Measurement System - メーカー・企業42社の製品一覧とランキング

更新日: 集計期間:Aug 27, 2025~Sep 23, 2025
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Measurement Systemのメーカー・企業ランキング

更新日: 集計期間:Aug 27, 2025~Sep 23, 2025
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  1. 豊田通商 東日本グローバル部品部 東日本営業第二G Tokyo//others
  2. ソナス Tokyo//Building materials, supplies and fixtures manufacturers
  3. JUN-TECHNO-SERVICE Co., Ltd. SAITAMA/FUKUOKA/SAPPORO Saitama//Other construction industries
  4. 4 Q'sfix (キューズフィックス) Tokyo//Information and Communications
  5. 5 シーズエンジニアリング Chiba//Building materials, supplies and fixtures manufacturers

Measurement Systemの製品ランキング

更新日: 集計期間:Aug 27, 2025~Sep 23, 2025
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  1. Automatic Measurement System "CARGOMETER" 豊田通商 東日本グローバル部品部 東日本営業第二G
  2. Automatic Measurement System for Cargo Dimensions, Weight, and Volume 'CARGOMETER' 豊田通商 東日本グローバル部品部 東日本営業第二G
  3. Battery-operated multi-point measurement wireless noise measurement system (NETIS) ソナス
  4. QY-MT Smart Measurement System JUN-TECHNO-SERVICE Co., Ltd. SAITAMA/FUKUOKA/SAPPORO
  5. 4 High-performance cast-in-place pile hole wall measurement system 'SHAPE' シーズエンジニアリング

Measurement Systemの製品一覧

31~45 件を表示 / 全 150 件

表示件数

[Example of Problem Solving] 3D Measurement

Customize the system! We solve challenges such as "I want to perform 3D measurements on large objects."

The "3D measurement system" is a system that surrounds the measurement target with multiple cameras and allows for real-time measurement by freely moving a wireless probe with markers attached. In response to the challenge of wanting to perform 3D measurements on large objects, it becomes possible to measure shapes that cannot be captured by a 3D scanner by customizing the system according to the size of the target. Our company provides solutions to challenges faced in manufacturing, such as "reducing man-hours," "improving quality," and "digitalization." Please feel free to contact us when needed. 【Overview】 ■ Challenge 1: Reduce measurement man-hours with measuring tools and gauges Solution example: Achieve man-hour reduction through easy operation and digitization of measurements ■ Challenge 2: Reduce human errors in measurements and variations in measurements Solution example: Manage measurement results through the system to prevent human errors ■ Challenge 3: Perform 3D measurements on large objects Solution example: Measure shapes of large items, long items, and targets that cannot be measured by a 3D scanner *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments
  • Other analytical equipment

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[SKYCOM TOUCH Use Case] Improvement of Incoming Inspection Process

Achieve reliable acceptance inspection! It is also possible to reduce running costs in the inspection process.

Here are some examples of the applications of the 3D measurement system "SKYCOM TOUCH." In the "Process Improvement of Incoming Inspection," by digitizing the dimensional inspection that was previously conducted using analog tools such as inspection gauges, calipers, and height gauges, we can reduce not only the man-hours but also the variation in measurements. By managing data digitally, we also contribute to the prevention of human errors such as input mistakes, ensuring reliable incoming inspections. The system supports various measurement functions and does not require dedicated gauges for diverse subjects, making it possible to reduce running costs in the inspection process. 【Features】 ■ Reduces both man-hours and measurement variation ■ Contributes to the prevention of human errors such as input mistakes ■ Supports various measurement functions without the need for dedicated gauges for diverse subjects ■ Reduces running costs in the inspection process *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments

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Ventilation Status Visualization System Experiment Report

Experimental conditions, experimental results, and the significance of these results! We will introduce tables, graphs, and photos of the experimental process.

Measurement of CO2 concentration indoors and a visualization system for ventilation conditions To evaluate the performance of the CO2 sensing pole, which is an essential element, we conducted experiments using a small classroom at Doshisha University Kyotanabe Campus with permission. This document presents the experimental results of the ventilation condition visualization system through tables, graphs, and photographs of the experiment. [Contents (excerpt)] ■ Indoor settings for the ventilation condition visualization system evaluation experiment ■ About the simulated students ■ CO2 emission from the simulated students ■ Experiment preparation ■ Experimental conditions *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments

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Decontamination waste radioactivity measurement system

◆ Proven performance through testing. ◆ Reliable spectral measurement and analysis.

The decontamination waste radiation measurement system is a versatile radiation measurement device that can be used for measuring both individual FREC bags and vehicles loaded with FREC bags. The basic design of the device incorporates counter-terrorism technology developed in the United States. ◆ Measurement can be conducted while traveling at speeds of 5-10 km/h ◆ Judgment time is a few seconds after passing ◆ Capable of determining concentration (Bq), dose rate (μSv/hr), and counting rate (cps) (selection at the time of order)

  • Other Management Services

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Flight Path Measurement System

The measurement of the flight path can be obtained by conducting simultaneous measurements at two or more measurement points.

This system is designed to measure the flight paths and altitudes of moving aircraft and helicopters. It was created to organize the relationship between aircraft noise and distance. The measurement system consists of an electronic theodolite (similar to a telescope on a tripod that you might see at construction sites) to measure the horizontal angle and elevation angle from a reference point, and a laptop that complements the angle data measured by the electronic theodolite into values at one-second intervals and saves them to a disk.

  • others

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Injection Molding Machine Mold Internal Pressure Measurement System 'MPC-201B-25'

No reliance on intuition or experience! A mold cavity pressure measurement system for injection molding machines that quantifies molding quality.

The "MPC-201B-25" is an in-mold pressure measurement system for injection molding machines, equipped with multifunctional data processing software as standard. It allows for easy, low-cost measurement, management, and recording of "in-mold pressure waveforms." By accurately capturing the changes in in-mold pressure during resin filling through actual measured waveforms, it aids in the quality control of molded products. 【Features】 ■ Mold prototyping: Supports optimization of injection conditions ■ Mass production molding: Defect judgment and traceability (pressure waveform recording) ■ Standard equipped with multifunctional data processing software ■ High-precision, low-cost sensors using in-house strain gauges ■ Accurate measurement even at low pressure, high sensitivity, and long lifespan *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments

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Body temperature measurement system

The temperature measurement accuracy is ±0.3℃! Equipped with AI features, the camera measures forehead temperature using face detection!

This product is a high-precision temperature measurement system that integrates a thermal camera with a blackbody furnace. By equipping the camera with AI capabilities, it enables face detection. The blackbody serves as a standard temperature reference, constantly displayed on the camera's captured images, allowing for continuous temperature correction by the thermal camera, thus maintaining measurement accuracy. Additionally, it features a dual-lens system with both thermal and visible light lenses, enabling simultaneous display of thermal and live images. 【Features】 ■ Achieves a body temperature measurement accuracy of ±0.3℃ ■ The face detection function (AI capability) minimizes erroneous measurements outside of facial temperature ■ Immediate alarm activation is possible in case of abnormal detection (the camera is equipped with a siren and LED) ■ The simultaneous visibility of thermal and live images facilitates easy situational awareness *For more details, please refer to the PDF document or feel free to contact us.

  • Security cameras and surveillance systems
  • Safety and consumables

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Large-scale work can also be measured with the 3D measurement system SKYCOM TOUCH.

SKYCOM TOUCH is a system that enables new three-dimensional measurements that can be freely moved around wirelessly and measured in real time.

The 3D measurement system "SKYCOM TOUCH" is a new system that enables real-time measurement by surrounding the measurement target with multiple cameras and freely moving around with a wireless probe. It allows for basic measurements such as distance, angle, and hole diameter, as well as the measurement of various material shapes. Additionally, it can perform geometric intersections and compare CAD data with actual measurements. For dimensional measurement, anyone can easily touch with a lightweight handheld probe, significantly reducing the measurement labor for large and long items such as concrete and steel. Challenges it can solve: - Reduce measurement labor using tape measures and gauges - Decrease human error in measurements - Systematically manage measurement results and automatically acquire evidence

  • Other measuring instruments

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BOD-BART (Simple Short-Term BOD Measurement System) BOD-BART

This is a system that allows for the easy measurement of BOD (Biochemical Oxygen Demand) values in a short amount of time. The determination of BOD values can be performed within 1 to 17 hours.

The patented BOD-BART testing method is a system developed in collaboration with manufacturers, universities, and local governments (wastewater treatment plants) that allows for the quick and easy measurement of BOD (biochemical oxygen demand) values. Traditional BOD testing methods require a period of five days to determine BOD values, necessitating the dilution of test water, aeration, and the specialized knowledge of technicians, along with a long preparation time for measurements. Additionally, the need for dissolved oxygen meters and various devices makes the measurement costly and complicates the process of easily measuring BOD values. The BOD-BART testing method only requires adding 15 ml of test water to the BOD-BART and incubating it, enabling anyone to easily and economically measure BOD values in a short amount of time.

  • Sewerage facilities
  • Other measuring instruments

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Test/Experiment/Analysis System: Optical Power Logger

Easy data storage and management! Record characteristics under various conditions while using environmental testing equipment and more.

The "Optical Power Logger" is a system that automatically measures the attenuation of optical cables. As background, we were considering the introduction of an automation system and the construction of a robust system that can operate 24 hours a day, using existing measuring equipment without purchasing new facilities. This system combines an optical power meter with a multi-channel multiplexer to record the characteristics of optical cables over long periods while simultaneously recording the temperature of the test environment using a thermometer. By preparing two sets of measuring devices, it is possible to operate under two different conditions (test environments), allowing for the recording of characteristics under various situations while also using environmental testing machines. **Effects of Implementation** **Improvement of Work Efficiency** - The adoption of FA computers allows for long hours of continuous operation with peace of mind. - Since it is operated automatically by software, daily checks can be reduced to about one or two times, contributing to a reduction in man-hours. - As numerical records are stored in electronic data, accurate comparisons and judgments can be made using digital values. - The shift to paperless recording through electronic data makes data storage and management easier. - Further software customization allows for the expansion of various functions. *For more details, please refer to the PDF document or feel free to contact us.*

  • Other measuring instruments

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Case studies of the acoustic pulse reflection measurement system APRIS.

It is possible to inspect heat exchangers and boiler tubes non-destructively in less than 10 seconds per unit!

The use of Acoustic Pulse Reflectometry (APR) is suitable for inspecting heat exchangers and boiler tubes. It detects defects (such as holes, corrosion, and blockages) inside the tubes using a non-destructive and non-invasive method. The preparation for measurement is simply to clean and dry the inside of the tube. The measurement process is also very simple; you just insert the probe into the hole and inject the acoustic pulse. The machine records and analyzes the reflected echoes to detect defects. With its unique and sophisticated algorithm, it accurately identifies the location, type, and nature of the defects.

  • Non-destructive testing

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UG HMS/HSU move°S

The dummy head's motor rotation function has been added, featuring high precision and complete reproducibility!

The "UG HMS/HSU move°S" is an upgrade option for the 2021 model HEAD measurement system HMS II.x and all 2021 model Head Shoulder Units (HSU) III. It can be used instead of rotating the entire HMS on the motor-driven turntable HRT I. This upgrade option is available for eligible HMS/HSU units as an option at the time of initial delivery, as well as an upgrade option for existing eligible HMS/HSU1 units. 【Features】 ■ Equipped with a head rotation motor for eligible models of HMS II and HSU III ■ Realistically simulates the movements of a human head ■ Virtually silent operation, usable before and during measurements ■ Head rotation is controlled by HEAD acoustics' test suite (software) ■ Audio playback/recording is accurately synchronized with pulse signals, allowing for complete test reproduction ■ Control and automation are possible via Python scripts *For more details, please refer to the PDF materials or feel free to contact us.

  • Other measuring instruments

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Tunnel Dust Measurement System

NETIS Registration Number: KT-230115-A

Utilizing ICT to streamline the measurement of dust concentration, which is essential for safety management, and the dissemination of measurement results.

  • Tunnel construction

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Laser Automatic Thickness Measurement System 'LAT-46'

Predict future corrosion damage through aging analysis! You can significantly save on work time.

"LAT-46" is a laser-based automatic thickness measurement system that accurately measures and understands the reduced wall thickness of heat exchanger tubes due to corrosion, providing important clues about the aging and hazards of equipment in chemical plant maintenance. It automates stable corrosion wall thickness measurement, which is considered difficult even for engineers, using a laser sensor, allowing anyone to obtain high-precision measurement data with simple operations. Additionally, it helps secure engineers, reduce costs, and significantly save on work time. 【Features】 ■ Non-contact measurement of corrosion wall thickness using laser ■ Evaluation of remaining wall thickness through measurements on both sides of the tube ■ High-speed automatic measurement with a pitch of 0.2mm and a speed of 300mm/s ■ Displacement measurement with a resolution of ±0.03mm ■ High mobility due to simple operation and compact design *For more details, please refer to the PDF document or feel free to contact us.

  • Other measuring instruments

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CO2 concentration measurement system 'hazaview'

High-precision measurement of CO2 concentration. Allows for multi-point centralized management and issues an alert when it exceeds 1000 ppm. Measurement status can be viewed by administrators and occupants via smartphones and other devices.

The Ministry of Health, Labour and Welfare recommends the use of NDIR sensors. They are highly accurate and have a long lifespan. The display screen is designed to be easy to understand, allowing anyone to grasp the ventilation situation without explanation. Additionally, to ensure you don't miss the timing for ventilation, you will be notified via email or AI voice when the CO2 concentration exceeds the standard value of 1000 ppm. (The voice notification can be turned off.) The sensor can be easily used by simply installing it on a wall or table at a height of 0.4 to 1.5 meters from the floor and connecting it to a power source, so no construction is required. *An internet connection is necessary. Currently, there is a possibility to purchase using subsidies effectively. We are also looking for sales agents who can cooperate with this project.

  • Other PCs and OA equipment
  • Other measuring instruments
  • IoT

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