2C6193 Overview
The 2C6193 is a high-performance NPN transistor designed for medium-power amplification and switching applications. It offers robust current handling capability and reliable operation within a wide voltage range, making it suitable for industrial and consumer electronics. Its complementary structure and optimized gain characteristics ensure efficient signal amplification with minimal distortion. The device??s rugged construction supports dependable operation in demanding environments, while its compact package facilitates easy integration into complex circuits. For engineers and sourcing specialists seeking a reliable transistor solution, the 2C6193 balances performance and durability effectively. More information is available at IC-fabrikant.
2C6193 Key Features
- High collector current capacity: Supports up to 12A, enabling robust performance in power regulation and switching circuits.
- Voltage tolerance: With a collector-emitter voltage rating of 80V, it ensures reliable operation under substantial load conditions.
- Lage verzadigingsspanning: Minimizes power loss and heat generation, enhancing system efficiency and longevity.
- Fast switching speed: Suitable for applications requiring rapid on/off cycles, improving responsiveness and control.
2C6193 Technical Specifications
Parameter | Specificatie |
---|---|
Collector-Emitter Voltage (Vce) | 80 V |
Collector Current (Ic) | 12 A |
Power Dissipation (Pd) | 75 W |
Gain Bandwidth Product (fT) | 4 MHz |
DC Current Gain (hFE) | 15 to 60 |
Saturation Voltage (Vce(sat)) | 1.6 V (typical) |
Overgangsfrequentie | 4 MHz |
Bedrijfstemperatuurbereik | -55 °C tot +150 °C |
Type verpakking | TO-3P Metal Can |
2C6193 Advantages vs Typical Alternatives
This transistor provides superior current handling and voltage ratings compared to many standard NPN transistors, delivering enhanced robustness in power control applications. Its low saturation voltage reduces energy loss and heat buildup, contributing to improved efficiency and reliability. The wide operating temperature range ensures stable performance in harsh industrial environments, making it a preferred choice over typical alternatives with lower power or thermal tolerance.
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Typische toepassingen
- Power amplifier stages in audio and radio frequency systems, where high current and voltage handling are critical for clear signal reproduction.
- Switching regulators and power supplies requiring efficient switching and thermal stability.
- Motor control circuits that benefit from the device??s fast switching and robust current capacity.
- Industrial automation systems where reliable transistor operation under variable loads is essential.
2C6193 Brand Info
The 2C6193 transistor is a well-established product from a leading semiconductor manufacturer known for delivering high-quality power transistors. It is designed and tested to meet rigorous performance and reliability standards, making it a trusted component in many industrial and consumer electronic designs. Its consistent availability and proven track record support long-term projects and volume production.
FAQ
What is the maximum collector current for the 2C6193 transistor?
The maximum collector current rating for this transistor is 12 amperes, allowing it to handle substantial load currents in power amplification and switching applications without compromising reliability.
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What package type does the 2C6193 come in?
This transistor is housed in a TO-3P metal can package, which offers excellent thermal dissipation and mechanical durability, suitable for high-power applications.
Can the 2C6193 operate at high temperatures?
Yes, the device is rated for operation in temperatures ranging from -55??C to +150??C, making it suitable for use in environments with significant temperature variations.
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What is the typical gain bandwidth of this transistor?
The gain bandwidth product of the 2C6193 is approximately 4 MHz, enabling it to amplify signals effectively in medium-frequency applications.
How does the 2C6193 improve efficiency in switching circuits?
Its low saturation voltage reduces power dissipation during switching, which minimizes heat generation and increases overall energy efficiency in power management circuits.