The ProSeries II Scan Heads for Highest Accuracy and Low Drift in a Compact Integratable Design from Cambridge Technology
Cambridge Technology offers ProSeries II Scan Heads, a new range of high performance, low noise s……...
The NivuFlow 600 is built for flow measurement of full pipes. It allows for extremely accurate flow measurement using the transit time method in full pipes. It realizes up to four measurement paths.
Easy start-up because of menu guided sensor positioning
Single or multi path measurement, up to 32 measurement paths with extension modules
Easy installation without process disruption
Flow meter for insert or non-contact clamp-on-sensors
High-resolution graphic daylight display
High accurate flow measurement in clean and slightly polluted media
Ultrasonic transit time measurement
Extensive diagnostic operations for reliable initial start-up and quick maintenance
Intuitive, advanced operating concept
General Description
The NivuFlow 600 system was constructed primarily for flow measurement in full pipes. To meet the highest accuracy requirements, it is possible to fit the transmitters with up to four measurement paths, with up to 32 velocity paths. There are contactless clamp-on sensors and pipe sensors available for the measurement system. Interrupting running processes to install both sensor types will not be required. The system is suitable for the detection of flow rates in a range of liquid media covering a wide range of applications.
Typical Applications
Hydropower
Leakage monitoring
Irrigation systems (volume distribution and billing)
Comparative measurements
Pump monitoring and verification
Outlets and inlets conducting cooling water or circulation systems
Industry: process water, marginally polluted water and more
The Measurement Principle
The NivuFlow 600’s measurement principle utilizes the benefits of transit time. With this technology, ultrasonic signals between two sensors are measured. The transit time in flow direction is shorter compared to when it is against the flow direction. The difference between the two transit times is proportional to the average flow velocity along the measurement path. With the number of the measured paths, the accuracy increases accordingly.
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