WO2019075958A1 - 一种智能远程感应加湿装置 - Google Patents

一种智能远程感应加湿装置 Download PDF

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Publication number
WO2019075958A1
WO2019075958A1 PCT/CN2018/074652 CN2018074652W WO2019075958A1 WO 2019075958 A1 WO2019075958 A1 WO 2019075958A1 CN 2018074652 W CN2018074652 W CN 2018074652W WO 2019075958 A1 WO2019075958 A1 WO 2019075958A1
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WO
WIPO (PCT)
Prior art keywords
nozzle
humidifier body
portable device
processor
remote sensing
Prior art date
Application number
PCT/CN2018/074652
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English (en)
French (fr)
Inventor
徐新华
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深圳市百事泰电气有限公司
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Publication of WO2019075958A1 publication Critical patent/WO2019075958A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • F24F11/59Remote control for presetting
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/12Air-humidification, e.g. cooling by humidification by forming water dispersions in the air

Definitions

  • the invention relates to the technical field of humidifying devices, and in particular to an intelligent remote sensing humidifying device.
  • the existing household air conditioners and central heating can only adjust the temperature of the indoor air, but can not adjust the humidity of the air, the human body still feels uncomfortable, and symptoms such as dry nosebleeds appear.
  • various humidifier devices for humidifying the air have emerged.
  • the humidification device mainly uses high-frequency electronic oscillation generated by the ultrasonic vibration device to change the liquid water into gaseous vapor and mix it into the air, thereby achieving the purpose of adjusting the content of water vapor in the air.
  • the nozzles of the existing humidifiers are fixed, the nozzles of the nozzles are humidified at a position at a time, so that the environmental humidity at different positions in the space where the work is performed is different, and the user cannot be intelligently positioned. Humidification causes the ambient humidity felt by the user to be inconsistent with the set humidity set by the user.
  • the object of the present invention is to solve the deficiencies in the prior art at least to some extent, and to provide an intelligent remote sensing humidifying device.
  • the present invention provides an intelligent remote sensing humidification device including a humidifier body, a position detecting device and a portable device, wherein the position detecting device is configured to detect position information of the portable device relative to the humidifier body.
  • the humidifier body is provided with a processor, a driving device and a rotating rotating nozzle, wherein the rotating nozzle has a nozzle communicating with a liquid storage tank inside the humidifier body, and the processor according to the position information
  • the control drive drives the rotary nozzle to rotate to a direction in which the nozzle faces the carrier.
  • the processor is configured to acquire a set humidity value set by a user, and the portable device is provided with a humidity sensor for detecting an environmental humidity value at which the portable device is located; the processor And determining whether the driving device drives the rotating nozzle according to whether the deviation value of the ambient humidity value is less than the preset humidity value exceeds a preset value.
  • the preset value ranges from 5% RH to 20% RH.
  • the position detecting device comprises an ultrasonic transmitter and an ultrasonic receiver respectively connected to the processor signal, the ultrasonic transmitter being disposed on the rotating nozzle, the direction of the emitted ultrasonic waves being the same as the direction of the nozzle of the rotating nozzle
  • the ultrasonic receiver is disposed on the portable device;
  • the driving device drives the rotating spray head to rotate circumferentially along a central axis thereof, the ultrasonic transmitter rotates with the rotating nozzle, and transmits an ultrasonic signal every predetermined angle when rotating, the ultrasonic receiver receives each ultrasonic signal And the processor determines location information of the portable device relative to the humidifier body according to a time when the ultrasonic receiver receives each ultrasonic signal.
  • the processor determines the distance between the portable device and the humidifier body while determining the position information of the portable device according to the ultrasonic signals; the processor is further configured to adjust the distance according to the distance The humidifying power of the humidifier body is described.
  • the humidifier body comprises a casing formed by fastening the upper casing and the lower casing to each other in an up-and-down direction, the liquid storage tank is disposed in the casing, and the upper casing is fastened inside.
  • a mounting plate is fixed, an upper portion of the rotating nozzle protrudes from a top end of the upper casing, and a lower outer edge is provided with a ring gear portion, and the ring gear portion is rotatably disposed between the mounting plate and the upper casing
  • the driving device is fixedly mounted on the mounting plate and is drivingly connected to the ring gear portion; a center of the mounting plate defines a through hole having a diameter smaller than a diameter of the ring gear portion, and the liquid storage box is The upper end is convexly formed in a tapered manner, and the upper end of the tapered tube extends through the through hole into the rotary nozzle.
  • a control assembly and an air blowing mechanism are disposed in the lower casing, and the control assembly includes a control circuit board fixed in the lower casing, a battery, and a control panel disposed on the outer wall of the lower casing and having a plurality of control buttons.
  • the processor is disposed on the control circuit board, and the control circuit board is electrically connected to the driving device, the battery, the control panel, and the atomizer in the liquid storage tank;
  • the air blowing mechanism includes an air inlet mesh hole disposed at a bottom of the lower casing, a blower disposed above the air inlet mesh hole, and a side wall of the liquid storage tank is provided with the upper casing and a ventilation passage of the lower casing, and an upper end of the liquid storage tank is provided with a blast hole.
  • the mounting plate is provided with a positioning ring at an edge of the through hole, and the positioning ring is arranged on the circumference of the array with a plurality of infrared receivers/infrared emitters connected to the processor, adjacent to two An angle between the infrared receiver/infrared emitter is equal to the predetermined angle, and a bottom surface of the ring gear portion is provided with an infrared emitter/infrared receiver opposite to the infrared receiver/infrared emitter.
  • the portable device is a remote controller provided with at least a switch button for controlling power on and off of the humidifier body, and a repositioning button for controlling the
  • the humidifier body re-detects the position information of the portable device relative to the humidifier body, and controls the driving device to drive the rotary nozzle to rotate to a direction in which the nozzle faces the portable device according to the re-inspected position information.
  • the present invention also provides an intelligent remote sensing humidification device comprising a humidifier body, a base, a position detecting device and a portable device, wherein the humidifier body is rotatably disposed on the base, and the position detecting device is configured to detect the portable The position information of the device relative to the base; the humidifier body or the base is provided with a processor and a driving device, and the humidifier body has a nozzle communicating with the internal liquid storage tank thereof, the processor according to the The position information control driving device drives the humidifier body to rotate to a direction in which the nozzle faces the portable device.
  • the position of the portable device can be detected by the position detecting device, and the position information is sent to the processor, so that the processor can adjust the nozzle orientation of the rotating nozzle according to the position information, so that the nozzle faces the portable device.
  • the humidifier main body can adjust the humidity of the surrounding environment at the user's position to achieve the best humidity adjustment effect, and reduce the difference between the user's perceived humidity and the set humidity, and achieve the positioning. The role of reinforcement.
  • FIG. 1 is a schematic structural view of an embodiment of a smart remote sensing humidification device according to the present invention
  • FIG. 2 is a schematic cross-sectional structural view of the main body of the humidifier according to the present invention.
  • Figure 3 is a half cross-sectional view of the main body of the humidifier of the present invention.
  • Figure 4 is a schematic cross-sectional view of the rotary nozzle and the mounting plate of the present invention.
  • Figure 5 is a schematic view showing the installation structure of the rotating spray head and the mounting plate of the present invention.
  • Figure 6 is an exploded perspective view of the rotary nozzle and the positioning ring of the present invention.
  • Figure 7 is an exploded perspective view 2 of the rotary nozzle and the positioning ring of the present invention.
  • FIG. 8 is a schematic structural view of another embodiment of a smart remote sensing humidification device according to the present invention.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” and “second” may include one or more of the features either explicitly or implicitly.
  • the meaning of "a plurality” is two or more unless specifically and specifically defined otherwise.
  • the terms “installation”, “connected”, “connected”, “fixed” and the like shall be understood broadly, and may be either a fixed connection or a detachable connection, unless explicitly stated and defined otherwise. , or connected integrally; may be mechanical connection or electrical connection; may be directly connected, or may be indirectly connected through an intermediate medium, and may be internal communication between the two elements.
  • installation shall be understood broadly, and may be either a fixed connection or a detachable connection, unless explicitly stated and defined otherwise.
  • , or connected integrally may be mechanical connection or electrical connection; may be directly connected, or may be indirectly connected through an intermediate medium, and may be internal communication between the two elements.
  • the specific meanings of the above terms in the present invention can be understood on a case-by-case basis.
  • the first feature "on” or “under” the second feature may include direct contact of the first and second features, and may also include first and second features, unless otherwise specifically defined and defined. It is not in direct contact but through additional features between them.
  • the first feature "above”, “above” and “above” the second feature includes the first feature directly above and above the second feature, or merely indicating that the first feature level is higher than the second feature.
  • the first feature “below”, “below” and “below” the second feature includes the first feature directly below and below the second feature, or merely the first feature level being less than the second feature.
  • an intelligent remote sensing humidification device includes a humidifier body 10, a position detecting device, and a portable device 20, wherein the position detecting device is configured to detect the portable device 20 with respect to Position information of the humidifier body 10; the humidifier body 10 is provided with a processor, a driving device 12, and a rotating rotating nozzle 11 provided, and the rotating nozzle 11 has an interior of the humidifier body 10
  • the nozzle 111 communicating with the reservoir 13 controls the driving device 12 to drive the rotary head 11 to rotate to the direction in which the nozzle 111 faces the portable device 20 based on the position information.
  • the humidifier main body 10 and the portable device 20 are in the same indoor space, and the portable device 20 is carried or moved by the user to the user, and the portable device 20 can detect the portable device.
  • the position of the device 20 is sent to the processor, so that the processor can adjust the orientation of the nozzle 111 of the rotary nozzle 11 according to the position information so that the nozzle 111 faces the position of the portable device 20, thereby allowing the humidifier body 10 to During work, the ambient humidity of the user's location is adjusted to the fastest, to achieve the best humidity adjustment effect, and to reduce the difference between the user's perceived humidity and the set humidity, to achieve the role of positioning and reinforcement.
  • the processor is configured to acquire a set humidity value set by a user, and the portable device 20 is wirelessly connected to the humidifier body 10, and is provided with a humidity sensor therein for detecting the portable device.
  • the environment humidity value is 20; the processor is configured to control the driving device 12 to drive the rotating nozzle 11 according to whether the deviation value of the ambient humidity value is less than the preset humidity value.
  • the preset value ranges from 5% RH to 20% RH.
  • the position detecting device pairs The portable device 20 performs repositioning, and the processor controls the driving device 12 to drive the rotary nozzle 11 according to the repositioned portable device 20 position, so that the nozzle 111 of the rotary nozzle 11 faces the portable device 20, thereby the ambient humidity at the position of the portable device 20. Positioning reinforcement. Therefore, when the user carries the portable device 20 to move to a position where the humidity is low, the nozzle 111 of the rotary nozzle 11 is still facing the position before the portable device 20 is not moved, thereby enabling the smart remote sensing humidification of the embodiment.
  • the device can intelligently locate the portable device 20, ensuring that the indoor humidity sensed by the user is closer to the set humidity value set by the user, and the set humidity set by the user and the indoor humidity perceived by the user are reduced.
  • the difference has played a role in intelligent positioning and reinforcement.
  • the position detecting device includes an ultrasonic transmitter 30 and an ultrasonic receiver respectively coupled to the processor, the ultrasonic transmitter 30 being disposed on the rotating spray head 11, which emits an ultrasonic direction
  • the ultrasonic receiver is disposed on the portable device 20 in the same direction as the nozzle 111 of the rotary nozzle 11, and the driving device 12 drives the rotary nozzle 11 to perform circumferential rotation along a central axis thereof.
  • the ultrasonic transmitter 30 Rotating the rotating nozzle 11 and transmitting an ultrasonic signal every predetermined angle when rotating, the ultrasonic receiver receives each ultrasonic signal, and the processor determines the time according to the time when the ultrasonic receiver receives each ultrasonic signal.
  • the rotary nozzle 11 emits an ultrasonic signal every predetermined rotation angle when the rotation of the rotary nozzle 11 is rotated by a predetermined angle, for example, the predetermined angle is 45 degrees, and the ultrasonic transmitter 30 emits every 45 degrees of rotation of the rotary nozzle 11
  • An ultrasonic signal that is, the ultrasonic transmitter 30 rotates with the rotating nozzle 11 to respectively emit an ultrasonic signal in the eight azimuth directions of the humidifier main body 10, and the processor judges the portable according to the length of time that the ultrasonic receiver receives the ultrasonic signals from various places.
  • orientation of the humidifier body 10 that is, using the principle of ultrasonic waves
  • the processor drives the rotary nozzle 11 to rotate the nozzle 111 toward the determined azimuth direction by controlling the driving device 12 to realize positioning of the portable device 20 to achieve the purpose of humidifying and reinforcing the environment around the portable device 20.
  • the processor determines the distance between the portable device 20 and the humidifier body 10 while determining the position information of the portable device 20 according to the ultrasonic signals; the processor is further configured to The distance between the portable device 20 and the humidifier body 10 adjusts the humidifying power of the humidifier body 10. For example, when the distance between the portable device 20 and the humidifier body 10 is large, if the humidity is set to 50% RH, the ambient humidity value detected by the portable device 20 is 40% RH, that is, the humidity deviation between the two. When the value is 10% RH, the set humidity of the humidifier body 10 is corrected, and the humidifier body 10 is operated under the condition of a humidity of 60% RH, so that the environmental humidity of the position of the portable device 20 is closer to the user setting. The humidity reduces the difference between the ambient humidity experienced by the user and the humidity environment it sets.
  • the humidifier body 10 includes a housing 14 that is fastened and fixed to each other in the up and down direction by the upper housing 141 and the lower housing 142.
  • the storage tank 13 is disposed in the casing 14.
  • the upper casing 141 is fastened and fixed with a mounting plate 15 upwardly.
  • the upper portion of the rotating nozzle 11 is extended from the top end of the upper casing 141.
  • the outer edge is provided with a ring gear portion 112.
  • the ring gear portion 112 is rotatably disposed between the mounting plate 15 and the upper casing 141.
  • the driving device 12 is fixedly mounted on the mounting plate 15, and The ring gear portion 112 is drivingly connected; a center of the mounting plate 15 defines a through hole 151 having a smaller diameter than the ring gear portion 112, and the upper end of the liquid storage tank 13 is convexly formed into a tapered tube. 131.
  • the upper end of the tapered tube 131 extends through the through hole 151 into the rotary nozzle 11.
  • the rotating spray head 11 is located at the top of the housing 14 with the spray head facing one side of the housing 14 and can be driven to rotate axially about its axis by the driving device 12, so that when the positioning humidification and reinforcement work is not performed,
  • the driving device 12 drives the rotary nozzle 11 to perform a 360° rotation spray, thereby improving the diffusion effect of the mist.
  • the lower housing 142 is provided with a control assembly and an air blowing mechanism, and the control assembly includes a control circuit board 161 fixed in the lower housing 142, a battery 162, and a plurality of outer walls disposed on the lower housing 142.
  • the processor being disposed on the control circuit board 161, the control circuit board 161 and the driving device 12, the battery 162, the control panel 163, and the liquid storage tank 13 respectively
  • the atomizing device 132 is electrically connected;
  • the air blowing mechanism includes an air inlet mesh hole 172 disposed at a bottom of the lower casing 142, and a blower 171 disposed above the air inlet mesh hole 172, the liquid storage tank
  • a ventilation passage 133 that communicates with the upper casing 141 and the lower casing 142 is disposed on a side wall of the casing 13, and an upper end of the reservoir tank 13 is provided with a blast hole 134.
  • the air blower 171 and the atomizer 132 are activated, and the air blower 171 is exhausted by the air inlet mesh hole 172 of the lower casing 142, and is directed toward the air blowing hole 134 of the liquid storage tank 13 through the ventilation passage 133.
  • the inside of the reservoir 13 is blasted so that the mist generated in the reservoir 13 in which the atomizer 132 is opened enters the rotary nozzle 11 through the tapered tube 131, and is discharged through the discharge port 111 of the rotary nozzle 11.
  • the blower 171 of the present embodiment while functioning as a blast, also dissipates heat to the control components in the lower casing 142 to prevent the temperature in the lower casing 142 from being too high and affecting the service life of the control components.
  • the rotating nozzle 11 is provided with a first electrical connector
  • the upper housing 141 or the mounting plate 15 is provided with a second electrical connector rotatably connected to the first electrical connector, on the rotating nozzle 11
  • the ultrasonic transmitter 30 is connected to the processor on the circuit board by a connection between the first electrical connector and the second electrical connector, and the first electrical connector and the second electrical connector are designed by using an electric slip ring structure The principle is a well-known prior art and will not be described again.
  • the liquid storage tank 13 of the present invention may be provided with two or more liquid storage chambers, and each liquid storage chamber is provided with an atomizer 132, by separately adding essential oil liquids of different compositions in the two liquid storage chambers.
  • one of the atomizers 132 can be selectively activated to cause the atomizer 132 to atomize the essential oil liquid in the corresponding liquid storage chamber to generate an aroma, thereby rotating the aroma in the liquid storage chamber from the rotation.
  • the spout 11 of the sprinkler 11 is ejected to produce an aroma humidifying effect; and when another aroma aroma humidifying effect is desired, the corresponding atomizer 132 is activated accordingly.
  • a positioning ring 18 is disposed on the edge of the through hole 151 of the mounting plate 15 , and the positioning ring 18 is arranged on the circumference of the positioning ring 18 .
  • An infrared ray emitter 181 connected to the processor, an angle between two adjacent infrared ray emitters 181 is equal to the predetermined angle, and a bottom surface of the ring gear portion 112 is provided with the infrared ray emitter 181 The opposite infrared receiver 113.
  • the positions of the infrared ray emitter 181 and the infrared ray receiver 113 are interchangeable.
  • the locating ring 18 is provided with an infrared ray receiver
  • the bottom surface of the ring gear portion 112 is provided with an infrared ray emitter.
  • the position of the ring gear portion 112 of the infrared receiver 113 is the same as the direction in which the nozzle 111 is ejected, that is, the infrared receiver 113 and the bottom portion of the rotating nozzle 11 are rotated at a predetermined angle.
  • One of the infrared emitters 181 on the ring 18 opposes, that is, when the portable device 20 is positioned, the driving device 12 drives the rotary head 11 to rotate.
  • the processor controls the ultrasonic transmitter 30 to emit an ultrasonic signal, so after the rotating nozzle 11 rotates one revolution, the processor obtains the length of time that the ultrasonic receiver receives the ultrasonic signals on the portable device 20, thereby The ultrasonic signal having the shortest receiving time is determined to be emitted from the position corresponding to the infrared receiver 113, and then the control driving device 12 drives the rotating nozzle 11 to rotate to the infrared emitter 181 corresponding to the corresponding infrared receiver 113. Position, at this time, the nozzle 111 of the rotary nozzle 11 is substantially facing the position of the portable device 20
  • the portable device 20 is a remote controller wirelessly connected to the humidifier body 10, and at least a switch button 21 and a repositioning button 22 are provided thereon, and the switch button 21 is used for controlling The power supply of the humidifier body 10 is turned on and off, and the repositioning button 22 is configured to control the humidifier body 10 to re-detect position information of the portable device 20 relative to the humidifier body 10, and according to the The re-inspected position information control drive unit 12 drives the rotary head 11 to rotate to the direction in which the nozzle 111 faces the portable unit 20.
  • the present invention can also be configured to reposition the timing of the portable device 20, for example, to set the repositioning of the portable device 20 every 15 minutes, 30 minutes or 60 minutes, and to control the driving when the position of the portable device 20 is changed.
  • the device 12 drives the rotary head 11 to rotate to a position where the nozzle 111 faces the repositioned carrier 20.
  • the present invention further provides an intelligent remote sensing humidification device, comprising a humidifier body 10, a base 40, a position detecting device and a portable device 20, wherein the humidifier body 10 is rotatably disposed on the base 40.
  • the position detecting device is configured to detect position information of the portable device 20 relative to the base 40; the humidifier body 10 or the base 40 is provided with a processor and a driving device, and the humidifier body 10 has The nozzle 111' communicating with the internal reservoir thereof controls the driving device to drive the humidifier body 10 to rotate toward the direction in which the nozzle 111' faces the portable device 20 based on the position information.
  • the spout 111' is fixed relative to the humidifier main body 10.
  • the spout 111' also rotates with the humidifier main body 10 with respect to the base 40.
  • the humidifier main body 10 and the portable device 20 are in the same indoor space, and the portable device 20 is carried or moved by the user to the user, and the portable device 20 can detect the portable device. Positioning the device 20 and transmitting the position information to the processor, so that the processor can control the rotation of the humidifier body 10 according to the position information to adjust the orientation of the spout 111' thereof so that the spout 111' faces the position of the portable device 20. Therefore, the humidifier main body 10 can adjust the humidity of the surrounding environment at the user's position to achieve the best humidity adjustment effect, and reduce the difference between the humidity perceived by the user and the humidity set by the user. The role of reinforcement.
  • the position detecting device includes an ultrasonic transmitter 30 and an ultrasonic receiver respectively connected to the processor signal, the ultrasonic transmitter 30 being disposed on the humidifier body 10, which emits an ultrasonic wave direction and the nozzle 111' In the same direction, the ultrasonic receiver is disposed on the portable device 20; the driving device 12 drives the humidifier main body 10 to rotate circumferentially along a central axis thereof, and the ultrasonic transmitter 30 rotates with the humidifier main body 10, and When rotating, an ultrasonic signal is transmitted every predetermined angle, the ultrasonic receiver receives each ultrasonic signal, and the processor determines the portable device 20 relative to the time according to the time when the ultrasonic receiver receives each ultrasonic signal.
  • the location information of the base 40 is described. That is to say, the positioning principle of the position detecting device of the present embodiment is the same as that of the above embodiment, and therefore has at least all the beneficial effects of the technical solutions of the above embodiments, and will not be further described herein.

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  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
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Abstract

一种智能远程感应加湿装置,包括加湿器主体(10)、位置检测装置以及便携器(20),位置检测装置用于检测便携器(20)相对于加湿器主体(10)所在的位置信息;加湿器主体(10)上设有处理器、驱动装置(12)以及转动设置的旋转喷头(11),旋转喷头(11)具有与加湿器主体(10)内部的储液箱(13)连通的喷口(111),处理器根据位置信息控制驱动装置(12)驱动旋转喷头(11)转动至喷口(111)朝向便携器(20)的方向。

Description

一种智能远程感应加湿装置 技术领域
本发明涉及加湿装置技术领域,特别涉及一种智能远程感应加湿装置。
背景技术
随着人们生活水平的提高,对室内空气舒适性要求越来越高,不仅要求室内空气温度在舒适的范围内,而且对湿度也要求在舒适范围内。现有的家用空调器及集中供暖气仅能调节室内空气的温度,而不能调节空气的湿度,人体仍然感到不舒适,出现干燥流鼻血等症状。为进一步提升舒适度,各种向空气加湿的加湿器装置应运而生。加湿装置主要是通过超声波震荡设备产生的高频电子震荡,将液态的水变成气态的蒸汽,混合到空气中,从而达到调节空气中的水蒸气的含量的目的。
然而,由于现有加湿器的喷头都是固定不变的,喷头的喷口时刻朝向一个位置进行加湿,因此其在工作时所处空间不同位置的环境湿度不相同,而且不能智能对使用者进行定位加湿,导致使用者所感受到的环境湿度与用户设定的设定湿度不一致。
发明内容
本发明的目的在于至少一定程度上解决现有技术中的不足,提供一种智能远程感应加湿装置。
为实现上述目的,本发明提供的智能远程感应加湿装置,包括加湿器主体、位置检测装置以及便携器,所述位置检测装置用于检测所述便携器相对于所述加湿器主体所在的位置信息;所述加湿器主体上设有处理器、驱动装置以及转动设置的旋转喷头,所述旋转喷头具有与所述加湿器主体内部的储液箱连通的喷口,所述处理器根据所述位置信息控制驱动装置驱动所述旋转喷头转动至所述喷口朝向所述便携器的方向。
优选地,所述处理器用于获取用户设定的设定湿度值,所述便携器内设有湿度传感器,所述湿度传感器用于检测所述便携器所处的环境湿度值;所述处理器根据所述环境湿度值小于所述设定湿度值的偏差值是否超过预设值,以控制所述驱动装置驱动所述旋转喷头。
优选地,所述预设值的取值范围为5%RH至20%RH之间。
优选地,位置检测装置包括分别与所述处理器信号连接的超声波发射器和超声波接收器,所述超声波发射器设置在所述旋转喷头上,其发射超声波方向与所述旋转喷头的喷口方向相同,所述超声波接收器设置在所述便携器上;
所述驱动装置驱动旋转喷头沿其中心轴线进行周向转动,所述超声波发射器随旋转喷头转动,并在转动时,每隔一预定角度发射一超声波信号,所述超声波接收器接收各个超声波信号,所述处理器根据所述超声波接收器接受各超声波信号的时间来判断所述便携器相对于所述加湿器主体所在的位置信息。
优选地,所述处理器根据所述各超声波信号判断所述便携器位置信息的同时,判断所述便携器与加湿器主体之间的距离;所述处理器还用于根据所述距离调节所述加湿器主体的加湿功率。
优选地,所述加湿器主体包括由上壳体和下壳体沿上下方向相互扣合固定形成的壳体,所述储液箱设置于所述壳体内,所述上壳体内部向上扣合固定有一安装板,所述旋转喷头的上部由所述上壳体的顶端伸出,下部外缘设置有环形齿轮部,所述环形齿轮部转动的设于所述安装板与上壳体之间,所述驱动装置固定安装在所述安装板上,并与所述环形齿轮部传动连接;所述安装板的中心开设有一孔径小于所述环形齿轮部直径的通孔,所述储液箱的上端以渐缩的方式凸起形成锥形管,所述锥形管的上端穿过所述通孔而伸入所述旋转喷头内。
优选地,所述下壳体内设置有控制组件和鼓风机构,所述控制组件包括固定在下壳体内的控制电路板、蓄电池以及设置于所述下壳体外壁上具有多个控制按键的控制面板,所述处理器设置于所述控制电路板上,所述控制电路板分别与所述驱动装置、蓄电池、控制面板以及所述储液箱内的雾化器电性连接;
所述鼓风机构包括设于所述下壳体底部的进风网孔、设于所述进风网孔上方的有鼓风机,所述储液箱的侧壁上设有连通所述上壳体和下壳体的通风通道,所述储液箱的上端设有鼓风孔。
优选地,所述安装板上于所述通孔的边缘设置有定位环,所述定位环上圆周整列的设置有若干与所述处理器连接的红外线接收器/红外线发射器,相邻两个所述红外线接收器/红外线发射器之间的角度等于所述预定角度,所述环形齿轮部的底面设有与所述红外线接收器/红外线发射器相对的红外线发射器/红外线接收器。
优选地,所述便携器为遥控器,其上至少设置有开关按钮以及重新定位按钮,所述开关按钮用于控制所述加湿器主体的电源通断,所述重新定位按钮用于控制所述加湿器主体重新检测所述便携器相对于所述加湿器主体所在的位置信息,并根据所述重新检查的位置信息控制驱动装置驱动所述旋转喷头转动至喷口朝向所述便携器的方向。
本发明还提供一种智能远程感应加湿装置,包括加湿器主体、底座、位置检测装置 以及便携器,所述加湿器主体转动设置在所述底座上,所述位置检测装置用于检测所述便携器相对于所述底座所在的位置信息;所述加湿器主体或底座内设有处理器以及驱动装置,所述加湿器主体上具有与其内部储液箱连通的喷口,所述处理器根据所述位置信息控制驱动装置驱动所述加湿器主体转动至所述喷口朝向所述便携器的方向。
本发明技术方案通过位置检测装置可检测该便携器的位置,并将该位置信息发送至处理器,使处理器可根据该位置信息调节旋转喷头的喷口朝向,以使该喷口朝向便携器的位置,从而让加湿器主体工作时对使用者所处位置的周围环境湿度进行最快速的调节,实现最佳湿度调节效果,并减少了使用者所感受到的湿度与其所设定湿度的差异,达到定位补强的作用。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本发明智能远程感应加湿装置一实施例的结构示意图;
图2为发明加湿器主体的剖面结构示意图;
图3为本发明加湿器主体的半剖图;
图4为本发明旋转喷头与安装板的剖面示意图;
图5为本发明旋转喷头与安装板的的安装结构示意图;
图6为本发明旋转喷头与定位环的的分解示意图一;
图7为本发明旋转喷头与定位环的的分解示意图二;
图8为本发明智能远程感应加湿装置另一实施例的结构示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面详细描述本发明的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本发明,而不能理解为对本发明的限制,基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
在本发明的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽 度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”“轴向”、“周向”、“径向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本发明的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本发明中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
在本发明中,除非另有明确的规定和限定,第一特征在第二特征之“上”或之“下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。而且,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”包括第一特征在第二特征正下方和斜下方,或仅仅表示第一特征水平高度小于第二特征。
下面参照附图详细描述本发明实施例的智能远程感应加湿装置。
如图1至图7所示,根据本发明实施例的智能远程感应加湿装置,包括加湿器主体10、位置检测装置以及便携器20,所述位置检测装置用于检测所述便携器20相对于所述加湿器主体10所在的位置信息;所述加湿器主体10上设有处理器、驱动装置12以及转动设置的旋转喷头11、,所述旋转喷头11具有与所述加湿器主体10内部的储液箱13连通的喷口111,所述处理器根据所述位置信息控制驱动装置12驱动所述旋转喷头11转动至喷口111朝向所述便携器20的方向。
根据本实施例的智能远程感应加湿装置,加湿器主体10和便携器20处于同一室内空间中,且便携器20由使用者随身携带或移动放置于使用者身边,通过位置检测装置可检测该便携器20的位置,并将该位置信息发送至处理器,使处理器可根据该位置信息调节旋 转喷头11的喷口111朝向,以使该喷口111朝向便携器20的位置,从而让加湿器主体10工作时对使用者所处位置的周围环境湿度进行最快速的调节,实现最佳湿度调节效果,并减少了使用者所感受到的湿度与其所设定湿度的差异,达到定位补强的作用。
优选地,所述处理器用于获取用户设定的设定湿度值,所述便携器20与加湿器主体10无线通信连接,其内设有湿度传感器,所述湿度传感器用于检测所述便携器20所处的环境湿度值;所述处理器根据所述环境湿度值小于所述设定湿度值的偏差值是否超过预设值,以控制所述驱动装置12驱动所述旋转喷头11。较佳地,该预设值的取值范围可在5%RH至20%RH之间选取。
也就是说,当便携器20内的湿度传感器所检测到的环境湿度值小于使用者所设定的设定湿度值,且两者之间的偏差值超过一预设值时,位置检测装置对便携器20进行重新定位,处理器根据重新定位的便携器20位置控制驱动装置12驱动旋转喷头11,从而使旋转喷头11的喷口111朝向便携器20方向,从而对便携器20所在位置的环境湿度进行定位补强。如此可解决了当使用者携带便携器20移动至湿度较低的位置时,而旋转喷头11的喷口111还是朝向便携器20未移动前位置处的问题,从而使本实施例的智能远程感应加湿装置可对便携器20进行智能定位,确保让使用者时刻感受到的室内湿度更接近其所设定的设定湿度值,减少了使用者设定的设定湿度与使用者所感受的室内湿度的差异,起到了智能定位补强的作用。
在本发明的一个实施例中,位置检测装置包括分别与所述处理器信号连接的超声波发射器30和超声波接收器,所述超声波发射器30设置在所述旋转喷头11上,其发射超声波方向与所述旋转喷头11的喷口111方向相同,所述超声波接收器设置在所述便携器20上;所述驱动装置12驱动旋转喷头11沿其中心轴线进行周向转动,所述超声波发射器30随旋转喷头11转动,并在转动时,每隔一预定角度发射一超声波信号,所述超声波接收器接收各个超声波信号,所述处理器根据所述超声波接收器接受各超声波信号的时间来判断所述便携器20相对于所述加湿器主体10所在的位置信息。
也就是说,旋转喷头11在由驱动装置12驱动其旋转时,每旋转一预定角度发射一超声波信号,例如,所述预定角度为45度,旋转喷头11每旋转45度时超声波发射器30发射一次超声波信号,即超声波发射器30随旋转喷头11旋转从而在加湿器主体10的八方位方向分别发出一次超声波信号,处理器根据超声波接收器所接收各方位发出的超声波信号的时间长短来判断便携器20大致在加湿器主体10的哪个方位,即利用超声波原理,当加湿器主体10某一方位发出的超声波信号从发射至接收时间最短,则表示便携器20处于加湿器主体 10的该方位上,然后处理器通过控制驱动装置12驱动旋转喷头11旋转至喷口111朝向该确定的方位方向上,以实现对便携器20进行定位从而达到对便携器20所处位置周围环境加湿补强的目的。
进一步地,所述处理器根据所述各超声波信号判断所述便携器20位置信息的同时,判断所述便携器20与加湿器主体10之间的距离;所述处理器还用于根据所述便携器20与加湿器主体10之间的距离调节所述加湿器主体10的加湿功率。例如,当便携器20与加湿器主体10之间的距离较大时,若设定湿度为50%RH,便携器20所检测到的环境湿度值值为40%RH,即两者的湿度偏差值为10%RH,则对加湿器主体10的设定湿度进行补正,使加湿器主体10在湿度为60%RH条件下工作,从而使便携器20所在位置的环境湿度更接近使用者设定的湿度,减少使用者所感受的环境湿度与其设定的湿度环境的差异。
在本发明的另一实施例中,如图2至图5所示,所述加湿器主体10包括由上壳体141和下壳体142沿上下方向相互扣合固定形成的壳体14,所述储液箱13设置于所述壳体14内,所述上壳体141内部向上扣合固定有一安装板15,所述旋转喷头11的上部由所述上壳体141的顶端伸出,下部外缘设置有环形齿轮部112,所述环形齿轮部112转动的设于所述安装板15与上壳体141之间,所述驱动装置12固定安装在所述安装板15上,并与所述环形齿轮部112传动连接;所述安装板15的中心开设有一孔径小于所述环形齿轮部112直径的通孔151,所述储液箱13的上端以渐缩的方式凸起形成锥形管131,所述锥形管131的上端穿过所述通孔151而伸入所述旋转喷头11内。如此,旋转喷头11位于壳体14的顶部,其喷头朝向壳体14的一侧,并可由驱动装置12驱动绕其轴心进行轴向转动,从而在不进行定位加湿补强工作时,可以由驱动装置12驱动旋转喷头11进行360°转动喷雾,提高了雾气的扩散效果。
具体地,所述下壳体142内设置有控制组件和鼓风机构,所述控制组件包括固定在下壳体142内的控制电路板161、蓄电池162以及设置于所述下壳体142外壁上具有多个控制按键的控制面板163,所述处理器设置于所述控制电路板161上,所述控制电路板161分别与所述驱动装置12、蓄电池162、控制面板163以及所述储液箱13内的雾化器132电性连接;所述鼓风机构包括设于所述下壳体142底部的进风网孔172、设于所述进风网孔172上方的有鼓风机171,所述储液箱13的侧壁上设有连通所述上壳体141和下壳体142的通风通道133,所述储液箱13的上端设有鼓风孔134。如此,加湿器主体10工作时,鼓风机171和雾化器132启动,鼓风机171利用下壳体142的进风网孔172进行抽风,并通过通风通道133向储液箱13的鼓风孔134向储液箱13内鼓风,以使开启了雾化器132的储液箱 13内所产生的雾气通过锥形管131进入旋转喷头11内,并通过旋转喷头11的喷口111排出。而本实施例的鼓风机171在起到鼓风作用的同时,还对下壳体142内的控制组件进行散热,避免下壳体142内温度过高而影响控制组件的使用寿命。
需要说明的是,旋转喷头11上设置有第一电连接器,上壳体141或安装板15上设有与所述第一电连接器转动连接的第二电连接器,旋转喷头11上的超声波发射器30通过第一电连接器与第二电连接器之间的连接而与所述电路板上的处理器连接,该第一电连接器和第二电连接器采用电滑环结构设计原理,为公知的现有技术,再次不再赘述。
进一步地,本发明的储液箱13可以设置两个或以上的储液腔,每一储液腔内均设有雾化器132,通过在两个储液腔内分别加入不同成分的精油液体,在使用时,可选择性的启动其中一个雾化器132,以使该雾化器132将对应储液腔内的精油液体进行雾化产生香气,从而使该储液腔内的香气从旋转喷头11的喷口111中喷出,产生香薰加湿效果;而当想要另一种香气的香薰加湿效果时,对应的启动另一雾化器132即可。
在本发明的又一实施例中,结合图6和图7所示,所述安装板15上于所述通孔151的边缘设置有定位环18,所述定位环18上圆周整列的设置有若干与所述处理器连接的红外线发射器181,相邻两个所述红外线发射器181之间的角度等于所述预定角度,所述环形齿轮部112的底面设有与所述红外线发射器181相对的红外线接收器113。其中,红外线发射器181和红外线接收器113的位置可互换,例如,定位环18上设置的是红外线接收器,而环形齿轮部112的底面设置的是红外线发射器。
具体的,该红外线接收器113所在环形齿轮部112的位置方向是与喷口111的喷出方向相同,也就是说,旋转喷头11每旋转一预定角度时,其底部上的红外线接收器113与定位环18上的其中一个红外线发射器181相对,即在对便携器20进行定位时,驱动装置12驱动旋转喷头11转动,在旋转喷头11每经过一个红外线接收器113上时,红外线接收器113接收红外信号并反馈信号至处理器,处理器控制超声波发射器30发出超声波信号,如此在旋转喷头11旋转一圈后,处理器获得便携器20上超声波接收器所接收各超声波信号的时间长短,从而通过接收时间最短的那次超声波信号确定其是从哪个红外线接收器113所对应的位置发出的,然后控制驱动装置12驱动旋转喷头11转动至红外线发射器181与该对应的红外线接收器113对应的位置,此时旋转喷头11的喷口111大致朝向便携器20所在位置。
在本发明的再一实施例中,所述便携器20为与加湿器主体10无线通信连接的遥控器,其上至少设置有开关按钮21以及重新定位按钮22,所述开关按钮21用于控制所述加 湿器主体10的电源通断,所述重新定位按钮22用于控制所述加湿器主体10重新检测所述便携器20相对于所述加湿器主体10所在的位置信息,并根据所述重新检查的位置信息控制驱动装置12驱动所述旋转喷头11转动至喷口111朝向所述便携器20的方向。当然,本发明也可设置对便携器20定时的进行重新定位,例如,设置每隔15min、30min或60min的时间便对便携器20进行重新定位,当便携器20的位置发生改变时,控制驱动装置12驱动旋转喷头11转动至喷口111朝向重新定位后的便携器20所在的位置。
如图8所示,本发明还提供一种智能远程感应加湿装置,包括加湿器主体10、底座40、位置检测装置以及便携器20,所述加湿器主体10转动设置在所述底座40上,所述位置检测装置用于检测所述便携器20相对于所述底座40所在的位置信息;所述加湿器主体10或底座40内设有处理器以及驱动装置,所述加湿器主体10上具有与其内部储液箱连通的喷口111’,所述处理器根据所述位置信息控制驱动装置驱动所述加湿器主体10转动至所述喷口111’朝向所述便携器20的方向。
需要说明的是,在本实施例中,喷口111’是与加湿器主体10相对固定的,当加湿器主体10相对底座40转动时,喷口111’也随加湿器主体10相对底座40转动。
根据本实施例的智能远程感应加湿装置,加湿器主体10和便携器20处于同一室内空间中,且便携器20由使用者随身携带或移动放置于使用者身边,通过位置检测装置可检测该便携器20的位置,并将该位置信息发送至处理器,使处理器可根据该位置信息控制加湿器主体10转动来调节其喷口111’朝向,以使该喷口111’朝向便携器20的位置,从而让加湿器主体10工作时对使用者所处位置的周围环境湿度进行最快速的调节,实现最佳湿度调节效果,并减少了使用者所感受到的湿度与其所设定湿度的差异,达到定位补强的作用。
具体地,位置检测装置包括分别与所述处理器信号连接的超声波发射器30和超声波接收器,所述超声波发射器30设置在加湿器主体10上,其发射超声波方向与所述喷口111’的方向相同,所述超声波接收器设置在所述便携器20上;所述驱动装置12驱动加湿器主体10沿其中心轴线进行周向转动,所述超声波发射器30随加湿器主体10转动,并在转动时,每隔一预定角度发射一超声波信号,所述超声波接收器接收各个超声波信号,所述处理器根据所述超声波接收器接受各超声波信号的时间来判断所述便携器20相对于所述底座40所在的位置信息。也就是说,本实施例的位置检测装置的定位原理与上述实施例相同,因此至少具有上述实施例的技术方案的所有有益效果,在此不再一一赘述。
以上所述仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是在本发 明的发明构思下,利用本发明说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本发明的专利保护范围内。

Claims (10)

  1. 一种智能远程感应加湿装置,其特征在于,包括加湿器主体、位置检测装置以及便携器,所述位置检测装置用于检测所述便携器相对于所述加湿器主体所在的位置信息;所述加湿器主体上设有处理器、驱动装置以及转动设置的旋转喷头,所述旋转喷头具有与所述加湿器主体内部的储液箱连通的喷口,所述处理器根据所述位置信息控制驱动装置驱动所述旋转喷头转动至所述喷口朝向所述便携器的方向。
  2. 如权利要求1所述的智能远程感应加湿装置,其特征在于,所述处理器用于获取用户设定的设定湿度值,所述便携器内设有湿度传感器,所述湿度传感器用于检测所述便携器所处的环境湿度值;所述处理器根据所述环境湿度值小于所述设定湿度值的偏差值是否超过预设值,以控制所述驱动装置驱动所述旋转喷头。
  3. 如权利要求2所述的智能远程感应加湿装置,其特征在于,所述预设值的取值范围为5%RH至20%RH之间。
  4. 如权利要求2所述的智能远程感应加湿装置,其特征在于,位置检测装置包括分别与所述处理器信号连接的超声波发射器和超声波接收器,所述超声波发射器设置在所述旋转喷头上,其发射超声波方向与所述旋转喷头的喷口方向相同,所述超声波接收器设置在所述便携器上;
    所述驱动装置驱动旋转喷头沿其中心轴线进行周向转动,所述超声波发射器随旋转喷头转动,并在转动时,每隔一预定角度发射一超声波信号,所述超声波接收器接收各个超声波信号,所述处理器根据所述超声波接收器接受各超声波信号的时间来判断所述便携器相对于所述加湿器主体所在的位置信息。
  5. 如权利要求4所述的智能远程感应加湿装置,其特征在于,所述处理器根据所述各超声波信号判断所述便携器位置信息的同时,判断所述便携器与加湿器主体之间的距离;所述处理器还用于根据所述距离调节所述加湿器主体的加湿功率。
  6. 如权利要求4所述的智能远程感应加湿装置,其特征在于,所述加湿器主体包括由上壳体和下壳体沿上下方向相互扣合固定形成的壳体,所述储液箱设置于所述壳体内,所述上壳体内部向上扣合固定有一安装板,所述旋转喷头的上部由所述上壳体的顶端伸出,下部外缘设置有环形齿轮部,所述环形齿轮部转动的设于所述安装板与上壳体之间,所述驱动装置固定安装在所述安装板上,并与所述环形齿轮部传动连接;所述安装板的中心开设有一孔径小于所述环形齿轮部直径的通孔,所述储液箱的上端以渐缩的方式凸起形成锥形管,所述锥形管的上端穿过所述通孔而伸入所述旋转喷头内。
  7. 如权利要求6所述的智能远程感应加湿装置,其特征在于,所述下壳体内设置有控制组 件和鼓风机构,所述控制组件包括固定在下壳体内的控制电路板、蓄电池以及设置于所述下壳体外壁上具有多个控制按键的控制面板,所述处理器设置于所述控制电路板上,所述控制电路板分别与所述驱动装置、蓄电池、控制面板以及所述储液箱内的雾化器电性连接;
    所述鼓风机构包括设于所述下壳体底部的进风网孔、设于所述进风网孔上方的有鼓风机,所述储液箱的侧壁上设有连通所述上壳体和下壳体的通风通道,所述储液箱的上端设有鼓风孔。
  8. 如权利要求6所述的智能远程感应加湿装置,其特征在于,所述安装板上于所述通孔的边缘设置有定位环,所述定位环上圆周整列的设置有若干与所述处理器连接的红外线接收器/红外线发射器,相邻两个所述红外线接收器/红外线发射器之间的角度等于所述预定角度,所述环形齿轮部的底面设有与所述红外线接收器/红外线发射器相对的红外线发射器/红外线接收器。
  9. 如权利要求1所述的智能远程感应加湿装置,其特征在于,所述便携器为遥控器,其上至少设置有开关按钮以及重新定位按钮,所述开关按钮用于控制所述加湿器主体的电源通断,所述重新定位按钮用于控制所述加湿器主体重新检测所述便携器相对于所述加湿器主体所在的位置信息,并根据所述重新检查的位置信息控制驱动装置驱动所述旋转喷头转动至喷口朝向所述便携器的方向。
  10. 一种智能远程感应加湿装置,其特征在于,包括加湿器主体、底座、位置检测装置以及便携器,所述加湿器主体转动设置在所述底座上,所述位置检测装置用于检测所述便携器相对于所述底座所在的位置信息;所述加湿器主体或底座内设有处理器以及驱动装置,所述加湿器主体上具有与其内部储液箱连通的喷口,所述处理器根据所述位置信息控制驱动装置驱动所述加湿器主体转动至所述喷口朝向所述便携器的方向。
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