In 2022, the Chinese Academy of Sciences continued to make breakthroughs in cutting-edge research fields such as precision measurement, the development of high-end scientific instruments, and the validation of core components. Faced with the stringent measurement accuracy requirements of scientific research, as well as the need to inspect complex samples and large-scale components, the establishment of a stable, precise, and reliable precision inspection system has become a key pillar supporting the smooth progress of research projects. This project solution is specifically tailored to the research scenarios of the Chinese Academy of Sciences. It integrates the large-space measurement capabilities of laser trackers with the high-resolution surface capture technology of blue-light scanners. Centered around the Bozhida 8m×4m ultra-large high-precision granite measurement platform as the core base, the system meets the Academy’s core requirements for large-scale scientific samples and large-space precision inspection. It provides comprehensive precision inspection support for relevant research projects at the Academy, facilitating the efficient production of scientific results.
As semiconductor processes advance toward 3nm and below nodes, wafer inspection equipment demands near-demanding requirements for mechanical structure static stiffness, dynamic damping, and thermal stability. Traditional cast iron or steel bases are prone to micro-vibrations during high-speed motion, with uncontrollable thermal deformation becoming a bottleneck limiting inspection accuracy. In 2024, Bozhida addressed this challenge by introducing a next-generation “Mineral Castings + Carbon Fiber” composite structural solution.
In 2020, the global manufacturing industry accelerated its transition toward intelligent manufacturing, with automated equipment posing unprecedented challenges to the geometric stability of core components. As a leading supplier in the precision components sector, Bozhida is committed to providing international automation companies with product R&D solutions based on natural granite platforms, empowering high-end equipment innovation through materials science.
Electronics Manufacturing Industry
As chip manufacturing processes advance to 3nm and below, the precision and stability of automatic optical inspection (AOI) equipment have become the lifeblood of yield control. In 2025, Cyber Optics—a global leader in inspection solutions—collaborated with Bozhida, a core equipment base supplier, to jointly develop a next-generation AOI inspection platform. This in-depth R&D partnership leverages Bozhida's innovative combination of high-precision marble platforms and linear motor modules. The solution aims to overcome the physical limitations of traditional mechanical transmission systems, meeting the stringent defect detection requirements of world-class wafer fabs.
In response to the urgent global demand for ultra-precision machining in high-end manufacturing by 2025, Bozhida has established a deep partnership with an internationally renowned CNC machine tool manufacturer to jointly launch the R&D project for a new generation of five-axis machining centers. The core challenge of this project lies in overcoming the physical limitations of traditional mechanical structures to achieve ultimate dynamic stability. As an industry-leading supplier of equipment bases, Bozhida provided an integrated base solution based on advanced mineral casting technology.
3D Printing Industry Solutions
By 2025, the global additive manufacturing (3D printing) industry is undergoing a critical transition from prototype validation to large-scale direct production, with Industry 4.0 and smart factory concepts becoming widely embraced. As the aerospace, medical implant, and mold manufacturing sectors impose increasingly stringent requirements on printing efficiency, surface quality, and geometric accuracy, the dynamic performance and static stability of core structural components have become key bottlenecks in R&D. In response to this trend, Bozhida has introduced an innovative “mineral casting base + carbon fiber moving parts” composite solution, designed to provide ultimate stability and lightweight support for high-end 3D printing equipment, thereby redefining the standards for equipment base components.
In 2023, the explosive growth of Mini/Micro LED technology presented unprecedented challenges to the speed and precision of chip inspection equipment in the optoelectronics industry. As a global leader in LED chip manufacturing, San'an Optoelectronics urgently required a motion platform solution capable of balancing high dynamic response with ultra-high stability for its next-generation high-speed AOI inspection line. As the core equipment base supplier, BOSTAR successfully supported San'an Optoelectronics in upgrading its inspection platform through a combined solution of “artificial marble platform + linear motor module.” This project represents a typical successful application case.
In the aerospace sector, ground simulation testing is critical for validating spacecraft performance in orbit. In 2021, the Chinese Academy of Sciences (CAS) faced stringent challenges regarding ultimate stability and dynamic precision for test bases while advancing a cutting-edge spacecraft attitude control simulator R&D project. As CAS's long-term trusted supplier of precision equipment bases, Boxida was invited to participate in this product development. We provided an integrated solution based on “mineral castings + linear motor modules,” aiming to deliver an ultra-stable physical platform for spacecraft attitude simulation.
