The platform
One method, everything that runs on electricity.
Power is one connected system. ADAPT reads it and iPMM shapes it at every node. The transducer changes with the load. The method does not.
One connected system
From silicon to the grid, follow the same controlled signal.
Select a scale to see where each ATHLAZ product sits, what it changes, and what the buyer gains.
Six line drawings step outward along the power path: a processor package with the rail into its die, one rack of eight compute units on a power spine, a data hall from above with power reaching every rack, a substation and transmission lines feeding several facilities, a wireframe globe of linked sites, and an orbital platform with solar arrays above the Earth. Each drawing marks the power path in green, and the panel beside it names the ATHLAZ product acting at that scale: iPMM at the chip, ADAPT at the rack and the facility, and the ATHLAZ Power Network from the grid outward.
Scale 1 of 6
Control begins at the die.
Intelligent Power Management Module brings programmable power into the silicon power path and the rail that feeds it.
iPMM at this scale+2.1 MW
Released
+26
80 kW racks
Where we sit
Energy is the base of the stack, and the base is the constraint.
Five layers sit above the rail. Every one of them is paid for in watts, so headroom released at the base becomes capacity everywhere above it.
Applications
What the customer sees
Models
What is trained and served
Infrastructure
Racks, halls, networks
Chips
Accelerators and their power stages
Energy
The rail, the substation, the grid
Where ATHLAZ acts
Adaptive Current Modulation works at the base of the stack, and touches the two bands above it: the power stage inside the chip and the distribution across the infrastructure.
Every layer above is paid for in watts. Release headroom at the base and the whole stack gains capacity without new plant.
Documented, not contracted. Compute is measured today, on NVIDIA H100 NVL. Every other domain is designed on the same method, with its depth shared with licensees under agreement. Every product in the portfolio is electrical at the input, so the rail is the single point of entry.
The spectrum
Frequency domain decomposition is independent of frequency.
That single fact is why the same engine reaches every band. The compute band is the one with measured results behind it.
Reach
From the chip to the grid, and beyond compute.
Domains and examples only. Application level detail and per domain depth stay with licensees under agreement.
GPU data centres
Measured today
ADAPT, APN, control models
Designed
Phones, AR, wearables
Designed
Motors, glass, fabs
Designed
MRI, cancer LINACs
Designed
Fusion, accelerators
Designed
Carbon capture, farms
Designed
5G and 6G, terahertz
Designed
Battery storage, HVDC
Designed
Orbital data centres, solar
Designed
Vehicle to grid, rail, marine
Designed
Humanoid, surgical
Designed
Hardened power
Designed
Cryogenics, error correction
Designed
One method carried across every domain above, from the switching edge inside a package to the drift of a national grid.
Compute is measured today, the rest are designed
One power path
One method, a different power stage at each scale.
The same signal, read at every scale
Inside the data centre the same method runs at the die, at the rack and across the facility. Outside it, the same decomposition applies to a transmission line, a battery installation or a motor drive.
A method patent is not a device patent. Compute is measured. Every other band is designed, and each one is entered on its own evidence, one domain at a time.
