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Fiber Optic Sensors Global Market Forecast & Analysis 2022-2032

  • Report

  • 756 Pages
  • March 2023
  • Region: Global
  • ElectroniCast
  • ID: 5116535

A leading market/technology forecast consultancy announced the release of their market forecast and analysis of the global consumption of Fiber Optic Sensors. The market forecast data is presented and segmented in two main sections:

  • Fiber Optic Point (Local) Sensor: Complete Unit
  • Distributed Fiber Optic Sensor (Continuous and Quasi): System Channel Line

Fiber Optic Point Sensor - Global Market Forecast

During the 2022-2032 timeline, the analyst is forecasting that the consumption (use) value will increase from $1.297 billion to $2.045 billion. (Each Point sensor is counted as one complete component unit, which may also include interconnect devices and immediate enclosure or casing).

Compared with other types of sensors, fiber-optic sensors exhibit a number of advantages:

  • They consist of electrically insulating materials (no electric cables are required), which makes possible their use in high-voltage environments.
  • They can be safely used in explosive environments, because there is no risk of electrical sparks, even in the case of defects.
  • They are immune to electromagnetic interference (EMI), even to nearby lightning strikes, and do not themselves electrically disturb other devices.
  • Their materials can be chemically passive; therefore, do not contaminate their surroundings and are not subject to corrosion.
  • They have a very wide operating temperature range (much wider than is possible for many electronic devices).
  • They have multiplexing capabilities: multiple sensors in a single fiber line can be interrogated with a single optical source.

Distributed Fiber Optic Sensor System - Global Market Forecast

According to the study, during the 10-year timeline, the worldwide consumption value of the combined use of Continuous- and Quasi-continuous Distributed fiber optics sensor system channel lines is forecasted to increase from $5.109 billion in 2022 to $11.369 billion in 2032. Market forecast data in this study report refers to consumption (use) for a particular calendar year; therefore, this data is not cumulative data.

Types of Distributed Fiber Optic System Lines qualified in this market study:

  • Continuous Distributed sensing (optical fiber line used in a system) provides continuous, real-time measurements along the entire length of a fiber optic cable; continuous distributed sensing does not rely upon manufactured sensors but utilizes the optical fiber. The Continuous Distributed sensing links are segmented by the following technology types: Interferometric; Raman scattering (Raman effect); Brillouin Scattering.
  • Quasi-continuous Distributed sensing (optical fiber line used in a system) utilizes Fiber Bragg Gratings (FBGs), which have been employed as sensing elements where dense (closely-spaced) sensing points are required, and the FBGs are multiplexed with various methods.

Table of Contents


1. Executive Summary - Overview
2. Point Fiber Optic Sensor Measurand and Application Market Forecast
2.1 Overview
2.2 Point Fiber Optics Sensors Market Forecast: Strain
2.3 Point Fiber Optics Sensors Market Forecast: Temperature
2.4 Point Fiber Optics Sensors Market Forecast: Pressure
2.5 Point Fiber Optics Sensors Market Forecast: Chemical, Gas and Liquid
2.6 Point Fiber Optics Sensors Market Forecast: Vibration, Acoustic and Seismic
2.7 Point Fiber Optics Sensors Market Forecast: Displacement, Acceleration and Proximity
2.8 Point Fiber Optics Sensors Market Forecast: Electric and Magnetic Field
2.9 Point Fiber Optics Sensors Market Forecast: Rotation (includes FOGs)

3. Distributed Fiber Optic Sensor System Channel Lines Market Forecast
3.1 Overview
3.2 Distributed Fiber Optic Sensor Channel Lines: Manufacturing/Factory Market Forecast
3.3 Distributed Fiber Optic Sensor Channel Lines: Civil Engineering/Construction Forecast
3.4 Distributed Fiber Optic Sensor Channel Lines: Military/Aerospace/Security Forecast
3.5 Distributed Fiber Optic Sensor Channel Lines: Petrochemical/Energy/Utilities Forecast
3.6 Distributed Fiber Optic Sensor Channel Lines: Biomedical/Science Forecast

4. Fiber Optic Sensor Technology
4.1 Overview
4.2 Interferometric Fiber Optic Sensors
4.3 Intensity Fiber Optic Sensors
4.4 Polarization Fiber Optic Sensors
4.5 Fiber Bragg Grating (FBG) Fiber Optic Sensors
4.6 Raman Scattering Fiber Optic Sensors
4.7 Fluorescence Fiber Optic Sensors
4.8 Brillouin Scattering Fiber Optic Sensors
4.9 Doppler Anemometry
4.10 Spectroscopy
4.11 Waveguides Fiber Optic Sensors
4.12 Optrode

5. Competitive Market Share Estimates (Year 2022) and List of Selected Vendors
5.1 Overview
5.2 List of Fiber Optic Sensor and Related Companies; with Internet address
5.3 List and Mechanical Quantities Matrix of FO Sensor & Related Companies (216 Total)

6. Research Methodology7. Market Forecast and Analysis Database Introduction/Explanation of Excel File
List of Tables
1.1 Point Fiber Sensor Global Forecast, By Region (Value Basis, $Million)
1.2 Point Fiber Sensor Global Forecast, By Application (Value $Million)
1.3 Point Fiber Sensor Global Forecast, By Measure and Function Type (Value $Million)
1.4 Distributed Fiber Sensor System Lines Global Forecast, (Regional Value Basis, $Million)
1.5 Distributed Fiber Sensor System Lines Global Forecast, By Application (Value $Million)
1.6 Distributed Fiber Sensor System Lines Global Forecast, Measurand Function ($Million)
2.1.1 Point Fiber Optic Sensor Global Forecast, By Application ($Million)
2.1.2 Point Fiber Optic Sensor Global Forecast, By Application (Quantity)
2.1.3 Point Fiber Optic Sensor Global Forecast, By Application (Avg. Selling Price)
2.1.4 Point Fiber Optic Sensor America Forecast, By Application ($Million)
2.1.5 Point Fiber Optic Sensor America Forecast, By Application (Quantity)
2.1.6 Point Fiber Optic Sensor America Forecast, By Application (Avg. Selling Price)
2.1.7 Point Fiber Optic Sensor EMEA Forecast, By Application ($Million)
2.1.8 Point Fiber Optic Sensor EMEA Forecast, By Application (Quantity)
2.1.9 Point Fiber Optic Sensor EMEA Forecast, By Application (Avg. Selling Price)
2.1.10 Point Fiber Optic Sensor APAC Forecast, By Application ($Million)
2.1.11 Point Fiber Optic Sensor APAC Forecast, By Application (Quantity)
2.1.12 Point Fiber Optic Sensor APAC Forecast, By Application (Avg. Selling Price)
2.2.1 Point Fiber Optic Strain Sensor Global Forecast, By Application ($Million)
2.2.2 Point Fiber Optic Strain Sensor Global Forecast, By Application (Quantity)
2.2.3 Point Fiber Optic Strain Sensor Global Forecast, By Application (Avg. Selling Price)
2.2.4 Point Fiber Optic Strain Sensor America Forecast, By Application ($Million)
2.2.5 Point Fiber Optic Strain Sensor America Forecast, By Application (Quantity)
2.2.6 Point Fiber Optic Strain Sensor America Forecast, By Application (Avg. Selling Price)
2.2.7 Point Fiber Optic Strain Sensor EMEA Forecast, By Application ($Million)
2.2.8 Point Fiber Optic Strain Sensor EMEA Forecast, By Application (Quantity)
2.2.9 Point Fiber Optic Strain Sensor EMEA Forecast, By Application (Avg. Selling Price)
2.2.10 Point Fiber Optic Strain Sensor APAC Forecast, By Application ($Million)
2.2.11 Point Fiber Optic Strain Sensor APAC Forecast, By Application (Quantity)
2.2.12 Point Fiber Optic Strain Sensor APAC Forecast, By Application (Avg. Selling Price/ASP)
2.3.1 Point Fiber Optic Temperature Sensor Global Forecast, By Application ($Million)
2.3.2 Point Fiber Optic Temperature Sensor Global Forecast, By Application (Quantity)
2.3.3 Point Fiber Optic Temperature Sensor Global Forecast, By Application (ASP)
2.3.4 Point Fiber Optic Temperature Sensor America Forecast, By Application ($Million)
2.3.5 Point Fiber Optic Temperature Sensor America Forecast, By Application (Quantity)
2.3.6 Point Fiber Optic Temperature Sensor America Forecast, By Application (ASP)
2.3.7 Point Fiber Optic Temperature Sensor EMEA Forecast, By Application ($Million)
2.3.8 Point Fiber Optic Temperature Sensor EMEA Forecast, By Application (Quantity)
2.3.9 Point Fiber Optic Temperature Sensor EMEA Forecast, By Application (ASP)
2.3.10 Point Fiber Optic Temperature Sensor APAC Forecast, By Application ($Million)
2.3.11 Point Fiber Optic Temperature Sensor APAC Forecast, By Application (Quantity)
2.3.12 Point Fiber Optic Temperature Sensor APAC Forecast, By Application (ASP)
2.4.1 Point Fiber Optic Pressure Sensor Global Forecast, By Application ($Million)
2.4.2 Point Fiber Optic Pressure Sensor Global Forecast, By Application (Quantity)
2.4.3 Point Fiber Optic Pressure Sensor Global Forecast, By Application (ASP)
2.4.4 Point Fiber Optic Pressure Sensor America Forecast, By Application ($Million)
2.4.5 Point Fiber Optic Pressure Sensor America Forecast, By Application (Quantity)
2.4.6 Point Fiber Optic Pressure Sensor America Forecast, By Application (ASP)
2.4.7 Point Fiber Optic Pressure Sensor EMEA Forecast, By Application ($Million)
2.4.8 Point Fiber Optic Pressure Sensor EMEA Forecast, By Application (Quantity)
2.4.9 Point Fiber Optic Pressure Sensor EMEA Forecast, By Application (ASP)
2.4.10 Point Fiber Optic Pressure Sensor APAC Forecast, By Application ($Million)
2.4.11 Point Fiber Optic Pressure Sensor APAC Forecast, By Application (Quantity)
2.4.12 Point Fiber Optic Pressure Sensor APAC Forecast, By Application (ASP)
2.5.1 Point Fiber Optic Chemical, Gas, Liquid Sensor Global Forecast, Application ($Million)
2.5.2 Point Fiber Optic Chemical, Gas, Liquid Sensor Global Forecast, Application (Quantity)
2.5.3 Point Fiber Optic Chemical, Gas, Liquid Sensor Global Forecast, Application (ASP)
2.5.4 Point Fiber Optic Chemical, Gas, Liquid Sensor America Forecast, Application ($Million)
2.5.5 Point Fiber Optic Chemical, Gas, Liquid Sensor America Forecast, Application (Quantity)
2.5.6 Point Fiber Optic Chemical, Gas, Liquid Sensor America Forecast, Application (ASP)
2.5.7 Point Fiber Optic Chemical, Gas, Liquid Sensor EMEA Forecast, Application ($Million)
2.5.8 Point Fiber Optic Chemical, Gas, Liquid Sensor EMEA Forecast, Application (Quantity)
2.5.9 Point Fiber Optic Chemical, Gas, Liquid Sensor EMEA Forecast, Application (ASP)
2.5.10 Point Fiber Optic Chemical, Gas, Liquid Sensor APAC Forecast, Application ($Million)
2.5.11 Point Fiber Optic Chemical, Gas, Liquid Sensor APAC Forecast, Application (Quantity)
2.5.12 Point Fiber Optic Chemical, Gas, Liquid Sensor APAC Forecast, Application (ASP)
2.6.1 Point Fiber Optic Vibration, Acoustic, Seismic Sensor Global Forecast, By App ($Million)
2.6.2 Point Fiber Optic Vibration, Acoustic, Seismic Sensor Global Forecast, By App (Quantity)
2.6.3 Point Fiber Optic Vibration, Acoustic, Seismic Sensor Global Forecast, By App (ASP)
2.6.4 Point Fiber Optic Vibration, Acoustic, Seismic Sensor America Forecast, App ($Million)
2.6.5 Point Fiber Optic Vibration, Acoustic, Seismic Sensor America Forecast, App (Quantity)
2.6.6 Point Fiber Optic Vibration, Acoustic, Seismic Sensor America Forecast, By App (ASP)
2.6.7 Point Fiber Optic Vibration, Acoustic, Seismic Sensor EMEA Forecast, By App ($Million)
2.6.8 Point Fiber Optic Vibration, Acoustic, Seismic Sensor EMEA Forecast, By App (Quantity)
2.6.9 Point Fiber Optic Vibration, Acoustic, Seismic Sensor EMEA Forecast, By App (ASP)
2.6.10 Point Fiber Optic Vibration, Acoustic, Seismic Sensor APAC Forecast, By App ($Million)
2.6.11 Point Fiber Optic Vibration, Acoustic, Seismic Sensor APAC Forecast, By App (Quantity)
2.6.12 Point Fiber Optic Vibration, Acoustic, Seismic Sensor APAC Forecast, By App (ASP)
2.7.1 Point Fiber Optic Displacement, Acceleration Proximity Sensor Global, By App ($Million)
2.7.2 Point Fiber Optic Displacement, Acceleration Proximity Sensor Global, By App (Quantity)
2.7.3 Point Fiber Optic Displacement, Acceleration Proximity Sensor Global, By App (ASP)
2.7.4 Point Fiber Optic Displacement, Acceleration Proximity Sensor America, App ($Million)
2.7.5 Point Fiber Optic Displacement, Acceleration Proximity Sensor America App (Quantity)
2.7.6 Point Fiber Optic Displacement, Acceleration Proximity Sensor America, By App (ASP)
2.7.7 Point Fiber Optic Displacement, Acceleration Proximity Sensor EMEA, By App ($Million)
2.7.8 Point Fiber Optic Displacement, Acceleration Proximity Sensor EMEA By App (Quantity)
2.7.9 Point Fiber Optic Displacement, Acceleration Proximity Sensor EMEA, By App (ASP)
2.7.10 Point Fiber Optic Displacement, Acceleration Proximity Sensor APAC By App ($Million)
2.7.11 Point Fiber Optic Displacement, Acceleration Proximity Sensor APAC, By App (Quantity)
2.7.12 Point Fiber Optic Displacement, Acceleration Proximity Sensor APAC, By App (ASP)
2.8.1 Point Fiber Optic Electric & Magnetic Field Sensor Global, By Application ($Million)
2.8.2 Point Fiber Optic Electric & Magnetic Field Sensor Global, By Application (Quantity)
2.8.3 Point Fiber Optic Electric & Magnetic Field Sensor Global, By Application (ASP)
2.8.4 Point Fiber Optic Electric & Magnetic Field Sensor America, By Application ($Million)
2.8.5 Point Fiber Optic Electric & Magnetic Field Sensor America, By Application (Quantity)
2.8.6 Point Fiber Optic Electric & Magnetic Field Sensor America, By Application (ASP)
2.8.7 Point Fiber Optic Electric & Magnetic Field Sensor EMEA, By Application ($Million)
2.8.8 Point Fiber Optic Electric & Magnetic Field Sensor EMEA, By Application (Quantity)
2.8.9 Point Fiber Optic Electric & Magnetic Field Sensor EMEA, By Application (ASP)
2.8.10 Point Fiber Optic Electric & Magnetic Field Sensor APAC, By Application ($Million)
2.8.11 Point Fiber Optic Electric & Magnetic Field Sensor APAC, By Application (Quantity)
2.8.12 Point Fiber Optic Electric & Magnetic Field Sensor APAC, By Application (ASP)
2.9.1 Point Fiber Optic Rotation/FOGs Sensor Global Forecast, By Region ($Million)
2.9.2 Point Fiber Optic Rotation/FOGs Sensor Global Forecast, By Region (Quantity)
2.9.3 Point Fiber Optic Rotation/FOGs Sensor Global Forecast, By Region (Avg. Selling Price)
3.1.1 Distributed Fiber Sensor System Channel Lines Global Forecast, By Application ($Million)
3.1.2 Distributed Fiber Sensor System Channel Lines Global Forecast, By Application (QTY)
3.1.3 Distributed FO Sensor System Lines - Global Forecast, By Measurand Function ($Million)
3.1.4 Distributed FO Sensor System Lines - Global Forecast, By Measurand Function (QTY)
3.1.5 Distributed Fiber Sensor System Channel Lines Global Forecast, By Region ($Million)
3.2.1 Distributed FO Sensors-Manufacturing/Factory, By Technology, Global Forecast ($M)
3.2.2 Distributed FO Sensors-Manufacturing/Factory, By Technology, Global Forecast (QTY)
3.2.3 Distributed FO Sensors-Manufacturing/Factory, By Technology, Global Forecast (ASP)
3.2.4 Distributed FO Sensors-Manufacturing/Factory, By Technology, America Forecast ($M)
3.2.5 Distributed FO Sensors-Manufacturing/Factory, By Technology, America Forecast (QTY)
3.2.6 Distributed FO Sensors-Manufacturing/Factory, By Technology, America Forecast (ASP)
3.2.7 Distributed FO Sensors-Manufacturing/Factory, By Technology, EMEA Forecast ($M)
3.2.8 Distributed FO Sensors-Manufacturing/Factory, By Technology, EMEA Forecast (QTY)
3.2.9 Distributed FO Sensors-Manufacturing/Factory, By Technology, EMEA Forecast (ASP)
3.2.10 Distributed FO Sensors-Manufacturing/Factory, By Technology, APAC Forecast ($M)
3.2.11 Distributed FO Sensors-Manufacturing/Factory, By Technology, APAC Forecast (QTY)
3.2.12 Distributed FO Sensors-Manufacturing/Factory, By Technology, APAC Forecast (ASP)
3.3.1 Distributed FO Sensors-Engineering/Construction, By Technology, Global Forecast ($M)
3.3.2 Distributed FO Sensors-Engineering/Construction, By Technology, Global Forecast (QTY)
3.3.3 Distributed FO Sensors-Engineering/Construction, By Technology, Global Forecast (ASP)
3.3.4 Distributed FO Sensors-Engineering/Construction, By Tech., America Forecast ($M)
3.3.5 Distributed FO Sensors-Engineering/Construction, By Tech., America Forecast (QTY)
3.3.6 Distributed FO Sensors-Engineering/Construction, By Tech., America Forecast (ASP)
3.3.7 Distributed FO Sensors-Engineering/Construction, By Technology, EMEA Forecast ($M)
3.3.8 Distributed FO Sensors-Engineering/Construction, By Technology, EMEA Forecast (QTY)
3.3.9 Distributed FO Sensors-Engineering/Construction, By Technology, EMEA Forecast (ASP)
3.3.10 Distributed FO Sensors-Engineering/Construction, By Technology, APAC Forecast ($M)
3.3.11 Distributed FO Sensors-Engineering/Construction, By Technology, APAC Forecast (QTY)
3.3.12 Distributed FO Sensors-Engineering/Construction, By Technology, APAC Forecast (ASP)
3.4.1 Distributed FO Sensors-Military/Aerospace, Security, By Tech., Global Forecast ($M)
3.4.2 Distributed FO Sensors-Military/Aerospace, Security, By Tech., Global Forecast (QTY)
3.4.3 Distributed FO Sensors-Military/Aerospace, Security, By Tech., Global Forecast (ASP)
3.4.4 Distributed FO Sensors-Military/Aerospace, Security, By Tech., America Forecast ($M)
3.4.5 Distributed FO Sensors-Military/Aerospace, Security, By Tech., America Forecast (QTY)
3.4.6 Distributed FO Sensors-Military/Aerospace, Security, By Tech., America Forecast (ASP)
3.4.7 Distributed FO Sensors-Military/Aerospace, Security, By Tech., EMEA Forecast ($M)
3.4.8 Distributed FO Sensors-Military/Aerospace, Security, By Tech., EMEA Forecast (QTY)
3.4.9 Distributed FO Sensors-Military/Aerospace, Security, By Tech., EMEA Forecast (ASP)
3.4.10 Distributed FO Sensors-Military/Aerospace, Security, By Tech., APAC Forecast ($M)
3.4.11 Distributed FO Sensors-Military/Aerospace, Security, By Tech., APAC Forecast (QTY)
3.4.12 Distributed FO Sensors-Military/Aerospace, Security, By Tech., APAC Forecast (ASP)
3.5.1 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., Global Forecast ($M)
3.5.2 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., Global Forecast (QTY)
3.5.3 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., Global Forecast (ASP)
3.5.4 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., America Forecast ($M)
3.5.5 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., America Forecast (QTY)
3.5.6 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., America Forecast (ASP)
3.5.7 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., EMEA Forecast ($M)
3.5.8 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., EMEA Forecast (QTY)
3.5.9 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., EMEA Forecast (ASP)
3.5.10 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., APAC Forecast ($M)
3.5.11 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., APAC Forecast (QTY)
3.5.12 Dist. FO Sensors-Petro/Energy/Natural Res/Utilities, By Tech., APAC Forecast (ASP)
3.6.1 Wearable Fiber Optic Technology Applications in Healthcare Monitoring
3.6.2 Distributed FO Sensors in Bio-Medical/Science, By Tech., Global Forecast ($Million)
3.6.3 Distributed FO Sensors in Bio-Medical/Science, By Tech., Global Forecast (QTY)
3.6.4 Distributed FO Sensors in Bio-Medical/Science, By Tech., Global Forecast (ASP)
3.6.5 Distributed FO Sensors in Bio-Medical/Science, By Tech., America Forecast ($M)
3.6.6 Distributed FO Sensors in Bio-Medical/Science, By Tech., America Forecast (QTY)
3.6.7 Distributed FO Sensors in Bio-Medical/Science, By Tech., America Forecast (ASP)
3.6.8 Distributed FO Sensors in Bio-Medical/Science, By Tech., EMEA Forecast ($M)
3.6.9 Distributed FO Sensors in Bio-Medical/Science, By Tech., EMEA Forecast (QTY)
3.6.10 Distributed FO Sensors in Bio-Medical/Science, By Tech., EMEA Forecast (ASP)
3.6.11 Distributed FO Sensors in Bio-Medical/Science, By Tech., APAC Forecast ($M)
3.6.12 Distributed FO Sensors in Bio-Medical/Science, By Tech., APAC Forecast (QTY)
3.6.13 Distributed FO Sensors in Bio-Medical/Science, By Tech., APAC Forecast (ASP)
5.1.1 Market Share Estimates of Selected Leading Competitors - Fiber Optic Sensors (2022)
5.3 Fiber Optic Sensor Company / Mechanical Quantities Matrix (216 Companies / 9-pages)

List of Figures
1.1 Global Forecast, Fiber Optic Point Sensors ($Billion)
1.2 Global Forecast, Fiber Optic Distributed Sensor System Channel Lines ($Billion)
1.3 Global Forecast, Continuous vs. Quasi Distributed System Channel Lines ($Billion)
1.4 Fiber Bragg Grating Technology Illustration
1.5 Twisted Photonic Crystal Fiber
1.6 Fiber Optic Temperature Sensors in Electric Vehicle Temperature Testing
1.7 Schematic: Laser Ultrasonic Inspection System
1.8 Detection Fiber Optic Point Sensor - Complete Units
1.9 Fiber Optic Cable Installed Along Side of an Underground Pipeline
1.10 Embedded fiber optic monitoring and communication system on pipe
1.11 Underground Metro Tunnel
1.12 Offshore Wind Farm with Turbines
1.13 Application Examples of Fiber Optic Sensors in Spacecraft
1.14 Roadway Fiber Optic Cable Monitoring System - Architecture
1.15 Roadway Fiber Optic Cable Monitoring System - Application Examples
1.16 Fiber Optic Sensors (FOS): Operating Principles, type of Measurands and Applications
2.2.1 Expanded View of an FBG
2.2.2 PM Photonic Crystal Fiber
2.2.3 Single-mode Photonic Crystal Fiber
2.2.4 Embedded Multi-Parameter Fiber Optic Sensor
2.2.5 Fiber Optic Strain Sensor
2.2.6 Strain Gage
2.2.7 Strain Sensor Installed
2.2.8 Smart Rod Used to Install FBG Sensors on Concrete Structures
2.2.9 Assorted Single-Type Fiber Optic Strain Sensors
2.2.10 Optical Displacement Sensor for Linear Variation of Position
2.2.11 Optical Strain Gage; Qualified for Harsh Environments
2.2.12 Optical Strain Gage; Qualified for Harsh Environments
2.2.13 Non-Metallic Optical, Epoxy-Mounted Strain Gage
2.3.1 Fabry-Perot Fiber-Optic Temperature-Sensor
2.3.2 One Circuit Board Holding Four (4) Fiber Optic Temperature Sensing Channels
2.3.3 Digital, Two-Color Infrared Thermometers, 700 to 3000°C (Fiber Optic Non-Contact)
2.3.4 White Light Polarization Interferometry (WLPI) Technology
2.3.5 Fiber Optic Cable with Temperature Sensor
2.3.6 Examples: Material Used in Fiber Optic Point Sensor Packaging
2.3.7 Flat Flame Burner
2.3.8 Prototype Photonic Thermometer with Optical Fiber
2.3.9 Assorted Temperature Fiber Optic Sensors
2.3.10 FBG Temperature Sensor, Reinforced Plastic Cover, Stainless-Steel Sheath
2.4.1 Experimental Pressure Measurement System
2.4.2 Pre-Clinical Transducer with Fiber Coating
2.4.3 Sealed-Gauge Fiber Optic Pressure Sensors
2.4.4 Pressure Fiber Optic Sensor Used in Automotive/Vehicle
2.4.5 Sensors: Single Helix and Double Helix
2.4.6 FBG Pressure Sensor
2.4.7 High Pressure/High Temperature Fiber Optic Pressure Gauge
2.4.8 Piezometer Fiber Optic Pressure Sensor for Harsh Environments
2.5.1 Ultra-Violet Optical Screening Tool system deployed with the CPT
2.5.2 Fiber Optic Sensor would be implanted through the skin
2.5.3 Optical Fibers Bundled with a Capillary Tube
2.5.4 Glucose Sensor Embedded in an Aqueous Hydrogel
2.5.5 Fiber Sensor (sensing range of the thin reflective type fiber)
2.5.6 Fiber Optic Gas Sensor Applications
2.6.1 Vibration optical fiber sensors classification
2.6.2 Fabry-Perot Cavity - Optical Fiber Sensing Probe
2.6.3 Fiber-Optic Acoustic Sensors (FOAS)
2.6.4 The world’s first fiber optic partial discharge monitoring system
2.7.1 Non-Contact Displacement-, Vibration- Fiber Optic Sensors
2.7.2 Fiber-optic Vibration & Displacement Sensor
2.7.3 Optical Extender for Fiber Optic Sensor
2.7.4 Optical Displacement Measurement (OBDI)
2.7.5 Fiber Optic Position Sensor
2.7.6 Fabry Perot Accelerometer
2.7.7 Fiber Optic Sensor-based Microsurgical Tool
2.7.8 Sensor Head for Interferometer, which contains a beam splitter
2.8.1 Mini-sensor measures magnetic activity in human brain
2.8.2 FOCS - Fiber-Optic Current Sensor
2.8.3 Microfiber Knot Resonator
2.9.1 Schematic Representation of a Sagnac Interferometer
2.9.2 Schematic: Frequency Shift of a Rotating Ring Laser Interferometer
2.9.3 Eurofighter and Fibre-optical Gyro Inertial Navigation System
2.9.4 Sea Fiber Optic Inertial Navigation with Data Distribution
2.9.5 Multiple axis FOG - Equipped with MEMS Accelerometers
2.9.6 Single-Axis Fiber Optic Gyro (FOG)
2.9.7 Fiber Optic Gyro (FOG)
2.9.8 Interior Command Post
2.9.9 DSP-based Closed-Loop FOG
2.9.10 FOG in Action - Military Tank
2.9.11 FOG - Single Axis Sensor
2.9.12 FOG - Three Axis Sensor
2.9.13 Fiber Optic Gyro (FOG)
2.9.14 Fiber Optic Gyro (FOG)
2.9.15 Fiber Optic Gyro (FOG)
2.9.16 Subsea Line Drawing - FOG
2.9.17 Subsea Fiber-Optic Gyroscope
3.1.1 Distributed Sensor System Channel Lines, Global Forecast ($Billion)
3.1.2 Distributed Sensor System Channel Lines, Continuous vs. Quasi-Continuous ($Billion)
3.1.3 Distributed Sensor System Channel Lines, Global Forecast, by Region ($Billion)
3.1.4 Distributed FO Sensor System; Utilizing Quasi-Distributed: FBG-Based Optical Fiber
3.1.5 Fiber-Based Distributed Acoustic Sensor System (advanced optoelectronics interrogator)
3.1.6 Direct Writing FBGs through Coating and Cladding
3.1.7 FGBs - Integrate a Precise Lens Function
3.1.8 Optical Fiber Distributed Temperature Sensor at Extreme Temperature
3.1.9 Scattering Phenomena in Distributed Optical Sensors (DOFS)
3.1.10 Sagnac Interferometer Distributed Vibration Sensor
3.1.11 Monitoring Dams with DTS Environmental Monitoring
3.1.12 Schematic Diagram of Typical Raman DTS System Based on OTDR Technique
3.1.13 Distributed Temperature Sensing System Controller (DTS)
3.1.14 Illustration Example - Distributed Temperature Sensing (DTS)
3.1.15 Fiber Optic Monitoring (Temperature/Pressure/Acoustics)
3.1.16 Wavelength of Transmission Dip of a Chiral Fiber versus Temperature
3.1.17 Fiber Optic Sensor Installation in Aircraft
3.1.18 Distributed Fiber Optic Sensing System
3.1.19 Security Fence - Fiber Optic Sensor Installation (Attached onto Fence)
3.1.20 Assorted Distributed Fiber Optic Sensor Systems
3.1.21 Continuous Sensing Along the Entire Length of the Pipeline
3.1.22 Testing Optical Fiber
3.1.23 Fiber Optic Sensing System ( Channels)
3.1.24 Fiber Optic Sensing System (8-Channels)
3.2.1 Distributed Temperature Sensing (DTS), using the Raman Scatter Principle
3.3.1 Austria - Distributed Fiber Optic Sensing - Monitoring in Tunneling Applications
3.3.2 Austria - Distributed Fiber Optic Sensing - Monitoring in Tunneling Applications
3.3.3 Austria - Monitoring of Railway Tracks and Vehicles with Distributed Fiber Optic Sensing
3.3.4 Line Type Heat Detection System (Distributed Fiber Optic Sensing)
3.4.1 Fiber Optic Sensor Cable Installed in Security Fence
3.4.2 Fiber Optic Sensor Cable Installed in Security Fence
3.4.3 Fiber Optic Cable for a Fiber Sensing Fence
3.4.4 Distributed Acoustic Sensing with Coherent Optical Time Domain Reflectometry (COTDR)
3.4.5 US Customs and Border Protection (CBP)
3.4.6 Distributed Acoustic Sensing (DAS) system
3.4.7 The principle of a Fiber Bragg Grating (FBG)
3.4.8 Fiber-Optic Acoustic Sensors for Submarine
3.5.1 Monitoring of Utilities with Distributed Fiber Optic Sensing
3.5.2 Distributed Fiber Optic Sensor System Component Example
3.5.3 Illustration of Fiber Optic Sensors in Oil & Gas Applications
3.5.4 Distributed Temperature Sensor System and Example
3.5.5 Load Monitoring for Wind Turbines Fiber Bragg Grating (FBG) Sensor Lines Example
3.5.6 Direct Fracture Monitoring Service, Single-Use Optical Fiber Sensor System
3.5.7 Weighted Probe - 'Active' internal sensors and miniature data acquisition box
3.5.8 Using Trans-Ocean Optical Fiber for Sensing
3.5.9 Multi-Functional Distributed Fiber Sensors for Pipeline Monitoring and Methane
3.6.1 Schematic/Real-Time Identical Weak FBG Interrogation/Resonance Frequency Mapping
3.6.2 Fiber Optic cable: 900 meters Groundwater Monitoring
3.6.3 Optical Fibers Embedded into Wearable Fabric for Medical Sensing Applications
4.2.1 Schematic Diagram of an Integrated Optic Probe
4.2.2 Fiber Optic Sensor for Humidity Monitoring
4.2.3 Interferometric Principles: Utilizing Angled Optical Fiber
4.2.4 Schematic Drawing: Fiber-optic Fabry-Perot Interferometers
4.2.5 Schematic Drawing: Fiber-optic Fabry-Perot Interferometers
4.2.6 All-Fiber Michelson interferometer
4.2.7 Measurement of Micron-Scale Deflections
4.2.8 Michelson Type-Interferometer with Improvements
4.2.9 Traditional Fourier-Transform Spectrometer
4.2.10 Electro-Optical Imaging Fourier-Transform Spectrometer
4.2.11 Fiber-Optic Fabry-Perot Interferometric Gas Pressure Sensor Operation
4.2.12 Temperature and RI Sensor
4.2.13 All-silica RI-Temperature Sensor
4.3.1 Schematic Illustration Structure of Step-index (SI) Multimode POF
4.3.2. Sensor requirements in the Oil and Gas Industry
4.4.1 Fusion Splicers Target Specialty Optical Fiber Splicing
4.5.1 Structure of a Fiber Bragg Grating
4.5.2 Fiber Bragg Gratings
4.5.3 Fabry-Perot Sensor Fabricated by Micro-machining
4.5.4 FBG Sensor (Smart FBG)
4.5.5 Weldable FBG Strain Sensor
4.5.6 Hydrostatic Pressure and Temperature Measurements FBG Sensor
4.5.7 Flexible Optical Sensing
4.5.8 Real-Time Train Wheel Condition Monitoring Scheme
4.5.9 Fiber Bragg Grating (FBG) Sensors Used in Sailing
4.5.10 FBG in a 2 m length of polyimide coated optical fiber
4.5.11 FBG interrogation based on resonance frequency mapping
4.5.12 Interferometrical setup for FBG writing
4.5.13 Fiber Bragg Grating (FBG) Manufacturing Tool
4.6.1 Hand-Held Raman Scanner
4.6.2 Raman Distributed Temperature Sensor Fiber Layout in Tunnel
4.7.1 Sensor System Layout
4.7.2 Fluorescent Long-Line Fiber Optic Position Sensors
4.7.3 Fluorescent Long-Line Fiber Optic Position Sensors with LED
4.7.4 Integrated Micro Volume Fiber Optic Sensor
4.8.1 Brillouin optical time-domain analysis (BOTDA) Schematic Drawing
4.9.1 Laser Doppler Flowmetry
4.9.2 Schematic Representation of Zeta Potential
4.10.1 Schematic of a Laser-induced breakdown spectroscopy (LIBS) system
4.11.1 Surface Plasmon Sensors ( pages)
4.11.2 Polariton fiber sensor configurations
4.11.3 Side-polished Polariton fiber sensor
4.11.4 Tapered fiber structure with uniform waist ( Figures)
4.11.5 Surface Plasmon Resonance Sensing Structure
4.11.6 Hollow core sensing structure with Bragg grating (2 Figures)
4.11.7 Planar SPP sensor with Bragg grating imprinted in waveguide layer (2 Figures)
4.11.8 Planar SPP sensor with LPG imprinted into the waveguide layer (2 Figures)
4.11.9 MZI branch with the Bragg grating
4.11.10 Dependence between the refractive index
4.11.11 A dual LPG-based SPR sensor
4.11.12 Tilted grating assisted SPR sensor
4.11.13 Changes in the Intensities
4.11.14 PVDF Coated Teflon Fiber SPR Gas Sensor
4.11.15 Hybrid Mode SPR Sensor
4.11.16 Thin SPP Waveguide
4.11.17 Gemini Fiber
4.11.18 Specialty Optical Fibers with Holes for sensors, lasers and components
4.11.19 Fiber Sensor: LPG and HiBi Fiber
4.12.1 Principle of Wet Etching
4.12.2 Optical Fiber on Probe Shank Using UV light-Curable Glue
4.12.3 Silicon Probe and Non-Fiberoptic Waveguide
4.12.4 Example: Use of an Optrode
4.12.5 Designed and Manufactured Simplified Optrode Devices
6.1 Market Research & Forecasting Methodology

Addenum
Market Forecast Data Base: Excel Spreadsheets
  • Market Forecast Data Table
  • Point Fiber Optic Sensors - Global
  • Point Fiber Optic Sensors - America
  • Point Fiber Optic Sensors - EMEA
  • Point Fiber Optic Sensors - APAC
  • Distributed Continuous and Quasi-Continuous Fiber Optic Sensor System Channel Lines
  • Global
  • America
  • Europe, Middle East, Africa (EMEA)
  • Asia Pacific (APAC)
  • Fiber Optic Sensor Company / Product Matrix
  • Company Tables for Text
  • Extra Table for Text

Executive Summary

The 2022-2032 quantitative market review and forecast data, presented in this study report, are segmented into the following geographic regions, plus a Global summary:

  • The Americas (North America, Central and South America)
  • EMEA (Europe, Middle Eastern countries, plus Africa)
  • APAC (Asia Pacific)

The market forecast data is presented and segmented in two main sections:

  • Fiber Optic Point (Local) Sensor: Complete Unit
  • Distributed Fiber Optic Sensor (Continuous and Quasi-continuous): System Channel Line

Fiber Optic Point Sensor: Sensing/Measuring Quantity

The Point Sensor Forecast further segmented by the following sensing/measuring quantity (measurand) types:

  • Mechanical Strain
  • Temperature
  • Pressure
  • Chemical, Gas, Liquid
  • Vibration, Acoustic, Seismic
  • Displacement, Acceleration, Proximity
  • Electric, Current and Magnetic Field - Fiber Optic Sensors
  • Rotation (such as Fiber Optic Gyroscopes: FOGs)

Fiber Optic Point Sensors: Applications

The market forecast of the Fiber Optic Point Sensors is segmented by the following end-user applications:

  • Manufacturing Process/Factory
  • Civil Engineering/Construction
  • Military/Aerospace/Security
  • Test & Measurement used in Telecommunication, CATV, Enterprise
  • Biomedical/Science
  • Petrochemical/Energy/Utilities/Natural Resources
  • Automotive/Vehicle

Distributed Fiber Optic Sensor System Links (Lines)

In this study, the Distributed Fiber Optic Sensor function in systems is counted by individual channel link (or line), which include several components (optoelectronic transmitter/receiver, connectors, optical fiber, cable (fiber jacket), other passive components, and immediate enclosures; the quasi-continuous system also includes the FBG sensor elements, which are embedded into the sensing fiber (software is not included).

Types of Distributed Fiber Optic System Channel Lines:

Continuous Distributed sensing (optical fiber line used in a system) provides continuous, real-time measurements along the entire length of a fiber optic cable; continuous distributed sensing does not rely upon manufactured sensors but utilizes the optical fiber.

Quasi-Continuous Distributed sensing (optical fiber line used in a system) utilizes Fiber Bragg Gratings (FBGs), which have been employed as sensing elements where dense (closely-spaced) sensing points are required, and the FBGs are multiplexed with various methods.

Distributed Fiber Optic Sensor Systems typically have several channel links (fiber lines).

The values shown in this study report are obtained by multiplying an (one) individual completed channel, which includes one fiber optic line (or link) and associated components for that one line (optoelectronic transmitter/receiver, connectors, optical fiber, cable (fiber jacket), other passive components, and immediate enclosures; and with Grading-Based systems, sensing elements (FBGs) are included in the list of components for each individual channel.

Therefore, the quantities (volume) and average selling prices are represented for the one system channel link (also known as a line or string). Not all systems are filled to channel capacity; therefore, customers add more channel lines or replace old lines with new lines as required over months or over years (“grow as you go”).

Distributed Sensors Market Forecast Application and Technology Categories:

  • Manufacturing Process/Factory
    • Continuous - Interferometric
    • Continuous - Raman scattering (Raman effect)
    • Continuous - Brillouin Scattering
    • Quasi-Continuous (Grating-Based)
  • Civil Engineering/Construction (buildings, bridges, tunnels, etc)
    • Continuous - Interferometric
    • Continuous - Raman scattering (Raman effect)
    • Continuous - Brillouin Scattering
    • Quasi-Continuous (Grating-Based)
  • Military/Aerospace/Security
    • Continuous - Interferometric
    • Continuous - Raman scattering (Raman effect)
    • Continuous - Brillouin Scattering
    • Quasi-Continuous (Grating-Based)
  • Petrochemical/Energy/Utilities/Natural Resources
    • Continuous - Interferometric
    • Continuous - Raman scattering (Raman effect)
    • Continuous - Brillouin Scattering
    • Quasi-Continuous (Grating-Based)
  • Biomedical/Science
    • Continuous - Interferometric
    • Continuous - Raman scattering (Raman effect)
    • Continuous - Brillouin Scattering
    • Quasi-Continuous (Grating-Based)

Technology Review

This study report provides a review of applicable technologies, including:

  • Interferometry
  • Intensity
  • Polarization
  • Fiber Bragg Grating (FBG)
  • Raman back-scattering
  • Fluorescence
  • Brillouin waves
  • Doppler Anemometry
  • Spectroscopy
  • Waveguides/ Specialty Optical Fiber
  • Optrode

Competition - Also included in this report is an extensive list of 200-fiber optic sensor manufacturers and related companies, along with a matrix table classifying the types of sensors technologies. Market share estimates (2021) for the selected leading competitors are also provided.

Market Forecast Data Base

Microsoft Excel Spreadsheets: The market forecast data are presented for fiber optic sensors, segmented by the following functions:

  • Consumption Value (US$, million)
  • Quantity (number/units in Thousands)
  • Average Selling Prices (ASP $, each)

Excel File Contents:

  • Fiber Optic Sensor Company / Product Matrix
  • Market Forecast Data Table
  • Distributed Fiber Optic Sensor Market Forecast
    • Global
    • America
    • Europe, Middle East, Africa (EMEA)
    • Asia Pacific (APAC)
  • Point Fiber Optic Sensor Market Forecast
    • Global
    • America
    • EMEA
    • APAC

Companies Mentioned

  • ABB Power, Sweden (Asea Brown Boveri)
  • Acreo, Sweden (RISE - Research Inst. of Sweden)
  • Adamant Kogyo Company, Ltd.
  • Adelos, Inc./S&K (US Navy BLUEROSE patents)
  • Advanced Energy Industries Inc. (LumaSense; Luxtron)
  • Advanced Navigation
  • Aerodyne Research, Inc. (ARI)
  • AFL - Fujikura Ltd. Japan (Verrillon®) 
  • Agilent Technologies / AP Sensing
  • Agiltron ® (Photonwares)
  • Al Cielo Inertial Solutions (ACIS)
  • Alcatel-Lucent (now - Nokia)
  • Alstom
  • Althen Sensors & Controls (Altheris - The Netherlands)
  • Alxenses Company Limited
  • American Medical Systems (GreenLight™)
  • Anritsu (light sources/devices for fiber sensors)
  • Apogee Technology, Inc.
  • Applied Analytics, Inc.
  • Applied Optoelectronics, Inc.
  • AP Sensing GmbH (also see Agilent)
  • Arizona State University (SMART Innovations)
  • Asahi Kasei Microdevices
  • Autonics Corporation
  • Avantes B.V.
  • Babcock & Wilcox
  • Baluff Incorporated
  • Bandweaver
  • Banner Engineering Corporation
  • Baumer Electric AG
  • Biolitec group
  • Biometrics Ltd.
  • Cardiogenesis (CryoLife)
  • Chiral Photonics
  • CiDRA
  • Coherent-Rofin / Nufern
  • Colibrys Ltd. (Safran Colibrys SA)
  • Conax Technologies 
  • Core Laboratories
  • Corning Inc. / 3M
  • CVI Laser Optics (IDEX Optical Technologies / IDEX)
  • Davidson Instruments
  • Draper Laboratories
  • Echopoint Medical Ltd (University College London)
  • Elbit Systems - ELSEC (Israel)
  • Emcore Corporation
  • Evanescent Optics Inc. 
  • EXFO Inc.
  • Expro International Group Ltd.
  • EyeSense GmbH
  • FBG Korea
  • FBGS
  • Femto Sensing International (Georgia, USA)
  • FFPI Industries, Inc.
  • Fibercore
  • Fibernetics LLC
  • Fiber SenSys (OPTEX CO. LTD.)
  • Fiberware GmbH
  • FIBOS (Canada)
  • FiSens GmbH
  • Fizoptika
  • Fluke Process Instruments (Ircon, Raytek) 
  • FOSTA Pte. Ltd. (Singapore)
  • Fraunhofer Heinrich Hertz Institute
  • Fuji Electric
  • Furukawa/OFS Fitel
  • Future Fibre Technologies (FFT) (Ava Group)
  • Gooch & Housego
  • Gould Fiber Optics
  • Halliburton / SensorTran / Smart Fibres Ltd. (U.K.)
  • Hamamatsu Corporation
  • HBM (HBK Company subsidiary of Spectris plc) 
  • Hecho Technology (Nanjing Hecho Technology)
  • Heraeus Holding / Heraeus Quarzglas GmbH & Co. KG 
  • Hitachi Metals, Ltd. 
  • Honeywell
  • Hoya Corporation
  • Ibsen Photonics
  • IDEC
  • ifm efector inc. (PA, USA)
  • imc Test & Measurement GmbH (Axiometrix Solutions)
  • Infrared Fiber Sensors
  • Innovative Environmental Scientific Pty. Ltd. (IES)
  • Integrated Photonics Technology, Inc. (IPITEK)
  • Intelligent Fiber Optic Systems (IFOS)
  • Intelligent Optical Systems, Inc. (IOS)
  • Inversion Sensor Co. Ltd.
  • ION Geophysical 
  • ITF Technologies (O-Net)
  • iXblue
  • Johnson Controls International plc (Tyco)
  • Keyence
  • Keystone Automation Incorporated
  • KVH Industries
  • Lake Shore Cryotronics, Inc.
  • LEONI
  • Leuze electronic GmbH + Co. KG
  • Lockheed Martin Corporation
  • Lumentum Operations LLC (acquired NeoPhotonics)
  • Luna Innovations / Micron Optics / OptaSense® 
  • Makai Ocean Engineering, Inc. 
  • Marmota Engineering AG (Switzerland) 
  • M.D. Micro Detectors S.p.A. (Datalogic Group)
  • Measurand, Inc. Canada
  • Memsic Corporation
  • Micronor Sensors
  • Mitsubishi Precision Co. Ltd. (MPC)
  • MOCKWELL (Dongguan MOCKWELL)
  • Molex, LLC (Fiberguide)
  • MTI Instruments, Inc.
  • National Instruments Corporation (NI) 
  • NBG Holding GmbH (Austria)
  • NEDAERO (Based in The Netherlands)
  • Neoptix, Incorporated
  • Newport / New Focus (MKS Instruments)
  • Ningbo Sunny Optical Technology (Group) Company Limited 
  • NITTO DENKO Corporation
  • NGK Insulator
  • NKT Photonics A/S (LIOS SENSING)
  • Northrup Grumman
  • Nova Metrix (FISO/Roctest/Smartec/Others)
  • NVIDIA Corporation (acquired Mellanox)
  • Ocean Optics, Incorporated
  • O/E Land Incororated
  • Omega Engineering Inc. (Spectris plc)
  • OmniSens SA
  • Omron
  • Opsens
  • Optek Technology (TT Electronics)
  • OptiEnz Sensors, LLC
  • Optocon (Weidmann Technologies)
  • Optolink Scientific Ltd.
  • Optosci Ltd.
  • Optrand Inc.
  • Optromix, Inc.
  • Oxsensis Ltd.
  • OZ Optics
  • Panasonic / Ramco (Sunx)
  • Paroscientific, Inc.
  • Pepperl+Fuchs
  • PerkinElmer Inc.
  • Philtec
  • Photonics Laboratories, Incorporated
  • Physik Instrumente
  • PJSC PNPPK (Russia)
  • Predynamics
  • PreSens Precision Sensing (Germany)
  • Prime Photonics, LC 
  • Prisma Photonics, Ltd.
  • Profotech
  • Proximion AB (Hexatronic Group)
  • QinetiQ Group PLC
  • Reflectronics, Inc.
  • Rockwell Automation (Allen-Bradley)
  • ROGA-Instruments
  • Rugged Monitoring (Canada)
  • Saab AB, EDS, Avionics Division/Defense/Security
  • Safran Electronics and Defense
  • Scaime (France)
  • Scantron Industrial Products Ltd.
  • Schlumberger Limited, SENSA (France)
  • SCHOTT Glass/Fiber Optics
  • SDI Science & Technology Co. Ltd.  (Beijing)
  • Sensor Line (Germany) / IRD
  • Sensornet Ltd.
  • Sensor Technologies/Mooncor (previously FOX-TEK)
  • Senstar Corporation (acquired Optellios)
  • Sensuron
  • Sentea
  • Sichuan Huiyuan Plastic Optical Fiber Co. Ltd.
  • Siemens AG 
  • Silixa Ltd.
  • Sintela (ONYX™)
  • SlingShot Assembly (Acquired BEI Electronics LLC)
  • Smartec SA
  • Solifos AG, GmbH (Formerly FO systems of Brugg)
  • Spectranetics® (Acquired by Philips)
  • StarNeto Technology Development Co. Ltd. (Beijing)
  • Sumita Optical Glass
  • Sumitomo Electric
  • Takenaka Sensor Group (TAKEX / PULNiX)
  • Technica Optical Components, LLC
  • Technobis tft-fos (The Netherlands)
  • Tektronix
  • Teledyne FLIR LLC
  • Telemecanique Sensors (OsiSense XU)
  • TeraXion
  • TGS-NOPEC Geophysical Company ASA (TGS)
  • Thorlabs, Inc.
  • TIPD, LLC (California, USA)
  • Trimedyne, Incorporated
  • Tri-Tronics Co. Inc.
  • Ultra Communications
  • VIAVI Solutions Inc.
  • Weatherford International Ltd. 
  • Well-SENSE (Aberdeen, Scotland)
  • Williamson Corporation
  • Xiamen Xi-BTR Electronic Technology Co. Ltd.
  • Yokogawa Electric Corporation 
  • Zhengzhou HANVY Industrial Co. Ltd. 
  • Ziebel AS