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Overunity Machines Forum



Negative Inductance and measure of Magnetic force.

Started by synchro1, November 19, 2017, 08:20:57 AM

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0 Members and 2 Guests are viewing this topic.

synchro1

Look at these magnetic reciprocators. Too bad they don't have recovery output circuits!


https://www.youtube.com/watch?v=BnDbpUX-r8g


The "Shuttle " can run flash circuits with two SPDT switches and collect the input from the normally closed switchs, along with the BEMF following the power pulse.

synchro1


Reciprocating power looped thick wire coil guns with thin wire secondary coil tube in between for output.

3-6 volt to 400K transformer: This can speed the capacitor charge time up to nearly instantaneous.


Look at this simple HV capacitor:


https://www.youtube.com/watch?v=eA_CD499Ohs


The 400Kv transformer and HV capacitor can replace the flash circuit with a high speed charge rate.

Mr.Miyagi

This thread is not clear.

Inductance is: L = di / dt

So a coil that has current i through it over time t will have a value of Inductance.

You cant have: "Negative Inductance"

If the Current is flowing in the opposite direction, it does not matter, there is no direction variable.

Its an unclear and a potential hole for time.

synchro1

Quote from: Mr.Miyagi on December 28, 2018, 03:54:34 AM
This thread is not clear.

Inductance is: L = di / dt

So any coil that has current I through it over time t will determine the Inductance.

You cant have a "Negative Inductance"

If the Current is flowing in the opposite direction, it does not matter, there is no direction variable.

Its an unclear and a potential hole for time wasting.


Negative inductance is a relative value that has no content outside the circuit. We must measure an amount of inductance before we can subtract from it with the substitution of magnetic energy. Negative inductance is simply a measure of magnetic field strength that is subtracting inductance from a coil and core.

Mr.Miyagi

Quote from: synchro1 on December 28, 2018, 03:59:38 AM

Negative inductance is a relative value that has no content outside the circuit. We must measure an amount of inductance before we can subtract from it with the substitution of magnetic energy. Negative inductance is simply a measure of magnetic field strength that is subtracting inductance from a coil and core.

Statically, yes, but Circuits are not static. Inductance changes with the magnetic field. This is why Transformers Saturate and burn out.

Inductance is lost, as the Magnetic Field has saturated the Core, the Coil is a DC Resistance and huge current then flows, the Transformer is now a Resistor dissipating vast volumes of electrical energy as heat. In other words a molten ball of SI and Cu