Re: [EVGRAY] Electromagnet - Wikipedia
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2018-09-23T14:50:17-07:00
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2018-09-29T12:48:28+00:00
[21/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-25T13:19:34+00:00
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triadutrad <[email protected]>
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Its quite well explained in Seikes book ! the creation of the 3rd phase Virtual imaginary power , energy from the quantum 4D field transponded into 3d reality, (H) ---In [email protected], <schoonersolsticemoon@...> wrote : Guys I am still wondering why the Rotoverter keeps on going, rain or shine, any time, doing 1.614 over unity. It works! But it has bearings, is very heavy, and bulky, makes noise, and requires that you switch the 130mf capacitor into circuit until it gets up to speed, every time the power is shut off to the motor. As configured, it will even run a second identical Rotoverter from the first one. Wahoo! That is all interesting, but given Ole's pragmatic information, why do rotoverters work? They are not without problems, but are stable, and consistent. We should be able to engineer, or plan to combine those advantages, and minimize the disadvantages, but it is difficult, because we don't understand the voodoo that makes them go. Cheers Warren Sent from Yahoo Mail on Android https://go.onelink.me/107872968?pid=InProduct&c=Global_Internal_YGrowth_AndroidEmailSig__AndroidUsers&af_wl=ym&af_sub1=Internal&af_sub2=Global_YGrowth&af_sub3=EmailSignature On Mon, 24 Sep 2018 at 7:30 PM, onielsen@... [EVGRAY] <[email protected]> wrote: Hi Hector, "Coils do dissipate energy, charged capacitors dont !" Agree when using practical coils. Ideal coils don't dissipate energy. This is actually used for testing for superconductivity. Inducing a current in a superconductor makes the current continue and thus makes the superconductor perform like a permanent magnet. If there is the least resistance the energy will be transformed into heat and thus dissipated. This makes a voltage gradient along the resistance and then disproves the sample as being superconductive. "that is true as I have stated standard tolerance values escape ZPE design character needs in terms of accuracy and % of tolerances required for ZPE device replication.. even physical location of device may make & makes tuning the non operating machine back to standard a nightmare ... say sample local magnetic field intensity . " Apropos when trimming tolerances. Here is an article about the art of soldering micro electronics where the author mentions that trimming can be performed by adding or removing a bit of solder: 'Fortunately, in soldering (as in RF layout and pretty much every practice dealing with electromagnetic signal flow), beautiful work always wins. Symmetry and neatness can be easily backed by theoretical and experimental evidence that proves their necessity. For example, an asymmetric solder means that the PCB side with excessive soldering will modify the electrical properties of the part.' And: 'On a more complicated level, there is the soldering of an IC package. For example, my soldering mentor told me how an R&D project used the excess soldering to improve matching network characteristics.' Here is article: The art of soldering from a design engineer’s perspective https://www.electronicproducts.com/Education/Career/The_art_of_soldering_from_a_design_engineer_s_perspective.aspx?utm_source=newsletter&utm_campaign=link&utm_medium=CasualFriday-20180921. Regards Ole ---In [email protected], <arkresearch@...> wrote : reread as i made certain corrections to it ! ---In [email protected], <onielsen@...> wrote : Hi James, Ideal coils as well as ideal capacitors are pure reactive components meaning they don't dissipate energy. They just store the energy. Coils do dissipate energy, charged capacitors dont ! Coils and capacitors are diametrically opposites of each other. What current is for a coil voltage is for a capacitor and vice versa. OK ! This can be shown when making a circuit of just one capacitor and one coil (inductor). Applying energy to such a circuit (LC-tank) will make it oscillate continually if the energy isn't dissipated which requires some resistance. The energy is oscillating between fully magnetic (current or amps) and fully electric (tension or voltage). Thus for a coil the tension doesn't represent energy stored but only how fast the energy is moved which is the power. For a capacitor the current doesn't represent energy stored but only how fast the energy is transferred which is the power. Refer to rotary power systems as this does not quite make it Real coils and capacitors have resistance because they are made of metals having resistance (usually copper and aluminum or tantalum). Coils do have permanent resistance , capacitors don't only temporary as they charge up and its Z (impedance ) The resistive part is called the parasitic part when dealing with both capacitors and inductors. Inductors also have a capacitive part (between the turns as well as to the ambient) which is also a parasitic part when dealing with inductors. Capacitors also have an inductive parasitic part because when current enters them a magnetic field is created around the current path which is inductive. Even resistors have parasitic parts of inductance and capacitance because of the same reasons. Thus all the three fundamental components of electronics (i.e. the resistor, capacitor and inductor) have parts of each other intrinsic to them. partially true .. Calculating a circuit is way easier when dealing with only the ideal parts of the components. When building the calculated circuit some surprises may arise because of omitting the parasitic values in the calculations. This becomes more distinctly the higher the working frequency or the faster the switching transitions of the circuit. Even the wires or leads connecting the components have resistance capacitance and inductance. For the theory behind it for example read Ivor Catt about electromagnetism. that is true as I have stated standard tolerance values escape ZPE design character needs in terms of accuracy and % of tolerances required for ZPE device replication.. even physical location of device may make & makes tuning the non operating machine back to standard a nightmare ... say sample local magnetic field intensity . Regards Ole (H) ---In [email protected], <jglinski01@...> wrote : Norm read Thu it and nothing about voltage .as far as there concerned voltage doesn't exist ? With I think is bs .with out it there's no Watts all current and no volts ?? Well I kept looking and .. By using a battery with a greater voltage the strength is increased. You can also add more batteries to a series circuit to increase the strength. What factors affect the strength of an electromagnet? By increasing the number of coils of wire around an object can increase the strength of the electromagnet. How would they Dodge this ? On Sep 23, 2018 4:50 PM, "Mick mkjekyll@... mailto:mkjekyll@... [EVGRAY]" <[email protected] mailto:[email protected]> wrote: Far out, reminiscent of an n-machine On 9/23/2018 2:37 PM, Norman Wootan nwootan@... mailto:nwootan@... [EVGRAY] wrote: e
[22/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-25T23:08:01-05:00
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rockfordwadematheny
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Thank you for the info, I will try this and let you know how it all turns out... again thank you so much and God bless!!! 73 KN4GVD Sent from my Samsung Galaxy , an AT&T LTE smartphone -------- Original message --------From: "[email protected] [EVGRAY]" <[email protected]> Date: 9/25/18 8:54 PM (GMT-06:00) To: [email protected] Subject: Re: [EVGRAY] Electromagnet - Wikipedia Hi Rockford To get your 120v instead of 178v from run cap phase, step down with transformer running in series from run cap phase...also play with run cap values according to load you want to run as well Kone
[23/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-26T01:54:17+00:00
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Douglas Konzen
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Hi Rockford To get your 120v instead of 178v from run cap phase, step down with transformer running in series from run cap phase...also play with run cap values according to load you want to run as well Kone
[24/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-26T02:06:40+00:00
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Douglas Konzen
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Hi Rockford Here is the series transformer circuit: https://sites.google.com/site/alternativeworldenergy/home/seris-transformer-rotovertor-run-cap-phase-power-extraction
[25/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-26T04:57:15+00:00
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Douglas Konzen
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Hi Rockford Also maybe you can put a variac on input of your 3ph "rotorertored" (RV) motor and cut the input volts down to maybe 180v so the run cap bolts lowers. Also play with run cap values to where there is less voltage circulating but more currents. Good luck have fun with it. Kone
[26/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-26T07:34:20+00:00
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Douglas Konzen
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Hi Rockford Another very simple dea is put an incandescent light maybe try 75w in series from the run cap phase on one of the ac legs from the run cap phase....you might need two in series because of the 178v if they blow up. Kone
[27/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-26T17:56:56+00:00
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triadutrad <[email protected]>
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Some microwave transformers can be used as step down , from hi impedance to low impedance ... just change the HV ground to a floating connection ( non grounded ) .... (H) 73s WP4QIN (former WP4BUI ) some eons ago ....in the dinosaur Heathkit H8 age ! ---In [email protected], <rockfordwadematheny@...> wrote : Thank you for the info, I will try this and let you know how it all turns out... again thank you so much and God bless!!! 73 KN4GVD Sent from my Samsung Galaxy , an AT&T LTE smartphone -------- Original message -------- From: "konehead@... [EVGRAY]" <[email protected]> Date: 9/25/18 8:54 PM (GMT-06:00) To: [email protected] Subject: Re: [EVGRAY] Electromagnet - Wikipedia Hi Rockford To get your 120v instead of 178v from run cap phase, step down with transformer running in series from run cap phase...also play with run cap values according to load you want to run as well Kone
[28/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-27T01:30:57+00:00
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machinationus
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Electram
[29/29] Re: [EVGRAY] Electromagnet - Wikipedia
2018-09-29T12:48:28+00:00
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triadutrad <[email protected]>
<[email protected]>
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<[email protected]>
wire the 10 HP motor to 480VAC run in 240VAC tap the center of the star legs to get 120VAC you can capacitor start the 10HP motor easy , calculate your loads , tune the input to unity PF using the 10 HP motor run caps .. (H) ---In [email protected], <rockfordwadematheny@...> wrote : The third phase of the rotomotor....? I have a small machine shop running off of a 10 horse power 3 phase motor that generates the third leg. I use a small 120volt motor as a starter motor to start the rotation of the 10hp motor, a pony motor so to sleep. Now that being said... single phase 220 volts in to the 3ph motor. Then the third leg is pulled from the motor to a 3ph breaker box, and the 220 volt goes to that same box. The equipment is run from that box 220 volt 3 phase....the 3rd leg that is generated is wild (178 volts..) it will fry any circit board or contactor you wire it up to! But it will run the 3ph motors with no problems. I was wondering how or if able, to make turn the generated 3 leg into.. 120volts ... like it should be... Some have told me I'm able to run as many 3ph motors as i want as long as the total doesn't go over the generated 3ph 10 horse power motor. If a person has to attach several of these motors together could someone make a self running power unit??? Could this be free energy??? Good day!! Sent from my Samsung Galaxy , an AT&T LTE smartphone -------- Original message -------- From: "arkresearch@... [EVGRAY]" <[email protected]> Date: 9/25/18 8:19 AM (GMT-06:00) To: [email protected] Subject: Re: [EVGRAY] Electromagnet - Wikipedia Its quite well explained in Seikes book ! the creation of the 3rd phase Virtual imaginary power , energy from the quantum 4D field transponded into 3d reality, (H) ---In [email protected], <schoonersolsticemoon@...> wrote : Guys I am still wondering why the Rotoverter keeps on going, rain or shine, any time, doing 1.614 over unity. It works! But it has bearings, is very heavy, and bulky, makes noise, and requires that you switch the 130mf capacitor into circuit until it gets up to speed, every time the power is shut off to the motor. As configured, it will even run a second identical Rotoverter from the first one. Wahoo! That is all interesting, but given Ole's pragmatic information, why do rotoverters work? They are not without problems, but are stable, and consistent. We should be able to engineer, or plan to combine those advantages, and minimize the disadvantages, but it is difficult, because we don't understand the voodoo that makes them go. Cheers Warren Sent from Yahoo Mail on Android https://go.onelink.me/107872968?pid=InProduct&c=Global_Internal_YGrowth_AndroidEmailSig__AndroidUsers&af_wl=ym&af_sub1=Internal&af_sub2=Global_YGrowth&af_sub3=EmailSignature On Mon, 24 Sep 2018 at 7:30 PM, onielsen@... [EVGRAY] <[email protected]> wrote: Hi Hector, "Coils do dissipate energy, charged capacitors dont !" Agree when using practical coils. Ideal coils don't dissipate energy. This is actually used for testing for superconductivity. Inducing a current in a superconductor makes the current continue and thus makes the superconductor perform like a permanent magnet. If there is the least resistance the energy will be transformed into heat and thus dissipated. This makes a vo