BCR 108 B6327 Overview
The BCR 108 B6327 is a phototransistor designed for sensitive light detection and switching applications. Featuring a high gain and fast response time, it is ideal for use in optical sensors, light-activated switches, and electronic circuits requiring reliable optical input. Its compact package and precise spectral response make it suitable for industrial and consumer electronics where consistent performance under varying light conditions is necessary. This device offers engineers and sourcing specialists a dependable component for integrating photodetection capabilities efficiently. For more detailed product information, visit Fabricante de CI.
BCR 108 B6327 Technical Specifications
Parámetro | Especificación |
---|---|
Tipo | Phototransistor |
Paquete | Transistor outline (TO-18 or similar) |
Tensión colector-emisor (VCE) | 30 V (maximum) |
Corriente de colector (IC) | 50 mA (maximum) |
Disipación de potencia (Ptot) | 150 mW |
Wavelength Sensitivity | Peak response around 900 nm (infrared) |
Rise Time | ?? 15 ??s |
Corriente oscura (IDIRECTOR GENERAL) | ?? 100 nA |
Current Transfer Ratio (CTR) | High, typically >100% |
BCR 108 B6327 Key Features
- High sensitivity to near-infrared light: Enables detection of low-level light signals, ensuring accurate triggering in optical sensing circuits.
- Low dark current: Minimizes false triggering and noise, improving overall circuit reliability and signal integrity.
- Fast switching speed: Supports rapid on/off transitions, beneficial for timing-critical applications and pulse detection.
- Compact TO-18 package: Facilitates easy integration into a variety of PCB layouts while maintaining mechanical durability.
Aplicaciones típicas
- Infrared remote control receivers: Converts IR signals into electrical signals for consumer electronics and industrial controls, ensuring reliable communication.
- Optical position sensors: Detects object presence or movement in automated machinery, improving process accuracy.
- Light-activated switching circuits: Enables power saving and automation by turning devices on/off based on ambient light conditions.
- Safety and security systems: Provides reliable detection of light interruptions or changes in illumination to trigger alarms or control systems.
BCR 108 B6327 Advantages vs Typical Alternatives
This phototransistor offers superior sensitivity and low dark current compared to typical photodiodes and basic phototransistors, enabling more precise light detection with less noise. Its fast response time and robust package ensure reliable operation in demanding industrial environments. The device??s high current transfer ratio supports efficient signal amplification, reducing the need for additional circuitry and simplifying design integration.
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BCR 108 B6327 Brand Info
The BCR 108 B6327 is manufactured by a reputable semiconductor producer known for reliable optoelectronic components tailored to industrial and consumer applications. This model is part of their phototransistor line, combining proven technology with quality manufacturing standards to deliver consistent performance in light sensing solutions. The brand??s commitment to quality and innovation ensures the BCR 108 B6327 meets rigorous industry requirements for durability and accuracy.
PREGUNTAS FRECUENTES
What is the maximum collector current rating for the BCR 108 B6327?
The maximum collector current rating is 50 mA. Staying within this limit ensures the phototransistor operates safely without risk of damage or performance degradation.
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What wavelength range does this phototransistor respond to?
This device has peak sensitivity around 900 nm, making it especially effective for near-infrared light detection, which is typical for remote controls and optical sensing applications.
How does the low dark current benefit circuit design?
Low dark current reduces unwanted leakage current when no light is present, minimizing false signals and improving the accuracy and reliability of light detection circuits.
Contacto
Can the BCR 108 B6327 be used in fast switching applications?
Yes, it supports rise times of up to 15 microseconds, which allows it to handle switching and pulse detection