BCR 189F E6327 Overview
The BCR 189F E6327 is a precision phototransistor designed for high-sensitivity optical detection in industrial and consumer electronics. Offering reliable switching performance and consistent spectral response, it is optimized for applications requiring efficient light-to-electrical signal conversion. Its compact package and stable operation under varying environmental conditions make it a preferred choice for engineers focusing on accurate light sensing solutions. For sourcing specialists, the BCR 189F E6327 ensures dependable supply and integration ease, supporting streamlined product designs. For more details, visit IC Manufacturer.
BCR 189F E6327 Technical Specifications
| Parameter | Specification |
|---|---|
| Phototransistor Type | NPN Silicon |
| Package | TO-18 Metal Can |
| Peak Sensitivity Wavelength | 940 nm (Infrared) |
| Collector-Emitter Voltage (VCEO) | 30 V |
| Collector Current (IC) | 50 mA max |
| Dark Current (I_D) | ?? 100 nA |
| Response Time (Rise/Fall) | ?? 20 ??s |
| Operating Temperature Range | -40??C to +85??C |
| Storage Temperature Range | -55??C to +100??C |
| Spectral Range | 800 nm to 1100 nm |
BCR 189F E6327 Key Features
- High Infrared Sensitivity: Enables precise detection of IR light, improving signal accuracy in optical sensing applications.
- Low Dark Current: Minimizes background noise, enhancing the signal-to-noise ratio for reliable performance in low-light conditions.
- Fast Response Time: Allows quick switching, suitable for high-speed optical communication and detection systems.
- Robust TO-18 Packaging: Ensures mechanical stability and thermal dissipation, supporting durability in harsh industrial environments.
Typical Applications
- Infrared remote control receivers, where precise detection of modulated IR signals is critical for accurate command interpretation.
- Light barriers and object detection in automation systems requiring reliable optical sensing to enhance operational safety.
- Optoelectronic switches that benefit from fast switching times and high sensitivity for efficient signal processing.
- Industrial sensor devices requiring stable performance across a wide temperature range for consistent operation in demanding settings.
BCR 189F E6327 Advantages vs Typical Alternatives
This phototransistor offers superior sensitivity to infrared light with a low dark current, delivering enhanced accuracy compared to typical phototransistors. Its fast response time ensures better performance in dynamic applications, while the rugged TO-18 package provides increased reliability and thermal management. These qualities make it a preferred solution for engineers seeking efficient, durable, and precise optical detection components.
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BCR 189F E6327 Brand Info
The BCR 189F E6327 is manufactured by a leading semiconductor supplier specializing in optoelectronic components. This brand is recognized globally for high-quality phototransistors and photodiodes tailored to industrial and consumer electronics markets. Their product portfolio emphasizes robust performance, long-term reliability, and integration flexibility, supported by comprehensive technical documentation and worldwide distribution networks. The BCR 189F E6327 reflects their commitment to delivering consistent and precise optical sensing solutions.
FAQ
What is the operating voltage range of the BCR 189F E6327 phototransistor?
The maximum collector-emitter voltage (VCEO) for this phototransistor is 30 V, ensuring safe operation within typical circuit voltages used in industrial and consumer devices.
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How does the BCR 189F E6327 perform in low light conditions?
Thanks to its low dark current specification (?? 100 nA), this phototransistor minimizes background noise, allowing it to detect weak infrared signals effectively, which is essential for applications requiring high sensitivity.
What packaging does the BCR 189F E6327 use, and how does it affect durability?
This device is enclosed in a TO-18 metal can package, which provides excellent mechanical protection and thermal dissipation, enhancing its reliability in demanding environments.






