Application of the Xindashida AR81030B SCARA Robot in High-Speed Layout Workstations for the Photovoltaic Industry
2025-07-25
Project Background
The top 10 global component manufacturers have a combined production capacity exceeding 600 GW, and line speed has become a key metric for capturing market share. Meanwhile, companies that previously relied heavily on subsidies are shifting toward technology-driven cost reductions, making faster production lines a critical strategy for maintaining market competitiveness. With growing demand in regions such as India, the Middle East, and Africa, companies need to respond swiftly to diverse orders by deploying high-speed production lines. The overall improvement in the takt time of stringing machines is placing even higher demands on downstream layout machines.
Dual-Scara photovoltaic high-speed layout workstation, equipped with two Xinsida AR81030B SCARA robots, featuring independently added bottom axes for forward movement, and designed for next-generation high-speed photovoltaic production lines.
Customer needs
● The overall takt time of the stringing machine has been improved, raising the takt time requirements for the production line.
● The production line has mixed-model production requirements and high flexibility demands;
● The production line has a short ramp-up period for capacity, but the single six-axis solution involves complex motion debugging.
Xinshida Solution
Proposal Description
Select the Xindashida AR81030B SCARA robot, equipped with an independently mounted additional axis at the bottom, and integrate it with a high-resolution teach pendant camera for position correction and alignment.
Scheme advantages
• Automatic calibration process package and a photovoltaic layout-specific interface enable rapid switching between different 182/210 model products, free switching among production line configurations, and flexible manufacturing.
• The Xindashida integrated vision control solution is also compatible with its mainstream cameras, offering exceptional cost-effectiveness.
• Utilizing optimal path and optimal acceleration algorithms, the system calculates the optimal path in real time and plans the motion trajectory, enabling even complex processes to be completed in one seamless flow.
• Integrated aluminum alloy body + optimized using finite element analysis, boosting deformation resistance by 30% and ensuring rigid stability even at high speeds;
• Multi-axis synchronization with zero delay ensures smooth, jerk-free motion even at high speeds, significantly enhancing the stability of continuous operations.
Scheme Composition
The project is equipped with two sets of Xindash AR81030B SCARA robots.

Associated products
AR81030B SCARA robot
Project Results
With 23 years of accumulated technological expertise and innovative strength, the Xindashida Zhongweixing brand is redefining the efficiency limits and quality standards of industrial robots. With exceptional performance—“as fast as lightning yet as stable as a rock”—it’s pushing beyond the traditional technological boundaries of industrial robots and empowering the next-generation photovoltaic module production lines with groundbreaking innovations.