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Fiber Optic Measurement Systems ¢¹ Fiber Optic Measurement Systems
Fiber Optic Measurement Systems
  ¸ðµ¨¸í : MTI-2100 FOTONIC
  ¿ø»êÁö : ¹Ì±¹
  Á¦Á¶»ç : MTI INSTRUMENT INC
  °¡   °Ý : ¹®ÀÇ(031-753-9550)
  ºÐ·ù¸í : Fiber Optic Measurement Systems
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Fiber Optic Measurement Systems

MTI-2100 FOTONIC

The MTI-2100 features advanced fiber-optic and electronic technologies for precise measurements of displacement, position and vibration. It sets new performance standards with resolution up to 0.01 uin. (2.5 Angstroms) and frequency response from direct-coupled (dc) up to 500 kHz. The MTI-2100's modular design has the flexibility to be tailored to specific requirements through the use of a wide range of interchangeable and custom fiber-optic probes. These probes are immune to electromagnetic interference (EMI) and operate on almost any type of surface: metallic, composite, plastic, glass, ceramic or liquid.

 

 

  • Dual-channel capability permits simultaneous measurements of amplitude and phase.
  • Selectable metric or English units.
  • Reflective compensated units available to automatically adjust to target reflectivity changes.
  • Digital display readout in engineering units eliminates the need to convert volts to displacement.
  • Out-of-range indicator notifies the user if the target moves out of the linear range.
  • Interchangeable probe modules allow the user to select from seven standard fiber-optic probe designs, providing 14 different standard measurement ranges and resolutions.
  • High-resolution module resolves to 0.1 µin. standard or 0.01 µin. (2.5A¡Æ) optional. With external filtering, 0.004-µin. (0.1nm) resolution is possible.
  • Standard 0-to-10 V dc analog real-time output is compatible with most signal conditioning equipment.
  • RS-232 output for computer interfacing.
  • Fiber-optic Edge Position Sensing

 

 

  • Modal Analysis
  • Ultrasonic Horn Vibration
  • Displacement
  • Position Sensing
  • Fatigue Testing
  • Surface Flaw Detection
  • Edge Detection
  • Piezo Motion
  • Bearing Analysis