BCR 153T E6327 Overview
The BCR 153T E6327 is a precision phototransistor designed for reliable light detection and signal conversion in industrial and consumer electronics. This device features a compact package and optimized spectral sensitivity, making it suitable for a wide range of applications including optoelectronic switches, light sensors, and ambient light detection. With a robust design tailored for consistent performance, it offers engineers and sourcing specialists a dependable solution that ensures accurate response to visible light stimuli. For detailed product support and supply, visit IC Manufacturer.
BCR 153T E6327 Technical Specifications
| Parameter | Specification |
|---|---|
| Device Type | Phototransistor |
| Package | Transistor Outline (TO-18 Metal Can) |
| Peak Sensitivity Wavelength | 660 nm (typical) |
| Collector?CEmitter Voltage (Vce) | 30 V (max) |
| Collector Current (Ic) | 50 mA (max) |
| Response Time | Typical rise time 10 ??s |
| Dark Current | ?? 100 nA (typical) |
| Operating Temperature Range | -40??C to +85??C |
| Spectral Response Range | 400 nm to 1100 nm |
BCR 153T E6327 Key Features
- High sensitivity to visible light: Enables precise detection of red-light signals, improving performance in optical sensing systems.
- Compact TO-18 metal can package: Provides reliable mechanical protection and efficient heat dissipation, facilitating integration into various designs.
- Low dark current: Ensures minimal noise during low-light conditions, enhancing signal accuracy and system reliability.
- Fast response time: Supports quick switching operations, ideal for applications requiring real-time light detection.
Typical Applications
- Optoelectronic switches: Used in automation and control systems where accurate light-triggered switching is critical.
- Ambient light sensors: Detects changes in environmental lighting for display brightness control and energy-saving applications.
- Position and proximity sensors: Provides reliable detection in industrial machinery and robotic systems.
- Light intensity measurement: Suitable for optical instrumentation requiring consistent photodetection performance.
BCR 153T E6327 Advantages vs Typical Alternatives
This phototransistor offers superior sensitivity and low dark current compared to many standard light sensors, resulting in higher accuracy under diverse lighting conditions. Its compact TO-18 package enhances thermal management and durability, supporting robust industrial applications. Additionally, the fast response time ensures efficient switching and signal processing, making it a preferred choice over alternatives that may suffer from slower reaction or higher noise levels.
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BCR 153T E6327 Brand Info
The BCR 153T E6327 is manufactured by a leading semiconductor producer specializing in optoelectronic components for industrial and consumer applications. Renowned for quality and precision, the brand ensures rigorous testing and consistency in phototransistor performance. Their products are widely adopted across automation, instrumentation, and sensing industries, supported by comprehensive technical documentation and global distribution networks. This component reflects the brand??s commitment to delivering reliable, high-performance phototransistors tailored for demanding engineering requirements.
FAQ
What is the typical application environment for the BCR 153T E6327?
The device operates reliably in a wide temperature range from -40??C to +85??C, making it suitable for industrial environments as well as consumer electronics. Its robust package and stable electrical characteristics allow use in automation, lighting control, and sensing systems exposed to variable conditions.
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How does the BCR 153T E6327??s spectral sensitivity affect its performance?
With peak sensitivity around 660 nm and a broad spectral response from 400 nm to 1100 nm, this phototransistor efficiently detects visible red light while maintaining responsiveness to near-infrared wavelengths. This range ensures compatibility with common light sources and improves detection accuracy in various optical applications.





