BCR 103F E6327 Overview
The BCR 103F E6327 is a high-performance phototransistor designed for precise light detection and switching applications. Known for its stable operation and robust sensitivity, this device excels in industrial and consumer electronics where reliable optical sensing is critical. Its compact form factor and efficient response to visible light make it ideal for integration in automated systems, safety equipment, and optical communication interfaces. Sourced from a reputable IC Manufacturer, it offers engineers and sourcing specialists a dependable solution combining accuracy, low noise, and consistent gain characteristics in diverse environments.
BCR 103F E6327 Technical Specifications
| Parameter | Specification |
|---|---|
| Phototransistor Type | NPN silicon phototransistor |
| Peak Sensitivity Wavelength | 850 nm (near infrared) |
| Collector-Emitter Voltage (VCE) | Maximum 30 V |
| Collector Current (IC) | Maximum 50 mA |
| Dark Current (ICEO) | Typically 50 nA |
| Response Time (Rise/Fall) | Typical 10 ??s / 15 ??s |
| Light Current (IC) at 1 mW/cm2 | ?? 0.5 mA |
| Operating Temperature Range | -25??C to +85??C |
| Package Type | Standard T-1 (3 mm) epoxy package |
BCR 103F E6327 Key Features
- High sensitivity to near-infrared light: ensures accurate detection in low-light conditions, improving system responsiveness and reliability.
- Fast response time: enables quick switching operations critical for high-speed optical communication and sensor feedback loops.
- Low dark current: minimizes noise and false triggering, enhancing measurement precision in sensitive applications.
- Robust voltage and current handling: supports a wide range of industrial environments without performance degradation or damage risk.
Typical Applications
- Optical switches and light detection in automated manufacturing lines, where fast and precise sensing improves process control and safety.
- Remote control receivers requiring reliable infrared detection for consumer electronics such as televisions and audio systems.
- Position and limit sensors in robotics, providing accurate feedback for motion control and precision alignment tasks.
- Optical encoders used in instrumentation to convert mechanical position to electrical signals with high resolution and stability.
BCR 103F E6327 Advantages vs Typical Alternatives
This phototransistor offers superior sensitivity and faster response times compared to standard photodiodes, ensuring more accurate and timely signal capture. Its low dark current reduces noise, making it more reliable in low-light or variable ambient conditions. Additionally, the robust voltage and current ratings support a broader application range without compromising device lifespan or performance, making it a preferred choice for demanding industrial and consumer optical sensing tasks.
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BCR 103F E6327 Brand Info
The BCR 103F E6327 is manufactured by ON Semiconductor, a leading global supplier of semiconductor solutions known for quality and innovation in photonics and sensing devices. ON Semiconductor??s phototransistor lineup is widely respected for delivering consistent performance, high reliability, and competitive pricing. This product benefits from the company’s rigorous quality control and extensive application support, making it a trusted component in various industrial and electronic designs worldwide.
FAQ
What is the typical operating wavelength for the BCR 103F E6327 phototransistor?
The device is most sensitive to near-infrared light, peaking around 850 nm. This wavelength range aligns well with common infrared light sources used in remote controls and optical switches, ensuring optimal detection efficiency.
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Can this phototransistor be used in harsh industrial environments?
Yes, the BCR 103F E6327 supports an operating temperature range from -25??C to +85??C and can handle collector-emitter voltages up to 30 V. These specifications make it suitable for a variety of industrial settings where temperature and voltage conditions may vary.
How fast is the response time for this phototransistor?
The typical rise time






