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Overunity Machines Forum



ENERGY AMPLIFICATION

Started by Tito L. Oracion, February 06, 2009, 01:45:08 AM

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Bob Smith

Maligayang Pasko ng Pagkabuhay Tito!

Bob Smith

Thinking about Steven Mark and his use of a magnet to get the TPU going. Teets also mentioned using a magnet.  It occurred to me that SM might've been using the magnet to get the magnetic field in the iron core saturated. Larskro has an interesting demo with a Joule Thief, in which he uses a magnet to saturate the toroid's magnetic field, brightening the LED output. Watch from here onward:
http://www.youtube.com/watch?feature=player_detailpage&v=NFowJ-SqEi8#t=56 
I do think Tito's "antenna" is a copper coil, probably with a small cap.  And somewhere between antenna input and inverter is also an iron wire coil, whose magnetic field can be saturated with a magnet as well.
Happy Easter everyone!

a.king21


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otits
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gyulasun

Quote from: Google on April 19, 2014, 08:14:19 PM

...
http://www.youtube.com/watch?v=bzRee_yHeOs
...

Hi Google,

You surely have seen a magnetic door latch (or lock) used in kitchens or in furniture where these devices include a simple rectangular permanent magnet, magnetized through thickness, and also include two pieces of soft iron plates with a certain thickness.  The magnet is sandwitched between the two iron plates and when you attach the parallel plates to a magnetizable metal surface then the magnet is able to close both its poles via the outside surface and the edges of the plates, thus most of flux available in the magnet is used for attract force. When you use only one side of a magnet, the attract force is much lower to the same metal surface because it comes from a single pole and there is no or only a poor closed magnetic circuit. This is shown in the video. 

Here is a link to such door latches or catches etc:
http://www.homedepot.com/s/magnetic+door+latch?NCNI-5

Often there are two magnets and three iron plates (sandwitched into a plastic or Alu case) to increase the attract force vs a single magnet with two plates.  The surface area of the plates at their edges (where they touch a magnetizable surface) are smaller than their surface area touching the side of the permanent magnets, hence the total flux is "forced" to be concentrated into the smaller surface the plates edges possess, this is the "trick" i.e. magnetic flux guiding and focusing. Of course the saturation properties of the soft iron plates are important.

Gyula