Energy-saving intelligent eye protection table lamp capable of automatically adjusting brightness

Through the design of intelligent eye protection desk lamps, automatic brightness adjustment, energy saving and multi-functional mosquito-killing technology, the problem that existing desk lamps cannot automatically adjust brightness and cannot effectively kill mosquitoes is solved, achieving efficient energy saving and high-quality sleep effects.

CN120062609AActive Publication Date: 2025-05-30BILLIONAIRE LIGHTING CO LTD
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Patent Information

Application Number
CN202510321747.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-05-30
Estimated Expiration
2045-03-18

AI Technical Summary

Technical Problem

The existing desk lamps cannot automatically adjust the brightness, resulting in eye fatigue, single function and ineffective killing mosquitoes, affecting the sleep quality of teenagers.

Method used

An intelligent eye protection desk lamp was designed, using a touch control panel and lighting module to achieve automatic brightness adjustment, combining human sensing module to achieve energy-saving function, and mosquito-killing function was realized through rotary lighting module and mosquito-attracting module.

Benefits of technology

It realizes automatic adjustment of brightness according to the environmental brightness, energy-saving and power-saving, human body sensing switch, and multi-functional mosquito-killing effects, improving the sleep quality of teenagers.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses an energy-saving intelligent eye-protection table lamp capable of automatically adjusting brightness, and relates to the technical field of eye-protection table lamps, the energy-saving intelligent eye-protection table lamp comprises a lamp holder, a power switch arranged at the top of the lamp holder, a control box and a touch control panel mounted on the front side surface of the control box, and the top of the control box is connected with a lamp pole through a hinge assembly; the top end of the lamp pole is connected with a lamp holder through a hinge assembly, a turnover mechanism is arranged in the front end of the lamp holder, after the turnover mechanism turns over the air blowing mechanism by 180 degrees, the air blowing mechanism blows air reversely at the moment, and air blown out reversely by the air blowing mechanism is finally exhausted from the interior of a hollow rotating piece on the rotary type lighting module. According to the multifunctional mosquito killer, not only can smell emitted by a mosquito luring agent be quickly blown to all positions in a room to further improve the mosquito luring and killing efficiency, but also heat in the rotary lighting module can be quickly taken out while the smell emitted by the mosquito luring agent is quickly blown to all positions in the room by the blowing mechanism, and the multifunctional mosquito killer is diversified in function and good in heat dissipation performance.
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Description

Technical Field

[0001] The present invention relates to the technical field of eye protection table lamps, and particularly to an intelligent eye protection table lamp with energy-saving automatic brightness adjustment. Background Art

[0002] A table lamp mainly consists of a light source and a lamp fixture. It can be fixed on a desktop or other flat surfaces and can illuminate a specific area. The main function of a table lamp is lighting, and the illuminated area is relatively small and concentrated, which is convenient for reading, studying, and working. Table lamps are essential for every family with students, and various table lamps have emerged. Research shows that in addition to factors such as genetics and poor eye use habits, the lighting environment is crucial for eyesight. If the illumination uniformity or illuminance of the table lamp is insufficient, it will cause serious harm to the eyesight of adolescent students. Improving the lighting environment not only helps prevent myopia or relieve the decline of eyesight but also can significantly improve the learning effect of students.

[0003] However, the existing table lamps cannot automatically adjust the brightness well according to the light in the surrounding environment, which is likely to cause eye fatigue and is harmful to health. Moreover, their functions are relatively single, only having a single lighting function, and they cannot effectively kill mosquitoes. Mosquitoes will bite and harass adolescent students at night, which will affect the sleep quality of adolescent students and it is difficult to effectively meet the various needs of users. Summary of the Invention

[0004] To solve the defects existing in the prior art, the present invention provides an intelligent eye protection table lamp with energy-saving automatic brightness adjustment.

[0005] To solve the above technical problems, the present invention provides the following technical solutions:

[0006] An intelligent eye protection table lamp with energy-saving automatic brightness adjustment, comprising a lamp base, a power switch arranged on the top of the lamp base, a control box, and a touch control panel installed on the front surface of the control box. The top of the control box is connected to a lamp pole through a hinge assembly, the top of the lamp pole is connected to a lamp head through a hinge assembly, a flipping mechanism is arranged inside the front end of the lamp head, one end of the flipping mechanism is internally provided with a clamping mechanism and a blowing mechanism respectively, the outside of the flipping mechanism is meshed with a linkage mechanism, the outside of the linkage mechanism is meshed with a rotary lighting module, a mosquito attracting module is fixedly arranged inside the rear end of the lamp head, two sides of the mosquito attracting module are slidably connected with a blocking mechanism, the inner cavity of the control box is fixedly connected with a circuit board through screws, and a single-chip microcomputer controller, a daylighting module, a wireless wifi module, and a human body sensing module are fixedly installed on the surface of the circuit board, and one end of the daylighting module and one end of the human body sensing module both penetrate through the control box;

[0007] The plugging mechanism includes guide plate members symmetrically and fixedly arranged on both sides of the mosquito attracting module and linkage rods slidably inserted through the guide plate members. Pulley assemblies and plugging plates are respectively fixedly connected to both ends of the linkage rods. A spring member is arranged between the guide plate members and the pulley assemblies. A positioning slider is arranged on one side of the plugging plate.

[0008] The rotary lighting module includes a hollow rotating member rotatably arranged inside the lamp head through a bearing. A driven gear and a dust-proof net plate are respectively fixedly arranged at both ends of the hollow rotating member. LED lighting assemblies and mosquito killing assemblies are symmetrically and fixedly arranged on the hollow rotating member.

[0009] As a preferred technical solution of the present invention, the lamp head includes a protective shell connected to the top end of the lamp post through a hinge assembly and an annular flanging arranged at one end of the protective shell. Shielding covers are symmetrically and fixedly arranged on both sides of the protective shell, and the rotary lighting module is rotatably arranged inside the shielding covers through a bearing.

[0010] As a preferred technical solution of the present invention, the flipping mechanism includes an annular kit fixedly arranged inside the front end of the lamp head and connecting shaft rods A symmetrically and fixedly arranged on both sides of the annular kit. The connecting shaft rods A are rotatably inserted through the lamp head through bearings. Driving gears are fixedly sleeved on the outer sides of the connecting shaft rods A. A rotating wheel is fixedly arranged at one end of a group of the connecting shaft rods A. Protective net plates are symmetrically and fixedly arranged at both ends of the annular kit.

[0011] As a preferred technical solution of the present invention, the clamping mechanism includes a pin rod slidably inserted through the outside of the rotating wheel and positioning holes symmetrically opened on the outside of the protective shell. A pull ring and a limit baffle are arranged on the outside of the pin rod. A return spring is arranged between the limit baffle and the rotating wheel.

[0012] As a preferred technical solution of the present invention, the blowing mechanism includes a connecting rod member and a double-shaft motor. The double-shaft motor is fixedly installed inside the cavity of the annular kit through the connecting rod member. Fan blades are connected to both ends of the double-shaft motor through output shafts.

[0013] As a preferred technical solution of the present invention, the linkage mechanism includes connecting shaft rods B rotatably connected to both sides inside the cavity of the protective shell through bearings. Linkage gears and linkage cams are fixedly arranged on the outer sides of the connecting shaft rods B, and the linkage gears are meshed and connected with the driving gears;

[0014] The driving gears, the linkage gears and the driven gears have the same size.

[0015] As a preferred technical solution of the present invention, the LED lighting assembly includes a first mounting plate fixedly arranged inside the cavity of the hollow rotating member and an eye protection lamp shade fixedly arranged outside the hollow rotating member. The surface of the first mounting plate is equidistantly and fixedly provided with LED lamp beads, and a heat dissipation column A is fixedly arranged at the end of the LED lamp beads.

[0016] As a preferred technical solution of the present invention, the mosquito killing assembly includes a second mounting plate fixedly arranged inside the cavity of the hollow rotating member and an electric grid fixedly arranged outside the hollow rotating member. The surface of the second mounting plate is equidistantly and fixedly provided with mosquito attracting lamps, and a heat dissipation column B is fixedly arranged at the end of the mosquito attracting lamps.

[0017] As a preferred technical solution of the present invention, the mosquito attracting module includes a mosquito attracting agent storage cylinder fixedly arranged inside the rear end of the protective shell and a mosquito attracting agent discharge port opened at the rear end of the protective shell. A plug cover is threadedly connected inside the mosquito attracting agent discharge port, and a mosquito attracting agent and an odor diffusion port are respectively arranged at the bottom and on both sides inside the cavity of the mosquito attracting agent storage cylinder.

[0018] As a preferred technical solution of the present invention, guiding sliding grooves are symmetrically arranged on the outer side of the mosquito attracting agent storage cylinder, and the positioning slider is slidably installed inside the guiding sliding grooves.

[0019] The beneficial effects of the present invention are as follows:

[0020] 1. For this intelligent eye protection desk lamp, through the touch control panel, not only can the brightness of the light be manually adjusted, but also the automatic mode or the manual mode can be selected. When the automatic mode is selected, the daylighting module can detect the brightness of the surrounding environment. When the brightness of the surrounding environment changes, the daylighting module transmits the collected signal to the single-chip microcomputer controller for processing. The single-chip microcomputer controller can automatically adjust the brightness of the desk lamp according to the brightness of the surrounding environment. By setting the human body induction module, the human body induction module can detect the human body, and the functions of turning on the light when people come and turning off the light when people leave can be realized, which can effectively save energy. After the desk lamp is powered on, the wireless wifi module can automatically connect to the network and the mobile phone. Through the serial port of the single-chip microcomputer controller, the mobile phone can communicate with the wireless wifi module to realize remote control.

[0021] 2. For this intelligent eye protection desk lamp, when it is normally used for lighting, the blowing mechanism can blow air forward. It can not only blow air to cool the human body in the hot summer, but also accelerate the air circulation inside the rotary lighting module while blowing air to cool the human body, quickly take out the heat inside the rotary lighting module, effectively improve the heat dissipation performance of the rotary lighting module, and avoid damage to the LED lighting assembly inside the rotary lighting module due to too high temperature.

[0022] 3. After the use of lighting, the hair dryer can be turned 180 degrees by the flipping mechanism. When the hair dryer is turned 180 degrees, the flipping mechanism can drive the linkage mechanism to rotate synchronously through the driving gear at one end. When the linkage mechanism rotates, the rotating lighting module can be driven to rotate through the linkage gear. The LED lighting component on the rotating lighting module can be rotated to the top of the inner cavity of the shielding cover for storage. The mosquito killing component can be rotated and moved to the bottom of the shielding cover to switch to the mosquito killing mode. The mosquito killing component can effectively kill mosquitoes. In addition, during the synchronous rotation of the linkage mechanism driven by the flipping mechanism, The blocking mechanism can be driven to move through the linkage cam. When the blower mechanism is flipped 180 degrees through the flipping mechanism, the blocking mechanism will be misaligned with the odor diffusion port on the mosquito attracting module under the drive of the linkage cam, and the odor diffusion port on the mosquito attracting module can be automatically opened. After the odor diffusion port is opened, the mosquito attractant inside the mosquito attracting module can quickly emit odor through the odor diffusion port, which can attract mosquitoes and effectively improve the mosquito killing efficiency of the mosquito killing component. Conversely, when switching to normal lighting mode, the blocking mechanism will automatically reset and automatically block the odor diffusion port. It has various functions, can effectively kill mosquitoes and improve the sleep quality of young students.

[0023] 4. This kind of intelligent eye protection desk lamp flips the hair dryer mechanism 180 degrees through the flipping mechanism. At this time, the hair dryer mechanism blows air in the reverse direction. The wind blown out in the reverse direction by the hair dryer mechanism is finally discharged from the inside of the hollow rotating part on the rotary lighting module. It can not only quickly blow the smell emitted by the mosquito attractant to various places in the room, further improving the efficiency of attracting and killing mosquitoes, but also the hair dryer mechanism can quickly blow the smell emitted by the mosquito attractant to various places in the room, and at the same time, it can quickly bring out the heat inside the rotary lighting module, and can quickly dissipate the heat of the mosquito killing component. It has diverse functions and good heat dissipation performance. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0025] Figure 1 It is a schematic diagram of the overall structure of an energy-saving and automatically brightness-adjustable intelligent eye-protection desk lamp of the present invention;

[0026] Figure 2 It is a schematic cross-sectional structure diagram of an energy-saving and automatically brightness-adjustable intelligent eye-protection desk lamp of the present invention;

[0027] Figure 3 The present invention Figure 2 A is an enlarged structural diagram;

[0028] Figure 4It is a schematic cross-sectional structure diagram of the lamp cap, the rotary lighting module and the mosquito attracting module in the present invention;

[0029] Figure 5 It is a schematic partial structure diagram of the lamp cap in the present invention;

[0030] Figure 6 It is the present invention Figure 5 The enlarged structure diagram at position B in it;

[0031] Figure 7 It is a schematic connection structure diagram of the flipping mechanism and the blowing mechanism in the present invention;

[0032] Figure 8 It is the present invention Figure 7 The enlarged structure diagram at position C in it;

[0033] Figure 9 It is a schematic cross-sectional structure diagram of the rotary lighting module in the present invention;

[0034] Figure 10 It is a schematic cross-sectional structure diagram of the control box in the present invention.

[0035] In the figure: 1. Lamp socket;

[0036] 2. Power switch;

[0037] 3. Control box;

[0038] 4. Touch control panel;

[0039] 5. Lamp pole;

[0040] 6. Lamp cap; 601. Protective shell; 602. Annular flange; 603. Shielding cover;

[0041] 7. Flipping mechanism; 701. Annular kit; 702. Connecting shaft rod A; 703. Driving gear; 704. Rotating wheel; 705. Protective net plate;

[0042] 8. Fixing mechanism; 801. Pin rod; 802. Positioning hole; 803. Pull ring; 804. Limit baffle; 805. Return spring;

[0043] 9. Blowing mechanism; 901. Connecting rod member; 902. Biaxial motor; 903. Fan blade;

[0044] 10. Linkage mechanism; 1001. Connecting shaft rod B; 1002. Linkage gear; 1003. Linkage cam;

[0045] 11. Sealing mechanism; 1101. Guide plate member; 1102. Linkage rod; 1103. Pulley assembly; 1104. Sealing plate; 1105. Spring member; 1106. Positioning slider;

[0046] 12. Rotary lighting module; 1201. Hollow rotating part; 1202. Driven gear; 1203. Dust-proof mesh plate; 1204. LED lighting component; 1205. Mosquito-killing component; 12041. First mounting plate; 12042. Eye protection lamp shade; 12043. LED lamp beads; 12044. Heat dissipation column A; 12051. Second mounting plate; 12052. Electric grid; 12053. Mosquito attracting lamp; 12054. Heat dissipation column B;

[0047] 13. Mosquito attracting module; 1301. Mosquito attractant storage cylinder; 1302. Mosquito attractant feeding port; 1303. Plug cover; 1304. Mosquito attractant; 1305. Odor diffusion port;

[0048] 14. Circuit board;

[0049] 15. Single-chip microcomputer controller;

[0050] 16. Daylighting module;

[0051] 17. Wireless wifi module;

[0052] 18. Human body sensing module. Specific implementation mode

[0053] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0054] Embodiment: As Figure 1-10As shown in the figure, an intelligent eye-protecting table lamp with energy-saving automatic brightness adjustment includes a lamp base 1, a power switch 2 arranged on the top of the lamp base 1, a control box 3, and a touch control panel 4 installed on the front surface of the control box 3. The top of the control box 3 is connected to a lamp pole 5 through a hinge assembly. The top of the lamp pole 5 is connected to a lamp head 6 through a hinge assembly. Inside the front end of the lamp head 6, there is a flipping mechanism 7. One end of the flipping mechanism 7 is internally provided with a clamping mechanism 8 and a blowing mechanism 9 respectively. The outside of the flipping mechanism 7 is meshed with a linkage mechanism 10. The outside of the linkage mechanism 10 is meshed with a rotary lighting module 12. Inside the rear end of the lamp head 6, a mosquito attracting module 13 is fixedly installed. On both sides of the mosquito attracting module 13, there is a plugging mechanism 11 slidingly connected. Inside the control box 3, a circuit board 14 is fixedly connected by screws. On the surface of the circuit board 14, a single-chip microcomputer controller 15, a daylighting module 16, a wireless wifi module 17, and a human body sensing module 18 are fixedly installed. And one end of the daylighting module 16 and one end of the human body sensing module 18 both penetrate through the control box 3. The daylighting module 16 is composed of a photosensitive resistor, an analog-to-digital converter, and a 10kΩ ordinary resistor. When the brightness of the surrounding environment changes, the resistance value of the photosensitive resistor will change. After being converted into a digital signal through the analog-to-digital converter, it is transmitted to the single-chip microcomputer controller 15 for processing, so as to control the brightness of the table lamp. Through the touch control panel 4, not only can the brightness of the light be manually adjusted, but also the automatic mode or the manual mode can be selected. When the automatic mode is selected, the brightness of the surrounding environment can be detected through the daylighting module 16. When the brightness of the surrounding environment changes, the daylighting module 16 transmits the collected signal to the single-chip microcomputer controller 15 for processing. The single-chip microcomputer controller 15 can automatically adjust the brightness of the table lamp according to the brightness of the surrounding environment. By setting the human body sensing module 18, the human body sensing module 18 can detect the human body, and the functions of turning on the light when people come and turning off the light when people leave can be realized, which can effectively save energy. When the table lamp is powered on, the wireless wifi module 17 can automatically connect to the network and connect to the mobile phone. Through the serial port of the single-chip microcomputer controller 15, the mobile phone can communicate with the wireless wifi module 17, and remote control can be realized;

[0055] The blocking mechanism 11 includes guide plate members 1101 symmetrically and fixedly arranged on both sides of the mosquito attracting module 13 and a linkage rod 1102 slidably inserted through the guide plate members 1101. Pulley assemblies 1103 and blocking plates 1104 are respectively fixedly connected to both ends of the linkage rod 1102. A spring member 1105 is provided between the guide plate members 1101 and the pulley assemblies 1103. A positioning slider 1106 is provided on one side of the blocking plate 1104. During the synchronous rotation of the linkage mechanism 10 driven by the flipping mechanism 7, the blocking mechanism 11 can be driven to move through the linkage cam 1003. When the blowing mechanism 9 is flipped 180 degrees by the flipping mechanism 7, the blocking mechanism 11 will be displaced from the odor diffusion port 1305 on the mosquito attracting module 13 under the drive of the linkage cam 1003, and the odor diffusion port 1305 on the mosquito attracting module 13 can be automatically opened;

[0056] The rotary lighting module 12 includes a hollow rotating member 1201 rotatably arranged inside the lamp holder 6 through a bearing, a driven gear 1202 and a dustproof screen 1203 are respectively fixed at both ends of the hollow rotating member 1201, and an LED lighting component 1204 and a mosquito repellent component 1205 are symmetrically fixed on the hollow rotating member 1201. When used for normal lighting, the hair dryer 9 can blow air in a positive direction, which can not only cool down the human body in hot summer, but also accelerate the circulation of air inside the rotary lighting module 12 while cooling the human body, and can quickly bring out the heat inside the rotary lighting module 12, which can effectively improve the heat dissipation performance of the rotary lighting module 12 and avoid the inside of the rotary lighting module 12. The LED lighting component 1204 is damaged due to overheating. After the lighting of this intelligent eye protection desk lamp is used, the hair dryer mechanism 9 can be flipped 180 degrees through the flip mechanism 7. When the hair dryer mechanism 9 is flipped 180 degrees, the flip mechanism 7 can drive the linkage mechanism 10 to rotate synchronously through the driving gear 703 at one end. When the linkage mechanism 10 rotates, the rotating lighting module 12 can be driven to rotate through the linkage gear 1002. The LED lighting component 1204 on the rotating lighting module 12 can be rotated to the top of the inner cavity of the shielding cover 603 for storage, and the mosquito killing component 1205 can be rotated and moved to the bottom of the shielding cover 603 to switch to the mosquito killing mode. The mosquito killing component 1205 can effectively kill mosquitoes, and the linkage mechanism During the synchronous rotation driven by the flip mechanism 7, the blocking mechanism 11 can be driven to move by the linkage cam 1003. After the air blowing mechanism 9 is flipped 180 degrees by the flip mechanism 7, the blocking mechanism 11 will be misaligned with the odor diffusion port 1305 on the mosquito attracting module 13 under the drive of the linkage cam 1003, and the odor diffusion port 1305 on the mosquito attracting module 13 can be automatically opened. After the odor diffusion port 1305 is opened, the mosquito attractant 1304 inside the mosquito attracting module 13 can quickly emit odor through the odor diffusion port 1305, which can attract mosquitoes and effectively improve the mosquito killing efficiency of the mosquito killing component 1205. After the air blowing mechanism 9 is flipped 180 degrees by the flip mechanism 7, the air blowing mechanism 9 blows air in the reverse direction. The wind blown in the reverse direction by the blower mechanism 9 is finally discharged from the hollow rotating part 1201 on the rotary lighting module 12, which can not only quickly blow the smell emitted by the mosquito attractant 1304 to various places in the room, further improving the efficiency of attracting and killing mosquitoes, but also the blower mechanism 9 can quickly blow the smell emitted by the mosquito attractant 1304 to various places in the room, and at the same time, it can quickly take out the heat inside the rotary lighting module 12, and can quickly dissipate the heat of the mosquito killing component 1205. It has various functions and good heat dissipation performance. On the contrary, when switching to the normal lighting mode, the blocking mechanism 11 will automatically reset under the action of the spring member 1105, and can automatically block the odor diffusion port 1305. It has various functions, can effectively kill mosquitoes, and improve the sleep quality of young students.

[0057] Among them, the lamp head 6 includes a protective shell 601 connected to the top end of the lamp post 5 through a hinge assembly and an annular flange 602 provided at one end of the protective shell 601. Shielding covers 603 are symmetrically and fixedly provided on both sides of the protective shell 601, and the rotary lighting module 12 is rotatably arranged inside the shielding cover 603 through a bearing.

[0058] Among them, the flipping mechanism 7 includes an annular kit 701 fixedly arranged inside the front end of the lamp head 6 and connecting shaft rods A702 symmetrically and fixedly arranged on both sides of the annular kit 701. The connecting shaft rods A702 are rotatably inserted through the lamp head 6 through bearings. Driving gears 703 are fixedly sleeved on the outer sides of the connecting shaft rods A702. A rotating wheel 704 is fixedly provided at one end of a group of connecting shaft rods A702. Protective net plates 705 are symmetrically and fixedly provided at both ends of the annular kit 701. By holding the rotating wheel 704, the annular kit 701 can be flipped, and then the blowing mechanism 9 installed in the inner cavity of the annular kit 701 can be flipped. By providing the protective net plates 705, the blowing mechanism 9 can be protected.

[0059] Among them, the clamping mechanism 8 includes a pin rod 801 slidably inserted through the outside of the rotating wheel 704 and positioning holes 802 symmetrically opened on the outside of the protective shell 601. A pull ring 803 and a limit baffle 804 are provided on the outside of the pin rod 801. A return spring 805 is provided between the limit baffle 804 and the rotating wheel 704. Through the clamping mechanism 8, the flipped flipping mechanism 7 can be clamped and fixed, which can prevent the flipping mechanism 7 from shaking and affecting normal use. During specific use, by pulling out the pin rod 801 outward through the pull ring 803, after pulling out one end of the pin rod 801 from the positioning hole 802, the flipping mechanism 7 can be rotated. After the flipping mechanism 7 is flipped, the pull ring 803 is released, and the pin rod 801 will quickly reset under the action of the return spring 805. One end of the pin rod 801 is inserted into another group of positioning holes 802, and the flipping mechanism 7 can be quickly fixed, which can prevent the flipping mechanism 7 from shaking.

[0060] Among them, the blowing mechanism 9 includes a connecting rod member 901 and a double-shaft motor 902. The double-shaft motor 902 is fixedly installed in the inner cavity of the annular kit 701 through the connecting rod member 901. Fan blades 903 are connected to both ends of the double-shaft motor 902 through output shafts. The double-shaft motor 902 can drive the fan blades 903 at both ends to rotate synchronously. When the fan blades 903 rotate, they can blow air in the same direction. When normally used for lighting, the blowing mechanism 9 can blow air forward. It can not only blow air to cool the human body in the hot summer, but also accelerate the air circulation inside the rotary lighting module 12 while blowing air to cool the human body, quickly take out the heat inside the rotary lighting module 12, and effectively improve the heat dissipation performance of the rotary lighting module 12.

[0061] Among them, the linkage mechanism 10 includes a connecting shaft rod B1001 rotatably connected to both sides of the inner cavity of the protective shell 601 through bearings. A linkage gear 1002 and a linkage cam 1003 are fixedly arranged on the outer side of the connecting shaft rod B1001. The linkage gear 1002 is meshed and connected with the driving gear 703. When the linkage mechanism 10 rotates, the rotary lighting module 12 can be driven to rotate through the linkage gear 1002. The LED lighting assembly 1204 on the rotary lighting module 12 can be rotated to the upper part of the inner cavity of the shielding cover 603 for storage, and the mosquito killing assembly 1205 can be rotated and moved to the lower part of the shielding cover 603 to switch to the mosquito killing mode. The blocking mechanism 11 can be driven by the linkage cam 1003. When the blowing mechanism 9 is flipped 180 degrees through the flipping mechanism 7, the blocking mechanism 11 will be misaligned with the odor diffusion port 1305 on the mosquito attracting module 13 under the drive of the linkage cam 1003, and the odor diffusion port 1305 on the mosquito attracting module 13 can be automatically opened;

[0062] The driving gear 703, the linkage gear 1002 and the driven gear 1202 have the same size. By designing the driving gear 703, the linkage gear 1002 and the driven gear 1202 to have the same size, after the flipping mechanism 7 is flipped 180 degrees, the rotary lighting module 12 and the linkage cam 1003 on the linkage mechanism 10 can rotate 180 degrees synchronously.

[0063] Among them, the LED lighting assembly 1204 includes a first mounting plate 12041 fixedly arranged in the inner cavity of the hollow rotating part 1201 and an eye protection lamp cover 12042 fixedly arranged on the outer side of the hollow rotating part 1201. LED lamp beads 12043 are fixedly arranged on the surface of the first mounting plate 12041 at equal intervals. A heat dissipation column A12044 is fixedly arranged at the end of the LED lamp bead 12043. The setting of the eye protection lamp cover 12042 can ensure that the light emitted by the LED lamp beads 12043 is evenly distributed, reduce glare and shadows, and make the eyes feel comfortable. The heat dissipation column A12044 can quickly volatilize the heat generated by the LED lamp beads 12043 into the hollow rotating part 1201. While blowing air to cool the human body through the blowing mechanism 9, the heat generated by the LED lamp beads 12043 can be quickly taken out.

[0064] Among them, the mosquito killing component 1205 includes a second mounting plate 12051 fixedly arranged in the inner cavity of the hollow rotating part 1201 and an electric grid 12052 fixedly arranged on the outer side of the hollow rotating part 1201. Mosquito attracting lamps 12053 are equidistantly fixedly arranged on the surface of the second mounting plate 12051. A heat dissipation column B12054 is fixedly arranged at the end of the mosquito attracting lamp 12053. Mosquitoes can be attracted by the mosquito attracting lamp 12053, and the mosquitoes attracted by the mosquito attracting lamp 12053 can be killed by the electric grid 12052. The heat dissipation column B12054 can quickly evaporate the heat generated by the mosquito attracting lamp 12053 into the hollow rotating part 1201. The hair dryer mechanism 9 can quickly take out the heat generated by the mosquito attracting lamp 12053 while blowing away the mosquito attractant 1304, and can quickly dissipate the heat of the mosquito attracting lamp 12053.

[0065] The mosquito attractant module 13 includes a mosquito attractant storage cylinder 1301 fixedly arranged inside the rear end of the protective shell 601 and a mosquito attractant delivery port 1302 opened at the rear end of the protective shell 601. The mosquito attractant delivery port 1302 is connected with a plug cover 1303 by a thread. The bottom and both sides of the inner cavity of the mosquito attractant storage cylinder 1301 are respectively provided with mosquito attractants 1304 and odor diffusion ports 1305. When the blower mechanism 9 is flipped 180 degrees by the flip mechanism 7, the blocking mechanism 11 will be misaligned with the odor diffusion port 1305 on the mosquito attractant module 13 under the drive of the linkage cam 1003, and the odor diffusion port 1305 on the mosquito attractant module 13 can be automatically opened. After the odor diffusion port 1305 is opened, the mosquito attractant 1304 inside the mosquito attractant module 13 can quickly emit odor through the odor diffusion port 1305, which can attract mosquitoes and effectively improve the mosquito killing effect of the mosquito killing component 1205. Efficiency, and after the hair dryer mechanism 9 is flipped 180 degrees by the flipping mechanism 7, the hair dryer mechanism 9 blows in the reverse direction at this time, and the wind blown out in the reverse direction by the hair dryer mechanism 9 is finally discharged from the hollow rotating part 1201 on the rotary lighting module 12, which can not only quickly blow the smell emitted by the mosquito attractant 1304 to various places in the room, further improving the efficiency of attracting and killing mosquitoes, but also the hair dryer mechanism 9 can quickly blow the smell emitted by the mosquito attractant 1304 to various places in the room, and at the same time, can quickly take out the heat inside the rotary lighting module 12, and can quickly dissipate the heat of the mosquito killing component 1205, with various functions and good heat dissipation performance. On the contrary, when switching to the normal lighting mode, the blocking mechanism 11 will automatically reset under the action of the spring member 1105, and can automatically block the odor diffusion port 1305, with various functions, can effectively kill mosquitoes, and improve the sleep quality of young students.

[0066] Among them, the outer side of the mosquito attractant storage tube 1301 is symmetrically provided with a guide groove 1306, and the positioning slider 1106 is slidably installed inside the guide groove 1306, so that the blocking plate 1104 on the blocking mechanism 11 can slide smoothly on the outer side of the mosquito attractant storage tube 1301.

[0067] During operation, the brightness of the light can be manually adjusted through the touch control panel 4, and the automatic mode or manual mode can be selected. When the automatic mode is selected, the daylighting module 16 can detect the brightness of the surrounding environment. When the brightness of the surrounding environment changes, the daylighting module 16 transmits the collected signal to the single-chip microcomputer controller 15 for processing. The single-chip microcomputer controller 15 can automatically adjust the brightness of the table lamp according to the brightness of the surrounding environment. By setting the human body induction module 18, the human body induction module 18 can detect the human body, and the functions of turning on the light when people come and turning off the light when people leave can be realized, which can effectively save energy. After the table lamp is powered on, the wireless wifi module 17 can automatically connect to the network and the mobile phone. Through the serial port of the single-chip microcomputer controller 15, the mobile phone can communicate with the wireless wifi module 17 to realize remote control;

[0068] During normal lighting use, the blowing mechanism 9 can blow air forward. It can not only blow air to cool the human body in the hot summer, but also accelerate the air circulation inside the rotary lighting module 12 while blowing air to cool the human body, quickly take out the heat inside the rotary lighting module 12, effectively improve the heat dissipation performance of the rotary lighting module 12, and avoid damage to the LED lighting component 1204 inside the rotary lighting module 12 due to excessive temperature. After the intelligent eye-protecting table lamp is used for lighting, the blowing mechanism 9 can be flipped 180 degrees through the flipping mechanism 7. While the blowing mechanism 9 is flipped 180 degrees, the flipping mechanism 7 can drive the linkage mechanism 10 to rotate synchronously through the driving gear 703 at one end. When the linkage mechanism 10 rotates, the rotary lighting module 12 can be driven to rotate through the linkage gear 1002, and the LED lighting component 1204 on the rotary lighting module 12 can be rotated to the upper part of the inner cavity of the shielding cover 603 for storage, and the mosquito killing component 1205 can be rotated and moved to the lower part of the shielding cover 603 to switch to the mosquito killing mode. The mosquito killing component 1205 can effectively kill mosquitoes. Moreover, during the synchronous rotation of the linkage mechanism 10 driven by the flipping mechanism 7, the blocking mechanism 11 can be driven to move through the linkage cam 1003. When the blowing mechanism 9 is flipped 180 degrees through the flipping mechanism 7, the blocking mechanism 11 will be misaligned with the odor diffusion port 1305 on the mosquito attracting module 13 under the drive of the linkage cam 1003, and the odor diffusion port 1305 on the mosquito attracting module 13 can be automatically opened. After the odor diffusion port 1305 is opened, the mosquito attractant 1304 inside the mosquito attracting module 13 can quickly emit odor through the odor diffusion port 1305 to attract mosquitoes, effectively improving the mosquito killing efficiency of the mosquito killing component 1205;

[0069] And after the blowing mechanism 9 is flipped 180 degrees by the flipping mechanism 7, at this time, the blowing mechanism 9 blows air in the reverse direction, and the air blown out by the blowing mechanism 9 in the reverse direction finally discharges from the inside of the hollow rotating part 1201 on the rotary lighting module 12. It can not only quickly blow the smell emitted by the mosquito attractant 1304 to various places in the room, further improving the efficiency of attracting and killing mosquitoes, but also quickly take out the heat inside the rotary lighting module 12 while blowing the smell emitted by the mosquito attractant 1304 to various places in the room, and can quickly dissipate the heat of the mosquito killing component 1205. It has various functions and good heat dissipation performance. On the contrary, when switching to the normal lighting mode, the blocking mechanism 11 will automatically reset under the action of the spring member 1105, and can automatically block the odor diffusion port 1305. It has various functions, can effectively kill mosquitoes, and improve the sleep quality of teenagers and students.

[0070] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An energy-saving, automatically-adjustable, intelligent eye-protection desk lamp, comprising a lamp holder (1), a power switch (2) disposed on the top of the lamp holder (1), a control box (3), and a touch control panel (4) mounted on the front surface of the control box (3), characterized in that: The top of the control box (3) is connected to a lamp pole (5) via a hinge assembly, and the top of the lamp pole (5) is connected to a lamp holder (6) via a hinge assembly. A flip mechanism (7) is provided inside the front end of the lamp holder (6), and a clamping mechanism (8) and a blower mechanism (9) are provided at one end and inside of the flip mechanism (7), respectively. A linkage mechanism (10) is meshedly connected to the outside of the flip mechanism (7), and a rotating lighting module (12) is meshedly connected to the outside of the linkage mechanism (10). A mosquito attracting module (13) is fixedly provided inside the rear end of the lamp holder (6), and blocking mechanisms (11) are slidably connected to both sides of the mosquito attracting module (13). An intelligent control module is provided in the inner cavity of the control box (3).

2. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 1 is characterized in that: The intelligent control module comprises a circuit board (14) fixedly mounted in the inner cavity of a control box (3) by means of screws, a single-chip microcomputer controller (15), a lighting module (16), a wireless wifi module (17), and a human body sensing module (18) are fixedly mounted on the surface of the circuit board (14), and one end of the lighting module (16) and one end of the human body sensing module (18) both pass through the control box (3).

3. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 1 is characterized in that: The blocking mechanism (11) comprises guide plates (1101) symmetrically fixedly arranged on both sides of the mosquito attracting module (13) and a linkage rod (1102) slidably inserted on the guide plate (1101), the two ends of the linkage rod (1102) are respectively fixedly connected with a pulley assembly (1103) and a blocking plate (1104), a spring member (1105) is arranged between the guide plate (1101) and the pulley assembly (1103), and a positioning slider (1106) is arranged on one side of the blocking plate (1104); The rotary lighting module (12) comprises a hollow rotating member (1201) rotatably arranged inside a lamp holder (6) via a bearing, a driven gear (1202) and a dust screen (1203) being fixedly arranged at both ends of the hollow rotating member (1201), and an LED lighting component (1204) and a mosquito killing component (1205) being symmetrically fixedly arranged on the hollow rotating member (1201).

4. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 3 is characterized in that: The lamp holder (6) comprises a protective shell (601) connected to the top of the lamp pole (5) via a hinge assembly and an annular flange (602) arranged at one end of the protective shell (601); shielding covers (603) are symmetrically fixedly arranged on both sides of the protective shell (601); and the rotating lighting module (12) is rotatably arranged inside the shielding cover (603) via a bearing; The flip mechanism (7) comprises an annular sleeve (701) fixedly arranged inside the front end of the lamp holder (6) and connecting shafts A (702) symmetrically fixedly arranged on both sides of the annular sleeve (701), and the connecting shafts A (702) are rotatably inserted and arranged on the lamp holder (6) through bearings, and driving gears (703) are fixedly sleeved on the outer sides of the connecting shafts A (702), and a rotating wheel (704) is fixedly arranged at one end of a group of the connecting shafts A (702), and protective mesh plates (705) are symmetrically fixedly arranged at both ends of the annular sleeve (701).

5. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 4, characterized in that: The clamping mechanism (8) comprises a pin rod (801) slidably inserted on the outside of the rotating wheel (704) and a positioning hole (802) symmetrically opened on the outside of the protective shell (601); a pull ring (803) and a limit baffle (804) are provided on the outside of the pin rod (801); and a return spring (805) is provided between the limit baffle (804) and the rotating wheel (704).

6. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 5, characterized in that: The hair dryer mechanism (9) comprises a connecting rod (901) and a dual-axis motor (902), and the dual-axis motor (902) is fixedly mounted in the inner cavity of the annular sleeve (701) via the connecting rod (901), and both ends of the dual-axis motor (902) are connected to fan blades (903) via output shafts.

7. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 6, characterized in that: The linkage mechanism (10) comprises a connecting shaft B (1001) rotatably connected to both sides of the inner cavity of the protective shell (601) through bearings, a linkage gear (1002) and a linkage cam (1003) are fixedly provided on the outer side of the connecting shaft B (1001), and the linkage gear (1002) is meshingly connected with the driving gear (703); The driving gear (703), the linkage gear (1002) and the driven gear (1202) have the same size.

8. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 7, characterized in that: The LED lighting assembly (1204) comprises a first mounting plate (12041) fixedly arranged in the inner cavity of a hollow rotating member (1201) and an eye protection lampshade (12042) fixedly arranged on the outer side of the hollow rotating member (1201); LED lamp beads (12043) are fixedly arranged at equal intervals on the surface of the first mounting plate (12041); and heat dissipation columns A (12044) are fixedly arranged at the ends of the LED lamp beads (12043).

9. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 8, characterized in that: The mosquito killing component (1205) comprises a second mounting plate (12051) fixedly arranged in the inner cavity of the hollow rotating member (1201) and an electric grid (12052) fixedly arranged on the outer side of the hollow rotating member (1201); mosquito attracting lamps (12053) are fixedly arranged at equal intervals on the surface of the second mounting plate (12051); and a heat dissipation column B (12054) is fixedly arranged at the end of the mosquito attracting lamp (12053).

10. The energy-saving and automatic brightness adjustment intelligent eye-protection desk lamp according to claim 9, characterized in that: The mosquito attractant module (13) comprises a mosquito attractant storage cylinder (1301) fixedly arranged inside the rear end of the protective shell (601) and a mosquito attractant delivery port (1302) opened at the rear end of the protective shell (601); a plug cover (1303) is threadedly connected inside the mosquito attractant delivery port (1302); mosquito attractants (1304) and odor diffusion ports (1305) are respectively provided at the bottom and both sides of the inner cavity of the mosquito attractant storage cylinder (1301); The outer side of the mosquito attractant storage tube (1301) is symmetrically provided with a guide slide groove (1306), and the positioning slider (1106) is slidably installed inside the guide slide groove (1306).

Citation Information

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