Value at scale

Keep the scaling advantage.
Do not spend it on calibration.

The physical layer removes the dense arithmetic. TrueLoop keeps its maintenance at the interface floor.

THE OLD LOOP

Physics saves the arithmetic.

Maintenance puts a growing burden back.

TRUELOOP

Physics saves the arithmetic.

Maintenance stays linear.

Beams. Spectra. Matrices. Registers.Requires a timely response per component.
What users receive

Uptime. Shots.
Link margin.

74%

application uptime

versus 2%

1.3×

shot inflation

versus 140×

−0.55 dB

mission hold

versus −2.97 dB

Both modes, same verdict

Six acquisitions.
One shared budget.

Every setup and read charged to the same six-acquisition budget.

Pre-registered controlled simulation.

01 / REGULATION

Drifting hardware at one read per update.

ChannelsTrueLoopCommissioned PIDiagonal BroydenAndersonAdaptive RLS
1,02410/100000
4,09610/100000
10,0005/50000
100,0003/30000
02 / OPTIMIZATION AS RESPONSE MATCHING

Globally coupled variables, independently verified after the deadline.

VariablesTrueLoopVector-response controllers, best of 5SPSAFinite difference
1,0249/1000n+1 reads per gradient
4,09610/1000Does not fit
10,0005/500Does not fit
100,0003/300Does not fit

Usable means inside specification before the deadline. Zero means nothing usable.

In easier cells, use the simpler incumbent. The table shows the tested exclusive regime.

Cost model

Price the whole convergence job.

Your inputs. Transparent arithmetic.

ACQUISITION ECONOMICS / MONTH
live
Comparison acquisition spend$4,004,0001,001 reads per complete update
TrueLoop acquisition spend$4,0001 parallel read per update
Modeled gap$4,000,000projection before runtime licensing and deployment scope
What the territory is worth

Uptime and deleted commissioning are consequences.
The product is the territory.

01

Late means unavailable.

100,000 variables. Six acquisitions. Usable.

02

Commissioning is per-unit cost.

Power on to specification.

03

Duty cycle is revenue.

Continuous control preserves useful time.