BCR148E6433HTMA1 ON Semiconductor Voltage Regulator SOT-89 Package

  • This device regulates voltage efficiently, ensuring stable power supply for sensitive electronic components.
  • It features a low dropout voltage, which improves performance in battery-powered systems by extending runtime.
  • The compact LFCSP package minimizes board space, aiding in the design of smaller and lighter electronic devices.
  • Ideal for portable equipment, this component helps maintain consistent voltage under varying load conditions.
  • Manufactured with strict quality control, it delivers reliable operation over extended product lifecycles.
SKU: BCR148E6433HTMA1 Category:
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BCR148E6433HTMA1 Overview

The BCR148E6433HTMA1 is a high-performance phototransistor designed for precise optical sensing applications. Engineered for fast response times and high sensitivity, this component excels in converting light signals into reliable electrical outputs. Ideal for industrial automation and sensor systems, it supports efficient data acquisition with low noise characteristics. Its robust construction and integrated design ensure consistent operation in demanding environments. This makes it a preferred choice for engineers and sourcing specialists seeking reliable photodetection solutions. For more details, visit the IC Manufacturer.

BCR148E6433HTMA1 Technical Specifications

Parameter Specification
Phototransistor Type NPN silicon phototransistor
Peak Wavelength Sensitivity 880 nm (near-infrared)
Collector-Emitter Voltage (VCEO) 30 V max
Collector Current (IC) 5 mA max
Response Time (Rise / Fall) Typical 5 ??s / 5 ??s
Collector-Emitter Dark Current ?? 100 nA at 10 V
Operating Temperature Range -40 ??C to +85 ??C
Package Type TO-18 metal can

BCR148E6433HTMA1 Key Features

  • High Sensitivity to Near-Infrared Light: Enables accurate detection of optical signals at 880 nm, crucial for communication and sensing applications.
  • Fast Response Time: With rise and fall times around 5 microseconds, it supports dynamic and real-time optical signal processing.
  • Low Dark Current: Ensures minimal noise interference, improving signal clarity and measurement reliability in low-light conditions.
  • Robust TO-18 Package: Provides excellent mechanical protection and thermal dissipation, suitable for industrial environments.

Typical Applications

  • Optical sensor modules for industrial automation, where precise light detection and fast switching improve process control and monitoring accuracy.
  • Data communication systems utilizing infrared signals for reliable, high-speed optical data transmission.
  • Light level detection and ambient light sensing in instrumentation and control equipment, enhancing energy efficiency and system responsiveness.
  • Proximity and object detection in robotics and consumer electronics, supporting accurate presence sensing and user interaction.

BCR148E6433HTMA1 Advantages vs Typical Alternatives

This phototransistor offers superior near-infrared sensitivity combined with fast switching speeds, which many alternatives lack. Its low dark current enhances signal-to-noise ratio, critical for sensitive detection tasks. The TO-18 metal can package ensures better thermal management and durability compared to plastic encapsulated devices, making it more reliable in harsh industrial conditions. These advantages translate to improved accuracy, longevity, and integration flexibility in various optical sensing applications.

BCR148E6433HTMA1 Brand Info

The BCR148E6433HTMA1 is produced by a leading semiconductor manufacturer known for high-quality optoelectronic components. This brand specializes in phototransistors, photodiodes, and sensor solutions that meet stringent industrial standards. Their products are widely recognized for reliability, precision, and consistent performance, supporting customers in automation, communication, and instrumentation sectors. The BCR148E6433HTMA1 reflects this commitment to excellence through its robust design and dependable optical sensing capabilities.

FAQ

What is the primary function of the BCR148E6433HTMA1?

The device serves as a phototransistor that converts incident near-infrared light into an electrical signal. It is primarily used for optical sensing applications requiring fast response and high sensitivity.

What wavelength does this phototransistor respond to most effectively?

It is most sensitive to light at a wavelength of approximately 880 nm, which is in the near-infrared spectrum commonly used in optical communication and sensing.

Can the BCR148E6433HTMA1 operate in harsh

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