WO2022041071A1 - Humidification apparatus able to automatically rotate, and system - Google Patents
Humidification apparatus able to automatically rotate, and system Download PDFInfo
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- WO2022041071A1 WO2022041071A1 PCT/CN2020/111894 CN2020111894W WO2022041071A1 WO 2022041071 A1 WO2022041071 A1 WO 2022041071A1 CN 2020111894 W CN2020111894 W CN 2020111894W WO 2022041071 A1 WO2022041071 A1 WO 2022041071A1
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- humidity
- mist outlet
- controller
- gear
- atomizer
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F6/00—Air-humidification, e.g. cooling by humidification
- F24F6/12—Air-humidification, e.g. cooling by humidification by forming water dispersions in the air
Definitions
- the present application relates to the field of smart homes, and in particular, to an automatically rotatable humidification device and system.
- a humidifier is a household appliance used to adjust indoor air humidity. When working, the humidifier converts liquid water into water mist through the atomizing device, and then discharges the water mist through the mist outlet to increase the humidity of the indoor environment.
- the existing humidifier cannot detect the humidity of the surrounding environment and automatically change the direction of the mist outlet, which can only be adjusted manually.
- the position of the mist outlet is fixed, and the water mist can only be discharged in one direction. Not only will the humidity of the water mist discharge area be higher than that of other areas, resulting in uneven humidity in the indoor environment.
- the humidity of the water mist discharge area reaches saturation, continuing to humidify will cause waste of water resources.
- the present application provides an automatically rotatable humidification device and system to solve the problem that the existing humidifier cannot detect the humidity of the surrounding environment and cannot automatically change the direction of the mist outlet according to the humidity of the surrounding environment.
- the present application provides an automatically rotatable humidifying device, comprising:
- the mist outlet assembly is detachably arranged on the cover body, and the mist outlet assembly includes a housing and a mist outlet provided on the housing; a rotation mechanism, the rotation mechanism includes a The motor inside the cover body, the first gear arranged on the motor, and the second gear fixed on the bottom of the casing, the second gear meshes with the first gear, and the second gear is separable is arranged in the installation slot; at least one sensor, the sensor includes a humidity detection unit and a positioning unit, the humidity detection unit is used to detect the humidity of the surrounding environment, and the positioning unit is used to generate position information; control The controller is arranged inside the atomizer, and the controller is wirelessly connected with the rotating mechanism and the sensor.
- the bottom of the second gear is provided with a plurality of evenly distributed sliding blocks
- the bottom of the sliding block is provided with a hemispherical structure
- the top of the installation groove is provided with a slideway matched with the sliding block, the The slideway is arranged as a hemispherical groove structure.
- the mist outlet includes a main mist outlet and a plurality of secondary mist outlets, the main mist outlet is arranged on the top of the casing, and the secondary mist outlet is arranged on the casing obliquely upward. body.
- the main mist outlet and the secondary mist outlet are arranged in a structure in which the openings are gradually reduced.
- the lifting mechanism is arranged inside the cover body, the lifting mechanism includes a lifting seat and a plurality of telescopic rods, and the lifting seat is provided with the installation slot and the motor , the telescopic rod is arranged at the bottom of the lifting seat.
- the bottom of the lifting seat is set in a circular structure, and a plurality of the telescopic rods are evenly distributed in a circular structure with the center of the bottom of the lifting seat as the center.
- the senor further includes a temperature detection unit and a display unit, the temperature detection unit and the display unit are wirelessly connected to the controller, the temperature detection unit is used to detect the temperature of the surrounding environment, the The display unit is used for displaying the humidity and temperature data detected by the humidity detection unit and the temperature detection unit.
- the present application also provides a humidification system that can be rotated automatically, including:
- a controller an atomizer, a rotating mechanism and at least one sensor wirelessly connected to the controller, and a mist outlet assembly rotatably connected to the rotating mechanism, wherein;
- the sensor is used to detect the humidity value and generate position information, and send the humidity value and the position information to the controller;
- the controller is configured to receive the humidity value and the position information, compare the humidity value with a preset humidity threshold, and calculate the rotation angle according to the position information if the humidity value is less than the humidity threshold , generating a rotation instruction and an opening instruction according to the rotation angle, and generating a closing instruction if the humidity value is greater than or equal to the humidity threshold;
- the rotation mechanism is used for receiving the rotation instruction, and driving the mist outlet assembly to rotate according to the rotation instruction;
- the atomizer is used for receiving the opening instruction or the closing instruction, and responding to the opening instruction or the closing instruction.
- the controller is further configured to receive a plurality of the humidity values and a plurality of the location information, and if at least one of the humidity values is less than the humidity threshold, sort the plurality of the humidity values, Select the position information corresponding to the minimum humidity value, calculate the rotation angle according to the position information, and generate a rotation instruction and an opening instruction; if the minimum humidity value is greater than or equal to the humidity threshold value, obtain a plurality of the sensors again The detected humidity value and location information; if a plurality of the humidity values are all greater than or equal to the humidity threshold, a shutdown instruction is generated.
- system further includes: a lifting mechanism wirelessly connected to the controller, wherein;
- the controller is further configured to calculate a lift height according to the position information if the humidity value is less than the humidity threshold, generate a lift command according to the lift height, and send the lift command to the lift mechanism;
- the elevating mechanism is used for receiving the elevating command and responding to the elevating command.
- the present application provides an automatically rotatable humidification device and system, the device includes: an atomizer; a water tank, the water tank is detachably arranged on the top of the atomizer; The cover body is detachably arranged on the top of the water tank, and the top of the cover body is provided with a mounting groove; the mist outlet assembly is detachably arranged on the cover body, and the mist outlet assembly includes a shell body and a mist outlet arranged on the casing; a rotating mechanism, the rotating mechanism includes a motor arranged inside the cover body, a first gear arranged on the motor, fixed on the bottom of the casing the second gear, the second gear meshes with the first gear, the second gear is detachably arranged in the installation slot; at least one sensor, the sensor includes a humidity detection unit and a positioning unit , the humidity detection unit is used to detect the humidity of the surrounding environment, and the positioning unit is used to generate position information; a controller, the controller is arranged
- the application provides an automatically rotatable humidification device and system, which detects the humidity of the surrounding environment through a sensor, and controls the rotating mechanism to rotate the mist outlet assembly according to the humidity humidification device, so as to change the direction of the mist outlet, and the humidity value of the environment is lower. location humidification. Moreover, by continuously obtaining the humidity of the surrounding environment and adjusting the direction of the mist outlet, the surrounding environment can maintain a balanced humidity.
- FIG. 1 is a schematic structural diagram of an automatically rotatable humidifying device provided by an embodiment of the present application
- FIG. 2 is a front view of the structure of the automatically rotatable humidifying device provided by the embodiment of the present application;
- FIG. 3 is a schematic structural diagram of a rotating mechanism in an automatically rotatable humidifying device provided by an embodiment of the present application
- FIG. 4 is a schematic structural diagram of an atomizer in an automatically rotatable humidifying device provided by an embodiment of the present application
- FIG. 5 is a schematic structural diagram of a cover body in an automatically rotatable humidifying device provided by an embodiment of the present application
- FIG. 6 is a top view of the structure of the lifting mechanism in the automatically rotatable humidifying device provided by the embodiment of the present application;
- FIG. 7 is a schematic structural diagram of an installation groove in an automatically rotatable humidifying device provided by an embodiment of the present application.
- FIG. 8 is a schematic structural diagram of a mist outlet assembly in an automatically rotatable humidifying device provided by an embodiment of the present application
- FIG. 9 is a schematic structural diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application.
- FIG. 10 is a composition diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application.
- FIG. 11 is a schematic structural diagram of an automatically rotatable humidification system provided by an embodiment of the present application.
- FIG. 1 is a schematic structural diagram of an automatically rotatable humidifier provided by an embodiment of the present application
- FIG. 2 is a front view of a structure of the automatically rotatable humidifier provided by an embodiment of the present application.
- the present application provides an automatically rotatable humidifying device, comprising:
- FIG. 4 is a schematic structural diagram of the atomizer in the automatically rotatable humidifying device provided by the embodiment of the present application.
- the atomizer 1 is a device that can atomize liquid, and is the core device of the humidification device. According to different atomization principles, it mainly includes ultrasonic atomizer, compression atomizer and mesh atomizer. Among them, the ultrasonic atomizer has the advantages of high humidification intensity, uniform humidification, high humidification efficiency, energy saving, power saving and long service life.
- the water tank 2 is detachably arranged on the top of the atomizer 1 .
- the water tank 2 provides a water source for the atomizer 1 , and the water tank 2 is arranged in a detachable installation manner, which is convenient for timely replenishment and cleaning of the water tank 2 .
- the water tank 2 can be set as a hollow structure to form a mist channel, which is convenient for the water mist generated by the atomizer 1 to move upward and be discharged through the mist outlet assembly 4 .
- the cover body 3 is detachably arranged on the top of the water tank 2 , and the top of the cover body 3 is provided with an installation groove 31 .
- FIG. 5 is a schematic structural diagram of a cover body in an automatically rotatable humidifier provided by an embodiment of the application; the cover body 3 serves as a carrier for installing and fixing the mist outlet assembly 4, and the mist outlet assembly 4 is installed in the installation groove 31, so that the mist outlet assembly 4 is more firm and stable.
- some components of the rotating mechanism 5 are arranged inside the cover body 3 to provide protection for the rotating mechanism 5 .
- the mist outlet assembly 4 is detachably disposed on the cover body 3 , and the mist outlet assembly 4 includes a casing 41 and a mist outlet 42 provided on the casing 41 .
- FIG. 8 is a schematic structural diagram of a mist outlet assembly in an automatically rotatable humidifier according to an embodiment of the present application.
- the mist outlet assembly 4 has the function of discharging the water mist generated by the atomizer 1 through the mist outlet 42 .
- the casing 41 is set to have a structure whose opening gradually decreases from the bottom to the top, which can make the overall structure of the casing 41 more stable, and at the same time, has the function of collecting the rising water mist.
- the rotation mechanism 5 includes a motor 51 arranged inside the cover 3 , a first gear 52 arranged on the motor 51 , and a second gear 53 fixed at the bottom of the housing 41 , so The second gear 53 meshes with the first gear 52 , and the second gear 53 is detachably arranged in the installation slot 31 .
- FIG. 3 is a schematic structural diagram of a rotating mechanism in an automatically rotatable humidifying device provided by an embodiment of the present application.
- the first gear 52 is meshed with the second gear 53 , and the first gear 52 is rotated by the motor 51 , thereby driving the second gear 53 to rotate. Since the second gear 53 is disposed at the bottom of the casing 41 , the casing 41 can be driven to rotate, so as to achieve the purpose of changing the direction of the mist outlet 42 disposed on the casing 41 .
- the motor 51 may be configured to rotate forwardly or reversely, and the rotational speed may be adjusted according to actual usage requirements, which is not specifically limited in this application.
- FIG. 9 is a schematic structural diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application.
- a plurality of the sensors 6 are provided, which are respectively arranged around the atomizer 1.
- the humidity detection unit 61 can detect the humidity value of the surrounding environment of the sensor 6, and the positioning unit 62 can detect the humidity value of the surrounding environment of the sensor 6.
- the location information where the sensor 6 is located can be generated.
- the sensor 6 sends the humidity value and the position information to the controller 7 through a wireless communication device.
- a controller 7, the controller 7 is arranged inside the atomizer 1, and the controller 7 is wirelessly connected with the rotating mechanism 5 and the sensor 6.
- the controller 7 is arranged inside the atomizer 1 .
- the controller 7 is used to receive the humidity value and the position information sent by the sensor 6 , perform data processing on the humidity value, calculate the rotation angle according to the position information, and control the rotation mechanism 5 rotate.
- the bottom of the second gear 53 is provided with a plurality of evenly distributed sliding blocks 531
- the bottom of the sliding block 531 is provided with a hemispherical structure
- the top of the installation groove 31 is provided with a sliding block 531 that cooperates with the sliding block 531 .
- the slideway 311, the slideway 311 is configured as a hemispherical groove structure.
- FIG. 7 is a schematic structural diagram of an installation groove in an automatically rotatable humidifying device provided by an embodiment of the present application.
- a plurality of evenly distributed sliding blocks 531 are arranged at the bottom of the second gear 53 , which has the effect of reducing the frictional force when the mist outlet assembly 4 rotates. Evenly disposing the sliders 531 can improve the stability of the mist outlet assembly 4 and prevent the situation from shaking and falling during rotation.
- the bottom of the slider 531 is set to a hemispherical structure
- the slideway 311 is set to a hemispherical groove structure. The frictional force when the slider 531 slides in the slideway 311 can be further reduced, so that the mist outlet assembly 4 rotates more smoothly.
- the mist outlet 42 includes a main mist outlet 421 and a plurality of secondary mist outlets 422, the main mist outlet 421 is arranged on the top of the housing 41, and the secondary mist outlet 422 is inclined It is arranged on the housing 41 upward.
- the main mist outlet 421 disposed on the top of the housing 41 is used to discharge water mist upwards and humidify the air above.
- a plurality of mist outlet ports 422 are disposed obliquely upwards around the casing 41 for discharging water mist obliquely upwards and humidifying the surrounding air.
- the present application does not specifically limit the number and the inclined upward angle of the mist outlet 422 .
- the main mist outlet 421 and the secondary mist outlet 422 are configured as structures with gradually decreasing openings.
- the structure with the opening gradually decreasing has the effect of facilitating the collection and guiding of the water mist, and can improve the spray force when the water mist is discharged, so that the humidifier can have a farther and wider range of humidification.
- the lifting mechanism 8 is arranged inside the cover body 3, the lifting mechanism 8 includes a lifting seat 81 and a plurality of telescopic rods 82, and the lifting seat 81 is internally provided with a The installation slot 31 and the motor 51 , and the telescopic rod 82 is arranged at the bottom of the lift seat 81 .
- the lifting mechanism 8 has the function of lifting or lowering the mist outlet assembly 4 and the rotating mechanism 5 .
- the telescopic rod 82 When the telescopic rod 82 is extended, the mist outlet assembly 4 can be lifted.
- the rotating mechanism 5 drives the mist outlet assembly 4 to rotate, thereby increasing the humidification range of the main mist outlet 421 and the secondary mist outlet 422 .
- the bottom of the lift seat 81 is configured as a circular structure, and a plurality of the telescopic rods 82 are evenly distributed in a circumferential structure with the center of the bottom of the lift seat 81 as the center.
- the elevating mechanism 8 includes two working modes: elevating and rotating, specifically: 1) The telescopic rod 82 arranged at the bottom of the elevating seat 81 moves simultaneously and telescopically to realize the function of elevating. 2) The telescopic rods 82 arranged at the bottom of the lifting seat 81 ascend and descend in sequence, and the two adjacent telescopic rods 82 generate a height difference in turn, which drives the mist outlet assembly 4 to incline towards the telescopic rods 82 with lower heights, which are arranged at the lower height of the telescopic rods 82. Therefore, the main mist outlet 421 on the top of the mist outlet assembly 4 is inclined to change the direction of the mist. As the telescopic rod 82 is lowered in sequence, the effect of rotating the main mist outlet 421 can be achieved.
- FIG. 6 is a top view of the structure of the lifting mechanism in the automatically rotatable humidifying device provided by the embodiment of the present application.
- the bottom of the lifting seat 81 is set as a circular structure, and the circumferential structures of the plurality of telescopic rods 82 are evenly distributed on the bottom of the lifting seat 81 .
- the distance between two adjacent telescopic rods 82 is the same, and when a plurality of the telescopic rods 82 are stretched in turn, a stable and the same height difference can be generated.
- the center is stable and tilted around.
- the senor 6 further includes a temperature detection unit 63 and a display unit 64, the temperature detection unit 63 and the display unit 64 are wirelessly connected to the controller 7, and the temperature detection unit 63 is used to detect The temperature of the surrounding environment, the display unit 64 is used to display the humidity and temperature data detected by the humidity detection unit 61 and the temperature detection unit 63 .
- FIG. 10 is a composition diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application.
- the sensor 6 also has the function of detecting the ambient temperature through the temperature detecting unit 63 .
- the humidity and temperature of the environment where the sensor 6 is located can be displayed through the display unit 64, so that people can intuitively understand the humidity and temperature of the surrounding environment.
- FIG. 11 is a schematic structural diagram of an automatically rotatable humidification system provided by an embodiment of the present application.
- the present application also provides a humidification system that can be rotated automatically, including:
- the sensor 6 is used for detecting the humidity value and generating position information, and sending the humidity value and the position information to the controller 7 .
- the controller 7 is configured to receive the humidity value and the location information, compare the humidity value with a preset humidity threshold, and if the humidity value is less than the humidity threshold, calculate according to the location information A rotation angle, a rotation instruction and an opening instruction are generated according to the rotation angle, and a closing instruction is generated if the humidity value is greater than or equal to the humidity threshold.
- the rotation mechanism 5 is used to receive the rotation instruction, and drive the mist outlet assembly 4 to rotate according to the rotation instruction.
- the atomizer 1 is configured to receive the opening instruction or the closing instruction, and respond to the opening instruction or the closing instruction.
- the controller 7 is further configured to receive a plurality of the humidity values and a plurality of the location information, and if at least one of the humidity values is less than the humidity threshold, sort the plurality of the humidity values , select the position information corresponding to the minimum humidity value, calculate the rotation angle according to the position information, and generate a rotation instruction and an opening instruction; if the minimum humidity value is greater than or equal to the humidity threshold value, obtain a plurality of the sensing humidity value and location information detected by the sensor; if a plurality of the humidity values are all greater than or equal to the humidity threshold value, a shutdown instruction is generated.
- the system further includes: a lifting mechanism 8 wirelessly connected to the controller 7, wherein;
- the controller 7 is further configured to calculate a lift height according to the position information if the humidity value is less than the humidity threshold, generate a lift command according to the lift height, and send the lift command to the lift mechanism 8 .
- the elevating mechanism 8 is used for receiving the elevating command and responding to the elevating command.
- the present application provides an automatically rotatable humidification device and system, the device includes: an atomizer 1; a water tank 2, the water tank 2 is detachably arranged on the top of the atomizer 1; Cover body 3, the cover body 3 is detachably arranged on the top of the water tank 2, and the top of the cover body 3 is provided with a mounting groove 31; the mist outlet assembly 4, the mist outlet assembly 4 is detachably arranged on the On the cover body 3 , the mist outlet assembly 4 includes a casing 41 and a mist outlet 42 arranged on the casing 41 ; the rotation mechanism 5 includes a motor arranged inside the cover body 3 51.
- the application provides an automatically rotatable humidification device and system, which detects the humidity of the surrounding environment through a sensor, and controls the rotating mechanism to rotate the mist outlet assembly according to the humidity humidification device, so as to change the direction of the mist outlet, and the humidity value of the environment is lower. location humidification. Moreover, by continuously obtaining the humidity of the surrounding environment and adjusting the direction of the mist outlet, the surrounding environment can maintain a balanced humidity.
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Abstract
Description
本申请涉及智能家居领域,特别涉及一种可自动旋转的加湿装置及系统。The present application relates to the field of smart homes, and in particular, to an automatically rotatable humidification device and system.
加湿器是一种用来调整室内空气湿度的家用电器。工作时,加湿器通过雾化装置将液态水转化成水雾气,再通过出雾口将水雾气排出,以增加室内环境的湿度。A humidifier is a household appliance used to adjust indoor air humidity. When working, the humidifier converts liquid water into water mist through the atomizing device, and then discharges the water mist through the mist outlet to increase the humidity of the indoor environment.
但是,现有的加湿器无法检测周围环境的湿度,自动改变出雾口方向,只能通过手动调节。加湿器使用时,出雾口的位置为固定状态,水雾气只能向一个方向排出。不仅会出现水雾气排出区域湿度高于其他区域湿度的情况,造成室内环境的湿度不均衡。而且,当水雾气排出区域的湿度达到饱和后,继续加湿会造成水资源的浪费。However, the existing humidifier cannot detect the humidity of the surrounding environment and automatically change the direction of the mist outlet, which can only be adjusted manually. When the humidifier is in use, the position of the mist outlet is fixed, and the water mist can only be discharged in one direction. Not only will the humidity of the water mist discharge area be higher than that of other areas, resulting in uneven humidity in the indoor environment. Moreover, when the humidity of the water mist discharge area reaches saturation, continuing to humidify will cause waste of water resources.
发明内容SUMMARY OF THE INVENTION
本申请提供了一种可自动旋转的加湿装置及系统,以解决现有的加湿器无法检测周围环境的湿度,和无法根据周围环境的湿度自动改变出雾口方向的问题。The present application provides an automatically rotatable humidification device and system to solve the problem that the existing humidifier cannot detect the humidity of the surrounding environment and cannot automatically change the direction of the mist outlet according to the humidity of the surrounding environment.
一方面,本申请提供一种可自动旋转的加湿装置,包括:In one aspect, the present application provides an automatically rotatable humidifying device, comprising:
雾化器;水箱,所述水箱可拆卸的设置在所述雾化器顶部;盖体,所述盖体可拆卸的设置在所述水箱顶部,所述盖体顶部设置有安装槽;出雾组件,所述出雾组件可拆卸的设置在所述盖体上,所述出雾组件包括壳体和设置在所述壳体上的出雾口;旋转机构,所述旋转机构包括设置在所述盖体内部的电机、设置在所述电机上的第一齿轮、固定在所述壳体底部的第二齿轮,所述第二齿轮与所述第一齿轮啮合,所述第二齿轮可分离的设置在所述安装槽内;至少一个感应器,所述感应器包括湿度检测单元和定位单元,所述湿度检测单元用于检测周围环境的湿度,所述定位单元用于生成位置信息;控制器,所述控制器设置在所述雾化器内部,所述控制器与所述旋转机构和所述感应器无线连接。Atomizer; a water tank, the water tank is detachably arranged on the top of the atomizer; a cover, the cover is detachably arranged on the top of the water tank, and a mounting groove is arranged on the top of the cover; The mist outlet assembly is detachably arranged on the cover body, and the mist outlet assembly includes a housing and a mist outlet provided on the housing; a rotation mechanism, the rotation mechanism includes a The motor inside the cover body, the first gear arranged on the motor, and the second gear fixed on the bottom of the casing, the second gear meshes with the first gear, and the second gear is separable is arranged in the installation slot; at least one sensor, the sensor includes a humidity detection unit and a positioning unit, the humidity detection unit is used to detect the humidity of the surrounding environment, and the positioning unit is used to generate position information; control The controller is arranged inside the atomizer, and the controller is wirelessly connected with the rotating mechanism and the sensor.
可选的,所述第二齿轮底部设置有多个均匀分布的滑块,所述滑块底部设置为半球形结构,所述安装槽顶部设置有与所述滑块配合的滑道,所述滑道设置为半球形凹槽结构。Optionally, the bottom of the second gear is provided with a plurality of evenly distributed sliding blocks, the bottom of the sliding block is provided with a hemispherical structure, and the top of the installation groove is provided with a slideway matched with the sliding block, the The slideway is arranged as a hemispherical groove structure.
可选的,所述出雾口包括一个主出雾口和多个从出雾口,所述主出雾口设置在所述壳体顶部,所述从出雾口倾斜向上设置在所述壳体上。Optionally, the mist outlet includes a main mist outlet and a plurality of secondary mist outlets, the main mist outlet is arranged on the top of the casing, and the secondary mist outlet is arranged on the casing obliquely upward. body.
可选的,所述主出雾口和所述从出雾口设置为开口逐渐减小的结构。Optionally, the main mist outlet and the secondary mist outlet are arranged in a structure in which the openings are gradually reduced.
可选的,还包括升降机构,所述升降机构设置在所述盖体的内部,所述升降机构包括升降座和多个伸缩杆,所述升降座内部设置有所述安装槽和所述电机,所述伸缩杆设置在所述升降座的底部。Optionally, it also includes a lifting mechanism, the lifting mechanism is arranged inside the cover body, the lifting mechanism includes a lifting seat and a plurality of telescopic rods, and the lifting seat is provided with the installation slot and the motor , the telescopic rod is arranged at the bottom of the lifting seat.
可选的,所述升降座底部设置为圆形结构,多个所述伸缩杆以所述升降座的底部圆心为中心,呈圆周结构均匀分布设置。Optionally, the bottom of the lifting seat is set in a circular structure, and a plurality of the telescopic rods are evenly distributed in a circular structure with the center of the bottom of the lifting seat as the center.
可选的,所述感应器还包括温度检测单元和显示单元,所述温度检测单元和所述显示单元与所述控制器无线连接,所述温度检测单元用于检测周围环境的温度,所述显示单元用于显示所述湿度检测单元和所述温度检测单元检测到的湿度和温度数据。Optionally, the sensor further includes a temperature detection unit and a display unit, the temperature detection unit and the display unit are wirelessly connected to the controller, the temperature detection unit is used to detect the temperature of the surrounding environment, the The display unit is used for displaying the humidity and temperature data detected by the humidity detection unit and the temperature detection unit.
另一方面,本申请还提供一种可自动旋转的加湿系统,包括:On the other hand, the present application also provides a humidification system that can be rotated automatically, including:
控制器,与所述控制器无线连接的雾化器、旋转机构和至少一个感应器,以及与所述旋转机构转动连接的出雾组件,其中;a controller, an atomizer, a rotating mechanism and at least one sensor wirelessly connected to the controller, and a mist outlet assembly rotatably connected to the rotating mechanism, wherein;
所述感应器用于检测湿度值和生成位置信息,将所述湿度值和所述位置信息发送至所述控制器;The sensor is used to detect the humidity value and generate position information, and send the humidity value and the position information to the controller;
所述控制器用于接收所述湿度值和所述位置信息,将所述湿度值与预设的湿度阈值进行比较,如果所述湿度值小于所述湿度阈值,则根据所述位置信息计算旋转角度,根据所述旋转角度生成旋转指令和开启指令,如果所述湿度值大于或者等于所述湿度阈值,则生成关闭指令;The controller is configured to receive the humidity value and the position information, compare the humidity value with a preset humidity threshold, and calculate the rotation angle according to the position information if the humidity value is less than the humidity threshold , generating a rotation instruction and an opening instruction according to the rotation angle, and generating a closing instruction if the humidity value is greater than or equal to the humidity threshold;
所述旋转机构用于接收所述旋转指令,根据所述旋转指令带动所述出雾组件旋转;The rotation mechanism is used for receiving the rotation instruction, and driving the mist outlet assembly to rotate according to the rotation instruction;
所述雾化器用于接收所述开启指令或者所述关闭指令,并响应所述开启指令或所述关闭指令。The atomizer is used for receiving the opening instruction or the closing instruction, and responding to the opening instruction or the closing instruction.
可选的,所述控制器还用于接收多个所述湿度值和多个所述位置信息,如果至少一个所述湿度值小于所述湿度阈值,则将多个所述湿度值进行排序,选取最小湿度值对应的所述位置信息,根据所述位置信息计算旋转角度,生成旋转指令和开启指令;如果所述最小湿度值大于或者等于所述湿度阈值,则再次获取多个所述感应器检测的湿度值和位置信息;如果多个所述湿度值均大于或者等于所述湿度阈值,则生成关闭指令。Optionally, the controller is further configured to receive a plurality of the humidity values and a plurality of the location information, and if at least one of the humidity values is less than the humidity threshold, sort the plurality of the humidity values, Select the position information corresponding to the minimum humidity value, calculate the rotation angle according to the position information, and generate a rotation instruction and an opening instruction; if the minimum humidity value is greater than or equal to the humidity threshold value, obtain a plurality of the sensors again The detected humidity value and location information; if a plurality of the humidity values are all greater than or equal to the humidity threshold, a shutdown instruction is generated.
可选的,所述系统还包括:与所述控制器无线连接的升降机构,其中;Optionally, the system further includes: a lifting mechanism wirelessly connected to the controller, wherein;
所述控制器还用于如果所述湿度值小于所述湿度阈值,则根据所述位置信息计算升降高度,根据所述升降高度生成升降指令,将所述升降指令发送至所述升降机构;The controller is further configured to calculate a lift height according to the position information if the humidity value is less than the humidity threshold, generate a lift command according to the lift height, and send the lift command to the lift mechanism;
所述升降机构用于接收所述升降指令,并响应所述升降指令。The elevating mechanism is used for receiving the elevating command and responding to the elevating command.
由以上技术方案可知,本申请提供一种可自动旋转的加湿装置及系统,所述装置包括:雾化器;水箱,所述水箱可拆卸的设置在所述雾化器顶部;盖体,所述盖体可拆卸的设置在所述水箱顶部,所述盖体顶部设置有安装槽;出雾组件,所述出雾组件可拆卸的设置在所述盖体上,所述出雾组件包括壳体和设置在所述壳体上的出雾口;旋转机构,所述旋转机构包括设置在所述盖体内部的电机、设置在所述电机上的第一齿轮、固定在所述壳体底部的第二齿轮,所述第二齿轮与所述第一齿轮啮合,所述第二齿轮可分离的设置在所述安装槽内;至少一个感应器,所述感应器包括湿度检测单元和定位单元,所述湿度检测单元用于检测周围环境的湿度,所述定位单元用于生成位置信息;控制器,所述控制器设置在所述雾化器内部,所述控制器与所述旋转机构和所述感应器无线连接。As can be seen from the above technical solutions, the present application provides an automatically rotatable humidification device and system, the device includes: an atomizer; a water tank, the water tank is detachably arranged on the top of the atomizer; The cover body is detachably arranged on the top of the water tank, and the top of the cover body is provided with a mounting groove; the mist outlet assembly is detachably arranged on the cover body, and the mist outlet assembly includes a shell body and a mist outlet arranged on the casing; a rotating mechanism, the rotating mechanism includes a motor arranged inside the cover body, a first gear arranged on the motor, fixed on the bottom of the casing the second gear, the second gear meshes with the first gear, the second gear is detachably arranged in the installation slot; at least one sensor, the sensor includes a humidity detection unit and a positioning unit , the humidity detection unit is used to detect the humidity of the surrounding environment, and the positioning unit is used to generate position information; a controller, the controller is arranged inside the atomizer, and the controller is connected to the rotating mechanism and the The sensors are connected wirelessly.
本申请提供了一种可自动旋转的加湿装置及系统,通过感应器检测周围环境的湿度,根据湿度加湿装置控制旋转机构旋转出雾组件,以改变出雾口的方向,向环境湿度值较低的位置加湿。并且,通过不断的获取周围环境的湿度和调整出雾口方向,使周围环境保持均衡的湿度。The application provides an automatically rotatable humidification device and system, which detects the humidity of the surrounding environment through a sensor, and controls the rotating mechanism to rotate the mist outlet assembly according to the humidity humidification device, so as to change the direction of the mist outlet, and the humidity value of the environment is lower. location humidification. Moreover, by continuously obtaining the humidity of the surrounding environment and adjusting the direction of the mist outlet, the surrounding environment can maintain a balanced humidity.
为了更清楚地说明本申请的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,对于本领域普通技术人员而言,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。In order to illustrate the technical solutions of the present application more clearly, the accompanying drawings required in the embodiments will be briefly introduced below. Obviously, for those of ordinary skill in the art, without creative work, the Additional drawings can be obtained from these drawings.
图1为本申请实施例提供的可自动旋转的加湿装置的结构示意图;1 is a schematic structural diagram of an automatically rotatable humidifying device provided by an embodiment of the present application;
图2为本申请实施例提供的可自动旋转的加湿装置的结构主视图;2 is a front view of the structure of the automatically rotatable humidifying device provided by the embodiment of the present application;
图3为本申请实施例提供的可自动旋转的加湿装置中旋转机构的结构示意图;3 is a schematic structural diagram of a rotating mechanism in an automatically rotatable humidifying device provided by an embodiment of the present application;
图4为本申请实施例提供的可自动旋转的加湿装置中雾化器的结构示意图;4 is a schematic structural diagram of an atomizer in an automatically rotatable humidifying device provided by an embodiment of the present application;
图5为本申请实施例提供的可自动旋转的加湿装置中盖体的结构示意图;5 is a schematic structural diagram of a cover body in an automatically rotatable humidifying device provided by an embodiment of the present application;
图6为本申请实施例提供的可自动旋转的加湿装置中升降机构的结构俯视图;6 is a top view of the structure of the lifting mechanism in the automatically rotatable humidifying device provided by the embodiment of the present application;
图7为本申请实施例提供的可自动旋转的加湿装置中安装槽的结构示意图;7 is a schematic structural diagram of an installation groove in an automatically rotatable humidifying device provided by an embodiment of the present application;
图8为本申请实施例提供的可自动旋转的加湿装置中出雾组件的结构示意图;8 is a schematic structural diagram of a mist outlet assembly in an automatically rotatable humidifying device provided by an embodiment of the present application;
图9为本申请实施例提供的可自动旋转的加湿装置中感应器的结构示意图;9 is a schematic structural diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application;
图10为本申请实施例提供的可自动旋转的加湿装置中感应器的组成图;10 is a composition diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application;
图11为本申请实施例提供的可自动旋转的加湿系统的结构示意图。FIG. 11 is a schematic structural diagram of an automatically rotatable humidification system provided by an embodiment of the present application.
下面将详细地对实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下实施例中描述的实施方式并不代表与本申请相一致的所有实施方式。仅是与权利要求书中所详述的、本申请的一些方面相一致和方法的示例。Embodiments will be described in detail below, examples of which are illustrated in the accompanying drawings. Where the following description refers to the drawings, the same numerals in different drawings refer to the same or similar elements unless otherwise indicated. The implementations described in the following examples are not intended to represent all implementations consistent with this application. are merely examples of methods and methods consistent with some aspects of the present application, as recited in the claims.
请参阅图1和图2,图1为本申请实施例提供的可自动旋转的加湿装置的结构示意图,图2为本申请实施例提供的可自动旋转的加湿装置的结构主视图。Please refer to FIG. 1 and FIG. 2 , FIG. 1 is a schematic structural diagram of an automatically rotatable humidifier provided by an embodiment of the present application, and FIG. 2 is a front view of a structure of the automatically rotatable humidifier provided by an embodiment of the present application.
一方面,本申请提供一种可自动旋转的加湿装置,包括:In one aspect, the present application provides an automatically rotatable humidifying device, comprising:
雾化器1,请参阅图4,图4为本申请实施例提供的可自动旋转的加湿装置中雾化器的结构示意图。所述雾化器1是一种可以将液体雾化的装置,是加湿装置的核心装置。根据不同的雾化原理,主要包括超声波雾化器、压缩雾化器和网式雾化器。其中,超声波雾化器具有:加湿强度大、加湿均匀、加湿效率高;节能、省电和使用寿命长等优点。For the
水箱2,所述水箱2可拆卸的设置在所述雾化器1顶部。水箱2为雾化器1提供水源,所述水箱2设置为可拆卸的安装方式,便于水箱2的及时补水和清洗。水箱2可设置为中空的结构,形成雾气通道,便于雾化器1产生的水雾气向上移动,通过出雾组件4排出。The
盖体3,所述盖体3可拆卸的设置在所述水箱2顶部,所述盖体3顶部设置有安装槽31。The
请参阅图5,图5为本申请实施例提供的可自动旋转的加湿装置中盖体的结构示意图;所述盖体3作为安装固定所述出雾组件4的载体,将所述出雾组件4安装在安装槽31,使出雾组件4更加牢固稳定。并且,所述旋转机构5的部分组件设置在所述盖体3内部,为所述旋转机构5提供保护作用。Please refer to FIG. 5. FIG. 5 is a schematic structural diagram of a cover body in an automatically rotatable humidifier provided by an embodiment of the application; the
出雾组件4,所述出雾组件4可拆卸的设置在所述盖体3上,所述出雾组件4包括壳体41和设置在所述壳体41上的出雾口42。The
请参阅图8,图8为本申请实施例提供的可自动旋转的加湿装置中出雾组件的结构示意图。所述出雾组件4具有将所述雾化器1产生的水雾气通过出雾口42排出的作用。在本实施例中所述壳体41设置为由底部向顶部开口逐渐减小的结构,可以使所述壳体41整体结构更加稳定,同时,具有汇集上升的水雾气的作用。Please refer to FIG. 8 . FIG. 8 is a schematic structural diagram of a mist outlet assembly in an automatically rotatable humidifier according to an embodiment of the present application. The
旋转机构5,所述旋转机构5包括设置在所述盖体3内部的电机51、设置在所述电机51上的第一齿轮52、固定在所述壳体41底部的第二齿轮53,所述第二齿轮53与所述第一齿轮52啮合,所述第二齿轮53可分离的设置在所述安装槽31内。The
请参阅图3,图3为本申请实施例提供的可自动旋转的加湿装置中旋转机构的结构示意图。所述第一齿轮52与所述第二齿轮53相啮合,通过电机51使所述第一齿轮52转动,从而带动所述第二齿轮53转动。由于所述第二齿轮53设置在所述壳体41的底部,以此可以带动所述壳体41转动,达到改变设置在所述壳体41上所述出雾口42方向的目的。Please refer to FIG. 3 , which is a schematic structural diagram of a rotating mechanism in an automatically rotatable humidifying device provided by an embodiment of the present application. The
在本实施例中,所述电机51可被配置为可以正转也可以反转,转速可以根据实际使用需求进行调整,本申请对此不作具体限定。In this embodiment, the
至少一个感应器6,所述感应器6包括湿度检测单元61和定位单元62,所述湿度检测单元61用于检测周围环境的湿度,所述定位单元62用于生成位置信息。At least one
请参阅图9,图9为本申请实施例提供的可自动旋转的加湿装置中感应器的结构示意图。在本实施例中,设置有多个所述感应器6,分别设置在所述雾化器1的四周,通过湿度检测单元61可以检测所述感应器6周围环境的湿度值,通过定位单元62可以生成所述感应器6所处的位置信息。所述感应器6将所述湿度值和所述位置信息通过无线通信装置发送至控制器7。Please refer to FIG. 9 . FIG. 9 is a schematic structural diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application. In this embodiment, a plurality of the
控制器7,所述控制器7设置在所述雾化器1内部,所述控制器7与所述旋转机构5和所述感应器6无线连接。A
请参阅图4,控制器7设置在所述雾化器1内部。所述控制器7用于接收所述感应器6发送的所述湿度值和所述位置信息,并对所述湿度值进行数据处理,根据所述位置信息计算旋转角度,控制所述旋转机构5旋转。Please refer to FIG. 4 , the
可选的,所述第二齿轮53底部设置有多个均匀分布的滑块531,所述滑块531底部设置为半球形结构,所述安装槽31顶部设置有与所述滑块531配合的滑道311,所述滑道311设置为半球形凹槽结构。Optionally, the bottom of the
请参阅图3和图7,图7为本申请实施例提供的可自动旋转的加湿装置中安装槽的结构示意图。在第二齿轮53底部设置有多个均匀分布的滑块531,具有减小出雾组件4旋转时的摩擦力的作用。均匀设置所述滑块531,可以提高出雾组件4的稳定性,防止旋转时出现晃动而掉落的情况。Please refer to FIG. 3 and FIG. 7 . FIG. 7 is a schematic structural diagram of an installation groove in an automatically rotatable humidifying device provided by an embodiment of the present application. A plurality of evenly distributed sliding
在本实施例中,将滑块531底部设置为半球形结构,以及将所述滑道311设置为半球形凹槽结构。可以进一步降低滑块531在滑道311内滑动时的摩擦力,使所述出雾组件4旋转更加顺畅。In this embodiment, the bottom of the
可选的,所述出雾口42包括一个主出雾口421和多个从出雾口422,所述主出雾口421设置在所述壳体41顶部,所述从出雾口422倾斜向上设置在所述壳体41上。Optionally, the
请参阅图8,在本实施例中,设置在壳体41顶部的主出雾口421用于向上排出水雾气,加湿上方的空气。在壳体41的四周倾斜向上设置有多个从出雾口422,用于倾斜向上排出水雾气,加湿四周的空气。本申请对从出雾口422的数量和倾斜向上的角度不做具体限定。Referring to FIG. 8 , in this embodiment, the
可选的,所述主出雾口421和所述从出雾口422设置为开口逐渐减小的结构。开口逐渐减小的结构具有便于汇集导流水雾气的作用,并且可以提高水雾气排出时的喷射力,使所述加湿装置的可加湿范围更远更广。Optionally, the
可选的,还包括升降机构8,所述升降机构8设置在所述盖体3的内部,所述升降机构8包括升降座81和多个伸缩杆82,所述升降座81内部设置有所述安装槽31和所述电机51,所述伸缩杆82设置在所述升降座81的底部。Optionally, it further includes a
升降机构8具有提升或者降低所述出雾组件4和所述旋转机构5的作用。当所述伸缩杆82伸长时,可以提升所述出雾组件4。同时,所述旋转机构5带动所述出雾组件4旋转,提高主出雾口421和从出雾口422的加湿范围。The
可选的,所述升降座81底部设置为圆形结构,多个所述伸缩杆82以所述升降座81的底部圆心为中心,呈圆周结构均匀分布设置。Optionally, the bottom of the
所述升降机构8包括升降和旋转两种工作模式,具体的:1)设置在升降座81底部的伸缩杆82同时伸缩运动,实现升降的功能。2)设置在升降座81底部的伸缩杆82按顺序依次升降,相邻的两个伸缩杆82依次产生高度差,带动所述出雾组件4向高度较低的伸缩杆82方向倾斜,设置在所述出雾组件4顶部的主出雾口421也因此发生倾斜,改变出雾的方向。随着伸缩杆82依次降低,可以实现旋转所述主出雾口421的效果。The elevating
请参阅图6,图6为本申请实施例提供的可自动旋转的加湿装置中升降机构的结构俯视图。将升降座81底部设置为圆形结构,以及多个所述伸缩杆82圆周结构均匀分布在所述升降座81底部。相邻的两个伸缩杆82之间间距相同,当多个所述伸缩杆82依次伸缩时可以产生稳定相同的高度差,具有使所述出雾组件4可以以所述升降座81的圆心为中心稳定的向四周倾斜的作用。Please refer to FIG. 6 , which is a top view of the structure of the lifting mechanism in the automatically rotatable humidifying device provided by the embodiment of the present application. The bottom of the lifting
可选的,所述感应器6还包括温度检测单元63和显示单元64,所述温度检测单元63和所述显示单元64与所述控制器7无线连接,所述温度检测单元63用于检测周围环境的温度,所述显示单元64用于显示所述湿度检测单元61和所述温度检测单元63检测到的湿度和温度数据。Optionally, the
请参阅图10,图10为本申请实施例提供的可自动旋转的加湿装置中感应器的组成图。所述感应器6还具有通过温度检测单元63检测周围环境温度的功能。通过显示单元64可以将所述感应器6所处环境的湿度和温度显示出来,便于人们直观的了解周围环境的湿度和温度。Please refer to FIG. 10 . FIG. 10 is a composition diagram of a sensor in an automatically rotatable humidifying device provided by an embodiment of the present application. The
请参阅图11,图11为本申请实施例提供的可自动旋转的加湿系统的结构示意图。Please refer to FIG. 11 , which is a schematic structural diagram of an automatically rotatable humidification system provided by an embodiment of the present application.
另一方面,本申请还提供一种可自动旋转的加湿系统,包括:On the other hand, the present application also provides a humidification system that can be rotated automatically, including:
控制器7,与所述控制器7无线连接的雾化器1、旋转机构5和至少一个感应器6,以及与所述旋转机构5转动连接的出雾组件4,其中;The
所述感应器6用于检测湿度值和生成位置信息,将所述湿度值和所述位置信息发送至所述控制器7。The
所述控制器7用于接收所述湿度值和所述位置信息,将所述湿度值与预设的湿度阈值进行比较,如果所述湿度值小于所述湿度阈值,则根据所述位置信息计算旋转角度,根据所述旋转角度生成旋转指令和开启指令,如果所述湿度值大于或者等于所述湿度阈值,则生成关闭指令。The
所述旋转机构5用于接收所述旋转指令,根据所述旋转指令带动所述出雾组件4旋转。The
所述雾化器1用于接收所述开启指令或者所述关闭指令,并响应所述开启指令或所述关闭指令。The
可选的,所述控制器7还用于接收多个所述湿度值和多个所述位置信息,如果至少一个所述湿度值小于所述湿度阈值,则将多个所述湿度值进行排序,选取最小湿度值对应的所述位置信息,根据所述位置信息计算旋转角度,生成旋转指令和开启指令;如果所述最小湿度值大于或者等于所述湿度阈值,则再次获取多个所述感应器检测的湿度值和位置信息;如果多个所述湿度值均大于或者等于所述湿度阈值,则生成关闭指令。Optionally, the
可选的,所述系统还包括:与所述控制器7无线连接的升降机构8,其中;Optionally, the system further includes: a
所述控制器7还用于如果所述湿度值小于所述湿度阈值,则根据所述位置信息计算升降高度,根据所述升降高度生成升降指令,将所述升降指令发送至所述升降机构8。The
所述升降机构8用于接收所述升降指令,并响应所述升降指令。The elevating
由以上技术方案可知,本申请提供一种可自动旋转的加湿装置及系统,所述装置包括:雾化器1;水箱2,所述水箱2可拆卸的设置在所述雾化器1顶部;盖体3,所述盖体3可拆卸的设置在所述水箱2顶部,所述盖体3顶部设置有安装槽31;出雾组件4,所述出雾组件4可拆卸的设置在所述盖体3上,所述出雾组件4包括壳体41和设置在所述壳体41上的出雾口42;旋转机构5,所述旋转机构5包括设置在所述盖体3内部的电机51、设置在所述电机51上的第一齿轮52、固定在所述壳体41底部的第二齿轮53,所述第二齿轮53与所述第一齿轮52啮合,所述第二齿轮53可分离的设置在所述安装槽31内;至少一个感应器6,所述感应器6包括湿度检测单元61和定位单元62,所述湿度检测单元61用于检测周围环境的湿度,所述定位单元62用于生成位置信息;控制器7,所述控制器7设置在所述雾化器1内部,所述控制器7与所述旋转机构5和所述感应器6无线连接。As can be seen from the above technical solutions, the present application provides an automatically rotatable humidification device and system, the device includes: an
本申请提供了一种可自动旋转的加湿装置及系统,通过感应器检测周围环境的湿度,根据湿度加湿装置控制旋转机构旋转出雾组件,以改变出雾口的方向,向环境湿度值较低的位置加湿。并且,通过不断的获取周围环境的湿度和调整出雾口方向,使周围环境保持均衡的湿度。The application provides an automatically rotatable humidification device and system, which detects the humidity of the surrounding environment through a sensor, and controls the rotating mechanism to rotate the mist outlet assembly according to the humidity humidification device, so as to change the direction of the mist outlet, and the humidity value of the environment is lower. location humidification. Moreover, by continuously obtaining the humidity of the surrounding environment and adjusting the direction of the mist outlet, the surrounding environment can maintain a balanced humidity.
本申请提供的实施例之间的相似部分相互参见即可,以上提供的具体实施方式只是本申请总的构思下的几个示例,并不构成本申请保护范围的限定。对于本领域的技术人员而言,在不付出创造性劳动的前提下依据本申请方案所扩展出的任何其他实施方式都属于本申请的保护范围。Similar parts between the embodiments provided in the present application may be referred to each other. The specific embodiments provided above are just a few examples under the general concept of the present application, and do not constitute a limitation on the protection scope of the present application. For those skilled in the art, any other implementations expanded according to the solution of the present application without creative work fall within the protection scope of the present application.
Claims (10)
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| Application Number | Priority Date | Filing Date | Title |
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| PCT/CN2020/111894 WO2022041071A1 (en) | 2020-08-27 | 2020-08-27 | Humidification apparatus able to automatically rotate, and system |
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| Application Number | Priority Date | Filing Date | Title |
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| PCT/CN2020/111894 WO2022041071A1 (en) | 2020-08-27 | 2020-08-27 | Humidification apparatus able to automatically rotate, and system |
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