Features
- Connect to the entire conveyor line for high-capacity processing.
- The intuitive UX/UI of the OP panel allows for flexible support of various pallet/bag sizes.
- Using a product sorting device, a vision-free, low-cost solution is implemented.
Results
| Key Benefits | More than doubling the maximum daily order picking capacity per worker, expanding the use of robots in logistics warehouses, and reducing worker musculoskeletal disorders and turnover rates. |
|---|---|
| Client Feedback | The introduction of robots reduced workloads, leading to increased employee retention and a more flexible response to sudden increases in cargo volume. Notably, lower body fatigue was significantly reduced by eliminating the need to carry picked items. The logistics robot system, integrated with the upper-level WMS system, reduced human error and boosted customer satisfaction. |
※ The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.
Recommended Use Cases
Logistics Robot 'KARRY' by DOGU
The autonomous logistics robot KARRY by DOGU KONGAN is a robotic solution designed for logistics centers, factories, and warehouses. It optimizes operations by either following a human worker to transport cargo or navigating autonomously to designated locations. The primary objective of this project was to automate heavy-load transport tasks to resolve the issue of cumulative worker fatigue. In this setup, human workers remain at fixed stations while the logistics transport process itself is fully automated. Featuring efficient and safe autonomous navigation, KARRY is easy to deploy in any logistics environment due to its intuitive user-recognition system and low barrier to entry.
500kg Heavy-Duty Lift AGV: Automated Logistics Solution
This logistics automation solution utilizes Sammi AGV's 500kg heavy-duty lift-type AGV to transport high-payload materials. Based on highly reliable drive unit design expertise, Sammi AGVs ensure stable driving performance and excellent traction. The system is designed for ease of use, featuring Excel-based programming that allows users to control and modify paths effortlessly. Furthermore, its low-voltage, high-efficiency design minimizes downtime associated with battery charging and replacement, enabling extended operation hours.
Near P: An Autonomous Mobile Robot Collaborating with Humans in Diverse Environments
Near P is a versatile Autonomous Mobile Robot (AMR) designed for both service and industrial sectors. This solution allows for highly flexible deployment by offering a customizable upper module tailored to specific client needs, making it adaptable to a wide variety of environments. Powered by AI machine learning, Cobot's Near P features advanced autonomous driving, obstacle avoidance, and target-following technologies, ensuring safe navigation in any space. Furthermore, the robot is managed through Near Plus, a proprietary operating system developed by Cobot, which enables anyone to easily operate the robot via mobile devices.
Features
- Connect to the entire conveyor line for high-capacity processing.
- The intuitive UX/UI of the OP panel allows for flexible support of various pallet/bag sizes.
- Using a product sorting device, a vision-free, low-cost solution is implemented.
Results
| ROI Period | 2 years |
|---|---|
| Key Benefits | More than doubling the maximum daily order picking capacity per worker, expanding the use of robots in logistics warehouses, and reducing worker musculoskeletal disorders and turnover rates. |
| Client Feedback | The introduction of robots reduced workloads, leading to increased employee retention and a more flexible response to sudden increases in cargo volume. Notably, lower body fatigue was significantly reduced by eliminating the need to carry picked items. The logistics robot system, integrated with the upper-level WMS system, reduced human error and boosted customer satisfaction. |
※ The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.










