Sense with purpose
Bring perception, memory, and decisions closer together. The architecture explores how a small robot can spend its limited energy on information that changes what it does next.
HELIO-1 / SOLAR-AWARE COMPUTING
A machine should understand the energy that keeps it alive. Follow sunlight through silicon into sensing, movement, and the decision to rest.
A proposed architecture for solar-aware robotics. Explore the design and put its energy budget to the test.
01 / FROM PATTERN TO PURPOSE
Trace an image through memory and sixteen compute lanes. Explore the circuitry, then follow the paths that power and protect it.
Keep high-traffic blocks close together. This communication-distance model compares placements; it does not measure power savings.
Interactive architecture visualization—not a manufactured die or a fabrication-ready layout. Macro proportions illustrate function, not physical area.
02 / A FINITE SUPPLY OF SUNLIGHT
The panel collects. The battery stores. The robot spends. Change the conditions and watch the daily budget respond.
SUSTAINABLE WORK / DAILY MODEL
The daily harvest covers the four-hour work request under these assumptions.
Days two and three receive one quarter of day one's sunlight. Peak-sun-hours describe daily energy, not hours of uninterrupted sunshine. This model omits weather uncertainty, temperature, peak motor current and battery chemistry.
03 / FOLLOW THE ENTIRE CHAIN
The complete narrated tutorial, with chapter navigation and a searchable transcript. Start anywhere; follow the questions upstream.
Select a chapter or press play. The full tutorial loads in sections.
04 / THE HORIZON
Less energy spent on staying awake. More energy available for understanding the world.
Bring perception, memory, and decisions closer together. The architecture explores how a small robot can spend its limited energy on information that changes what it does next.
Make energy availability part of the decision itself. A protected motion reserve, fresh perception, and an independent stop path are central to the controller design.
HELIO-1 is in architectural development. The next milestones are hardware simulation, physical layout, and measured robot trials. A manufactured, validated chip is the destination—not a claim about this visualization.