Shoe lamp with mosquito repelling function

By integrating 570-590nm wavelength LED beads and vibration sensors into the shoes, mosquito-repellent shoe lights can be automatically or manually controlled, solving the problems of mosquito bites and light attraction, improving the comfort of outdoor activities and the aesthetics of the shoes.

CN223499441UActive Publication Date: 2025-10-31深圳市特力电器有限公司
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Patent Information

Application Number
CN202422998643.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-31
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

In the current technology, shoes are easily bitten by mosquitoes when outdoors, and lights easily attract mosquitoes, so mosquito repellent lamp beads are rarely used in the market.

Method used

Design a shoe lamp with mosquito repellent function, using LED beads in the 570~590nm wavelength band, combined with a vibration sensor and control IC, to automatically or manually control the light module, so as to realize the functions of mosquito repellent and shoe beautification.

Benefits of technology

Effectively repels mosquitoes, enhances comfort during outdoor activities, and also beautifies shoes, adapting to different usage scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a shoe lamp with a mosquito repelling function, which comprises a first circuit board, the first circuit board is arranged in a groove body arranged on a sole of a shoe, a control IC (integrated circuit) is embedded on the surface of the first circuit board, and a vibration sensor electrically connected with the control IC is arranged on the first circuit board on the outer side of the control IC. The first circuit board is externally connected with a light module through a circuit, the first circuit board is externally connected with a controller through a circuit, the controller is connected to the circuit between the light module and the first circuit board, the first circuit board is externally connected with a power module through a circuit, and the power module is located in the groove body space on the outer side of the circuit board. The light module comprises a second circuit board, first light sources and second light sources, a plurality of first light sources and second light sources are embedded in the surface of the second circuit board, the first light sources are mosquito-repelling LED light sources, the first light sources in the light module adopt LED lamp beads with the light-emitting wave band ranging from 570 nm to 590 nm, and light emitted by the LED lamp beads can achieve the good mosquito-repelling effect.
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Description

Technical Field

[0001] This utility model relates to the field of shoe lamp technology, specifically a shoe lamp with mosquito repellent function. Background Technology

[0002] A shoe light is a small light fixture used on shoes. It illuminates the shoes as the user walks, thus enhancing their appearance.

[0003] People often encounter mosquito bites when engaging in outdoor activities, especially at night when there is little sunlight. The probability of being bitten is quite high if people don't move. Secondly, people rely on light sources for nighttime activities, and because mosquitoes are attracted to light, the light emitted by lamps easily attracts them. Without proper mosquito prevention measures, people's outdoor activities can be severely affected. Although mosquito-repellent LEDs are now available on the market, which emit light waves of 530-590nm that are uncomfortable for mosquitoes, their application in clothing items remains limited. Utility Model Content

[0004] To address the technical deficiencies in the background technology, this utility model proposes a shoe lamp with mosquito-repellent function, which solves the aforementioned technical problems and meets practical needs. The specific technical solution is as follows:

[0005] This utility model discloses a shoe lamp with mosquito-repellent function. The shoe lamp includes a first circuit board, which is disposed in a groove in the sole of a shoe. A control IC is embedded on the surface of the first circuit board. A vibration sensor electrically connected to the control IC is provided on the first circuit board outside the control IC. A light module is externally connected to the first circuit board through a circuit. The light module is electrically connected to the control IC. A controller is externally connected to the first circuit board through a circuit. The controller is connected to the circuit between the light module and the first circuit board. A power module is externally connected to the first circuit board through a circuit. The power module is located in the groove space outside the circuit board. The power module is electrically connected to the control IC, the vibration sensor, the light module, and the controller. The light module includes a second circuit board, a first light source, and a second light source. A plurality of first and second light sources are embedded on the surface of the second circuit board and electrically connected to the first circuit board. The first light source is a mosquito-repellent LED light source.

[0006] As a further embodiment of this utility model, the controller is provided with a double-contact power terminal and a single-contact power terminal. The double-contact power terminal is connected in series on the line connecting the first circuit board and the second circuit board. Contact A of the double-contact power terminal is set on the power transmission line of the second circuit board that connects to the first light source. Contact B of the double-contact power terminal is set on the power transmission line of the second circuit board that connects to the second light source. The single-contact power terminal is connected in parallel on the line connecting the first circuit board and the second circuit board. Contact C of the single-contact power terminal is set on the power transmission line of the second circuit board that connects to the second light source. Both the double-contact power terminal and the single-contact power terminal are electrically connected to the control IC to realize the action control of the connection terminal connected to the contact.

[0007] As a further embodiment of this utility model, the controller is provided with a push-button switch, which is connected to a double-contact power terminal and a single-contact power terminal respectively to realize the action control of the connection terminal connected to the contact.

[0008] As a further embodiment of this utility model, the shoe sole has a mating hole on the outer wall of the groove, the controller is mated in the mating hole, and the button part of the button switch extends through to the outside of the shoe sole wall outside the mating hole.

[0009] As a further embodiment of this utility model, a timer is embedded on the surface of the first circuit board, and the timer is electrically connected to the control IC.

[0010] As a further embodiment of this utility model, both the controller and the second circuit board are disposed on the surface of the shoe tongue.

[0011] As a further embodiment of the present invention, the second circuit board is distributed on the side wall of the part other than the front end of the sole, and the first light source is provided on both sides of the second circuit board relative to the middle foot and forefoot of the human body and at the position of the entire hind foot.

[0012] As a further embodiment of this utility model, the power module is a power source that uses a disposable battery or a rechargeable battery.

[0013] The beneficial effects of this utility model are as follows: The first light source in the light module uses LED beads with a light emission wavelength of 570~590nm, and the light emitted by it can play a good mosquito repellent effect. When users wear shoes with this shoe light outdoors, the light emitted by the first light source after it is powered on can illuminate their feet and legs to repel mosquitoes. Moreover, the light emitted by the light module can also beautify the shoes. The first and second light sources in the light module have various control methods, which can enable the shoe light to work in different usage scenarios. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the shoe lamp structure.

[0015] Figure 2 This is a structural diagram of the shoe when the controller for the shoe light is located in the sole.

[0016] Figure 3 This is a schematic diagram of the component where the shoe light is located inside the sole of the shoe.

[0017] Figure 4 This is a structural diagram of the shoe when the controller for the shoe light is located on the shoe tongue.

[0018] Figure 5 This is the circuit diagram of the shoe light when the first light source is not emitting light and the second light source is emitting light.

[0019] Figure 6 This is the circuit diagram for the shoe lamp when the first light source emits light and the second light source does not.

[0020] Figure 7 This is the circuit diagram of the shoe lamp when the first and second light sources are emitting light simultaneously.

[0021] Figure 8 This is a circuit diagram for a shoe light with a timer, when the first light source is not emitting light and the second light source is emitting light.

[0022] Figure 9 This is a circuit diagram for a shoe light with a timer, when the first light source is lit but the second light source is not lit.

[0023] Figure 10 This is a circuit diagram of a shoe light with a timer, when the first and second light sources are lit simultaneously.

[0024] In the diagram, 1. Shoe light; 11. First circuit board; 12. Control IC; 13. Vibration sensor; 14. Lighting module; 141. First light source; 142. Second circuit board; 143. Second light source; 15. Controller; 151. Double contact power terminal; 152. Single contact power terminal; 153. Contact A; 154. Contact B; 155. Contact C; 156. Push button switch; 16. Power module; 17. Timer; 2. Shoe fittings; 21. Shoe sole; 22. Groove; 23. Mating hole; 24. Shoe tongue. Detailed Implementation

[0025] This utility model discloses a shoe lamp with mosquito-repellent function, such as Figures 1-4As shown, the shoe light 1 includes a first circuit board 11, which is disposed within a groove 22 on the sole 21 of the shoe 2. A control IC 12 is embedded in the surface of the first circuit board 11. A vibration sensor 13 electrically connected to the control IC 12 is provided on the first circuit board 11 outside the control IC 12. A light module 14 is externally connected to the first circuit board 11 via wiring. The light module 14 is electrically connected to the control IC 12. A controller 15 is externally connected to the first circuit board 11 via wiring. The controller 15 is connected between the light module 14 and the first circuit board 1. On the line between the two, the first circuit board 11 is connected to a power module 16 via a line. The power module 16 is located in the slot 22 space outside the circuit board. The power module 16 is electrically connected to the control IC 12, vibration sensor 13, light module 14 and controller 15 respectively. The light module 14 includes a second circuit board 142, a first light source 141 and a second light source 143. The surface of the second circuit board 142 is inlaid with a plurality of first light sources 141 and second light sources 143 and is electrically connected to the first circuit board 11. The first light source 141 is a mosquito-repellent LED light source.

[0026] It should be noted that when the shoe light 1 is assembled onto the shoe 2, the first circuit board 11 and the power module 16 need to be placed in the slot 22 at the top of the sole 21 for storage. After the shoe light 1 is set onto the shoe 2, the control IC 12 is used to transmit control commands to the controller 15 to realize the circuit on / off control of the first light source 141 and the second light source 143 on the second circuit board 142. The vibration sensor 13 can sense the vibration transmitted to the shoe 2 during use and send a signal to the control IC 12, thereby combining with the control IC 12 to control the circuit on / off of the first light source 141 and the second light source 143. This makes the control means of the shoe 2 on the first light source 141 and the second light source 143 in the light module 14 more diversified, allowing the shoe light 1 to work in different usage scenarios, and the light emitted by the light module 14 can beautify the shoe 2.

[0027] In addition, the first light source 141 in the lighting module 14 uses LED beads with a light emission wavelength of 570~590nm. Mosquitoes react differently to different light waves: the 530~590nm wavelength range, which is most acceptable to the human eye, causes the least eye strain, and provides the clearest vision, is associated with mosquitoes' inherent tendency to flee in the opposite direction of light; while light waves below 500nm are associated with mosquitoes' inherent phototaxis, allowing them to adapt to and be more active under these wavelengths; and the LED solar spectrum lamp absorbs some of the light waves in sunlight that mosquitoes dislike, thus causing mosquitoes to feel uncomfortable and flee under the LED solar spectrum lamp; simultaneously, the LED solar spectrum lamp emits a light that attracts mosquitoes... The light wavelengths that are uncomfortable for mosquitoes are 530~590nm, which are precisely the light wavelengths most beneficial to the human eye, causing the least eye strain and providing the clearest vision. This is why mosquitoes hide in dark places when people are working or laboring during the day. In terms of light source, the blue-violet light that attracts mosquitoes from traditional light sources and ordinary LED light sources has been removed. Through a new spectrum combination, light (530nm~590nm) that repels mosquitoes is produced. The mosquito-repellent LED light source used in the first light source 141 of the shoe lamp 1 is a mosquito-repellent lamp with the above-mentioned effect. The light emitted by it can play a good role in repelling mosquitoes. When users wear shoes 2 with the shoe lamp 1 outdoors, the light emitted by the first light source 141 after being powered on can shine on their legs to achieve the purpose of repelling mosquitoes.

[0028] It should be further explained that the controller 15 is provided with a double-contact power terminal 151 and a single-contact power terminal 152. The double-contact power terminal 151 is connected in series in the line connecting the first circuit board 11 and the second circuit board 142. Contact A153 of the double-contact power terminal 151 is set in the power transmission line of the second circuit board 142 connected to the first light source 141. Contact B154 of the double-contact power terminal 151 is set in the power transmission line of the second circuit board 142 connected to the second light source 143. The single-contact power terminal 152 is connected in parallel in the line connecting the first circuit board 11 and the second circuit board 142. Contact C155 of the single-contact power terminal 152 is set in the power transmission line of the second circuit board 142 connected to the second light source 143. Both the double-contact power terminal 151 and the single-contact power terminal 152 are electrically connected to the control IC 12 to realize the action control of the connection terminal connected to the contact.

[0029] When the vibration sensor 13 and the control IC 12 are combined to achieve automatic control of the operation of both the first light source 141 and the second light source 143, such as... Figure 5As shown, when the vibration sensor 13 senses vibration, it indicates that the user wearing the shoes 2 has made a movement of their feet or legs. During the movement of the user's feet or legs, the occurrence of mosquito bites is relatively low, and the necessity of turning on the first light source 141 to repel mosquitoes is low. Therefore, the control IC 12 will control the connection terminal in the double contact power terminal 151 to swing to the contact B154, while the circuit where the single contact power terminal 152 is located is disconnected, so that the controller 15 forms a line that only transmits power to the second light source 143 in the second circuit board 142. After the second light source 143 is powered on, it emits light to beautify the shoes 2.

[0030] Secondly, such as Figure 6 As shown, when the vibration sensor 13 does not sense any vibration, it indicates that the user wearing the shoes 2 is not moving their feet or legs, and there is a possibility that mosquitoes may bite their feet or legs. It is necessary to turn on the first light source 141 to repel mosquitoes. Therefore, the control IC 12 will control the connection terminal in the double contact terminal 151 to swing to the contact A153, while the circuit where the single contact terminal 152 is located is disconnected, so that the controller 15 forms a line that only transmits power to the first light source 141 in the second circuit board 142. After the first light source 141 is powered on, it emits light to illuminate the person's feet or legs to repel mosquitoes.

[0031] In addition, such as Figure 7 As shown, the first light source 141 can also be used as a decorative light source like the second light source 143 during the production of the shoe lamp 1. That is, when the vibration sensor 13 senses vibration, the first light source 141 will also emit light at the same time. At this time, the control IC 12 will control the connecting end in the double contact power terminal 151 to swing to the contact A153, and the connecting end in the single contact power terminal 152 to swing to the contact C155, so that the controller 15 forms a circuit that transmits electrical energy to the first light source 141 and the second light source 143 in the first circuit board 11 respectively. After the first light source 141 is powered on, it emits light to illuminate the feet or legs of people to repel mosquitoes, and both the first light source 141 and the second light source 143 emit light to beautify the shoes 2.

[0032] Specifically, such as Figures 2-7 As shown in the figure, the controller 15 is equipped with a push-button switch 156, which is connected to a double-contact power terminal 151 and a single-contact power terminal to realize the action control of the connection terminal connected to the contact.

[0033] The push-button switch 156 allows the wearer of the shoes 2 to manually control the first light source 141 and the second light source 143. The wearer of the shoes 2 can press the button on the push-button switch 156 to control the connection between the double-contact power terminal 151 and the single-contact power terminal.

[0034] When the button switch 156 is set to only be responsible for switching the first light source 141, after the button is pressed, the connection end of the double contact power terminal 151 will be connected to the contact A153, so that the controller 15 forms a line that transmits electrical energy only to the first light source 141 in the second circuit board 142, so as to realize the first light source 141 emitting light.

[0035] When the button switch 156 is set to simultaneously control the first light source 141 and the second light source 143, after pressing the button, the connection end of the double-contact power terminal 151 connects to contact A153, while the connection end of the single-contact power terminal 152 swings to contact C155. This creates a circuit within the controller 15 that transmits electrical energy to the first light source 141 and the second light source 143 in the second circuit board 142, enabling the first light source 141 and the second light source 143 to emit light simultaneously. After pressing the button again, the connection end of the double-contact power terminal 151 disconnects from contact A153, and the connection end of the single-contact power terminal 152 disconnects from contact C155. This disconnects the circuit within the controller 15 that transmits electrical energy to the first light source 141 and the second light source 143 in the second circuit board 142, thereby simultaneously extinguishing the light from both the first light source 141 and the second light source 143.

[0036] In addition, by setting different numbers of button presses, different power transmission lines for the first light source 141 and the second light source 143 can be formed in the controller 15, so as to realize the operation of the first light source 141 emitting light alone, the second light source 143 emitting light alone, both the first light source 141 and the second light source 143 emitting light simultaneously, or neither the first light source 141 nor the second light source 143 emitting light, thus enriching the lighting control means of the sole 21.

[0037] More specifically, such as Figure 2 and Figure 3 As shown, the sole 21 has a mating hole 23 on the outer wall of the groove 22, the controller 15 is fitted in the mating hole 23, and the button part of the push-button switch 156 extends through to the outside of the sole 21 wall outside the mating hole 23.

[0038] The button switch 156 is operated by pressing the button on the side of the shoe 2. The controller 15 is set inside the sole 21 to avoid the controller 15 being exposed outside the shoe, reducing the risk of damage to the controller 15. Moreover, the shoe 2 is more aesthetically pleasing when the controller 15 is set inside the sole 21.

[0039] Specifically, such as Figures 8-10 As shown, a timer 17 is embedded on the surface of the first circuit board 11, and the timer 17 is electrically connected to the control IC 12.

[0040] The timer 17 can be set to enable the first light source 141 to emit light at a set time, the second light source 143 to emit light at a set time, and the first light source 141 and the second light source 143 to emit light or turn off simultaneously within the same time period, further enriching the lighting control methods of the sole 21.

[0041] Specifically, such as Figure 4 As shown, the controller 15 and the second circuit board 142 are both disposed on the surface of the tongue 24 of the shoe 2.

[0042] Among them, the button switch 156 can be pressed on the tongue 24 of the shoe 2, which makes the button switch 156 more convenient to press.

[0043] It needs to be further explained that, such as Figures 2-4 As shown, the second circuit board 142 is distributed on the side wall of the part other than the front end of the sole 21, and the first light source 141 is provided on both sides of the second circuit board 142 relative to the middle foot and forefoot of the human body and the entire hind foot.

[0044] The first light source 141 is positioned such that the light it emits can cover the entire leg, ensuring that the light from the first light source 141 illuminates the leg as much as possible to achieve mosquito repellency for the entire leg.

[0045] It needs to be further explained that, such as Figure 1 As shown, the power module 16 is a power source that can install a disposable battery or use a rechargeable battery.

[0046] If the power module 16 is a power source that uses disposable batteries, then when the battery power is low, only the disposable batteries in the power source need to be replaced, which is convenient and quick, and the manufacturing cost of the shoe lamp 1 is lower than when it uses rechargeable batteries as the power source; while if the power module 16 uses rechargeable batteries, then when the battery power is low, it can replenish the rechargeable batteries, which is more significant in terms of environmental protection and resource reuse.

[0047] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A shoe lamp with mosquito-repellent function, the shoe lamp comprising a first circuit board, characterized in that, The first circuit board is disposed in a groove in the sole of the shoe. A control IC is embedded on the surface of the first circuit board. A vibration sensor electrically connected to the control IC is disposed on the first circuit board outside the control IC. A light module is externally connected to the first circuit board via a circuit. The light module is electrically connected to the control IC. A controller is externally connected to the first circuit board via a circuit. The controller is connected to the circuit between the light module and the first circuit board. A power module is externally connected to the first circuit board via a circuit. The power module is located in the groove space outside the circuit board. The power module is electrically connected to the control IC, the vibration sensor, the light module, and the controller. The light module includes a second circuit board, a first light source, and a second light source. A plurality of first light sources and second light sources are embedded on the surface of the second circuit board and electrically connected to the first circuit board. The first light source is a mosquito-repellent LED light source.

2. The shoe lamp according to claim 1, characterized in that, The controller includes a dual-contact power terminal and a single-contact power terminal. The dual-contact power terminal is connected in series in the line connecting the first circuit board and the second circuit board. Contact A of the dual-contact power terminal is located on the power transmission line of the second circuit board that connects to the first light source. Contact B of the dual-contact power terminal is located on the power transmission line of the second circuit board that connects to the second light source. The single-contact power terminal is connected in parallel in the line connecting the first circuit board and the second circuit board. Contact C of the single-contact power terminal is located on the power transmission line of the second circuit board that connects to the second light source. Both the dual-contact power terminal and the single-contact power terminal are electrically connected to the control IC to realize the action control of the connection terminal connected to the contact.

3. The shoe lamp according to claim 2, characterized in that, The controller is equipped with a push-button switch, which is connected to a double-contact power terminal and a single-contact power terminal respectively to realize the action control of the connection terminal to the contact.

4. The shoe lamp according to claim 3, characterized in that, The sole has a mating hole on the outer wall of the groove, the controller is fitted into the mating hole, and the button part of the push-button switch extends through the outer wall of the sole outside the mating hole.

5. The shoe lamp according to claim 2, characterized in that, A timer is embedded on the surface of the first circuit board, and the timer is electrically connected to the control IC.

6. The shoe lamp according to claim 2, characterized in that, The controller and the second circuit board are both mounted on the surface of the shoe tongue.

7. The shoe lamp according to claim 1, characterized in that, The second circuit board is distributed on the side wall of the part other than the front end of the sole, and the first light source is set on both sides of the second circuit board relative to the middle foot and forefoot of the human body and the entire hind foot.

8. The shoe lamp according to claim 1, characterized in that, The power module is a power source that uses disposable batteries or rechargeable batteries.