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Modules Thermal Camera

Discover the KM256 infrared thermal imager, packed with advanced features. It houses a high - sensitivity vanadium oxide uncooled detector with a 256x192 resolution and 12um pixel size. The detector, using WLP wafer level packaging, ensures durability and performance.
With a NETD≤50mK@25℃ and an F#1.0 aperture, it captures the slightest temperature variations. The frame rate is configurable up to 50Hz, providing smooth real - time imaging. Its a thermal fixed - focus lens offers a wide 55° horizontal field of view, ideal for broad - range monitoring.
The KM256 supports full - screen temperature data output, facilitating in - depth thermal analysis. Complying with the standard UVC protocol, it enables easy integration with various devices. Despite its powerful capabilities, it maintains a compact size, with a detector module of just 13.2×15.2mm and a 20x20mm processing board, making it suitable for diverse applications where space is at a premium.

X series infrared thermal imager uses a 17μm high-resolution uncooled infrared focal plane detector, it has a high-performance infrared lens and imaging processing circuit, and advanced image processing algorithms. It has the characteristics of small size, low power consumption, fast startup, and excellent imaging quality. It is widely used in equipment and systems that require miniaturization and light weight, such as unmanned aerial vehicle optoelectronic pods, security monitoring, and portable equipment.

 

 

The M series infrared thermal imager adopts a 17 μm uncooled infrared focal plane detector, a high-performance infrared lens, an excellent imaging processing circuit, and is embedded with advanced image processing algorithms. It has the characteristics of small size, low power consumption, fast startup, excellent imaging quality, and accurate temperature measurement.

The M series infrared thermal imager module fully considers the requirements of high and low temperature working performance to ensure that the whole machine has excellent environmental adaptability.