Luna - HD6S High-Definition Fiber Optic Strain Sensors
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Low-profile and flexible for complex geometries and embedded applications
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NIST-traceable calibration
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High-density strain measurements
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Dielectric and EMI/EMC immune
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Plug-and-play operation with ODiSI system
Unlike conventional strain gages that only measure strain at a discrete point, Luna’s high definition fiber optic strain gages provide continuous, high-resolution (less than 1 mm) measurements of strain along the entire length of the sensor. Sensors are now available in lengths up to 100 m.
HD strain sensors are low-profile versatile fiber optic sensors which, when used with an ODiSI system, can provide more than a thousand distinct strain measurements per meter. Using standard unaltered optical fiber, HD strain sensors are packaged to deliver maximum flexibility with optimal strain transfer in a wide variety of applications and installations.
Standard sensor lengths | Available from 1 m to 100 m |
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Sensor diameter | 155 µm |
Operating temperature range | -40 to 300 °C |
Fiber type | Polyimide coated low bend loss fiber |
Connector | LC/APC |
For full specifications, please download the data sheet.
More Product Information
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Applications
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Upper-side gate drive signal measurements
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Floating control signal or sensor voltage measurements
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EMC, EFT, ESD, and RF immunity testing and system optimization
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Any small signal measurements with high common-mode voltage
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60 MHz bandwidth
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35 kV common-mode voltage rating (fiber optic isolation)
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Superior Noise and Rejection
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140 dB CMRR
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Low loop inductance
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Low attenuation
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Reduced DUT loading, better pulse response compared to conventional HV differential probes
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Selectable tips from ±1V to ±40V
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Eliminates need to “float” the oscilloscope
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ProBus-compatible with many Teledyne LeCroy oscilloscopes
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Full C-band tunability
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Smooth, linear scans
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Narrow linewidth, low noise
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Wavelength calibration in seconds
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Integrated wavelength and power monitors
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External triggering
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2 optical detectors and data acquisition channels
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Industry leading wavelength accuracy and resolution
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High signal fidelity to 4 GHz bandwidth
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Low circuit loading - High input impedance and low capacitance
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4 GHz, 2.5 GHz, 1.5 GHz and 1 GHz models
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1MΩ input resistance
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0.6 pF (4 GHz)and 0.9 pF input capacitance
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± 8 V input dynamic range, ± 12 V offset range
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Wide variety of tips and grounds
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Easy to use, integrated with oscilloscope
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Flexible Product Line
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Low power DC modules
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Low power AC modules
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High power DC, 19" rack mounted loads
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High power AC, 19" rack mounted loads
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26 Total Models
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Flexible Control
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Remote: GPIB, RS-232, Analog
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Manual: Front Panel
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DC Modes: CC, CR, CV, CP
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AC Modes: CR, CC with crest factor control
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Dynamic mode with slew rate control
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Flexible Data Feedback
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GPIB, RS-232
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Current monitor output (SLM DC only)
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Front panel
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2000VA, 1800W, 120/240VAC & 28DC Input & 120VAC, 60Hz Output, Double Conversion, Rugged, High Temperature, Isolated On-Line UPS System with Hot Swap Battery, Frequency Conversion, Power Factor Correction and SNMP Communications
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2000VA, 1400W Output, Double Conversion, Rugged, High Temperature, Global Wide Range, PFC Input, 85 to 265VAC Input, 50/60Hz Input, Online UPS Providing 120VAC, 50/60Hz Output with approximately 27-minute Battery Back Up, Power Factor Correction, Power Conversion and Power Conditioning in a 4U Aluminum Enclosure
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Available in 250 MHz and 350 MHz models.
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2, 4 and 8 channel modes.
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16-bit vertical resolution.
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Max Sampling rate of 1.2 GS/s.
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Max sinewave frequency of 250 MHz and 350 MHz respectively.
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Broadest Model Selection: 800W to 7.5kW (higher power available up to 250kW Contact Factory)
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Exclusive Voltage Models: 60V to 1000V
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Multiple loads in one: Multiple ranges for voltage, current resistance and power
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Intuitive Front Panel Control: Run sequences, triggers, constant current to constant power cross over
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RoHS Compliant
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Enables wafer probing up to 100 A pulsed and 10A DC
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Innovative multi-fingertip design provides even distribution of current
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Supports up to 500 V
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Replaceable Tungsten probe tips
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Temperature range of -60°C to 300°C
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Minimal contact resistance at the pad-tip junction to reduce heating during measurements, with fewer probe marks
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Prevents against thermal runaway
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Measure devices on wafer at higher currents than ever before
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Small scrub minimizes damage to aluminum pad
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Small footprint – tip fits on a 1 mm pad
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