2C6287 Overview
The 2C6287 is a high-performance bipolar transistor designed for switching and amplification applications. It offers reliable operation in medium power circuits with low saturation voltage and high current gain, ensuring efficient signal control and power management. This transistor is optimized for industrial and consumer electronics, making it a versatile choice for various electronic designs requiring dependable switching performance. For sourcing and technical details, visit the Fabricante de CI sitio web.
2C6287 Key Features
- Alta ganancia de corriente: Provides enhanced amplification efficiency, reducing the need for additional amplification stages in circuit design.
- Baja tensión de saturación: Minimizes power loss during switching, increasing overall energy efficiency and thermal performance.
- Medium power handling capability: Supports applications requiring moderate voltage and current levels without compromising reliability.
- Robust switching speed: Enables fast response in switching applications, improving circuit performance especially in digital and control systems.
2C6287 Technical Specifications
Parámetro | Valor | Unidad |
---|---|---|
Tensión colector-emisor (VDIRECTOR GENERAL) | 60 | V |
Corriente de colector (IC) | 3 | A |
Disipación de potencia (Ptot) | 30 | W |
Producto de ganancia de ancho de banda (fT) | 40 | MHz |
Tensión de saturación (VCE(sat)) | 1.2 | V |
Ganancia de corriente continua (hFE) | 40?C320 | ?? |
Frecuencia de transición | 40 | MHz |
Operating Junction Temperature (Tj) | 150 | ??C |
2C6287 Advantages vs Typical Alternatives
This transistor delivers superior switching performance with a low saturation voltage, which reduces power dissipation compared to typical alternatives. Its high current gain ensures efficient amplification, minimizing the need for additional driver stages. The robust thermal tolerances and medium power rating make it a reliable option for demanding industrial circuits, offering enhanced integration and consistent operation under varied electrical loads.
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Aplicaciones típicas
- Switching regulator circuits where efficient power control and thermal stability are critical for maintaining system reliability over long operational periods.
- Audio amplifier stages requiring medium power handling and high gain for clear signal reproduction.
- General purpose switching in industrial control systems, benefiting from fast switching speed and durability.
- Driver stages for relays and solenoids in automation setups, leveraging low saturation voltage for energy-efficient activation.
2C6287 Brand Info
The 2C6287 is a trusted bipolar transistor widely recognized for its dependable performance and versatility in medium power electronic applications. Manufactured by established semiconductor producers, this device combines proven technology with quality manufacturing processes. Its consistent specifications make it a preferred component for engineers and sourcing professionals seeking reliable switching and amplification solutions.
PREGUNTAS FRECUENTES
¿Cuál es la corriente de colector máxima de este transistor?
The maximum collector current is rated at 3 amperes, making it suitable for medium power applications where moderate current handling is required without compromising device longevity.
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How does the low saturation voltage benefit circuit design?
Low saturation voltage reduces power loss during transistor switching, which improves overall circuit efficiency and lowers heat generation. This characteristic is crucial in power-sensitive applications to enhance thermal management and energy savings.
Can this transistor be used for high-frequency applications?
With a transition frequency of 40 MHz, it supports moderate high-frequency applications such as switching regulators and driver circuits, although it is not intended for ultra-high-frequency RF uses.
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What is the typical gain range for this device?
The DC current gain ranges from 40 to 320, allowing flexibility in amplification stages. This wide range supports various design requirements where different gain levels are necessary.
Is the device suitable for harsh temperature environments?
Yes, the transistor can operate at junction temperatures up to 150??C, making it robust enough for industrial environments where elevated temperatures are common.