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Flow sensors - Import export

Service Provider

Germany

We offer you standardised complete systems for the measurement of volume & mass flows. The EP LMF®-LaminarMasterFlow® is a complete system for high-precision flow measurement of gases and air. The LMF® system consists of a flow processor, a Laminar Flow Element (LFE) as measuring section, a cable set and a sensor package. The flow measurement is performed by means of Laminar Flow Elements (LFE), which are available in different sizes and cover a measuring range from 0.01 to 700 m³/h. (optionally up to 4000 m³/h).

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Germany

with adjustable humidity and temperature to simulate the environmental conditions of a test specimen (e.g. household appliances, heating technology) The basis is a standard or climatic chamber (e.g. test kitchen, environmental simulation) with adjustable air humidity and temperature. On the basis of decades of experience in automotive test engineering, EP-E developed a concept in which the air flows in a circle (loop design). The result is a very excellent homogeneous temperature and humidity distribution. Through precise temperature and humidity control, it is possible to set different combinations of air conditioning and thus precisely adjust the required test conditions. The determination of the air flow (exhaust air volume) is carried out via a measuring section with the use of Laminar Flow Elements (LFEs). In order to determine the volume flow, pressure and temperature sensors are used to determine the air volume flow of the climatic chamber(s).

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Belgium

The EMV-500 is a water/wastewater electromagnetic velocity open channel flowmeter sensor which is available in two sizes: SIZE A is suited for pipes or channels from 150 mm to 500 mm diameter SIZE B is suited for pipes or channels from 500 mm to 2.000 mm diameter. The sensor is encapsulated in an IP68 submersible ultra high molecular polyethylene body to be mounted with a special sensor mounting band in the pipe. When combined with the appropriate level sensor, the EMV-500 constitutes an efficient electromagnetic area/velocity flowmeter measuring both velocity and level in the same cross-section (or slice of pipe). This is a requirement necessary for accurate flow rate measurement using the continuity equation: Q = v x A In addition, electromagnetic sensors are totally unaffected by the concentration of debris or dilution of wastewater by rain. Key Features: Accurate flow measurements Grease tolerant: Grease shedding electrodes allow for reliable data collection

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Belgium

The IFQ LOGGER is a portable converter and logger for Flow-Tronic flow sensors. It disposes of one RS485 digital serial communication port with specific communication protocols for RAVEN-EYE or BELUGA flow sensors and one 4-20 mA input for external level. The IFQ LOGGER combines high performance with low power requirements. The unit needs 12 VDC nominal power supply either provided from an optional battery pack or solar panels. The IFQ LOGGER keeps the same easy configuration enhanced by the IFQ MONITOR and stays in line with the flexible and modular architecture launched by the RAVEN-EYE. All flow sensors are field interchangeable. A dry contact output is available for users needing an output for samplers or any other instrument. KEY FEATURES: 1 x RS485 digital sensor interface for velocity (RAVEN-EYE or BELUGA) 1 x 4-20 mA analog input for level sensor 7 position sealed membrane keypad 2 Gb memory (SD card) Power supply : 9 to 18 VDC Enclosure: PPC (IP67)

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Belgium

The IFQ MONITOR is an easy to use and configure monitor and converter for Flow-Tronic flow sensors. It disposes of one RS485 digital serial communication port with specific protocols for RAVEN-EYE or BELUGA flow sensors and one 4-20 mA input for external level. The IFQ MONITOR is the easiest way to integrate an open channel flow sensor from Flow-Tronic to a local station. KEY FEATURES: User friendly interface Wide range of languages available: English, German, French, Russian, etc. 1 x RS485 digital sensor interface for RAVEN-EYE or BELUGA 1 x analog input 4-20 mA for external level 3 x analog output 4-20 mA for flow, velocity & level 1 x contact closure output for total flow 1 x normally closed relay output for alarm Logger (optional): 2 Gb flash memory (SD card) USB communication port (optional) GPRS/3G (optional) 7 position sealed membrane keypad 144x32 pixel white on blue graphical display

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Belgium

The RAVEN-EYE is the new non-contact RADAR area/velocity flow meter for open channel flow measurements. It combines state of the art non-contact measuring technology which measures flow from above the water surface with easy integration into existing SCADA or telemetry systems. Radar A/V flow sensors have been in use for many years, so why is the RAVEN-EYE so revolutionary? Using the latest design, development and production methods, has allowed Flow-Tronic to manufacture a high quality new generation radar sensor at a price that will make it your first choice for open channel and sewer flow measurement, but affordability is only one of the RAVEN-EYE’s benefits. The name was not chosen at random, like the bird, the RAVEN-EYE has 3 key attributes: Intelligence, Adaptability, Survivability. Key Features: Accurate flow measurement Cost-effective Portable or stationary version available Non-contact No maintenance For more information: please visit www.raven-eye.eu

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Belgium

The BELUGA is an ultrasonic Doppler area/velocity flow meter sensor for open channel flow measurements from Flow-Tronic. The BELUGA combines most advanced utrasonic Doppler velocity sensing with most modern and powerful digital DSP processor technology resulting in more representative velocity data. This advanced architecture of the BELUGA provides users desiring in-depth analysis with: Real-time spectral analysis of the velocity distribution through the cross-sectional area Measurement validation through quality parameters Auto-diagnostic tools Combine the BELUGA with an IFQ MONITOR for stationary flow monitoring or with an IFQ LOGGER for portable/temporary flow monitoring. KEY FEATURES: Improved accuracy due to digital spectral analysis of the velocity distribution Easy integration with existing SCADA or telemetry systems Embedded RS485 communication port with Modbus ASCII protocol Straight 4-20 mA output for velocity ERTACETAL outer shell with epoxy potting wi

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Germany

Another working area of the Suvis GmbH is the field of innovative sensor systems applied to particle and flow measurements taking into account microsystems. We develop novel flow and particle sensor systems for the application in environmental technology, process and mechanical engineering, and automotive technology. Important aspects are robustness and economicalness of the complete sensor system in order to create for the above mentioned application fields practical and affordable solutions. The respective sensor system will be developed as a whole solution. This means besides the hardware set up that we also take care of the evaluation of the sensor signals with our own solutions. We develop from scratch up to prototype level including periphery technology development. Please contact us for a not binding offer. We would like to know more about your challenge!

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Germany

Large heat and flow meters are often used continuously for decades after an initial calibration at external test benches. A recalibration of these meters within their actual operation conditions was not possible so far. In the best case scenario those flow meters are unmounted and recalibrated on an external test bench. Drawback of this method is an interruption of supply in addition to its already high costs. Furthermore, calibration conditions can differ greatly from actual operation conditions compared to test bench conditions, so even if calibrated, the measurement uncertainty in operation remains fairly unknown. This often leads to more difficult fluid distribution optimizations and leaves billing fairness to a gamble. More precisely measured values of flow sensors may uncover hidden saving potentials within the fluid distribution system and allow more exact performance indicators, improving energy efficiency.

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