
( Brand: Phased Radiation Systems ), ( Part Type: Sensor Detector Spectrometer ), ( Country/region Of Manufacture: United States )
The PBSE Sensor Detector Middle is a cutting-edge microbolometer infrared spectrometer designed for mid-range applications, offering exceptional performance and versatility. This device is engineered to detect and analyze infrared radiation, making it an ideal tool for various industries such as defense, research, and industrial thermography.
At its core is a microbolometer, a thermal sensor that converts infrared radiation into an electrical signal. The PBSE Sensor Detector Middle features a high-resolution microbolometer array, providing accurate and precise temperature measurements across a wide spectral range (7.5 - 14 m). This broad spectral range allows for the detection of a variety of objects, even in low light or obscured environments.
The PBSE Sensor Detector Middle is equipped with advanced cooling systems, ensuring its sensitive components remain stable and reliable in a wide range of temperatures. This allows for optimal performance, even in demanding conditions. Additionally, the device includes onboard processing capabilities, enabling real-time data analysis and quick decision-making.
The device is compact and lightweight, making it easy to transport and integrate into various systems. Its robust design ensures durability, while its user-friendly interface simplifies operation, even for those without extensive technical knowledge.
In summary, the PBSE Sensor Detector Middle is a powerful and versatile microbolometer infrared spectrometer, ideal for mid-range applications. Its high-resolution microbolometer array, advanced cooling systems, onboard processing capabilities, compact design, and user-friendly interface make it a valuable tool for industries requiring accurate and reliable infrared detection.
1. Sensitivity: The microbolometer technology in the PBSE sensor provides excellent sensitivity, allowing for the detection of infrared radiation with high precision.
2. Wide Detection Range: The device can detect a wide range of infrared radiation, making it suitable for various applications such as temperature measurement, gas detection, and thermal imaging.
3. Reliability: PBSE sensors are known for their durability and reliability, ensuring consistent performance over time.
4. Versatility: The spectrometer feature allows for the identification of different materials based on their unique infrared signatures, enhancing its versatility.
Cons:1. Cost: Middle-range PBSE sensors can be quite expensive, which may be a limiting factor for some users.
2. Complexity: The device may require a certain level of technical expertise to operate and interpret the data correctly.
3. Power Consumption: Infrared spectrometers can consume a significant amount of power, which might be a concern for portable or battery-powered applications.
4. Size: The device may be larger and heavier than other types of infrared sensors, making it less suitable for compact or mobile applications.
Conclusion:The PBSE sensor detector microbolometer infrared spectrometer offers a high level of sensitivity, a wide detection range, and versatility, making it an excellent choice for various applications requiring infrared detection and spectroscopy. However, its high cost, power consumption, complexity, and size might be drawbacks for some users.
Recommendation:If you have the necessary budget and technical expertise, and your application requires a high level of precision in infrared detection and spectroscopy, the PBSE sensor detector microbolometer infrared spectrometer (middle range) could be a valuable investment. For those with limited resources or simpler requirements, consider exploring lower-cost or more compact infrared sensors that still meet your needs.
The sensor chip is mounted in a nifty aluminum holder that makes it easier to use. This item is pretty hard to find I have lots of laser and other unique stuff for sale this week. The active area of the sensor is about 3x3mm.
The senor is made of a material such as lead slender that changes resistance when exposed to middle Ir light or heat. The window material is sapphire. It was used with a few other parts for a long path mid Ir Rama spectroscopy air pollutant analyzer. This is an uncoiled microbolometer sensor and a right angle parabolic reflector.