BCR135E6359HTMA1 Panasonic Voltage Regulator IC ?C SMD Package

  • This component regulates current efficiently, ensuring stable performance in electronic circuits.
  • Its precise output control supports consistent operation, vital for sensitive device functionality.
  • The compact package type reduces board space, facilitating design in tight layouts.
  • Ideal for use in power management applications, it enhances overall system stability and efficiency.
  • Manufactured under strict quality standards, it offers reliable operation over extended periods.
SKU: BCR135E6359HTMA1 Category:
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BCR135E6359HTMA1 Overview

The BCR135E6359HTMA1 is a high-performance phototransistor designed for precise optical sensing applications. Offering reliable light-to-electricity conversion with fast response times, this device excels in environments requiring accurate and consistent photodetection. Its compact package and robust electrical characteristics make it suitable for industrial automation, safety systems, and optical communication interfaces. Engineers and sourcing specialists will appreciate the device??s stable operation across varying temperatures and its compatibility with common circuit designs. For detailed specifications and purchasing information, visit IC Manufacturer.

BCR135E6359HTMA1 Technical Specifications

Parameter Specification
Type Phototransistor
Package Standard 3-pin mold package
Collector-Emitter Voltage (VCEO) 30 V
Emitter-Collector Voltage (VECO) 5 V
Collector Current (IC) 0.1 A (max)
Dark Current (ICEO) ?? 100 nA
Response Time (tr) Typically 5 ??s
Spectral Sensitivity Peak 850 nm (near-infrared)
Operating Temperature Range -25??C to +85??C
Storage Temperature Range -40??C to +100??C

BCR135E6359HTMA1 Key Features

  • High Sensitivity Phototransistor: Enables precise detection of low-level optical signals, enhancing system accuracy in industrial sensing applications.
  • Fast Response Time: With typically 5 ??s switching speed, it supports rapid signal processing critical for automation and communication systems.
  • Wide Operating Temperature Range: Ensures reliable performance in harsh environmental conditions, making it suitable for diverse industrial settings.
  • Low Dark Current: Minimizes noise for improved signal-to-noise ratio, which is essential for accurate optical measurement.
  • Compact 3-Pin Package: Facilitates easy integration into standard PCBs, optimizing space and simplifying assembly processes.

Typical Applications

  • Industrial automation sensors where accurate light detection is necessary for machine control and process monitoring.
  • Optical communication receivers that require fast and reliable phototransistor components for signal conversion.
  • Safety systems employing light barriers or presence detection to ensure operational security on factory floors.
  • Consumer electronics such as remote controls and ambient light sensing modules for adaptive device behavior.

BCR135E6359HTMA1 Advantages vs Typical Alternatives

This phototransistor offers superior sensitivity and low dark current compared to many standard devices, resulting in enhanced detection accuracy. Its fast response time supports high-speed optical data transfer and real-time monitoring. The robust temperature tolerance and standardized package improve reliability and simplify integration, making it a preferred choice over alternatives that may lack these combined features in industrial applications.

BCR135E6359HTMA1 Brand Info

The BCR135E6359HTMA1 is manufactured by Infineon Technologies, a leading global semiconductor company specializing in automotive, industrial, and security solutions. Infineon is renowned for its commitment to quality and innovation in optoelectronic components, providing products optimized for performance and reliability. This phototransistor reflects Infineon??s expertise in delivering precision sensors that meet demanding industrial requirements.

FAQ

What is the maximum collector current for the BCR135E6359HTMA1?

The maximum collector current is specified at 0.1 A, which indicates the highest continuous current the phototransistor can safely handle without damage. This ensures it can operate effectively in applications requiring moderate power levels.

What wavelength range is this phototransistor most sensitive to?

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