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Thickness sensors - Import export

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In addition to pure color measurements, intensity measurements, completeness and presence checks or the evaluation of surface properties are also possible with the color sensors from Micro-Epsilon. These powerful colorSENSOR CFO sensors enable 100% control in demanding, industrial measurement tasks and provide precise measurement results.

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Infrared pyrometers of the thermoMETER CT series can be used in a wide variety of applications. From low temperatures prevalent in cooling chains or laboratories, to the highest temperatures in hot molten metals and blast furnaces - these IR pyrometers measure precisely and reliably.

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LVDT sensor with free moveable plunger. The non-contact measurement is completely wear-free. LVDT sensors are primarly used for measurement of movement, displacement and position in vehicles and machines.

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The SGS (Spindle Growth System) 4701 displacement measuring system is developed for high speed milling machine applications. Due to high machining speeds and the heat generated, the linear thermal expansion of the precision machine tool spindle needs to be compensated for in order to keep the tool in a defined position at all times. The SGS sensor measures the expansion of the spindle caused by thermal and centrifugal force. The measurement takes places typically on the labyrinth-ring. As well as the linear expansion, the temperature of the sensor is detected and output.These measurement values are fed into the CNC machine tool as correction values, compensating for any positioning errors.

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Many materials cannot be measured tactilely, therefore non-contact thickness measurements become necessary. Especially e.g. with glowing materials, or wet processes, a continuous tactile measurement is nearly impossible. Furthermore, web speeds in plant engineering and production have increased, requiring a corresponding fast sampling rate of the measuring systems. In addition, high measuring widths are often required. Why is contact free measurement technology so perfect for this application? Can be used in any web width, Scalable measurement thicknesses from a few millimetres to several meters, Thickness and coating thickness can be measured for different materials, Vibrations of the web materials, can be compensated, Turnkey solution for mechanical engineering, Non-contact and non-destructive measurement method, Large distances to the measured object are possible, Measurement of free forms,

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Germany

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thicknessGAUGE sensor systems are used for precise thickness measurements of strip materials, plates and sheets up to 50 mm. Several models with different sensor types, measuring ranges and measuring widths enable inline thickness measurements of different materials and surfaces based on an unmatched price/performance ratio. This fully assembled system comprises a stable frame on which two optical distance sensors are fixed, which detect the thickness of the measuring object according to the difference principle. The sensors are perfectly aligned to each other in terms of their mounting condition. Furthermore, thickness calibration at the factory enables high precision thickness measurements.

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Germany

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The thicknessGAUGE O.EC is a compact inline measuring system in a stable O-frame design with an aluminum roller and an integrated control cabinet. The system is used for precise thickness measurements of plastic strips and coatings up to 3 mm material thickness and web widths up to max. 1250 mm. To obtain a cross profile of the material thickness, the sensor is traversed over the film. Keeping the sensor fixed at a particular position enables a thickness profile to be generated. Integration takes place in complete production lines, e.g., in plastics production and battery film production. The systems can be integrated into new plants or retrofitted directly into existing plants.

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thicknessGAUGE C.LP sensor systems use laser profile scanners for the thickness measurement. These scanners project a laser line onto the surface to be measured. The laser line compensates for strip tilting and enables profile averaging. The laser line measuring technique makes it possible to measure the thickness of structured materials such as embossed surfaces and perforated plates.

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Germany

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The thicknessGAUGE C.C sensor systems use confocal chromatic displacement sensors for the thickness measurement. The sensors allow for measurements to be performed with outstanding accuracy and high measuring rates. In addition, this innovative measuring technique enables measurements of reflective and shiny surfaces.

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Germany

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thicknessGAUGE C.LL sensor systems use laser triangulation sensors for the thickness measurement. These laser sensors enable high measuring rates at high speeds. The thicknessGAUGE.laser series impresses with a favorable price/performance ratio and is preferably used for thickness measurements of common surfaces such as plastics, wood and metals.

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The RTP 8301.CT is based on laser triangulation sensors and therefore ensures the measurement being independently from material constants. The system is designed as O-frame, both sensors detect the thickness according to the differential method. In order to ensure highest precision, the laser beams of the sensors are accurately adjusted during the production process using optoelectronic tools which have been specially developed. The system is ideal for monitoring high-dynamically processes due to its high measuring rate. The O-frame mechanics of the system dispose of a compensation frame which does not vary with temperature and which is used in order to avoid temperature fluctuations of the measuring frame using further sensors. The profilometer corresponds to the TIP 8301.CT regarding its functionality. However, it has a different operators´ frontend and evaluation functions.

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Germany

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The FTS 8102.EC C-frame is based on the combisensor principle equipped with non-contact capacitive sensors. The distance between sensor and film is measured with the capacitive sensor. The eddy-current sensors ensures the thickness signal by a reference measurement to a second target. The system is designed as a C-frame and can be used as a traversing unit by using the linear axis.

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Germany

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The FTS 8101.EC O-frame is based on the combisensor principle equipped with non-contact capacitive sensors. The distance between sensor and film is measured with the capacitive sensor. The eddy-current sensors ensures the thickness signal by a reference measurement to a second target. The system can be integrated in the flat layer section.

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Germany

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thicknessGAUGE sensor systems are used to measure the thickness of strip materials in-line. Several models with different sensor types, measuring ranges and measuring widths enable inline thickness measurements of different materials and surfaces. The systems uses two confocal distance sensors which detect the strip thickness with high precision. The sensors are precisely aligned to each other and factory-calibrated. By means of a linear axis, the thicknessGAUGE sensor systems can be moved to measure the thickness across the entire strip width. Their extremely compact design enables integration into confined spaces.

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Germany

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The innovative white light interferometers from Micro-Epsilon set a benchmark in high-precision distance and thickness measurements. These sensors enable stable measurement results with sub-nanometer resolution offering a comparatively large measuring range and offset distance. The interferometers are available in 3 series: the IMS5400-DS for high-precision industrial distance measurements, the IMS5400-TH for accurate thickness measurements and the vacuum-suitable IMS5600-DS for distance measurements with picometer resolution.

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Germany

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The confocal chromatic confocalDT measuring system is used for fast distance and thickness measurements. Different sensor models and controller interfaces open versatile fields of application, e.g., in the semiconductor industry, glass industry, medical engineering and plastics production.

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Germany

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The new thicknessSENSOR opens up diverse application possibilities in terms of non-contact thickness measurement. The sensor operates with high precision and enables fast commissioning as well as ease of use. The thicknessSENSOR is a fully assembled system for non-contact thickness measurements of strip and plate material. The system consists of two displacement sensors that are fixed opposite to each other on a frame and measure against the target from both sides. The material thickness is detected according to the difference principle and calculated using an integrated evaluation unit. The measurement values are output as analog values via voltage and current or in digital form via Ethernet. Due to its extremely compact size, the sensor can also easily be integrated into restricted installation space. The intuitive web interface provides the new thicknessSENSOR with unique ease of use and enables the user to load individual presets for the respective measurement task. Up to eight

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Germany

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Micro-Epsilon offers a comprehensive range of capacitive displacement sensors. These capacitive sensors are used for displacement, position and also for thickness measurements. Different sensor designs enable optimal integration into machines and systems. The capaNCDT sensors achieve best values in terms of linearity, temperature stability and resolution. While sub-micrometer precision is reached in industrial environments, even sub-nanometer accuracy can be achieved in clean environments.

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Germany

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Capacitive sensors are designed for non-contact measurement of displacement, distance and position, as well as for thickness measurement. Due to their high signal stability and resolution, capacitive displacement sensors are applied in laboratories and industrial measurement tasks. In production control, for example, capacitive sensors measure film thickness and application of the adhesive. Installed in machines, they monitor displacement and tool positions.

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Germany

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The SQM-160 uses proven INFICON quartz crystal sensor technology to measure rate and thickness in thin film deposition processes. Two sensor inputs are standard and four additional sensor inputs are optional. Two recorder outputs provide analog rate and thickness signals. Sensor inputs can be assigned to different materials, averaged for accurate deposition control in large systems, or configured for a dual sensor. The rate sampling mode allows a shuttered sensor to extend sensor life in high rate processes. Rate displays of 0.1Å/s or 0.01Å/s are user selectable. In addition, Frequency or Mass displays can be selected. Four relay outputs allow the SQM-160 to control source or sensor shutters, signal time and thickness setpoints, and signal crystal failure. Digital inputs allow external signals to start/stop and zero readings. Standard: RS-232; Optional: USB or Ethernet Standard: RS-232; Optional: USB or Ethernet Class 1 equipment, 73/72/EEC LVD, 89/336/EEC ECD Class 1...

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Germany

The WARP CP is an inline measuring system with radar-based wall thickness sensors for detecting the various structures of a corrugated pipe. Outer and inner diameters, as well as the wall thicknesses of the bell, crest, liner, and valley can be resolved. The system is available for large, corrugated pipes with diameters from 300 mm. Since the corrugated tube has different structures, it is therefore necessary to assign the measurement data to the corresponding position on or in the tube. The WARP-CP algorithms do this automatically and prepare the data for the user in such a way that he receives different graphics and corresponding measurement data for each structure. Other advantages/features: — Non-destructive, contactless, and automated inline measurement of all relevant structures of the corrugated tube — No waste due to destructive measurement — Repair of critical thick and thin spots — Saving of material overweight in the end product

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