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Dev:NSROS:Phased Magnetic Nucleosonic Field Array: Difference between revisions

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=== <font color="green">The Field Array, proper, is</font> ===
=== <font color="green">The Field Array, proper, is</font> ===
  <big>'''a'''</big> ring-configuration of high-power, 2-input, inverting NAND gates &mdash;clicking in at under one kilowatt output current rating &mdash;and very, very fast.
  <big>'''a'''</big> ring-configuration of high-power, 2-input, inverting NAND gates &mdash;clicking in at under one kilowatt output current rating &mdash;and very, very fast.
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  This configuration, referred to as a Resonant-X ring configuration (Res-X).
  This configuration, referred to as a Resonant-X ring configuration (Res-X).
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Revision as of 13:55, 19 November 2023

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The Nucleo-Sonic Ring Oscillator System

phased magnetic array for tuning magnetic density wave velocity CW NMR activation as the phase-space compeller of the nucleo-phonon at system resonance by XenoEngineer

Overview  ∞  System  ∞  Hexatronic Logic Ring  ∞  High-Frequency Operation  ∞  Resonators  ∞  Regularity Analysis  ∞  Cognitive Potential  ∞  About  ∞  References  ∞ 

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The Field Array, proper, is

a ring-configuration of high-power, 2-input, inverting NAND gates —clicking in at under one kilowatt output current rating —and very, very fast.
The configuration schematic pictures as three logic flip-flops connected in a ring, with the X-crossover typical of the flip-flop latching signal conductors —with said circuits activating as heavy-current sinks with very fast slew rates of modern power transistors (eGaN, e.g., EPC2022).  
The configuration is a ring of SR logic latches with certain segmentation interconnections of inputs to outputs, forming a differential ring oscillator (at power levels oscillating through short inductors entangled on a donut).
The latch outputs activate power-transistors, which switches are activated sequentially, and the sequential signal is the activating signal traveling the ring... a ring of inductors sequentially activating the next segment to invert it's output.
This configuration, referred to as a Resonant-X ring configuration (Res-X).