BCR 512 B6327 Overview
The BCR 512 B6327 is a precision bipolar transistor designed for reliable switching and amplification in industrial electronics. Featuring a medium power rating and robust construction, it offers consistent performance in demanding environments. This transistor is optimized for applications requiring stable gain and low saturation voltage, ensuring efficient operation in control circuits and driver stages. Its compatibility with standard transistor configurations makes it a versatile choice for engineers and sourcing specialists. For detailed specifications and sourcing options, visit IC Manufacturer.
BCR 512 B6327 Technical Specifications
| Parameter | Specification |
|---|---|
| Type | NPN Bipolar Junction Transistor |
| Collector-Emitter Voltage (VCEO) | 50 V |
| Collector Current (IC) | 500 mA |
| Power Dissipation (Ptot) | 625 mW |
| Gain Bandwidth Product (fT) | 100 MHz |
| DC Current Gain (hFE) | 100?C300 |
| Transition Frequency | 100 MHz |
| Package Type | TO-92 |
| Operating Temperature Range | -55??C to +150??C |
BCR 512 B6327 Key Features
- High Gain Stability: Enables consistent amplification across a wide temperature range, improving circuit reliability.
- Low Saturation Voltage: Reduces power losses during switching, enhancing energy efficiency in driver applications.
- Medium Power Handling: Supports currents up to 500 mA, suitable for moderate load control without additional cooling.
- Industry-Standard TO-92 Package: Facilitates easy integration into existing PCB layouts, supporting compact designs.
Typical Applications
- Switching and amplification in industrial control systems, where reliable transistor operation is critical for managing actuators and sensors.
- Driver stages for relay and LED circuits, ensuring efficient current control with minimal signal distortion.
- Signal amplification in audio and communication circuits requiring medium gain and frequency response up to 100 MHz.
- General-purpose transistor applications in consumer and industrial electronics needing stable performance under varying environmental conditions.
BCR 512 B6327 Advantages vs Typical Alternatives
This transistor offers superior gain stability and low saturation voltage compared to typical alternatives, resulting in improved energy efficiency and signal integrity. Its medium power rating and broad temperature tolerance make it more reliable for industrial environments. The TO-92 package ensures compatibility with standard mounting and soldering processes, simplifying integration and reducing manufacturing complexity.
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BCR 512 B6327 Brand Info
The BCR 512 B6327 is manufactured by NXP Semiconductors, a leading supplier in the semiconductor industry known for high-quality discrete components. NXP??s legacy in producing reliable bipolar transistors ensures this model meets stringent industrial standards. This product line emphasizes durability and performance, aligning with NXP??s commitment to supporting advanced electronics in automotive, industrial, and consumer markets.
FAQ
What is the maximum collector current rating for this transistor?
The maximum collector current for this transistor is 500 mA. This allows it to handle moderate power loads in various switching and amplification applications without the need for additional heat sinking in typical operating conditions.
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Can this transistor operate at high frequencies?
Yes, it features a gain bandwidth product of around 100 MHz, making it suitable for moderate-frequency applications such as signal amplification and switching in control circuits where response speed is important.
What package type does this transistor use, and why is it beneficial?
This device comes in a TO-92 package, which is widely used due to its compact size, ease of mounting, and cost-effectiveness. It supports through-hole PCB assembly, making it compatible with many industrial and consumer electronic designs.
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What temperature range is supported for reliable operation?
The transistor is rated for operation between -55??C and +150??C, ensuring reliable performance in harsh industrial environments and applications exposed to wide temperature variations.
How does the low saturation voltage benefit circuit design?
Low saturation voltage reduces power dissipation





