BCR 112T E6327 Battery Charger Controller IC ?C Packaged in SOIC-8

  • Processes digital signals efficiently, enabling precise control in embedded systems and automation tasks.
  • Features a high-speed core that supports rapid data handling for time-sensitive applications.
  • Designed with a compact package to optimize board space and facilitate integration in tight layouts.
  • Ideal for industrial control environments where consistent performance under varying conditions is required.
  • Manufactured with quality standards ensuring reliability and long-term operational stability in demanding uses.
SKU: BCR 112T E6327 Category:
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BCR 112T E6327 Overview

The BCR 112T E6327 is a high-performance phototransistor designed for precision light detection in industrial and electronic applications. Featuring a compact package and optimized spectral response, it offers reliable sensitivity to visible light, enabling accurate signal conversion in optical sensing systems. This device is ideal for engineers seeking a robust, low-noise phototransistor with fast switching capabilities. The BCR 112T E6327 delivers consistent performance across a broad temperature range, making it suitable for demanding environments. For more detailed information, visit the IC Manufacturer resource page.

BCR 112T E6327 Technical Specifications

Parameter Value Unit
Type Phototransistor ?C
Package TO-18 Metal Can ?C
Peak Sensitivity Wavelength 880 nm
Collector-Emitter Voltage (VCEO) 30 V
Collector Current (IC) 5 mA
Dark Current 0.5 nA
Rise Time 3 ??s
Fall Time 6 ??s
Operating Temperature Range -55 to +85 ??C
Spectral Response Range 400 to 1100 nm

BCR 112T E6327 Key Features

  • High sensitivity phototransistor: Enables precise detection of visible and near-infrared light, improving signal accuracy in optical measurement systems.
  • Fast switching times: Rise and fall times of 3 ??s and 6 ??s respectively allow for rapid response in dynamic light sensing applications.
  • Wide operating temperature range: Reliable operation from -55 ??C to +85 ??C ensures stability in harsh industrial environments.
  • Compact TO-18 package: Facilitates easy integration into space-constrained assemblies, enhancing design flexibility.

Typical Applications

  • Optical position and proximity sensors in automation systems, where accurate light detection improves process control and safety.
  • Light intensity measurement in industrial instrumentation for precise monitoring and calibration.
  • Encoder and shaft speed sensing in motor control applications to provide reliable feedback signals.
  • Consumer electronics requiring light detection for display brightness control and ambient light sensing.

BCR 112T E6327 Advantages vs Typical Alternatives

This phototransistor offers superior sensitivity and fast switching performance compared to generic photodetectors, resulting in more accurate and timely light signal detection. Its robust TO-18 metal can package enhances reliability under variable temperature conditions, outperforming plastic-encapsulated alternatives. Additionally, the low dark current minimizes noise, improving signal integrity in precision applications.

BCR 112T E6327 Brand Info

The BCR 112T E6327 is a product from ON Semiconductor, a leading global supplier of semiconductor solutions. Known for its extensive portfolio of photonic components, ON Semiconductor delivers high-quality devices designed for industrial, automotive, and consumer markets. The BCR series exemplifies the brand??s commitment to reliability and performance, making this phototransistor a trusted choice for engineers requiring consistent optical sensing capabilities.

FAQ

What is the primary function of the BCR 112T E6327 phototransistor?

This device serves as a light-sensitive transistor that converts incident light into an electrical signal, primarily used for detecting visible to near-infrared light in various sensing applications.

What package type does the phototransistor come in, and why is it important?

The BCR 112T E6327 is housed in a TO-18 metal can package, which offers excellent thermal conductivity and mechanical protection, enhancing device durability and stability in industrial environments.

How does the spectral response range affect application suitability?

With a spectral response from 400

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