Preparing the published article.
Hai Robotics: Case Handling and Climbing Warehouse Automation
Hai Robotics combines case-handling robots, companion AMRs and HaiQ software for storage and fulfillment. Review HaiPick System 3, HaiPick Climb, deployment evidence and integration requirements.
Company and goods-to-person systems
Hai Robotics supplies warehouse automation built around case-handling robots, mobile transport and software. Its HaiPick systems overview distinguishes solution architectures using ACRs, companion AMRs and the rack-climbing HaiClimber. Research reviewed: 10 September 2026.
The purchasing scope is a storage-and-retrieval system with containers, workstations and integration. A robot specification alone does not describe the capacity or operating method of the completed warehouse.
HaiPick System 3 and companion robots
HaiPick System 3 separates storage and retrieval by HaiPick robots from horizontal movement by companion AMRs. The platform offers configurations for dense storage and different container types. Select the required handling architecture before comparing headline density figures.
Confirm container dimensions, weights, shelf positions and transfer points for the actual robot variant. Include the tote, contents and any handling fixture in the agreed loading calculation. A capability listed for one robot or system configuration should not be assumed across the full range.
HaiPick Climb is a separate architecture
The HaiPick Climb page describes HaiClimber robots moving between and beneath racks, together with racking, containers, workstations and HaiQ software. Different station arrangements support piece picking, tray handling and conveyor interfaces.
Hai Robotics announced Climb on 26 February 2025. Confirm the current release and selected workstation design. Automated storage and container presentation do not automatically mean that each item is picked by a robot arm or that existing racking can be used without assessment.
HaiQ software and host connections
The HaiQ software platform describes warehouse execution, equipment scheduling, data analysis and simulation. Its WES layer supports interfaces to upstream ERP, WMS and MES systems. Establish the boundary between the automation platform and the system that owns inventory and orders.
Specify receiving, putaway, replenishment, order release and exception messages. Validate master data and reconcile stock after interrupted movements. Test lost connectivity, repeated requests and delayed stations rather than treating an integration description as proof of a connector for every host system.
Dated deployment evidence in Europe
An announcement dated 30 April 2025 reports a completed HaiPick Climb deployment at an e-commerce logistics hub in Poland. Hai identifies it as its first European Climb implementation but does not name the customer in the announcement.
This is a dated supplier account, with an explicit limit on public customer identification. Do not invent the operator's identity or treat its reported gains as an independent benchmark. Ask for an available reference visit and a dataset comparable to the buyer's assortment and order patterns.
Layout and operating requirements
Provide inventory profiles, container dimensions, building clearances and order history. Include inbound peaks, replenishment, packing handoffs, empty-container return and rejected goods. Assess storage density together with access speed and the space required for maintenance and exception processing.
Before go-live, verify the configured equipment layout and operating procedures with the site team and integrator. Agree how staff enter robot areas, clear faults and restore operation. Product-level safety features do not remove the need to assess the completed installation and its interfaces.
Questions for a representative pilot
Which HaiPick architecture and exact robot variants are proposed?
Which racks, containers, stations and charging equipment are included?
Which items require trays, decanting or a separate manual process?
What assumptions support the storage and throughput simulation?
Who owns integration, commissioning, training and stock reconciliation?
How are software licenses, expansion, spares and local support charged?
Measure completed orders, inventory accuracy, intervention time and queues across receiving and dispatch. Use typical and peak demand, including mixed orders and incomplete stock. Agree acceptance criteria for the entire process rather than a single robot's maximum speed or a station's demonstration rate.
Official contact and related reading
Use the official Hai Robotics contact page to discuss a site-specific layout and demonstration. Provide the destination, current software and material profile. Request written responsibility for implementation, performance acceptance, maintenance and support; public pages are not price or delivery commitments.
Mobile and logistics robots directory · Locus Robotics warehouse profile · Write a Robotics Buyer Brief · Robotics RFQ
Zhilianhai provides source-based research and enquiry routing. This profile is not a supplier endorsement, quotation or purchase commitment.

