Hexatronic Configuration: Difference between revisions
Jump to navigation
Jump to search
XenoEngineer (talk | contribs) Created page with "Picture a dual-ended ring-oscillator. You just envisioned the complete oscillator circuit of the Hexatronic configuration of 3-phase excitation of bifurcated coils to six-wire activation. '''Provided: The latch-mechanism of an inverting-ring-oscillation is implemented by electrical connections --through-- the windings of a torus knot of copper tubing, wherein the hollow bears the resonator surface. == Redundant Simplicity Applies ==" |
XenoEngineer (talk | contribs) |
||
| Line 8: | Line 8: | ||
== Redundant Simplicity Applies == | == Redundant Simplicity Applies == | ||
Without need to design toward consumer production, the laboratory description of what artsy prose Ol' HyperGeek pleases follows: | |||
==Lineal current through 1/8th inch copper tubing== | |||
* Heavy transistor current, in dozens of amperes, adjustable, limited-current, envied by other lab techs. | |||
* Current modulation by adjustable bias on the current-mirror feeding a long-tail BJT pair injects the harmonic frequencies of the step-phased array. | |||
Latest revision as of 13:31, 2 October 2026
Picture a dual-ended ring-oscillator.
You just envisioned the complete oscillator circuit of the Hexatronic configuration of 3-phase excitation of bifurcated coils to six-wire activation.
Provided:
The latch-mechanism of an inverting-ring-oscillation is implemented by electrical connections --through-- the windings of a torus knot of copper tubing, wherein the hollow bears the resonator surface.
Redundant Simplicity Applies
Without need to design toward consumer production, the laboratory description of what artsy prose Ol' HyperGeek pleases follows:
Lineal current through 1/8th inch copper tubing
- Heavy transistor current, in dozens of amperes, adjustable, limited-current, envied by other lab techs.
- Current modulation by adjustable bias on the current-mirror feeding a long-tail BJT pair injects the harmonic frequencies of the step-phased array.