Device for protection against radiation

 

(57) Abstract:

Usage: in medical technology to create a biological screen that protects against a variety of radiation, including unauthorized psychic impact. The inventive device is a non-magnetic metal sheath, which can be both device and, in this case, should be made hard. Inside the shell is placed in its closed cavity high-frequency arc discharge unit, which can be made on the basis of a discharge lamp, with a coaxially mounted electrodes. The shell has a grounding contact, and may be made of aluminum. 3 C.p. f-crystals, 4 Il.

The invention relates to medical equipment, namely to biological screens. The predominant use of the device, the shielding of various radiations, neutralizing geopathic zones, including protection from unauthorized psychic influences. In addition, the invention can be applied for therapeutic purposes in the treatment of biological objects.

A device for protection against radiation, containing a flat winding of the aluminum film, the cat who has to escape, containing shell of non-magnetic metal, with PE connection [2] This device allows you to protect from radiation some space, but it is quite small and, in addition, this device is not designed to protect against unauthorized psychic influence.

The technical result of the invention is the formation of a biological screen, i.e. the creation of a zone protected from a variety of radiation impinging on the energy of the bio-object, which can be attributed to the influence of geopathic zones, unauthorized psychic influence, etc., For this purpose, the device for protection against radiation, containing a shell of non-magnetic metal, inside the closed cavity of the shell posted by high-frequency arc discharge generator arc discharges made on the basis of a discharge lamp, the electrodes which are placed therein coaxially and are connected in parallel to the high-frequency resonant LC circuit. The device also includes a low frequency oscillator, a capacitor which is connected in parallel through a variable resistor with a high voltage power source through the inductor and resistor with high-frequency generator arc razreda

The shell may be made of aluminum.

The invention is illustrated in the drawing, where Fig.1 shows the device, General view; Fig.2 generated by the device bioenergy screen of Fig.3 schematic diagram of gas-discharge device of Fig.4 formed by a high-frequency pulse arc discharge.

The device comprises a shell 1 of a nonmagnetic metal, such as aluminum, in a closed cavity which contains high-frequency arc discharge device comprising a power source 2, the regulated generator 3 low-frequency and high-frequency generator 4 digits. Electromagnetic shell 1 is made of aluminum and grounded.

In the particular case presents a schematic diagram of the arc discharge device includes a high voltage power supply DC 2, consisting of a transformer 5, the diodes 6 and 7 and capacitor 8 and 9. Generator 3 low frequencies are made of discharge of the capacitor 10, the first locking inductance 11, the second locking inductance 12 and a current-limiting resistor 13, a variable resistor 14. Parallel to the bit capacitor 10 connected to the indicator lamp 15 and a resistor 16. Highly is coastally resonant LC circuit of the serially connected capacitor 18 and inductor 19.

Capacitor 10 connected in parallel with one hand via the variable resistor 14 with a high voltage power source 2, and on the other hand through the inductance 11 and through the inductance 12 and a resistor 13 to the discharge lamp 17.

Bit lamp 17 contains the glass bulb 20, two coaxial cylindrical electrode 21 with a diameter of 6 mm and bit interval of 5 mm Electrodes 21 made of molybdenum, and the bulb 20 is filled with hydrogen to a pressure of 1-2 mm RT. Art. When the hydrogen pressure arc discharge lamp 17 lies on the right-hand branch of the Paschen curve, and the magnitude of the breakdown is 0.9-1.1 kV.

The capacitor 18 and inductor 17 form a high-q high-voltage resonance circuit with a resonance frequency of 16 MHz.

In the design of the shell 1 can be made hard and is a device. The shell has a grounding contact 22. Appearance can be simulated by the diplomat. The knob of the variable resistor 14 is mechanically connected with the switch network 23 and displayed on the front side of the casing and has a scale repetition frequency discharges 10-100 Hz. In the off state, the resistor 14 has a maximum resistance. Indicator lamp 13, megusta works as follows.

By rotating the knob of the variable resistor 14 and closes a switch network 23, and the voltage of the network 200 is connected to the transformer 5. The voltage of the secondary winding of the transformer 5 is rectified by the voltage doubling circuit, performed by diodes 6 and 7 and the capacitor 8 and 9. A constant voltage of 2.5 kV through variable resistor 14 charges the capacitor 10. Upon reaching the voltage across the capacitor 10 values of the breakdown voltage of the lamp 17 (1 kV) breakdown occurs between the electrodes 21, between which arises plasma high-frequency arc discharge with a frequency of oscillation of the arc current 16 MHz, asked resonant LC circuit 18-19. The duration of the high-frequency arc discharge 4 ISS is determined by the discharge time of the capacitor 10 to the extinction voltage of the lamp 17.

The period T of the charge and discharge of the capacitor 10 lies in the regulated range of 0.1 to 0.01, which corresponds to the repetition rate of discharge of 10-100 Hz. Maximum discharge current (Itimes) 400-600 And is limited by the resistor 13.

Thus, the capacitor 10 is periodically charged through variable resistor 14 and is charged through a blocking inductance 11 and 12, the resistor 13 and the lamp 17 and the indicator lamp 15 flashes with chastoty operation of the entire device, form a biological screen 24 of certain sizes. Thus, when the device is within 100 when the repetition rate of the high-frequency arc gas discharge 100 Hz, the device generates around itself volumetric bioenergy screen 24 (Bjoern) fusiform shape with a diameter in the thickened area On 30-40 m and a height equal to H 3-4 Days Variable resistor 14 of the device is regulated by the repetition frequency of the discharge and, thus, the rate of formation of bioarray 24, its size and maintain its density, which decreases from the center of the screen to its periphery.

Bjoern 24 has a common effect. So after turning off the device Bjoern does not disappear, but slowly dissipates within 20-30 minutes

Protective and curative properties bioarena determined psychic method. The protective properties of bioarray expressed in the fact that under the influence of external harmful radiation, with similar properties and structure of bioarray, or unauthorized psychic influence, Bjoern 24 prevents the penetration of these factors in their own area.

In addition to these security properties of biological objects 25 from unauthorized psychic impact of itoi casing 1 of the device and reset it in the ground. This property bioarena 24 can be used when using the device to clean from dirty energy areas to neutralize geopathic zones, as well as for treatment of biological objects 25. So, under the influence of external harmful radiation, for example, when radiation exposure arising in the bioobject 25 dirty bioenergy is constantly displayed in bioastronomy 24 of the bio-object 25 is grounded through the shell 1 into the ground, providing a therapeutic effect and increasing the concentration of vital energy.

1. DEVICE FOR PROTECTION AGAINST RADIATION, containing a shell made of a nonmagnetic metal having a ground contact, wherein the shell is made with a closed cavity in which it is entered into the device high-frequency arc discharge unit.

2. The device under item 1, characterized in that the high-frequency arc discharge unit contains high-frequency generator arc discharges made on the basis of a discharge lamp, the electrode which is installed coaxially and are connected in parallel to the high-frequency resonant LC circuit, and a generator of low frequency, the capacitor which is connected in parallel displaced through the torus arc discharges.

3. The device according to PP.1 and 2, characterized in that the shell is made in the form of a hard shell.

4. The device according to PP.1 to 3, characterized in that the shell is made of aluminum.

 

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1 ex

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