DE202018004259U1 - Electric generator - Google Patents

Electric generator Download PDF

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Publication number
DE202018004259U1
DE202018004259U1 DE202018004259.5U DE202018004259U DE202018004259U1 DE 202018004259 U1 DE202018004259 U1 DE 202018004259U1 DE 202018004259 U DE202018004259 U DE 202018004259U DE 202018004259 U1 DE202018004259 U1 DE 202018004259U1
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DE
Germany
Prior art keywords
coil
magnetic
induction coils
induction
leg
Prior art date
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Active
Application number
DE202018004259.5U
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German (de)
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Pavel Imris
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Publication date
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Priority to DE202018004259.5U priority Critical patent/DE202018004259U1/en
Publication of DE202018004259U1 publication Critical patent/DE202018004259U1/en
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K53/00Alleged dynamo-electric perpetua mobilia
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F30/00Fixed transformers not covered by group H01F19/00
    • H01F30/04Fixed transformers not covered by group H01F19/00 having two or more secondary windings, each supplying a separate load, e.g. for radio set power supplies

Abstract

Electric generator, characterized in that on a two-limbed magnetic core (1) made of soft magnetic material, two induction coils (2, 3) are arranged separately on each leg (1A, 1B) and an excitation coil (4) made of band capacitor (10) over the two Leg (1A, 1B) is wound and an oscillating voltage source (17) which is connected via the electrical connection (15) on the exciter coil (4).

Description

  • The present invention relates to an electric generator consisting of two induction coils and one exciting coil, wherein the induction coils are wound on a two-limbed core of ferromagnetic material and the exciting coil is wound from outside over the two legs.
  • The two induction coils are wound in a known manner around the magnetic core of copper wire. The exciter coil is wound from capacitive resistor band capacitor across the two-limbed core from the outside. In the present invention, a physical process is described whose function is associated with self-induction.
  • According to the prior art, the electric generator is a machine that converts mechanical energy into electrical energy. Their mode of action is based on the law of induction after the voltage induced in a coil is proportional to the product of the number of turns and the rate of change of the magnetic field. According to this physical principle, several technical alternatives of the generator are constructed.
  • The invention is designed in a technically simple device and consists of known components that are not movable. The generator is static. The physical process is unknown. and has tremendously great gnoseological significance for all humanity. Electrical energy in the field of mass-energy relationship has a different mathematical and physical definition than Einstein has published in his publications.
  • The invention is accordingly based on the object to provide a device for performing a physical process in which electrical energy is induced in two magnetic interconnected induction coils usable electrical energy.
  • the device for carrying out this task consists of two induction coils and an excitation coil and a two-limbed core of soft magnetic material.
  • The new device will be explained in more detail for their implementation with reference to the drawing of exemplary embodiments.
  • It shows schematically
    • 1 in side view a generator with two induction coils and with an excitation coil and a magnetic core in zweischkliger type.
    • 2 in side view a band capacitor.
    • 3 in side view, a field winding with two parallel conductors and two capacitors.
  • The basic physical principle of the present invention is in 1 illustrated. The two-legged magnetic core 1 is made of soft magnetic material. The first induction coil 2 is on the first leg 1A and the second induction coil 3 is the second thigh 1B arranged. excitation coil 4 is over the two thighs 1A . 1B wound. The magnetic field lines 5 of exciting coil 4 are outside the magnetic core 1 completed. The magnetic field lines 6 . 7 from the induction coils 2 . 3 are inside the magnetic core 1 completed. The electrical connection 8th connects induction coil 2 with electrical load, which is not shown. The electrical connection 9 connects induction coil 3 with electrical load, which is also not shown.
  • In 2 is the band capacitor known per se 10 presented as it is in the DE 199 27 355 A1 is illustrated. The dielectric 11 is between metal foils, 12 . 13 arranged. The electrical insulator 14 is arranged above the structure. By means of the electrical connections 15 . 16 are the metal foils 12 and 13 at the voltage source 17 connected. In such a circuit, the displacement current flows across the dielectric 11 in the entire length of the capacitor 10 ,
  • In 3 is the well-known winding for electric motors, transformers and electromagnets in June 2009 has been applied for a patent and internationally in the WO 2010/00 33 94 A2 released. In 3 The principle of this winding is reproduced and consists of two metal conductors 18 . 19 and two capacitors 20 . 21 that between the metal conductors 18 . 19 are connected and all together through the electrical connections 22 . 23 at the oscillating voltage source 24 connected.
  • The invention described herein is an electrical generator that is technically a simple device and physically easy to understand, consisting of known components that are not movable and more like a transformer. The magnetic core 1 is two-legged and made of soft magnetic material. When induction is magnetic field 6 from coil 2 in polarity against magnetic field 7 from coil 3 directed. The exciter coil 4 is above the magnetic core 1 wrapped from outside. The electric current in exciting coil 4 creates a weak magnetic field inside the magnetic core 1 and calls the induction in the coils 2 . 3 out. After that, in the magnetic field 6 from coil 2 electrical voltage and current in coil 3 induced. Simultaneous, magnetic field 7 from coil 3 induces electrical Voltage and current in coil 2 , This is the physical novelty of this invention. In the generator described here, the self-induction is theoretically divided into two parts. induction coil 2 acts with its magnetic field against the magnetic field of induction coil 3 and vice versa. The functioning physical process will be used throughout the global economy. The induced voltage and the current in both induction coils 2 . 3 rise simultaneously in each half period upwards.
  • It is experimentally easy to prove that the power in exciter coil 4 Reactive power is, ie, whose power factor cos Phi is in the range of 0.1. Furthermore, the power factor cos Phi lies in both induction coils 2 and 3 in the range of 0.9. This means that by the reactive current oscillation in the capacitance winding in exciting coil 4 Active power in the induction coils 2 . 3 is induced.
  • The physical function of the device described here is a mystery from the present state of knowledge in physics, which can not be explained in polemics. You can only do that experimentally. An experimental prototype is easy and inexpensive to manufacture in a power workshop. Appropriate measurements prove that the invention described here is scientifically correct.
  • QUOTES INCLUDE IN THE DESCRIPTION
  • This list of the documents listed by the applicant has been generated automatically and is included solely for the better information of the reader. The list is not part of the German patent or utility model application. The DPMA assumes no liability for any errors or omissions.
  • Cited patent literature
    • DE 19927355 A1 [0010]
    • WO 2010/003394 A2 [0011]

Claims (3)

  1. Electric generator, characterized in that on a two-limbed magnetic core (1) made of soft magnetic material, two induction coils (2, 3) are arranged separately on each leg (1A, 1B) and an excitation coil (4) made of band capacitor (10) over the two Leg (1A, 1B) is wound and an oscillating voltage source (17) which is connected via the electrical connection (15) on the exciter coil (4).
  2. Device after Claim 1 , characterized in that the exciter coil (4) consists of capacitive winding and is connected by electrical connections (22, 23) to an oscillating voltage source (24).
  3. Device after Claim 1 , characterized in that in the induction coils (2, 3) induced electrical active power is to be used in the global economy.
DE202018004259.5U 2018-09-13 2018-09-13 Electric generator Active DE202018004259U1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE202018004259.5U DE202018004259U1 (en) 2018-09-13 2018-09-13 Electric generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202018004259.5U DE202018004259U1 (en) 2018-09-13 2018-09-13 Electric generator

Publications (1)

Publication Number Publication Date
DE202018004259U1 true DE202018004259U1 (en) 2018-10-26

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ID=64279370

Family Applications (1)

Application Number Title Priority Date Filing Date
DE202018004259.5U Active DE202018004259U1 (en) 2018-09-13 2018-09-13 Electric generator

Country Status (1)

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DE (1) DE202018004259U1 (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19927355A1 (en) 1999-06-16 2000-12-21 Pavel Imris Transformer with capacitive resistor for operating with high inductivity consists of a low-retentivity magnet core with primary and secondary windings fitted around it.
WO2010003394A2 (en) 2008-07-10 2010-01-14 Pavel Imris Capacitive winding for electric motors, transformers, and solenoids

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19927355A1 (en) 1999-06-16 2000-12-21 Pavel Imris Transformer with capacitive resistor for operating with high inductivity consists of a low-retentivity magnet core with primary and secondary windings fitted around it.
WO2010003394A2 (en) 2008-07-10 2010-01-14 Pavel Imris Capacitive winding for electric motors, transformers, and solenoids

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