

Lightweight and high‑precision, the CR620 Collaborative Robot delivers flexible human‑robot collaboration, fence‑free installation and rapid deployment. Boasting ±0.02 mm repeat‑positioning accuracy, it enables flexible automated production across multiple industries. It replaces human operators for repetitive, precise and high‑intensity tasks, supporting both mass standardized manufacturing and multi‑variant small‑batch flexible workflows. It serves as core equipment for shop‑floor automation upgrades.
The 3C‑electronics sector represents its primary application field for auxiliary production of mobile phones, computers, home appliances and electronic components. It accurately executes PCB insertion, precision‑component assembly, automatic screw tightening, screen sealant dispensing, component sorting, finished‑product visual inspection and assembly‑line material loading‑unloading. It addresses pain‑points of manual labor such as inconsistent accuracy, unstable efficiency and fatigue‑triggered mistakes, meets high‑precision and clean‑room production requirements within electronics manufacturing, and effectively raises finished‑product yield rates. Within the automotive‑components industry, the CR620 Collaborative Robot handles small‑part processes for automotive lamps, interior trims, wiring‑harness connectors and miniature metal hardware. Its tasks cover assembly, adhesive dispensing, sorting, deburring and grinding. It takes over highly‑repetitive manual work and satisfies quality standards for automotive‑component production. The robot can be flexibly redeployed among different production lines.
In metal‑hardware‑processing workflows, it realizes loading‑unloading, classification sorting, edge grinding, polishing, rust removal and palletizing for small hardware workpieces. It completes fine post‑machining finishing operations and lowers occupational‑injury risks, dust pollution and inconsistent quality caused by manual grinding for mass‑volume hardware processing. For food‑and‑packaging industries, its clean and stable operation supports sorting of food outer packages, case packing, small‑material palletizing, auxiliary‑part assembly for packages and finished‑goods handling. It complies with hygiene specifications for food production and improves sorting‑and‑packaging efficiency on continuous assembly lines.
In high‑end manufacturing for medical devices and semiconductors, its superior precision delivers prominent advantages. It undertakes non‑destructive assembly, sorting, inspection and material‑handling tasks for delicate medical fittings and tiny semiconductor components. Low‑vibration stable performance prevents damage to fragile precision workpieces and meets stringent process requirements for high‑end manufacturing. In addition, it can be applied in new‑retail premises, intelligent warehousing and light‑duty logistics sorting for auxiliary operations such as small‑item classification, arrangement and warehousing handling. Compared with traditional industrial robots, the CR620 Collaborative Robot occupies minimal floor space, enables human‑robot co‑work and supports fast product change‑overs. Existing‑workshop‑layout modifications are kept to a minimum. It fits legacy‑production‑line retrofits and flexible‑line upgrades, and perfectly fulfils cost‑effective automation‑upgrade requirements for small‑and‑medium‑sized manufacturers, covering most conventional automated assignments across light‑industry and precision‑processing sectors.
