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Measuring Instrument Product List and Ranking from 36 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

Measuring Instrument Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

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  5. 5 日東精工アナリテック Kanagawa//Industrial Machinery

Measuring Instrument Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. VR-6000 Series One-Shot 3D Shape Measuring Machine
  2. Fully Automatic Image Dimension Measuring Instrument 'IM-X1000 Series'
  3. 3D scanner type three-dimensional measuring instrument "VL-800 series"
  4. 4 Image Dimension Measuring Instrument IM-8000 Series
  5. 5 High-precision image dimension measuring instrument LM series

Measuring Instrument Product List

3541~3555 item / All 3611 items

Displayed results

Rubber hardness measuring device "OSK 50CB digiChamber"

Eliminate human error! Compatible with hardness measurement of various elastic materials, polymers, and elastomers.

The "OSK 50CB digiChamber" is a fully automatic rubber hardness testing device with a temperature control chamber designed for rubber parts that need to withstand temperature changes. With a sample platform that can accommodate up to 25 samples, it is suitable not only for standard samples but also for hardness testing of finished products. Depending on the actual inspection requirements, different measurement temperatures, humidity levels, number of measurement points, and inspection frequencies can be set for each sample. 【Features】 ■ Suitable for hardness testing of finished products as well as standard samples ■ Combines Weiss Technik's LabEvent series to provide an accurate temperature simulation environment ■ The appearance, temperature range, dimensions, and weight of this product vary depending on the LabEvent model *For more details, please download the PDF or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Testing Equipment and Devices

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Announcement of the "Display MTF Measurement Device Introduction Seminar"

On-demand distribution! Introducing variations of accurate MTF measurement while incorporating measurement examples.

We will hold an "On-Demand Seminar Introducing Display MTF Measurement Equipment." We will introduce variations of accurate MTF measurement, including evaluation of decorative films using the DT-8031 equipped with line-based methods, and measurement examples of aerial images, which have been difficult to measure until now. We look forward to your participation. 【Event Overview】 ■ Venue: On-demand distribution of pre-recorded video ■ Co-host: Aphrodite Co., Ltd. ■ Participation Fee: Free (Pre-registration required) *For more details, please refer to the related links or feel free to contact us.

  • Optical Measuring Instruments

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Product: Standard Torque Measurement Device "TEST CABIN"

Combination-free torque measurement system

The "TEST CABIN" supports various torque analyses from development to quality control. It features a modular detection and control unit, allowing for the free selection of drive motors and torque sensors, making it a standard for torque measurement. It achieves high-precision measurements with optimal motor control and torque ratings suited to the measured object. Additionally, it offers a lineup of input-side drive sensors and output-side load sensors, enabling the construction of an input-output torque measurement system. ■ CABIN UNIT Controller CT-8000 ■ CABIN CELL Drive-integrated torque sensor ■ CABIN LOGIC Torque measurement software

  • Testing Equipment and Devices
  • Contract measurement

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[Product] Temperature and Humidity Environment Compatible Motor Torque Comprehensive Measurement Device

Humidity environment test for vehicle-mounted motors

This device is a comprehensive motor torque measurement system capable of conducting basic characteristic tests of onboard motors, including those for HEV/HV, EPS (Electric Power Steering), and pumps, under temperature and humidity conditions. By connecting the load bench to a constant temperature and humidity chamber, it is possible to perform environmental tests (e.g., -40°C to 150°C). Additionally, by replacing the load bench section with a torque sensor, it can measure torque ripple and cogging torque.

  • Testing Equipment and Devices
  • Temperature and humidity measuring instruments

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Product: Motor Torque Measurement Device, Motor Brake Method

Ideal for load testing requiring high responsiveness, such as brushless motors.

This measuring device is a motor testing apparatus that employs a motor brake for load. It can measure N-T (torque control) and T-N (speed control) with high precision through speed and torque control. Additionally, it can connect to a power meter as an option, allowing for the measurement of current, voltage, efficiency, and power. The motor used for the load is an AC servo motor, designed to be compact and highly accurate. It is ideal for testing brushless motors and similar applications.

  • Testing Equipment and Devices

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Product: Motor Torque Measurement Device, Powder Brake Method

Ideal for load testing of large-capacity motors such as geared motors.

This measuring device is suitable for load testing various large-capacity motors. It automatically controls the brake through software and measures torque, rotational speed, current, and voltage. By using a powder brake for the measurement load, we can offer large-capacity motor testing machines at a low price.

  • Testing Equipment and Devices

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Product: Cogging Torque Measurement Device

Measuring device for measuring the cogging torque of a motor.

We will rotate the unexcited motor at a constant speed and measure the relationship between magnetic pole torque and angle (θT). This is ideal for small DC motors and the detent torque of stepping motors.

  • Testing Equipment and Devices

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High-precision, non-contact straightness measurement device [Demo/test units available for loan]

Non-contact, high-precision straightness measuring device that does not damage the measurement target! Easy to install.

The straightness measurement device is a measuring instrument used for shape management. It can measure in the vertical direction, and models are available with measurement lengths ranging from 1000 to 3000 mm. Since the cross-sectional shape can be managed with numerical data, effective management of surface shapes can be achieved. In addition to the contact type, which has over 30 years of sales experience, we have added a non-contact type to our lineup in response to requests from the semiconductor industry. The main features are as follows: - High-precision straightness measurement is possible - Easy installation - Results can be visualized with dedicated software, allowing feedback to production - Bidirectional measurement is possible - Does not damage sensors or detected objects (non-contact type only) - Less affected by the hardness of the detected object (non-contact type only) We offer rental of test machines and assistance with evaluations.

  • Other measurement, recording and measuring instruments

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CD/PMD Analyzer

Supports single-end measurements! A diverse lineup for mesh-type networks and more.

This product is a measurement device for wavelength dispersion (Chromatic Dispersion) and polarization mode dispersion (Polarization Mode Dispersion) in optical fiber transmission paths. We offer a variety of products, from long-distance transmission paths of 12,000 km to mesh networks that can measure up to 120 km in a single-ended configuration. Please feel free to contact us when you need assistance. 【Product Lineup】 ■FTB-5800 (FLS-5834A) ■FTB-5500B (FLS-5834A) ■FTB-5700 *You can download the English version of the catalog. *For more details, please refer to the PDF materials or feel free to contact us.

  • Logic Analyzer

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[Measurement Field] Thermal conductivity of thin sheet samples, isotropic, anisotropic [TA]

Non-contact measurement of thermal diffusivity using a laser. Measurement of materials with high thermal conductivity is possible.

The ThermoWave Analyzer TA3 measures thermal diffusivity using a non-contact method with a laser. It is capable of measuring materials with high thermal conductivity. Measurements can be taken without worrying about the shape. For more details, please contact us.

  • Logic Analyzer

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[Measurement Field] Thermal Conductivity of Sheet Materials Isotropic, Anisotropic [TA]

Non-contact measurement of thermal diffusivity using a laser. Measurement of resin-based materials is also possible.

The ThermoWave Analyzer TA measures thermal diffusivity using a non-contact method with a laser. Since the thermal conductivity of composite materials made of fillers and resins varies significantly with the mixing ratio, measuring thermal diffusivity is essential. Measurement of resin-based materials is also possible. Please contact us for more details.

  • Logic Analyzer

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[Measurement Example] Thermal Conductivity of Thermoelectric Materials: Strontium Titanate [TA]

It will help in the development of thermoelectric materials!

Energy conservation is a challenge that must be addressed throughout Japan and the world in the future, and it is expected that the development of thermoelectric materials will also accelerate within this context. In fact, our company has received numerous requests for measurements of thermoelectric materials. Since the earthquake, there has been a particularly increasing trend, and if our measurement technology can contribute to the world of energy conservation, we are willing to cooperate in any way possible.

  • Other metal materials

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[Measurement Example] <LED Material> Measurement of Thermal Conductivity of Gallium Nitride (GaN)

Thermal evaluation of gallium nitride, known for blue LEDs and semiconductor materials!!

■Evaluation of particles with a micro size (3μm and above) ■Evaluation of thermal conductivity of thin films ■Measurement possible at submicron order

  • Microscope

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[Measurement Example] <Insulation substrate material for electronic circuits> Thermal conductivity of polyimide sheet

Thermal conductivity distribution measurement and the anisotropy of thermal diffusivity in each part can be evaluated.

Here is an example of evaluating thin polyimide sheets. Polyimide sheets are resin materials primarily used as insulating substrates and insulating layers in electronic circuits. This time, we measured the thermal diffusivity in the thickness direction using a ThermoWave Analyzer TA on a sheet with a thickness of 7.5 μm. Even with the same polyimide sheet, there are significant thermal differences depending on the thickness. When comparing examples of 25 μm and 7.5 μm using the measure of thermal diffusion time, there is nearly a tenfold difference. The thinner sheet diffuses heat in one-tenth the time. For in-plane measurements, it is relatively easy to achieve time resolution since the distance between the heating point and the detection point can be established. However, for thickness direction measurements, it is necessary to detect rapid temperature changes, which affects the basic performance of the equipment. Traditional measurement methods make the measurement itself difficult. Additionally, at a thickness of 7.5 μm, the thermal effects of surface blackening treatment cannot be ignored, so we have devised methods to minimize these effects during sample preparation and measurement. The measurement results are as follows: Thermal diffusivity in the thickness direction: 0.103 × 10^-6 m²s^-1. This value is approximately 30% lower compared to the 25 μm thick polyimide.

  • Other physicochemical equipment

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[Measurement Example] <Fuel Cell Materials> Thermal Conductivity of Zirconia

Thermal conductivity can be measured non-contact! No surface treatment is required for carbon-based materials!

Yttria-stabilized zirconia is "an oxide based on zirconia, with the addition of yttrium oxide, which stabilizes the crystal structure of zirconia at room temperature." Applications include refractory materials, electrically conductive ceramics, materials for solid oxide fuel cell (SOFC) products, and due to its hardness and optical properties in single crystals, it is also used as a gemstone, such as cubic zirconia. In the case of fuel cell materials, thermal properties are important because the operating temperatures are high. Additionally, cubic zirconia closely resembles diamond and is often used as a diamond substitute. Like diamonds, it has a high refractive index, which gives it a sparkling appearance. The main difference lies in thermal conductivity. There are devices that can simply assess thermal properties to distinguish between diamond and zirconia. It seems that it is also used in thermal barrier coatings (TBC) for gas turbines. The measured result for thermal diffusivity was 1.13×10^-6 m^2s^-1. This value is 2 to 3 orders of magnitude lower compared to diamond. Our ThermoWave Analyzer TA allows for non-contact measurements. Many carbon-based materials can be measured without the need for surface treatment.

  • Other physicochemical equipment

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