Testing Systems Product List and Ranking from 21 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

Testing Systems Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

  1. エムティエスジャパン Tokyo//others
  2. インストロンジャパンカンパニイリミテッド Kanagawa//others 日本支社
  3. ウェーブクレスト Saitama//Educational and Research Institutions
  4. 東洋電機製造株式会社 Tokyo//others
  5. 中央電機計器製作所 Osaka//others

Testing Systems Product ranking

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

  1. Floor-mounted fatigue testing system <Hydraulic servo fatigue series with a maximum of 250kN> インストロンジャパンカンパニイリミテッド 日本支社
  2. Partial discharge testing system ウェーブクレスト
  3. [Case Study] Landmark Road Frame and Test Suite エムティエスジャパン
  4. Automotive testing system 東洋電機製造株式会社
  5. 4 [Case Study] MTS Model 858 Bionix Testing System エムティエスジャパン

Testing Systems Product List

16~30 item / All 68 items

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ETC Vehicle Installation Test System 'ME8901'

Mainly suitable for production lines! Customization according to testing environments is also possible.

The "ME8901" is a system for communication after installing the ETC on-board unit in the vehicle. It is based on our "DSRC Roadside System ME9300." By connecting each device and connecting the dedicated AC adapter for the modified ME9302 to the power supply, the power will turn ON, and the scenario recorded internally will automatically start, allowing the test to begin. The test is initiated by pulling the tether switch. Customization according to your testing environment is also possible. Please contact us for more details. 【System Configuration】 ■ Antenna Unit: ME9301 modified ■ Interface Box Unit: ME9302 modified ■ Connection Cable: ME9303 ■ Tether Switch ■ Switch Cable (connected to the DI connector of ME9302 modified) ■ Lamp ■ Lamp Cable (connected to the DO connector of ME9302 modified) * For more details, please refer to the PDF materials or feel free to contact us.

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On the Correlation Between Standard EMC Anechoic Chambers and Simplified EMI Test Systems 2

Technical Data: Simple EMI Test System R2300

■EMI Testing System MR2300 Ideal for preliminary compliance testing "Pre-compliance" for official EMI testing. This is an integrated system that combines our spectrum analyzer technology, anechoic chamber technology, and antenna technology. *For more details, please refer to the PDF materials or feel free to contact us. In Topic 1, we explained the differences in measurement results between the standard EMC anechoic chamber (hereinafter referred to as the test site) and the simplified EMI testing system MR2300 (hereinafter referred to as MR2300). In Topic 2, we newly added the shielded tent-type simplified anechoic chamber MY5723 and on-site measurement to the measurement environment. Furthermore, we standardized and changed the antennas in four environments other than the test site to the biconical antenna MAN150B and will conduct comparisons based on the differences in measurement environments.

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Comparison of MR2300 and radiation noise measurement in an anechoic chamber.

【Technical Data】EMI Test System MR2300/RF Shielded Room MY5410

■EMI Test System MR2300 Ideal for preliminary compliance testing of official EMI tests, known as "Pre-compliance." This is an integrated system that combines our spectrum analyzer technology, anechoic chamber technology, and antenna technology. ■Anechoic Chamber MY5410 An anechoic chamber optimal for large-scale EMI testing. It comes standard with a turntable with a diameter of 756mm and a load capacity of 100kg, designed for large EUTs. *For more details, please refer to the PDF materials or feel free to contact us. We measured the noise emitted by the CNE (Comparative Noise Emitter), which is widely used for the calibration of anechoic chambers, using the MR2300 and the anechoic chamber, and conducted a comparison of the results.

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Automatic Transformer Test System 20Hz to a maximum of 2MHz

The fastest test speed in the industry, the highest test level in the industry, the highest bias voltage in the industry, and the most user-friendly experience in the industry.

1. The LCR test parameters have been changed from the original two parameters to a display of four parameters, combining LCR measurement display and sorting display. 2. The LCR test incorporates settings for nominal values and reference values, making it easier for customers to understand and use. Cancel the auxiliary file and cancel the secondary parameter file. 3. The frequency, level, offset, function, and delay of each point in the list scan can be individually set to meet the needs of most customers. 4. LCR curve scan split screen display. 5. Convenient operation and intuitive display. Handler setting interface. In the transformer scan handler sorting mode setting, it can provide up to 30 sorting signal outputs. 6. When setting pins in the past, if pins need to be connected in series and parallel, it is necessary to enter different subpages. 7. The setting of the test conditions for the compressor is more concise and convenient. For the related parameters of Lx, it is necessary to enter 6 to 7 different subpages.

  • Analysis and prediction system
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Automatic transformer testing system Automatic transformer measurement system Up to 1MHz

Ideal for network trans scanning tests, comprehensive characteristic analysis, and more.

Built-in bias power supply of 0-100mA/0-10V, maximum test speed of 75 times per second, improved DCR testing function, basic accuracy of 0.05%.

  • Other measuring instruments

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[Case Study] MTS Bionix Desktop Axial Servo Hydraulic Testing System

We are helping to pursue next-generation vertebral bone cement.

A team of 20 functional materials scientists at Uppsala University’s Faculty of Science and Technology in Uppsala, Sweden, is conducting various research on biomaterials and is currently focusing on research related to bone cement. Uppsala University has partnered with MTS to support bone cement research and has incorporated the MTS Model 858 Bionix tabletop axial servo hydraulic testing system into its functional materials science testing lab. By combining this system with the MTS Bionix EnviroBath environmental simulation system, it has become possible to apply various loads simultaneously to bone cement in a saline solution maintained at human body temperature. As a result, they successfully replicated the loads and conditions that the cement injected into a patient’s body would ultimately experience long after surgery. Customers have stated that with the introduction of the MTS Bionix testing solutions, they can dedicate more time to focusing on new formulations without worrying about the performance of the testing system or the reliability of the test data. For more details, please contact us or refer to the catalog.

  • Other measuring instruments
  • Other analytical equipment

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[Case Study] Landmark Road Frame and Test Suite

We are assisting F1 teams through advanced software variable operations.

Formula One test engineers face some of the most demanding testing challenges in the world. For the UK-based Caterham F1 team, which entered the competition in 2010, conducting fast and flexible mechanical tests from the very beginning has been absolutely essential for the team's success. When it came time to select testing equipment for the newly completed Caterham F1 team's test lab, the test team leader chose MTS. Having used MTS's control systems and load frames for many years, he was already well acquainted with their performance. He was confident that MTS's hardware would provide the speed, accuracy, and flexibility his test team needed, enabling the continuous improvement of the Formula One team. Additionally, MTS TestSuite software brought competitiveness to the team in the high-pressure, quick-results environment characteristic of Formula One testing. For more details, please contact us or refer to the catalog.

  • Other measuring instruments
  • Other analytical equipment

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[Case Study] Shell Element Test System Upgrade

The expertise and technology of MTS played a crucial role in the success of the upgrade.

Professor Evan Bentz from the University of Toronto and a research group from the Mark Hagin Structural Research Institute are conducting cutting-edge research on the properties of reinforced concrete under harsh conditions. With recent significant advances in concrete materials science, the engineers at the institute began to feel the limitations of their research tool, the Shell Element Test (SET) system. They believed that to successfully upgrade the SET system, they needed a vendor who could first clarify what was possible, and then another vendor to implement it. They found a manufacturer that could achieve both simultaneously: MTS. By early 2010, the upgrade of the SET system was completed, and this static testing system effectively transformed into a dynamic testing system with enhanced durability and performance. The upgraded SET system now allows for simulations that closely resemble the actual operating conditions of today’s reinforced concrete structures. For more details, please contact us or refer to the catalog.

  • Rock drills, demolition machines, and excavators
  • Other measuring instruments
  • Other analytical equipment

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[Case Study] A Testing Lab Specialized in Orthopedic Devices for the Spine

High-precision long-term wear and fatigue testing of the lumbar spine and cervical region! Capable of mounting six test specimens, providing a statistically valid sample size.

We have prepared a module that allows for high-precision long-term wear and fatigue testing of both lumbar and cervical vertebrae in the lab, and also accommodates the important requirement of SpineServ for multiple test specimens by allowing the attachment of six test specimens. The shaker can uniformly apply bending, lateral bending, and axial rotation motions simultaneously to all six test specimens. *For more details, please contact us or refer to the catalog.*

  • Other measuring instruments
  • Other analytical equipment

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[Case Study] Addition of Step-Down Gearbox

We support the steady transition from OEM testing facilities to contracted testing labs.

Toyota Motorsport GmbH (TMG), based in Cologne, Germany, has utilized a wide range of high-performance testing equipment from MTS Systems Corporation since 2001 to meet the needs of its Formula One vehicle development. In 2009, TMG made the formal decision to make its testing capabilities and the expertise of its dedicated staff available to external customers. Instead of investing time and money into a new testing system, TMG explored ways to extend the versatility of its existing testing systems by modifying software and hardware. Over several weeks, TMG and MTS worked closely together to complete the technical modifications across the facility. A key modification was the addition of a step-down gearbox to TMG's custom transmission testing system. This was aimed at improving the accuracy of test lab evaluations by replicating the loads, pressures, and operating temperatures present in the gearbox environment. MTS was indispensable for the smooth transition from TMG's testing lab to the contracted testing facility. For more details, please contact us or refer to the catalog.

  • Other measuring instruments
  • Other analytical equipment

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[Case Study] Introduction of MTS Hydraulics Program

It contributes to maintaining the accuracy of the equipment and the integrity of the test data at a very high level.

The George E. Brown Jr. Network for Earthquake Engineering Simulation (NEES) connects 14 earthquake research facilities across the United States through NEEShub, a user-demand-driven cyber infrastructure. A major challenge for NEES is the efficient maintenance and operation of mechanical testing and simulation testing systems used at member institutions. Efficient routine maintenance and calibration of testing systems are essential for consistently maintaining high levels of testing accuracy and system uptime. In 2005, MTS launched a comprehensive support program for member institutions that adopt MTS technology for seismic testing and simulation. The MTS Hydraulix program regularly monitors the cleanliness of the hydraulic fluid in testing systems as a means to prevent significant and costly mechanical issues in the future. MTS's certified calibration and adjustment services contribute to maintaining the accuracy of equipment and the integrity of test data at exceptionally high levels. For more details, please contact us or refer to the catalog.

  • Other measuring instruments
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[Case Study] Upgrade of High-Temperature Material Testing Equipment

We support UCF in conducting mechanical tests in extreme environments.

The University of Central Florida (UCF) in Orlando has built a reputation for high-quality education and technological innovation since its establishment in 1963. In particular, the MMAE program at the university has established solid partnerships over the years with global manufacturers such as Siemens Power Generation, Lockheed Martin, Pratt & Whitney, and Mitsubishi Power System, as well as institutions like the Kennedy Space Center. UCF has set a policy to expand its high-temperature materials testing facilities and make this field a cornerstone of research at the university. To enhance mechanical testing capabilities at high temperatures, it was necessary to equip a variety of instruments and tools, including load frames, control systems, and software, and a testing solution partner with expertise in integrating advanced systems was required. MTS was chosen for this purpose. Upgrading the materials characterization testing facilities in MMAE has brought significant benefits not only to students in the College of Engineering and Computer Science but also to UCF's commercial partners. For more details, please contact us or refer to the catalog.

  • Other measuring instruments
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[Case Study] Introduction of Model 320 2-Poster Testing Equipment

It contributes to maintaining the top position of one of the world's largest scooter manufacturers.

The Piaggio Group, represented by the Vespa brand, is a world-class manufacturer of motorized bicycles (mopeds), scooters, and motorcycles based in Pontedera, Italy, with an annual production of over 600,000 vehicles. Piaggio's seven brands are supported by 6,700 employees in 50 countries and five research and development centers. In November 2008, Piaggio introduced the MTS Model 320 two-poster testing system in its mechanical lab in Pontedera in close collaboration with MTS. This two-axis tire contact surface input simulator uses MTS RPC software to accurately and repeatedly reproduce loads caused by road surface inputs across the entire prototype vehicle, simulating loads and moments equivalent to test courses that include rough road testing. This allows the testing personnel to simulate conditions that a typical rider encounters during everyday driving, enabling them to obtain clear data on how the vehicle will ultimately perform after years of use. For more details, please contact us or refer to the catalog.

  • Prime movers, torque converters, hydraulic equipment, generators
  • Other measuring instruments
  • Other analytical equipment

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[Case Study] Introduction of MTS Structural Fatigue Testing System

Providing major military aircraft manufacturers with the ability to quickly and safely dissipate energy from testing devices.

MTS provided support for incorporating the Active Load Abort (ALA) system into each test fixture used by Airbus Military for the Airbus A400M transport aircraft. The ALA technology is ideal for protecting test specimens, as it enhances control to remove loads from the structural testing system in the event of power outages or system interlocks. During such events, regardless of changes in pressure or the position of each shaker, the ALA system performs measurements and simultaneously reduces the loads of all shakers to a neutral state at both the software and hardware levels. Additionally, while lowering the hydraulic pressure on the specimen, an independent control system is activated in parallel with the load control system, taking into account the overall state of the test. This system detects faults on the control side and adjusts to ensure that loads are rapidly and evenly removed from the entire specimen. For more details, please contact us or refer to the catalog.

  • Other measuring instruments
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[Case Study] Introduction of MTS Bionix® Axial Torsion Testing System

We support the implementation of translational research.

MTS supports the implementation of translational research necessary to bridge the gap between histochemistry and OR at the Human Soft Tissue Research Laboratory. MTS assisted Mr. Obopilwe in integrating the Bionix® torsion testing system, which features the FlexTest® digital controller and Multipurpose TestWare® application software. "The Bionix system allows for the precise application of loads and motions across various multi-axes and numerous cycles," says Mr. Obopilwe. "This capability is extremely helpful in assessing how much torsion or axial force a joint can withstand before failure. It has been particularly useful in evaluating new orthopedic surgeries related to the knee and ankle. For more information, please contact us or refer to the catalog."

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