marosol

Heavy logistics automation success! Omron AMR automatically returns lead tabs ๐Ÿ“ฆ๐Ÿค–

์ˆ˜ํ–‰์—…์ฒด
๋กœ๊ทธ์ธ ํ›„ ํ™•์ธ ํ•ด ์ฃผ์„ธ์š”
์˜ˆ์ƒ ํ”„๋กœ์ ํŠธ ๊ธฐ๊ฐ„
12์ฃผ
์ ์šฉ๋ถ„์•ผ
Industry > SemiconductorยทDisplay, Application > Logistics, Sector > Logistics
Industry > SemiconductorยทDisplayApplication > LogisticsSector > Logistics
#amr#logisticsrobot#omron#leadtabreturn#smartlogistics#marosol

Process Overview


This case study demonstrates the automation of heavy-duty product transport using Omron AMR logistics robots.

The client implemented a logistics automation system to reduce inefficiencies and labor burdens associated with repetitive, heavy logistics tasks. Specifically, they sought to reduce costs and maximize logistics efficiency through automated palletizing and return operations.

This solution automates simple, repetitive tasks like product movement and loading, thereby increasing the efficiency and accuracy of the shipping process and reducing worker burden, thereby enhancing safety and productivity.



Project Background and Objectives


The client recognized the need for automation in heavy cart transport and lead tab return operations and sought to improve logistics operational efficiency and reduce operating costs by introducing AMRs.

This project aimed to:

  • Automating lead tab return and cart transport
  • Improving worker productivity and ensuring safety
  • Enhancing efficiency and flexibility in the logistics field

๊ตฌ์„ฑ์š”์†Œ

๋กœ๋ด‡

Omron AMR logistics robot LD-90: Moves autonomously while avoiding obstacles, equipped with a two-row conveyor, and loads and returns up to 6 lead tab trays. ; Omron AMR logistics robot LD-250: Equipped with a lift, transports up to 64 lead tab trays by combining with a cart, and moves autonomously to the destination after automatically recognizing the cart.

์ฃผ๋ณ€๊ธฐ๊ธฐ

Robot upper module: Customization for tasks is possible, and productivity is increased by automatically processing repetitive tasks. ; Robot station: Loads the cart to be transported by the robot to support stable logistics return. ; Composite inspection machine: Inspects the trays returned by the robot, and automatically detects defective products. ; Buffer conveyor: Loads the trays after inspection, and provides a buffer to help workers load the cart. ; Tray cart: Up to 64 trays can be loaded, and is transported by LD-250.

์ž‘์—…์ˆœ์„œ

STEP 1.Calling the operator: Click the button โ†’ Receive command to move LD-90 โ†’ Autonomous driving to the designated location
STEP 2.Tray loading: Manually load trays onto the LD-90 conveyor โ†’ Return to the composite inspection machine
STEP 3.Inspection task: Inspector docking โ†’ Tray inspection โ†’ Buffer conveyor loading after inspection
STEP 4.Cart loading: The worker manually loads the tray onto the cart.
STEP 5.Cart transport: Call LD-250 โ†’ Cart automatically recognized and transported
STEP 6.End of work: The robot automatically returns to the waiting area after work.

โ€ป ๋งˆ๋กœ์†” ๋‚ด์˜ ๋ชจ๋“  ์ฝ˜ํ…์ธ ๋ฅผ ๋ฌด๋‹จ์œผ๋กœ ๋ณต์‚ฌ ๋ฐ ์žฌ์ฐฝ์ž‘ํ•  ๊ฒฝ์šฐ ๋ถ€์ •๊ฒฝ์Ÿ๋ฐฉ์ง€๋ฒ• ๋ฐ ์ €์ž‘๊ถŒ๋ฒ•์— ์œ„๋ฐ˜๋  ์ˆ˜ ์žˆ์Œ์„ ๋ฐํž™๋‹ˆ๋‹ค.

์ถ”์ฒœ ๋„์ž…์‚ฌ๋ก€

์ด๋ฏธ์ง€ ์—†์Œ

Indoor Logistics Transport and Loading Using VisionNav VNPA15๐Ÿ—๏ธ

Process Overview This case study showcases a logistics automation solution that uses VisionNav's VNPA15 autonomous mobile robot (AMR) to automate the transport and loading/stacking of packaged products in indoor material-handling operations. Built on robust safety functions, the solution minimizes changes to existing workflows while enabling unattended load/unload tasks, and provides effective monitoring and control of real-time operations.

AMR logistics robots introduced to manufacturing factory โœจ Logistics automation that quickly resolves even 1 ton of waste drbris (2 KUKA KMP 1500P logistics robots)

AMR logistics robots introduced to manufacturing factory โœจ Logistics automation that quickly resolves even 1 ton of waste drbris (2 KUKA KMP 1500P logistics robots)

Process Overview This case study demonstrates the installation of a KUKA KMP 1500P logistics robot at Bigwave Robotics (Marosol) to transport rollers and scrap debris within the space manufacturing facility. The KMP 1500P autonomously handles up to 1 ton of scrap debris over a 1.2 km distance and automatically transports heavy-duty roller modules weighing up to 1 ton. Furthermore, sensors embedded in the KMP 1500P enabled the development of an unmanned system capable of safely transporting heavy-duty materials. Project Background and Purpose Automated unmanned transport using autonomous robots Robots perform simple, repetitive tasks Safe operation of heavy-duty products using various sensors Remote control and monitoring using SOLlink

Vulcan, the AI โ€‹โ€‹Logistics responsible for 75% of Amazon's warehouses! ๐Ÿ‘

Vulcan, the AI โ€‹โ€‹Logistics responsible for 75% of Amazon's warehouses! ๐Ÿ‘

This implementation case demonstrates the advancement of automated product picking and storage operations using 'Vulcan' robots introduced in Amazon's Logistics warehouses. Amazon adopted these tactile-based robots to simultaneously ensure efficiency and precision in storage tasks that require repetitive and intricate detail. Utilizing AI and tactile sensor-based grippers that operate like human hands, Vulcan automatically stores products by adjusting pressure based on weight or material and efficiently utilizing space. This has further expanded the accuracy and scope of Amazon's Logistics automation.

๋Œ€ํ‘œ์ „ํ™”: 080-858-5050

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