Thermionic Electron Electric Generator (TEEG): Patent Drawings and System Description — 2026
This publication presents the corrected drawing set and technical description for the Thermionic Electron Electric Generator (TEEG) — 2026, an integrated energy-conversion concept combining thermionic emission, radioisotope energy, ionization, microwave generation, electromagnetic generation, thermoelectric conversion, and thermal management. The document incorporates the eight official conceptual drawing sheets, FIGS. 1–8, associated with U.S. Provisional Patent Application No. 64/153,809, filed September 13, 2026, together with corresponding specification descriptions and reference numerals. The disclosed architecture includes a radiation-energy conversion chamber and ionizable medium; charge-collection electrodes; thermionic cathodes and electron collectors; magnetic control of charged-particle trajectories; a magnetron-type microwave-generation stage; a brushless electromagnetic generator; radioisotope-driven thermal and mechanical conversion; thermoelectric waste-heat recovery; cryogenic and thermal-management systems; power-conditioning electronics; energy storage; and a common electrical power bus. The figures cover the integrated system architecture, cobalt-60 radiation conversion, thermionic electron conversion, magnetron microwave generation, brushless electromagnetic generation, radioisotope-thermal mechanical generation, cryogenic and waste-heat management, and an integrated modular generator array. This publication is intended to document the 2026 TEEG design architecture and patent disclosure. The drawings are conceptual schematics and should not be interpreted as experimental validation, measured performance data, or a demonstration of net energy output. Author: Daniel Robert IzzoYear: 2026Keywords: Thermionic Electron Electric Generator; TEEG; thermionic emission; radioisotope energy; cobalt-60; magnetron; microwave energy conversion; electromagnetic generator; thermoelectric generation; ionization; charged-particle collection; cryogenic thermal management; waste-heat recovery; energy conversion; patent drawings
Authors
- Daniel Izzo
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-19
- DOI
- https://doi.org/10.5281/zenodo.22847845
- Primary Topic
- Ammonia Synthesis and Nitrogen Reduction
- Type
- article
- Field-Weighted Citation Impact
- 0.00