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Technical parameters will be updated from time to time, please refer to the latest product
Product Parameters
Model: XD-TOF-05D | Ambient light resistance: ≤50000lux |
Lamp: status indication*1 zone group indication*3 | Response time: 67ms-30000ms (adjustable) typical value 134ms |
Switch output: NPN*3 equipment working status indication*1 | Shell color: blue |
Electrical connection: loose wire | Integrated rotation measurement error: ±30mm |
Switch drive: DC30V 50mA | Working energy consumption: 2W |
Anti-fluctuation: 10-55Hz, amplitude 0.75mm, XYZ triaxial, 2 hours per axis | |

Product Advantages




Protect operators in the shuttle storage area
The storage system refers to the three-dimensional storage of materials through the shelves in units of pallets, bins, and cartons. The entire system uses software scheduling, and the automatic handling of materials is carried out by lifting and handling equipment such as stackers, shuttles, shuttle boards, etc. When the workshop staff enter the shuttle track, the safety function should be implemented according to the standard used. The compact laser scanner XD-TOF-05D or XD-TOF-10H has switchable protection and warning areas.


Meet the safety laser scanner
With the in-depth development of intelligent manufacturing, the application of mobile robots in production workshops and warehousing and logistics has become more and more extensive, and has begun to rapidly extend to many fields such as medical care, education, e-commerce, and retail. How to ensure the safe operation of mobile robots in various usage scenarios has always been the primary factor in testing the performance of mobile robots.
The safety laser sensor is the "eye" of the laser navigation mobile robot and the core component of the mobile robot for positioning and navigation. The basic principle is to calculate the distance to the target by measuring the round-trip time between the laser emission signal and the laser echo signal. First, the lidar emits a laser beam, and the laser beam is reflected back when it hits an obstacle, and is received and processed by the laser receiving system, so that the time between when the laser is emitted to when it is reflected and received, that is the flight time of the laser , According to the flight time, the distance of the obstacle can be calculated. According to the function of lidar, it can be roughly divided into two categories, one is navigation laser and the other is obstacle avoidance laser. They can protect mobile robots safely.
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