BCR 169F E6327 Overview
The BCR 169F E6327 is a precision phototransistor designed for efficient light detection and signal conversion in a range of industrial and consumer applications. Featuring a compact, high-sensitivity silicon phototransistor construction, it offers reliable performance with fast response times and excellent spectral sensitivity. This device is optimized for integration in optical sensing circuits, enabling accurate light measurement and control in automation, instrumentation, and communication systems. Sourced from IC Manufacturer, the BCR 169F E6327 delivers consistent responsiveness and stable operation under varied environmental conditions, providing engineers and sourcing specialists with a dependable component for high-performance photoelectric solutions.
BCR 169F E6327 Technical Specifications
| Parameter | Specification |
|---|---|
| Phototransistor Type | NPN Silicon Phototransistor |
| Collector-Emitter Voltage (VCEO) | 30 V |
| Collector Current (IC) | 50 mA maximum |
| Spectral Sensitivity Peak | 850 nm (near-infrared) |
| Rise Time (tr) | 5 ??s typical |
| Fall Time (tf) | 5 ??s typical |
| Dark Current (ID) | Less than 100 nA |
| Operating Temperature Range | -40 ??C to +85 ??C |
| Package Type | TO-18 Metal Can |
BCR 169F E6327 Key Features
- High sensitivity phototransistor: Enables precise detection of low-level light signals, improving measurement accuracy in optical sensing circuits.
- Fast response time: With typical rise and fall times of 5 microseconds, it supports rapid switching applications and dynamic light monitoring.
- Wide operating temperature range: Ensures stable performance across harsh industrial environments, reducing failure risks due to thermal stress.
- Low dark current: Minimizes noise in signal detection, enhancing signal-to-noise ratio for clearer output signals.
- Robust TO-18 metal can packaging: Provides mechanical protection and shielding against electromagnetic interference, facilitating reliable integration.
Typical Applications
- Optical encoders and position sensors where accurate light detection is essential for motion control and feedback systems.
- Light intensity measurement in industrial automation to monitor and adjust process parameters based on ambient or emitted light levels.
- Communication systems employing infrared light for data transmission, requiring sensitive phototransistors for signal reception.
- Consumer electronics such as remote control receivers and optical switches that depend on fast, reliable light sensing components.
BCR 169F E6327 Advantages vs Typical Alternatives
This phototransistor offers enhanced sensitivity and faster response time compared to many standard photodiodes, enabling more accurate optical signal processing. Its low dark current reduces noise, improving detection reliability. The robust TO-18 package ensures durable operation under industrial conditions, outperforming plastic-encapsulated alternatives in thermal and mechanical stability. These advantages make it a preferred choice for engineers seeking high precision and long-term dependability in photodetection applications.
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BCR 169F E6327 Brand Info
The BCR 169F E6327 is a product from a reputable semiconductor manufacturer specializing in discrete optoelectronics components. Known for delivering high-quality phototransistors, this brand emphasizes reliability, precision, and compatibility with diverse industrial needs. Their product portfolio supports a broad range of applications including sensing, automation, and communication systems, catering to engineers and sourcing specialists who demand consistent performance and rigorous quality standards.
FAQ
What is the typical spectral sensitivity range of this phototransistor?
The device exhibits peak spectral sensitivity around 850 nm, which falls in the near-infrared range. This makes it ideal for applications requiring detection of infrared light such as remote controls and optical communication.
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Can this phototransistor operate reliably in harsh environments?
Yes, it supports an operating temperature range from -40 ??C to +85 ??C, allowing it to function reliably in a wide variety of industrial and outdoor conditions without degradation of performance.






