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Strain Sensors Product List and Ranking from 10 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.

Strain Sensors 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. ユニテック・ジャパン Osaka//Service Industry
  2. シミウス (cmiws) Kyoto//Testing, Analysis and Measurement
  3. 日本ダイニスコ Kanagawa//Testing, Analysis and Measurement
  4. 4 レーザー計測 Tokyo//Testing, Analysis and Measurement
  5. 5 トルーソルテック Saitama//Testing, Analysis and Measurement

Strain Sensors 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. Simultaneously measure four strains! Wireless magnetic tie bar strain sensor. ユニテック・ジャパン
  2. Light Distortion Sensor OS3100 Series (Non-flammable, Explosion-proof) シミウス (cmiws)
  3. Tie bar type clamping strain sensor (magnetic type) 日本ダイニスコ
  4. 4 Fiber Optic Strain Sensor "Bridge Monitoring Technology" レーザー計測
  5. 4 Piezoelectric strain sensor トルーソルテック

Strain Sensors Product List

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Fiber optic strain sensor

Fiber optic strain sensor that suppresses residual strain over a wide temperature range.

Fiber optic strain sensors are compact, high-precision devices designed for high-temperature strain measurement. They are unaffected by EMI/RFI interference and can operate in highly corrosive environments, representing the latest technology in strain measurement. They can control residual strain to typically below 0.5μ_/°C over a wide temperature range, enabling strain measurement even in thermal environments that are challenging for conventional sensors. All fiber optic sensors (temperature, displacement, pressure, strain, load) can be used in combination, offering cost advantages and convenience. We provide a variety of rich conditioners depending on static and dynamic measurements and the number of channels, accommodating various applications. ● Immune to EMI/RFI/lightning effects ● Explosion-proof ● Static and dynamic response ● Resolution of 0.01% of full scale ● Long-distance transmission ● No issues from fiber bending *For more details, please inquire through document requests or downloads.

  • Other optical parts
  • Sensors

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Fiber Optic Strain Sensor "Bridge Monitoring Technology"

Introducing the monitoring technology of sensors that will carry the future of strain measurement.

Fiber optic strain sensors are compact, high-precision devices capable of measuring strain in high-temperature environments. They are designed to be unaffected by EMI/RFI and can operate in highly corrosive environments, utilizing the latest technology. The measurement of strain using fiber optic sensors is particularly suitable for reinforcement systems in composite materials and concrete structures. The fiber optic strain gauge has a diameter of 0.3 mm and behaves similarly to the FRP (fiber-reinforced polymer) used for reinforcement. Since the main material is the same as FOS-B, it can be easily installed between composite sheets. Tests were conducted at a research facility by bonding FOS-B to a concrete cylinder, which demonstrated that monitoring strain in concrete is possible using this sensor. 【Features】 - Capable of measuring the strain state applied to concrete - Supplied for reinforcement projects on elevated highways in Singapore, among others *For more details, please refer to the catalog or feel free to contact us.

  • Other measurement and measuring equipment
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Fiber Optic Strain Sensor 'Regarding Bridge Instrumentation'

Application note on bridge instrumentation due to environmental changes and heavy loads during vehicle passage.

Fiber optic strain sensors are compact, high-precision devices capable of measuring strain in high-temperature environments. They are designed to be unaffected by EMI/RFI interference and can operate in highly corrosive environments, utilizing the latest technology. The Joffre Bridge in Seabrook was reconstructed in 1997 to demonstrate the feasibility of remote monitoring using fiber optic sensors, reinforcement of the bridge with FRP, and the use of fiber optic sensors. As a result, the deflection of the bridge's superstructure and the response to FP reinforcement fell within acceptable limits, and the bridge's condition is now being monitored over an extended period using a system capable of collecting data from 32 channels of fiber sensors. This application example has proven that Fabry-Perot fiber optic sensors are suitable for both short-term and long-term monitoring of bridge conditions. 【Features】 - Measurement of environmental changes and behavior due to heavy loads from vehicle traffic on FRP-reinforced bridges - Proven suitability for monitoring bridge conditions - Currently active in various fields, etc. *For more details, please refer to the catalog or feel free to contact us.

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[Data] "Behavior of Electrode Pressure in the Resistance Welding Process of Aluminum Alloys"

Achieve stabilization of weld quality through the measurement of electrode pressure, application note available!

This document presents a method for measuring electrode pressure using a piezoelectric strain sensor in resistance spot welding of aluminum alloys. To maintain stable quality in resistance welded joints, it is necessary to manage welding current, duration of current flow, and electrode pressure during the welding process; however, there are not many cases where electrode pressure is managed in-process. The method presented in this document enables the measurement of electrode pressure during current flow. If you are looking for tips to improve the efficiency of the resistance welding process, please take a look. 【Key Points】 ◎ Measure electrode pressure "during current flow," which is typically measured between processes. ◎ Introduces actual examples of measuring the behavior of electrode pressure during current flow. ◎ Suggests the possibility of detecting the occurrence of spatter. *For more details, please refer to the PDF document or feel free to contact us through our website.

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Piezoelectric strain sensor

A bolt-fixed type strain sensor utilizing the piezoelectric effect of ceramics!

The "piezoelectric strain sensor" is a strain sensor that uses ceramics with piezoelectric properties to measure changes in dynamic and quasi-static surface strain of structural members. By performing calibration in advance, it is also possible to measure the load applied to the structural member from the obtained strain values. The measurement element uses piezoelectric ceramics that are significantly more sensitive than quartz, allowing it to capture very small strains (loads). *For more details, please refer to the PDF materials or feel free to contact us through our company website.

  • Other weight measuring instruments
  • Sensors
  • others

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Strain sensor for fixed plates (magnetic type, stethoscope type)

Strain measurement on flat surfaces such as a fixed plate (platen).

It is possible to measure the distortion of the tie bar fixed plate (platen) that occurs during clamping in injection molding machines, die casting machines, and presses. The sensor uses a magnet-fixed type, making it easy to install with the included detachable tool, so no additional processing of the installation surface is required.

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Simultaneously measure four strains! Wireless magnetic tie bar strain sensor.

Wireless communication-based tie bar measurement system for simultaneous strain measurement on four tie bars used in presses, injection molding, and die casting machines.

This sensor utilizes a strain gauge and directly measures the surface at the installation position through attachment with magnets. It does not require steel bands or other mounting aids for installation, allowing for very quick and easy setup. With the built-in wireless module, it can communicate wirelessly on its own, making it a state-of-the-art sensor with excellent functionality and ease of use. Its main applications include maintenance and research and development for injection molding machines. ■ Main Features - Easy installation with magnets, achieving setup in just a few seconds - Displays strain values in με and clamping force in kN or t - Simultaneous strain measurement and clamping force measurement with up to four tie bars - Wireless transmission and reception (Bluetooth 5.0: 2.4GHz) eliminates the need for cables - Usable on flat surfaces or tie bars with a diameter of 45 mm or more - Rechargeable built-in battery with a maximum operating time of 12 hours - Also equipped with measurement software for iOS and Android mobile devices.

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Optical Distortion Sensor Non-Metal Type os3200

Adopting the implementation method according to the instructions. Implementation takes only a few minutes! Curing time is 24 hours at room temperature. Measurement can begin immediately after confirming curing!

The "os3200" is adopted for the health condition monitoring of wind turbine blades at the National Institutes of Health in the United States. It employs an adhesive implementation method designed to protect the FBG during adhesive injection and bonds to the surface of the measurement object. The time required for implementation is just a few minutes, and the curing time is 24 hours at room temperature. Measurement can begin immediately after confirming the curing. Sensors can be implemented in series on a single fiber, and the very simple wiring process makes it easy to prevent incorrect connections during implementation. Additionally, by implementing at angles of 0, 45, and 90 degrees, measurements equivalent to a rosette gauge can also be achieved. For more details, please download the catalog or contact us.

  • Sensors
  • Sensors
  • Other environmental analysis equipment

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Flexible strain sensor

Manufactured using a coating process at low cost! Ultra-thin, flexible film-type strain sensor.

Our "Flexible Strain Sensor" utilizes organic semiconductor single crystal films. This product takes advantage of the fact that organic semiconductor single crystals respond to strain. Additionally, it has high sensitivity, does not break under large strains, and is easy to attach to curved surfaces. 【Features】 ■ Gauge factor of around 20, providing high sensitivity ■ Ultra-thin and flexible film form ■ High resistance and low power consumption ■ Capable of multi-point measurement ■ Manufactured through a coating process, making it cost-effective *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Juuten Mieruka Sensor Specifications and Application Examples

Customization available! Information on ultra-thin pinpoint sensors and sensor application examples.

This document introduces the sensor specifications and application examples of the concrete filling and compaction management system "Juutenmieruka." It includes the "sheet-type sensor specifications" as well as images showing "the installation of pinpoint sensors onto a pinpoint sensor hub," which can be applied to various concrete structures. We have presented the information clearly using images and diagrams, so please take a moment to read through it. [Contents] ■ Sheet-type sensor specifications ■ Ultra-thin pinpoint sensors ■ Sensor application examples *For more details, please refer to the PDF document or feel free to contact us.

  • Other inspection equipment and devices
  • Level gauges and level switches
  • Recorders

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Fiber Optic Strain Sensor "Strain Monitoring for Die Casting"

Application Note for Optical Fiber Strain Sensors Ideal for Measuring Metal Deformation

Fiber optic strain sensors are compact, high-precision devices that can measure strain in high-temperature environments and are unaffected by EMI/RFI, making them suitable for measurements in highly corrosive environments. These sensors are used in the monitoring of manufacturing processes employing the "die-casting method" for the production of metal components. Due to their accuracy and high precision, they are ideal for measuring metal strain and are designed to be used in harsh environments, such as metal casting, where they are not affected by EMI. Manufacturers in the United States, among others, are currently implementing FISO's fiber optic strain sensors to successfully reduce costs by monitoring the clamping force of machines during casting. 【Main Equipment Used】 ■FOS: Fiber Optic Strain Gauge ■UMI-4: Signal Conditioner *For more details, please refer to the catalog or feel free to contact us.

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Fiber optic strain sensor (high spatial resolution type)

Fiber optic strain sensor (high spatial resolution type)

【Features】 ● Continuous distribution measurement of strain is possible with a pitch of less than 1mm !! (Values equivalent to hundreds of 1mm strain gauges can be derived from a single fiber) ● Excellent water resistance, explosion-proof properties, and heat resistance, allowing for long-term absolute strain measurement (without drift)

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Tie bar type clamping strain sensor (magnetic type)

It is possible to measure the amount of distortion (elongation) of the tie bar that occurs during the clamping of the molding machine!

The sensor unit is fixed using a magnetic system, eliminating the need for additional processing on the tie bar, and it does not require a specific tie bar diameter. It is suitable for measurement applications such as measuring clamping force or adjusting the balance of the tie bar as needed.

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Strain sensor for tie bars (band type)

For measuring clamping force in die casting and injection molding machines!!

The GE-1029 series Tiebar Strain Sensor can be directly installed on tie bars of injection molding machines, die casting machines, and presses to measure the strain (elongation) of the tie bars that occurs during clamping.

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  • Analytical Equipment and Devices

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