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CN204963002U - Air purifier - Google Patents

Air purifier Download PDF

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Publication number
CN204963002U
CN204963002U CN201520573004.9U CN201520573004U CN204963002U CN 204963002 U CN204963002 U CN 204963002U CN 201520573004 U CN201520573004 U CN 201520573004U CN 204963002 U CN204963002 U CN 204963002U
Authority
CN
China
Prior art keywords
air
resistance
blower fan
air purifier
control circuit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520573004.9U
Other languages
Chinese (zh)
Inventor
高凤翔
张天亮
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHENZHEN DINGXIN TECHNOLOGY Co Ltd
Original Assignee
SHENZHEN DINGXIN TECHNOLOGY Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SHENZHEN DINGXIN TECHNOLOGY Co Ltd filed Critical SHENZHEN DINGXIN TECHNOLOGY Co Ltd
Priority to CN201520573004.9U priority Critical patent/CN204963002U/en
Application granted granted Critical
Publication of CN204963002U publication Critical patent/CN204963002U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

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  • Filtering Of Dispersed Particles In Gases (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

The utility model discloses an air purifier, this air purifier includes casing, control circuit and locates on the casing for the external ambient air quality of testing shell converts the air quality detection device of the corresponding signal of telecommunication into, the casing is formed with the wind channel, the wind channel including the air intake of locating the first side of casing with locate the casing with first side back to the air outlet of one side, be equipped with fan and filter in the wind channel, the air inlet oral -lateral in wind channel is located to the filter, the fan lies in filter one side of air intake dorsad in the wind channel, on control circuit also located the casing, air quality detection device and fan were connected with the control circuit electricity respectively, control circuit is used for adjusting the rotational speed of fan according to the corresponding control signal of electric output. The utility model provides an according to the air pollution degree and set up the efficient air purifier who correspond to purify speed.

Description

Air purifier
Technical field
The utility model relates to air purifier technical field, particularly a kind of air purifier.
Background technology
Air purifier is a kind of for purifying the air of a room, to provide a kind of equipment of comfortable, healthy indoor environment.
But its purification rate of air purifier on the market can not regulate accordingly according to the pollution level of room air at present, to such an extent as to when may occur that IAQ is poor, the purification rate of air purifier is higher; And IAQ poor time, low rate state may be operated in again, to such an extent as to not reach corresponding clean-up effect.
Utility model content
Main purpose of the present utility model is to provide a kind of air purifier, is intended to realize according to the pollution level of room air the rotating speed of corresponding adjustment blower fan, improves purification efficiency.
For achieving the above object, the utility model proposes a kind of air purifier, this air purifier comprises housing, control circuit and is located on described housing, in order to detect described housing external environment air quality and to be converted to the air quality detecting device of the corresponding signal of telecommunication; Described housing is formed with air channel, described air channel comprise the first side being located at described housing air inlet and be located at described housing with described first side back to the air outlet of side, blower fan and filter is provided with in described air channel, the air inlet side in described air channel is located at by described filter, and described blower fan is positioned at the side of described filter described air inlet dorsad in described air channel; Described control circuit is also located on described housing, and described air quality detecting device and blower fan are electrically connected with described control circuit respectively; Described control circuit is used for exporting according to the described signal of telecommunication rotating speed that corresponding control signal regulates described blower fan.
Preferably, described control circuit is specifically for comparing detected value corresponding for the described signal of telecommunication and a threshold value, when the detected value that the described signal of telecommunication is corresponding is greater than described threshold value, exports first and control signal to described blower fan, to heighten the current running speed of described blower fan; When the detected value that the described signal of telecommunication is corresponding is less than or equal to described threshold value, exports second and control signal to described blower fan, to turn down the current running speed of described blower fan.
Preferably, described air quality detecting device comprises dust sensor and gas sensor, described control circuit comprises control chip, the first mu balanced circuit, the second mu balanced circuit and power supply circuits, and described control chip has first input end, the second input, control end; Described dust sensor is connected with the first input end of described control chip through described first mu balanced circuit, and described gas sensor is connected with the second input of described control chip through described second mu balanced circuit; The control end of described control circuit is connected with the controlled end of described power supply circuits, and the output of described power supply circuits is connected with the power end of described gas sensor and dust sensor.
Preferably, described power supply circuits comprise power supply, the first resistance, the second resistance and the first switching tube, and described first mu balanced circuit comprises the first electric capacity and the 3rd resistance, and described second mu balanced circuit comprises the 4th resistance; The power end of described gas sensor is connected with the emitter stage of described first switching tube respectively with the power end of described dust sensor, the colelctor electrode of described first switching tube is connected with described power supply, the base stage of described first switching tube is connected with the first end of described first resistance, and the second end of described first resistance is connected with the control end of described control chip; The first end of described second resistance is connected with power supply, and the second end of described second resistance is connected with the second end of described first resistance; The first end of the output of described dust sensor, the first input end of described control chip, the first electric capacity and the first end interconnection of described 3rd resistance, the second end of described 3rd resistance is connected with described power supply; The first end interconnection of the output of described gas sensor, the second input of described control chip and described 4th resistance, the second end ground connection of described 4th resistance.
Preferably, described filter comprises first panel and the second panel with filtering function, and the first side of described first panel and the first side of the second panel are hinged by articulated elements.
Preferably, described air purifier also comprises the anion generator be located in described air channel, and described anion generator is between described filter and described air inlet; Described blower fan is positioned at the side of described filter described air inlet dorsad in described air channel.
Preferably, described air purifier also comprises fixed protection net, and described fixed protection net is located between described blower fan and described filter.
Preferably, described air purifier also comprises the automatically controlled display board be electrically connected with described control circuit, and described automatically controlled display board is arranged at described case top.
Preferably, be also provided with fixed head in described air channel, described blower fan is located on described fixed head.
The utility model is by arranging housing, control circuit, blower fan, filter and the air quality detecting device in order to detect the outer current environment air quality of described housing; Described housing is formed with air channel, described air channel comprise the first side being located at described housing air inlet and be located at described housing with described first side back to the air outlet of side, described air quality detecting device and blower fan are electrically connected with described control circuit respectively, described control circuit controls described rotation speed of fan according to sensor image data, thus according to the rotating speed of the corresponding adjustment blower fan of air pollution degree, and the purification efficiency of air purifier can be improved.
Accompanying drawing explanation
Fig. 1 is the stereogram of the utility model air purifier preferred embodiment;
Fig. 2 is the electrical block diagram of air quality detecting device in Fig. 1;
Fig. 3 is the top view of the utility model air purifier;
Fig. 4 is the internal structure schematic diagram of the utility model air purifier.
Drawing reference numeral illustrates:
Label Title Label Title
100 Housing 900 Automatically controlled display board
200 Control circuit PM First input end
300 Air quality detecting device R1 First resistance
310 Dust sensor R2 Second resistance
320 Gas sensor R3 3rd resistance
400 Blower fan R4 4th resistance
500 Filter C1 First electric capacity
510 First panel VCC Power supply
520 Second panel Q1 First switching tube
600 Anion generator 10 First mu balanced circuit
110 Air inlet 20 Second mu balanced circuit
120 Air outlet 30 Power supply circuits
700 Fixed protection net VOC Second input
800 Fixed head Power Control end
The realization of the utility model object, functional characteristics and advantage will in conjunction with the embodiments, are described further with reference to accompanying drawing.
Detailed description of the invention
Be described further with regard to the technical solution of the utility model below in conjunction with drawings and the specific embodiments.Should be appreciated that specific embodiment described herein only in order to explain the utility model, and be not used in restriction the utility model.
The utility model proposes a kind of air purifier.
With reference to Fig. 1 and Fig. 2, in the utility model one embodiment, this air purifier comprises housing 100, control circuit 200 and is located on described housing 100, in order to detect the outer ambient air quality residing for it of described housing 100 and the inspection air quality being converted to the corresponding signal of telecommunication surveys device 300; Described housing 100 is formed with air channel, described air channel comprises the air inlet 110 of the first side being located at described housing 100 and is located at the air outlet 120 of the second side of described housing, blower fan 400 and filter 500 is provided with in described air channel, air inlet 110 side in described air channel is located at by described filter 500, and described blower fan 400 is positioned at the side of described filter 500 described air inlet 110 dorsad in described air channel; Described control circuit 200 is also located on described housing 100, and described air quality detecting device 300 and blower fan 400 are electrically connected with described control circuit 200 respectively; Described control circuit 200 is for exporting the rotating speed that corresponding control signal regulates described blower fan 400 according to the described signal of telecommunication.
Wherein, described control circuit 200 is specifically for comparing detected value corresponding for the described signal of telecommunication and a threshold value, when the detected value that the described signal of telecommunication is corresponding is greater than described threshold value, exports first and control signal to described blower fan 400, to heighten the current running speed of described blower fan 400; When the detected value that the described signal of telecommunication is corresponding is less than or equal to described threshold value, exports second and control signal to described blower fan 400, to turn down the current running speed of described blower fan 400.Wherein, the rotating speed size that blower fan 400 regulates at every turn, can specifically be arranged according to actual needs.Be understandable that, due to when current environment air quality is poor, heighten the current running speed of described blower fan 400, and when current environment air quality is better, turn down the current running speed of blower fan 400, like this, while the corresponding clean-up effect of guarantee, again reduce Overall Power Consumption, thus improve the purification efficiency of this air purifier.
Particularly, with reference to Fig. 2, Fig. 3 and Fig. 4, above-mentioned air quality detecting device 300 comprises dust sensor 310 and gas sensor 320, described control circuit comprises control chip U1, the first mu balanced circuit 10, second mu balanced circuit 20 and power supply circuits 30, and described control chip U1 comprises first input end PM, the second input VOC, control end Power; Described dust sensor 310 is connected with the first input end PM of described control chip U1 through described first mu balanced circuit 10, and described gas sensor 320 is connected with the second input VOC of described control chip U1 through described second mu balanced circuit 20; The control end Power of described control circuit 200 is connected with the controlled end of described power supply circuits 30, and the output of described power supply circuits 30 is connected with the power end of described gas sensor 320 and dust sensor 310.In the present embodiment, described dust sensor 310 preferably adopts Figaro series sensor, and gas sensor 320 preferably adopts refreshing flourish series sensor, and described first switching tube Q1 preferably adopts NPN to manage.
Above-mentioned power supply circuits 30 comprise power supply VCC, the first resistance R1, the second resistance R2 and the first switching tube Q1, and described first mu balanced circuit 10 comprises the first electric capacity C1 and the 3rd resistance R3, and described second mu balanced circuit 20 comprises the 4th resistance R4; The power end of described gas sensor 320 is connected with the emitter stage of described first switching tube Q1 respectively with the power end of described dust sensor 310, the colelctor electrode of described first switching tube Q1 is connected with described power supply VCC, the base stage of described first switching tube Q1 is connected with the first end of described first resistance R1, and second end of described first resistance R1 is connected with the control end Power of described control chip U1; The first end of described second resistance R2 is connected with power supply VCC, and second end of described second resistance R2 is connected with second end of described first resistance R1; The first end of the output of described dust sensor 310, the first input end PM of described control chip U1, the first electric capacity C1 and the first end interconnection of described 3rd resistance R3, described 3rd resistance R3 the second end be connected with power supply VCC, dust sensor 310 can be exported signal of telecommunication clamper at high level state by the 3rd resistance R3; The first end interconnection of the output of described gas sensor 320, the second input VOC of described control chip U1 and described 4th resistance R4, the second end ground connection of described 4th resistance R4, gas sensor can be exported signal of telecommunication clamper at low level state by the 4th resistance R4.
In this embodiment, after air purifier powers on, control circuit 200 initializes, control circuit 200 control end Power exports high level, first switching tube Q1 conducting is opened, power supply VCC powers to gas sensor 320 and dust sensor 310, and gas sensor 320 and dust sensor 310 are started working.
Particle concentration in dust sensor 310 pairs of current environment air gathers, such as gather PM2.5 granule density, the corresponding signal of telecommunication is exported to control circuit 200 after gathering, the threshold value prestored in detected value (this detected value is low level dutycycle) corresponding for this signal of telecommunication and its internal register is compared by its internal comparator by control circuit 200, when the detected value that this signal of telecommunication is corresponding is greater than described threshold value, represent that dust in air is more, now need fast purification air, then control circuit 200 exports first and controls signal to blower fan, heighten the current running speed of blower fan, air output is increased, thus the purification speed accelerated dust in current environment.Understandablely be, when after air purifier work a period of time, dust granules in air will reduce, and namely particle concentration can decline, and now dust sensor 310 detects that the detected value that the described signal of telecommunication is corresponding will be less than or equal to described threshold value, namely now without the need to fast purification air, also can ensure that air quality reaches requirement, then control circuit 200 exports second and controls signal to described blower fan, turns down the current running speed of described blower fan, air output is reduced, and saves energy consumption.
Smell sensor 320 is for detecting the harmful gas concentration in environment, the embodiment that harmful gas concentration in the air that control circuit 200 detects according to dust sensor 310 dust concentration controlled in the air that the mode of blower fan 400 rotating speed and above-mentioned control circuit 200 detect according to gas sensor 310 controls blower fan 400 rotating speed is basically identical, repeats no more herein; Difference is the concentration that VOC smell sensor detects is that magnitude of voltage represents, namely corresponding detected value is magnitude of voltage, and the particle concentration that dust sensor detects is low level dutycycle.
It should be noted that, as long as dust sensor 310 is to there being a sensor to detect in smell sensor 320, the detected value that air mass signal is corresponding is greater than corresponding threshold value, then no matter the numerical value that detects of another sensor compared with its corresponding detected value after result how, control circuit 200 will be heightened by the corresponding current rotating speed by blower fan 400.
Also it should be noted that, control circuit 200, first mu balanced circuit 10, second mu balanced circuit 20, power supply circuits 30, dust sensor 310 and gas sensor 320 can preferably be integrated on one piece of wiring board, and be arranged at inside shell of air purifier 100, to reduce the installation of parts.
In a preferred embodiment, upper filter 500 comprises first panel 510 and second panel 520 with filtering function, and the first side of described first panel 510 and the first side of the second panel 520 are hinged by articulated elements.After this filter is installed, the first panel 510 and the second panel 520 are arranged in " V " font at air inlet 110 place, to increase filter 500 and the contact area by air, increase clean-up effect.Wherein, filter 500 is the complex filter of high efficiency particle air filter (HEPA) net and active carbon net.HEPA net can fine dust effectively in absorbed air, realize the purification to dust in air particle, and active carbon net can be used for the pernicious gases such as formaldehyde in absorbed air, toluene, hydrogen sulfide, chlorobenzene, realizes the deodourizing to pernicious gas in air.
Based on above-described embodiment, and with reference to Fig. 1, in a further embodiment, described air purifier also comprises the anion generator 600 be located in described air channel, and described anion generator 600 is between described filter 500 and described air inlet 110; Described blower fan 400 is positioned at the side of described filter 500 described air inlet 110 dorsad in described air channel.Described anion generator 600 is for generation of electronics, and electronics oxygen molecule in air is combined the anion being formed with and benefiting health.
In this embodiment, the space passed for described anion generator 600 is provided with between first side of above-mentioned filter 500 first panel 510 and the first side of described second panel 520, so that install, and make anion generator 600 between the first panel 510 and the second panel 520, anion process is carried out, to make to carry anion in air with the air entered air inlet.
Based on above-described embodiment, and with reference to Fig. 3 and Fig. 4, in a further embodiment, described air purifier also comprises fixed protection net 700, described fixed protection net 700 is arranged between described blower fan 400 and filter 500, for filter 500 parts such as grade and blower fan 400 are isolated, when rotating to avoid blower fan 400, parts such as damage filter 500 grade.
Further, be also provided with fixed head 800 in described air channel, described blower fan 400 is located on described fixed head 800, for being fixed by blower fan 400, to make blower fan 400 stable operation, reduces noise.
Further, described air purifier also comprises the automatically controlled display board 900 be electrically connected with described control circuit 200, described automatically controlled display board 900 is preferably disposed on the end face of described housing 100, for showing dust concentration that dust sensor 310 detects and the parameter such as harmful gas concentration and blower fan 400 rotating speed that smell sensor 320 detects.Wherein, described automatically controlled display board 900 also can have mechanical key and touch controllable function.
To sum up, the utility model air purifier is by arranging housing 100, control circuit 200, blower fan 400, filter 500 and the air quality detecting device 300 in order to detect the outer current environment air quality of described housing; Described housing 100 is formed with air channel, described air channel comprise the first side being located at described housing 100 air inlet 110 and be located at described housing 100 with described first side back to the air outlet 120 of side, described air quality detecting device 300 and blower fan 400 are connected with described control circuit electricity 200 respectively, described control circuit 200 controls described blower fan 400 rotating speed according to air quality detecting device 300 image data, thus the pollution level realized according to current environment air, the rotating speed of corresponding adjustment blower fan, and improve the purification efficiency of this air purifier.
Should be noted that; the technical scheme of each embodiment of the present utility model can be combined with each other; but must be can be embodied as basis with those skilled in the art; when technical scheme combination occur conflicting maybe cannot realize time will be understood that the combination of this technical scheme does not exist, also not the utility model require protection domain within.
The foregoing is only preferred embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every equivalent structure transformation utilizing the utility model description and accompanying drawing content to do; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.

Claims (9)

1. an air purifier, is characterized in that, this air purifier comprises housing, control circuit and is located on described housing, in order to detect described housing external environment air quality and to be converted to the air quality detecting device of the corresponding signal of telecommunication; Described housing is formed with air channel, described air channel comprise the first side being located at described housing air inlet and be located at described housing with described first side back to the air outlet of side, blower fan and filter is provided with in described air channel, the air inlet side in described air channel is located at by described filter, and described blower fan is positioned at the side of described filter described air inlet dorsad in described air channel; Described control circuit is also located on described housing, and described air quality detecting device and blower fan are electrically connected with described control circuit respectively; Described control circuit is used for exporting according to the described signal of telecommunication rotating speed that corresponding control signal regulates described blower fan.
2. air purifier as claimed in claim 1, it is characterized in that, described control circuit is specifically for comparing detected value corresponding for the described signal of telecommunication and a threshold value, when the detected value that the described signal of telecommunication is corresponding is greater than described threshold value, export first and control signal to described blower fan, to heighten the current running speed of described blower fan; When the detected value that the described signal of telecommunication is corresponding is less than or equal to described threshold value, exports second and control signal to described blower fan, to turn down the current running speed of described blower fan.
3. air purifier as claimed in claim 2, it is characterized in that, described air quality detecting device comprises dust sensor and gas sensor, described control circuit comprises control chip, the first mu balanced circuit, the second mu balanced circuit and power supply circuits, and described control chip has first input end, the second input, control end; Described dust sensor is connected with the first input end of described control chip through described first mu balanced circuit, and described gas sensor is connected with the second input of described control chip through described second mu balanced circuit; The control end of described control circuit is connected with the controlled end of described power supply circuits, and the output of described power supply circuits is connected with the power end of described gas sensor and dust sensor.
4. air purifier as claimed in claim 3, it is characterized in that, described power supply circuits comprise power supply, the first resistance, the second resistance and the first switching tube, and described first mu balanced circuit comprises the first electric capacity and the 3rd resistance, and described second mu balanced circuit comprises the 4th resistance; The power end of described gas sensor is connected with the emitter stage of described first switching tube respectively with the power end of described dust sensor, the colelctor electrode of described first switching tube is connected with described power supply, the base stage of described first switching tube is connected with the first end of described first resistance, and the second end of described first resistance is connected with the control end of described control chip; The first end of described second resistance is connected with power supply, and the second end of described second resistance is connected with the second end of described first resistance; The first end of the output of described dust sensor, the first input end of described control chip, the first electric capacity and the first end interconnection of described 3rd resistance, the second end of described 3rd resistance is connected with described power supply; The first end interconnection of the output of described gas sensor, the second input of described control chip and described 4th resistance, the second end ground connection of described 4th resistance.
5. air purifier as claimed in claim 1, it is characterized in that, described filter comprises first panel and the second panel with filtering function, and the first side of described first panel and the first side of the second panel are hinged by articulated elements.
6. as the air purifier in claim 1 to 5 as described in any one, it is characterized in that, described air purifier also comprises the anion generator be located in described air channel, and described anion generator is between described filter and described air inlet; Described blower fan is positioned at the side of described filter described air inlet dorsad in described air channel.
7. air purifier as claimed in claim 6, it is characterized in that, described air purifier also comprises fixed protection net, and described fixed protection net is located between described blower fan and described filter.
8. air purifier as claimed in claim 6, it is characterized in that, described air purifier also comprises the automatically controlled display board be electrically connected with described control circuit, and described automatically controlled display board is arranged at described case top.
9. air purifier as claimed in claim 6, it is characterized in that, be also provided with fixed head in described air channel, described blower fan is located on described fixed head.
CN201520573004.9U 2015-07-31 2015-07-31 Air purifier Expired - Fee Related CN204963002U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520573004.9U CN204963002U (en) 2015-07-31 2015-07-31 Air purifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520573004.9U CN204963002U (en) 2015-07-31 2015-07-31 Air purifier

Publications (1)

Publication Number Publication Date
CN204963002U true CN204963002U (en) 2016-01-13

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CN201520573004.9U Expired - Fee Related CN204963002U (en) 2015-07-31 2015-07-31 Air purifier

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105115049A (en) * 2015-07-31 2015-12-02 深圳市鼎信科技有限公司 Air purifier and control method thereof
CN109237668A (en) * 2018-10-29 2019-01-18 山东农业工程学院 One kind is based on monolithic processor controlled air detection and purification device and its method
CN111836970A (en) * 2018-03-05 2020-10-27 戴森技术有限公司 Fan assembly
US11946478B2 (en) 2018-03-05 2024-04-02 Dyson Technology Limited Fan assembly

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105115049A (en) * 2015-07-31 2015-12-02 深圳市鼎信科技有限公司 Air purifier and control method thereof
CN105115049B (en) * 2015-07-31 2018-06-26 深圳市鼎信科技有限公司 Air purifier and its control method
CN111836970A (en) * 2018-03-05 2020-10-27 戴森技术有限公司 Fan assembly
CN111836970B (en) * 2018-03-05 2022-03-29 戴森技术有限公司 Fan assembly
US11946478B2 (en) 2018-03-05 2024-04-02 Dyson Technology Limited Fan assembly
CN109237668A (en) * 2018-10-29 2019-01-18 山东农业工程学院 One kind is based on monolithic processor controlled air detection and purification device and its method

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20160113

Termination date: 20190731