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LunaModel ODiSI 7100 Series -Optical Distributed Sensor Interrogators

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The ODiSI 7100 Series is a groundbreaking measurement system designed to overcome the testing challenges presented by advanced materials and systems of the 21st century. This system offers the ability to take thousands of strain or temperature measurements per meter using a single high-definition fiber sensor, providing unparalleled spatial resolution and precision. The sensor's flexible, low-profile design requires no electrical source, making it suitable for bonding to sharply curved surfaces or embedding within structures. By capturing high-resolution strain and temperature data in real-time, the ODiSI system provides insights not achievable with conventional point sensors or other fiber optic technologies, supporting measurement and control applications in demanding environments. The system is ideal for applications such as structural health monitoring, process control, and high-definition distributed sensing, offering unprecedented visibility into components or processes.

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The ODiSI 7100 Series is an innovative measurement system specifically designed to address the test challenges of 21st century advanced materials and systems.

The ODiSI 7100 Series provides thousands of strain or temperature measurements per meter of a single high-definition fiber sensor. The ultra-high resolution data can fully map the contour of strain for a structure under test or the continuous temperature profile of a process in real time.

The sensor is flexible, low profile, requires no electrical source and can be bonded to sharply curved surfaces, embedded within structures or mounted directly to electrical surfaces.

The ODiSI system captures strain and temperature data with unmatched spatial resolution and precision, delivering valuable benefits for measurement and control applications:

  • Capture details not available with conventional point sensors or other fiber optic sensing technologies
  • Real-time data from demanding environments and difficult-to-instrument locations
  • High-definition distributed sensing — thousands of measurements with submillimeter gage pitch
  • Real-time multichannel system with each channel supporting up to 100 m of high-def sensing fiber
  • Flexible, lightweight and easy-to-install sensors reduce time to first measurement
  • Passive, corrosion resistant, dielectric sensors go where other sensors can’t — in bends, corners, embedded inside materials
  • Long sensor life — no drift or recalibration, cycle counts
  • Characterize strain in new materials and complex structures
  • Profile temperature in-situ to maximize the efficiency of critical processes
  • Measure two- and three- dimensional strain fields to validate FE models
  • Evaluate multi-material joining
  • Detect small cracks and defects in critical structures
  • Embed sensors within materials to create thousands of strain or temperature “smart parts”