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LiDAR
Light Detection and Ranging or Laser Imaging Detection and Ranging
See Also: ADAS, Ceilometers
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Software
LIDAR Analyst™
Textron Systems' LIDAR Analyst software is tightly integrated with the Esri® ArcGIS® platform to provide an end-to-end solution for visualizing and processing LIDAR data. Analysts can automatically extract 3D objects such as bare earth, trees or buildings, enabling users to visualize their world for critical decision making.
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Characterization Of VCSEL Arrays Including Polarization Analysis
Konica Minolta Sensing Americas, Inc
Laser diodes are becoming indispensable in a multitude of everyday and industrial applications, thereby expediting new applications and technologies. These include: facial and gesture recognition in consumer electronics, LiDAR (light detection and ranging) in the car and material processing with high-performance diode lasers.
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Sensors for Robotics & Automation
Acroname is your source for LiDAR, Radar, Sonar, and Thermal sensors. These sensors are designed to be integrated into your robotics and automation products to help your devices "see" for themselves. All orders from Acroname over $100 ship free
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Wind Turbine Performance Lidar
Wind Iris
The Wind Iris is based on Leosphere's leading WINDCUBE pulsedLidar technology, and is the first remote sensor dedicated to turbine-mounted measurements. It measures the horizontal wind speed and direction from 40m to 400m upwind of the turbine. Real time and average data can then be transferred automatically or stored in a data logger.
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Dual Mode Wind Turbine Performance Lidar
ZephIR DM
ZephIR DM is a Dual Mode variation of the successful 300 system. ZephIR DM measures wind characteristics in front of or behind a turbine from just 10 metres (33 feet) out to 300 metres (984 feet) situated inside the spinner or on top of the nacelle, during the operation of wind farms onshore and offshore (this is limited to 200m (656 feet) when in ground based vertical mode).
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LIDAR & Direct Time of Flight
LIDAR (Light Detection and Ranging) is a sensor technology for remote object detection and ranging, using a light source and receiver. Emitted light pulses hit objects, reflect, and return to the LiDAR sensor system where the receiver detects the returning light pulse.
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Analysis Tool for ECU Networks and Distributed Systems
CANape
The primary application area of CANape is in optimizing parameterization (calibration) of electronic control units. During a measurement process, you can simultaneously calibrate parameters and record signals. The communication between CANape and the ECUs takes place via protocols such as XCP or via microcontroller-specific interfaces with the VX1000 measurement and calibration hardware. CANape supports various ADAS sensors such as radar, LIDAR and video. Combined with high-performance hardware, CANape can store multiple gigabytes of data per second. Calibration data management and convenient measurement data evaluation including data management as well as reporting make CANape a complete tool for ECU calibration. Of course, CANape also provides access to bus data, diagnostic data and analog measurement data.
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ACTRIS-Ready LIDAR System
Anchored in Athens but with global reach and ambition, Raymetrics is a company founded by scientists and engineers to develop state-of-the-art LIDAR systems appropriate for scientists and non-experts alike. Developed through a long-term collaboration with the EARLINET community, Raymetrics LIDARs perform state-of-the-art measurements robustly and in a fully automatic way Raymetrics LIDARs are guaranteed to follow all ACTRIS Quality Assurance protocols, will fill the requirements for ACTRIS National Facility for Aerosol Remote Sensing, and minimize the operation and maintenance costs
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Free Space Micro-optics Assembly
Exail is committed to deliver photonics solutions with excellent performances and to support the most ambitious R&D projects, product developments and product industrialization. Turning any large photonic experiments into an Exail micro-optics assembly will unleash the potential of your developments in quantum technology, QKD, lidars, space communication, etc…
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Flash Vs. Scan
A LiDAR system can observe the complete field of view (FOV) at once, called Flash systems. Flash typically works well for short to mid-range (0-100m), and by capturing the complete scene at once also objects with high relative speeds can be detected properly. Another implementation is to focus on a subset of the FOV, consequentially look at the next subsets, until the complete FOV is covered, called Scanning. Scanning can focus the light on the subset instead of the full FOV, and therefore can do object detection at a longer range compared to Flash.
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VCSEL Light Source
ams supplies LiDAR systems with specific light sources, called VCSEL (Vertical Cavity Surface Emitting Laser). These VCSELs offer specific advantages over other types of light sources as for instance Edge Emitter Lasers:
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Optical Materials & LiDAR Test Equipment
Is a remote sensing method which is used to estimate the range between two objects.
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Autonomous Pulsed Doppler Wind LiDAR System
Galion
The Galion LiDAR, distributed by SgurrEnergy, has been optimised for collecting data for wind power applications. The all-sky scanning capability enables many more data collection opportunities than VAD scanning alone.
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α-LIDAR
The α-LIDAR is a state-of-the-art instrument designed to meet the operational and data quality requirements of the ACTRIS research Infrastructure
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EMORAL LiDARESA Mobile Raman
The EMORAL LIDAR observations at the PolWET site in Rzecin, Poland, on 10 June 2019. The scattering ratio (top), quasi-particle depolarization ratio (middle), and backscatter colour ratio (bottom) derived at 532 nm with 30 m spatial and 30 s temporal resolutions
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RANGER-LR 22 LITE
The RANGER-LR22 LITE is the new lighter, long-range system configuration of our RANGER Series. Designed for the most demanding mapping applications, the RANGER-LR22 LITE is the ultimate combination of high density, long-range LiDAR with a powerful 1,550 nm laser and up to 15 returns that penetrate dense vegetation at high speeds and altitudes in large scan regions.
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Remote Sensing Wind Measurement Device
WINDCUBE
WINDCUBE is a remote sensing wind measurement device that uses pulsed Doppler Lidar technology to provide high quality data on par with an IEC calibrated met mast. Introduced to the market by LEOSPHERE, WINDCUBE has quickly become recognized as the market standard for superior performance for both wind resource assessment and wind farm performance monitoring. Lenders have readily adopted data provided by WINDCUBE and consider this device to be “best-in-class.” WINDCUBE is categorized as being in Stage 3 of DNV GL’s rigorous standards related to remote sensor acceptance for formal energy assessment purposes.
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PLS Software Suite
Real-time point cloud via 4G or built-in long range wifi – now with patent pending real-time RGB colorizationVehicle agnostic (designed for multi-rotors, car, bicycle, backpack, and more)Analyze LiDAR penetration and measure positions, paths and cross sections – while scanningSDK available for real-time point cloud analytics
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Fiber Laser
ALiDAR Series
Amonics' high power fiber laser (ALiDAR) series offers eye-safe, single mode, linear polarized nanosecond-pulsed all fiber laser source with master-oscillator-power-amplifier.It is designed for three-dimensional imaging, wind detection and ranging LiDAR systems. The ALiDAR series is maintenance free with no post-installation service required. It is a versatile, ready-to-use and durable laser source for various LiDAR applications.
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Radar・Sensor Simulation Framework
COSMOsim
Millimeter Wave Radar simulator and LIDAR (Laser Imaging Detection And Ranging) simulator for Automotive sensor simulations, and also can provide 3DCG MAP for specific radar which has millimeter accuracy. Now we can only provide AMMWR and ALR to the following COSMOsim Framework. This simulator enables automotive manufacturers to simulate a driving situation by sensor-based modelling, check the recognition and control of autonomous driving, and verify the sensor-mounting positions on vehicles efficiently, which eliminates the need for test driving with real vehicles.
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Optical Technologies Solutions
AMS Technologies has a long track record of developing and manufacturing customized optical technologies solutions – tailored to the requirements of applications like: *Life Sciences *Biomedical Photoacoustic Imaging; Photoacoustic Microscopy, *Mesoscopy, Macroscopy *MALDI Mass Spectrometry (Matrix Assisted Laser Desorption Ionisation) *Fluorescence Lifetime Imaging (FLIM) *Pumping of Dye Lasers, OPOs, Raman Lasers *LIDAR *Gas Chromatography *Interferometry *Sensing *Micromachining *Marking *And Many More…
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Wind Turbine Lidar
ZephIR 300
ZephIR 300 measures wind characteristics onshore and on fixed or floating platforms offshore from just 10 metres (33 feet) up to 200 metres (656 feet) from installed position to inform wind regime and quality studies during the development and operation of wind farms onshore and offshore.
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Ceilometers
Campbell Scientific offers ceilometers that use lidar (light detection and ranging) technology to measure cloud height, vertical visibility, and mixing layer height. While they are best known for their use in aircraft operations at airports and oil platform helipads, ceilometers are also used by meteorologists for boundary layer research and air-quality applications.
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In-Vehicle Controller
ITA-4000 series is an AI-based in-vehicle platform with visual recognition that provides telematics, ADAS, LiDAR, and Radar for smart transportation.
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eVe LIDAR
eVe LIDAR aims to provide the ESA-Aeolus mission with a flexible, mobile reference ground-based LIDAR system capable of providing well-characterized fiducial reference measurements of aerosol optical properties
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Cloud Height Instruments
Bristol Industrial & Research Associates Ltd
Ceilometers are stand-alone instruments designed to measure cloud and aerosol height profiles using a laser based LIDAR (Light Detection And Ranging) technique. The light emitting component is a low power diode laser with the output power limited to an eye-safe level. They determine cloud base heights, penetration depths, mixing layer height and vertical visibilities. Within their operating range they reliably detect multiple cloud layers and cirrus clouds.
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Wind Speed and Wind Direction Sensors
Wind vanes measure wind direction and are often used with anemometers, which measure wind speed. Campbell Scientific offers a variety of anemometer designs: cup, propeller, ultrasonic, sonic, and lidar. Most of our wind sensors are modified slightly from the manufacturers’ stock items so that they may be used with our dataloggers in research, air quality, and general purpose meteorological applications.
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Lidar
Our Lidar offerings are useful for a range of applications within the wind energy industry. The table below presents some of the most common uses of the various Lidar systems, but it is by no means an exhaustive list. Please contact us at sales@nrgsystems.com to ask about the practicality of using Lidar for other applications not listed here.
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MEMS Optical Sensor Test
For optical sensor test Cohu offers a variety of solutions being driven by requirements for tri-temp, parallelism and stimulus spacing. Customized optical stimulus units are integrated into Cohu’s test handling systems. For light detector test, we implement different types of light sources, such as infrared, ambient- and colored light. We offer different solutions for 3D image sensors combining emitter and receiver tests of LiDAR, Time of Flight and Structured Light devices.