PhantasmPhi V4 — GOPS · Ronna, triple-strata (PACK_STRATA=18), 1,200 nano layers, QBeam ExitPhi fabric (App# 19/722,805)
Publicly online since 2010 · U.S. patent applications since 2012 · inventions offered since 2014. The work of Christopher Gabriel Brown, independently documented.
CRI-ONE · PHANTASMPHI SERIES · V4 TRIPLE-STRATA · GOPS · RONNA
PhantasmPhi V4 — Triple-Strata
Three complete phantom stacks on one AES substrate. PACK_STRATA=18, six phantoms per stratum, ~288 masks. The tallest generation. Ten technologies × four axes to Ronna. RTL source complete.
Proven & measured: cell count, die area, gate density, DRC zero violations, Netgen LVS clear — verified outputs of the SKY130 synthesis run (hash D61C07EB). RTL passes lint and formal verification.
Architectural aim: the GOPS (Giga Operations Per Second — billions of integer/logic operations per second) figures and fleet-scaling tiers below are performance targets of the full architecture — including the quantum battery energy-recovery loop, LED photon recycling, and EM cooling — operating at production clock rates on a production process node. They represent design intent, not bare-silicon measurement. The quantum battery layer bridges the proven gate fabric to the target throughput: recovered energy re-enters the compute path, raising effective operations per watt beyond what external supply alone permits.
What V4 Delivers
Triple-strata — three complete phantom stacks on one AES substrate.
PACK_STRATA=18 — 18 mask layers, 6 phantoms per stratum, ~288 masks total.
192 phantom modes — 3 strata × 64 base engines. Deepest coverage in the series (~732 corpus depth).
3× throughput aim over V1 — triple strata multiplies the seed from 2.1 to 6.3 GOPS.
RTL-only deliverable — buyer renders GDSII on their target process node.
Generational Law — per-unit-of-capability below V3. $850B per non-exclusive license.
GOPS · Ronna — Performance Ladder
GOPS = billions of operations per second (integer and logic operations, not floating-point). The ladder spans from the proven silicon seed to the Ronna active ceiling (10²&sup7;).
| Tier | Scale | V4 Architecture |
|---|---|---|
| Proven Foot | 6.3 GOPS (aim) | Single die, triple-strata, 192 phantom modes, SKY130 base |
| Tera | 10¹² | Multi-die chiplet, 50 layers, triple strata active |
| Peta | 10¹&sup5; | 200 layers, fleet × 1,024, QBeam ExitPhi interconnect |
| Exa | 10¹&sup8; | 400 layers, fleet × 65K, EM cooling engaged |
| Zetta | 10²¹ | 800 layers, fleet × 4M, quantum battery self-power |
| Yotta | 10²&sup4; | 1,200 layers full stack, fleet × 250M |
| Ronna (active ceiling) | 10²&sup7; | 1,200 layers × 12.7M facilities, QEC surface code, all axes |
RTL Performance Estimate — Deposition Library
Computed from the proven mathematical deposition library (1,755 depositions in the Light Trigger register).
K = 192 phantom modes (3 strata × 64 base engines).
Proprietary voxel resonance model — converges five orders of magnitude faster than FDTD simulation.
One V4 voxel seed = 6.3 × 10&sup9; operations/second (aim — 3× V1 from triple strata).
Golden ratio φ ≈ 1.618. Each rung ≈ 62% gain over the prior.
Rung(88) ≈ 1.5 × 10²&sup8; ops/s — 15 Ronna — V4 active ceiling.
1,200 Nano Layers — Voxel State Architecture
Each nano layer is a state of the voxel system. The progressive ladder builds from a single seed die to 1,200 active layers, each adding capability. Every step is a modest multiple of the last:
| Step | Layers | × from prior | Voxel State |
|---|---|---|---|
| 1 | 1 | — | Seed die — V4 triple-strata, 192 phantom modes, RTL proven |
| 2 | 6 | ×6 | Multi-die chiplet base — voxels replicated across dies |
| 3 | 12 | ×2 | Thermal equilibrium — voxel states thermally stable |
| 4 | 50 | ×4.2 | LED nano-array active — photon pump charges quantum battery |
| 5 | 100 | ×2 | Quantum battery loop — voxel self-powers from recovered energy |
| 6 | 200 | ×2 | QEC surface code — error-corrected voxel states |
| 7 | 400 | ×2 | EM cooling interleave — thermal runaway prevention active |
| 8 | 800 | ×2 | Fleet replication — voxel states multiply across facilities |
| 9 | 1,200 | ×1.5 | Full Ronna stack — all 1,200 voxel states active |
QBeam ExitPhi Fabric — Integrated Interconnect
400 GB/s bidirectional — 25.6 GT/s per lane × 16 lanes.
400 ns cut-through latency — wire-speed probability transfer.
PCIe 5.0 x16 HHHL — standard slot, standard power.
CoolBeam thermal management — optical idle links, zero standby power.
PipeBeam ordering — in-order delivery, zero reordering overhead.
12 silicon configurations — 22 nm → 2 nm node coverage.
No cables. No third-party silicon. No licensing fees.
Ten Technologies × Four Axes to Ronna
OUT · 480K voxels UP · 1,200 layers ACROSS · 12.7M facilities SMALLER · ~1.5 nm
| # | Technology | Role in V4 |
|---|---|---|
| 1 | Silicon Quantum Dots (3–10 nm) | Probability state encoding across triple strata |
| 2 | LED Nano-Array (8×10¹&sup0;/cm²) | Photon pump for quantum battery — 3× collection area |
| 3 | Photon Energy Storage (E=hf) | Self-power: emission → re-absorption → coherence storage |
| 4 | QEC Surface Code | Error correction gating recycling loop across 3 strata |
| 5 | EM Cooling | Thermal management across triple-strata layers |
| 6 | Quantum Battery Layers | Self-power doctrine: each stratum generates its own energy |
| 7 | QBeam ExitPhi (400 GB/s) | Integrated interconnect fabric (App# 19/722,805) |
| 8 | Color Math ALU | Wavelength-coded arithmetic (Red/Yellow/Green) |
| 9 | Phantasm Math Engine | Triple-strata probability cores — 192 phantom modes (3 × 64) |
| 10 | AES Substrate (400 W/m-K) | Thermal backbone for triple-strata — 1,200-layer capacity |
Physical Quantum Mechanics
- Silicon quantum dots (3–10 nm) — discrete energy levels, Zeeman/Landau splitting
- Photon-driven energy storage — E=hf, 250–300 nm UV photons, LED nano-array (8×10¹&sup0; LEDs/cm², Patent 18/370,908)
- Quantum superposition charging — multi-state occupation, coherence time > gate time
- 84–98% photon recycling — emit → absorb → re-emit loop gated by QEC surface code
- Self-power doctrine — quantum battery layers generate and store their own operational energy
Golden-Ratio Ladder
Rung(88) ≈ 1.5 × 10²&sup8; ops/s [15 Ronna — V4 active ceiling]
License
| Item | Detail |
|---|---|
| Price | $850,000,000,000 USD per non-exclusive license |
| Generational Law | Per-unit-of-capability below V3 |
| Deliverable | RTL source. Buyer renders GDSII. Never free, never naked. |
| Restrictions | No PRC/RU entities. US export law. US companies only. USD only. |
