BCR 169L3 E6327 Overview
The BCR 169L3 E6327 is a highly sensitive phototransistor designed for precise light detection and switching applications. This component delivers reliable performance with a well-defined spectral response, making it suitable for industrial automation, optical sensing, and electronic instrumentation. Featuring a compact package and robust electrical characteristics, it ensures stable operation in diverse environments. Engineers and sourcing specialists benefit from its consistent quality and compatibility with standard circuit designs. For detailed technical support and product updates, visit IC Manufacturer.
BCR 169L3 E6327 Technical Specifications
| Parameter | Value |
|---|---|
| Type | Phototransistor |
| Collector-Emitter Voltage (VCE) | 30 V |
| Emitter-Collector Voltage (VEC) | 5 V |
| Collector Current (IC) | 50 mA |
| Power Dissipation (Ptot) | 150 mW |
| Spectral Sensitivity Peak | 850 nm (Infrared) |
| Rise Time | 4 ??s |
| Fall Time | 10 ??s |
| Package Type | Transistor Outline (TO-18 metal can) |
BCR 169L3 E6327 Key Features
- High sensitivity to infrared light: Enables accurate detection in low-light and optical communication systems, improving signal reliability.
- Fast switching times: Rise and fall times under 10 ??s facilitate rapid response in high-speed sensing and timing circuits.
- Compact TO-18 metal can package: Provides excellent thermal dissipation and mechanical protection, enhancing device longevity in harsh environments.
- Low dark current: Minimizes noise and false triggering, critical for precise measurement and control applications.
Typical Applications
- Optical sensor circuits for industrial process control, where accurate detection of infrared light contributes to automation efficiency and safety.
- Remote control receivers in consumer electronics requiring reliable infrared signal reception and quick switching capabilities.
- Light barrier systems for object detection and counting in manufacturing lines, taking advantage of the device??s sensitivity and response speed.
- Electronic instrumentation that demands precise phototransistor components for light intensity measurement and feedback loops.
BCR 169L3 E6327 Advantages vs Typical Alternatives
This phototransistor excels with its superior infrared sensitivity and rapid switching time compared to typical alternatives. Its robust TO-18 package ensures better heat dissipation and mechanical stability, reducing failure rates in industrial applications. The low dark current characteristic improves signal accuracy, making it a reliable choice for precision sensing and control, outperforming generic phototransistors in both efficiency and integration.
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BCR 169L3 E6327 Brand Info
The BCR 169L3 E6327 is a product from a reputable semiconductor manufacturer known for high-quality optoelectronic components. This device is part of a family of phototransistors designed to meet stringent industrial standards with consistent manufacturing processes. The brand focuses on delivering dependable components that support a wide range of applications including automation, instrumentation, and consumer electronics. Their commitment to innovation and quality ensures that this phototransistor offers excellent performance and long-term reliability.
FAQ
What is the maximum collector current rating for this phototransistor?
The maximum collector current is specified as 50 mA, which should not be exceeded to ensure safe and reliable operation. This rating defines the maximum continuous current the device can handle without damage under recommended conditions.
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What wavelength does the phototransistor respond to most effectively?
The device exhibits peak spectral sensitivity around 850 nm, which is in the near-infrared region. This makes it particularly suitable for applications involving infrared light detection such as remote controls and optical sensors.
What are the typical switching speeds for this component?
The rise time is approximately 4 microseconds, while the fall time is about 10 microseconds. These fast switching speeds allow the device to be used in applications requiring quick response times, such as high-speed signal processing.





