Automatic telescopic suspension atomization device and humidifier

The automatically retractable suspended atomizing device solves the problem of poor mist discharge when the water level of the suspended humidifier changes, achieving stable mist discharge and uniform humidification, thus improving user experience and equipment efficiency.

CN224108308UActive Publication Date: 2026-04-10FOSHAN CITY HAN LI ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

When the water level inside a suspended humidifier is too low, the mist is easily trapped inside the device, resulting in poor defogging effect and affecting the user experience.

Method used

Design an automatic telescopic suspension atomizing device. Through the cooperation of the suspension cylinder assembly and the telescopic assembly, the atomizing assembly can automatically adjust its position when the water level changes, ensuring that the mist can be emitted stably.

Benefits of technology

Under various water level conditions, the atomizing component always maintains the optimal mist emission state, improving the humidifier's efficiency, avoiding resource waste, enhancing the humidification effect, ensuring uniform indoor humidity, and reducing energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an automatic telescopic suspension atomization device and a humidifier, and belongs to the field of electric appliances. An automatic telescopic suspension atomization device comprises a suspension cylinder assembly provided with a mounting cavity; the telescopic assembly is arranged on the suspension cylinder assembly, and the telescopic assembly can stretch out and draw back; the atomization assembly is arranged on the telescopic assembly, the atomization assembly can move along with the telescopic assembly, the atomization assembly at least has a first position and a second position when moving along with the telescopic assembly, and the height of the atomization assembly relative to the horizontal plane when the atomization assembly is located at the first position is larger than the height of the atomization assembly relative to the horizontal plane when the atomization assembly is located at the second position. The utility model discloses an automatic telescopic suspension atomization device which is used for a humidifier. By automatically adjusting the telescopic assembly, the atomizing assembly can always keep the best mist discharging state, it is ensured that the atomizing assembly can stably release mist into air under various water level conditions, and the use efficiency of the humidifier is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of electric appliances, in particular to a kind of automatic telescopic suspension atomization device and humidifier. BACKGROUND

[0002] In the prior art, when the water level in the suspension humidifier is too low, the mist is easily trapped inside the suspension device, resulting in poor demisting effect, which seriously affects the user's experience. INVENTION CONTENTS

[0003] Therefore, it is necessary to provide an automatic telescopic suspension atomization device and humidifier to solve the problem that the mist is easily trapped inside the suspension device of the suspension humidifier.

[0004] An automatic telescopic suspension atomization device, comprising: a suspension cylinder assembly provided with a mounting cavity; a telescopic assembly arranged on the suspension cylinder assembly, capable of telescoping; and an atomization assembly arranged on the telescopic assembly, capable of moving with the telescopic assembly, having at least a first position and a second position when the atomization assembly moves with the telescopic assembly, the relative height of the atomization assembly to a horizontal plane when it is in the first position being greater than the relative height of the atomization assembly to the horizontal plane when it is in the second position.

[0005] The above discloses an automatic telescopic suspension atomization device for a humidifier. By automatically adjusting the telescopic assembly, the atomization assembly can always maintain the best mist discharge state. When the water level of the humidifier is in the first position, the telescopic assembly automatically retracts, effectively preventing the mist from being trapped inside the telescopic assembly and unable to be effectively discharged. This feature ensures that the atomization assembly can stably release mist into the air under various water level conditions, greatly improving the efficiency of the humidifier and avoiding resource waste, providing users with consistent humidification experience. When the water level is in the second position, the telescopic assembly is appropriately expanded, which plays a certain guiding role for the mist, allowing the mist to diffuse more evenly and efficiently into the surrounding environment. This not only enhances the humidification effect, but also makes the indoor humidity distribution more uniform, avoiding the situation of excessive humidity or dryness in local areas, creating a comfortable and healthy living environment for users. The automatic telescopic suspension atomization device of the present application does not require manual intervention to adjust the telescopic assembly, and fully automatically adapts to changes in water level. This makes the use of the humidifier more convenient, and users do not need to constantly monitor the water level and manually adjust the equipment, improving the user experience and allowing users to enjoy a comfortable indoor humidity environment more easily. Moreover, since the water level can be accurately adapted, invalid operation caused by mist not being able to be normally discharged is avoided, reducing energy consumption. Compared with traditional atomization devices, this device effectively reduces power waste while ensuring humidification effect.

[0006] In one of the embodiments, the telescopic assembly comprises a plurality of telescopic members, the plurality of telescopic members are sequentially sleeved, the telescopic member at the outermost side of the plurality of telescopic members is arranged on the suspension cylinder assembly, the atomization assembly is arranged on the telescopic member at the innermost side of the plurality of telescopic members, and the plurality of telescopic members can move relative to each other. By sequentially sleeving the plurality of telescopic members into the telescopic assembly, the atomization device is given a high flexibility adjustment capability. Different water level conditions can trigger different degrees of telescoping, so that the atomization assembly can work efficiently and stably. Compared with a single telescopic structure, it can realize more delicate adjustment and more accurate matching of the water level change of the humidifier, thereby further optimizing the discharge effect of the mist and meeting the diversified use requirements of the user. The plurality of telescopic members are sleeved, and when not in use, the telescopic assembly can be maximally contracted, reducing the occupied space of the humidifier and reducing the packaging and transportation costs. At the same time, the plurality of telescopic members cooperate with each other to form a stable support structure during telescoping. When the atomization assembly moves with the telescopic assembly, it can remain stable, reducing shaking and displacement, ensuring the stability and continuity of the atomization effect, and further improving the user experience.

[0007] In one of the embodiments, the telescopic member at the innermost side of the plurality of telescopic members comprises a first telescopic body and a first telescopic top block, the first telescopic top block is arranged on the first telescopic body, the first telescopic top block abuts against one of the plurality of telescopic members when the telescopic member at the innermost side of the plurality of telescopic members is extended, one of the plurality of telescopic members surrounds the first telescopic body when the telescopic member at the innermost side of the plurality of telescopic members is contracted, and the atomization assembly is arranged on the first telescopic body. By arranging the atomization assembly on the first telescopic body, the first telescopic body provides a stable movement carrier for the atomization assembly by means of the stable structure of the first telescopic body and the first telescopic top block when the innermost telescopic member is running. When the telescopic member is extended or contracted, the first telescopic body can maintain a relatively stable posture, avoiding shaking or displacement caused by the telescoping action to interfere with the normal work of the atomization assembly, ensuring that the atomization assembly always works in the best state to generate and discharge mist, and maintaining a stable humidifying effect. As can be seen, when the telescopic assembly is intelligently adjusted according to the water level, the atomization assembly can timely and accurately respond to the position change, so as to work efficiently under different water level conditions, further improving the performance of the entire atomization device and meeting the user's demand for humidifying function in various scenarios.

[0008] In one of the embodiments, the telescopic member located at the outermost side of the plurality of telescopic members comprises a second telescopic body, a second upper telescopic top block and a second lower telescopic top block, the second upper telescopic top block and the second lower telescopic top block are both arranged on the second telescopic body, when the telescopic member located at the outermost side of the plurality of telescopic members is extended, the second upper telescopic top block abuts against the suspension cylinder assembly, when the telescopic member located at the outermost side of the plurality of telescopic members is retracted, the suspension cylinder assembly surrounds the second telescopic body, and one of the plurality of telescopic members can abut against the second lower telescopic top block when it is extended. By sleeving the suspension cylinder assembly on the outermost telescopic member, and then using the second upper telescopic top block and the second lower telescopic top block, the connection stability of the telescopic assembly and the suspension cylinder assembly is greatly enhanced. When extended, the second upper telescopic top block abuts against the suspension cylinder assembly, providing strong support force, ensuring that the telescopic assembly is closely combined with the suspension cylinder assembly in the extended state, avoiding shaking or disconnection due to uneven force, and ensuring the structural stability of the entire atomization device. When retracted, the suspension cylinder assembly surrounds the second telescopic body, and this unique structure makes the telescopic process more smooth and controllable. At the same time, when one of the telescopic members is extended, it can abut against the second lower telescopic top block, providing precise limiting for the extension of the telescopic assembly, realizing precise control of the position of the atomization assembly, allowing the atomization device to be accurately adjusted at different water levels, and optimizing the mist discharge effect.

[0009] In one of the embodiments, the telescopic assembly comprises a first telescopic assembly and a second telescopic assembly, the second telescopic assembly is sleeved on the first telescopic assembly, the suspension cylinder assembly is sleeved on the second telescopic assembly, the atomization assembly is arranged on the first telescopic assembly, when the atomization assembly is in the first position, the second telescopic assembly surrounds the first telescopic assembly, when the atomization assembly is in the second position, the second telescopic assembly abuts against the first telescopic assembly, the second telescopic assembly has the third position and the fourth position relative to the suspension cylinder assembly, when the second telescopic assembly is in the third position, the second telescopic assembly abuts against the suspension cylinder assembly, when the second telescopic assembly is in the fourth position, the suspension cylinder assembly surrounds the telescopic assembly. By sleeving the second telescopic assembly on the first telescopic assembly, and sleeving the suspension cylinder assembly on the second telescopic assembly, the telescopic assembly is nested in layers, which makes the whole atomization device compact in layout and effectively saves space. While meeting various functional requirements, the overall volume of the device is reduced, which is more convenient for storage and storage, and can also adapt to more different sizes and space-limited application scenarios. At the same time, thanks to the ingenious nested design of the first and second telescopic assemblies, the atomization device can automatically adjust according to the water level in the humidifier. When the water level is low and in the first position, the second telescopic assembly can be quickly retracted to the state of surrounding the first telescopic assembly, and the atomization assembly is also driven, which effectively avoids the accumulation of mist in the telescopic assembly, ensures that the mist can be smoothly discharged, and maintains stable humidification effect; when the water level rises, the second telescopic assembly abuts against the first telescopic assembly, and the atomization assembly moves accordingly, at this time, the expanded telescopic assembly can play a good guiding role for the mist, so that the mist is more evenly diffused into the air, improving the humidification efficiency. The telescopic assembly design that can automatically adjust completely solves the problem of poor mist discharge of traditional humidifiers when the water level changes. By flexibly adjusting the height of the atomization assembly, the mist can always find the best discharge path, and the use effect will not be affected by water level fluctuations, which greatly improves the overall performance of the humidifier.

[0010] In one of the embodiments, the first telescopic assembly comprises a first telescopic main body and a first telescopic top block, the first telescopic top block is arranged on the first telescopic main body, the atomization assembly is arranged on the first telescopic main body, when the atomization assembly is in the first position, the second telescopic assembly surrounds the first telescopic main body, when the atomization assembly is in the second position, the first telescopic top block abuts against the second telescopic assembly. Through the abutting cooperation of the first telescopic top block and the second telescopic assembly, fine control of the telescopic assembly adjustment is realized. When the water level changes, the relative positions of the first telescopic assembly and the second telescopic assembly can be accurately controlled, so that the height of the atomization assembly can be more accurately adjusted. This fine adjustment enables the atomization device to find the best mist discharge position under different water levels, further optimizes the humidification effect, and meets the higher requirements of users for humidity adjustment. The design of the first telescopic top block and the first telescopic main body in the first telescopic assembly greatly enhances the stability of cooperation with the second telescopic assembly. When the atomization assembly is in the second position, the first telescopic top block abuts against the second telescopic assembly, forming a stable support structure, preventing the second telescopic assembly from being stretched too much, ensuring the stability of the whole telescopic process, avoiding the influence of the shaking or displacement between components on the normal work of the atomization assembly, and ensuring the stability of the mist discharge.

[0011] In one of the embodiments, the second telescopic assembly comprises a second telescopic main body, a second telescopic upper top block and a second telescopic lower top block, the second telescopic upper top block and the second telescopic lower top block are arranged on the second telescopic main body, when the atomization assembly is in the first position, the second telescopic main body surrounds the first telescopic assembly, when the atomization assembly is in the second position, the second telescopic lower top block abuts against the first telescopic assembly, and the suspension cylinder assembly can abut against the second telescopic upper top block or surround the second telescopic main body. Through the design of the second telescopic upper top block and the second telescopic lower top block of the second telescopic assembly, the connection stability between components is significantly enhanced. When the atomization assembly is in the second position, the second telescopic lower top block abuts against the first telescopic assembly, providing an additional support point for the whole telescopic structure, further ensuring the stability of the telescopic process, preventing the structure from being deformed or damaged due to excessive stretching, and ensuring the stable operation of the atomization assembly. At the same time, when the suspension cylinder assembly abuts against the second telescopic upper top block, the connection between the suspension cylinder assembly and the second telescopic assembly is also strengthened, making the whole atomization device more stable and reliable during work. With the help of the second telescopic upper top block and the second telescopic lower top block, the atomization device can realize more accurate adjustment. When the water level changes, the second telescopic assembly controls the telescopic degree of itself through the abutting cooperation of the top blocks with other components, so as to more accurately adjust the height of the atomization assembly. Whether the water level is low and the height of the atomization assembly needs to be lowered to avoid mist being trapped, or the water level is high and the height of the atomization assembly needs to be raised to optimize the mist guiding, the adjustment can be quickly and accurately completed, perfectly adapting to different water level conditions, and improving the humidification effect.

[0012] In one of the embodiments, the atomization assembly comprises an atomization sheet and a fixing assembly, the fixing assembly is arranged on the telescopic assembly, and the atomization sheet is arranged on the fixing assembly. By arranging the fixing assembly on the telescopic assembly and arranging the atomization sheet on the fixing assembly, the atomization effect of the atomization sheet can be effectively avoided from being affected by shaking and displacement during the movement of the telescopic assembly. Whether the telescopic assembly is frequently adjusted in height to adapt to the water level change or the equipment is slightly shaken, the atomization sheet can maintain a stable working state and continuously and efficiently generate mist. At the same time, when the telescopic assembly adjusts the height according to the water level, it is ensured that the mist generated by the atomization sheet can be more accurately guided and diffused, further enhancing the overall atomization effect of the atomization device and creating a more comfortable humidity environment for the user.

[0013] In one of the embodiments, the fixing assembly comprises a fixed outer part and a fixed inner part, the fixed outer part is arranged on the telescopic assembly, the fixed inner part is arranged on the fixed outer part, and the atomization sheet is clamped in the fixed inner part. By clamping the atomization sheet in the fixed inner part, the fixing effect of the atomization sheet is greatly enhanced. The fixed inner part tightly wraps the atomization sheet, cooperates with the fixed outer part to form a stable clamping structure, and can also ensure that the atomization sheet does not loosen and fall off when the telescopic assembly frequently moves, thereby effectively guaranteeing the stability and continuity of the atomization process. At the same time, due to the tight clamping of the fixed inner part on the atomization sheet, the damage to the atomization sheet caused by factors such as shaking and collision is effectively reduced, thereby prolonging the service life of the atomization sheet and reducing the frequency and cost of replacing the atomization sheet for the user. During installation, the fixed outer part is first installed on the telescopic assembly, and then the fixed inner part with the atomization sheet is installed on the fixed outer part. The steps are clear and easy to operate. During maintenance, if the atomization sheet needs to be replaced due to failure, the fixed inner part can be easily removed from the fixed outer part, and the atomization sheet can be easily taken out, thereby greatly reducing the maintenance difficulty and shortening the maintenance time.

[0014] In one of the embodiments, the suspension cylinder assembly comprises a suspension cylinder body and an upper cover, the suspension cylinder body is sleeved on the telescopic assembly, the upper cover is arranged on the suspension cylinder body and encloses a suspension cavity, and the suspension cylinder body is provided with the mounting cavity. By arranging the mounting cavity in the suspension cylinder body, a clear positioning space is provided for the mounting of the telescopic assembly, the position can be quickly located during mounting, the assembly process of the telescopic assembly and the suspension cylinder assembly is more efficient, the mounting error is reduced, the production and assembly efficiency is improved, and subsequent maintenance and disassembly are facilitated. Meanwhile, by using the suspension cavity, the entire atomization device can be suspended, and the telescopic assembly can be perfectly adapted to stretch or contract according to the height of the water level. Meanwhile, in the suspended state, the atomization device can effectively reduce the risk of tilting caused by uneven placement plane or external force collision, ensure that the equipment can run stably in various complex environments, ensure that the atomization assembly can work continuously and stably, and avoid affecting the atomization effect due to shaking.

[0015] The second aspect of the present application discloses an automatic telescopic suspension atomization device, which comprises a suspension cylinder assembly provided with a first limiting part, and an atomization assembly having at least a fifth position and a sixth position relative to the suspension cylinder assembly. The relative height of the atomization assembly to a horizontal plane when the atomization assembly is located at the fifth position is greater than the relative height of the atomization assembly to the horizontal plane when the atomization assembly is located at the sixth position. The atomization assembly is provided with a second limiting part. When the atomization assembly is located at the fifth position, the suspension cylinder assembly surrounds the atomization assembly. When the atomization assembly is located at the sixth position, the second limiting part and the first limiting part abut.

[0016] The second aspect of the present application discloses an automatic telescopic suspension atomization device. The suspension cylinder assembly can stretch or contract according to the height of the water level. When the water level is high, the suspension cylinder assembly stretches, i.e. is located at the sixth position, at this time, the second limiting part abuts against the first limiting part, preventing excessive displacement of the suspension cylinder assembly and ensuring that it is always in the best working position, so that the mist discharge is more stable and efficient. When the water level is low, the suspension cylinder assembly contracts, i.e. is located at the fifth position, at this time, the interference of the suspension cylinder assembly on the mist discharge can be avoided, and the mist can be prevented from being trapped in the interior of the suspension cylinder assembly, so that the humidification effect is not good.

[0017] In one of the embodiments, the atomization assembly comprises an atomization sheet and a fixing assembly, the fixing assembly is arranged on the telescopic assembly, and the atomization sheet is arranged on the fixing assembly. By arranging the fixing assembly on the telescopic assembly and arranging the atomization sheet on the fixing assembly, the atomization effect of the atomization sheet can be effectively avoided from being affected by shaking and displacement during the movement of the telescopic assembly. Whether the telescopic assembly is frequently adjusted in height to adapt to the water level change or the equipment is slightly shaken, the atomization sheet can maintain a stable working state and continuously and efficiently generate mist. At the same time, when the telescopic assembly adjusts the height according to the water level, it is ensured that the mist generated by the atomization sheet can be more accurately guided and diffused, further enhancing the overall atomization effect of the atomization device and creating a more comfortable humidity environment for the user.

[0018] In one of the embodiments, the fixing assembly comprises a fixed outer part and a fixed inner part, the fixed outer part is arranged on the telescopic assembly, the fixed inner part is arranged on the fixed outer part, and the atomization sheet is clamped in the fixed inner part. The fixed outer part comprises a second limiting part. By clamping the atomization sheet in the fixed inner part, the fixing effect of the atomization sheet is greatly enhanced. The fixed inner part tightly wraps the atomization sheet, cooperates with the fixed outer part to form a stable clamping structure, and can also ensure that the atomization sheet does not loosen and fall off when the telescopic assembly frequently moves, thereby effectively guaranteeing the stability and continuity of the atomization process. At the same time, due to the tight clamping of the fixed inner part on the atomization sheet, the damage to the atomization sheet caused by factors such as shaking and collision is effectively reduced, thereby prolonging the service life of the atomization sheet and reducing the frequency and cost of replacing the atomization sheet for the user. During installation, the fixed outer part is first installed on the telescopic assembly, and then the fixed inner part with the atomization sheet is installed on the fixed outer part. The steps are clear and easy to operate. During maintenance, if the atomization sheet needs to be replaced due to failure, the fixed inner part can be easily removed from the fixed outer part, and the atomization sheet can be easily taken out, thereby greatly reducing the maintenance difficulty and shortening the maintenance time.

[0019] In one of the embodiments, the suspension cylinder assembly comprises a suspension cylinder body and an upper cover, the suspension cylinder body is sleeved on the telescopic assembly, the upper cover is arranged on the suspension cylinder body and encloses a suspension cavity, and the suspension cylinder body is provided with the mounting cavity. By arranging the mounting cavity in the suspension cylinder body, a clear positioning space is provided for the mounting of the telescopic assembly, the position can be quickly located during mounting, the assembly process of the telescopic assembly and the suspension cylinder assembly is more efficient, the mounting error is reduced, the production and assembly efficiency is improved, and subsequent maintenance and disassembly are facilitated. Meanwhile, by using the suspension cavity, the entire atomization device can be suspended, and the telescopic assembly can be perfectly matched to stretch or contract according to the height of the water level. Meanwhile, in the suspended state, the atomization device can effectively reduce the risk of tilting caused by uneven placement plane or external force collision, ensure that the equipment can stably operate in various complex environments, ensure that the atomization assembly can continuously and stably work, and avoid affecting the atomization effect due to shaking.

[0020] The third aspect of the present application discloses a humidifier, which comprises the automatic telescopic suspension atomization device described above and a control assembly arranged on the automatic telescopic suspension atomization device.

[0021] The third aspect discloses a humidifier, which can closely combine the atomization process with the overall operation of the humidifier by arranging the control assembly on the automatic telescopic suspension atomization device. By using the buoyancy to suspend in the suspension cavity and combining the structure of the telescopic assembly, the atomization assembly can be effectively ensured to maintain the best position in the water body, and can stably generate and discharge mist no matter whether the water level is high or low, so that the humidification efficiency of the humidifier is greatly improved, and the indoor humidity can be more uniformly and quickly brought to a suitable state. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a perspective view of the automatic telescopic suspension atomization device;

[0023] Figure 2 It is a first sectional view of the automatic telescopic suspension atomization device;

[0024] Figure 3 It is a second sectional view of the automatic telescopic suspension atomization device;

[0025] Figure 4 It is a third sectional view of the automatic telescopic suspension atomization device;

[0026] Figure 5 It is a fourth sectional view of the automatic telescopic suspension atomization device;

[0027] Figure 6 It is a fifth sectional view of the automatic telescopic suspension atomization device;

[0028] Figure 7 An exploded view of an automatically retractable suspension atomizing device.

[0029] The correspondence between the reference numerals and the component names is as follows:

[0030] 1 Suspension cylinder assembly, 11 Suspension cylinder body, 12 Top cover, 101 Mounting cavity, 102 Suspension cavity;

[0031] 2 telescopic components, 21 first telescopic component, 211 first telescopic body, 212 first telescopic top block, 22 second telescopic component, 221 second telescopic body, 222 second telescopic upper top block, 223 second telescopic lower top block;

[0032] 3 Atomizing components, 31 Atomizing sheet, 32 Fixing components, 321 Fixing outer parts, 322 Fixing inner parts. Detailed Implementation

[0033] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0034] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.

[0035] The following describes some embodiments of the automatically retractable suspension atomizing device and humidifier of this utility model with reference to the accompanying drawings.

[0036] Example 1

[0037] like Figures 1 to 7 As shown, this embodiment discloses an automatically retractable suspension atomizing device, including: a suspension cylinder assembly 1, the suspension cylinder assembly 1 having an installation cavity 101; a telescopic assembly 2, the telescopic assembly 2 being disposed on the suspension cylinder assembly 1 and capable of telescopic extension and retraction; and an atomizing assembly 3, the atomizing assembly 3 being disposed on the telescopic assembly 2 and capable of moving with the telescopic assembly 2. When the atomizing assembly 3 moves with the telescopic assembly 2, it has at least a first position and a second position. When the atomizing assembly 3 is in the first position, its height relative to the horizontal plane is greater than when the atomizing assembly 3 is in the second position.

[0038] The application discloses an automatic telescopic suspension atomization device for a humidifier. By automatically adjusting the telescopic component 2, the atomization component 3 can always maintain the best mist discharge state. When the humidifier water level is in the first position, the telescopic component 2 automatically retracts, effectively avoiding the problem that the mist cannot be effectively discharged due to being trapped in the telescopic component 2. This feature ensures that the atomization component 3 can stably release mist into the air under various water level conditions, greatly improving the use efficiency of the humidifier, avoiding resource waste, and providing users with consistent humidification experience. When the water level is in the second position, the telescopic component 2 is appropriately expanded, which plays a certain guiding role for the mist, enabling the mist to more evenly and efficiently diffuse into the surrounding environment. This not only enhances the humidification effect, but also makes the indoor humidity distribution more uniform, avoiding the situation of over-wetting or over-drying in local areas, and creating a comfortable and healthy living environment for users. The automatic telescopic suspension atomization device of the application does not require manual intervention to adjust the telescopic component, and fully automatically adapts to water level changes. This makes the use of the humidifier more convenient, and users do not need to constantly monitor the water level and manually adjust the equipment, improving the user experience and allowing users to more easily enjoy a comfortable indoor humidity environment. Moreover, due to the precise adaptation to the water level, the invalid operation caused by the mist being unable to be normally discharged is avoided, and energy consumption is reduced. Compared with traditional atomization devices, this device effectively reduces power waste while ensuring humidification effect.

[0039] As shown in Figure 1 and Figure 2 , in addition to the features of the above embodiments, the present embodiment further limits that: the telescopic component 2 includes multiple telescopic parts, the multiple telescopic parts are sequentially sleeved, the telescopic part located at the outermost side of the multiple telescopic parts is arranged on the suspension cylinder component 1, the atomization component 3 is arranged on the telescopic part located at the innermost side of the multiple telescopic parts, and the multiple telescopic parts can move relative to each other. By sequentially sleeving the multiple telescopic parts into the telescopic component 2, the atomization device is given high flexibility in adjustment. Different water levels can trigger different degrees of telescoping, allowing the atomization component 3 to work efficiently and stably. Compared with a single telescopic structure, it can achieve more delicate adjustment and more accurate matching of the water level changes of the humidifier, thereby further optimizing the mist discharge effect and meeting the diversified use needs of users. The sleeving mode of the multiple telescopic parts allows the telescopic component 2 to retract to the maximum extent when not in use, reducing the occupied space of the humidifier and reducing packaging and transportation costs. At the same time, the multiple telescopic parts cooperate with each other to form a stable support structure during telescoping. When the atomization component moves with the telescopic component, it can remain stable, reducing shaking and displacement, ensuring the stability and continuity of the atomization effect, and further improving the user experience.

[0040] As shown in Figure 1 , Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further defines: the innermost telescopic member located among the multiple telescopic members includes a first telescopic body and a first telescopic top block. The first telescopic top block is disposed on the first telescopic body. When the innermost telescopic member extends, the first telescopic top block abuts against one of the multiple telescopic members. When the innermost telescopic member retracts, one of the multiple telescopic members surrounds the first telescopic body. The atomizing component 3 is disposed on the first telescopic body. By disposing the atomizing component 3 on the first telescopic body, and utilizing the stable structure of the cooperation between the first telescopic body and the first telescopic top block, the first telescopic body provides a stable motion carrier for the atomizing component during the operation of the innermost telescopic member. When the telescopic member extends or retracts, the first telescopic body can maintain a relatively stable posture, avoiding swaying or displacement caused by the telescopic action from interfering with the normal operation of the atomizing component, ensuring that the atomizing component always generates and emits mist in the best condition, and maintaining a stable humidification effect. As can be seen, when the telescopic component 2 adjusts intelligently according to the water level, the atomizing component 3 can respond to the position change in a timely and accurate manner, thus working efficiently under different water level conditions, further improving the performance of the entire atomizing device and meeting the user's needs for humidification function in various scenarios.

[0041] like Figures 1 to 5 As shown, in addition to the features of the above embodiments, this embodiment further defines: the outermost telescopic member of the plurality of telescopic members includes a second telescopic body, a second upper telescopic top block, and a second lower telescopic top block. Both the second upper and lower telescopic top blocks are disposed on the second telescopic body. When the outermost telescopic member extends, the second upper telescopic top block abuts against the suspension cylinder assembly 1. When the outermost telescopic member retracts, the suspension cylinder assembly 1 surrounds the second telescopic body, and one of the telescopic members can abut against the second lower telescopic top block when extended. By fitting the suspension cylinder assembly 1 onto the outermost telescopic member and utilizing the second upper and lower telescopic top blocks, the connection stability between the telescopic assembly 2 and the suspension cylinder assembly 1 is greatly enhanced. During extension, the second upper telescopic top block abuts against the suspension cylinder assembly 1, providing strong support and ensuring that the telescopic assembly 2 is tightly connected to the suspension cylinder assembly 1 in the extended state, avoiding shaking or disengagement due to uneven force, and ensuring the structural stability of the entire atomizing device. When retracting, the suspension cylinder assembly 1 surrounds the second telescopic body. This unique structure makes the telescopic process smoother and more controllable. At the same time, when one of the telescopic components extends, it can abut against the second lower telescopic top block, providing a precise limit for the extension of the telescopic assembly 2. This enables precise control of the position of the atomizing component, allowing the atomizing device to be precisely adjusted at different water levels and optimizing the mist emission effect.

[0042] like Figure 4 and Figure 5In addition to the features of the above embodiments, the present embodiment is further defined as: the telescopic assembly 2 comprises a first telescopic assembly 21 and a second telescopic assembly 22, the second telescopic assembly 22 is sleeved on the first telescopic assembly 21, the suspension cylinder assembly 1 is sleeved on the second telescopic assembly 22, the atomization assembly 3 is arranged on the first telescopic assembly 21, when the atomization assembly 3 is in the first position, the second telescopic assembly 22 surrounds the first telescopic assembly 21, when the atomization assembly 3 is in the second position, the second telescopic assembly 22 abuts against the first telescopic assembly 21, the second telescopic assembly 22 has a third position and a fourth position relative to the suspension cylinder assembly 1, when the second telescopic assembly 22 is in the third position, the second telescopic assembly 22 abuts against the suspension cylinder assembly 1, when the second telescopic assembly 22 is in the fourth position, the suspension cylinder assembly 1 surrounds the telescopic assembly 2. By sleeving the second telescopic assembly 22 on the first telescopic assembly 21, and sleeving the suspension cylinder assembly 1 on the second telescopic assembly 22, the telescopic assembly 2 has a nested structure, which makes the automatic telescopic suspension atomization device compact in layout and saves space. While meeting various functional requirements, the overall size of the device is reduced, which is more convenient for storage and storage, and can also be adapted to more different sizes and space-limited application scenarios. At the same time, thanks to the ingenious nested design of the first and second telescopic assemblies, the atomization device can automatically adjust according to the water level in the humidifier. When the water level is low and in the first position, the second telescopic assembly 22 can be quickly retracted to the state of surrounding the first telescopic assembly 21, and the atomization assembly 3 is also driven, which effectively avoids the accumulation of mist in the telescopic assembly 2, ensures that the mist can be smoothly discharged, and maintains stable humidification effect; when the water level rises, the second telescopic assembly 22 abuts against the first telescopic assembly 21, and the atomization assembly 3 moves accordingly, at this time, the expanded telescopic assembly 2 can play a good guiding role for the mist, so that the mist is more evenly diffused into the air, improving the humidification efficiency. The telescopic assembly design that can automatically adjust completely solves the problem of poor mist discharge of traditional humidifiers when the water level changes. By adjusting the height of the atomization assembly flexibly, the mist can always find the best discharge path, and the use effect will not be affected by the water level fluctuation, which greatly improves the overall performance of the humidifier.

[0043] As Figure 3 , Figure 4 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment is further limited: the first telescopic assembly 21 includes a first telescopic body 211 and a first telescopic top block 212, the first telescopic top block 212 is arranged on the first telescopic body 211, the atomization assembly 3 is arranged on the first telescopic body 211, when the atomization assembly 3 is in the first position, the second telescopic assembly 22 surrounds the first telescopic body 211, when the atomization assembly 3 is in the second position, the first telescopic top block 212 abuts against the second telescopic assembly 22. Through the abutting cooperation of the first telescopic top block 212 and the second telescopic assembly 22, fine control of the adjustment of the telescopic assembly 2 is realized. When the water level changes, the relative positions of the first and second telescopic assemblies can be accurately controlled, so that the height of the atomization assembly 3 can be more accurately adjusted. This fine adjustment enables the automatically telescopic suspended atomization device to find the best mist discharge position at different water levels, further optimizes the humidification effect, and meets the higher requirements of users for humidity adjustment. The design of the first telescopic top block 212 and the first telescopic body 211 in the first telescopic assembly 21 greatly enhances the stability of cooperation with the second telescopic assembly 22. When the atomization assembly 3 is in the second position, the first telescopic top block 212 abuts against the second telescopic assembly 22, forming a stable support structure, preventing the second telescopic assembly 22 from being stretched too much, ensuring the stability of the entire telescopic process, avoiding the influence of the shaking or displacement between components on the normal work of the atomization assembly, and ensuring the stability of the mist discharge.

[0044] As Figure 3 , Figure 4 and Figure 5As shown, in addition to the features of the above embodiments, this embodiment is further limited in that: the second telescopic assembly 22 comprises a second telescopic body 221, a second telescopic upper top block 222 and a second telescopic lower top block 223, both the second telescopic upper top block 222 and the second telescopic lower top block 223 are arranged on the second telescopic body 221, when the atomization assembly 3 is in the first position, the second telescopic body 221 surrounds the first telescopic assembly 21, when the atomization assembly 3 is in the second position, the second telescopic lower top block 223 abuts against the first telescopic assembly 21, and the suspension cylinder assembly 1 can abut against the second telescopic upper top block 222 or surround the second telescopic body 221. By utilizing the design of the second telescopic upper top block 222 and the second telescopic lower top block 223 of the second telescopic assembly 22, the connection stability between the components is significantly enhanced. When the atomization assembly 3 is in the second position, the second telescopic lower top block 223 abuts against the first telescopic assembly 21, providing an additional support point for the entire telescopic structure, further ensuring the stability of the telescopic process, preventing structural deformation or damage due to excessive stretching, and ensuring the stable operation of the atomization assembly 3. At the same time, when the suspension cylinder assembly 1 abuts against the second telescopic upper top block 222, the connection between the suspension cylinder assembly 1 and the second telescopic assembly 22 is also strengthened, making the entire atomization device more stable and reliable during operation. With the help of the second telescopic upper top block 222 and the second telescopic lower top block 223, the atomization device can achieve more precise adjustment. When the water level changes, the second telescopic assembly 22 precisely controls its telescopic degree through the abutting cooperation of the top blocks with other components, thereby more accurately adjusting the height of the atomization assembly. Whether the water level is low and the height of the atomization assembly needs to be lowered to avoid mist being trapped, or the water level is high and the height of the atomization assembly needs to be raised to optimize mist guiding, the adjustment can be quickly and accurately completed, perfectly adapting to different water level conditions and improving the humidification effect.

[0045] As shown in Figure 2 , Figure 3 and Figure 4 , in addition to the features of the above embodiments, this embodiment is further limited in that: the atomization assembly 3 comprises an atomization sheet 31 and a fixing assembly 32, the fixing assembly 32 is arranged on the telescopic assembly 2, and the atomization sheet 31 is arranged on the fixing assembly 32. By arranging the fixing assembly 32 on the telescopic assembly 2 and arranging the atomization sheet 31 on the fixing assembly 32, the atomization sheet 31 can effectively avoid affecting the atomization effect due to shaking and displacement during the movement of the telescopic assembly 2. Whether the telescopic assembly 2 frequently adjusts the height to adapt to changes in water level or the device is slightly shaken, the atomization sheet 31 can maintain a stable working state and continuously and efficiently produce mist. At the same time, when the telescopic assembly 2 adjusts the height according to the water level, it ensures that the mist produced by the atomization sheet 31 can be more accurately guided and diffused, further enhancing the overall atomization effect of the atomization device and creating a more comfortable humidity environment for users.

[0046] As shown in Figure 4 andFigure 6 As shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the fixing assembly 32 comprises a fixing outer part 321 and a fixing inner part 322, the fixing outer part 321 is arranged on the telescopic assembly 2, the fixing inner part 322 is arranged on the fixing outer part 321, and the atomizing piece 31 is clamped in the fixing inner part 322. By clamping the atomizing piece 31 in the fixing inner part 322, the fixing effect of the atomizing piece 31 is greatly enhanced. The fixing inner part 322 tightly wraps the atomizing piece 31, cooperates with the fixing outer part 321 to form a stable clamping structure, and can also ensure that the atomizing piece 31 will not loosen or fall off when the telescopic assembly 2 frequently moves, thereby effectively guaranteeing the stability and continuity of the atomization process. At the same time, due to the tight clamping of the fixing inner part 322 on the atomizing piece 31, the damage to the atomizing piece 31 caused by factors such as vibration and collision is effectively reduced, thereby prolonging the service life of the atomizing piece 31 and reducing the frequency and cost of replacing the atomizing piece 31 for the user. During installation, the fixing outer part 321 is first installed on the telescopic assembly 2, and then the fixing inner part 322 with the atomizing piece 31 is installed on the fixing outer part 321, which is clear and easy to operate. During maintenance, if the atomizing piece 31 needs to be replaced due to failure, the fixing inner part 322 can be easily removed from the fixing outer part 321, and the atomizing piece 31 can be easily taken out, thereby greatly reducing the maintenance difficulty and shortening the maintenance time.

[0047] As shown in Figure 1 and Figure 2 shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the suspension cylinder assembly 1 comprises a suspension cylinder body 11 and an upper cover 12, the suspension cylinder body 11 is sleeved on the telescopic assembly 2, the upper cover 12 is arranged on the suspension cylinder body 11 and encloses to form a suspension cavity 102, and the suspension cylinder body 11 is provided with a mounting cavity 101. By providing the mounting cavity 101 in the suspension cylinder body 11, a clear positioning space is provided for the installation of the telescopic assembly 2, which can quickly find the position during installation, making the assembly process of the telescopic assembly 2 and the suspension cylinder assembly 1 more efficient, reducing installation errors, improving production and assembly efficiency, and also facilitating subsequent maintenance and disassembly. At the same time, by using the suspension cavity 102, the entire atomization device can be suspended, perfectly matching the extension or contraction of the telescopic assembly 2 according to the height of the water level. At the same time, in the suspended state, the atomization device can effectively reduce the risk of tilting caused by uneven placement surface or external force collision, ensure that the equipment can run stably in various complex environments, guarantee the continuous and stable work of the atomization assembly 3, and avoid the influence of shaking on the atomization effect.

[0048] Embodiment 2

[0049] As shown in Figures 1 to 7As shown, the embodiment discloses an automatic telescopic suspension atomization device, which comprises a suspension cylinder assembly 1 provided with a first limiting part; and an atomization assembly 3 having at least a fifth position and a sixth position relative to the suspension cylinder assembly 1, wherein the height of the atomization assembly 3 relative to a horizontal plane when located at the fifth position is greater than the height of the atomization assembly 3 relative to the horizontal plane when located at the sixth position, the atomization assembly 3 is provided with a second limiting part, and when the atomization assembly 3 is located at the fifth position, the suspension cylinder assembly 1 surrounds the atomization assembly 3, and when the atomization assembly 3 is located at the sixth position, the second limiting part abuts against the first limiting part.

[0050] The second aspect of the present application discloses an automatic telescopic suspension atomization device. The suspension cylinder assembly 1 can expand or contract according to the water level. When the water level is high, the suspension cylinder assembly 1 expands, i.e., is located at the sixth position, at this time, the second limiting part abuts against the first limiting part, preventing the suspension cylinder assembly 1 from excessive displacement, ensuring that it is always in the best working position, making the mist discharge more stable and efficient. When the water level is low, the suspension cylinder assembly 1 contracts, i.e., is located at the fifth position, at this time, it can avoid the interference of the suspension cylinder assembly 1 on the mist discharge, and avoid the mist being trapped in the interior of the suspension cylinder assembly 1, resulting in poor humidification effect.

[0051] As shown in Figure 2 , Figure 3 and Figure 4 , in addition to the features of the above-mentioned embodiments, the present embodiment further limits that: the atomization assembly 3 comprises an atomization sheet 31 and a fixing assembly 32, the fixing assembly 32 is arranged on the telescopic assembly 2, and the atomization sheet 31 is arranged on the fixing assembly 32. By arranging the fixing assembly 32 on the telescopic assembly 2 and arranging the atomization sheet 31 on the fixing assembly 32, the atomization sheet 31 can effectively avoid affecting the atomization effect due to shaking and displacement during the movement of the telescopic assembly 2. Whether the telescopic assembly 2 frequently adjusts the height to adapt to the water level change or the equipment is slightly shaken, the atomization sheet 31 can maintain a stable working state and continuously and efficiently produce mist. At the same time, when the telescopic assembly 2 adjusts the height according to the water level, it ensures that the mist produced by the atomization sheet 31 can be more accurately guided and diffused, further enhancing the overall atomization effect of the automatic telescopic suspension atomization device and creating a more comfortable humidity environment for the user.

[0052] As shown in Figure 4 and Figure 6As shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the fixing assembly 32 comprises a fixing outer part 321 and a fixing inner part 322, the fixing outer part 321 is arranged on the telescopic assembly 2, the fixing inner part 322 is arranged on the fixing outer part 321, the atomizing piece 31 is clamped in the fixing inner part 322, and the fixing outer part 321 comprises a second limiting part. By clamping the atomizing piece 31 in the fixing inner part 322, the fixing effect on the atomizing piece 31 is greatly enhanced. The fixing inner part 322 tightly wraps the atomizing piece 31, cooperates with the fixing outer part 321 to form a stable clamping structure, and can also ensure that the atomizing piece 31 will not loosen or fall off when the telescopic assembly 2 frequently moves, thereby effectively guaranteeing the stability and continuity of the atomization process. At the same time, due to the tight clamping of the fixing inner part 322 on the atomizing piece 31, the damage to the atomizing piece 31 caused by factors such as vibration and collision is effectively reduced, thereby prolonging the service life of the atomizing piece 31 and reducing the frequency and cost of replacing the atomizing piece 31 for the user. During installation, the fixing outer part 321 is first installed on the telescopic assembly 2, and then the fixing inner part 322 with the atomizing piece 31 is installed on the fixing outer part 321, which is clear and easy to operate. During maintenance, if the atomizing piece 31 needs to be replaced due to failure, the fixing inner part 322 can be easily removed from the fixing outer part 321, and the atomizing piece 31 can be easily taken out, thereby greatly reducing the maintenance difficulty and shortening the maintenance time.

[0053] As shown in Figure 1 and Figure 2 shown, in addition to the features of the above embodiments, the present embodiment is further defined as: the suspension cylinder assembly 1 comprises a suspension cylinder body 11 and an upper cover 12, the suspension cylinder body 11 is sleeved on the telescopic assembly 2, the upper cover 12 is arranged on the suspension cylinder body 11 and encloses to form a suspension cavity 102, and the suspension cylinder body 11 is provided with a mounting cavity 101. By providing the mounting cavity 101 in the suspension cylinder body 11, a clear positioning space is provided for the installation of the telescopic assembly 2, which can quickly find the position during installation, making the assembly process of the telescopic assembly 2 and the suspension cylinder assembly 1 more efficient, reducing installation errors, improving production and assembly efficiency, and also facilitating subsequent maintenance and disassembly. At the same time, by using the suspension cavity 102, the entire automatic telescopic suspension atomization device can be suspended, perfectly matching the telescopic assembly 2 to stretch or contract according to the height of the water level. At the same time, in the suspended state, the atomization device can effectively reduce the risk of tilting caused by uneven placement surface or external force collision, ensure that the equipment can run stably in various complex environments, guarantee the continuous and stable work of the atomization assembly 3, and avoid the influence of shaking on the atomization effect.

[0054] Embodiment 3

[0055] As shown in Figures 1 to 7As shown, the embodiment discloses a humidifier, comprising: the automatic telescopic floating atomization device described above; a control assembly, the control assembly being arranged on the automatic telescopic floating atomization device.

[0056] The third aspect of the present application discloses a humidifier, by arranging the control assembly on the automatic telescopic floating atomization device, the atomization process can be closely combined with the overall operation of the humidifier.

[0057] The technical features of the above-mentioned embodiments can be combined arbitrarily, in order to make the description simple, not all possible combinations of the technical features in the above-mentioned embodiments are described, however, as long as the combination of these technical features does not exist contradictory, should be considered as the scope of the present application.

[0058] The above-mentioned embodiments only express several implementation manners of the present application, the description is more specific and detailed, but it should not be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. An automatically retractable, suspended atomizing device, characterized in that, The automatic telescopic suspension atomization device comprises: a suspension cylinder assembly (1) provided with a mounting cavity (101); a telescopic assembly (2) arranged on the suspension cylinder assembly (1) and capable of telescoping; an atomization assembly (3) arranged on the telescopic assembly (2) and capable of moving with the telescopic assembly (2), the atomization assembly (3) having at least a first position and a second position when moving with the telescopic assembly (2), the atomization assembly (3) being located at the first position and having a height relative to a horizontal plane greater than that of the atomization assembly (3) located at the second position, the telescopic assembly (2) having a third position and a fourth position relative to the suspension cylinder assembly (1), the telescopic assembly (2) being located at the third position and abutting against the suspension cylinder assembly (1), and the suspension cylinder assembly (1) surrounding the telescopic assembly (2) when the telescopic assembly (2) is located at the fourth position.

2. The self-extendable levitating atomization device according to claim 1, wherein, The telescopic assembly (2) comprises a plurality of telescopic members, the telescopic members being arranged in sequence, the telescopic member located at the outermost side of the plurality of telescopic members being arranged on the suspension cylinder assembly (1), the atomization assembly (3) being arranged on the telescopic member located at the innermost side of the plurality of telescopic members, and the telescopic members being capable of relative movement.

3. The automatic telescopic suspension atomization device according to claim 2, wherein the telescopic member located at the innermost side of the plurality of telescopic members comprises a first telescopic body and a first telescopic top block, the first telescopic top block being arranged on the first telescopic body, the first telescopic top block abutting against one of the telescopic members when the telescopic member located at the innermost side of the plurality of telescopic members is extended, one of the telescopic members surrounding the first telescopic body when the telescopic member located at the innermost side of the plurality of telescopic members is retracted, and the atomization assembly (3) being arranged on the first telescopic body; and / or the telescopic member located at the outermost side of the plurality of telescopic members comprises a second telescopic body, a second upper telescopic top block and a second lower telescopic top block, the second upper telescopic top block and the second lower telescopic top block being arranged on the second telescopic body, the second upper telescopic top block abutting against the suspension cylinder assembly (1) when the telescopic member located at the outermost side of the plurality of telescopic members is extended, the suspension cylinder assembly (1) surrounding the second telescopic body when the telescopic member located at the outermost side of the plurality of telescopic members is retracted, and one of the telescopic members being capable of abutting against the second lower telescopic top block when extended.

4. The self- retracting, levitating atomization device of claim 1, wherein, The telescopic assembly (2) comprises a first telescopic assembly (21) and a second telescopic assembly (22), the second telescopic assembly (22) is sleeved on the first telescopic assembly (21), the suspension cylinder assembly (1) is sleeved on the second telescopic assembly (22), the atomization assembly (3) is arranged on the first telescopic assembly (21), when the atomization assembly (3) is located at the first position, the second telescopic assembly (22) surrounds the first telescopic assembly (21), when the atomization assembly (3) is located at the second position, the second telescopic assembly (22) abuts against the first telescopic assembly (21), the second telescopic assembly (22) has the third position and the fourth position relative to the suspension cylinder assembly (1), when the second telescopic assembly (22) is located at the third position, the second telescopic assembly (22) abuts against the suspension cylinder assembly (1), when the second telescopic assembly (22) is located at the fourth position, the suspension cylinder assembly (1) surrounds the telescopic assembly (2).

5. The self-extendable levitating atomization device according to claim 4, wherein, The first telescopic assembly (21) comprises a first telescopic main body (211) and a first telescopic top block (212), the first telescopic top block (212) is arranged on the first telescopic main body (211), the atomization assembly (3) is arranged on the first telescopic main body (211), when the atomization assembly (3) is located at the first position, the second telescopic assembly (22) surrounds the first telescopic main body (211), when the atomization assembly (3) is located at the second position, the first telescopic top block (212) abuts against the second telescopic assembly (22); And / or the second telescopic assembly (22) comprises a second telescopic main body (221), a second telescopic upper top block (222) and a second telescopic lower top block (223), the second telescopic upper top block (222) and the second telescopic lower top block (223) are both arranged on the second telescopic main body (221), when the atomization assembly (3) is located at the first position, the second telescopic main body (221) surrounds the first telescopic assembly (21), when the atomization assembly (3) is located at the second position, the second telescopic lower top block (223) abuts against the first telescopic assembly (21), the suspension cylinder assembly (1) can abut against or surround the second telescopic main body (221).

6. An automatically retractable, suspended atomizing device characterized by, The automatic telescopic suspension atomization device comprises: A suspension cylinder assembly (1) is provided with a first limiting portion; An atomization assembly (3) has at least a fifth position and a sixth position relative to the suspension cylinder assembly (1), the relative height of the atomization assembly (3) to a horizontal plane when the atomization assembly (3) is in the fifth position is greater than the relative height of the atomization assembly (3) to the horizontal plane when the atomization assembly (3) is in the sixth position, the atomization assembly (3) is provided with a second limiting part, when the atomization assembly (3) is in the fifth position, the suspension cylinder assembly (1) surrounds the atomization assembly (3), when the atomization assembly (3) is in the sixth position, the second limiting part and the first limiting part abut.

7. The self-retracting, levitating, atomizing device of any one of claims 1 to 6, wherein, The atomization assembly (3) comprises an atomization sheet (31) and a fixing assembly (32), the fixing assembly (32) is arranged on the telescopic assembly (2), and the atomization sheet (31) is arranged on the fixing assembly (32).

8. The self-extendable levitating atomization device according to claim 7, wherein, The fixing assembly (32) comprises a fixing outer part (321) and a fixing inner part (322), the fixing outer part (321) is arranged on the telescopic assembly (2), the fixing inner part (322) is arranged on the fixing outer part (321), the atomization sheet (31) is clamped in the fixing inner part (322), and the fixing outer part (321) comprises a second limiting part.

9. The self-retracting, levitating, fogging device of any one of claims 1 to 6, wherein, The suspension cylinder assembly (1) comprises a suspension cylinder main body (11) and an upper cover (12), the suspension cylinder main body (11) is sleeved on the telescopic assembly (2), the upper cover (12) is arranged on the suspension cylinder main body (11) and surrounds to form a suspension cavity (102), and the suspension cylinder main body (11) is provided with the mounting cavity (101).

10. A humidifier characterised in that, The humidifier comprises: The automatic telescopic suspension atomization device according to any one of claims 1 to 9; A control assembly is arranged on the automatic telescopic suspension atomization device.