Ацюковский В.А. Начала эфиродинамического естествознания. Книга 5. Первые эфиродинамические эксперименты и технологии. М.:Петит, 2010. — 320 с. — ISBN 978-5-85101-035-4

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Microsoft Word - 5_001_Титул5.doc

238

Приложение 2.

WO 2008/103129    PCT/TR2007/000050

Second circuit; consists of second filter, frequency stabilizer, second bobbin, second frequency adjuster.

First circuit is designed for generating electricity by transferring the electro magnetic field occurred at the first bobbin with the electric energy received from the independent initial 5 power supply, to second bobbin. And as the second circuit; Due to the high magnetic field received from the first bobbin, there occurs a magnetic field difference between the bobbins. The magnetic field difference occurred between the second bobbin and first bobbin stabilized by the help of frequency stabilizer within this circuit line. As stabilizing the magnetic field difference by the help of frequency stabilizer, this circuit line also converts the energy which 10 is moving independently in the air at the second bobbin designed within this line to electric energy. This electric energy formed by the second bobbin adjusts the necessary frequency (220 Y - 50Hzorll0V -60 Hz) for use, by the help of second frequency adjuster designed at the bobbin output. This generated electric energy is transferred to the intended usage area via exit points. Through the circuit cables connected to the exit points, the device feeds itself 15 with the generated electric energy. This mentioned process eventuates 1 -2 seconds after the device is got started. After this process, the time relay power switch designed at the input of the device breaks the initial energy supply. After this stage, the device generates the energy independently.

The present invention is designed as single phase and as the phase number is desired 20 to be increased, the bobbin number shall also be increased for each phase. Depending on the number of bobbins, the capacities of other parts used in the device axe increased symmetrically.

It is possible to obtain energy in desired amounts of KW from the device. It is necessary to increase the capacity of the parts depending on the value of the electric energy.

25    The figures related to the invention are given enclosed; from the related figures:

Figure 1- Schematic view of the present invention

The parts related to the invention are given numbers and the explanations responding these numbers are as follows:

1- Power switch

30 2 - Capacitor

3- Points (as distributor of an engine)

2

Microsoft Word - 5_001_Титул5.doc

Фотографии демонстрации макета электрогенератора

и патент Тариэля Капанадзе

239

WO 2008/103129    PCT/TR2007/000050

4-    High frequency generator

5-    First filter

6-    First bobbin

7-    First frequency adjuster 5 8- Second filter

9-    Frequency stabilizer (adjuster)

10-    Second bobbin

11-    Second frequency adjuster

12-    Exit (phase) (positive)

10 12a- Positive transformation cable

13-    Exit (neutral)

13 a- Negative transformation cable

14-    Neutral (grounding)

15 - Initial power supply

15 A-First circuit cable

B- Second circuit cable

The operation of the present device is explained as below, giving reference to the parts’ numbers through the figure enclosed.

Energy and frequency circuit on the first circuit (A)

20    Opening the power switch, the user gives the electric energy received from the initial

energy supply (15) to the first circuit cable (A). Being loaded with the electric energy received from the energy supply (15) the capacitor (2) serves as a pump, and provides the points (3) to give electric to the high frequency generator (4). High frequency generator (4) transfers the high amount of frequency it generated to the first filter (5). First filter (5) 25 stabilizes the frequency received from the high frequency generator (4) and regularly transfers to the first bobbin (6). Creating a magnetic field around itself with the high frequency regularly received from the first filter (5); first bobbin (6) transfers it to the second bobbin (10). Subsequently, following the first circuit cable (A), the high frequency passing from the

3



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