ENDRESS+HAUSER DEVELOPS ITS SUCCESSFUL LIQUILINE PLATFORM.
The new Liquiline CM44P transmitter brings multi-channel and multi-parameter functionality to Memosens process photometers and sensors. Processes such as chromatography, fermentation and phase separation now benefit from the ease of use and simplified maintenance provided by the Liquiline platform and Memosens technology.
Benefits
Ideal instrumentation :
Precise, reproducible measurement of UV absorption, pH and conductivity ensures safe separation of your product.Safe handling:
Clear, user-friendly access to all parameters ensures ease of use and protection against operating errors.Full compliance with life science standards:
Certified materials and hygienic construction (USP, FDA, ASME-BPE) enable use in sterile applications.
Unrivalled ease of process quality monitoring
Processes such as chromatography, fermentation, filtration or phase separation require the monitoring of multiple parameters. Liquiline CM44P can simultaneously measure up to 16 parameters from inputs for up to two process photometers and four Memosens sensors. A production manager obtains all parameters relevant to product quality control from a single transmitter, and cuts costs with reduced installation time and equipment costs.
Total flexibility and seamless integration
Liquiline CM44P features multiple I/O options, as well as plug and play functionality for Memosens sensors, to guarantee perfect adaptability to a wide range of applications. The platform is also compatible with common communication protocols such as HART, PROFIBUS, Modbus and EtherNet/IP, so it can be seamlessly integrated into distributed control systems.
User-friendly and practical
The development of the Liquiline CM44P was based on a common transmitter platform. This means that all devices in the range operate in the same way, reducing the potential for operating errors. An optional web server enables operators to access the transmitter remotely. Any web browser can be used to display measurement values or diagnostic messages, as well as to modify the device configuration. All diagnostic messages are notified in accordance with NE107 categories, for enhanced process safety.
Economical yet safe
Process photometers enable accurate, reproducible on-line measurement of absorption and turbidity. They replace manual sampling and laboratory measurements, avoiding product contamination during sampling. Their real-time optical measurement principle eliminates the need for reagents, helping production managers to optimize process control.
Perfect sensor combinations
Liquiline CM44P is the first transmitter to offer the possibility of combining process photometers and Memosens sensors in a single transmitter, creating the perfect combination for many applications.
Chromatography : the combination of an OUSAF44 UV process photometer with pH and conductivity measurement ensures precise detection of the target product and checks that the buffer quality in the column is correct, for optimum product yield. In addition, the passage of the product during the cleaning phase is accurately detected, enabling optimization of cleaning cycles and
rinsing in the column.
Fermentation : The combination of an OUSBT66 process photometer with pH and dissolved oxygen measurement ensures optimum growth conditions for microorganisms. Measuring cell growth with OUSBT66 also indicates when fermentation has reached the right process phase for optimum product yield.
Filtration : The combination of an OUSTF10 process photometer with dissolved oxygen measurement provides a precise overview of the filtration process. Turbidity measurement with OUSTF10 indicates product purity, while dissolved oxygen measurement indicates possible oxygen diffusion that could have a negative effect on product quality.
Filling : The combination of an OUSAF22 process photometer with conductivity measurement optimizes the filling process. Color measurement with OUSAF22, for example, of different beers, in conjunction with conductivity measurement, helps to accurately distinguish between beverage formulations, thus minimizing filling errors.
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