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Measuring Instrument(magnet) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
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Measuring Instrument Product List

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[Research Material] World Market for Magnetic Measuring Instruments

World Market for Magnetic Measuring Instruments: Portable, Benchtop, Automotive, Home Appliances, Scientific Research, Industrial, Others

This research report (Global Magnetic Measuring Equipment Market) investigates and analyzes the current state of the global magnetic measuring equipment market and its outlook for the next five years. It includes information on the overview of the global magnetic measuring equipment market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the magnetic measuring equipment market focus on portable and benchtop types, while the segments by application cover automotive, home appliances, scientific research, industrial use, and others. The regional segments calculate the market size of magnetic measuring equipment by dividing it into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in the magnetic measuring equipment sector, product and business overviews, and sales performance.

  • Other services

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Endoscope MTF measurement device

Endoscope-specific MTF measurement device

In the manufacturing of medical endoscopes, reliable quality control of image quality is essential. With the new ImageMaster Endo PRO, all relevant measurement parameters can be automatically measured in a single measurement process. This enables efficient quality management in production, including the issuance of measurement certificates. This highly flexible system measures not only eyeballs with a C-mount camera adapter but also endoscopes. The software offers numerous features to automate the measurement process, making it independent of the operator. For continuous measurements of the same type of endoscope, the setup time is less than one minute. The measurement time for all standard measurement parameters is under three minutes, allowing for at least 12 endoscopes to be measured in one hour.

  • Optical Measuring Instruments

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Fellstar Corporation portable measuring device

Quality control/research and development measurement instruments (conductivity/permeability/magnetic field strength/flaw detection/material differentiation/hardness testing) portable measuring devices.

■Conductivity Meter Portable conductivity meter using eddy current method ■Magnetic Field Strength / Permeability Meter Portable permeability and magnetic field strength meter using a uniquely developed magnetic sensor ■Compact Eddy Current Flaw Detector Suitable for all situations where mobile flaw detection is required

  • Other measurement, recording and measuring instruments

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Magnetic property measurement device (AC magnetic susceptibility measurement device) "XacQuan"

Magnetic concentration and AC magnetization characteristics can be measured in just a few minutes. Quality control with magnetic properties, measurement of LiFePO4 (lithium batteries), etc.

With a small amount of sample, the following measurements can be performed in just a few minutes. ✔ Magnetic Concentration: 'mg-Fe/ml or emu/g' ✔ AC Susceptibility: 'Re[Xac] and Im[Xac]' <Features> - Measurement possible with a small amount of sample (e.g. 0.1 ml magnetic fluid) - Fast detection (within 10 minutes) - Easy operation - Compact and space-saving - Compatible with a variety of samples (e.g. bulk, film, powder, fluid)

  • Analytical Equipment and Devices
  • Other physicochemical equipment
  • Other inspection equipment and devices

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Container Thickness Measuring Device / Model Number M829T-7200FHN

It can accommodate various shapes and angles of PET bottles and non-magnetic metals, allowing for precise measurements without damage.

The M829T-7200FHN/M829T-7400FHN is a portable measuring device that can accurately measure thicknesses up to 10mm. Due to its compact and portable design, it can be used in manufacturing plants and quality inspection laboratories. The M829T-7200FHN/M829T-7400FHN can easily and accurately measure the thickness of non-magnetic materials, regardless of size, shape, or material, without causing damage. It is ideal for applications that require precise measurements of sharp corners, small radii, or complex shapes.

  • Other measurement, recording and measuring instruments

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Pulsed magnetic field measuring device [Demo unit available for loan!]

You can directly read the generated magnetic field in the magnetizing coil! (0 to 1.999T / 0 to 19.99KG, covering a wide range)

The Tesla meter ML-3GT is convenient for recording long-term magnetic field fluctuations. 1. It directly reads the generated magnetic field within the magnetizing coil. Single peak hold function. 2. Operation is easy with the sheet key. 3. Calibration is not required. 4. Display switching between mT/G is possible. 5. It has a wide range of 0–1.999T/0–19.99KG. 6. It is convenient for recording long-term magnetic field fluctuations. Demo units are available for loan! Try it out and use it as a consideration material! Please provide your name (company name) and contact information, and feel free to contact us at info@magnetlabo.co.jp.

  • Other measurement, recording and measuring instruments

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[Case Study] Comparison of Scanning Accuracy between 3D Laser Scanners and X-ray CT Devices

I will introduce a comparison of the scanning accuracy between 3D laser scanners and X-ray CT devices.

When performing reverse engineering, it is necessary to obtain point cloud data of the sample's shape, and the major methods for data acquisition are 3D laser scanning and X-ray CT scanning. Each method has its advantages and disadvantages, but which scanning method offers better accuracy (i.e., higher shape reproducibility)? In this case, we will verify the extent of error and distortion in the scan data from the 3D laser scanner and the X-ray CT scanner based on the dimensions measured by a three-dimensional measuring machine. The procedure is as follows: 【Step 1】 Obtain point cloud data of the sample's shape using a 3D laser scanner. 【Step 2】 Obtain point cloud data of the sample's shape using an X-ray CT scanner. 【Step 3】 Conduct dimensional measurements using a three-dimensional measuring machine. 【Step 4】 Extract dimensional data from the point cloud data in Steps 1 and 2, and compare it with the dimensional data from Step 3.

  • Processing Contract
  • Contract measurement
  • 3D CAD

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