Multifunctional integrated humidifying and illuminating lamp
Through the multi-functional lamp design integrating wireless charging, layered water tank and flow diversion structure, the functional fragmentation problem of traditional humidifiers and lighting equipment is solved, and stable and convenient humidification and lighting integration is achieved, improving user experience and space utilization.
Patent Information
- Application Number
- CN202510469671.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-09-02
AI Technical Summary
The functions of traditional humidifiers and lighting equipment are broken, resulting in unstable structure, complex operation, stiff interaction between light and fog, limited placement and poor user experience.
The integrated design of wireless charging module, layered water tank structure, touch components and flow diversion structure is adopted to achieve the unity of wireless charging, lighting and humidification functions. The operation is simplified through concentric touch control rings and capacitive sensors, and the light and mist distribution is optimized using multi-layer cylinders and flow diversion structures.
It improves the stability and operational convenience of the equipment, enhances the interaction effect of light and fog, reduces the number of equipment, and improves user experience and space utilization.
Smart Images

Figure CN120576341A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smart home devices, and in particular to a multifunctional lamp integrating humidification and lighting functions. Background Art
[0002] With the improvement of modern living standards, people are placing higher demands on the functionality and comfort of indoor environmental equipment. Traditional lighting fixtures and humidification equipment have long been functionally separated: lamps only provide basic illumination, while humidifiers simply adjust humidity. This results in high space utilization and a lack of synergy. Although some integrated products have appeared on the market in recent years, they still have significant shortcomings in practical application.
[0003] For example, a humidifying LED lamp with Chinese publication number CN206904697U utilizes a simple stacking design of a lighting module and a misting module. Experimental testing revealed that the product's center of gravity shifted by 15% when fully loaded, resulting in an unbalanced structural layout. Specifically, the lamp's center of gravity shifted upward, and the base support lacked stability, making it prone to wobble with prolonged use. The humidifying mist rose directly through a straight channel, failing to effectively interact with the light. This resulted in harsh light refraction and uneven mist distribution. Furthermore, the product relied on traditional wired charging, with the exposed power cord inconvenient and restricting placement. The control panel employed physical buttons, resulting in a complex operation hierarchy. Users had to switch modes multiple times to achieve light-mist interaction, resulting in a poor user experience. Therefore, developing a compact and stable humidifying lighting system with dynamic mist-light interaction, wireless power support, and ease of maintenance has become a key breakthrough in the field of equipment technology for improving indoor environments. Summary of the Invention
[0004] The present invention overcomes the shortcomings of the above-mentioned technology and adopts the following technical solutions:
[0005] Overall structure: A multifunctional integrated humidifying lighting lamp includes a lamp body 1. The lamp body 1 is mainly composed of a wireless charging module 10, a lamp body 20, a layered water tank structure 30, a touch component 40 and a diversion structure 50.
[0006] Wireless charging module 10: Located at the bottom of the lamp body 1, it includes a wireless charging base 11 and a built-in wireless charging transmitter 12. This module provides wireless charging functionality for the entire system, allowing users to charge their devices without the need for cables.
[0007] Lamp body 20: Located above the wireless charging base 11, it houses a ring-shaped light-emitting assembly 21. The light-emitting assembly 21 includes a first circular ring 211 and RGB lamp beads 212, which are evenly distributed on the bottom surface of the first circular ring 211. This design can provide uniform and colorful lighting effects to meet the needs of different scenarios. The lamp body 20 also includes a light-transmitting cylinder 22, a first light-emitting cylinder 23, a second light-emitting cylinder 24, and a honeycomb cylinder 25. The second light-emitting cylinder 24 is sleeved on the outside of the first light-emitting cylinder 23, the honeycomb cylinder 25 is snugly sleeved on the outside of the second light-emitting cylinder 24, and the light-transmitting cylinder 22 is sleeved on the outside of the honeycomb cylinder 25. The upper end of the second light-emitting cylinder 24 covers the lamp beads 212 of the light-emitting assembly 21, and the lamp beads 212 are sandwiched between the first light-emitting cylinder 23 and the second light-emitting cylinder 24. The multi-layer cylinder structure can further scatter and homogenize the light, making the lighting effect softer and more beautiful.
[0008] Layered water tank structure 30: Located above and supported by the lamp body 20, it comprises an upper cavity 31, a lower cavity 32, and a cover 33 covering the upper cavity 31. A first opening 34 and a bow-shaped partition 35 protruding from the middle are located at the bottom center of the upper cavity 31. The bow-shaped partition 35 divides the upper cavity 31 into a first cavity 36 for water storage and a second cavity 38 for mounting a battery 37. This layered design effectively separates the water storage and battery mounting spaces, improving the safety and stability of the system. A sloped structure 361, with an angle of 10°-30°, is located at the bottom of the first cavity 36 around the edge of the first opening 34. This helps water flow more smoothly through the first opening 34 into the lower cavity 32. The first cavity 36 connects to the lower cavity 32 through the first opening 34, forming a water storage area that provides a sufficient water source for the humidification function.
[0009] Touch control assembly 40: Located at the center of the housing 33, it houses a misting module 43. It comprises a removable cover 41, a concentrically arranged outer control ring 421, and an inner control ring 422. The outer control ring 421 controls the misting module 43 via a first conductive pathway, while the inner control ring 422 adjusts the brightness and color temperature of the light-emitting assembly 21 via a second conductive pathway. Capacitive touch sensors are incorporated into the outer and inner control rings 421 and 422, allowing users to conveniently control the humidification and lighting functions through touch, making operation simple and intuitive. A second opening 45 is located in the center of the housing 33, within which a first magnetic connector 46 is housed. A second magnetic connector 47, matching the first magnetic connector 46, is located at the bottom of the touch control assembly 40. This connector serves to position the touch control assembly 40 and provides power to its components via the second magnetic connector 47, ensuring stable installation and reliable power supply.
[0010] The guide structure 50 is connected to the atomization module 41 above the air outlet 44 via external threads and includes an axial spiral guide vane 51, lateral guide holes 52, and an air inlet 53. The guide structure 50 is cylindrical, with the internal guide vane 51 extending in an axial spiral. The guide holes 52 are evenly distributed on the upper side of the guide structure 50. The inner wall of the air inlet 53 and the bottom of the guide holes 52 form a spiral channel 54. A transition slope 55 is provided between the spiral channel 54 and the guide holes 52. This design guides the atomized water vapor to diffuse laterally, making the humidification effect more uniform and expanding the humidification range.
[0011] Other structural details:
[0012] A first cover 361 and a second cover 381 are provided above the first cavity 36 and the second cavity 38 and are located in the same plane. A magnetic structure 301 is provided on the edge of the cover, and a magnetic part 302 is provided at the corresponding position on the bottom of the cover 33. The magnetic structure 301 and the magnetic part 302 are fixed together to facilitate maintenance and cleaning of the interior of the water tank.
[0013] A mounting plate 39 is provided on the lower bottom surface of the upper cavity 31, a circular groove 391 is provided at the center of the upper part of the mounting plate 39, and a circular hole 392 is provided at the center of the groove 391. The lower cavity 31 is inserted into the inner cavity of the lamp body 20 through the circular hole 392, so that the connection between the layered water tank structure and the lamp body is more stable.
[0014] A bottom cover 26 is provided at the bottom of the light-transmitting cylinder 22, and a mounting base 27 is provided on the upper part of the bottom cover 26; a wireless charging receiving device 271 is embedded in the mounting base 27, and a wire channel 272 is provided on the top for connecting the wireless charging receiving device 271 and the battery 37 to realize the power transmission of the wireless charging function.
[0015] Compared with the prior art, the present invention has the following beneficial effects:
[0016] 1. High functional integration: The present invention integrates wireless charging, lighting and humidification functions into one lamp, reducing the number of indoor devices, saving space, meeting the different needs of users in various scenarios, and improving the practicality and functionality of the lamp.
[0017] 2. Convenient operation: The concentrically arranged touch control ring is combined with a capacitive touch sensor design. Users can control the humidification and lighting functions through simple touch operations. The operation is convenient and sensitive, which improves the user experience.
[0018] 3. Reasonable structural design:
[0019] Optimized Layered Water Tank Structure: The unique layered water tank design utilizes a bow-shaped partition to effectively separate the water storage area from the battery installation area, preventing water from affecting the battery. A sloped structure around the edge of the first opening at the bottom of the first chamber not only facilitates water flow toward the first opening, ensuring stable humidification, but also more efficiently distributes water within the tank under gravity, lowering the center of gravity of the entire luminaire. Furthermore, the straight sections on either side of the bow-shaped partition are offset toward the second chamber. This structural design further optimizes weight distribution within the tank, shifting the center of gravity closer to the center of the luminaire. Center of gravity testing shows this product's center of gravity is 32% lower than the reference document, with lateral offset reduced to 4%. This lowered and more centrally located center of gravity improves the overall stability of the luminaire, reducing the risk of tipping due to an unstable center of gravity. This ensures better balance when placed on uneven surfaces or subjected to slight external forces.
[0020] Optimized lighting structure: The multi-layer structural design inside the lamp body allows the light to be scattered more evenly, improving the lighting effect.
[0021] Optimized flow guide structure: The flow guide structure allows for even diffusion of atomized water vapor, enhancing the humidification effect. Furthermore, the various components are connected using rational means, such as magnetic connectors and external threaded connections, facilitating assembly, disassembly, and maintenance of the lamp.
[0022] 4. Heat dissipation and cooling function: The lamp is designed to surround the water tank. During the operation of the lamp, the water in the water tank can absorb part of the heat generated by the lamp, playing a role of natural cooling. As a good thermal conductor, water can effectively conduct the heat generated inside the lamp. And after the atomization efficiency test, the diversion structure of this product improves the uniformity of mist diffusion by 40%, at 30m 3 The standard deviation of humidity distribution in the space is reduced from 15% of traditional products to 9%, preventing the performance and life of the lamps from being affected by long-term high operating temperatures, thereby improving the stability and reliability of the lamps.
[0023] 5. Unique Visual Effects: The diversion structure not only ensures uniform diffusion of water vapor but also cleverly integrates light and mist. When light passes through the atomized water vapor, a unique light and shadow effect is produced. The light scatters and refracts in the mist, creating a soft, dreamy atmosphere. This adds a unique aesthetic and romantic touch to the interior, satisfying users' desire for a unique atmosphere and further enhancing the product's appeal and user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the overall structure of this case;
[0025] Figure 2This is a schematic diagram of the overall explosion structure of this case;
[0026] Figure 3 This is a schematic diagram of the structure of the stratified water tank in this case;
[0027] Figure 4 This is the overall structural plan view of this case;
[0028] Figure 5 It is a structural diagram of the diversion structure of this case; DETAILED DESCRIPTION
[0029] The following examples further illustrate the features of the present invention and other related features to facilitate understanding by those skilled in the art:
[0030] (1) System assembly
[0031] Lamp Assembly: Evenly install the RGB lamp beads 212 on the bottom surface of the first circular ring 211 to form the light-emitting assembly 21. Next, insert the first light-emitting tube 23 under the light-emitting assembly 21, positioning the lamp beads 212 between the first and second light-emitting tubes 23 and 24. Then, insert the second light-emitting tube 24, the honeycomb tube 25, and the light-transmitting tube 22 in that order. Install the bottom cover 26 at the bottom of the light-transmitting tube 22, and embed the wireless charging receiver 271 in the mounting base 27 above the bottom cover 26.
[0032] Assembling the layered water tank structure: Battery 37 uses a 12V / 2000mAh lithium battery. Its positive and negative terminals are connected to the 5V output of the wireless charging receiver 271 via wire channel 272. Install battery 37 in the second cavity 38. Place first and second covers 361 and 381 over the first and second cavities 36 and 38, respectively. Secure them using the magnetic attraction structure 301 on the edges of the covers and the magnetic member 302 on the bottom of the housing 33. Install mounting plate 39 on the bottom surface of the upper cavity 3. Insert the lower cavity 31 through the circular hole 392 in mounting plate 39 into the interior of the lamp body 20, completing the connection between the layered water tank structure and the lamp body.
[0033] Touch component installation: Align and connect the second magnetic connector 47 at the bottom of the touch component 40 with the first magnetic connector 46 in the second opening 45 in the center of the cover 33 to achieve positioning and power supply of the touch component 40.
[0034] Installation of the flow guide structure: Connect the flow guide structure 50 above the air outlet 44 of the atomization module 41 through external threads.
[0035] Wireless charging module installation: Install the wireless charging base 11 at the bottom of the lamp body 1 and build in the wireless charging transmitter 12.
[0036] (2) System Usage
[0037] Wireless charging: When you need to charge an electronic device that supports wireless charging function, place the electronic device on the wireless charging base 11, and the wireless charging transmitter 12 will transmit electrical energy to the electronic device through electromagnetic induction to realize the wireless charging function.
[0038] Lighting Control: Users can adjust the brightness and color temperature of the light-emitting assembly 21 by touching the capacitive touch sensor on the inner control ring 422 of the touch control assembly 40. For example, the capacitive touch sensor is implemented using a CY8C201xx series chip with a sensitivity threshold set to 2pF. Gently touching the inner control ring 422 can turn the light-emitting assembly 21 on and off. By using different touch methods, such as sliding touch, the color temperature of the light emitted by the RGB lamp beads 212 can be gradually adjusted to meet the lighting needs of different scenarios, such as reading, resting, and gatherings.
[0039] Humidification Control: When humidification is required, touching the capacitive touch sensor on the surface of the outer control ring 421 activates the atomization module 43 through the first conductive path. The atomization module 43 atomizes the water in the lower cavity 32, which then diffuses into the surrounding environment through the guide structure 50. The spiral channel 54 and the transition slope 55 formed by the axial spiral guide vanes 51, lateral guide holes 52, and air inlet 53 within the guide structure 50 ensure a more even distribution of water vapor in the air, achieving excellent humidification.
[0040] The embodiments described above are merely descriptions of preferred embodiments of the present invention and are not intended to limit the concept and scope of the present invention. Any modifications and improvements made to the technical solution of the present invention by a person of ordinary skill in the art without departing from the design concept of the present invention shall fall within the scope of protection of the present invention. The technical content for which protection is sought in the present invention is fully set forth in the claims.
Claims
1. A multifunctional integrated humidifying lighting lamp, comprising a lamp body (1), characterized in that: The lamp body (1) comprises: A lamp body (20) is provided with a light-emitting assembly (21) in an annular sleeve therein, wherein the light-emitting assembly (21) comprises a first circular ring (211) and RGB lamp beads (212), and the lamp beads (212) are evenly distributed on the bottom surface of the first circular ring (211); A layered water tank structure (30) is provided above the lamp body (20) and supported by the lamp body (20), comprising an upper cavity (31), a lower cavity (32), and a cover (33) covering the upper cavity (31); a first opening (34) and a partition (35) are provided at the center of the bottom of the upper cavity (31); the upper cavity (31) is divided by the partition (35) into a first cavity (36) for storing water and a second cavity (38) for installing a battery (37); The touch control component (40) is arranged at the center of the cover (33) and has an atomization module (43) built therein. The touch control component (40) includes a detachable cover (41), an outer control ring (421) and an inner control ring (422) arranged concentrically. The outer control ring (421) controls the atomization module (43), and the inner control ring (422) adjusts the brightness and color temperature of the light-emitting component (21). The flow guide structure (50) is connected to the upper portion of the air outlet (44) of the atomizing module (41) via an external thread, and comprises an axial spiral flow guide plate (51), a lateral flow guide hole (52) and an air inlet (53).
2. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: Capacitive touch sensors are provided on the surfaces of the outer control ring (421) and the inner control ring (422) of the concentric touch control ring (42) for controlling the operating state of the atomization module (43) and the brightness and color temperature of the light-emitting component (21) respectively through touch signals.
3. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: A second opening (45) is provided at the center of the cover (33), and a first magnetic connector (46) is provided in the second opening (45); a second magnetic connector (47) matching the first magnetic connector (46) is provided at the bottom of the touch component (40), and is used to position the touch component (40) and supply power to the components in the touch component (40) through the second magnetic connector (47).
4. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: The lower bottom surface of the upper cavity (32) is provided with a mounting plate (39), the center of the upper portion of the mounting plate (39) is provided with a circular groove (391), the center of the groove (391) is provided with a circular hole (392), and the lower cavity (31) is inserted into the inner cavity of the lamp body (20) through the circular hole (392).
5. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: The bottom of the first cavity (36) is provided with an inclined surface structure (361) around the edge of the first opening (34), and the inclined surface structure (361) has an inclination angle of 10°-30°; the first cavity (36) is connected with the lower cavity (32) through the first opening (34) to form a water storage area; and a first cover (361) and a second cover (381) with a magnetic attraction structure (301) are provided above the first cavity (36) and the second cavity (38), respectively.
6. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: The partition (35) is in a bow-shaped structure with a protruding middle portion, comprising a curved portion (351) in the middle and straight portions (352) on both sides, wherein the straight portions (352) on both sides are offset toward the second cavity (38).
7. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: The lamp body (20) further comprises a light-transmitting cylinder (22), a first light-emitting cylinder (23), a second light-emitting cylinder (24) and a honeycomb cylinder (25); the second light-emitting cylinder (24) is sleeved on the outside of the first light-emitting cylinder (23), the honeycomb cylinder (25) is fitted and sleeved on the outside of the second light-emitting cylinder (24), and the light-transmitting cylinder (22) is sleeved on the outside of the honeycomb cylinder (25); the upper end of the second light-emitting cylinder (24) covers the lamp bead (212) of the light-emitting assembly (21), and the lamp bead (212) is sandwiched between the first light-emitting cylinder (23) and the second light-emitting cylinder (24).
8. The multifunctional integrated humidifying lighting fixture according to claim 7, characterized in that: The bottom of the light-transmitting cylinder (22) is provided with a bottom cover (26), and the upper portion of the bottom cover (26) is provided with a mounting seat (27); a wireless charging receiving device (271) is embedded in the mounting seat (27), and a wire channel (272) is provided on the top for connecting the wireless charging receiving device (271) and the battery (37).
9. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: The guide structure (50) is cylindrical, and its internal guide plate (51) extends spirally along the axial direction, and the guide holes (52) are evenly distributed on the upper side of the guide structure (50); the inner wall of the air inlet (53) and the bottom of the guide hole (52) form a spiral channel (54), and a transition slope (55) is provided between the spiral channel (54) and the guide hole (52).
10. The multifunctional integrated humidifying lighting fixture according to claim 1, characterized in that: It also includes a wireless charging module (10), which is arranged at the bottom of the lamp body (1) and includes a wireless charging base (11) and a built-in wireless charging transmitter (12).
Citation Information
Patent Citations
Humidifier with table lamp function
CN209459147U
Atomization humidification awakening lamp
CN210089046U
Multifunctional aromatherapy humidifier
CN213119370U
Multifunctional humidifier
CN217383185U
Humidifying lighting lamp integrated with touch control
CN222895098U