BR250-290C2-28V-015 Overview
The BR250-290C2-28V-015 is a high-performance bipolar transistor designed for robust industrial applications requiring reliable switching and amplification at elevated voltages and currents. Operating at a collector-emitter voltage of 28V and featuring a collector current rating of 15A, it delivers consistent and efficient performance in demanding environments. This transistor??s optimized gain and power dissipation capabilities make it ideal for power management and control circuits. Engineered for durability and precision, it supports engineers and sourcing specialists seeking a dependable semiconductor component that balances efficiency with ruggedness. Discover more about its technical benefits at IC Manufacturer.
BR250-290C2-28V-015 Technical Specifications
| Parameter | Specification | Unit |
|---|---|---|
| Collector-Emitter Voltage (VCEO) | 28 | V |
| Collector Current (IC) | 15 | A |
| Power Dissipation (PD) | 290 | W |
| DC Current Gain (hFE) | 250 | ?C |
| Transition Frequency (fT) | ??100 | MHz |
| Junction Temperature (Tj) | 175 | ??C |
| Collector-Base Voltage (VCBO) | 40 | V |
| Emitter-Base Voltage (VEBO) | 5 | V |
BR250-290C2-28V-015 Key Features
- High DC Current Gain: The gain value of 250 enables effective amplification with minimal input drive, optimizing circuit performance and reducing power loss.
- Robust Power Dissipation: With a maximum power dissipation rating of 290W, this device handles high power loads efficiently, ensuring stability under strenuous operating conditions.
- Wide Operating Temperature Range: It supports junction temperatures up to 175??C, allowing reliable function in harsh industrial environments without derating.
- Fast Switching Speed: A transition frequency of 100MHz or higher facilitates high-speed switching applications, enhancing responsiveness in control circuits.
BR250-290C2-28V-015 Advantages vs Typical Alternatives
This transistor stands out due to its combination of high gain, substantial power dissipation, and durable voltage ratings, which together offer superior efficiency and reliability compared to typical bipolar transistors. Its ability to operate at elevated junction temperatures and deliver consistent performance under high current loads makes it an advantageous choice for engineers seeking robust and long-lasting components in power amplification and switching applications.
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Typical Applications
- Power Amplification Circuits: Ideal for industrial power amplifiers requiring stable gain and reliable heat management during high current operation.
- Motor Control Systems: Suitable for driving motors where precise switching and high load handling are critical.
- Power Supply Regulation: Used in voltage regulation stages demanding efficient current control and thermal stability.
- Switching Devices: Effective in high-speed switching roles within industrial automation and control equipment.
BR250-290C2-28V-015 Brand Info
The BR250-290C2-28V-015 is a signature offering from a leading semiconductor manufacturer specializing in discrete power devices. Designed for industrial-grade applications, this transistor reflects the brand??s commitment to quality, reliability, and performance. It is engineered with advanced fabrication processes to meet stringent electrical and thermal requirements, supporting engineers and sourcing specialists in deploying efficient power solutions across diverse industrial sectors.
FAQ
What is the maximum collector current for this transistor?
The transistor supports a maximum collector current of 15 amperes, making it suitable for high-power applications requiring substantial current handling capability without compromising reliability.
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Can the device operate at high temperatures?
Yes, it can operate safely with a maximum junction temperature of up to 175??C, ensuring dependable performance in environments with elevated thermal stress.
What voltage ratings does this transistor support?
It supports a collector-emitter voltage of 28 volts, a collector-base voltage of 40 volts, and an emitter-base voltage of 5 volts, ensuring compatibility with a variety of industrial power supply designs.
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How does the transistor??s gain affect circuit performance?
The DC current gain of 250 allows for efficient amplification, reducing the input drive requirements and improving overall circuit efficiency by minimizing power loss in the control stage.
Is this device suitable for high-frequency switching?
Yes, with a transition frequency of 100 MHz or more, it is well-suited for high-speed switching applications, enabling faster response times in industrial control and automation systems.






