2N6385P-Darlington-PIND Overview
The 2N6385P-Darlington-PIND is a high-performance Darlington transistor designed for medium-power amplification and switching applications. Featuring a robust silicon PNP structure, it delivers high current gain and reliable operation under demanding conditions. Its integrated PIND (Plastic Isolated N-Die) construction ensures enhanced thermal stability and mechanical durability, making it suitable for industrial control circuits and power driver stages. The device??s packaging supports efficient heat dissipation and easy PCB integration. Engineers and sourcing specialists will appreciate its balance of gain, voltage rating, and collector current capacity, ideal for a range of industrial and electronic system requirements. For more technical insights, visit IC Manufacturer.
2N6385P-Darlington-PIND Key Features
- High current gain: Provides substantial amplification, reducing the need for multiple stages in signal processing and power control circuits.
- PNP Darlington configuration: Enables high input impedance and low saturation voltage, ensuring efficient switching performance.
- Enhanced thermal stability: Plastic Isolated N-Die (PIND) technology improves heat dissipation and mechanical robustness, extending device reliability.
- Voltage and current ratings: Supports collector-emitter voltages suitable for medium-power industrial applications and continuous collector currents up to rated values.
2N6385P-Darlington-PIND Technical Specifications
| Parameter | Specification |
|---|---|
| Collector-Emitter Voltage (VCEO) | 80 V |
| Collector Current (IC) | 8 A (continuous) |
| DC Current Gain (hFE) | Minimum 1000 at IC=3 A |
| Saturation Voltage (VCE(sat)) | 1.5 V max at IC=3 A |
| Transition Frequency (fT) | 3 MHz typical |
| Power Dissipation (Ptot) | 115 W (with proper heat sinking) |
| Junction Temperature (TJ) | 200 ??C max |
| Package Type | TO-3 Plastic Isolated N-Die (PIND) |
2N6385P-Darlington-PIND Advantages vs Typical Alternatives
This Darlington transistor stands out with its high gain and robust PNP design, offering lower saturation voltage and better switching efficiency compared to standard transistors. Its PIND packaging enhances thermal management and mechanical durability, leading to improved reliability in industrial environments. These attributes reduce overall system complexity and improve power handling, making it advantageous for engineers seeking precision and dependable operation in medium-power applications.
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Typical Applications
- Power amplifier stages in industrial control systems, providing high gain and efficient switching for motor drivers and relay controls.
- Switching regulators where stable medium-power transistor operation is required under varying load conditions.
- Audio amplification circuits requiring medium-power PNP Darlington transistors for signal boosting with minimal distortion.
- General purpose medium-power switching where robust thermal and mechanical characteristics are critical for system longevity.
2N6385P-Darlington-PIND Brand Info
The 2N6385P-Darlington-PIND is a product from a leading semiconductor manufacturer specializing in reliable industrial transistors. This device combines advanced silicon PNP Darlington technology with innovative Plastic Isolated N-Die packaging to deliver high performance and durability. It is widely recognized in the electronics industry for applications demanding consistent amplification and switching capabilities. The brand??s commitment to quality and precision ensures this transistor meets stringent industrial standards for power handling and thermal stability.
FAQ
What is the maximum collector current rating for this transistor?
The maximum continuous collector current rating is 8 amperes, allowing the device to handle medium-power loads effectively in various industrial and electronic applications.
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How does the PIND packaging benefit device performance?
PIND packaging isolates the die plastically, improving heat dissipation and protecting the transistor from mechanical stresses. This enhances thermal stability and increases operational reliability, especially under heavy load conditions.
What voltage levels can this transistor safely operate at?
The transistor supports a maximum collector-emitter voltage of 80 volts, making it suitable for circuits requiring medium voltage handling in power amplification and switching roles.
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Can this transistor be used in audio amplification?
Yes, the high gain and low saturation voltage characteristics make it suitable for medium-power audio amplifier stages where clear signal reproduction is necessary.
What are typical industries or applications that use this Darlington transistor?
This transistor is commonly used in industrial control systems, power regulation, motor control, and other applications requiring reliable medium-power switching and amplification with enhanced thermal management.







