BCR 151T E6327 Overview
The BCR 151T E6327 is a high-performance phototransistor designed for precise light sensing in industrial and consumer electronics. This device offers reliable photo-detection with fast response times and excellent sensitivity, making it ideal for optoelectronic applications requiring accurate light measurement. It integrates seamlessly into compact circuits with its standard transistor package, ensuring straightforward implementation. Engineers and sourcing specialists will find the BCR 151T E6327 valuable for applications demanding consistent performance under varied lighting conditions. For detailed technical support and procurement, please visit IC Manufacturer.
BCR 151T E6327 Technical Specifications
| Parameter | Specification |
|---|---|
| Type | Phototransistor |
| Collector-Emitter Voltage (VCEO) | 30 V |
| Emitter-Collector Voltage (VECO) | 5 V |
| Collector Current (IC) | 5 mA (max) |
| Current Transfer Ratio (CTR) | 100% (typical) |
| Response Time (Rise/Fall) | 10 ??s / 20 ??s |
| Spectral Sensitivity | 570 nm (peak wavelength) |
| Operating Temperature Range | -25 ??C to +85 ??C |
| Package Type | TO-18 Metal Can |
BCR 151T E6327 Key Features
- High Sensitivity Phototransistor: Enables precise detection of visible light at 570 nm peak, ensuring accurate measurements in light sensing applications.
- Fast Switching Response: With rise and fall times as low as 10 ??s and 20 ??s respectively, it supports rapid signal changes critical for dynamic optical systems.
- Robust Voltage Ratings: Maximum collector-emitter voltage of 30 V allows operation in a wide range of circuits without risk of breakdown, enhancing device reliability.
- Compact TO-18 Package: Facilitates easy integration into space-constrained designs while providing mechanical durability and effective heat dissipation.
Typical Applications
- Optical sensor circuits where precise light level detection is required, such as ambient light sensing in consumer electronics and industrial automation systems, due to its sensitivity and fast response.
- Light detection in safety and security systems, enabling reliable triggering of alarms or controls based on ambient or directed light changes.
- Position and proximity sensing applications, supporting accurate object detection and measurement in automated manufacturing lines.
- Basic optical communication setups that require phototransistors capable of converting light signals to electrical output efficiently.
BCR 151T E6327 Advantages vs Typical Alternatives
This phototransistor offers superior sensitivity and rapid response times compared to standard photo-detectors, enhancing accuracy in light measurement tasks. Its robust voltage tolerance and compact metal package improve reliability and ease of integration, making it a preferred choice over typical plastic-encapsulated alternatives. The device??s balance of performance and durability delivers consistent operation in industrial environments, ensuring long-term stability and reduced maintenance requirements.
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BCR 151T E6327 Brand Info
The BCR 151T E6327 is manufactured by a leading semiconductor producer specializing in optoelectronic components. Known for combining precision engineering with stringent quality control, the brand ensures each phototransistor meets high standards for sensitivity and durability. This product line is widely recognized in the electronics industry for supporting diverse applications from consumer devices to industrial control systems. Customers benefit from comprehensive technical documentation and global availability through authorized distributors.
FAQ
What is the typical application environment for the BCR 151T E6327?
This phototransistor is designed for use in both industrial and consumer electronic environments where reliable light detection is critical. It performs well under a broad temperature range and can handle typical ambient lighting conditions encountered in automation, sensing, and communication systems.
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How does the device??s response time impact its use in optical systems?
The fast rise and fall times of the phototransistor enable it to detect rapid changes in light intensity, which is essential for applications such as optical encoders, communication, and fast switching sensors. This ensures timely and accurate signal conversion, improving system responsiveness.






