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.
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Fiber optic strain sensors are compact, high-precision devices that utilize the latest technology for strain measurement in high-temperature environments, unaffected by EMI/RFI, and capable of measuring in highly corrosive environments. They are set to lead the future of strain measurement. Over a wide temperature range, residual strain is typically controlled to just 0.5μ_/°C or less, 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 based 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 details, please inquire through document requests or downloads.
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Applications/Examples of results
●Research and development of new materials ●Civil engineering industry (bridges, dams, etc.) ●Tunnel structures ●Nuclear power plants ●Construction industry (buildings, etc.) ●Measurement in highly corrosive environments ●High EMI/RFI environments ●Measurement of thermal strain, CTE (coefficient of thermal expansion), and thermal deformation
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