6301-Darlington Overview
The 2N6301-Darlington is a high-gain, silicon NPN Darlington transistor designed for medium-power switching and amplification applications. It integrates two transistors in a single package, delivering a high current gain that simplifies drive circuitry and increases efficiency. With a collector-emitter voltage rating suitable for numerous industrial controls and power interfacing tasks, this device offers reliable performance in demanding environments. Its robust construction ensures consistent operation in switching and linear amplifier circuits. For detailed sourcing and technical data, visit IC Manufacturer.
2N6301-Darlington Key Features
- High Current Gain: The Darlington configuration provides significantly amplified current gain, reducing the need for multiple driver stages and enabling efficient switching control.
- Medium Power Handling: Designed to handle collector currents suitable for many industrial control applications, ensuring reliable operation under varying load conditions.
- Voltage Tolerance: With a collector-emitter voltage rating tailored for typical medium-voltage circuits, it supports robust integration in power electronics.
- Thermal Stability: Built to maintain performance across temperature variations, enhancing reliability in diverse operating environments.
2N6301-Darlington Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | NPN Darlington |
| Collector-Emitter Voltage, VCEO | 60 V (typical) |
| Collector Current, IC | 4 A (max) |
| Power Dissipation, PD | 65 W (max) |
| DC Current Gain, hFE | 1000 (min) |
| Transition Frequency, fT | 100 kHz (typical) |
| Collector-Base Voltage, VCBO | 80 V (max) |
| Operating Junction Temperature, TJ | 150 ??C (max) |
2N6301-Darlington Advantages vs Typical Alternatives
This transistor provides superior current gain and enhanced switching efficiency compared to standard single-transistor alternatives. Its integrated Darlington configuration reduces component count and simplifies circuit design. The device??s ability to handle medium power levels and withstand higher voltages ensures increased reliability and durability in industrial environments. These factors collectively enhance system performance while optimizing board space and thermal management.
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Typical Applications
- Power switching in industrial control systems, where reliable high current gain and voltage tolerance are critical for driving loads such as motors and solenoids.
- Amplification stages in audio and signal processing circuits requiring medium power handling with low distortion.
- Relay drivers in automation equipment to efficiently switch control signals with reduced input power demands.
- General-purpose switching applications in power supplies and electronic interfaces, offering robust operation in moderate voltage environments.
2N6301-Darlington Brand Info
The 2N6301-Darlington is a well-established transistor model widely recognized in industrial electronics for its dependable performance and ease of integration. Manufactured under stringent quality standards, this device is favored for applications requiring efficient current amplification with high gain and medium power capacity. Its consistent availability and proven track record make it a trusted component in industrial design portfolios.
FAQ
What type of transistor configuration does this device use?
This device features a Darlington transistor configuration, which consists of two NPN transistors connected to provide a very high current gain. This configuration enables it to amplify weak input signals into much stronger output currents with improved efficiency.
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What maximum voltage can this transistor handle?
The transistor supports a maximum collector-emitter voltage of approximately 60 volts, making it suitable for medium-voltage applications commonly found in industrial switching and control circuits.
How much current can the device safely switch?
The maximum collector current rating is typically 4 amperes, allowing it to handle moderate power loads such as small motors, relays, and solenoids in automation and control systems.
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Is this transistor suitable for high-frequency applications?
The device has a transition frequency around 100 kHz, which is adequate for many switching and low-frequency amplification tasks but is not optimized for high-frequency RF applications.
What are the thermal limits for safe operation?
The maximum operating junction temperature is rated at 150 ??C, ensuring reliable operation under typical industrial temperature conditions when proper cooling and heat dissipation practices are followed.







