廣州市朝德機(jī)電設(shè)備有限公司
:
:鄭杰克、向
: novosor : www.novosor.com
地址:廣州市越秀區(qū)朝天路66號(hào)3F
業(yè)代理德ASTYX GmbH Communication & Sensors傳感器
產(chǎn)品系列:
 | Product ID 2012 |
|  |  | | Product ID 2013 |
|
 | Continous, high accurate distance measuring device |
|  | Continous, very high accurate distance measuring device |
|
Measuring rate up to 4kHz |
| Measuring rate up to 5kHz |
|
Operating temperature -20°C .. +80°C |
| Operating temperature -20°C .. +60°C |
|
Resolution in range 8bit (256 discrete distance steps) |
| Resolution in range 10bit (1024 discrete distance steps) |
|
Resolution in distance down to 1 micrometer |
| Resolution in distance down to 200 nanometer |
|
|  |  | | Photo of the sensor and simulation of the electric field strength within the sensor detection range |
|
 |
High frequency technology offers an extremely accurate distance measuring proximity sensor principle. In the close nearfield the resolution is better than 200 nanometer. The function is based on the shift of the resonance frequency of a cylindrical ceramic resonator by approaching conductive targets. Shown in the top photo is the electric field strength (red high, blue low) inside and outside the ceramic resonator. If a target enters the outside electromagnetic field of the sensor, the resonance frequency is shifted. The absolute value of the frequency shift determines the distance to the target. |
 |  | |  | Typical applications: | | Distance to target | | |  | | | The sensor measures the distance of the tool to the surface (i.e. welding, cutting or slicing) | | Thickness of media | | |  | | The sensor measures the thickness of paper. It determines how many layers of paper are present or if there is no paper. | | Application examples: |
| |
 |  |
| Detecting paper layer number by paper thickness (english, PDF) |
 |  |
| Detecting layer number of corrugated cardboard by thickness (english, PDF) |
 |  |
| Detecting layer number of Tetra Pak (TM) board by thickness (english, PDF) |
 |  |  |
Further Information: | |
|
| Proximity brochure (english, PDF) |
|
Handling: | |
 | Mount the sensor close to the target surface to measure the distance. The sensor works for any metallic material of the target surface like steel, alumina, copper or brass. A spot area straight in fornt of sensor is sufficient. | | After.connecting the sensor to the contoll system and powering on, the sensor starts transmitting the measured distance data. If the target is moved the sensor outputs continously the actual distance. | | The desired update rate and observation range are programmed before delivery. |
| |
Typical applications: | | Distance to target | | |  | | | The sensor measures the distance of the tool to the surface (i.e. welding, cutting or slicing) | | Thickness of media | | |  | | The sensor measures the thickness of paper. It determines how many layers of paper are present or if there is no paper. | | Application examples: |
| |
 |  |
| Detecting paper layer number by paper thickness (english, PDF) |
 |  |
| Detecting layer number of corrugated cardboard by thickness (english, PDF) |
 |  |
| Detecting layer number of Tetra Pak (TM) board by thickness (english, PDF) |
 |  |  |
Further Information: | |
|
| Proximity brochure (english, PDF) |
|
Handling: | |
 | Mount the sensor close to the target surface to measure the distance. The sensor works for any metallic material of the target surface like steel, alumina, copper or brass. A spot area straight in fornt of sensor is sufficient. | | After.connecting the sensor to the contoll system and powering on, the sensor starts transmitting the measured distance data. If the target is moved the sensor outputs continously the actual distance. | | The desired update rate and observation range are programmed before delivery. |
| |
|  |  | | measures the position of the piston over the full operational length of the hydraulic cylinder |
|
|  |  | | Due to its microwave principle it works even under hard environmental conditions |
|
|  |  | | operates inside the oil filled area |
|
|  |  | | is compley integrated - only electrical wiring is necessary |
|
|  |  | | offers high update rate and resolution |
|
 | Product ID 2012 |
|  |  | | Product ID 2013 |
|
 | Continous, high accurate distance measuring device |
|  | Continous, very high accurate distance measuring device |
|
Measuring rate up to 4kHz |
| Measuring rate up to 5kHz |
|
Operating temperature -20°C .. +80°C |
| Operating temperature -20°C .. +60°C |
|
Resolution in range 8bit (256 discrete distance steps) |
| Resolution in range 10bit (1024 discrete distance steps) |
|
Resolution in distance down to 1 micrometer |
| Resolution in distance down to 200 nanometer |
|
|  |  | | Photo of the sensor and simulation of the electric field strength within the sensor detection range |
|
 |
High frequency technology offers an extremely accurate distance measuring proximity sensor principle. In the close nearfield the resolution is better than 200 nanometer. The function is based on the shift of the resonance frequency of a cylindrical ceramic resonator by approaching conductive targets. Shown in the top photo is the electric field strength (red high, blue low) inside and outside the ceramic resonator. If a target enters the outside electromagnetic field of the sensor, the resonance frequency is shifted. The absolute value of the frequency shift determines the distance to the target. |
|  |  | | measures the position of the piston over the full operational length of the hydraulic cylinder |
|
|  |  | | Due to its microwave principle it works even under hard environmental conditions |
|
|  |  | | operates inside the oil filled area |
|
|  |  | | is compley integrated - only electrical wiring is necessary |
|
|  |  | | offers high update rate and resolution |
|
77GHz Automotive Radar Sensors* |
 |
Stop and Go operation, Crash impact prediction, parking assistance |
 |
Recent research into traffic flow has shown that a traffic jam with related accidents is mainly caused by uncontrolled braking and accelerating of the individual vehicles. Radar sensors which measure the distance to the vehicle in front, and record the relative speed, provide the data base for a regulating system which adjusts driving behavior automatically to the needs of the traffic flow. Sensors for front obstacle collision avoidance, stop & go and impact prediction place a safety belt around the vehicle to avoid accidents. |
 |
77 GHz radar sensors are available in state of the art technology: |
 |
Compact planar design with microstrip patch antennas and active components mounted on antenna surface to fulfil high volume, low cost, fully automated production. |
 |
Main specification data are: |
 |
Transmitter operates at 76 to 77 GHz with FMCW modulation |
 |
Stop and Go operation covers a distance from 1 to 50 m and has in azimuth three 10° electronically switchable antenna beams at -10°,0°,+10°. |
 |
Enhanced angle resolution of 1° by computation of the several antenna beams between -10° to +10°. |
 |
Parking assistance covers a distance from 0 to 5 m and has in azimuth five 30° electronically switchable antenna beams at -60°,-30°,0°,+30°,+60° |
 | |  | |  | | | Collision warning radar frontend 3 antenna beams / -10° 0° +10° Size with radom: 98 x 92 x 9 mm | | | 77GHz automotive brochure (PDF) |
| |