JANKCC2N6193 Overview
The JANKCC2N6193 is a high-performance NPN bipolar junction transistor (BJT) designed for switching and amplification in industrial electronics. It offers reliable operation with a collector current rating suitable for medium-power applications. Its robust electrical characteristics ensure stable performance under varying load conditions, making it an ideal choice for engineers seeking dependable switching components. Manufactured with proven semiconductor processes, this transistor supports efficient circuit integration and enhanced thermal stability. For detailed specifications and sourcing, visit IC Manufacturer.
JANKCC2N6193 Key Features
- High Collector Current Capacity: Supports continuous collector currents up to 8A, enabling efficient handling of medium-power loads without degradation.
- Low Saturation Voltage: Ensures minimal power loss during switching, which improves overall system efficiency and reduces heat generation.
- Robust Gain Characteristics: Provides a DC current gain (hFE) range optimized for stable amplification and switching performance in industrial applications.
- Thermal Stability: Designed to maintain consistent electrical behavior across a wide temperature range, enhancing reliability in harsh operating environments.
JANKCC2N6193 Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Collector-Emitter Voltage (Vceo) | 100 | V |
| Collector Current (Ic) | 8 | A |
| DC Current Gain (hFE) | 40 to 320 | – |
| Power Dissipation (Ptot) | 75 | W |
| Transition Frequency (fT) | 6 | MHz |
| Collector-Base Voltage (Vcbo) | 100 | V |
| Emitter-Base Voltage (Vebo) | 5 | V |
| Operating Junction Temperature (Tj) | -65 to +150 | ??C |
JANKCC2N6193 Advantages vs Typical Alternatives
This transistor stands out with its high collector current handling and low saturation voltage, offering better power efficiency compared to typical BJTs in the same voltage class. Its wide gain range and robust thermal stability provide engineers with a reliable solution for demanding industrial switching and amplification tasks, reducing system losses and improving overall device longevity.
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Typical Applications
- Industrial motor control circuits requiring efficient switching and reliable current handling, ensuring precise operation under varying loads.
- Power amplifiers in audio and signal processing where medium-power transistor performance is critical.
- General-purpose switching in power supplies and voltage regulation modules.
- Automotive electronic systems that demand durable components capable of withstanding thermal and electrical stress.
JANKCC2N6193 Brand Info
The JANKCC2N6193 is part of a series of transistors produced by a reputable semiconductor manufacturer known for high-quality industrial-grade components. This product line focuses on delivering consistent performance, reliability, and ease of integration in complex electronic circuits. The transistor benefits from rigorous manufacturing standards and quality assurance processes, positioning it as a trusted choice for engineers and sourcing specialists working within industrial and automotive sectors.
FAQ
What is the maximum collector current rating for this transistor?
The maximum continuous collector current rating is 8 amperes, making it suitable for medium-power switching and amplification applications in various industrial circuits.
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What voltage levels can the JANKCC2N6193 handle safely?
This transistor can safely operate up to 100 volts between collector and emitter, and collector to base, providing flexibility for use in moderate-voltage applications.
How does the DC current gain (hFE) affect performance?
The DC current gain ranges from 40 to 320, which allows for stable amplification and efficient switching performance, ensuring adaptability to different circuit requirements.
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What thermal conditions can this device withstand during operation?
It is rated for an operating junction temperature range from -65??C to +150??C, ensuring reliable performance even in harsh thermal environments.
Is this transistor suitable for automotive applications?
Yes, its robust electrical ratings and thermal stability make it well-suited for automotive electronics, where durability under variable conditions is essential.







