Long rope jumping facility with mosquito killer lamp function
By integrating mosquito-killing lamps and cleaning mechanisms into long rope skipping facilities, the problems of traditional long rope skipping facilities requiring two people to operate and the inconvenience of mosquito cleaning are solved. This achieves single-person operation, easy portability, and efficient mosquito killing, making it suitable for outdoor public spaces.
Patent Information
- Application Number
- CN202511999873.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-29
- Publication Date
- 2026-02-17
AI Technical Summary
Traditional long rope skipping equipment requires two people to use, is inconvenient to carry and store, lacks mosquito-repelling function, attracts mosquitoes when in use, and is cumbersome to clean.
A long rope skipping device with a mosquito-killing lamp function was designed, including components such as a mosquito-killing lamp cover, a bottom cover, bearings, a reciprocating screw, a motor, a cleaning ring, and a brush. The motor drives the reciprocating screw to rotate, which in turn moves the cleaning ring and the brush to clean mosquitoes. At the same time, the mosquito-killing lamp cover focuses ultraviolet light to enhance the attraction effect, the electric grid shocks mosquitoes, the LCD screen displays the power level, and the generator generates electricity.
It achieves single-person operation, easy portability and cleaning, enhances mosquito killing effect, improves user experience and practice efficiency, and is suitable for outdoor public spaces.
Smart Images

Figure CN121534362A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of long rope skipping facilities, specifically a long rope skipping facility with a mosquito-killing lamp function. Background Technology
[0002] Long rope skipping equipment is a type of sports equipment used for group jump rope games. It mainly consists of one or more long ropes, a rope-swinging pole, and related support structures, and is commonly found in schools, kindergartens, or children's playgrounds. Its core components include the rope (usually made of hemp rope, nylon rope, or fiber rope) and the rope-swinging device. Some equipment is equipped with a frame to secure the rope and ensure stability during swinging. This type of equipment is designed with safety and interactivity in mind. The rope length is adjustable to accommodate different numbers of participants, and it is commonly used in competitive or recreational activities such as figure-eight jumps and group jumps. In early childhood physical activities, long rope skipping equipment is often used as part of parkour, basketball relays, and other projects, emphasizing the development of teamwork and coordination. The materials used are often durable and soft to prevent sports injuries, while the colorful and varied designs enhance the fun.
[0003] However, common long rope skipping equipment requires two people to use, making it inconvenient for students to carry to and from school. It is not only difficult to carry but also difficult to store, greatly reducing the efficiency of students' practice. Moreover, common long rope skipping equipment does not have a mosquito-killing function, which attracts a lot of mosquitoes when used outdoors. Furthermore, cleaning the mosquito-killing lamp requires disassembly, making the cleaning process more complicated. After cleaning, it also needs to be reinstalled, which makes the mosquito-killing inefficiency less convenient and reduces the user's experience. Summary of the Invention
[0004] The purpose of this invention is to provide a long rope skipping device with a mosquito-killing lamp function in order to solve the problems mentioned above.
[0005] The technical solution adopted in this invention is as follows: A long rope skipping device with a mosquito-killing lamp function includes a mosquito-killing lamp top cover and a mosquito-killing lamp bottom cover. A bearing is installed on the upper surface of the mosquito-killing lamp bottom cover. A reciprocating screw is connected to the upper inner surface of the bearing. A motor is provided on the upper top surface of the reciprocating screw. A threaded block is slidably connected to the outer surface of the reciprocating screw. A sliding rod is fixedly connected to the upper surface of the mosquito-killing lamp bottom cover. A limit cap is installed on the upper top surface of the sliding rod. A slider is slidably sleeved on the outer surface of the sliding rod. A cleaning ring is fixedly connected to the inner surface of the threaded block and the slider. A cleaning plate is provided on the inner surface of the cleaning ring. A brush is installed on the outer surface of the cleaning plate.
[0006] By adopting the above technical solution, the bearings prevent the reciprocating screw from tilting during rotation, thus avoiding any impact on the cleaning effect on the grid surface. The installed motor drives the reciprocating screw to rotate, causing the threaded blocks on its surface to move up and down. This, in turn, drives the inner cleaning ring to clean insects from the grid surface. The up-and-down movement of the cleaning ring synchronously moves a slider on one side of the slide bar, ensuring smoother movement of the inner cleaning ring and preventing deviations and errors that could lead to poor cleaning results. This design ensures adaptability and... Smooth operation is ensured by installing a limit cap at the top of the slide bar, preventing the slider from detaching from the surface of the slide bar during up-and-down movement. This provides anti-loosening protection and allows the cleaning mechanism to operate more stably and safely. The synchronous up-and-down movement of the threaded block and the slider drives the inner cleaning ring, which in turn drives the inner cleaning plate and brush to move up and down reciprocally, thus cleaning mosquitoes from the inner electric grid surface. The cleaning mechanism allows for easy cleaning of mosquitoes without disassembling the mosquito killer lamp, providing both protection and cleanliness.
[0007] In a preferred embodiment, a mosquito-killing lamp cover is connected to the lower surface of the mosquito-killing lamp top cover. An ultraviolet lamp tube is installed on the inner surface of the mosquito-killing lamp cover. A mosquito-killing lamp bottom cover is connected to the lower bottom surface of the ultraviolet lamp tube. An electric grid is installed on the outer surface of the ultraviolet lamp tube. A liquid crystal screen housing is connected to the lower surface of the mosquito-killing lamp cover. A first decorative light strip is installed between the mosquito-killing lamp cover and the liquid crystal screen housing. A screen opening is formed on the outer surface of the liquid crystal screen housing. A liquid crystal screen is installed on the inner surface of the screen opening. An engine housing is installed on the lower surface of the liquid crystal screen housing. A second decorative light strip is provided between the liquid crystal screen housing and the engine housing. A jump rope hook is installed on one side surface of the engine housing. A base housing is fixedly connected to the lower surface of the engine housing. A third decorative light strip is installed between the engine housing and the base housing.
[0008] By adopting the above technical solutions, the installed mosquito-killing lamp cover can prevent dust, rainwater, and debris from entering the lamp, avoiding contamination or damage to key internal components and thus extending the lifespan of the equipment. The installed lamp cover can focus and guide the light emitted by the ultraviolet lamp tube, allowing the light to be emitted more concentratedly, enhancing the attraction to mosquitoes. The installed ultraviolet lamp tube can simulate the light source environment that mosquitoes prefer, thereby improving the attraction effect and increasing the efficiency of mosquito killing. The installed electric grid can kill mosquitoes by electric shock, thus achieving the purpose of mosquito elimination. The installed bottom cover can seal the bottom of the mosquito-killing lamp, preventing mosquitoes from escaping from the bottom, and also providing a certain degree of protection for the internal components, making it both protective and practical. The installed LCD screen shell can prevent external... The design prevents impact and dust from entering, ensuring stable operation of the LCD screen and serving to fix and protect it. The screen openings provide space for the LCD screen while maximizing its screen-to-body ratio, making it more stable. The installed LCD screen displays the charging status, allowing users to quickly and conveniently observe the charge level. The installed engine housing protects the internal power generation components from damage caused by external factors. The installed rope hook allows for easy storage of long ropes for future use. The installed first, second, and third decorative light strips emit soft light, making the mosquito killer lamp more visible at night and enhancing its aesthetics, thus providing convenience and comprehensive functionality.
[0009] In a preferred embodiment, a generator housing bottom cover is installed on the inner lower surface of the engine housing, a bottom cover is connected to the upper surface of the generator housing bottom cover, a bottom cover screw hole is opened on the inner side surface of the bottom cover, and a battery bracket screw hole is opened on the inner surface of the bottom cover.
[0010] By adopting the above technical solution, the installed generator housing bottom cover can make the generator on top more stable for operation and use. The installed bottom cover can protect the generator inside. The installed second decorative light strip can be fixedly connected to the generator top cover. The installed battery bracket screw holes can be fixedly connected to the battery mounting bracket, thus providing protection and fixation.
[0011] In a preferred embodiment, the inner front surface of the bottom cover is provided with a belt drive wheel groove, a drive shaft fixing hole is provided behind the belt drive wheel groove, a generator opening is provided on the rear surface of the belt drive wheel groove, a ring of generator fixing screw holes is provided on the outer surface of the generator opening, and a generator groove is provided on the inner surface of the bottom cover.
[0012] By adopting the above technical solution, the belt drive pulley slot can be used to engage and match with the belt drive pulley, the drive shaft fixing hole can be used to fix the drive shaft, the generator opening can make the generator more stable, and the generator fixing screw hole can be used to fix and connect with the generator screw hole, thus giving it stability and fixation.
[0013] In a preferred embodiment, a generator cover is mounted on the upper surface of the bottom cover, and screw holes for the generator cover are provided on the outer surface of the generator cover.
[0014] By adopting the above technical solution, the installed generator top cover can be bolted to the bottom cover and the generator front cover, thereby better protecting the internal components. The screw holes of the top cover can be fixedly connected with the screw holes of the bottom cover and the screw holes of the top cover connection, thereby making the protective shell more stable and giving it protective and stable properties.
[0015] In a preferred embodiment, a battery is mounted on the inner surface of the bottom cover, a battery mounting bracket is mounted on the outer surface of the battery, the battery mounting bracket is fixedly connected to the screw holes of the battery bracket, a battery wire is connected to the outer surface of the front end of the battery, and a battery plug is mounted on one end of the battery wire.
[0016] By adopting the above technical solution, the installed battery can not only provide power but also store electrical energy. The installed battery bracket can make the battery inside more stable and avoid the danger caused by shaking. The installed battery wires can connect the battery to the circuit board, and the wire sockets can be inserted into the wire sockets on the circuit board, making it versatile and safe.
[0017] In a preferred embodiment, a circuit board is mounted on the upper inner surface of the bottom cover, and wire sockets are provided on both sides of the circuit board.
[0018] By adopting the above technical solution, the installed circuit board can be used to manage the charging and discharging process of the battery. During charging, the charging current and voltage will be reasonably allocated according to the battery's charge status to prevent overcharging and thus extend the battery's lifespan. The provided wire socket allows it to be connected to the wire socket and generator plug, enabling the battery and generator to be controlled through the circuit board, making it comprehensive and practical.
[0019] In a preferred embodiment, a generator is mounted on the upper inner surface of the bottom cover, a generator wire is connected to one end of the generator, a generator plug is mounted on one end of the generator wire, a belt-connected gear is mounted on the outer front surface of the generator, and a generator screw hole is provided on one side surface of the generator.
[0020] By adopting the above technical solution, the installed generator can not only power the mosquito-killing lamp, but also store electrical energy in the battery, realizing the device's self-sufficiency in power supply when there is no fixed power source outdoors. The installed generator wire can safely and stably transmit the electrical energy generated by the generator from inside the generator to the circuit board. The installed belt connecting gear can effectively transmit the power of the long rope rotation to the generator, making it versatile and stable.
[0021] In a preferred embodiment, a drive belt is provided on the outer surface of the belt-connected gear, a belt conveyor wheel is installed on the outer surface of the drive belt, a drive shaft insertion hole is opened on the inner surface of the belt conveyor wheel, a generator front cover is installed on the front end surface of the bottom cover, and a front cover screw hole is opened on the outer surface of the drive shaft opening.
[0022] By adopting the above technical solution, the power generated by the rotation of the long rope can be smoothly and effectively transmitted from the belt connecting gear to the belt conveyor pulley through the installed transmission belt. The screw holes of the front cover can make the connection between the bottom cover and the generator front cover more stable, so that it has adaptability and stability.
[0023] In a preferred embodiment, the upper surface of the generator front cover has a cover connecting screw hole, the front end surface of the generator front cover has a drive shaft opening, one side surface of the engine housing has a motor shaft opening, the inner surface of the motor shaft opening is fitted with a drive shaft, one side surface of the drive shaft is connected to a drive shaft connector, the upper surface of the drive shaft connector has a jump rope hole, the inner surface of the jump rope hole is connected to a long rope, and one end of the long rope is fixedly fitted with a long rope handle.
[0024] By adopting the above technical solution, the openings in the drive shaft and motor shaft facilitate the insertion of the drive shaft into the belt-connecting gear. When the user shakes the long rope, the rope drives the drive shaft, which in turn moves the belt drive belt through the belt-connecting gear, thus driving the belt-driven pulley to rotate. The openings in the jump rope hole facilitate the fixing of the long rope to the surface of the drive shaft, making it convenient and practical. The design of the long rope handle conforms to ergonomics, making it easy for users to hold, and the length of the long rope is adjustable, thus adapting to different usage needs and making it comprehensive and adaptable.
[0025] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: This invention provides a long rope skipping device suitable for outdoor public spaces such as residential areas, squares, and schools. It also serves as a device for both long rope skipping and mosquito control. To use it, the long rope is first removed from the hook. One person unfolds the rope and swings it while others jump in teams. The rotation of the rope powers a hand-cranked generator, which in turn powers the mosquito-killing lamp. This product requires no fixed power supply, making it suitable for a wider range of applications and saving energy. It also solves the problem of requiring two people to jump rope. For elementary school students, long rope skipping is an essential physical activity. This product eliminates the need to carry the rope; it can be operated by one person and is easy to store, allowing for practice anytime, anywhere, greatly improving students' practice efficiency. The mosquito-killing lamp also repels mosquitoes, enhancing the outdoor experience.
[0026] 2. The installed motor drives the reciprocating screw to rotate, which in turn causes the threaded block on its surface to move up and down. This, in turn, causes the inner cleaning ring to move up and down. The up and down movement of the cleaning ring causes the inner cleaning plate and brush to move up and down together, thus cleaning mosquitoes on the inner electric grid surface. The cleaning mechanism allows for easy cleaning of mosquitoes without disassembling the mosquito killer lamp, providing both protection and cleanliness. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the bottom cover structure of the mosquito-killing lamp in this invention; Figure 3 This is a schematic diagram of the screen opening structure in this invention; Figure 4 This is a schematic diagram of the jump rope hook structure in this invention; Figure 5 This is a schematic diagram of the generator cover structure in this invention; Figure 6 This is a schematic diagram of the circuit board structure in this invention; Figure 7 This is a schematic diagram of the generator structure in this invention; Figure 8 This is a schematic diagram of the generator front cover structure in this invention; Figure 9 This is a schematic diagram of the bottom cover structure in this invention; Figure 10 This is a schematic diagram of the cleaning mechanism structure in this invention.
[0028] Marked in the diagram: 1. Top cover of mosquito killer lamp; 2. Mosquito killer lamp cover; 3. Electric grid; 4. Ultraviolet lamp tube; 5. Bottom cover of mosquito killer lamp; 6. First decorative light strip; 7. Screen opening; 8. LCD screen; 9. LCD screen housing; 10. Second decorative light strip; 11. Generator housing; 12. Jump rope hook; 13. Motor shaft opening; 14. Bottom cover of generator housing; 15. Third decorative light strip; 16. Base housing; 17. Generator top cover; 18. Top cover screw holes; 19. Battery mounting bracket; 20. Battery; 21. Battery wire; 22. Battery plug; 23. Circuit board; 24. Wire socket; 25. Generator; 26. Generator wire; 27. Generator plug; 28. Generator screw holes; 29. Belt connecting gear. 30. Drive belt; 31. Belt pulley; 32. Drive shaft insertion hole; 33. Top cover connecting screw hole; 34. Drive shaft opening; 35. Generator front cover; 36. Front cover screw hole; 37. Drive shaft; 38. Drive shaft connector; 39. Jump rope through hole; 40. Bottom cover screw hole; 41. Bottom cover; 42. Battery bracket screw hole; 43. Generator opening; 44. Generator slot; 45. Generator fixing screw hole; 46. Drive shaft fixing hole; 47. Belt pulley slot; 48. Long rope; 49. Long rope handle; 50. Bearing; 51. Threaded block; 52. Cleaning ring; 53. Cleaning plate; 54. Reciprocating screw; 55. Motor; 56. Slide rod; 57. Slider; 58. Brush; 59. Limit cap. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0030] Example
[0031] Reference Figure 1-10A long rope skipping device with a mosquito-killing lamp function includes a mosquito-killing lamp top cover 1 and a mosquito-killing lamp bottom cover 5. A bearing 50 is installed on the upper surface of the mosquito-killing lamp bottom cover 5. A reciprocating screw 54 is connected to the upper inner surface of the bearing 50. A motor 55 is provided on the upper top surface of the reciprocating screw 54. A threaded block 51 is slidably connected to the outer surface of the reciprocating screw 54. The bearing 50 prevents the reciprocating screw 54 from tilting during rotation, thus avoiding any impact on the cleaning effect on the surface of the electric grid 3. The installed motor 55 drives the reciprocating screw 54 to rotate, causing the threaded block 51 on its surface to move up and down. This, in turn, drives the inner cleaning ring 52 to clean insects from the surface of the electric grid 3. The up-and-down movement of the cleaning ring 52 causes the slider 57 on one side to move synchronously on the surface of the slide rod 56, making the up-and-down movement of the inner cleaning ring 52 smoother and preventing deviations and errors that could lead to poor cleaning results. This ensures the cleaning ring 52 is adaptable and smooth.
[0032] Reference Figure 1-10 A sliding rod 56 is fixedly connected to the upper surface of the mosquito killer lamp bottom cover 5. A limit cap 59 is installed on the upper top surface of the sliding rod 56. A slider 57 is slidably sleeved on the outer surface of the sliding rod 56. A cleaning ring 52 is fixedly connected to the inner surface of the threaded block 51 and the slider 57. A cleaning plate 53 is provided on the inner surface of the cleaning ring 52. A brush 58 is installed on the outer surface of the cleaning plate 53. By installing a limit cap 59 at the top of the slide bar 56, the slider 57 will not detach from the surface of the slide bar 56 when moving up and down, thus providing anti-loosening protection. This allows the cleaning mechanism to operate more stably and safely. The synchronous up and down movement of the threaded block 51 and the slider 57 drives the inner cleaning ring 52 to move, which in turn drives the inner cleaning plate 53 and the brush 58 to move up and down together, thereby cleaning mosquitoes on the surface of the inner electric grid 3. The cleaning mechanism allows for easy cleaning of mosquitoes without disassembling the mosquito killer lamp, providing both protection and cleanliness.
[0033] Reference Figure 1-4A long rope skipping device with a mosquito-killing lamp function includes a mosquito-killing lamp cover 1, a mosquito-killing lamp shade 2 connected to the lower surface of the mosquito-killing lamp cover 1, an ultraviolet lamp tube 4 installed on the inner surface of the mosquito-killing lamp shade 2, a mosquito-killing lamp bottom cover 5 connected to the lower bottom surface of the ultraviolet lamp tube 4, and an electric grid 3 installed on the outer surface of the ultraviolet lamp tube 4. The installed mosquito-killing lamp cover 1 prevents dust, rainwater, and debris from entering the lamp, avoiding contamination or damage to key internal components and extending the lifespan of the device. The installed mosquito-killing lamp cover 2 focuses and guides the light emitted by the ultraviolet lamp tube 4, allowing the light to be emitted more concentratedly and enhancing the attraction to mosquitoes. The installed ultraviolet lamp tube 4 simulates the light source environment that mosquitoes prefer, thereby improving the attraction effect and increasing the efficiency of mosquito killing. The installed electric grid 3 can kill mosquitoes by electric shock, thus achieving the purpose of mosquito killing. The installed mosquito-killing lamp bottom cover 5 seals the bottom of the lamp, preventing mosquitoes from escaping from the bottom, and also provides a certain degree of protection for the internal components, making it both protective and practical.
[0034] Reference Figure 1-4 A liquid crystal screen housing 9 is connected to the lower surface of the mosquito-killing lamp cover 2. A first decorative light strip 6 is installed between the mosquito-killing lamp cover 2 and the liquid crystal screen housing 9. A screen opening 7 is opened on the outer surface of the liquid crystal screen housing 9. A liquid crystal screen 8 is installed on the inner surface of the screen opening 7. An engine housing 11 is installed on the lower surface of the liquid crystal screen housing 9. A second decorative light strip 10 is installed between the liquid crystal screen housing 9 and the engine housing 11. A jump rope hook 12 is installed on one side surface of the engine housing 11. A base housing 16 is fixedly connected to the lower surface of the engine housing 11. A third decorative light strip 15 is installed between the engine housing 11 and the base housing 16. The installed LCD screen housing 9 prevents external impacts and dust from entering, ensuring the stable operation of the LCD screen 8 and thus serving to fix and protect it. The screen opening 7 provides space for the LCD screen 8 and maximizes its screen ratio, making it more stable. The installed LCD screen 8 can display the charging level, allowing users to quickly and conveniently observe the charge level. The installed engine housing 11 protects the internal power generation components from damage caused by external influences. The installed jump rope hook 12 allows the long rope 48 to be stored on its surface for easy access next time. The installed first decorative light strip 6, second decorative light strip 10, and third decorative light strip 15 emit soft light, making the mosquito killer lamp more visible at night and increasing the aesthetics of the device, making it convenient and comprehensive.
[0035] Reference Figure 1-9A generator housing bottom cover 14 is installed on the lower inner surface of the engine housing 11. A bottom cover 41 is connected to the upper surface of the generator housing bottom cover 14. Bottom cover screw holes 40 are opened on the inner side surface of the bottom cover 41, and battery bracket screw holes 42 are opened on the inner surface of the bottom cover 41. The installed generator housing bottom cover 14 can make the generator 25 on it more stable to operate. The installed bottom cover 41 can protect the generator 25 inside. The installed second decorative light strip 10 can be fixedly connected to the generator top cover 17. The installed battery bracket screw holes 42 can be fixedly connected to the battery mounting bracket 19, so as to provide protection and fixation.
[0036] Reference Figure 9 The inner front surface of the bottom cover 41 has a belt drive pulley groove 47, a drive shaft fixing hole 46 is provided behind the belt drive pulley groove 47, a generator opening 43 is provided on the rear surface of the belt drive pulley groove 47, and a ring of generator fixing screw holes 45 is provided on the outer surface of the generator opening 43. The inner surface of the bottom cover 41 has a generator groove 44. The belt drive pulley groove 47 allows it to be engaged with the belt drive pulley 31, the drive shaft fixing hole 46 allows it to be used to fix the drive shaft 37, the generator opening 43 makes the generator 25 more stable, and the generator fixing screw holes 45 allow it to be fixedly connected with the generator screw holes 28, giving it stability and fixation.
[0037] Reference Figure 5-9 A generator cover 17 is installed on the upper surface of the bottom cover 41, and a cover screw hole 18 is provided on the outer surface of the generator cover 17. The installed generator cover 17 can be bolted to the bottom cover 41 and the generator front cover 35 below, thereby better protecting the internal components. The cover screw hole 18 can be fixedly connected with the bottom cover screw hole 40 and the cover connection screw hole 33, thereby making the protective shell more stable and providing protection and stability.
[0038] Reference Figure 6-9 A battery 20 is installed on the inner surface of the bottom cover 41, and a battery holder 19 is installed on the outer surface of the battery 20. The battery holder 19 is fixedly connected to the battery bracket screw hole 42. A battery wire 21 is connected to the outer surface of the front end of the battery 20, and a battery plug 22 is installed on one end of the battery wire 21. The installed battery 20 can not only provide power but also store electrical energy. The installed battery holder 19 can make the battery 20 inside more stable and avoid the danger caused by shaking. The installed battery wire 21 can connect the battery 20 to the circuit board 23, and it can be inserted into the wire socket 24 in the circuit board 23 through the wire socket 24, which makes it versatile and safe.
[0039] Reference Figure 6-9 A circuit board 23 is mounted on the upper inner surface of the bottom cover 41, and wire sockets 24 are provided on both sides of the circuit board 23. The circuit board 23 can be used to manage the charging and discharging process of the battery 20. During charging, it will reasonably allocate the charging current and voltage according to the battery 20's charge status to prevent overcharging and thus extend the battery 20's lifespan. The wire sockets 24 allow it to connect to the generator plug 27, enabling control between the battery 20 and the generator 25 via the circuit board 23, making it comprehensive and practical.
[0040] Reference Figure 7-9 A generator 25 is installed on the upper inner surface of the bottom cover 41. A generator wire 26 is connected to one end of the generator 25, and a generator plug 27 is installed on one end of the generator wire 26. A belt-connecting gear 29 is installed on the outer front surface of the generator 25, and a generator screw hole 28 is opened on one side surface of the generator 25. The installed generator 25 can not only power the mosquito killer lamp, but also store electrical energy in the battery 20, realizing the self-sufficiency of the device in the absence of a fixed power source outdoors. The installed generator wire 26 can safely and stably transmit the electrical energy generated by the generator 25 to the circuit board 23. The installed belt-connecting gear 29 can effectively transmit the power of the rotation of the long rope 48 to the generator 25, making it versatile and stable.
[0041] Reference Figure 7-8 A drive belt 30 is mounted on the outer surface of the belt-connecting gear 29, and a belt pulley 31 is mounted on the outer surface of the drive belt 30. A drive shaft insertion hole 32 is provided on the inner surface of the belt pulley 31. A generator front cover 35 is mounted on the front surface of the bottom cover 41, and a front cover screw hole 36 is provided on the outer surface of the drive shaft opening 34. The installed drive belt 30 can smoothly and effectively transmit the power generated by the rotation of the long rope 48 from the belt-connecting gear 29 to the belt pulley 31. The front cover screw hole 36 makes the connection between the bottom cover 41 and the generator front cover 35 more secure, giving it adaptability and stability.
[0042] Reference Figure 1-8The upper surface of the generator front cover 35 has a cover connecting screw hole 33, the front surface of the generator front cover 35 has a drive shaft opening 34, the side surface of the engine housing 11 has a motor shaft opening 13, the inner surface of the motor shaft opening 13 is fitted with a drive shaft 37, the side surface of the drive shaft 37 is connected with a drive shaft connector 38, the upper surface of the drive shaft connector 38 has a jump rope hole 39, the inner surface of the jump rope hole 39 is connected with a long rope 48, and one end of the long rope 48 is fixedly fitted with a long rope handle 49. The openings 34 for the drive shaft and 13 for the motor shaft allow the drive shaft 37 to be easily inserted into its surface and connected to the belt connecting gear 29. When the user shakes the long rope 48, the long rope 48 drives the drive shaft 37, which in turn causes the drive belt 30 to move through the belt connecting gear 29, thereby driving the belt transmission wheel 31 to rotate. The openings 39 for the jump rope allow the long rope 48 to be easily fixedly connected to the surface of the drive shaft 37, making it convenient and practical. The design of the long rope handle 49 is ergonomic, making it easy for the user to hold. The length of the long rope 48 is adjustable, allowing it to adapt to different usage needs, making it comprehensive and adaptable.
[0043] The implementation principle of the jump rope device with mosquito-killing lamp function of the present invention is as follows: The bearing 50 prevents the reciprocating screw 54 from tilting during rotation, which would affect the cleaning effect on the surface of the electric grid 3. The installed motor 55 drives the reciprocating screw 54 to rotate, thereby causing the threaded block 51 on its surface to move up and down. This, in turn, drives the inner cleaning ring 52 to clean mosquitoes from the surface of the electric grid 3. The up and down movement of the cleaning ring 52 drives the slider 57 on one side to move synchronously on the surface of the slide rod 56, thus making the up and down movement of the inner cleaning ring 52 smoother and preventing deviation and errors that would affect the cleaning effect. To ensure adaptability and smooth operation, a limit cap 59 is installed at the top of the slide bar 56 to prevent the slider 57 from detaching from the surface of the slide bar 56 during up-and-down movement, thus providing anti-loosening protection. This allows the cleaning mechanism to operate more stably and safely. The synchronous up-and-down movement of the threaded block 51 and the slider 57 drives the inner cleaning ring 52 to move, which in turn drives the inner cleaning plate 53 and brush 58 to move up and down together, thus cleaning mosquitoes on the surface of the inner electric grid 3. The cleaning mechanism allows for easy cleaning of mosquitoes without disassembling the mosquito killer lamp, providing both protection and cleanliness.
[0044] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A jumping rope facility with a mosquito-killing lamp function, comprising a mosquito-killing lamp upper cover (1) and a mosquito-killing lamp lower cover (5), characterized in that: The upper surface of the mosquito killer lamp bottom cover (5) is provided with a bearing (50), the upper surface of the inner side of the bearing (50) is connected with a reciprocating lead screw (54), the upper top surface of the reciprocating lead screw (54) is provided with a motor (55), the outer surface of the reciprocating lead screw (54) is slidably connected with a threaded block (51), the upper surface of the mosquito killer lamp bottom cover (5) is fixedly connected with a sliding rod (56), the upper top surface of the sliding rod (56) is provided with a limiting cap (59), the outer surface of the sliding rod (56) is slidably sleeved with a sliding block (57), the inner surface of the threaded block (51) and the sliding block (57) is fixedly connected with a cleaning ring (52), the inner surface of the cleaning ring (52) is provided with a cleaning plate (53), and the outer surface of the cleaning plate (53) is provided with a brush (58).
2. A jumping rope apparatus with a mosquito-killing light function according to claim 1, characterized in that: The lower surface of the mosquito killer lamp upper cover (1) is connected with a mosquito killer lamp cover (2), the inner surface of the mosquito killer lamp cover (2) is provided with an ultraviolet lamp (4), the lower bottom surface of the ultraviolet lamp (4) is connected with a mosquito killer lamp bottom cover (5), the outer surface of the ultraviolet lamp (4) is provided with a power grid (3), the lower surface of the mosquito killer lamp cover (2) is connected with a liquid crystal screen shell (9), the first decorative lamp strip (6) is arranged between the mosquito killer lamp cover (2) and the liquid crystal screen shell (9), the outer surface of the liquid crystal screen shell (9) is provided with a screen opening (7), the inner surface of the screen opening (7) is provided with a liquid crystal screen (8), the lower surface of the liquid crystal screen shell (9) is provided with an engine shell (11), the second decorative lamp strip (10) is arranged between the liquid crystal screen shell (9) and the engine shell (11), the side surface of the engine shell (11) is provided with a skipping rope hook (12), the lower surface of the engine shell (11) is fixedly connected with a base shell (16), and the third decorative lamp strip (15) is arranged between the engine shell (11) and the base shell (16).
3. A jumping rope apparatus with a mosquito-killing light function according to claim 2, characterized in that: The inner lower surface of the engine shell (11) is provided with a generator shell bottom cover (14), the upper surface of the generator shell bottom cover (14) is connected with a bottom cover (41), the inner surface of the bottom cover (41) is provided with a bottom cover screw hole (40), and the inner surface of the bottom cover (41) is provided with a battery support screw hole (42).
4. A jumping rope apparatus with a mosquito-killing light function as claimed in claim 3, characterized in that: The inner front surface of the bottom cover (41) is provided with a belt transmission wheel clamping groove (47), the rear of the belt transmission wheel clamping groove (47) is provided with a transmission shaft fixing hole (46), the rear surface of the belt transmission wheel clamping groove (47) is provided with a generator opening (43), a circle of generator fixing screw holes (45) is arranged on the outer surface of the generator opening (43), and the inner surface of the bottom cover (41) is provided with a generator clamping groove (44).
5. A jumping rope apparatus with a mosquito-killing light function according to claim 4, characterized in that: The upper surface of the bottom cover (41) is provided with a generator upper cover (17), and the outer surface of the generator upper cover (17) is provided with an upper cover screw hole (18).
6. A jumping rope apparatus with a mosquito-killing light function as claimed in claim 5, characterized in that: The inside surface of the bottom cover (41) is mounted with a battery (20), the outside surface of the battery (20) is mounted with a battery fixing frame (19), the battery fixing frame (19) is fixedly connected with a battery support screw hole (42), the front end outside surface of the battery (20) is connected with a battery wire (21), and one end surface of the battery wire (21) is mounted with a battery plug (22).
7. A jumping rope apparatus with a mosquito-killing light function as claimed in claim 6, characterized in that: The upper inside surface of the bottom cover (41) is mounted with a circuit board (23), and both side surfaces of the circuit board (23) are provided with wire sockets (24).
8. A jumping rope apparatus with a mosquito-killing light function as claimed in claim 7, characterized in that: The upper inside surface of the bottom cover (41) is mounted with a generator (25), one end surface of the generator (25) is connected with a generator wire (26), one end surface of the generator wire (26) is mounted with a generator plug (27), the front end outside surface of the generator (25) is mounted with a belt connecting gear (29), and one side surface of the generator (25) is provided with a generator screw hole (28).
9. A jumping rope apparatus with a mosquito-killing light function as claimed in claim 8, characterized in that: The outside surface of the belt connecting gear (29) is provided with a transmission belt (30), the outside surface of the transmission belt (30) is mounted with a belt transmission wheel (31), the inside surface of the belt transmission wheel (31) is provided with a transmission shaft insertion hole (32), the front end surface of the bottom cover (41) is mounted with a generator front cover (35), the outside surface of the transmission shaft opening (34) is provided with a front cover screw hole (36).
10. A jumping rope apparatus with a mosquito-killing light function as claimed in claim 9, characterized in that: The upper surface of the generator front cover (35) is provided with an upper cover connecting screw hole (33), the front end surface of the generator front cover (35) is provided with a transmission shaft opening (34), one side surface of the engine shell (11) is provided with a motor rotating shaft opening (13), the inside surface of the motor rotating shaft opening (13) is mounted with a transmission shaft (37), one side surface of the transmission shaft (37) is connected with a transmission shaft connector (38), the upper surface of the transmission shaft connector (38) is provided with a skipping rope perforation (39), the inside surface of the skipping rope perforation (39) is connected with a long rope (48), and one end surface of the long rope (48) is fixedly mounted with a long rope handle (49).