Don Smith Generator.
This is a very important point of Don's; My central point in the "Vector Shift"' theory:
Start at 21:30 minutes into this Don Smith seminar video: Don describes how he matches his L1 coil wire length to a 200 Mhz frequency wavelength; And how his L2 is a multiple of his primary coil wire length.
First he states that he set the "Main Broadcast Frequency" (close enough above the "Larmor" proton spin flip frequency for his wire material). The rest follows suit.
You'd get nothing without this fundamental tuning!
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Oscillating Reed Switch Pulse Motor.
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Don Smith Generator.
@Bob Smith,
I've been purusing the "Don Smith" thread and related materials.
I was most impressed by an audio recording where "Don" hammers home his right angle vector shift theory, which he refers to as the "Ring's of Saturn". Naturally Don's talking about the basic "'Magnetic Resonance theory" we went over already, and the orthagonal relationship. He repeated what I stated I heard that" Any electric device can be made to generate power with the vector shift".
Too be frank, after taking a close look a the circuitry, and viewing many replications, I would imagine the units can go from not working at all to any kind of COP imaginable.
I'm sure Don Smith played with magnets around his (Power/Output) coils. He stipulates the exact lengths of power wire in the plug ins.
I don't know if Don figured out the precise wave length and reciever antenna size and broadcast frequency of the spark, because the spark is Omni-Spectrum. I don't know how dependibly he could get it to work in a reliable way with out a better tuner. The "'Spark's" broadcasting a signal in the 100 Mhz range along with all the other ranges. Are the copper protons "Spin Flipping" in his "Rings of Saturn" coils causing cosmic generator induction? I believe the performance would be spotty with out a "Tuner Tank" reinforcing the hap-hazard spattering of the pivotal frequency from the spark.
The critical ratio is matching the wavelength of the primary receiver coil in exact length to the broadcast frequency. Sustaining the correct broadcast frequency is a way improve the generator. I think Kapanadze has improved in this direction.Last edited by Allen Burgess; 12-01-2016, 12:27 AM.
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Allen,
I don't know if you saw this in the Don Smith TGTBT thread, but thought I'd re-post it here (below). I think it speaks to the spark-magnet interaction you were demonstrating a few weeks back. It might help us better understand what's going on in these devices.
Bob
Originally posted by Solarlab View PostHello Mr. Townley,
Thank you for sharing Mr. Perreault's "disclosure." An interesting paper indeed; including his "Alpha Fusion Electrical Energy Valve" patent.
It jogged my recollection of a statement I read in a paper entitled "The Double Helix Theory of the Magnetic Field" by Fredrick David Tombe dated 15th February 2006; (page 4 bottom & page 5) quote:
... "The electron-positron sea will be refered to as 'The Electric Sea', in order to distinguish it from the pure aether itself. The electric sea will therefore be somewhat reminiscent of the striking surface of a safety match. If we disturb it in a particular way, it will cause an ignition of energy."
Tombe's paper can be found here:
http://www.gsjournal.net/h/papers_download.php?id=252
F.Y.I. - Other interesting and informative writings are available from the General Science Journal at: Science Journals - Authors Scientific Papers with more from Tombe at: Science Journals - Papers written by Frederick David Tombe .
Thanks again and send my best regards to Mr. Perreault when you next chat.
SL
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Carbon Rod and Tin Antenna.
Carbon rod has a Larmor "flip Frequency" of 100.580 Mhz; A 1/16 wave length antenna would need to be merely 1/5" longer then a copper rod antenna.
13 C Carbon 1/2 1.07000 1.00000 1.21661 6.72828 --- 100.580 Me4Si
Tin has a Larmor "flip frequency" of 149.163 Mhz; A 1/16 wave length would equal around 4-1/2". This choice of material would explain the differences between the antenna heights of the two basket weave coils! The upright studs on the right side coil are about 2-1/2" shorter then the ones on the left. Maybe they're tin.
119 Sn Tin 1/2 8.59000 26.60000 -1.81394 -10.03170 --- 149.163 Me4Sn
A broadcast frequency higher then Tin's would "Vector Shift" the lower spin flip frequency material along with it.Last edited by Allen Burgess; 11-08-2016, 04:36 PM.
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Quadruture oscillator.
After taking a closer look at Akula's "Hendershot" oscillator and doing some research, I realized that he's running some kind of "Quaduture Oscillator" with two inductors and two capacitors, like the ones in the schematics below: Not a simple Hartley or Colpitts. The cross capacitor transistorized design on the right is capable of generating frequency oscillations in the Gigahertz range:
I E-mailed Akula and asked him to sell me one of his "Hendershot's".Last edited by Allen Burgess; 12-28-2017, 11:50 PM.
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Akula's "Hendershot" 90 degree phase shift scope shots.
This is a bit longer video with the 90 degree phase shift on a scope shot; Also we get a close up of the oscillating inductor:
Last edited by Allen Burgess; 11-07-2016, 03:54 PM.
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Magnet core and variable inductance
There are two ways to tune the Hartley LC tank; One is to adjust a variable capacitor, and the other to adjust a variable inductor.
Variable inductors are tunable with a ferrite core that slides in and out of the coil core, and also by altering core saturation with magnets as seen in the Reed switch oscillator schematic below. Increasing the ferrite core saturation with magnets has the same effect as withdrawing the ferrite from the coil core.
We see Akula tuning the fixed inductors by holding a magnet to the ferrite cores. This reduces the inductance and raises the LC tank resonant frequency, like tuning a variable capacitor would.Last edited by Allen Burgess; 10-22-2017, 10:33 PM.
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Hartley oscillator.
Tying the thread topic in; The oscillating Reed switch in the pulse motor plays the same trick on the bifilar power coil as Akula's Hartley oscillator does in his Hendershot generator.
Akula's two fixed inductors and single capacitor can easily reach the "Magnetic Vector Shifting" Larmor spin flip frequency for copper of 106 Mhz as a Hartley oscillator, clearly visable at the base of his apparatus in his video:
"The distinguishing feature of the Hartley oscillator is that the tuned circuit consists of a single capacitor in parallel with two inductors in series (or a single tapped inductor), and the feedback signal needed for oscillation is taken from the center connection of the two inductors".
"Either a tapped coil or two fixed inductors are needed, and very few other components".
A schematic from Hartley's original patent below:Last edited by Allen Burgess; 10-22-2017, 10:33 PM.
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Akula's Hendershot.
Look at the vertical "Antennas" on the basket weave reciever on the left in this video linked below: 1/16 wave length for copper vector shift is 7 inches. The white wire windings are orthagonal: Is this a coincidence? Lester Hendershot had the advantage of all of Larmor's theories. That would make the magnet coils on the bottem F.M. frequency oscillating broadcast transmitters. Remember; Number of antennas has no effect on the broadcast beacon!
Last edited by Allen Burgess; 11-06-2016, 03:46 PM.
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1/4 wavelength for spin flip.
The 1/4 wavelength for the Larmor proton spin flip frequency (for copper of 106.064 Mhz) is nearly 28 inches. This just so happens to be the length of an F.M. radio antenna and coincidently the exact length of wire I selected for my HV magnet vector test. The flip frequency is an F.M. signal.
The D.C. converter spark will generate every frequency in the spectrum. It's clear at this point that the HV electrode can filter out isolate and collect the Larmor vector shifting proton spin flip frequency for copper simply by cutting it to the 28" length of an F.M. receiving antenna.Last edited by Allen Burgess; 11-06-2016, 01:47 AM.
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Output.
@Bob Smith,
Pulsing one side of the quadfilar with square wave D.C. generated A.C. current in the other bifilar.
There's a difference between "Transformer Induction" and "Generator Induction". When we double the secondary windings in a transformer, the voltage doubles; When we double the output windings on a magnet generator coil we double the amperage.
The magnetic vector shift transitions the "Transformer Induction" to "Generator Induction" and generates an A.C. sine wave; That's why you see Steve Mark, Akula, Kapanadze etc, powering high amp A.C. incandescent bulbs directly from their TPU windings.
Planning the power to match a specific output load in advance solves alot of problems. Once the output's rectified through a half wave diode and cap or full wave bridge rectifier, we're set up to loop back to source. A Zener diode with the correct voltage setting would work well to replenish a D.C power source.
A seperate magnet wire ouput winding would probably work best to charge the source cap with rectified loop current regulated by the Zener.Last edited by Allen Burgess; 11-02-2016, 12:12 AM.
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I can't help but think about your quadfilar setup with the diode and cap. Is there any way to get that setup to function in a similar way?
- Kind of like an ambient-driven proof of concept.
I'm thinking that the right sized cap to match the frequency of the quadfilar could get it to resonate as an LC circuit at the proper frequency as you describe above.
The one question that nags me is how to get the cap to discharge.
Is it possible that a zener diode across the cap might do enable this to happen when a proper voltage is achieved in the cap.
What do you think?
Bob
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Frequency meter.
A digital inductance and frequency meter would go a long way towards maximizing output. It's important there's no secondary sparking, and that the frequency's controlled by the main spark gap adjustment alone.
Measuring the primary coil inductance would permit the operator to tailor a capacitor to quench the gap and lock in an LC resonant frequency around 106 Mhz. An "Earth Ground" would also help to stabilize the circuit frequency.
We're basically broadcasting an F.M. radio frequency into the primary! This causes the magnetic "Vector Shift" of the oscillating field that generates output in the orthogonal windings at the correct angle. The output coil is really a receiving antenna.
Something like the one below:
$15.50
"SmartLAB SMLAB-1 is a perfect measuring instrument that RF designers have been waiting for many years. SMLAB-1 is an exceptional device, it includes precise high frequency capacitance and inductance meter, RF frequency meter, functional generator and dual output impulse generator".Last edited by Allen Burgess; 10-22-2017, 10:33 PM.
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Electrodes.
@Bob Smith,
The "Litz bundle" would need to solder to a copper disk electrode on the ends for even current distribution. (pictured below):
The HV D.C. pulse input needs an adjustable spark gap to reach or exceed the Larmor proton "Spin Flip" frequency in the megahertz range for the magnetic vector shift; (Hyper-Physics). The spark gap electrode would need to solder to the center of the copper disk.
Those are the two additions; The "Spark Gap" electrode, soldered to the center of the copper disk and the other side of the copper disk soldered to the clean ends of the "Litz bundle".Last edited by Allen Burgess; 10-22-2017, 10:33 PM.
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