CN2712892Y - Portable ozone generating circuit - Google Patents
Portable ozone generating circuit Download PDFInfo
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- CN2712892Y CN2712892Y CN 200420046907 CN200420046907U CN2712892Y CN 2712892 Y CN2712892 Y CN 2712892Y CN 200420046907 CN200420046907 CN 200420046907 CN 200420046907 U CN200420046907 U CN 200420046907U CN 2712892 Y CN2712892 Y CN 2712892Y
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- inductance
- circuit
- frequency
- ozone generation
- portable ozone
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- Oxygen, Ozone, And Oxides In General (AREA)
Abstract
The utility model relates to a portable ozone generating circuit which comprises a DC power supply unit, an oscillating circuit, a high-voltage generating circuit and an ozone generator which are connected orderly, wherein, the oscillating circuit transforms DC voltage into impulse voltage which is applied to the ozone generator after the voltage boost by the high-voltage generator, and the ozone generator applied with high potential ionizes the surrounding oxygen to generate ozone when in contact with skins of the human body with low potential. The portable ozone generating circuit of the utility model has the advantages of easy carrying and use and reduction of energy consumption.
Description
Technical field
The utility model relates to a kind of ozone generation circuit.
Background technology
There are a lot of utilizations to use ozone gas at present, treatment skin blemishes or carry out the method for beautifying skin at skin surface.And the method that adopts more generation ozone gas is to make the electrified body discharge near skin, thereby near the oxygen the ionization skin produces ozone.But this kind equipment common configuration complexity is bulky at present, is not easy to family and uses.
The utility model content
Technical problem to be solved in the utility model is, a kind of portable ozone generation circuit is provided, and it can produce ozone.
The technical solution of the utility model provides a kind of portable ozone generation circuit, comprise the DC power source unit, oscillatory circuit, high-pressure generating circuit and the ozonizer that connect successively, described oscillatory circuit is converted to pulsed voltage, high pressure producer with volts DS and pulsed voltage is boosted after-applied in ozonizer, and the ionization ambient oxygen produces ozone when applying the human body skin of ozonizer contact low potential of noble potential.
In the above-mentioned portable ozone generation circuit, also comprise the frequency-conversion circuit that connects oscillatory circuit and high-pressure generating circuit, is used to adjust pulse repetition frequency, the pulsed voltage after described frequency-conversion circuit will be adjusted frequency outputs to high pressure producer and boosts.
In the above-mentioned portable ozone generation circuit, described high-pressure generating circuit is more than 1000 volts with the magnitude of voltage rising of pulsed voltage.
In the above-mentioned portable ozone generation circuit, described oscillatory circuit comprises a vibrator.
In the above-mentioned portable ozone generation circuit, described oscillatory circuit comprises triode, first inductance, second inductance, the 3rd inductance, the base stage and the collector electrode of described first inductance, second inductance, the 3rd inductance and triode are connected in series, the positive voltage output of described power subsystem connects the tie point of first inductance and second inductance, negative voltage output then connects the tie point of the 3rd inductance and transistor base, and negative voltage output also connects the emtting electrode of triode.
In the above-mentioned portable ozone generation circuit, described triode adopts the triode of big scale-up factor, big impedance, little pressure drop.
In the above-mentioned portable ozone generation circuit, the frequency that described frequency-conversion circuit will be exported pulse is adjusted into low frequency.
In the above-mentioned portable ozone generation circuit, described frequency-conversion circuit is by the 4th inductance, first diode and second diode, exchange diac, first resistance, second resistance, potentiometer, electrical condenser and the 5th inductance are formed, described the 4th inductance is used to respond to the pulsed voltage of first inductance and second inductance, described the 4th inductance first diode, potentiometer first resistance, exchange diac and the 5th inductance and connect to form the loop line successively, described second diode is in parallel with the 5th inductance, described electric capacity one end is connected in first resistance and the tie point that exchanges diac, and described second resistance is parallel to described electric capacity.
Portable ozone generation circuit of the present utility model not only carries, easy to use, and can reduce energy consumption.
Description of drawings
Fig. 1 is the principle schematic of portable ozone generation circuit of the present utility model.
Fig. 2 is the schematic circuit of portable ozone generation circuit of the present utility model.
Embodiment
As shown in Figure 1, portable ozone generation circuit of the present utility model is made up of power subsystem 11, oscillatory circuit 12, frequency-conversion circuit 13, high-pressure generating circuit 14 and ozonizer 15.
Wherein power subsystem is connected with battery, but adopts ni-mh (Ni-MH) battery of recharge, voltage DC3.6V in the present embodiment.Oscillatory circuit 12 is used for transferring direct current to certain frequency pulsed voltage.Frequency-conversion circuit 13 is further adjusted the frequency of pulsed voltage, and in the present embodiment, the range of frequency of employing is 50Hz-100Hz.Certainly, this frequency is as long as be 20-100Hz in low-frequency range.High-pressure generating circuit 14 then promotes more than magnitude of voltage to 1000 volt of above-mentioned high-frequency pulse voltage, and the voltage in the present embodiment is the 3000-4000 volt.
Ozonizer 15 is electroded airtight glass envelopes, can be vacuum or filling with inert gas or nitrogen etc. in the airtight glass envelope.Electrode on the airtight glass envelope is connected to high-pressure generating circuit.When connecting the glass envelope contact user's who goes up high voltage electric skin, because user's the relative glass envelope of skin is in low potential, glass envelope discharges on user's the skin by " corona " effect.Be present in the electronics between glass envelope and skin, be accelerated by electron avalanche effect.Airborne oxygen molecule touches accelerated electron and is ionized, and produces ozone by chain reaction near user's skin.
As shown in Figure 2, be the schematic circuit of portable ozone generation circuit.
Charge port CK, battery E, resistance R 1, diode D1, D2 have constituted power subsystem 11 jointly.Can connect charger by charge port CK charges to battery E.
Frequency-conversion circuit 13 by secondary, the diode D3 of transformer B1 with D5 (T-R107), exchange diac D4 (DB120), resistance R 3 and R4, potentiometer W1, electrical condenser C1 and the elementary of transformer B2 and form.Wherein the secondary resonant frequency f0 that oscillatory circuit is produced of transformer B1 is coupled to secondaryly, and D3 is rectified into half-wave voltage through diode, by resistance R 3, R4, potentiometer W1 electrical condenser is charged again.When electrical condenser C1 both end voltage when exchanging the trigger voltage of diac D4 (DB120), then exchange diac D4 conducting.This moment, capacitor C 1 both end voltage to the elementary discharge of transformer B2, induced LF voltage by D4 in the coil of transformer B2, by adjusting the amount of capacity of capacitor C 1, can change the low frequency frequency.The low frequency frequency is in the 50HZ-100HZ scope in the present embodiment.This frequency people is the most responsive, and it is best that effect is felt.
High voltage electric routing transformer B2 forms.It will flow through the low-frequency pulse voltage of transformer B2 primary winding, boost that it is secondary to be coupled to, and form high tension voltage 3-4 kilovolt.Consider safe insulation, transformer B2 adopts the Resins, epoxy embedding, certainly also can be by other insulating material embeddings.
Claims (8)
1, a kind of portable ozone generation circuit, it is characterized in that, comprise the DC power source unit, oscillatory circuit, high-pressure generating circuit and the ozonizer that connect successively, described oscillatory circuit is converted to pulsed voltage, high pressure producer with volts DS and pulsed voltage is boosted after-applied in ozonizer, and the ionization ambient oxygen produces ozone when applying the human body skin of ozonizer contact low potential of noble potential.
2, according to the described portable ozone generation of claim 1 circuit, it is characterized in that, also comprise the frequency-conversion circuit that connects oscillatory circuit and high-pressure generating circuit, is used to adjust pulse repetition frequency, the pulsed voltage after described frequency-conversion circuit will be adjusted frequency outputs to high pressure producer and boosts.
According to the described portable ozone generation of claim 1 circuit, it is characterized in that 3, described high-pressure generating circuit is more than 1000 volts with the magnitude of voltage rising of pulsed voltage.
4, according to the described portable ozone generation of claim 1 circuit, it is characterized in that described oscillatory circuit comprises a vibrator.
5, according to the described portable ozone generation of claim 1 circuit, it is characterized in that, described oscillatory circuit comprises triode, first inductance, second inductance, the 3rd inductance, the base stage and the collector electrode of described first inductance, second inductance, the 3rd inductance and triode are connected in series, the positive voltage output of described power subsystem connects the tie point of first inductance and second inductance, negative voltage output then connects the tie point of the 3rd inductance and transistor base, and negative voltage output also connects the emtting electrode of triode.
According to the described portable ozone generation of claim 5 circuit, it is characterized in that 6, described triode adopts the triode of big scale-up factor, big impedance, little pressure drop.
7, according to the described portable ozone generation of claim 2 circuit, it is characterized in that the frequency that described frequency-conversion circuit will be exported pulse is adjusted into low frequency.
8, according to the described portable ozone generation of claim 2 circuit, it is characterized in that, described frequency-conversion circuit is by the 4th inductance, first diode and second diode, exchange diac, first resistance, second resistance, potentiometer, electrical condenser and the 5th inductance are formed, described the 4th inductance is used to respond to the pulsed voltage of first inductance and second inductance, described the 4th inductance first diode, potentiometer first resistance, exchange diac and the 5th inductance and connect to form the loop line successively, described second diode is in parallel with the 5th inductance, described electric capacity one end is connected in first resistance and the tie point that exchanges diac, and described second resistance is parallel to described electric capacity.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420046907 CN2712892Y (en) | 2004-06-08 | 2004-06-08 | Portable ozone generating circuit |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200420046907 CN2712892Y (en) | 2004-06-08 | 2004-06-08 | Portable ozone generating circuit |
Publications (1)
Publication Number | Publication Date |
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CN2712892Y true CN2712892Y (en) | 2005-07-27 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN 200420046907 Expired - Fee Related CN2712892Y (en) | 2004-06-08 | 2004-06-08 | Portable ozone generating circuit |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106145050A (en) * | 2016-08-31 | 2016-11-23 | 顺德职业技术学院 | Ozonator |
-
2004
- 2004-06-08 CN CN 200420046907 patent/CN2712892Y/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106145050A (en) * | 2016-08-31 | 2016-11-23 | 顺德职业技术学院 | Ozonator |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
PP01 | Preservation of patent right |
Effective date of registration: 20090304 Pledge (preservation): Preservation |
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PD01 | Discharge of preservation of patent |
Date of cancellation: 20100304 Granted publication date: 20050727 |
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C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20050727 Termination date: 20090608 |