EQx Results & Validation
Solid-state, non-linear power behaviour demonstrated across multiple independent tests.
EQx operates in a controlled non-linear DC regime. These results demonstrate instantaneous power scaling, extended thermal stability, and near-zero loss behaviour under continuous operation. They form the early technical basis for EQx as a new solid-state power architecture.
The results shown are early‑stage laboratory measurements from controlled prototype tests. Performance figures are normalized to the stated baseline and depend on operating conditions, instrumentation and measurement boundaries. Detailed methods, raw data and uncertainty information are available in our data room.
Instant Power Scaling
EQx trades steady, averaged delivery for controlled instantaneous power, similar to how a gearbox trades speed for torque. Power increases non-linearly while system impedance remains within a controlled range until thermal limits are approached.
Up to 3× normalized instantaneous power relative to baseline operation.
1+ Hour Thermal Stability
EQx maintains stable operation in its non-linear region without thermal runaway. Continuous long-hold tests significantly exceed typical industry stress benchmarks, demonstrating that the architecture can sustain elevated power delivery without entering destructive regimes.
Continuous operation for 60 minutes, around 6× typical accelerated stress benchmarks.
Near‑Zero Loss Efficiency
EQx operates in a continuous non-linear, steady-state DC regime. A single averaged Pout/Pin ratio does not fully describe its measured behaviour, so we evaluate performance using multiple Second-Law-aligned efficiency measures in addition to the conventional power ratio.
| Method | What it measures | Why it applies to EQx | Result |
|---|---|---|---|
|
Exergy efficiency Primary |
Usable energy ÷ total energy | Extended thermal stability and measured loss behaviour | Near 100% |
| Loss-based efficiency | 1 − (thermal loss ÷ input power) | No measurable heat rise under the reported hold conditions | Near 100% |
| Controlled-power efficiency | Controlled, stable power ÷ total delivered power | Controlled operation within the defined test window | Near 100% |
| Classical Po/Pi efficiency | Output power ÷ input power | Provides a conventional reference for comparison | Near 100% |
Interpretation: Across the defined measurement boundary, all reported metrics indicate effective efficiency approaching 100% within measurement uncertainty under the reported test conditions. “Near 100%” refers to the measured performance of the tested prototype in its specified operating regime; it is not a claim of energy creation or universal lossless operation.
Exergy, loss-based, controlled-power and classical Po/Pi metrics all report near‑100% efficiency.
Summary: The Gearbox For Electric Power
EQx delivers higher instantaneous power, stable thermal behaviour, and near-zero loss, forming the basis of a new solid-state Power Management Layer. It behaves like a gearbox for electric fields: reshaping delivery rather than creating energy, while conserving overall energy.
Instantaneous Power
Summary of experimental prototype results. Figures are normalized to the stated baseline and apply strictly under the reported test conditions and measurement boundary.
Request Data Room Access
Please contact us to discuss the project and request access to our Data Room documentation.
Contact: DeQuincy Prescott
Email: labs@eqxpower.com
Phone: +44 7491 113 163