Testing Machine Product List and Ranking from 42 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Aug 27, 2025~Sep 23, 2025
This ranking is based on the number of page views on our site.

Testing Machine Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 27, 2025~Sep 23, 2025
This ranking is based on the number of page views on our site.

  1. GRIFFY Tokyo//others
  2. Toyo Seiki Seisaku-sho, LTD. Tokyo//others
  3. インストロンジャパンカンパニイリミテッド 日本支社 Kanagawa//others
  4. 4 応用計測サービス Saitama//Other construction industries
  5. 5 エフティーエス Tokyo//Trading company/Wholesale

Testing Machine Product ranking

Last Updated: Aggregation Period:Aug 27, 2025~Sep 23, 2025
This ranking is based on the number of page views on our site.

  1. Field tensile testing machine "Techno Tester"
  2. Turbidity Cloud Measurement System GRIFFY
  3. Instron Testing Machine Comprehensive Catalog インストロンジャパンカンパニイリミテッド 日本支社
  4. Noise Vibration Cloud Measurement System GRIFFY
  5. 5 Georegistration method 太洋基礎工業

Testing Machine Product List

121~135 item / All 1208 items

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Electric Drive Dynamic Testing Machine 'ElectroPuls E20000LT'

This is a testing machine with a newly added 20 kN dynamic linear capacity and a torque capacity of 130 Nm in the ElectroPuls series.

The electric-driven testing machine 'E20000 Linear Torsion' has double the linear capacity of the conventional E10000 system, while the overall size of the testing machine remains almost the same. With the latest patented automatic electric crosshead clamp, the adjustment of the test space size can be done quickly and easily. Like existing products, it employs Instron's advanced digital control electronics, dual-axis Dynacell(TM) load cells, and a patented simple tuning technology based on the rigidity of the test specimen. 【Performance】 ■ Linear dynamic load capacity: 20 kN (4,500 lbf) ■ Torsional dynamic load capacity: 130 Nm (1150 in-lb) ■ Stroke: 75 mm (2.95 in) ■ Optical encoder: Accurate digital extension/rotation (5 nm resolution) ■ High dynamic performance: Up to 100 Hz *For more details, please download the PDF or contact us.

  • Other measuring instruments

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Automobile Test - Interior

We provide mechanical testing solutions necessary for evaluating automotive interior components that excel in durability and design, capable of withstanding years of use.

■Dashboard Drop Impact Test Evaluation of the impact characteristics of parts necessary for airbag deployment ■HDT and Vicat Test Evaluation of heat resistance temperature for lightweight materials such as thermoplastic resins used in the vehicle interior ■Testing in Actual Use Environment Simulation tests assuming actual use of gears and brakes ■Pull-Twist Test for Knobs and Buttons Testing of parts requiring torsional characteristics for operation used in the vehicle interior ■Plastic Tensile Test Various extensometers available ■Compression Test for Seat Foam Compression tests necessary for evaluating comfort ■Textile Testing Special grips for tensile tests and pendulum impact tests for airbags

  • Other analytical equipment

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Automobile Test - Chassis and Body

Instron provides material testing solutions that meet the testing needs of various types of metallic materials used in vehicle bodies, in line with the trend of lightweight materials.

■ Bumper Impact Testing By analyzing the load-deformation curve during the testing process using a drop weight system and data collection capabilities, we evaluate how the bumper fails during an impact. ■ High Strain Rate Testing of Chassis and Body We provide a VHS system capable of conducting tests suitable for applications with maximum test speeds of up to 25 m/s for metals and high-performance alloys. ■ Tensile Testing of Composite Laminates Featuring precision grips that are accurately aligned with the axis and various testing fixtures that can be attached to the grips. ■ Post-Impact Compression Testing of Composite Laminates This allows for the verification of tolerance to damage in laminated products and elucidates the effects of various impact energies on residual strength.

  • Other analytical equipment

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EV battery test - weld joint test

Test solution to understand the failure modes and strength that are likely to occur at the numerous welds used between the electrodes, tabs, casing, and cells.

■Welding Joint Testing of Cylindrical Cells Cylindrical cells require multiple welds during assembly, including between the cathode tab and the cell cap, between the anode tab and the bottom of the can, and individual welds between tabs. To achieve high productivity and reproducible results, it is essential to correctly align these weld joints and use appropriate gripping solutions. ■Welding Joint Testing of Prism Cells The weld joints of prism cells are primarily located between the cathode/anode tabs and each collector, as well as inside the busbar or the can itself. Breakage can occur at all locations, and consistency and durability need to be verified. ■Welding Joint Testing of Pouch Cells Pouch cells have the anode or cathode tabs welded together, with each tab welded to the cell terminals. Additionally, pouch cells have busbar weld joints that also require testing. In addition to proper alignment of fixtures and test pieces, versatile solutions that accommodate various sizes are crucial.

  • Other analytical equipment
  • Other Batteries

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EV battery test - electrode test

Instron provides material testing solutions for electrode tests necessary to evaluate the adhesion strength and lifespan of electrodes.

■180-Degree Peel Test The 180° peel test is a method commonly used to determine the adhesive strength of electrodes to the collector. This test can be performed using a peel fixture that has mechanical advantages, allows for easy alignment, and utilizes low-load grips and load cells. To ensure high productivity and accurately perform 180° peeling for each test, the best approach is to use pneumatic grips and metal substrates. ■90-Degree Peel Test The 90° peel test is another method frequently used to test the adhesive strength of battery electrodes. The 90° peel generally requires a slightly higher load compared to the 180° peel, but it allows for quick setup as the substrate can be omitted. The most common solution from Instron for this test is a standard 90° peel fixture or a pneumatic peel fixture developed for adhesive testing of electrodes. The 90° pneumatic peel fixture has improved reproducibility and throughput, allowing operators to consistently position and adjust the test specimens at 90°. In the upper fixture, pneumatic grips optimize throughput and reproducibility, making it ideal for testing delicate materials.

  • Other analytical equipment
  • Other Batteries

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[Industry-Specific Solutions] Battery Testing

Testing solutions for lithium-ion battery cells, modules, and packs, which are at the center of trends in the automotive industry.

As the trend of electrification progresses in the global automotive industry, the innovation and rapid growth of battery manufacturers are being demanded more strongly than ever before. Engineers at Instron are closely collaborating with various companies in the industry to respond to the demand for smaller, lighter, and more powerful batteries. Current challenges include the development of testing methods and the creation of customized fixtures for battery testing, as well as improving the productivity and efficiency of quality control laboratories. As a global company specializing in materials testing, we meet the needs of battery laboratories around the world and provide various unique services that lead to minimized downtime, such as installation, calibration, training, and upgrades of equipment conducted in our customers' laboratories, through local support that allows for quick responses in the local language. *For more details, please refer to the related links or feel free to contact us.*

  • Other analytical equipment
  • Other Batteries

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Testing of electronic devices and electronic components

Responding to testing needs from low to medium load! Offering various types of electromechanical universal testing systems.

We would like to introduce our "Testing of Electronic Devices and Components." For many years, we have partnered with leading developers in the home appliance industry to address the testing challenges brought about by new technologies, such as long-lasting fast-charging batteries, innovative bendable displays, devices with enhanced touch functionality, and high-density packages that improve portability. As part of this collaboration, we have designed testing systems with flexibility in mind, allowing our systems to be easily adapted for testing cutting-edge technologies in the future. [Recommended Accessories] ■ Grips and fixtures ■ Custom fixtures ■ Automation ■ Testing in a wide range of environments ■ Method sharing between laboratories with Bluehill Universal *For more details, please refer to the related links or feel free to contact us.

  • Other measuring instruments

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Early issue resolution in press-in testing - Are you measuring up to the pull-out load?

Reduce operational loss, improve accuracy, and stabilize quality! "No-fail press fitting" to your site.

Are you struggling with the gap between simulation and actual operation, such as variations when trying to press-fit, or the fact that while it may be possible on paper, it doesn't go according to specifications in reality? All of these issues can be clarified through actual measurement, and data analysis and management through press-fit testing is a quick way to solve problems. Our company provides detailed support, from requests for testing to understand the load of new products and what happens when they are press-fitted, to the development, sales, and maintenance of customized press-fit testing equipment for each company. Please feel free to contact us by phone or email. 【Features of the Press-Fit Testing Equipment】 ■ Precisely set and measure press-fit values (load and speed) ■ Real-time management of press-fit values, visualized with waveform graphs ■ Measurement of extraction load as well *For more details, please refer to the PDF document or feel free to contact us.

  • Other analytical equipment

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Observation of cavities (voids) occurring inside the product.

As an example of non-destructive testing, we will introduce a case of observing the condition of cavities (voids) that occur inside a product!

Generally, the measuring instruments used in reverse engineering can be broadly classified into devices that measure the external surface and those that measure not only the external surface but also the interior of the object. In the former category, laser scanners and digitizers have been put into practical use, while in the latter category, X-ray CT scanners are utilized. One advantage of using X-ray CT scanners is that they allow for the observation of the internal condition without destroying the product. Here, as an example of non-destructive testing, we will introduce a case of observing the state of cavities (voids) that occur inside a product. [Contents] ■ Overview ■ Visualization of Cavities (Voids) ■ Discussion *Detailed information about the case can be viewed through the related links. For more information, please feel free to contact us.

  • Analysis and prediction system

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[Application Example] Mobile Phone Solution

Evaluation of wireless systems for mobile phone devices

By creating an environment that minimizes unnecessary radio waves around the development and production sites, it becomes possible to evaluate the wireless systems of mobile phone devices. ■□■Solution■□■ ■Protocol (Layer 1-3) testing via air connection - Set up an environment for bidirectional connection using a radio simulator and devices installed inside a radio anechoic chamber, with transmitting and receiving antennas mounted inside the chamber. - Conduct various protocol (Layer 1-3) tests using the radio simulator. ■Transmission characteristic testing of wireless communication devices via air connection - Receive radio waves emitted from devices placed on a turntable with a receiving antenna installed at the opposite position, and output them outside the radio anechoic chamber. - By connecting a spectrum analyzer or power meter to the input/output terminals, evaluation of each test item for the transmission characteristics of the radio device can be performed. ■For other functions and details, please download the catalog or contact us.

  • others

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Countermeasures for radiation immunity testing using a small loop antenna.

[Application Example] Measures for Radiation Immunity Testing Using a Small Loop Antenna

Our company can conduct a simple "radiated immunity test" at frequencies from 80MHz to 500MHz with an electric field strength of 30V/m for pre-evaluation before bringing the equipment under test (EUT) to the EMC test site and for confirming the effectiveness of countermeasures. To perform the radiated immunity test at low frequencies of 80MHz to 500MHz with an electric field strength of 30V/m, we use a very confined space, the anechoic chamber, compared to a shielded room, by placing a small loop antenna close to the EUT (within ~5cm). [Test Procedure] [Calibration] 1) Place the electric field probe at the EUT installation position for calibration. 2) Adjust the level of the signal generator to achieve the desired electric field strength. 3) Determine the level of the signal generator. [Test] 1) Install the EUT and set it to the level of the signal generator determined during calibration. 2) Conduct tests to check if the EUT malfunctions. 3) Repeat the tests while moving the antenna up, down, left, and right. *For more details, please refer to the PDF document or feel free to contact us.

  • others

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Aresta tester

Aresta tester

Test device for measuring the discharge starting voltage of gas discharge tubes and the operating voltage of varistors ■□■Features■□■ ■Compact shape ideal for portability ■For more details, please contact us.

  • Lightning protection

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Information about technical facilities

Introducing Showa Denko's technology along with testing equipment and in-house developed facilities!

This document introduces Showden's technology, which contributes to the safe and secure operation of information and communication networks, along with testing equipment and development facilities. Since its founding, our company has been engaged in technology development to enhance the reliability of information and communication networks, providing numerous products and services. In particular, in the fields of lightning damage prevention and earthquake countermeasures, we have established simulation facilities to aid in the development of technologies and products. [Contents] ■ Introduction of main testing equipment ■ Introduction of each location *For more details, please refer to the PDF document or feel free to contact us.

  • Electrical Equipment Testing

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High-temperature heating, tensile compression, on-site observation, atmosphere control as well / CATY-T3H

Tests can be conducted while observing the condition of the material surface [using a dual-swing crosshead], keeping the sample position centered to avoid missing any changes!

The "CATY-T3H SYSTEM" is a tabletop high-temperature tensile observation device that allows for thermal fatigue testing while observing the condition of the sample surface in real-time. It can be operated easily and supports high-temperature and high-speed heating. The adoption of a dual-swing crosshead ensures that the sample's position remains centered, even with expansion and contraction, minimizing any displacement of the observation point. By combining it with optional units, it can also accommodate tests such as bending observation. 【Features】 ■ Capable of high-temperature and high-speed heating up to 1500°C * However, this depends on the shape and thermal capacity of the sample. ■ Suitable for testing not only metallic materials but also composite materials of surface-mounted components ■ Enables stress measurement, low-cycle fatigue testing, and creep testing in gas flow or vacuum conditions ■ Realizes combined testing of thermal fatigue under stress and real-time observation * For more details, please refer to the documentation. Feel free to contact us with any inquiries.

  • Steel

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Material testing machines: From basic to complex customization available [Production achievements listed]

Utilizing the know-how of custom testing machines, we support testing and research with material testing machines such as impact, fatigue durability, tensile, and torsion testing machines.

▼Examples of Testing Machine Manufacturing▼ The description is just one example. For details, please check individual pages or feel free to contact us. Customization is also available. *Special order testing machines and high-temperature in-situ observation furnaces are featured on separate pages. 1. Impact Testing Machines - Charpy (pendulum/instrumented/semi-automatic/manual/automatic specimen replenishment) for metals, non-metals, and resins. - Drop weight impact (drop/falling weight/instrumented) for metals, non-metals, resins, carbon fibers, textiles, and automotive-related materials. 2. Fatigue Endurance Testing Machines - Creep (servo-electronic/weight type/multi-station/with constant temperature bath) for metals, ceramics, carbon fibers, resins, and electric wires. - Pulley fatigue for metals and products. - Torsional fatigue for metals and resins. - Friction and wear (thrust/reciprocating/sliding/rotational) for metals, ceramics, carbon fibers, and resins. 3. Other Material Testing Machines - Universal testing machines (tensile/compression/bending) for metals, ceramics, carbon fibers, resins, and electric wires. - Static torsion testing machines for resins, rubber, etc. ▼Material Testing Machines at Yoekura▼ Since our establishment in 1980, we have been manufacturing testing machines. We consistently handle the design, development, manufacturing, maintenance, inspection, and repair of equipment, and with our accumulated know-how and technology, we have produced testing machines for various customers across different industries.

  • Printed Plywood
  • Ready-mix concrete
  • Other measuring instruments

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