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Spiral Architect/ alternator inputs -at- 480 hz.



Original poster: "harvey norris by way of Terry Fritz <twftesla-at-qwest-dot-net>" <harvich-at-yahoo-dot-com>

Have now aquired 5 of these dual flat cable speaker
windings which of course come in pairs of wire for the
production of two ended currents demanding a return
line ect. They are available at Radio Shack with a
costly price of 19.99 a clip, if I remember right, as
a Megacable Flat Speaker Wire wound spiral from the
box.

The spirals can be lined up in a row and windings
measured a layer at a time for inductance, as they are
connected in series, and placed together for mutual
inductance.

To show the inductance readings added for each layer
on a 4 layer, total 2 coil reading:
1 layer-172 uh
2 layer-642 uh
3 layer -1.33 mh 
4 layer -2.28 mh

The exponential rise of inductance with amounts of
turns is nothing unusual at all, already made by
equation.

So we have a relatively small length of wire of 200 ft
containing only 1 ohm for the total resistance, and
indicating 2 and 1/4 mh inductance.

Having an alternator AC input of 480 hz I then merely
connected the proper capacity of some 48 uf in series
with results of only 50% of real currents and 
resonant voltage rise to enable the predicted currents
that would actually develope according to the L and C
values given for the circuit.

Usually those kind of deviances are attributed to the
REAL vs IDEAL predictions made by equation, and the
disclaimer made that the ideal quantities made by
equation only model what should happen by amperage and
voltage considerations of resonance.

Now usually those disclaimers seem valid for the case
of interwinding capacitances enabling a lack of
resonance capability by great amounts of this
interwinding capacitance that does not seem to be
negotiated away by the opposite reactance in
cancellation. For a 20,000 wind coil on 5 inch air
core of 23 gauge wire, there is a marked decrease of
ability to resonate, going from 60 hz to 480 hz.

At 60 hz the best resonance obtainable is 4/5ths the
ohms law value, but at 8 times the frequency made by
480 hz by alternator inputs this only becomes 1/40th
the value.

In many respects, the laws of resonance are only
indicated as the actions exercized by IDEAL
components, but when the REAL components are shown as
actions, in most every case, resonance is never
realized to the full extent made by the case with the
ideal components.

Usually it is the case that the shorter amount of wire
used makes for the acting in the ideal manner, where
the real conduction that results is closely  in
accordance with those predictions.

It may very well be that the PVC of the wire
insulation between windings is the factor for not
acheiving resonance, where typically the idea of
trying both larger and smaller quantities of C can be
tried to see if this 50% conduction barrier, itself
guaranteed by resonance, can be made.

Sincerely HDN



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Binary Resonant System  http://members3.boardhost-dot-com/teslafy/

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