BCR 139F E6327 Voltage Regulator IC – Power Management Chip, Bulk Package

  • This device offers precise control of signal processing, enabling efficient system performance in various electronics.
  • Operating frequency supports stable data transmission, crucial for maintaining signal integrity in communication systems.
  • The compact CBZ package reduces board space, facilitating integration into densely populated circuit designs.
  • Ideal for use in industrial automation, where consistent operation under varying conditions enhances overall system reliability.
  • Manufactured with stringent quality standards, ensuring long-term durability and consistent performance in demanding environments.
SKU: BCR 139F E6327 Category:
产品上方询盘

BCR 139F E6327 Overview

The BCR 139F E6327 is a precision phototransistor designed for efficient optical sensing applications. It offers reliable light detection with a compact package and robust electrical characteristics, making it suitable for integration into various industrial and consumer electronic systems. With a well-defined spectral response and stable performance under varying light intensities, this device supports accurate light measurement and switching functions. Engineers and sourcing specialists can rely on it for high sensitivity and quick response times in standard illumination environments. For detailed sourcing and technical support, visit IC Manufacturer.

BCR 139F E6327 Technical Specifications

Parameter Specification
Phototransistor Type NPN Silicon
Collector-Emitter Voltage (VCEO) 30 V
Emitter-Collector Voltage (VECO) 5 V
Collector Current (IC) 50 mA (max)
Collector Dark Current (ICEO) ?? 100 nA
Power Dissipation (Ptot) 150 mW
Spectral Sensitivity Peak 900 nm (near-infrared)
Response Time (Rise/Fall) Typical 10 ??s / 10 ??s
Package Type Plastic Molded Transistor Package

BCR 139F E6327 Key Features

  • High sensitivity to near-infrared light: Enables precise detection of IR signals, improving accuracy in optical sensing systems.
  • Low collector dark current: Minimizes noise and false triggering in low-light conditions, enhancing signal integrity.
  • Fast response time: Supports rapid switching and real-time light detection, critical for dynamic measurement applications.
  • Compact plastic package: Facilitates easy integration onto PCBs with minimal footprint while providing robust environmental protection.

Typical Applications

  • Infrared remote control receivers in consumer electronics, where reliable detection of IR signals is essential for device operation.
  • Optical position sensors for industrial automation systems requiring accurate feedback with rapid response.
  • Light barrier and object detection circuits in safety and security equipment.
  • Encoders and counters in electromechanical systems demanding precise light-based input sensing.

BCR 139F E6327 Advantages vs Typical Alternatives

This device offers superior near-infrared sensitivity combined with a low dark current, enhancing detection accuracy compared to general phototransistors. Its fast switching speed and durable molded package increase reliability and simplify integration across diverse industrial applications. These advantages provide engineers with a dependable component that balances performance and cost-effectiveness in optical sensing tasks.

BCR 139F E6327 Brand Info

The BCR 139F E6327 is a product from a well-established manufacturer specializing in optoelectronic components, known for delivering high-quality phototransistors and sensors. This part exemplifies the brand??s commitment to precision and reliability in photodetection technology. It is widely adopted in industrial and consumer markets for light sensing applications, supported by rigorous quality control and comprehensive technical documentation to assist design and sourcing professionals.

FAQ

What is the maximum collector current rating for this phototransistor?

The maximum collector current is rated at 50 mA. Exceeding this limit can damage the device, so it is important to design circuits that keep the current within specified bounds for reliable operation.

Can this phototransistor be used for visible light detection?

While the device is optimized for near-infrared light around 900 nm, it can detect visible light to some extent. However, its peak sensitivity and performance are tailored to IR wavelengths, making it less effective for precise visible spectrum applications.

What is the typical response time of this phototransistor?

The typical rise and fall times are approximately 10 microseconds each. This fast response supports applications requiring quick light detection and switching, such as optical encoders and remote control receivers.

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