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Industrial Automation
LiDAR sensor picoScan100 - SICK
With a large scanning range, fine angular resolution and high sensitivity, the picoScan100 2D LiDAR sensor from SICK, successor of the TiM series, is setting new standards. It also reliably detects small and dark objects.
The sensor delivers exact measurement data and features integrated processing of data that is transmitted through various communication interfaces. The compact picoScan100 equipped with multi-echo technology has a rugged housing and ensures reliable measurement results even under harsh ambient conditions. It can be used in demanding industrial applications both in- and outdoors. The picoScan100 from SICK, available in three variants (Core, Prime and Pro), can also be adapted with other features to meet individualized requirements.
The sensor delivers exact measurement data and features integrated processing of data that is transmitted through various communication interfaces. The compact picoScan100 equipped with multi-echo technology has a rugged housing and ensures reliable measurement results even under harsh ambient conditions. It can be used in demanding industrial applications both in- and outdoors. The picoScan100 from SICK, available in three variants (Core, Prime and Pro), can also be adapted with other features to meet individualized requirements.
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Features
Advantages
Applications
F.Fonseca is the representative of SICK in Portugal.
- Compact, rugged housing;
- Scanning range: 75 m (90 % remission); angular resolution: 0.5° to 0.05°;
- Dynamic Sensing Profiles;
- High measurement accuracy – measurement noise, scan field flatness and angular accuracy;
- Scanning frequency: 15 Hz to 50 Hz;
- Multi-echo technology;
- Drivers: ROS, C++ and Python;
- System plug with configuration memory.
Advantages
- Space-saving sensor integration;
- Precise detection of small and dark objects, even over large distances;
- Can be adjusted flexibly to different application requirements;
- High measurement availability, even under harsh outdoor ambient conditions;
- Efficient data processing inside the sensor ensures high availability in applications, e.g. for localization and navigation of autonomous mobile robots (AMRs);
- Flexible connection technology and data integration;
- High cost efficiency: Low acquisition and operating costs;
- Flexible mounting and fast device exchange.
Applications
- Automation, even in outdoor areas;
- Driver assistance systems for industrial trucks;
- Monitoring of areas and objects in the field of building automation;
- Object measurement and detection;
- Simultaneous localization and mapping (SLAM) and collision avoidance for AMRs.
F.Fonseca is the representative of SICK in Portugal.
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