Polira
Fewer polishing runs to reach spec.
Figure convergence is the black art at the center of every optics fab. Polira predicts how a tool, slurry, and dwell will remove material, then plans the correction that drives the surface to spec in fewer passes.
What it solves
A polishing run that removes a little too much in the wrong zone leaves residual error on a blank that already carries huge sunk cost. Shops still run slow polish, measure, repolish loops on the intuition of masters who are scarce and retiring.
Polira ingests part geometry, figure maps, and machine telemetry, predicts the removal response of the current setup, and computes correction dwell maps and tool paths. It runs generating, grinding, lapping, and CNC or MRF polishing under closed-loop control, gated by per-cell autonomy levels and rollback plans.
Inside Polira
- Predicts the removal map for each tool, slurry, and dwell setup
- Generates correction dwell maps and tool paths that close figure error
- Converges figure and roughness under graduated autonomy
- Tracks consumable and spindle health against removal stability
- Versions every recipe with a per-part audit trail
See it work
Polira reads the optic, predicts the outcome, and acts only on moves the twin already trusts.
Converge to spec
Polira ingests part geometry, figure maps, and machine telemetry, predicts the removal response of the current setup, and computes correction dwell maps and tool paths. It runs generating, grinding, lapping, and CNC or MRF polishing under closed-loop control, gated by per-cell autonomy levels and rollback plans.
- Predicts the removal map for each tool, slurry, and dwell setup
- Generates correction dwell maps and tool paths that close figure error
- Converges figure and roughness under graduated autonomy
One agent in a closed loop
Perceives the part
Polira works off Fringeon's shared surface truth, so every decision starts from the same trusted read.
Simulates first
Before it commits an irreversible move, Polira runs it against Vitreon's optics twin.
Moves under interlocks
Actions run inside hard interlocks and rollback plans, gated by per-cell autonomy levels.
Compounds the data
Every part Polira handles improves the models, tenant-isolated and federated across the fleet.
Better with the rest of the fleet
Polira is the beachhead. It works off Fringeon's surface read, checks each move against Vitreon before it commits, and hands finished parts to Cleora.
The other five agents
Polira shares the fab-edge runtime, data model, and customers with every Foceon product. Land on one cell, expand across the fab.
Common questions about Polira
Do I have to replace my machines?
No. Polira is the layer above your existing equipment. It reads your metrology and advises or actuates through the interfaces you already run.
How does it handle my proprietary recipes?
Your recipes and data stay yours, on-prem or air-gapped. Polira learns your process without exporting it.
What if the agent is wrong?
It advises before it acts, operates inside hard interlocks, and logs every action against the digital twin for review.
How fast is a first result?
A pilot cell is instrumented and advising in weeks. Actuation follows once predictions match your metrology.
Put Polira on one of your cells
Book a pilot and we will scope Polira against your optics, your tools, and your spec, measured on your own metrology.