HMI UX/UI - Artemis
HMI UX/UI - Artemis
HMI UX/UI - Artemis
The brain of Luna; where every robot, every signal, and every connection begins.
The brain of Luna; where every robot, every signal, and every connection begins.
The brain of Luna; where every robot, every signal, and every connection begins.


HMI UX/UI - Artemis
HMI UX/UI - Artemis
HMI UX/UI - Artemis
Project Type
Project Type
Back-end Robotics Engineering Interface
Back-end Robotics Engineering Interface
Technology
Technology
Figma Design System Architecture Node-RED framework Python scripting environment Multi-brand API integration Signal and hardware node system
Figma Design System Architecture Node-RED framework Python scripting environment Multi-brand API integration Signal and hardware node system
Timeframe
Timeframe
Timeframe
36 Months: On-going
36 Months: On-going
36 Months: On-going
Artemis is the brain of Luna; the central nervous system connecting every robot brand, component, and signal into a single unified architecture. It feeds all structured data directly into Orbiter, enabling robot engineers to assemble and program cells without having to deal with raw API complexity.
Artemis is the brain of Luna; the central nervous system connecting every robot brand, component, and signal into a single unified architecture. It feeds all structured data directly into Orbiter, enabling robot engineers to assemble and program cells without having to deal with raw API complexity.
The brain of Luna; where every robot, every signal, and every connection begins.
The brain of Luna; where every robot, every signal, and every connection begins.


Brief
Design a back-end engineering interface that makes connecting and configuring multi-brand robot APIs as structured and streamlined as possible.
I designed Artemis as the foundational layer of the Luna ecosystem, an interface where back-end robotics engineers and developers import APIs from robot and component brands, build node connections, and create modular automation flows using Node-RED and Python. Every connection made in Artemis feeds structured, complete data directly into Orbiter, so that robot engineers can assemble and program cells without ever touching raw API logic.
Brief
Design a back-end engineering interface that makes connecting and configuring multi-brand robot APIs as structured and streamlined as possible.
I designed Artemis as the foundational layer of the Luna ecosystem, an interface where back-end robotics engineers and developers import APIs from robot and component brands, build node connections, and create modular automation flows using Node-RED and Python. Every connection made in Artemis feeds structured, complete data directly into Orbiter, so that robot engineers can assemble and program cells without ever touching raw API logic.
Challenge
Bring order to the most complex layer of robotics software; without slowing the engineers who live in it.
The core challenge was designing an interface for back-end engineers working at the system's deepest level: hardware signals, node structures, Python, and modular automation flows for every industry and robot brand. It had to handle extreme complexity while staying structured enough for every Artemis connection to flow cleanly into Orbiter.
Solution
A node-based engineering environment built for precision, modularity, and multi-brand scale.
Artemis is built around a structured node system, pulling in hardware signals, API connections, and component functionality from any robot or peripheral brand, then making them available to Luna. Engineers use Node-RED for automation flows with clear breakpoints, and Python for custom specs, letting flows serve new industries without rebuilding.

















Results
Results
A single brain that connects every robot brand, every signal, and every factory; feeding the entire Luna ecosystem from one structured source.
A single brain that connects every robot brand, every signal, and every factory; feeding the entire Luna ecosystem from one structured source.
Artemis eliminated the need for robot engineers to manage raw API complexity at the Orbiter level. By handling all brand integrations, node connections, and signal structures at the back-end, Artemis ensured that every component available in Orbiter arrived with complete, accurate data, ready to configure, ready to deploy. The modular Node-RED flow architecture meant the same system could serve warehouse automation, food processing, logistics, manufacturing, and any other industry without structural changes.
Artemis eliminated the need for robot engineers to manage raw API complexity at the Orbiter level. By handling all brand integrations, node connections, and signal structures at the back-end, Artemis ensured that every component available in Orbiter arrived with complete, accurate data, ready to configure, ready to deploy. The modular Node-RED flow architecture meant the same system could serve warehouse automation, food processing, logistics, manufacturing, and any other industry without structural changes.

Credits
Designed in direct collaboration with Unchained Robotics' back-end robotics engineers, Node-RED developers, and Python specialists, whose deep expertise across robot brands, hardware signals, and automation architecture shaped every node, flow, and connection point in Artemis.
Leon Potgieter
UX / UI Designer
Leon Potgieter
UX / UI Designer
Bashar Tomeh
Team Lead
Bashar Tomeh
Team Lead
Aakash Takkar
Lead Robotics Engineer
Aakash Takkar
Lead Robotics Engineer

Credits
Designed in direct collaboration with Unchained Robotics' back-end robotics engineers, Node-RED developers, and Python specialists, whose deep expertise across robot brands, hardware signals, and automation architecture shaped every node, flow, and connection point in Artemis.
Leon Potgieter
UX / UI Designer
Bashar Tomeh
Team Lead
Aakash Takkar
Lead Robotics Engineer





