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The Digital Engineering Foundation forMachine-Built Solar

SAW ArrayWright turns solar engineering into tasks machines can understand, execute, and verify, while building reusable digital assets from scenes, workflows, interfaces, simulations, and field evidence.

AI concept renderings do not represent delivered equipment or verified project outcomes.

Two Core Engineering Tracks

Utility-Scale Solar

Robot-friendly array redesign for utility-scale ground-mounted stations: scene modeling, construction simulation, core platform to on-site validation — integrating robots end-to-end into design and construction.

Long-term Strategy
Planning

SAW Carport

First public engineering demonstration scenario. Leveraging the standardized structure of commercial parking lots, we validate the feasibility of robot-friendly mounts and simplified construction workflows.

First MVP
In Progress

Core Capabilities

Shared technical foundation across both tracks

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SAW Site — Scene modeling and robot constructability analysis

Transform project sites into robot-recognizable structured scenes, identifying construction bottlenecks and constructability constraints.

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SAW Sim — Construction simulation and cycle-time optimization

Reproduce robotic construction workflows in simulation, quantifying cycle time, cost and quality to inform on-site decisions.

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SAW Field — On-site quality evidence and MVP validation

Collect real construction evidence on site, closing the loop between simulation and measured data for reviewable MVP validation.

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SAW Core — Shared technical foundation across tracks

Unified management of data, skills, events, and device adapters — the technical foundation across all SAW product lines.

Have a project in mind?

Whether you're an owner, EPC, designer, or component supplier — we'd like to talk about your scenario and explore how SAW can apply.

Submit Project Details

Initiated by Tianfu Nengke × AiToMoney