The CCS-3000 series sensor is specifically designed for the chemical and mineral industries with dark colored materials. Normally difficult to measure with traditional technologies, Near-Infrared light is the main source of measurement and a specific sensor is used to achieve the moisture content readings in such applications.
The CCS-3000 chemical and mineral moisture analyzer is MoistTech?s NIR (Near Infrared) online moisture management for instant, non-contact measurement for coke, coal & sinter materials. Precision filters and algorithms have been incorporated to optimize performance under the demanding conditions in coke, coal and sinter processing.
The CCS-3000 mineral and chemical analyzer is renowned for its rugged design and ability to withstand the toughest manufacturing environments in the industry. Insensitive to material variations such as particle size, material height and color, the CCS-3000 analyzer provides continuous, reliable readings. It requires only a one-time calibration, is maintenance free and the drift free optical design allows operating personnel to confidently make immediate process adjustments based on real-time measurements.
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Producing thousands of measurements per second, MoistTech?s CCS-3000 moisture management technology provides users the ability to enhance their on-line process to dramatically improve product quality. Proper moisture control produces energy savings, and plant efficiency with less material loss.
The CCS-3000 utilizes cutting edge elements that enable installation in some of the most extreme locations. MoistTech also has product loss software capability to ignore small gaps, inert material, foreign objects, and belt or screw conveyors are removed from the measurement calculation to provide one of the most precise moisture analysis.
MoistTech?s global reputation manufacturing NIR (near infrared) sensors in moisture control provides the standard in moisture detection equipment. The CCS-3000 series is specifically designed to be used on dark materials ? NIR light is absorbed more intensely by dark materials and therefore has a different filter of detection for the most accurate of moisture levels in: