Engineered for maximum density, structural durability, and seamless robotic integration.
How structural precision and robotic coordination drive high-throughput logistics automation.
Seamless integration of hardware engineering and advanced warehouse control logic.
Unlocking cost efficiency, engineering flexibility, and rapid scaling capabilities.
We use high-tensile structural steel (Q235B and Q345B) sourced from China's leading mills. This structural base provides superior deflection resistance and seismic performance, critical for high-bay rack structures carrying dynamic loads.
China's manufacturing ecosystem places steel fabrication, high-precision machining, electric motor assembly, and PLC development within a unified geographic cluster. This reduces lead times and accelerates product optimization cycles.
Our advanced automated lines (including automatic spot-welding and high-capacity roll-forming) allow us to execute tailored designs without compromising output speed, passing structural and financial benefits directly to you.
Take a look inside our high-precision fabrication facility where raw materials are transformed into certified industrial automation structures.
Engineered for local building codes and complex global integration requirements.
Tailored engineering strategies for specific industries and operational demands.
In temperature-controlled storage, space represents a direct utility cost. Our high-bay AS/RS systems maximize vertical volume, letting operators run high-density storage down to -25°C. Selecting raw materials that maintain structural strength at low temperatures ensures long-term operational safety.
Heavy structural components, automotive stampings, and raw materials demand high loading capacities. Our multi-tier mezzanine floors and heavy-duty structural steel racking systems handle payloads exceeding 3,000 kg per pallet position, and are engineered to withstand continuous heavy forklift activity.
To support rapid picking processes, e-commerce warehouses require reliable vertical space utilization and quick access. Our multi-tier racking platforms and plastic tote configurations organize small-part items systematically, enabling quick processing for automated sorting systems.
Answers to key integration, structural, and procurement inquiries.
Every high-bay structure undergoes FEA (Finite Element Analysis) simulating static loads, dynamic forces from high-speed cranes, and seismic parameters. Calculations align with FEM 10.2.02 and RMI standards. We verify our analysis using structural tests on raw materials and welded connections prior to production.
The WCS2B-LS211 PLC automation controller natively supports Profinet, EtherCAT, and Modbus TCP/IP. It acts as a bridge between the physical conveyor/crane machinery and the Warehouse Control System (WCS). Our software architecture offers RESTful APIs and TCP sockets for real-time telemetry communication with WMS platforms.
Yes. We provide complete design-to-build customization. Our engineering team designs support structures to accommodate column spacing requirements, load parameters (ranging from 300kg/sqm up to 1500kg/sqm), and specific safety accessory configurations like kickplates, handrails, and loading gates.
We use food-grade SUS304/SUS316 stainless steel wire mesh configuration for food processing environments. For industrial racking and outdoor barriers, we provide hot-dip galvanizing (complying with ASTM A123) or high-durability electrostatic powder coating to ensure rust resistance.
Ancillary equipment and control systems for comprehensive warehouse optimization.