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Overunity Machines Forum



Tinman's coil shorting circuit

Started by penno64, September 12, 2015, 05:18:54 PM

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0 Members and 2 Guests are viewing this topic.

Jimboot

Thanks Brad, very interesting design.


poynt99

question everything, double check the facts, THEN decide your path...

Simple Cheap Low Power Oscillators V2.0
http://www.overunity.com/index.php?action=downloads;sa=view;down=248
Towards Realizing the TPU V1.4: http://www.overunity.com/index.php?action=downloads;sa=view;down=217
Capacitor Energy Transfer Experiments V1.0: http://www.overunity.com/index.php?action=downloads;sa=view;down=209

verpies

Quote from: tinman on September 16, 2015, 07:41:23 PM
After the turn of recent event's,everything is shot to hell anyway.
What happened?

tinman

Quote from: poynt99 on September 17, 2015, 08:35:29 AM
Why shot to hell?

Im not going to go into details,so we will leave it at that.

I have given what i have given,and the terms that go with it are very simple.
If you do not think there is anything in it,dont bother with it-dont build it.
I am not going to be like many others and try and convince you of anything-->it is a !take it or leave it! situation.

Brad

Vortex1

Thanks Brad

I have retyped the text of the jpg that Brad posted so that we can pull out and discuss each line item and put together a timing diagram and later hopefully a schematic.

Be sure to properly quote Brad when using these statements.

----------------------------------------------------------------------------------

(Per Brad)
QuoteOperation as follows:

Current through stator winding is induced by magnetic field of rotor.

BTDC- Stator and second inductor are shorted together so as they act as one winding,

Second inductor's current flow must be so as the magnetic field induced is the opposite to that of the PM

ATDC- second inductor becomes open from stator winding and back EMF is sent to load.

Stator B's induced current flowing is also sent to the load.

At this point (ATDC) the rotors field is the same field  as that of the PM and gives rise to rotational torque due to repulsion forces.

This torque gives the RT the torque required for the power generated at stator A and also the torque increase seen in the videos when driving a load such as the fan..

Note: When the second inductor has current flowing through it the field produced in the  steel / iron core neutralises the PM's field enough so as the rotor can be pulled towards the steel stator core and not repelled by the PM's field.

Stator A acts purely as a generating stator and the current flow through the stator is from the increasing and decreasing magnetic field of he rotor segments.

This power output is additive to that of stator B and the second inductor contained in stator B.

The Rotor segment at stator B is always a North field and at stator A, the rotors field is always a south field.

(drawing) Action:  Current  flow through rotor-magnetic field is built

(drawing) Reaction: Magnetic field induced into  stator core causing a current to flow through windings and load.

Quote EMJ Counter Reaction: Repulsion force between rotor and stator causes rotation of rotor.

The Rotary Transformer effect

(drawing) Stator face on view

Stator core

Stator windings
------------------------------------------------
In the center of the stator core is as follows:

Permanent magnet

Nylon or plastic sleeve 3mm thick

Steel or iron tube - 4mm thick

Second inductor windings

Nylon or plastic sleeve 3mm thick
----------------------------------------------------------------------------------------------------------------
Let me know of any typo's that need fixing.