CN205351547U - Strong effect air purifier of intelligent control - Google Patents
Strong effect air purifier of intelligent control Download PDFInfo
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- CN205351547U CN205351547U CN201620012307.8U CN201620012307U CN205351547U CN 205351547 U CN205351547 U CN 205351547U CN 201620012307 U CN201620012307 U CN 201620012307U CN 205351547 U CN205351547 U CN 205351547U
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Abstract
The utility model discloses a strong effect air purifier of intelligent control, including casing and microcontroller, set gradually air intake, fan on this casing, slightly imitated filter, air pipe, high -efficient air cleaner and air outlet, be provided with water conservancy diversion circle round wind channel and multiband resonance light source in this air pipe, this multiband resonance light source sets up in the water conservancy diversion wind channel middle part of circling round, and this water conservancy diversion circles round the wind channel and includes that surface coating has a plurality of spiral blades of ti02 photocatalyst, this microcontroller includes data monitoring module, data analysis processing module, display module and two -way drive module, and this data monitoring module sets up in air intake department to be connected with data analysis processing module, this data analysis processing module connects respectively in two -way drive module and display module, and this two -way drive module connects respectively in fan and multiband resonance light source. This gas purifier purification is imitated highly, realizes intelligent, automated control clarifier and opens and close, reduces power consumption, increase of service life.
Description
Technical field
This utility model relates to a kind of depurator, particularly relates to the potent air purifier of a kind of intelligentized control method.
Background technology
Existing air purifier, great majority are to adsorb, decompose or convert various air pollutants (generally comprising the finishing pollution of dust, pollen, abnormal flavour, formaldehyde etc, antibacterial, anaphylactogen etc.) for main target, to be effectively improved air cleanliness, the domestic removing room air pollution and commercial air purifier.
But, the mode of operation of most depurators is single, control device is less, and purification efficiency is low;Simultaneously, can only artificially choose whether to open air purifier, owing to people can not the situation of perception IAQ (indoor air quality) accurately, when air quality is poor, people can not perception accurately out, cause cannot opening air purifier in time to improve air quality, and when air quality is improved to and to a certain degree need not purify air, people also can not perception timely out, cause cannot closing air purifier in time, air purifier is chronically at opening, causes reduced lifetime, and power consumption increases.
Therefore, develop air purification efficiency height, Based Intelligent Control can purify the air purifier opened and closed, it appears be particularly important.
Utility model content
For above-mentioned deficiency, the purpose of this utility model is in that to provide the potent air purifier of a kind of intelligentized control method, low to solve existing air purifier purification efficiency, manual control depurator opens and closes not in time not problem accurately, this gas purifier purifies effect height, realize intelligent, Automated condtrol depurator open and close, reduce power consumption, increase the service life.
This utility model be the technical scheme is that by reaching above-mentioned purpose
A kind of potent air purifier of intelligentized control method, including casing and the microcontroller being arranged in casing, this casing is disposed with air inlet, blower fan, low efficient filter, ventilation shaft, high efficiency particle air filter and air outlet, it is characterized in that, water conservancy diversion convolution air channel and multiple band resonant light source it is provided with in described ventilation shaft, this multiple band resonant light source is arranged in the middle part of water conservancy diversion convolution air channel, and this water conservancy diversion convolution air channel includes surface spraying Ti02Some spiral vanes of photocatalyst;Described microcontroller includes data monitoring module, Data Analysis Services module, display module and bi-directional drive module, wherein, this data monitoring module is arranged at air inlet, and be connected with Data Analysis Services module, this Data Analysis Services module is connected to bi-directional drive module and display module, and this bi-directional drive module is connected to blower fan and multiple band resonant light source.
As further improvement of the utility model, described bi-directional drive module includes drive circuit in bi-directional, this drive circuit in bi-directional includes CPUP1, photoelectrical coupler MOC3081, three terminal bidirectional alternating-current switch TRIAC, resistance R1, resistance R2, resistance R3, resistance R4, resistance R5, polar capacitor C1, blower fan adapter Q1, multiple band resonant light source connector Q2, switch S1, switch S2, wherein, first pin of this photoelectrical coupler MOC3081 connects resistance R1;Second pin of this photoelectrical coupler MOC3081 is sequentially connected to resistance R2 and CPUP1;6th pin of this photoelectrical coupler MOC3081 is connected to resistance R3 one end, this resistance R3 other end is respectively connecting to three terminal bidirectional alternating-current switch TRIAC one end and resistance R5 one end, this resistance R5 other end is connected to polar capacitor C1 positive pole, 4th pin of this photoelectrical coupler MOC3081 connects resistance R4 one end, this resistance R4 other end is respectively connecting to the three terminal bidirectional alternating-current switch TRIAC other end, polar capacitor C1 negative pole, blower fan adapter Q1 one end and multiple band resonant light source connector Q2 one end, this blower fan adapter Q1 other end connecting valve S1, this multiple band resonant light source connector Q2 other end connecting valve S2.
As further improvement of the utility model, described multiple band resonant light source includes some Ti02Photocatalyst excites light pipe, exterminating bacterium pipe and ozone sterilization pipe, these some Ti02Photocatalyst excites light pipe, exterminating bacterium pipe and ozone sterilization pipe two ends to be individually fixed on two blocks of fixing plates.
As further improvement of the utility model, described data monitoring module includes in particulate monitor, particle sensor, smell sensor and dust sensor at least one.
As further improvement of the utility model, described ventilation shaft inner-wall spraying has efficient Ti02Photocatalyst.
The beneficial effects of the utility model are: have Ti0 by multiple band resonant light source, water conservancy diversion convolution air channel with surface spraying2The setting of some spiral vanes of photocatalyst, the gas entering depurator forms convolution wind in wind ventilation shaft, adds area and the time of contact of harmful gas and photocatalyst, more effectively reaches to purify the purpose of air;Setting by data monitoring module Yu bi-directional drive module, realize automatically monitoring air quality, and drive blower fan and multiple band resonant light source works according to concrete air quality, to open the purification work of air purifier, intelligent, automaticity height, reduce power consumption simultaneously, extend the air purifier life-span.
Above-mentioned is the general introduction of utility model technical scheme, below in conjunction with accompanying drawing and detailed description of the invention, this utility model is described further.
Accompanying drawing explanation
Fig. 1 is the structural representation of this utility model air purifier;
Fig. 2 is the structural representation of this utility model multiple band resonant light source;
Fig. 3 is the structured flowchart of this utility model microcontroller;
Fig. 4 is the schematic diagram of this utility model drive circuit in bi-directional.
Detailed description of the invention
For further setting forth that this utility model is reach technological means and effect that predetermined purpose is taked, below in conjunction with accompanying drawing and preferred embodiment, detailed description of the invention of the present utility model is described in detail.
Refer to Fig. 1 to Fig. 3, this utility model embodiment provides the potent air purifier of a kind of intelligentized control method, including casing 1 and the microcontroller (not shown) being arranged in casing 1, this casing 1 is disposed with air inlet 11, blower fan 12, low efficient filter 13, ventilation shaft 14, high efficiency particle air filter 15 and air outlet 16, water conservancy diversion convolution air channel 17 and multiple band resonant light source 18 it is provided with in described ventilation shaft 14, this multiple band resonant light source 18 is arranged in the middle part of water conservancy diversion convolution air channel 17, and this water conservancy diversion convolution air channel 17 includes surface spraying Ti02Some spiral vanes 171 of photocatalyst.In the present embodiment, described multiple band resonant light source 18 includes some Ti02Photocatalyst excites light pipe 181, exterminating bacterium pipe 182 and ozone sterilization pipe 183, these some Ti02Photocatalyst excites light pipe 181, exterminating bacterium pipe 182 to be individually fixed on two blocks of fixing plates 184 with ozone sterilization pipe 183 two ends;Described ventilation shaft 14 inner-wall spraying has efficient Ti02Photocatalyst.
In the present embodiment, described some Ti02Photocatalyst excites light pipe 181 can make Ti02Photocatalyst is in high intensity excited state, substantially increases Ti02The utilization rate of photocatalyst;Described exterminating bacterium pipe 182 and ozone sterilization pipe 183 each serve as the effect of exterminating bacterium and ozone sterilization.Water conservancy diversion convolution air channel 17 is set in the inside of air purifier, on ventilation shaft 14 inwall with spiral vane 171, is coated with efficient Ti0 simultaneously2Photocatalyst, multiple band resonant light source 18 is placed by central authorities, and the gas entering depurator forms convolution wind in wind ventilation shaft 14, adds area and the time of contact of harmful gas and photocatalyst, more effectively reaches to purify the purpose of air.
Described microcontroller includes data monitoring module 19, Data Analysis Services module, display module and bi-directional drive module, wherein, this data monitoring module 19 is arranged at air inlet 11 place, and be connected with Data Analysis Services module, this Data Analysis Services module is connected to bi-directional drive module and display module, and this bi-directional drive module is connected to blower fan 12 and multiple band resonant light source 18.In the present embodiment, described data monitoring module 19 includes in particulate monitor, particle sensor, smell sensor and dust sensor at least one.
Refer to Fig. 4, described bi-directional drive module includes drive circuit in bi-directional, this drive circuit in bi-directional includes CPUP1, photoelectrical coupler MOC3081, three terminal bidirectional alternating-current switch TRIAC, resistance R1, resistance R2, resistance R3, resistance R4, resistance R5, polar capacitor C1, blower fan adapter Q1, multiple band resonant light source connector Q2, switch S1, switch S2, wherein, first pin of this photoelectrical coupler MOC3081 connects resistance R1;Second pin of this photoelectrical coupler MOC3081 is sequentially connected to resistance R2 and CPUP1;6th pin of this photoelectrical coupler MOC3081 is connected to resistance R3 one end, this resistance R3 other end is respectively connecting to three terminal bidirectional alternating-current switch TRIAC one end and resistance R5 one end, this resistance R5 other end is connected to polar capacitor C1 positive pole, 4th pin of this photoelectrical coupler MOC3081 connects resistance R4 one end, this resistance R4 other end is respectively connecting to the three terminal bidirectional alternating-current switch TRIAC other end, polar capacitor C1 negative pole, blower fan adapter Q1 one end and multiple band resonant light source connector Q2 one end, this blower fan adapter Q1 other end connecting valve S1, this multiple band resonant light source connector Q2 other end connecting valve S2.
The present embodiment detects the particulate in air by data monitoring module 19, granule, at least one in abnormal smells from the patient or dust sensor, can specifically arrange as required, the result detected is analyzed process and obtains air quality information by Data Analysis Services module, and air quality information is sent to bi-directional drive module and display module, this display module shows, simultaneously bi-directionally drive module to simultaneously drive blower fan 12 according to the fine or not degree of air quality information to work with multiple band resonant light source 18, air purifier is made to carry out purifying work, to improve air quality.
Emphasis of the present utility model essentially consists in, and has Ti0 by multiple band resonant light source, water conservancy diversion convolution air channel with surface spraying2The setting of some spiral vanes of photocatalyst, the gas entering depurator forms convolution wind in wind ventilation shaft, adds area and the time of contact of harmful gas and photocatalyst, more effectively reaches to purify the purpose of air;Setting by data monitoring module Yu bi-directional drive module, realize automatically monitoring air quality, and drive blower fan and multiple band resonant light source works according to concrete air quality, to open the purification work of air purifier, intelligent, automaticity height, reduce power consumption simultaneously, extend the air purifier life-span.
The above; it it is only preferred embodiment of the present utility model; not technical scope of the present utility model is imposed any restrictions; therefore adopt the technical characteristic identical or approximate with this utility model above-described embodiment; and the potent air purifier of other intelligentized control method obtained, all within protection domain of the present utility model.
Claims (5)
1. the potent air purifier of an intelligentized control method, including casing and the microcontroller being arranged in casing, this casing is disposed with air inlet, blower fan, low efficient filter, ventilation shaft, high efficiency particle air filter and air outlet, it is characterized in that, water conservancy diversion convolution air channel and multiple band resonant light source it is provided with in described ventilation shaft, this multiple band resonant light source is arranged in the middle part of water conservancy diversion convolution air channel, and this water conservancy diversion convolution air channel includes surface spraying Ti02Some spiral vanes of photocatalyst;Described microcontroller includes data monitoring module, Data Analysis Services module, display module and bi-directional drive module, wherein, this data monitoring module is arranged at air inlet, and be connected with Data Analysis Services module, this Data Analysis Services module is connected to bi-directional drive module and display module, and this bi-directional drive module is connected to blower fan and multiple band resonant light source.
2. the potent control system of air purifier of intelligentized control method according to claim 1, it is characterized in that, described bi-directional drive module includes drive circuit in bi-directional, this drive circuit in bi-directional includes CPUP1, photoelectrical coupler MOC3081, three terminal bidirectional alternating-current switch TRIAC, resistance R1, resistance R2, resistance R3, resistance R4, resistance R5, polar capacitor C1, blower fan adapter Q1, multiple band resonant light source connector Q2, switch S1, switch S2, wherein, first pin of this photoelectrical coupler MOC3081 connects resistance R1;Second pin of this photoelectrical coupler MOC3081 is sequentially connected to resistance R2 and CPUP1;6th pin of this photoelectrical coupler MOC3081 is connected to resistance R3 one end, this resistance R3 other end is respectively connecting to three terminal bidirectional alternating-current switch TRIAC one end and resistance R5 one end, this resistance R5 other end is connected to polar capacitor C1 positive pole, 4th pin of this photoelectrical coupler MOC3081 connects resistance R4 one end, this resistance R4 other end is respectively connecting to the three terminal bidirectional alternating-current switch TRIAC other end, polar capacitor C1 negative pole, blower fan adapter Q1 one end and multiple band resonant light source connector Q2 one end, this blower fan adapter Q1 other end connecting valve S1, this multiple band resonant light source connector Q2 other end connecting valve S2.
3. the potent air purifier of intelligentized control method according to claim 1 and 2, it is characterised in that described multiple band resonant light source includes some Ti02Photocatalyst excites light pipe, exterminating bacterium pipe and ozone sterilization pipe, these some Ti02Photocatalyst excites light pipe, exterminating bacterium pipe and ozone sterilization pipe two ends to be individually fixed on two blocks of fixing plates.
4. the potent air purifier of intelligentized control method according to claim 1 and 2, it is characterised in that described data monitoring module includes in particulate monitor, particle sensor, smell sensor and dust sensor at least one.
5. the potent air purifier of intelligentized control method according to claim 1 and 2, it is characterised in that described ventilation shaft inner-wall spraying has efficient Ti02Photocatalyst.
Priority Applications (1)
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CN201620012307.8U CN205351547U (en) | 2016-01-04 | 2016-01-04 | Strong effect air purifier of intelligent control |
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CN201620012307.8U CN205351547U (en) | 2016-01-04 | 2016-01-04 | Strong effect air purifier of intelligent control |
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106585331A (en) * | 2016-12-15 | 2017-04-26 | 合肥观云阁商贸有限公司 | Safe vehicle-mounted air filtration aroma diffuser |
CN106627051A (en) * | 2016-12-15 | 2017-05-10 | 合肥观云阁商贸有限公司 | Vehicle-mounted air filtering and aromatherapy device |
CN106839092A (en) * | 2016-12-23 | 2017-06-13 | 广西芮芽科技有限公司 | Air purifier with atomizing functions |
CN106839091A (en) * | 2016-12-23 | 2017-06-13 | 广西芮芽科技有限公司 | Air purifier |
CN107185403A (en) * | 2017-06-27 | 2017-09-22 | 成都翰道科技有限公司 | A kind of photocatalyst structure applied to air cleaning unit |
-
2016
- 2016-01-04 CN CN201620012307.8U patent/CN205351547U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106585331A (en) * | 2016-12-15 | 2017-04-26 | 合肥观云阁商贸有限公司 | Safe vehicle-mounted air filtration aroma diffuser |
CN106627051A (en) * | 2016-12-15 | 2017-05-10 | 合肥观云阁商贸有限公司 | Vehicle-mounted air filtering and aromatherapy device |
CN106839092A (en) * | 2016-12-23 | 2017-06-13 | 广西芮芽科技有限公司 | Air purifier with atomizing functions |
CN106839091A (en) * | 2016-12-23 | 2017-06-13 | 广西芮芽科技有限公司 | Air purifier |
CN107185403A (en) * | 2017-06-27 | 2017-09-22 | 成都翰道科技有限公司 | A kind of photocatalyst structure applied to air cleaning unit |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C56 | Change in the name or address of the patentee | ||
CP03 | Change of name, title or address |
Address after: Tianhe District Huang Cun Guangdong province Guangzhou City Daguan road 511400 No. 26 B313 Patentee after: Guangzhou High Technology Co., Ltd. Address before: 523000 Guangdong province Dongguan Nancheng District week Xilong Xi Road No. 5, Goldman science and Technology Park of the two fifteenth storey commercial building room 07 Patentee before: Dongguan high magnetic Technology Co., Ltd. |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160629 Termination date: 20190104 |
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CF01 | Termination of patent right due to non-payment of annual fee |