Magnetic Power Generator
20170237328 · 2017-08-17
Inventors
Cpc classification
H02K21/00
ELECTRICITY
International classification
Abstract
A power generator composing of a plurality of magnetic oscillators connected in series for producing electricity in a cheaper way and is more environmentally friendly for producing a clean energy. The magnetic oscillators may also be implemented to be a magnetic transformer.
Claims
1. A magnetic power generator comprising: a plurality of magnetic oscillators connected in series; an input coil wound around a loop connected across a pair of magnetic paths juxtapositionally formed through said magnetic oscillators as connected in series for inputting alternating-current sine-wave signals into the loop; each said magnetic oscillator including: a magnetic conductive element centrally defining a magnetic core between two connecting ends of the magnetic conductive element, a pair of permanent magnets having opposite magnetic poles to each other disposed on opposite sides of the magnetic core, an output coil wound around the magnetic corer for outputting electric current as induced by a flux flowing through each magnetic path through the magnetic oscillators: whereby upon transmitting a first half wave of one said sine wave signal from said input coil, a first electric current will be induced by a first magnetic path formed through a first set of said permanent magnets, and output by each said output coil of each said magnetic oscillator; and upon transmitting a second half wave of one said sine wave signal from said input coil, a second electric current will be induced by a second magnetic path formed through a second set of said permanent magnets and output by each said output coil of each said oscillator, to thereby generate electricity.
2. A magnetic power generator according to claim 1, wherein each said permanent magnet is spaced from each said magnetic conductive element by thermal insulating members.
3. A magnetic power generator according to claim 1, wherein said magnetic conductive element is made of silicon steel sheets.
4. A magnetic power generator comprising: a plurality of magnetic oscillators connected in series; a magnetic rotor having N pole and S pole disposed on opposite ends thereof for producing alternating since-wave signals and rotatably defing between two ferromagnetic yokes connected to a loop connected across a pair of magnetic paths juxtapositionally formed through said magnetic oscillators as connected in series for inputting alternating sine-wave signals into the loop; each said magnetic oscillator including: a magnetic conductive element centrally defining a magnetic core between two connecting ends of the magnetic conductive element, a pair of permanent magnets having opposite magnetic poles to each other disposed on opposite sides of the magnetic core, an output coil wound around the magnetic core for outputting electric current as induced by flux flowing through each magnetic path through the magnetic oscillators; whereby upon transmitting a first half wave of one said sine wave signal from said magnetic rotor, a first electric current will be induced by a first magnetic path formed through a first set of said permanent magnets, and output by each said output coil of each said magnetic oscillator; and upon transmitting a second half wave of one said sine wave signal from said magnetic rotor, a second electric current will be induced by a second magnetic path formed through a second set of said permanent magnets and output by each said output coil of each said oscillator, to thereby generate electricity.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0013] As shown in
[0014] The magnetic oscillator 1 as shown in
[0015] Plural thermal insolating members or plates (e.g., made of paper) 121, 131 are provided to insulate the magnets 12, 13 from the magnetic conductive element 11.
[0016] As shown in
[0017] The input coil 15 will be directed therein an alternating current sine wave signals such as 60 HZ or 60 cycles per second. Since each input coil 15, as being conducted therein with the alternating current, an electromagnet will thus be formed, equivalent to a magnet, having a north (N) pole and a south (S) pole alternatively created or induced by each half wave of each sine-wave signal of the input alternating current.
[0018] Accordingly, each half wave of each sine-wave signal of the alternating current input into the coil 15 will alternatively produce a pair of S, N poles as shown in
[0019] In
[0020] On the right side of
[0021] As shown in
[0022] As shown in
[0023] As shown in
[0024] For example, if the magnetic energy of one magnetic oscillator 1 is 100 watts, and the conversion efficiency is 98% by converting the magnetic energy into electric energy. The four magnetic oscillators 1 as connected in series will then output 392 watts (98 W×4=392 W). Therefore, the present invention will multiplify the output electric energy once connecting a plurality of magnetic oscillators 1 of the present invention.
[0025] The present invention may therefore provide of a magnetic power generator or a magnetic transformer for boosting, increasing or multiplifying the input energy.
[0026] Although the silicon steel sheet for forming the magnetic conductive element 11 of the magnetic oscillator 1 may be H shape, other shapes may also be modified, not limited in this invention.
[0027] The present invention may be modified without departing from the spirit and scope of the present invention.