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Quick reading even in tough applications
16 December 2019
SICK has developed the LMS4000, said to be its most powerful and accurate 2D LiDAR sensor to date for materials handling and intralogistics applications.
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It is said to read even at high speeds, in low ambient light or when goods, packages or parcels are matt black or glossy.
The sensor produces more than half a million measurement points per second to calculate the position, shape, volume or surface quality of goods, packages or components over a wide depth of field, and at ranges up to 3 metres.
It achieves a six-fold increase in measurement resolution, compared to previous LiDAR sensors even at very low remissions and no matter where the object is positioned, whether on a conveyor, in a container, carton or pallet, and whether it is free-standing or touching another object.
The SICK LMS4000 is suited for fast-moving goods handling where accurate dimensions, volumes or positions need to calculated, including automated palletising and depalletising, positioning tasks such as robotic pick and place, and shape and contour verification in quality control e.g. profiling of car bodies for collision avoidance on a paint line.
The LMS4000 works using visible red laser light and the time-of-flight measurement principle to deliver precise data on the position and size of a wide variety of objects and transmits this data to an external evaluation unit, often in conjunction with an encoder. With SICK’s Continuous Wave technology, the LMS4000 needs no external illumination or additional line lasers. Because it is considerably less sensitive to ambient light, and has a wide depth of field, it can be considered as a cost-effective alternative to vision systems for 3D object profiling in some applications.
SICK UK's Neil Sandhu says: “The LMS4000 is by far the most accurate 2D LiDAR scanner from SICK with some truly outstanding vital statistics, including a very high 600Hz frequency and an angular resolution of less than 1 degree. In addition, several devices can be mounted together to extend the measuring range without any danger of interference.
“The LMS4000 impresses because it achieves extremely high point-density measurements for accurate measurement and 3D profiling of goods at high speeds. So, our customers have a great opportunity to achieve better throughputs with excellent repeatability and reliability.”