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HiO Robots

Application | Precision Manufacturing AMR

Autonomous material flow for Optoelectronics & Precision Components.

Move sensitive, high-value components smoothly between dense workstations and inspection areas.

The operating challenge

Keep material moving as operations change.

Sensitive materials and tightly spaced workstations require stable movement, precise routing and predictable handoffs.

01

Sensitive component delivery

Optical modules, lenses and precision parts can travel on routes with controlled acceleration and braking between storage and production. Validate vibration limits and carrier design for the specific component.

02

Multi-station circulation

A single robot serves sequenced stops across many workstations per loop, with the fleet software batching tasks so dense production areas are served frequently without crowding aisles.

03

Inspection routing

Components route to metrology and inspection stations automatically, and the logged transport history supports root-cause analysis when a measurement drifts.

04

Controlled process transfer

Transfers between controlled areas can use fixed, repeatable docking positions so handoffs to fixtures and loading ports behave consistently from cycle to cycle.

Deployment & safety

Built to run inside a live operation.

Acceleration, braking and cornering profiles are tuned per route so fragile, high-value parts move gently even in compact layouts.

Precise docking repeatability supports handoffs to enclosed carriers and station ports used in cleanliness-sensitive production.

The compact X100 works in tight aisles, while fleet traffic rules keep robot movement predictable around seated precision-assembly operators.

Recommended X Series

Match payload and workflow.

Start with the load, then select the top module, navigation configuration and level of system integration.

X100 Series
X300 Series

Common questions about precision manufacturing amr deployments.

How do AMRs protect fragile optical and precision components?

Controlled motion profiles use gentle acceleration, smooth braking and reduced cornering speeds on sensitive routes. Together with stable platforms and repeatable docking, they can reduce handling shocks compared with an uncontrolled manual move.

Can robots operate in cleanliness-controlled areas?

Robots can be zoned to specific areas of the facility map, and transfers into controlled rooms typically happen at docking ports on the boundary. Suitability for a specific cleanliness class is confirmed during the site survey.

What accuracy can we expect at station handoffs?

Required docking repeatability should be defined for the carrier, fixture and handoff process, then validated on site before acceptance. Suppliers should document the conditions and test method used.

Map your optoelectronics & precision components workflow with an engineer.

Share your payload, route length, throughput and system requirements. We recommend a configuration and deployment path.

Request a solution

Talk to the team

For product selection, integration or distributor conversations.

Inquiry context: precision-components