LUXONDES. See the electromagnetic waves. Product 2018 / 19
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1 LUXONDES See the electromagnetic waves Product 2018 / 19
2 RADIO WAVES DISPLAY The Luxondes radiofrequency to optical conversion panel directly displays the ambient EM-field or the radiation of a transmitting DUT that is placed in front of it. It comprises 400 (20x20) autonomous identical sensors working as elementary visualization pixels. Elementary antennas are printed directly on each sensor s PCB. The representation of the electromagnetic field is provided through a gradient of colors. Successive photography can provide comparisons between different testing conditions. On the side of the panel you can change the sensitivity and dynamics of the system. APPLICATION Direct mapping of the received field Antenna MIMO optimization Time reversal evaluation Energy focusing evaluation Radiation pattern observations... Technology: Digital Panel area : 1m² Number of sensor : 400 (20x20) Sensitivity : -60 dbm to 0 dbm Minimal dynamic range : 3 db Bandwidth : 50 MHz to 3 GHz Number of displayed colors : 1024 Sensitivity adjustment: Min and max threshold Real time function or delay Delay / MaxHold Number of color bar : 4 Viewing exceeded threshold Weight : 30 Kg MULTI-PANEL Area : 2, 3, 4,...9m² External control box for adjustement External synchronizing input Panel (3x3) Panel (3x2)
3 RADIO WAVES DISPLAY PC This new system for measuring and visualizing électromagnétisme radiation includes 64 sensors operating between 50 MHz and 3 GHz. Bidirectional communication (USB) is established between all sensors and a pc. This one allows to adjust in real time the sensitivity and the dynamics as well as the speed of acquisition. The software developed allows the recording and the reading of the data as well as an in-depth analysis of the results. Fast and easy to adjust, the RWD saves time in antenna radiation pattern optimization, or quality control; for example in the analysis of communication signals of connected objects or in the study of the focusing of waves (time reversal, 5G communication). It is an ideal didactic tool for teaching and a powerful communication tool for present scientific work based on electromagnetic radiation. APPLICATION Direct mapping of the received field Antenna MIMO optimization Time reversal evaluation Energy focusing evaluation (5G) Radiation pattern observations... Panel area : 45 cm x 45 cm Number of sensor : 64 (8x8) Sensitivity : -60 dbm to 0 dbm Minimal dynamic range : 3 db Bandwidth : 50 MHz to 3 GHz Number of displayed colors : 1024 Real-time adjustment of sensor sensitivity. Dynamic adjustment. ( from 60 db to 3 db ) Acquisition speed. ( max 50 frames / Sec ) Recording of data. (. bin &.dat ) Replay the data. Max Hold function. Sequence function. Graph of the average of different areas. Selection of the number of sensors displayed Direct visualization in 3D on PC acquisition of 64 sensors. Setting thresholds in real time. 3D visualization software and data analysis. Recording format.dat.bin Selection of different sensors to visualize the variation over time. Image sequence function
4 GYROSCANFIELD The Gyroscanfield is a 3D, real-time measuring equipment whose function is to directly visualize the electromagnetic radiation of a Device Under Test (DUT) in a simple and fast way. 16 sensors with detachable antennas are spread over a 60 cm diameter ring. A set of different antennas is available corresponding to your requested frequency and sensitivity ranges. Each elementary sensor around the loop converts the electromagnetic received energy in a corresponding calibrated range of visible colors by using RGB LEDs. Each sensor has an A/D converter for backup and data mining. The operation of the measuring equipment and the acquisition of data is done using an Android tablet PC. DC powering of the DUT can be performed either from the top and / or the bottom of the instrumented loop. APPLICATIONS Radiation patterns of antennas Comparison between different radiating systems Quality control Product Development Radiation measuring cables and connectors Shielding effectiveness ADVANTAGES Direct visualization of the electromagnetic field, either continuous wave or, modulated at frequencies up to several tens of µs, compatible with the time slot durations of current cellular radio standards (analog conversion). Sensors compatible with detachable antennas and the range of products LUXONDES. Fast acquisition speed Automatic recognition of maps and antennas taking into account the antenna factor Size : (H) 100 x (L) 75 x (P) 85 cm Support roller : (H) 85 cm Rotation speed : 15 Turns /sec max. Acquisition : 720 Points / Turn / Sensor Weight : 40 Kg Power supply : 230 VAC 50 Hz Comparison measurement and simulation a WiFi antenna Radar curve of the object under test 3D diagram an antenna Wireless
5 SWING ARM SCANNER The swing arm scanner allows simple and fast mapping of electromagnetic radiation. Different frequency ranges are possible upon the selected antenna card. Near field measurement of the characterization of electromagnetic pollution generated by electronic components arranged on a printed circuit activity fields is important in electromagnetic compatibility measurements. A widely used principle consits in a measuring table on which the electronic board is in operation. A controlled movement of two or three axis sensor is moved in a point to point parallel above the table in a predetermined plane mesh. Each measurement point in the mesh is stored. Then, a mapping field is built and the effective provision of the card under test is indicated on the field map obtained. This measurement requires certain precautions and a post-processing. The swing arm scanner overcomes some of these limitations by providing quick, high resolution direct measurements. The scanner is made from composite materials so as to remain neutral for EMC. APPLICATIONS Radiation measurements of an electronic card Comparison between different radiating systems Location of sources Magnet mapping (hall effect sensor) Transformer mapping (BF sensor)... Photo of the object under test Led RVB Sensor: Removable antenna board sensor card ADVANTAGES Visualization of the electromagnetic field in real time (analog conversion) Full scale digital conversion between thresholds Removable antenna cards compatible with the LUXONDES product range. Easy to use / intuitive controls Automatic recognition of antenna cards and taking into account the antenna factor Direct analysis of the results with the Androïd viewer Size : (H) 200 x (L) 700 x (P) 420 Duration for a scan A4 : 30 Sec Number of point Max X : 4000 Y : 1000/mm weight : 20 Kg Power : 230 VAC 50 Hz Visualization of results in augmented reality CI Mapping at 16MHz with and without ground plane. Cartography of a magnet with a hall sensor.
6 ELECTROMAGNETIC LENS The electromagnetic loupe can display magnetic radiation. This model has 16 sensors. Each sensor is composed of a loop and a detector whose bandwidth is between 1 and 440 MHz. The detected signals are then sampled from synchronously triggered by an internal trigger. The visualization is performed with leds positioned above each sensor. Two potentiometers are used to adjust the low threshold and the high threshold to always get the maximum visible dynamics. APPLICATIONS Direct mapping of the field Location of point radiation Screening comparison Antenna emission comparison Follow-up of a disturbance Realization of practical work (teaching)... EDUCATION -Pratical work Magnetic field in a coil Checking shield, ground plane Radiation of an electronic card (CM PC) Coupling between two coils Communicating objects (433MHz) Remote controls, module 433, magnetic sensors Setting the dynamic range in dbv. ( Sensitivity of sensors ) Technology: Digital Case size: 20 x 25 x 6 cm Size of a sensor: 1 x 1 cm Number of sensors: 16 Sensitivity: -91 dbv to +4 dbv Dynamic min: 3 db Bandwidth: 1 MHz to 440 MHz Sensitivity adjustment: min threshold and max Threshold technologie : numérique Coil of N turns Frequency generator Exemple TP Dynamic SETTINGS Min threshold and Max threshold Magnetic field H Visualization of the magnetic field radiated by a coil in function: Number of turns Diameter of the coil Frequency, Amplitude,...
7 SENSORS - ANTENNA CARD Antenna cards are built according to a standard format smart card. They include the antenna and the RF detector. For specific applications, we realize the HF portion (Amplifier, filters,...)
8 ANDROID APPLICATION XML / NFS standard The XML / NFS standard: TR IEC: 2010 will define a universal interchange format for data from different Near Field Scan (Near Field Scan). Its format is suitable for different 2D or 3D coordinate systems for a frequency or temporary domain. SIMPLE VIEWER Direct reading of data from: Gyroscanfield, CT Scanner, Kinect XML format import, OBJ, FFS. Data comparison between DATA1 and 2. Multi-frequency analysis. Visualization of the object under test (image / obj 3D). 2D chart for planar data. Radar graph for spherical data. CUT function for spherical data. Compatible coordinates: Cartesian, cylindrical and spherical. Compatible format: Amplitude Phase, Real Imaginary. Specific Mir display values greater than zero.... QRCODE FUNCTION Paste a QRCode on the object under test and download the measurements directly with the viewer. Insert a QRCode into your reports. Download examples on the luxondes website. direct comparison measurement and simulation 3d radiation diagram of a wifi antenna planar mapping inside a vehicle AUGMENTED REALITY Visualization of measurements in RA. Sectional view of 3D diagram. Real mapping of the EM environment. Compare the evolution of measurements over time. Compare measurement simulation on the object under test. Visualization of measurements in Augmented Reality
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