Energy storage bulb fan lamp
By integrating an energy storage unit and an external rotor motor into the bulb fan lamp, the problem of existing bulb fan lamps relying on a fixed power supply is solved, continuous lighting and air circulation are achieved in power outages or outdoor environments, and the convenience and applicability of the equipment are improved.
Patent Information
- Application Number
- CN202422965708.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-03
AI Technical Summary
Existing bulb fan lights rely on a fixed power supply and cannot work properly during power outages or in outdoor environments. They lack energy storage capabilities and flexible power supply solutions, resulting in limited use.
An energy storage bulb fan lamp is designed, which integrates an energy storage unit, an outer rotor motor and a control module. It uses a battery to provide power support during power outages, and controls the operation of the light source and fan through a wireless receiver and switch. It is suitable for indoor and outdoor environments.
It achieves continuous lighting and air circulation in power outages or outdoor environments, improves the convenience and applicability of the product, simplifies the installation and maintenance process, and extends the service life and safety of the equipment.
Smart Images

Figure CN223460390U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of fan lamp especially relates to a energy storage bulb fan lamp. BACKGROUND
[0002] The bulb fan lamp is a multi-purpose household product that combines lighting and air circulation functions. Its appearance continues the design of traditional bulb lamps. It not only provides lighting like ordinary bulb lamps, but also has a small fan that can make indoor air more circulating. I just need to screw it into the threaded lamp holder like an ordinary bulb, and I can enjoy bright light and fresh breeze at the same time. It is easy to install and does not require additional wiring, especially suitable for rooms with poor air circulation, such as bedrooms, study rooms or small offices.
[0003] However, the existing bulb fan lamp has obvious limitations in power supply. This type of product usually depends entirely on fixed indoor power supply lines for work, that is, it must be connected to the household power grid to operate normally. Once the external power supply fails, such as unstable voltage, frequent tripping or power failure due to faults, the bulb fan lamp will immediately stop running and cannot continue to provide lighting and air circulation functions. This situation is particularly common in old communities, peak electricity consumption periods or extreme weather conditions (such as typhoons and heavy rains), which seriously affects the actual use effect of the bulb fan lamp.
[0004] In addition, the existing bulb fan lamp does not perform well in outdoor application scenarios. Since it depends entirely on fixed indoor power supply, when users want to use it in environments without power supply, such as camping, picnicking and outdoor activities, the bulb fan lamp cannot function. This functional deficiency greatly limits its portability and scene adaptability, forcing users to purchase additional rechargeable fans with lighting functions to meet outdoor needs, which not only increases economic costs but also brings inconvenience in equipment carrying.
[0005] More inconveniently, even if users consider adding a backup power supply to the existing bulb fan lamp, such as through an external mobile power supply, the traditional design of the bulb fan lamp lacks the corresponding interface or compatibility, and cannot directly support the connection of such external power supply. In other words, the existing product lacks energy storage capability and flexible power supply solutions, resulting in complete loss of function when the power supply is interrupted and failing to provide the user with the desired continuity and reliability.
[0006] Therefore, the existing bulb fan lamp has significant defects in dealing with sudden power failure, outdoor use and power supply flexibility, and is difficult to meet the user's demand for efficient, stable and convenient multi-scene use of modern household equipment. UTILITY MODEL CONTENT
[0007] The utility model discloses a kind of energy storage bulb fan lamps, which can be used indoors by connecting household power grid, and can be used flexibly and conveniently in outdoor environment without household power grid.
[0008] To achieve the above object, the utility model adopts the following scheme: an energy storage bulb fan lamp, comprising:
[0009] A casing has a hollow cabin inside;
[0010] A threaded lamp holder is installed on the top of the casing, used for electrical connection with an external power source and fixed to a lamp mounting position;
[0011] A bulb lamp body is installed on the side of the casing away from the threaded lamp holder, with a light source module inside for emitting light;
[0012] A fan assembly is located between the casing and the bulb lamp body, comprising:
[0013] A fixed shaft is connected to the center of the casing at one end for providing rotational support, and connected to the bulb lamp body at the other end;
[0014] An outer rotor motor is installed on the fixed shaft;
[0015] A plurality of fan blades are detachably installed on the outer rotor motor, used for generating airflow when the outer rotor motor rotates and blowing towards the bulb lamp body;
[0016] A control module is set in the cabin, comprising a wireless receiver, a switch and / or an adjustment button, and electrically connected with the light source module and the outer rotor motor, used for independently or synchronously controlling the light emission of the bulb lamp and the rotation of the fan;
[0017] An energy storage unit is accommodated in the cabin and connected with the control module, continuously providing power support for the light source module and the fan assembly when the external power supply is unstable or powered off.
[0018] The above-mentioned scheme solves the problem that traditional bulb fan lamps can only rely on fixed power supply, by integrating lighting and fan assembly in a compact casing, the device can not only provide efficient lighting, but also promote air circulation through the fan. This structural design not only maintains the overall appearance and functional integration of the product, but also realizes space sharing of the lamp and the fan, effectively improves the space utilization, and simplifies the installation and maintenance process. Users only need to screw the device into the traditional lamp holder to use it normally, without additional wiring or circuit adjustment.
[0019] As the preferred place case of the utility model, the energy storage unit is a storage battery, a plurality of storage battery positioning columns are arranged in the cabin, the storage battery positioning columns are fixedly connected with the top wall and the bottom wall of the cabin perpendicularly, are used for clamping the outer wall of the storage battery, limiting and fixing the storage battery, and preventing the storage battery from moving in the cabin. The arrangement of the energy storage unit effectively solves the defect that the existing bulb fan lamp cannot continue to run under the condition of power failure or unstable external power supply. The storage battery provides standby power for the light source and the fan, the product can still continuously illuminate and ventilate when power failure occurs, and is particularly suitable for areas or outdoor environments with unstable power supply. In addition, the fixed design of the storage battery enables it to be stably installed in the cabin, avoids faults caused by vibration or movement, and further improves the safety and reliability of the product.
[0020] As the preferred place case of the utility model, the outer rotor motor comprises:
[0021] The inner stator winding is fixedly arranged in the center of the fixed shaft;
[0022] The magnet shell is arranged around the outer periphery of the inner stator winding;
[0023] The outer rotor magnetic ring is embedded in the inner wall of the magnet shell, is arranged in a circumferential direction of the inner stator winding, and rotates around the fixed shaft after the inner stator winding is electrified;
[0024] The bottom center of the magnet shell is embedded with a bearing, the magnet shell is rotatably sleeved on the outer wall of the fixed shaft through the bearing, and is coaxial with the inner stator winding;
[0025] The fan blades are uniformly distributed in the circumferential direction of the magnet shell in a detachable manner.
[0026] The above scheme realizes efficient air circulation function by adopting the outer rotor motor to drive multiple fan blades, and optimizes the heat dissipation performance. Compared with the traditional inner rotor motor, the outer rotor motor has better stability and lower noise level, can provide sufficient airflow while ensuring quiet operation of the equipment, and improves the user experience. The detachable design of the fan assembly also provides great convenience for subsequent cleaning and maintenance, prolongs the service life of the product.
[0027] As a further place case of the utility model, a fan blade mounting disc is fixed around the circumferential outer wall of the magnet shell, a plurality of fan blade insertion slots for inserting the fan blades are sequentially and spaced apart on the circumferential outer wall of the fan blade mounting disc, an anti-falling groove recessed upward is arranged at the bottom of one end of each fan blade inserted into the corresponding fan blade insertion slot, and a long-arm buckle capable of elastically hooking into the anti-falling groove is arranged in the fan blade insertion slot, so as to realize stable locking of the fan blade.
[0028] As a further aspect of the present utility model, a positioning protrusion is arranged on the inner wall of the fan blade slot on the side opposite to the long-arm buckle, and a positioning groove is arranged on each fan blade insertion end to cooperate with the corresponding positioning protrusion, thereby ensuring accurate positioning of the fan blades.
[0029] The above-mentioned scheme adopts the locking mode of long-arm buckle and anti-disengagement buckle slot, and the cooperation of positioning groove and positioning protrusion, thereby solving the problem of loose or falling of traditional fan blades.
[0030] As a preferred aspect of the present utility model, the ball bubble lamp body comprises a light source fixing disc below the fan blade mounting disc, and a lampshade is buckled on the light source fixing disc.
[0031] As a preferred aspect of the present utility model, the shell comprises a top shell and a bottom shell buckled together, the top end of the fixing shaft is fixedly connected to the bottom surface of the bottom shell, an outer thread is arranged on the bottom end outer wall of the fixing shaft, a through hole is arranged in the center of the light source fixing disc and the light source module, and a nut is connected to the bottom end of the fixing shaft through the outer thread and the through hole, thereby fixing the light source fixing disc and the light source module to the bottom end of the fixing shaft.
[0032] As a preferred aspect of the present utility model, a wire passing hole is vertically arranged in the center of the fixing shaft and can be connected to the cabin, and the light source module is electrically connected to the control module through the wire passing hole.
[0033] In the above-mentioned scheme, the light source module is tightly connected to the fixing shaft through the light source fixing disc, and is electrically connected to the control module through the wire passing hole.
[0034] As a preferred aspect of the present utility model, a clamping groove is arranged on the top shell and the bottom shell for clamping the top and bottom of the control module, thereby stably fixing the control module in the cabin.
[0035] As the utility model discloses preferred place, the bottom of the circumference of the casing is provided with the cover that can cover the outer rotor motor.The fan blade mounting disc is combined with the cover around the bottom of the casing, which not only covers the outer rotor motor, but also avoids dust and foreign matter from entering to affect the performance of the motor, thereby improving the safety of the product.
[0036] In summary, the utility model has the beneficial effects that: the utility model discloses a built-in energy storage unit, which breaks through the limitation of traditional ball bubble fan lamps relying on indoor power supply, significantly improves its applicability in power failure or outdoor environment.When the external power supply is unstable or completely interrupted, the energy storage unit can continuously provide power support for the light source module and fan assembly, ensuring uninterrupted operation of lighting and air circulation function.This not only effectively solves the problem that users cannot obtain lighting and ventilation during power failure, but also eliminates the need to purchase additional portable rechargeable fans, improving the use convenience and economy of the product.In addition, the energy storage unit supports charging through mains or solar energy, making the device flexible to use in multiple scenarios, further improving its adaptability and user experience.
[0037] In addition, the energy storage unit is tightly integrated with the overall structure of the device, and is stably fixed through the positioning column in the cabin, ensuring that it does not displace or damage during movement or use, improving the durability and safety of the device.At the same time, the power output of the energy storage unit is intelligently managed by the control module, which can flexibly switch power supply according to user needs, independently or synchronously control the operation of the light source and the fan, optimize energy consumption, and prolong the battery life.This power flexibility makes the product not only suitable for indoor scenes, but also widely used in outdoor activities, camping, emergency lighting and other occasions, providing continuous and reliable lighting and comfortable air flow environment effect for users. BRIEF DESCRIPTION OF DRAWINGS
[0038] Figure 1 It is a perspective view of the utility model.
[0039] Figure 2 It is a sectional view of the utility model.
[0040] Figure 3 It is Figure 2 It is an enlarged view of A in the middle.
[0041] Figure 4 It is a sectional view of the utility model after decomposition.
[0042] Figure 5 It is Figure 4 It is an enlarged view of B in the middle.
[0043] Figure 6The overall exploded view of the utility model and the enlarged view of the local area in the figure.
[0044] Figure 7 The one of the perspective views of the bottom shell in the utility model.
[0045] Figure 8 The two of the perspective views of the bottom shell in the utility model.
[0046] The figure mark explanation: 1, the shell; 2, threaded lamp holder; 3, bulb lamp body; 4, fan assembly; 5, control module; 6, energy storage unit; 7, fan blade mounting disc; 11, cabin; 12, fixed shaft; 13, battery positioning column; 14, top shell; 15, bottom shell; 16, external thread; 17, operation groove; 18, cover shell; 19, nut; 30, light source module; 31, light source fixing disc; 32, lampshade; 33, through hole; 41, outer rotor motor; 42, fan blade; 43, magnet shell; 51, clamping groove; 61, battery; 71, fan blade insertion slot; 72, anti-escape groove; 73, long arm buckle; 74, positioning convex point; 75, positioning recess; 121, wire passing hole; 411, inner stator winding; 412, outer rotor magnetic ring; 413, bearing. DETAILED DESCRIPTION
[0047] The following detailed implementation provides a plurality of different embodiments or examples for implementing the utility model. Of course, these are only examples and are not intended to be limiting. In addition, repeated reference numbers can be used in different embodiments, such as repeated numbers and / or letters. These repetitions are for the purpose of simply and clearly describing the present application, and do not represent a specific relationship between the different embodiments and / or structures being discussed.
[0048] In addition, space-related words such as "below", "lower side", "from inside to outside", "above", "upper side", and the like can be used. These spatial relationship words are used to facilitate the description of the relationship between some elements or features in the drawings and other elements or features. The spatial relationship words include different orientations of the device in use or operation, as well as the orientation described in the drawings. The device can be rotated 90 degrees or other orientations, and the spatially related adjectives used therein can also be interpreted accordingly. Therefore, it cannot be understood as a limitation on the present application. The terms "first", "second" are used for description purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" can explicitly or implicitly include one or more features.
[0049] The utility model will be further described below in conjunction with the drawings and specific embodiments: as Figures 1 to 8The energy storage bulb fan lamp shown includes a shell 1, a threaded lamp holder 2, a bulb lamp body 3, a fan assembly 4, a control module 5 and an energy storage unit 6. The shell 1 adopts a hollow structure, and a cabin 11 for accommodating the control module 5 and the energy storage unit 6 is formed inside the shell 1. The threaded lamp holder 2 is fixedly connected to the top of the shell 1, and is used for electrically connecting with an external power supply and fixing the entire energy storage bulb fan lamp on the installation position of a lamp, so that the bulb fan lamp can be stably installed on a lamp holder and can perform power transmission with the external power supply. The bulb lamp body 3 is installed at the lower end of the shell 1, and a light source module 30 is arranged inside the bulb lamp body 3. The light source module 30 is used to provide a lighting function. The bulb lamp body 3 encapsulates the light source module 30 through a lampshade 32 and a light source fixing disc 31 that are buckled together, so that the light source module 30 can provide a required illumination effect and effectively prevent damage to the light source by the external environment. In the embodiment, the light source module 30 adopts an LED lamp panel, has a long service life and low energy consumption characteristics, and provides stable and efficient illumination. The fan assembly 4 is arranged between the shell 1 and the bulb lamp body 3, and includes a fixed shaft 12, an outer rotor motor 41 and a plurality of detachable fan blades 42. One end of the fixed shaft 12 is fixed to the center of the shell 1, and the other end is connected with the bulb lamp body 3, thereby providing support for the fan assembly 4. The outer rotor motor 41 is driven to rotate through power, thereby driving the fan blades 42 to rotate, so as to push air to flow and blow air towards the bulb lamp body 3, thereby providing an air flow function and enhancing the ventilation effect of the lighting area.
[0050] As shown in the figure, Figures 2 to 8 Figures 1 to 8 Figures 2 to 8 The outer rotor motor 41 specifically includes an inner stator winding 411 fixedly sleeved on the fixed shaft 12, a magnet shell 43 arranged around the outer periphery of the inner stator winding 411, and an outer rotor magnetic ring 412 embedded in the magnet shell 43. A bearing 413 is embedded in the bottom center of the magnet shell 43, and the magnet shell 43 is rotatably sleeved on the outer wall of the fixed shaft 12 through the bearing 413. After being powered on, the outer rotor magnetic ring 412 and the stator winding 411 generate a magnetic field effect, and drive the entire outer rotor motor 41 to rotate. The fan blades 42 are uniformly distributed on the fan blade mounting disc 7 outside the periphery of the magnet shell 43 in a detachable manner. A plurality of fan blade insertion slots 71 are designed on the fan blade mounting disc 7, each fan blade insertion slot 71 is provided with a long-arm buckle 73, and each fan blade 42 is provided with an anti-falling groove 72. After the fan blade 42 is inserted into the corresponding fan blade insertion slot 71, the long-arm buckle 73 can be elastically hooked into the anti-falling groove 72, thereby stably locking the fan blade 42. The inner wall of the fan blade insertion slot 71 is also provided with a positioning protrusion 74, which cooperates with a positioning groove 75 arranged on each fan blade 42, so as to ensure that the fan blade 42 can be accurately positioned after installation, thereby avoiding loosening or deviation caused by rotation.
[0051] In addition, the control module 5 is installed in the cabin 11 in the casing 1 and is electrically connected with the light source module 30 and the outer rotor motor 41, and the control module 5 comprises a wireless receiver, a switch and an adjusting button, and can realize independent or synchronous control of the light emission of the LED lamp panel and the rotation of the outer rotor motor 41. The switch and the adjusting button of the control module 5 are exposed through the operation groove 17 arranged on the top shell 14, so that the user can conveniently control the switch and the adjusting button. Meanwhile, the control module 5 is electrically connected with the energy storage unit 6, so as to ensure that the energy storage unit 6 can continuously provide power support for the light source module 30 and the fan assembly 4 when external power supply is unstable or power failure. In addition, the control module 5 exposed through the operation groove 17 is further provided with a charging interface capable of charging the energy storage unit 6, and the energy storage unit can be charged through commercial power or solar energy through the charging interface. In the embodiment, the energy storage unit 6 adopts a storage battery 61 as the energy storage assembly, and the storage battery 61 is fixed in the cabin 11 through the storage battery positioning column 13 arranged on the top wall and the bottom wall in the cabin 11, so as to prevent displacement of the storage battery 61 during use of the device.
[0052] In order to ensure the electrical connection between the light source module 30 and the control module 5, the central part of the fixing shaft 12 is provided with a wire passing hole 121, and the light source module 30 is connected to the control module 5 through the wire passing through the wire passing hole 121. In the embodiment, the casing 1 is composed of the top shell 14 and the bottom shell 15 which are buckled together, the light source fixing disc 31 and the central part of the light source module 30 are both provided with through holes 33, the fixing shaft 12 is fixedly connected to the central part of the bottom wall of the bottom shell 15, the bottom end of the fixing shaft 12 passes through the through hole 33, and the light source fixing disc 31 and the light source module 30 are locked at the bottom end of the fixing shaft 12 through the external thread 16 arranged at the end of the fixing shaft 12, the nut 19 is threadedly connected to the external thread 16, so as to ensure the structural stability of the whole bulb lamp body 3.
[0053] In addition, in order to further enhance the stability of the control module 5, the inner walls of the top shell 14 and the bottom shell 15 are respectively provided with clamping grooves 51 for clamping the top and bottom of the control module 5, and the control module 5 is a PCB integrated circuit board in the embodiment. In order to enhance the beauty and safety of the energy storage bulb fan lamp, the casing 1 is provided with a cover shell 18 at the bottom, so as to shield the outer rotor motor 41, prevent external objects from interfering with the motor, and improve the appearance quality and service life of the product.
[0054] In the embodiment, the light source module 30, the fan assembly 4, the control module 5 and the energy storage unit 6 are integrated, so that the design is compact and has multiple functions. The energy storage unit 6 ensures that the bulb fan lamp can still operate normally in the case of power failure, provides stable lighting and air circulation functions, and has simple structure, easy maintenance and replacement, and is suitable for wide application in families and commercial places.
[0055] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed for protection. The protection scope of the utility model is defined by the appended claims and equivalents thereof.
Claims
1. An energy storing bulb fan lamp characterized by, The utility model relates to a kind of ball bubble lamps, including: Casing (1), the hollow cabin (11) is in the casing (1); Threaded base (2), it is installed at the top of the casing (1), for with external power supply electric connection and fixed in lamp mounting position; Ball bubble body (3), it is installed in the side of the casing (1) away from threaded base (2), inside is equipped with light source module (30) for emitting light; Fan assembly (4), between the casing (1) and ball bubble body (3), the fan assembly (4) includes: Fixed shaft (12), the fixed shaft (12) one end is connected to the center of the casing (1), for providing rotating support, the other end is connected on ball bubble body (3); Outer rotor motor (41), it is installed on the fixed shaft (12); Multiple fan blades (42), detachably installed on the outer rotor motor (41), for air flow blowing when outer rotor motor (41) rotates, and is blown towards the direction of ball bubble body (3); Control module (5), it is arranged in the cabin (11), the control module (5) includes wireless receiver, switch and / or adjusting button, and with light source module (30) and outer rotor motor (41) electric connection, for independent or synchronous control ball bubble's light emitting and fan rotation; Energy storage unit (6), it is housed in the cabin (11), and is connected with control module (5), when external power supply power supply is unstable or power failure, continuously provides power support for light source module (30) and fan assembly (4).
2. A storage bubble fan lamp according to claim 1, characterized in that The energy storage unit (6) is battery (61), in the cabin (11) is equipped with multiple battery positioning column (13), the battery positioning column (13) is fixedly connected with the top wall and the bottom wall of cabin (11) perpendicularly, for clamping the outer wall of battery (61), battery (61) is limited and fixed, prevent it from moving in cabin (11).
3. A storage bubble fan lamp according to claim 1, wherein The outer rotor motor (41) includes: Fixed sleeve is set in the central inner stator winding (411) of the fixed shaft (12); Magnet shell (43) is arranged around the outer periphery of the inner stator winding (411); Embedded in the inner wall of the magnet shell (43) outer rotor magnetic ring (412), the outer rotor magnetic ring (412) is arranged along the circumference of inner stator winding (411), and rotates around fixed shaft (12) after inner stator winding (411) energization; The bottom center of the magnet shell (43) is embedded with bearing (413), the magnet shell (43) can be rotatably sleeved on the outer wall of the fixed shaft (12) by the bearing (413), and keeps coaxial with inner stator winding (411); The fan blade (42) is evenly distributed in the circumference of the magnet shell (43) in a detachable manner.
4. A storage bubble fan lamp according to claim 3, wherein A plurality of leaf insertion slots (71) are arranged on the circumferential outer wall of the leaf mounting disc (7) in sequence and at intervals, and each leaf (42) is inserted into one end of the corresponding leaf insertion slot (71) and is provided with an upwardly recessed anti-disengagement groove (72) at the bottom of the one end, and a long-arm buckle (73) is arranged in the leaf insertion slot (71) and can be elastically hooked into the anti-disengagement groove (72) to achieve stable locking of the leaf (42).
5. A storage bubble fan lamp according to claim 4, wherein, A positioning protrusion (74) is arranged on the inner wall of the leaf insertion slot (71) on the side opposite to the long-arm buckle (73), and each leaf (42) is provided with a positioning groove (75) on the inserted end and cooperates with the corresponding positioning protrusion (74) to ensure accurate positioning of the leaf (42).
6. A storage bubble fan lamp according to claim 1, wherein, The globe lamp body (3) comprises a light source fixing disc (31) located below the leaf mounting disc (7), and a lampshade (32) is buckled on the light source fixing disc (31), and the light source module (30) is an LED lamp panel fixed on the outer wall of the bottom of the light source fixing disc (31).
7. A storage bubble fan lamp according to claim 6, wherein, The casing (1) comprises a top shell (14) and a bottom shell (15) buckled together, the top end of the fixing shaft (12) is fixedly connected to the bottom surface of the bottom shell (15), and the outer thread (16) is arranged on the bottom end outer wall of the fixing shaft (12), the through hole (33) is arranged in the center of the light source fixing disc (31) and the light source module (30), and the nut (19) is connected to the bottom end of the fixing shaft (12) through the through hole (33) and the outer thread (16), so that the light source fixing disc (31) and the light source module (30) are fixed to the bottom end of the fixing shaft (12).
8. A storage bubble fan lamp according to claim 7, wherein, The central vertical through hole (121) is arranged in the center of the fixing shaft (12) and can be connected with the cabin (11), and the light source module (30) is electrically connected with the control module (5) through the wire passing through the wire passing hole (121).
9. A storage bubble fan lamp according to claim 7, wherein, The clamping grooves (51) for clamping the top and bottom of the control module (5) are arranged on the top shell (14) and the bottom shell (15) respectively, the control module (5) is stably fixed in the cabin (11), the recessed operation groove (17) is arranged on the top surface of the top shell (14), the switch and / or adjusting button of the control module (5) are exposed in the operation groove (17) through the outer wall of the top shell (14), and the user is convenient to operate.
10. A storage bubble fan lamp according to any one of claims 1 to 9, characterized in that, The cover shell (18) is arranged around the circumferential bottom of the casing (1) and can cover the outer rotor motor (41).