Kiri:Moto

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Features
2D Drafting
3D Modeling
AI Integration
BIM
Cloud Collaboration
Energy Analysis
MEP Design
Photorealistic Rendering
Structural Analysis
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Description

Description

Kiri:Moto is an open-source CAM application that converts 3D models into optimized toolpaths for CNC milling and 3D printing, offering adaptive pocketing, contouring, and 3-axis machining strategies with simulated previews and export to G-code, enabling precise fabrication workflows from design to production across hobbyist and professional environments and manufacturing scalability.

Key Advantages

  • Efficient G-code generation with adaptive toolpath algorithms minimizing machining time and tool wear.
  • Integrated simulation and collision detection for reliable verification before hardware execution.
  • Flexible post-processing and multi-machine support enabling rapid deployment across CNC mills and 3D printers.

Professional Scope

Essential for Architects, Civil Engineers, Electrical Engineers, Interior Designers, Mechanical Engineers, and Surveyors–GIS Specialists by bridging digital designs to physical prototypes and enabling precise, manufacturable output from BIM, CAD, and GIS-derived models.

Access & Licensing

Primarily available as free open-source software; paid-subscription or paid-lifetime options may be offered via commercial forks, cloud services, or enterprise support packages.

Specialization

Kiri:Moto supports Construction Management, FEA-adjacent prototyping, Electrical Engineering & EDA through PCB milling, CAM & 3D Printing workflows, data-driven manufacturing, geotechnical model fabrication, CFD/hydrology model prototyping, aerospace and automotive component machining, CAE validation, robotics end-effector production, and integration with scientific simulation and numerical tooling.

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