

The original network connectors of our smart manufacturing equipment customers exhibit poor anti-interference capabilities, prone to packet loss and disconnection during high-speed transmission, and are incompatible with the new generation of miniaturized devices. Our company has customized fully shielded industrial high-speed connectors with IP67 protection, wide temperature range, and shock resistance. After the product was implemented, the packet loss rate was controlled within 0.01%, the equipment failure rate decreased by 45%, the service life was extended, long-term bulk supply was achieved, and the production line was ensured to operate stably 24 hours a day.

The onboard domain controller and radar module of intelligent driving solution providers are prone to electromagnetic interference due to their internal circuits, poor chip heat dissipation, and inadequate antenna protection, leading to unstable AI perception data. Our company customizes integrated shielding covers, heat dissipation covers, and antenna covers that combine electromagnetic isolation, thermal conduction and dissipation, and antenna protection. These products have passed AEC-Q automotive testing, ensuring pure radar and domain controller signals and stable support for AI multi-sensor fusion operations. They are now available for bulk supply to designated customers.

The original radar housing of the ADAS perception module in domestic new energy vehicle companies faced issues such as insufficient injection molding precision, sealing failure, and deformation under high and low temperatures, leading to abnormal radar detection after water infiltration on bumpy roads. Our company has customized a modified material precision radar housing, optimized the sealing grooves and internal positioning structure, and met the automotive-grade AEC-Q reliability requirements. The housing meets the standards for shock resistance, weather resistance, and electromagnetic shielding performance. It is verified simultaneously with EPS supporting components, achieving fixed-point mass production for multiple vehicle models and significantly reducing the rework rate of radar modules.

Our partner client is a domestic high-tech medical device enterprise that develops home non-invasive ventilators. The original shell air duct design was unreasonable, with difficult assembly and prone to aging after long-term disinfection. Our company customized medical-grade ventilator shells, optimized the internal air duct structure, achieved precision molding, and ensured resistance to disinfectant. The structure is highly strong, protecting the fan and sensor components, ensuring smooth airflow, meeting home medical safety standards, and enabling mass supply.

Our partner is a high-tech medical device enterprise specializing in household oxygen concentrators. The original large shell was prone to warping and deformation, with poor precision in the molding of heat dissipation and ventilation holes. Long-term alcohol wiping caused the shell to yellow and deteriorate. Our company customized a low-leaching medical-grade oxygen concentrator shell, which is precision-injected, optimized for ventilation and heat dissipation, resistant to disinfectant reagents, and has strong structural rigidity. It protects the compressor and molecular sieve components, ensuring stable continuous oxygen supply over a long period of time. It is now available in bulk.

The cooperating enterprise of this project is a national high-tech enterprise, specializing in the research, development, and manufacturing of industrial Internet and edge AI computing equipment, with a focus on AI intelligent gateways and industrial edge computing terminal devices. The equipment is required to perform high-speed acquisition of visual data and sensor data from the production line, and local AI inference, 24/7. The customer's original equipment suffers from issues such as network port packet loss, electromagnetic crosstalk, chip heat accumulation, and antenna signal attenuation. Our company provides a comprehensive solution of RJ45/SFP/USB connectors + shielding/heat dissipation/antenna covers, ensuring high-speed, stable, and long-lasting operation of AI network-connected devices

Domestic new energy vehicle companies have encountered issues with the original design of their onboard millimeter wave/ultrasonic radar housings, which lack sufficient shock resistance and waterproof performance. Additionally, the EPS steering connectors are prone to loosening under high-temperature conditions, affecting driving perception and steering safety. Our company has developed a dedicated precision housing for radar, which complements the EPS steering system connection components and has passed a full set of automotive-grade tests. The product is resistant to shock, high and low temperatures, and has improved assembly efficiency by 30%. It has successfully entered the mass production projects of vehicle companies and achieved stable batch supply.

Dongguan Yukun Electronics Technology Co., Ltd. has deep expertise in precision processing of electronic components. Addressing the high-density, high-power, and wide-operating-range heat dissipation needs of AI computing equipment, we developed precision aluminum heat sinks for AI servers and edge computing AI modules based on the national standard GB/T 3880.2 for aluminum and aluminum alloy sheet processing. Products use 6063 aluminum alloy precision forming process, optimizing thermal performance and structural design, solving industry pain points of AI chip high-power heat dissipation, poor operating condition adaptability, and insufficient batch consistency.