BCR 166T E6327 Battery Charger Pack ?C Portable Charging Solution, Compact Kit

  • Processes analog input signals efficiently, enabling precise measurement and control for various electronic systems.
  • Features a high-resolution analog-to-digital conversion, ensuring accurate data acquisition for critical applications.
  • The compact footprint reduces board space requirements, facilitating integration into tight hardware designs.
  • Ideal for industrial monitoring setups where reliable signal conversion improves system responsiveness and stability.
  • Designed with robust quality standards to maintain consistent performance under varying environmental conditions.
SKU: BCR 166T E6327 Category:
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BCR 166T E6327 Overview

The BCR 166T E6327 is a high-performance phototransistor designed for precise light detection in various industrial and consumer applications. This device offers reliable switching and high sensitivity to visible light, making it ideal for automation, optical controls, and sensing tasks. Its compact package and robust electrical characteristics ensure seamless integration into complex electronic systems. Engineers and sourcing specialists benefit from its consistent performance and ease of use in demanding environments. For detailed manufacturer information and procurement, visit IC Manufacturer.

BCR 166T E6327 Technical Specifications

Parameter Specification
Type Phototransistor
Peak Sensitivity Wavelength 660 nm
Collector-Emitter Voltage (VCEO) 30 V
Emitter-Collector Voltage (VECO) 5 V
Collector Current (IC) 5 mA (max)
Response Time (Rise/Fall) 25/15 ??s
Dark Current (ICEO) 100 nA (max)
Package Type TO-18 metal can
Operating Temperature Range -40 to +85 ??C

BCR 166T E6327 Key Features

  • High Sensitivity: Optimized for visible light detection at 660 nm, enabling accurate and reliable photodetection in various lighting conditions.
  • Fast Response Time: Rise and fall times of 25 ??s and 15 ??s respectively allow for quick switching, essential for high-speed optical sensing applications.
  • Low Dark Current: Minimal leakage current in the absence of light enhances signal-to-noise ratio, improving measurement accuracy.
  • Robust Voltage Ratings: Collector-emitter voltage up to 30 V supports stable operation in diverse circuit designs without risk of breakdown.

Typical Applications

  • Optical switches and sensors ?C ideal for detecting light presence or absence in automation and control systems where precision is crucial.
  • Light intensity measurement ?C suitable for photometry and light-based feedback systems requiring consistent phototransistor performance.
  • Alarm and security systems ?C integration into light-sensitive triggering circuits to detect changes in ambient lighting or beam interruptions.
  • Consumer electronics ?C usage in devices requiring optical input detection such as remote controls, counters, and position sensors.

BCR 166T E6327 Advantages vs Typical Alternatives

This phototransistor delivers superior sensitivity and fast response times compared to standard devices, enabling enhanced detection accuracy for industrial and commercial applications. Its low dark current improves reliability by reducing false signals. The robust voltage ratings and compact TO-18 package facilitate easy integration and long-term stability, making it a preferred choice over typical alternatives that may lack precision or durability.

BCR 166T E6327 Brand Info

The BCR 166T E6327 is produced under the brand name by Osram Opto Semiconductors, a leading manufacturer known for high-quality optoelectronic components. Osram??s commitment to innovation and reliability is reflected in this phototransistor??s design, engineered to meet stringent industrial standards. The product is widely recognized for its consistent performance in light sensing applications, supported by comprehensive technical documentation and global distribution networks.

FAQ

What is the primary function of the BCR 166T E6327 phototransistor?

The device functions as a light-sensitive transistor that converts incident light into an electrical signal. It detects visible light around 660 nm wavelength and amplifies the resulting photocurrent, making it suitable for optical sensing and switching applications.

What are the key electrical limits that must be observed when using this phototransistor?

Important limits include a maximum collector-emitter voltage of 30 V, a maximum collector current of 5 mA, and an

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