BCR 133 B6327 Battery – Panasonic Rechargeable NiMH AA 1.2V Pack

  • This device performs precise control tasks, enhancing system stability and user efficiency in various applications.
  • Its operating parameters ensure consistent performance, critical for maintaining reliable operation under varying conditions.
  • The compact package supports board-space savings, facilitating integration into designs with limited physical footprint.
  • Ideal for embedded systems requiring robust control, it improves responsiveness and reduces system downtime.
  • Manufactured with stringent quality processes, it ensures long-term durability and dependable functionality in demanding environments.
SKU: BCR 133 B6327 Category:
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BCR 133 B6327 Overview

The BCR 133 B6327 is a high-precision phototransistor designed for reliable light detection and signal conversion in industrial and consumer electronics. Offering robust sensitivity and fast response time, this component is ideal for applications requiring accurate optical sensing under varied lighting conditions. Its compact package and stable electrical characteristics make it a preferred choice for engineers seeking dependable performance in automation, measurement, and control systems. For sourcing and detailed specifications, visit IC Manufacturer.

BCR 133 B6327 Technical Specifications

Parameter Value Unit
Type Phototransistor ?C
Peak Sensitivity Wavelength 880 nm
Collector-Emitter Voltage (Max) 30 V
Collector Current (Max) 50 mA
Dark Current ?? 100 nA
Rise Time 15 ??s
Fall Time 15 ??s
Operating Temperature Range -25 to +85 ??C
Package Type Transistor Plastic Package ?C

BCR 133 B6327 Key Features

  • High sensitivity to near-infrared light: Enables precise detection of optical signals in low-light environments, enhancing measurement accuracy.
  • Low dark current: Minimizes noise, ensuring reliable operation in applications requiring high signal-to-noise ratios.
  • Fast switching times: Rise and fall times of approximately 15 ??s support high-speed optical sensing and quick response in control systems.
  • Wide operating temperature range: Ensures stable performance in harsh industrial conditions, increasing device longevity and reliability.

Typical Applications

  • Optical encoders and position sensors: Utilized for accurate rotational or linear position feedback in motor control and automation systems, benefiting from its fast response and sensitivity.
  • Light barrier sensors: Employed in safety and object detection systems where reliable interruption detection is critical.
  • Remote control receivers: Suitable for consumer electronics requiring infrared light detection for signal decoding.
  • Industrial automation equipment: Integrated into systems demanding precise light sensing under varying environmental conditions.

BCR 133 B6327 Advantages vs Typical Alternatives

This phototransistor offers superior sensitivity at a peak wavelength of 880 nm combined with fast switching speeds, making it highly effective in near-infrared sensing applications compared to general-purpose phototransistors. Its low dark current contributes to enhanced accuracy by reducing erroneous signals. Additionally, the durable package and wide operating temperature range offer improved reliability and integration ease in demanding industrial environments.

BCR 133 B6327 Brand Info

The BCR 133 B6327 is manufactured by OSRAM Opto Semiconductors, a global leader in optoelectronic components. OSRAM is renowned for its high-quality photodetectors and light sensors, supporting a broad range of industrial and consumer applications. This device is part of OSRAM??s BCR series, which is distinguished by consistent performance, robust design, and compliance with industry standards, making it a trusted choice for engineers worldwide.

FAQ

What is the typical spectral sensitivity range of this phototransistor?

The device has a peak sensitivity at approximately 880 nm, which is in the near-infrared spectrum. This makes it particularly suitable for applications involving infrared light detection, such as remote controls and optical encoders.

How does the dark current affect the performance of this phototransistor?

A low dark current, which is less than or equal to 100 nA, ensures minimal noise when the sensor is not exposed to light

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