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ADH-LOGIC v12.0: Deterministic Phase Rectification and 2,400-Digit Fixed Lattice Anchor Coupling on 8-bit Microcontroller Hardware

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Zenodo2026-07-21 更新2026-08-02 收录
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Abstract—This study presents the results of a physical, hardware-level demonstration of ultra-high-precision numerical calculation and reverse-calculation restoration, processes previously deemed impossible within established engineering paradigms, utilizing an 8-bit microcontroller (Arduino Mega 2560). The system completely seals a 2,400-digit Absolute Fixed Anchor Stream ($\mathcal{S}_{2400}$) within the non-volatile flash memory (PROGMEM) and dynamically combines it with real-time voltage fluctuations entering via the $A_0$ analog sensor terminal and a protected Virtual Base Offset ($\mathcal{V}_{base} = 0.2365987432145698745$). This synthesized high-order phase input value is routed through six Deterministic Lattice Division Factors $\mathcal{L}_{divisor} \in \{0.9999, 3.999, 9.999, 19.999, 50.000, 99.999\}$ to execute division ([Div]) and multiplicative reverse-extraction ([Mul]) operations. The experimental results show that all stochastic noise variance is exponentially annihilated at the boundary below the 50th decimal place, achieving perfect Zero-Point Equilibrium Restoration (Restore Check: Y) with a $0.00\%$ error rate. This proves that cryptographic integrity (SYSTEM_HASH = 64000) and Phase Lock ($\tau_{phase} \rightarrow 0.5$) can be realized even on small embedded devices through deterministic lattice control, providing decisive physical evidence that revolutionizes the existing numerical analysis paradigm previously dependent on supercomputers.

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Zenodo
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2026-07-21
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