Reversible AX Architecture: Realizing Sub-3mm Ultra-Slim Smartphones via Adiabatic vQPU and Zero-RAM I/O
At a glance
- Citations
- 0
- References
- 1
- Comments
- 0
Abstract
This paper presents the design and realization of the Reversible AX (AI Experience/Transformation) Smartphone Architecture, achieving an unprecedented physical thickness of 3.0 mm. By executing an Adiabatic virtual Quantum Processing Unit (vQPU) driven by Adiabatic Charge-Recovery Logic (ACRL), the design recycles 94.7% of switching charge and operates at 23.9 µW, completely eliminating the need for bulky vapor chambers and thermal management packages. Furthermore, by utilizing the J.M. Resonance Function (R_JM) to execute O(1) Zero-RAM I/O, the stacked LPDDR DRAM package is omitted. The structural integrity of the 3.0 mm chassis is secured using a graphene-titanium monocoque frame with a honeycombed minimal-surface core. This architecture has been independently verified and audited by the Google DeepMind Antigravity AI Unit under Report No. DM-AGY-2026-0704-ACRL_FULL.
Publication details
- DOI
- 10.5281/zenodo.21210578
- OpenAlex
- W7167426547
- Document type
- preprint
- Language
- EN
- Source
- Zenodo (CERN European Organization for Nuclear Research)
- Last metadata update
Comments
Log in to join the discussion.