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Good day, everyone! Today, I want to explore RF Resonance Energy Transfer, a fascinating approach distinct from traditional electromagnetic transformer mechanisms. The key difference lies in how we drive the circuit. Instead of limiting ourselves to real power gains, we leverage the reactive VAR (volt-ampere reactive) gains, traditionally considered "imaginary" and untappable in conventional systems. Here’s the principle: by using the reactive LC stage in resonance, we incorporate a spark gap to periodically trigger an amplified potential spike. This resonant spike is then dumped into the primary antenna winding. This action generates a robust inductive kickback spike within the primary antenna loop, resulting in an intense RF field near the system—all achieved with minimal active input power. In theory, at resonance, reactive components would require negligible real power, though practical systems still incur minor switching and traditional losses. The magic happens with secondary antennae coupled to this RF field. Operating at resonance, these secondary systems can illuminate or rectify power with minimal load impact, akin to how a radio station’s power output remains steady whether there is one listener or ten thousand. A unique feature of this setup is the circular polarization of the RF field created by the coil antenna. This generates nonlinear RF interactions at resonance, differing significantly from traditional linear polarized RF systems. Forum http://typeright.social/forum