Luna - os9200 Optical Pressure Sensor
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Simple and repeatable installation
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Rugged (IP67) multipoint monitoring with up to 96 sensors on a single HYPERION instrument
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Ultra high resolution
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Multiparameter various physical parameters measurements coupled onto the same instrumentation platform
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Internally temperature-compensated
Luna’s os9200 sensors are fiber Bragg grating (FBG) based high-accuracy pressure sensors, enabling rugged and stable monitoring systems that can be easily distributed over long distances.
The os9200 features a novel approach to pressure sensing for both liquid and gaseous environments, utilizing FBG technology to measure minute changes in pressure. The sensor features a pressure range of 0-100 bar and a resolution of down to 0.1% full scale.
Up to 96 os9200 sensors can be integrated on a single HYPERION interrogator platform, and can also be combined on the same optical network with other FBG sensors to simultaneously capture other parameters, such as temperature, strain, displacement, acceleration, tilt, etc.
The os9200 sensors are compatible with ENLIGHT Sensing Analysis Software, an integrated suite of tools for data acquisition, computation and analysis of optical sensor networks, as well as with the HYPERION’s comprehensive Application Programming Interface (API) and examples written in LabVIEW, Python, Matlab, C++ and C#.
os9200 Pressure Sensor | ||
Measurement Type | Pressure, with temperature-compensation | |
Measurement Range | 0 to 100 bar | |
Resolution | 0.1% of full scale | |
Accuracy | <1% of full scale | |
Measurement Points | Up to 96 with 16 channel si255; 6 sensors per channel | |
Pressure inlet port thread | G 1/8th |
For full specifications, please download the data sheet.
More Product Information
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Up to 65 GHz system bandwidth
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Up to 130 GBaud detectable baud rate
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Up to 160 GS/s sample rate
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Real-time acquisition for testing of coherent modulated optical communications links
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Built-in dispersion compensation, polarization de-multiplexing, and carrier recovery algorithms
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Supports DP-QPSK, DP-16QAM, and a wide variety of other PSK and QAM formats
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Support for custom modulation formats
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Built-in local oscillator
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Adaptive calibration – Receiver can be disconnected and reconnected without factory calibration
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Dynamic and absolute measurement of FBGs, LPGs, FP and MZ sensors
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Up to 16 parallel channels per system
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Data verification key guarantees only valid output; each data set is calibrated and verified against a permanent NIST traceable reference
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Proven reliability and longevity, with over 100 million hours logged since 2000
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Insertion Loss (IL)
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Return Loss (RL)
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Polarization Dependent Loss (PDL)
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Phase Response
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Group Delay (GD)
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Chromatic Dispersion (CD)
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Polarization Mode Dispersion (PMD) / Second Order PMD
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Min/Max Loss due to Polarization
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Impulse Response
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Jones Matrix Elements
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Phase Ripple – Linear and Quadratic
- Facilitate computer integration with a PCIe® x1 interface
- Benefit from real-time synchronization with 16 discrete digital I/Os
- Get straightforward access to I/Os via standard D-Sub connector
- Support factory-floor and lab use with 24 V and TTL-compatible signaling
- Protect against unintended use with optical isolation and resettable fuses
- Track moving production lines with support for two rotary incremental encoders
- Use status indicator LED for each I/O to assist with integration troubleshooting
- Leverage Gigabit Ethernet port for industrial communication or video capture using GigE Vision
- Use with Zebra Aurora Design Assistant (formerly Matrox Design Assistant) and Zebra Aurora Imaging Library (formerly Matrox Imaging Library), vision software
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Full transceiver functionality
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Collinear design
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Low cost plastic lens
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Hardened case for industrial environment
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Use to measure layer thickness
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Use to produce scanned images
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Single high flex umbilical
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Variety of focal lengths available
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Capable of being cleaned
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Supports VRS functionality
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Dynamic and absolute measurement of FBGs, LPGs, FP and MZ sensors
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Up to 16 parallel channels per system
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Data verification key guarantees only valid output; each data set is calibrated and verified against a permanent NIST traceable reference
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Proven reliability and longevity, with over 100 million hours logged since 2000
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Up to 65 GHz system bandwidth
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Up to 120 GBaud detectable baud rate
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Up to 160 GS/s sample rate
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Real-time acquisition for testing of coherent modulated optical communications links
-
Built-in dispersion compensation, polarization de-multiplexing, and carrier recovery algorithms
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Supports DP-QPSK, DP-16QAM, and a wide variety of other PSK and QAM formats
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Support for custom modulation formats
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Built-in local oscillator
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Adaptive calibration – Receiver can be disconnected and reconnected without factory calibration
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Revolutionary technology advancement for wafer and die-level photonics probing
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Real-time in-situ calibrations
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Highest accuracy in test results
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Lowest coupling loss
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New innovative combination of hardware and software features to align and optimize fibers/arrays in a wafer-level trench
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Minimized coupling losses with minimal trench dimensions
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Industry standard for vertical coupling to wafer-level grating couplers
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Dark, shielded and frost-free
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-40°C to +125°C
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Pioneering set of automated functions that perform critical calibrations of the optical positioning system to the probe station
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Exclusive FormFactor-developed automated test methodology
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FormFactor-developed graphical user interface to manually control the optical positioning system
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Configurable between single fibers, fiber arrays and edge coupling holders
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Ultra-high resolution (10 μm sampling) reflectometer with “zero dead zone”.
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Measure RL, IL, distributed loss, length, polarization states, phase derivative and group delay
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80 dB dynamic range
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Backscatter-level sensitivity (-130 dB)
Luna Innovations
Luna Innovations mission is to help advance the continuing increase in data transmission rates for the public & private communications network with high speed optical receivers and test products, while also leveraging our unique fiber optic sensing technology to improve the structural testing of new composite elements and components in new aircraft and automobiles.
Luna Innovations Incorporated (NASDAQ: LUNA) was founded in 1990 and has been successful in taking innovative technologies from the applied research stage to product development and ultimately to the commercial market. In some cases, the successes led to the creation of independent businesses. We have created companies in our area of focus, sold some of them to industry leaders in their fields, raised private capital, formed joint ventures and entered into a number of licensing agreements.
Contact Details
Luna Innovations Inc.
301 1st Street, SW, Suite 200, Roanoke, VA 24011, USA
Phone: 540-769-8400