Solitron.
"In 1843, lightning successfully charged a set of needles Henry had connected to the roof of his house with wire. "This apparatus magnetizes a needle in my study by every flash of lightning which takes place within a circuit of 20 miles in diameter around".
The "Magnetization at a Distance" experiments of Joseph Henry are important in understanding why the digitally generated sine wave used by Danial Nunez can't accelerate his neo magnet spinner by too large an amount compared to the "Solitron Spin Wave" generated by the arcing Reed switch. Just what's going on here? What's the difference between the strength of Joseph Henry's "Magnetization at a Distance" effect generated by a spark and the electro-magnetic sine wave developed by Heinrich Hertz? Both Nicola Tesla and Joseph Henry were completely disinterested in the "Transverse Hertzian Wave", and focused solely on the "Longitudinal Magnetic Power Wave".
Compare the images of the different wave patterns below:
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Oscillating Reed Switch Pulse Motor.
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We as a people have to understand time, before we can even imagine that we understand what takes place between magnetic and gravitational fields.
Interesting stuff though ,Thanks
artv
Instead of feeding the light ,he should put it back into drive, but with only one coil it won't give enough back.
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Reed switch oscillator and electric motor.
This experimenter, "iluzyon1", comes tantalizingly close to closing the loop:
What I'm trying for is to get "iluzyon1", to hook the output leads from his "Reed Switch Oscillator" to the pulse motor power coil! He dosen't connect the two together like Herr Segelohrenbob does in his video; He positons the Reed switch between the power coil and the magnet rotor on his motor and speaks of the "oscillating effect". The LED brightness from the oscillating flyback is obvious. He mentions trouble positioning for the sweet spot which causes trouble running the motor in oscillation mode. He fails to make the connection I'm pointing out. The soloution to his "Sweet Spot" problem is sitting right there in front of him on his own test bench, but he dosen't realize it! What a pity. I uploaded a comment to his youtube video with this advice.
He suspends the Reed switch between the coil and the rotor instead of fixing it solidly to the coil. This complicates the positioning process.Last edited by Allen Burgess; 08-11-2017, 10:01 PM.
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Kelvin-Helmholtz waves
Faster waves traveling over slower waves generate "Kelvin-Helmholtz waves"!
Here's what they look like in the atmosphere:
So, if we start the magnet tube spinning at 2 hertz with a finger flick, and there's an electromagnetic wave passing over it at 20 kHz, we get the kind of curling wave effect we see in the cloud video. This kind of Kelvin-Helmholtz "Curling Wave" formation has nothing to do with any ordinary D.C. power pulse.
Tiny curling Kelvin-Helmholtz "Electromagnetic Rollers" appear around the magnet spinner when the VLF sine wave passes over it that powerfully accelerate its' spinning. A very forceful magnetic "Swirling Vortex Effect" appears around the spinner that has nothing to do with conventional (Power in, Power out) analysis!
It's important to understand that the VLF electromagnetic wave does not pass through the neo spinner wave field unnoticed, as an RF signal would, but generates powerful "Motion in the Ocean". This kind of acceleration is exponential not linear.Last edited by Allen Burgess; 03-25-2016, 12:40 AM.
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Reed switch oscillator running electric motor.
This video demonstrates the "Proof of Concept" of the "Reed Oscillator Booster" running an electric motor at 34:50:
This electric motor is very feeble, and runs by outdated bare wire "Commutator Contacts". The inventor runs the motor first from an ordinary 9 volt battery, then a second time from his "Reed Oscillator Booster" to compare the difference. What he dosen't demonstrate is the difference in power consumption. The increased acceleration with the booster is only drawing a tiny fraction of the power from the 9 volt power battery then it draws from the unassisted one. The booster is transforming the voltage 50 times higher, while only drawing milli watts of power. The point is, he's running the electric motor on high voltage sine wave and not amperage. His circuit is nearly identical to the one member "Wistiti" replicated from the "Simplefix2969" schematic.
Imagine just taking the two output wires from "Wistiti's Reed Booster" and connecting them to the thread spool power coil wires of my Reed switch oscillator motor with the diametric tube spinner mounted on the precision ceramic bearings. We would be running close to 300 volts of oscillating low amperage A.C. current into the tiny air core power coil. The nearly frictionless diametric rotor would speed up like crazy as a synchronous motor. Think about what's going on here; It would be more like running a motor on Radio Waves, then D.C. pulse. VLF (Very Low Frequency) 3 Hz - 30 KHz is a broadcast band. Think about what's really accelerating Herr Segelohrenbob's "Reed Oscillator Booster Motor".
I believe this is an overunity motor circuit, because the rotor is basicly powered by a resonant sine wave from an LC tank; The rotor spontaneously tries to catch up to the oscillating resonant frequency of the LC tank, on it's own, with no symmetrical input!Last edited by Allen Burgess; 03-24-2016, 07:04 PM.
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Variable inductance.
There are three ways to vary inductance: One, tap the coil wires; Two, slide the core in and out of the coil; and three alter the BH curve of the core with static saturation or wrap the core with primary electro magnet turns. The taps are no good with modern insulated magnet wire, and sliding the ferrite core away from the Reed switch is impossible, and the electro magnet eats power. So we're stuck with altering the core permeability with a static magnet field.
Here's another concept I worked up to improve on the gap approach. Look at picture of the magnet positioner at the bottem: We could drill a few holes in each block, then fill the front one with a core material and the rear one with a cylinder magnet. lowering the rear hinge with the magnet, down on an angle in contact with the core up front would increase the magnet force gradually.
Thinking forward to the motor, a remote servo could vary the coil inductance with this kind of magnet hinge and control the rotor speed by raising and lowering the resonant frequency of the LC tank.Last edited by Allen Burgess; 08-11-2017, 10:01 PM.
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Adjustable magnet strength.
This "Magnet Switch" pictured below, attached to the end of a ferrite core, can go from 0 to 95 pounds of force incrementally for $24.95 from K&J magnetics, and make the frequency regulation very easy by "knob turn" compared to the hit and miss approach of magnet gap separation:
Turning the magnet on would lower the coil inductance and increase the resonant frequency.Last edited by Allen Burgess; 08-11-2017, 10:01 PM.
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Adjustable magnet strength.
We can adjust magnet strength with a magnet switch, and regulate coil inductance and LC frequency with a knob:
1.-We see two diametric magnets with poles aligned for maximum strength.
2.- Poles apart for zero attraction.
3.-The last picture is a homemade switch with two diametric rings. We can "dial" the magnetic strength in between the metal plates this way with a knob. A ferrite core can be adjustably magnetized this way instead of toying with a hit and miss separation gap!Last edited by Allen Burgess; 08-11-2017, 10:01 PM.
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Permanent magnet and coil inductance
"Incidentally, because all magnetic materials are eventually nonlinear, an increase in static magnetic field can reduce the inductance of a permeable-cored inductor. In fact, this property has been used for years, between saturable reactors, magnetic amplifiers and other very interesting devices".
Reducing the magnet gap space reduces the inductance of the coil; Reducing the inductance of the coil raises the resonant frequency of the LC tank: So, narrowing the magnet gap increases the operating frequency, and widening it slows it down!Last edited by Allen Burgess; 03-22-2016, 02:23 PM.
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Resonant frequency.
@Wistiti,Originally posted by Wistiti View PostBut as we already know; battery may act really strange... The only thing i can say for sure is this little circuit merit to be construct and explore furter more...
It produce real power.
Hope someone else will build it and share is result...
Good day/night to everyone!
It appears you're charging a 12 volt battery from a pair of AA batteries. That's a pretty cool trick!
I need to apologize about the formula for "Resonant Frequency" I outlined by mistake: Inductance in Henries, along with "Farads of Capacitance" are the factors needed to calculate resonant frequency, not Ohms of resistance. Your adjustable magnet gap changes and regulates the coil's "inductance", thereby controlling the frequency. Very nice setup, thanks for the contribution.Last edited by Allen Burgess; 03-22-2016, 10:47 PM.
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But as we already know; battery may act really strange... The only thing i can say for sure is this little circuit merit to be construct and explore furter more...
It produce real power.
Hope someone else will build it and share is result...
Good day/night to everyone!
Leave a comment:
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