Electronic components in 3C industry
For small 3C components such as connectors, shrapnel, shielding covers, plastic buttons, micro screws, etc., used in mobile phones, laptops, smart wearables, and communication accessories, the flexible feeding and arranging robot achieves automatic sorting of unordered incoming materials, orderly feeding, and precise arrangement. It is suitable for a variety of irregular, thin-walled, and scratch-prone workpieces, ensuring no scratches, no bumps, and high compatibility for model changes. It replaces the tedious manual arranging process, adapts to flexible production of multiple specifications and small batches, solves the pain points of rapid product updates and frequent production changes in the 3C industry, and helps automate the 3C production line, improving arrangement efficiency and product yield
Electronic semiconductor industry
Our solutions cover a wide range of precision semiconductor materials, including chips, wafer handling accessories, SMD resistors and capacitors, semiconductor pins, packaged components, and more. Leveraging vision-guided flexible gripping technology, we enable automatic sorting, positioning, orderly tray arrangement, and tray loading of bulk parts. We offer customized flexible picking solutions for semiconductor materials that require high precision, are static-sensitive, and prone to breakage. Our systems are compatible with both pre‑SMT loading and post‑packaging tray handling processes, achieving full‑process automated loading and tray handling for semiconductor components, while meeting the high standards of cleanroom production environments.
Automotive new energy industry
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Our solutions are designed for a wide range of new energy automotive components, including power battery terminal posts, copper terminals, plastic insulating parts, new energy wiring harness terminals, small automotive sensor parts, clips and fasteners, and more. The robot automatically sorts mixed incoming materials, arranges them in orderly trays, and feeds them into separate bins. Capable of handling workpieces made of metal, plastic, or composite materials, our systems are well-suited for mixed-model production in new energy production lines, effectively addressing the challenges of diverse component specifications, messy incoming materials, and low manual tray handling efficiency. Our solutions are applicable across the entire industrial chain of power batteries, automotive electronics, and new energy structural components.
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Hardware components industry
Our solutions handle precision stamped hardware components, including springs, rivets, shaft pins, small turned parts, and stamped metal clips. They automatically break apart unordered stacked incoming materials, perform flexible sorting, orient and align the parts, and precisely load them into trays. These solutions address the feeding challenges caused by burrs, jamming, and wide dimensional variations of metal workpieces. A single machine is compatible with multiple hardware products and supports quick changeovers, replacing manual sorting and tray handling, and significantly reducing labor costs. It is well-suited for mass production lines in precision metalworking and hardware fastener manufacturing.
Rubber and plastic industry
Our solutions are adapted for soft, easily deformable rubber and plastic workpieces, including rubber sealing rings, silicone keypads, plastic housings, small injection-molded parts, rubber plugs, and irregular plastic clips. Using flexible bionic-inspired gripping technology, we prevent crushing, deformation, and material sticking. Our systems automatically sort, arrange in trays, and dispense into boxes for loose plastic and rubber parts. They are compatible with post-injection take-out and post-vulcanization sorting and tray arrangement, effectively addressing the feeding challenges of soft, delicate, and irregularly shaped rubber and plastic components. Our solutions are suitable for full-process automation in injection molding and rubber forming operations.
