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cellumation’s Compact, Modular cv.DEPAL Simplifies and Improves Depalletizing Systems

Organization: cellumation
Country: Germany
Website: www.cellumation.com
Year Founded: 2017
Number of Employees: 51-100

cellumation’s novel cv.DEPAL solution can sort objects onto three different conveyor lines, eliminating the need for additional depalletizing lines for many applications.

Description:
RBRlogoIn 2021, cellumation, the producer of celluveyor (cellular conveyor) material flow systems used in manufacturing and logistics environments, released the celluveyor DEPAL (cv.DEPAL) system, a delayering (layer separation) system for automated depalletizing applications. The system consists of a flat array of hexagonal robot cells, each with three wheels, that can move multiple flat based objects simultaneously and independently in all directions. A 3D vision system recognizes and monitors moving objects, providing real-time position data. The system corrects any deviations automatically.

Analysis:
The use of layered pallets of goods and material for transportation is indispensable for many industries. Robotic palletizers and depalletizers efficiently automate labor- and time-intensive tasks, increasing the speed and accuracy of operations, while reducing damage to goods. Depalletization typically requires the delayering of goods (of same or different types), the process of breaking the layers into separate items for further processing.

Delayering automation solutions are provided by a number of suppliers, but they often require a large surface area, and can only move separated objects through a single exit point. cellumation’s novel cv.DEPAL solution can sort objects onto three different conveyor lines, eliminating the need additional depalletizing lines for many applications. Moreover, delayering does not require prior knowledge of the composition of the layers. Due to the hexagonal shape of the individual cells in the cv.DEPAL offering, system configuration and maintenance is greatly simplified, and the area required much reduced compared to traditional layer separation solutions. – Dan Kara

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  • Home
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    • Batteries / Power Supplies
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  • Development
    • Artificial Intelligence
    • Human Robot Interaction / Haptics
    • Mobility / Navigation
    • Research
  • Robots
    • AGVs
    • AMRs
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    • Collaborative Robots
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