All products and services
1~30 item / All 75 items
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Building limit measuring device LDM300A for scaffolding measurements in station redevelopment construction.
Railway operator building gauge measuring device! Weighing only 7.6 kg, it is compact and lightweight, making it easy to carry and contributing to a reduction in the number of workers needed.
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High precision (≦±2mm) 2D laser scanner for horizontal/vertical measurement.
High-precision 2D laser scanner capable of measuring in horizontal/vertical directions. Achieves measurements of displacement, strain, subsidence, and erosion that were not possible before. [Demo unit available]
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The diameter of the pipe can be measured automatically using a laser distance sensor.
It is possible to automatically measure the diameter of pipes with a thickness of 150mm or more without human intervention. The length of the pipe does not matter.
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Steel mill laser distance sensor for measuring bloom thickness at high temperatures.
It is possible to measure the thickness of blooms near a high temperature of 1,000°C at the steel mill using multiple laser distance sensors in a non-contact manner.
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Two-dimensional laser scanners for labor-saving in civil engineering sites.
High-precision and rapid measurement of hand measurements, displacement, unevenness, and strain at civil engineering sites can be achieved using a 2D laser scanner. This contributes to labor saving.
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2D laser scanner for various measurements of tunnel segments
High-precision and quick measurement of the length, roundness, displacement, unevenness, and strain of tunnel segments can be achieved using a 2D laser scanner.
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2D laser scanner for measuring the diameter/circularity/deflection of a giant cylindrical shape.
High-precision and quick measurements of the diameter, roundness, displacement, unevenness, and strain of large cylindrical shapes are possible using a 2D laser scanner.
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Large-diameter pipe: 2D laser scanner for measuring the inner diameter of the pipe.
Measurement of the inner diameter, irregularities, and distortions of large-diameter pipes and tubes can be performed quickly using a 2D laser scanner.
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Bridge deck replacement: Re-measurement and re-surveying using a 2D laser scanner.
Released from the enormous data processing of 3D. Contributes to low cost and labor-saving analysis. Ideal for re-measurement and re-evaluation during bridge deck replacement. For labor-saving in measurement and surveying.
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A 2D laser scanner that can automatically measure roundness.
It is possible to measure the roundness of large cylindrical objects over 10 meters. X-axis/Y-axis data is provided in real-time. This enables the measurement of roundness on-site.
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2D laser scanner capable of real-time data processing.
A high-precision 2D laser scanner capable of measuring in horizontal and vertical directions enables measurements of displacement, strain, subsidence, and erosion that have not been possible until now.
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Management of storage that can be retrofitted to overhead cranes in the coil manufacturing site.
By retrofitting a laser distance sensor to the overhead crane, it automatically detects the position, eliminating the hassle of location input and input errors.
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High precision (≦±2mm) 2D laser scanner for horizontal/vertical measurement.
A high-precision 2D laser scanner capable of measuring in horizontal and vertical directions enables measurements of displacement, strain, subsidence, and erosion that have never been achieved before.
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High-precision (±2mm) 2D laser scanner for tunnel cross-section measurement.
A high-precision 2D laser scanner capable of measuring in horizontal and vertical directions enables measurements of displacement, strain, subsidence, and erosion that have never been achieved before.
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Over 20 years of domestic performance - operable at -40°C, can be installed on freezer cranes.
This is a laser distance sensor capable of data collection with an accuracy of ±1mm up to 100m in environments of -40℃ and below, with a maximum frequency of 250Hz. It can be used in freezers.
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Domestic track record of over 20 years, high precision, small and lightweight laser distance sensor.
Can measure distances up to 500m with an accuracy of ±1mm! Maximum measurement rate of 250Hz/IP65 compliant/operates in environments up to +60°C.
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Over 20 years of domestic experience in tunnel interior displacement measurement using laser distance sensors.
It is often seen that 2 to 3 laser distance sensors are used for measuring internal tunnel displacement. We highly recommend using high-precision, compact, and lightweight sensors.
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Over 20 years of domestic experience in measuring the deflection of steel bridges using laser distance sensors.
By using a laser distance sensor to measure the deflection of the iron bridge, the health of the shoe (bearing) can be determined.
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Domestic achievements of over 20 years in measuring the deflection of steel bridges using high-speed response laser distance sensors.
By leveraging the high response capability of the laser distance sensor (up to 250 data points per second), the health of the shoe (bearing) can be determined.
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Over 20 years of domestic experience: Laser distance sensor that can be retrofitted to overhead cranes.
When transporting heavy objects, position information is measured and controlled using a retrofitted laser distance sensor on the overhead crane for positioning along the X-axis/Y-axis within 50-100 meters.
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Over 20 years of domestic sales performance - Positioning control with laser distance sensors.
When transporting heavy objects, use a retrofitted laser distance sensor on the overhead crane to measure and control the positioning on the X/Y axis within 50-100 meters.
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Measurement of the cross-section inside the Seikan Tunnel using Dimetix laser distance sensors.
In early December 2022, under the supervision of the Railway and Transport Agency and the Railway Technical Research Institute, a joint measurement of the cross-section of the Seikan Tunnel was conducted with JR East Engineering.
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High-precision, compact, and lightweight laser distance sensor for positioning mobile viewing seats.
This is a high-precision, compact, and lightweight laser distance sensor manufactured by Dimetix, suitable for knowing the seat positions, widely used from theaters to arenas.
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Using a laser distance sensor to obtain position data to solve problems and improve productivity.
Retrofit existing cranes with laser distance sensors to digitalize crane position information, coordinate the factory, and reduce collisions and transportation time.
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Measuring load sway of overhead cranes to avoid danger? Position correction with lasers.
Don't you feel the need to understand the sway of suspended loads with a ceiling crane to avoid danger? The position information is measured with a laser distance sensor.
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Measuring the position and displacement of refractory bricks in the steel mill using a laser distance sensor.
The position and displacement of refractory bricks can be measured with a laser distance sensor with an accuracy of ±1mm. This allows for precise understanding of the timing for replacement, contributing to time savings and increased efficiency.
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Automation of existing tunnel interior displacement measurement.
The existing tunnel internal displacement measurement has been transitioned from manual methods to permanent automatic measurement using laser distance sensors. Displacement can be monitored anytime and anywhere.
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Steel mill, measuring the dimensions of steel in an environment of 1000°C with a laser distance sensor.
In high-temperature environments around 1000℃, various dimensions of steel can be measured with an accuracy of ±1mm. The position of the blast furnace bricks can also be measured. This contributes to improving work efficiency within the steelworks.
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High-speed response laser distance sensor 'D Series' for measuring the deflection of iron bridges.
By utilizing the high-speed response of the laser distance sensor (up to 250 data points per second), the health of the shoe (bearing) can be assessed.
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Using the laser distance sensor 'D Series' for measuring the deflection of iron bridges.
By using a laser distance sensor for measuring the deflection of the iron bridge, the health of the shoe (bearing) can be determined.
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