The MoniTurb-C-F operates according to the 12° forward light scattering principle. A light source emits a focused beam through the process medium, where suspended particles scatter and attenuate the light. A detector positioned at 12° measures the scattered light and evaluates changes in its intensity. An optional reference signal from the transmitted light can also be used to calculate the ratio between scattered and transmitted light. This method ensures high measurement stability by compensating for influences such as product color, lamp aging, and minor optical contamination.
The measurement is approximately mass-dependent: higher particle concentrations generate stronger scattered light signals, resulting in higher measured values within the calibrated measurement range.
The MoniTurb-C-F provides high measurement accuracy in the low to medium turbidity range and is specifically designed for applications with low to moderate particle concentrations. Its compact 12° forward scattering geometry ensures excellent sensitivity and reliable detection of fine particles.
The system is designed for long-term operation, with typical calibration and maintenance intervals of up to 24 months. A durable measuring lamp with an expected service life of approximately 2 years, combined with a robust stainless steel 1.4404 measuring cell and sapphire windows, ensures reliable continuous operation.
Thanks to its compact design, flexible process connections (DIN, ANSI, NPT), and CIP compatibility, the sensor can be easily integrated into existing process systems. Optional ATEX certification for hazardous areas and optional cleaning and flushing systems make it suitable for demanding industrial applications.
The MoniTurb-C-F operates according to the 12° forward light scattering principle. A light source emits a focused beam through the process medium, where suspended particles scatter and attenuate the light. A detector positioned at 12° measures the scattered light and evaluates changes in its intensity. An optional reference signal from the transmitted light can also be used to calculate the ratio between scattered and transmitted light. This method ensures high measurement stability by compensating for influences such as product color, lamp aging, and minor optical contamination.
The MoniTurb-C-F provides high measurement accuracy in the low to medium turbidity range and is specifically designed for applications with low to moderate particle concentrations. Its compact 12° forward scattering geometry ensures excellent sensitivity and reliable detection of fine particles.
The system is designed for long-term operation, with typical calibration and maintenance intervals of up to 24 months. A durable measuring lamp with an expected service life of approximately 2 years, combined with a robust stainless steel 1.4404 measuring cell and sapphire windows, ensures reliable continuous operation.
Thanks to its compact design, flexible process connections (DIN, ANSI, NPT), and CIP compatibility, the sensor can be easily integrated into existing process systems. Optional ATEX certification for hazardous areas and optional cleaning and flushing systems make it suitable for demanding industrial applications.
The Model C1 Signal Amplifier is compatible with most optical sensors from the Monitek and Chemtronic product ranges. System programming and calibration are carried out via a PC or laptop using intuitive menu-driven software. Calibration can be performed with one or multiple reference samples. All configuration settings and calibration data can be securely stored on the PC’s hard drive for backup and future use.
The Messenger (MSG) Signal Amplifier is compatible with all optical sensors from the Chemtronic and Monitek product series. It allows users to operate up to four single-channel sensors simultaneously. Independent operation of different sensors is also supported without any limitations. The measurement results from the individual sensors can be linked and processed in virtually any combination, enabling applications such as the straightforward implementation of dosing systems.
The system is configured and operated via a PC or laptop using intuitive menu-driven software. As an option, the Messenger is also available with an integrated panel PC for standalone operation.
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