Atmosphere lamp, handlebar assembly and scooter

By setting a receiving groove in the lamp holder, the light-emitting element is inserted and emits light through the inner wall, which solves the problems of complex structure and inconvenient assembly of ambient lights, and achieves a simpler assembly process and higher stability.

CN223618837UActive Publication Date: 2025-12-02BRIGHTWAY INNOVATION INTELLIGENT TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202520132994.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-12-02
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Ambient lights have a complex structure and are inconvenient to assemble, especially since the light-emitting components need to be fixed by the cooperation of the base and the cover plate, which makes assembly difficult.

Method used

The lamp holder is equipped with a receiving groove. The light-emitting element is inserted through the opening of the receiving groove and emits light through the inner wall. The base and cover plate are not fixed together and are connected by plugging.

Benefits of technology

The structure of the ambient light has been simplified, making the assembly process easier, reducing the use of fasteners, and improving assembly efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an atmosphere lamp, a handlebar assembly and a scooter, and relates to the field of scooters. The atmosphere lamp comprises a lamp holder and a light-emitting part, the lamp holder comprises a wall structure, the wall structure is arranged in a surrounding mode to form a containing groove with an opening, and the wall structure is provided with a light-transmitting part; the light-emitting part is arranged in the containing groove through the opening and can emit light through the light-transmitting part. The atmosphere lamp is simple in structure, and the assembling process of the atmosphere lamp is more convenient.
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Description

Technical Field

[0001] This application relates to the field of mobility scooters, and more particularly to an ambient light, a handlebar assembly, and a mobility scooter. Background Technology

[0002] Electric scooters are a new type of personal transportation vehicle, offering advantages such as being lightweight, portable, and easy to ride. Ambient lights are an integral part of electric scooters, serving functions such as signal indication.

[0003] Ambient lights are typically mounted on handlebars and emit light towards the user, thus providing directional information. An ambient light consists of a lamp holder and a light-emitting element. The lamp holder includes a base and a detachable cover plate mounted on the base, allowing the light-emitting element to be assembled and secured through the mating base and cover plate.

[0004] When assembling ambient lights, the light-emitting element needs to be placed between the base and the cover plate, and the cover plate needs to be connected to the base so that the installation and fixing of the light-emitting element can be achieved through the matching base and cover plate. Ambient lights have a complex structure and the assembly process is inconvenient. Utility Model Content

[0005] This application provides ambient lighting, handlebar assembly, and a personal mobility vehicle to solve the problems of complex structure and inconvenient assembly process of ambient lighting.

[0006] This application provides an ambient light, including a lamp holder and a light-emitting element;

[0007] The lamp holder includes a wall structure that surrounds a receiving groove with an opening and a light-transmitting portion.

[0008] The light-emitting element is disposed in the receiving groove through the opening and can emit light through the light-transmitting part.

[0009] By adopting the above technical solution, the ambient light of this application embodiment includes a lamp holder and a light-emitting element. The lamp holder includes a wall structure with a receiving groove. One side of the receiving groove has an opening, allowing the light-emitting element to be placed inside the receiving groove through the opening. The light-emitting element can be disposed in the receiving groove, with its light-emitting side not facing the opening. The non-opening wall of the receiving groove has a light-transmitting portion, through which the light-emitting element emits light, thereby providing illumination or indicator information to the user.

[0010] In related technologies, lamp holders include a mating base and a cover plate. The cover plate is detachably fixed to the base, requiring the light-emitting element to be installed between the base and the cover plate. The mating base and cover plate then facilitate the installation and fixation of the light-emitting element. However, the ambient light of this embodiment simplifies the structure by providing a receiving groove in the lamp holder, allowing the lamp holder to accommodate the light-emitting element through the groove. Compared to ambient lights in related technologies, the ambient light of this embodiment eliminates the need for splicing and fixing of the lamp holder, thus simplifying the overall structure of the ambient light.

[0011] When assembling the ambient light, the light-emitting element can be inserted into the receiving groove through the opening, so that the light-emitting side of the element faces the inner wall of the receiving groove, and the element is opposite to the opening, thus realizing the assembly process of the ambient light. Furthermore, compared to the method of fixing the light-emitting element with a mating base and cover plate in related technologies, the light-emitting element in this embodiment can be connected to the lamp holder by a plug-in method, eliminating the need for other fixing components to secure the light-emitting element to the lamp holder, making the assembly structure of the ambient light simpler.

[0012] In some possible implementations, the wall structure includes a first wall structure and a second wall structure, the first wall structure and the second wall structure being disposed opposite to each other, the second wall structure having the light-transmitting portion, and the backlight side of the light-emitting element facing the first wall structure.

[0013] With this configuration, the first wall structure and the second wall structure are positioned opposite each other. The second wall structure has a light-transmitting part, and the backlight side of the light-emitting element faces the first wall structure, so that the light-emitting side of the light-emitting element can face the light-transmitting part of the second wall structure, allowing the light-emitting element to emit light through the light-transmitting part of the second wall structure.

[0014] In some possible implementations, the wall structure further includes a third wall structure that connects the first wall structure and the second wall structure, with the opening formed on an opposite side of the third wall structure.

[0015] With this configuration, by setting up a third wall structure that connects the first and second wall structures, and with the opening formed on the opposite side of the third wall structure, the light-emitting element can extend into the receiving groove through the opening toward the third wall structure, thus making the installation process of the light-emitting element more convenient.

[0016] In some possible implementations, the first wall structure is located inside the second wall structure, and the opening is arranged facing downwards.

[0017] With this configuration, when the lamp holder is installed on the top mount of the handlebar assembly, the opening of the receiving slot faces downwards, which reduces the possibility of rainwater and other debris entering the receiving slot through the opening, and reduces the possibility of short circuits or other damage to the light-emitting components inside the receiving slot.

[0018] In some possible implementations, the lamp holder further includes at least one partition wall, the partition wall extending in the same direction as the first wall structure and the second wall structure;

[0019] The partition wall is disposed between the first wall structure and the second wall structure, and the partition wall and the second wall structure form a light-transmitting groove.

[0020] With this configuration, the lamp holder also includes at least one partition wall. The partition wall and the second wall structure form a light-transmitting groove. The light-transmitting groove can be set on the periphery of the receiving groove so that light from the light-emitting element can pass through the light-transmitting groove located in the light-transmitting part. This allows the light from the light-emitting element to be more uniform, improves the diffusion of light, and reduces the graininess of light, thereby improving the lighting effect of the ambient light.

[0021] In some possible implementations, the lamp holder includes a mounting portion, and the mounting portion and the light-transmitting portion are spaced apart;

[0022] The receiving groove is formed between the mounting part and the light-transmitting part, and the backlight side of the light-emitting element faces the mounting part.

[0023] With this configuration, when the lamp holder is installed on the top mount of the handlebar assembly, the mounting part can fit snugly against the top mount. The light-transmitting part is located on the side of the mounting part away from the top mount. The light-emitting element is located between the mounting part and the light-transmitting part. The backlight side of the light-emitting element faces the top mount, and the light-emitting side of the light-emitting element faces away from the top mount, so that the light-emitting element can face away from the top mount and emit light through the light-transmitting part.

[0024] In some possible implementations, the lamp holder is configured as an arc-shaped lamp holder.

[0025] This design, with the lamp holder being an arc-shaped lamp holder, allows the lamp holder to fit snugly against the arc-shaped forehead mount, making the lamp holder installation more stable and its appearance more aesthetically pleasing.

[0026] The mounting part can be located inside the light-transmitting part, and the surface of the mounting part facing away from the light-transmitting part can be used to fit against the surface of the forehead seat, so that the inner side of the mounting seat can face and fit against the forehead seat.

[0027] The light-transmitting part can be located on the outside of the mounting part, and the surface of the light-transmitting part facing away from the mounting part can be set as an arc surface, making the shape of the light-transmitting part more aesthetically pleasing. The light-emitting element emits light towards the light-transmitting part, and the light-transmitting part is set as an arc, so that the light-transmitting part can play a certain role in diffusing and regulating the light emitted by the light-emitting element, so that the light from the light-emitting element is emitted more evenly from the light-transmitting part.

[0028] In some possible implementations, the lamp holder is a one-piece molded structure.

[0029] With this configuration, the mounting part, the light-transmitting part, and the sidewall of the light-transmitting groove are integrally formed in the structure of the lamp holder, making the structure of the lamp holder more stable and reducing the possibility of separation between the mounting part and the light-transmitting part.

[0030] The lamp holder can be set as a light-transmitting type. A light-transmitting type lamp holder can make the light from the light source more uniform, improve the light diffusion, and reduce the light particle size, thereby improving the lighting effect of the ambient light.

[0031] In some possible implementations, the lamp holder further includes a fixing part, which is at least used for connecting with the opposite component;

[0032] The fixing part is located at the end of the second wall structure, the outer surface of the fixing part smoothly transitions with the outer surface of the second wall structure, and the thickness of the fixing part is less than the sum of the thicknesses of the first wall structure and the second wall structure.

[0033] With this configuration, the fixing part is used to connect with the front bracket and other components, so that the lamp holder can be fixed to the front bracket through the fixing part.

[0034] In the extending direction of the light-transmitting part, the fixing part is located at the end of the light-transmitting part, and the outer surface of the fixing part can smoothly transition with the outer surface of the light-transmitting part so that the connection between the fixing part and the light-transmitting part is more aesthetically pleasing.

[0035] In some possible implementations, the first wall structure is provided with a wire groove communicating with the receiving groove, the wire groove being at least used to accommodate the wires of the light-emitting element.

[0036] With this configuration, the wire groove is at least used to accommodate the wires of the light-emitting element, so that the wires of the light-emitting element can extend out of the receiving groove through the wire groove of the mounting part, thereby enabling the light-emitting element to communicate with external circuits through the wires.

[0037] In some possible implementations, the ambient light further includes a control unit connected to the control terminal of the light-emitting element;

[0038] The light-emitting element can receive signals from the control element, and the light-emitting element can be used to emit light of various colors.

[0039] With this configuration, the light-emitting element can receive signals from the control unit and can emit light of various colors, thereby indicating different information about the mobility scooter or handlebar assembly.

[0040] This application provides a handlebar assembly, including a top mount and an ambient light as described in any of the above embodiments;

[0041] The front mount is provided with a mounting groove to accommodate the lamp holder;

[0042] The mounting groove has a bottom, and the light-transmitting part is located on the side of the lamp holder away from the bottom of the groove.

[0043] With this configuration, the lamp holder is placed inside the mounting groove, with the mounting part facing the bottom of the groove and the light-transmitting part placed at the opening of the groove, so that the light-emitting component can emit light through the light-transmitting part in a direction away from the forehead seat.

[0044] In some possible implementations, the mounting groove has a top wall and a bottom wall that are disposed opposite to each other;

[0045] The bottom of the tank, the top wall, and the bottom wall are arranged opposite to the opening to close the opening.

[0046] With this configuration, the top wall can face the top of the mounting section and the top of the light-transmitting section, and the bottom wall can close the opening. This provides some protection for the light-emitting components located in the receiving groove, thereby reducing the possibility of damage to the light-emitting components located in the receiving groove.

[0047] In some possible implementations, the mounting groove extends circumferentially along the forehead mount.

[0048] With this configuration, the mounting groove extends circumferentially along the front seat, allowing the lamp holder located within the mounting groove to be positioned around the front seat, thus making the connection between the lamp holder and the front seat more stable.

[0049] In some possible implementations, the mounting portion faces the bottom surface of the mounting groove, and at least a portion of the light-transmitting portion protrudes from the opening of the mounting groove.

[0050] With this configuration, the mounting part faces the bottom of the mounting groove, and at least a portion of the light-transmitting part can protrude from the opening of the mounting groove, thereby increasing the luminous range of the ambient light and allowing the light-emitting element to emit light through the portion of the light-transmitting part that protrudes from the opening of the mounting groove, so that the light-emitting element can emit light in multiple directions.

[0051] This application provides a personal mobility vehicle, including the handlebar assembly or the ambient light described in any of the above claims.

[0052] Since the commuter vehicle includes any of the aforementioned handlebar components or any of the aforementioned ambient lights, the advantages of the commuter vehicle including any of the aforementioned handlebar components or ambient light components are detailed in the relevant descriptions above and will not be repeated here. Attached Figure Description

[0053] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0054] Figure 1 This is a schematic diagram of the structure of an ambient light provided in an embodiment of this application;

[0055] Figure 2 This is a schematic diagram of the ambient light structure from another perspective, provided in an embodiment of this application.

[0056] Figure 3 This is a schematic diagram of the handlebar assembly provided in an embodiment of this application;

[0057] Figure 4 An exploded view of the ambient light provided in the embodiments of this application;

[0058] Figure 5 An exploded view of the ambient light from another perspective, as provided in an embodiment of this application;

[0059] Figure 6 This is a schematic diagram of the structure of the lamp holder provided in the embodiment of this application;

[0060] Figure 7 This is a schematic diagram of the lamp holder structure from another perspective, provided in an embodiment of this application.

[0061] Figure 8 This is an exploded view of the handlebar assembly provided in an embodiment of this application.

[0062] Explanation of reference numerals in the attached figures:

[0063] 100. Lamp holder;

[0064] 110. Mounting part; 120. Light-transmitting part; 121. Light-transmitting groove; 130. Receiving groove; 131. Opening; 140. Wire groove; 150. Fixing part; 151. Locking element; 160. Connecting part;

[0065] 200. Illuminating components;

[0066] 210. Wire; 220. Substrate; 230. LED chip;

[0067] 300. Forehead seat;

[0068] 310. Mounting slot; 311. Top wall; 312. Bottom wall.

[0069] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0070] As described in the background section, ambient lighting is an integral part of electric scooters, serving functions such as illumination and signal indication. Ambient lights are typically mounted on the handlebars and emit light towards the user, providing illumination or indicating information. An ambient light may include a lamp holder and a light-emitting element, with the light-emitting element housed in the lamp holder and mounted on the handlebars, thus emitting light towards the user.

[0071] The lamp holder may include a mating base and a cover plate. The cover plate is detachably fixed to the base, allowing the light-emitting element to be installed between the base and the cover plate. The mating base and cover plate enable the installation and fixation of the light-emitting element. When assembling an ambient light, the light-emitting element can be placed on the base with its backlight side facing the base and its light-emitting side facing away from the base. Then, the cover plate can be placed on the light-emitting side of the light-emitting element and fixed to the base, thus completing the assembly process of the ambient light.

[0072] However, in related technologies, it is usually necessary to place the light-emitting element between the base and the cover plate, and the cover plate needs to be connected to the base so that the installation and fixing process of the light-emitting element can be achieved through the mating base and cover plate. This makes the structure of the ambient light complex and the assembly process of the ambient light inconvenient.

[0073] To address the aforementioned technical problems, this application provides an ambient light, a handlebar assembly, and a personal mobility vehicle. The ambient light includes a lamp holder and a light-emitting element. The lamp holder has a receiving groove with an opening, allowing the light-emitting element to be placed inside the receiving groove through the opening. The light-emitting element can be disposed in the receiving groove and opposite the opening. The light-emitting element emits light through the inner wall of the receiving groove, thereby providing illumination or indicating information to the user.

[0074] In related technologies, lamp holders include a mating base and a cover plate. The cover plate is detachably fixed to the base, requiring the light-emitting element to be installed between the base and the cover plate. The mating base and cover plate then facilitate the installation and fixation of the light-emitting element. However, the ambient light of this embodiment simplifies the structure by providing a receiving groove in the lamp holder, allowing the lamp holder to accommodate the light-emitting element through the groove. Compared to ambient lights in related technologies, the ambient light of this embodiment eliminates the need for splicing and fixing of the lamp holder, thus simplifying the overall structure of the ambient light.

[0075] When assembling the ambient light, the light-emitting element can be inserted into the receiving groove through the opening, so that the light-emitting side of the element faces the inner wall of the receiving groove, and the element is opposite to the opening, thus realizing the assembly process of the ambient light. Furthermore, compared to the method of fixing the light-emitting element with a mating base and cover plate in related technologies, the light-emitting element in this embodiment can be connected to the lamp holder by a plug-in method, eliminating the need for other fixing components to secure the light-emitting element to the lamp holder, making the assembly structure of the ambient light simpler.

[0076] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0077] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.

[0078] Reference Figures 1-3 This application provides an ambient light, including a lamp holder 100 and a light-emitting element 200. The lamp holder 100 includes a wall structure with a receiving groove 130. The receiving groove 130 may have an opening 131, so that the light-emitting element 200 can be placed in the receiving groove 130 through the opening 131.

[0079] The non-opening wall of the receiving groove 130 has a light-transmitting portion 120. The light-emitting element 200 can be disposed in the receiving groove 130 and opposite to the opening 131. The light-emitting side of the light-emitting element 200 is not opposite to the opening 131. The light-emitting element 200 can emit light through the inner wall of the receiving groove 130, thereby providing illumination light or indication information to the user through the light-emitting element 200.

[0080] When assembling the ambient light, the light-emitting element 200 can be inserted into the receiving groove 130 through the opening 131 of the lamp holder 100 to connect the light-emitting element 200 with the lamp holder 100. The light-emitting side of the light-emitting element 200 can face the inner wall of the receiving groove 130, and the light-emitting element 200 is opposite to the opening 131, thereby completing the assembly process of the ambient light.

[0081] Reference Figures 3-5 In some possible implementations, the wall structure includes a first wall structure and a second wall structure, the first wall structure and the second wall structure are disposed opposite to each other, the second wall structure has the light-transmitting portion, and the backlight side of the light-emitting element faces the first wall structure.

[0082] The first wall structure and the second wall structure are arranged opposite to each other. The second wall structure has a light-transmitting part. The backlight side of the light-emitting element faces the first wall structure, so that the light-emitting side of the light-emitting element can face the light-transmitting part of the second wall structure, so that the light-emitting element can emit light through the light-transmitting part of the second wall structure.

[0083] In some possible implementations, the first wall structure can be configured as the mounting portion 110, and the light-transmitting portion can be configured in the second wall structure. The mounting portion 110 can be used to mount on the top mount 300 of the handlebar assembly and can also be used as a mounting base for the light-emitting element 200, so that the light-emitting element 200 can be fixed on the top mount 300 of the handlebar assembly via the mounting portion 110.

[0084] The mounting part 110 can be connected and fixed to the light-transmitting part 120. The mounting part 110 and the light-transmitting part 120 are spaced apart, and a receiving groove 130 can be formed between the mounting part 110 and the light-transmitting part 120, so that the light-emitting element 200 can be disposed between the mounting part 110 and the light-transmitting part 120.

[0085] When the light-emitting element 200 is inserted into the receiving groove 130 through the opening 131, the backlight side of the light-emitting element 200 can face the mounting part 110, and the light-emitting side of the light-emitting element 200 can face the light-transmitting part 120, so that the light-emitting element 200 can emit light through the light-transmitting part 120.

[0086] When the lamp holder 100 is installed on the top mount 300 of the handlebar assembly, the mounting part 110 can fit against the top mount 300. The light-transmitting part 120 is disposed on the side of the mounting part 110 away from the top mount 300. The light-emitting element 200 is located between the mounting part 110 and the light-transmitting part 120. The backlight side of the light-emitting element 200 faces the top mount 300, and the light-emitting side of the light-emitting element 200 is away from the top mount 300, so that the light-emitting element 200 can be away from the top mount 300 and emit light through the light-transmitting part 120.

[0087] Reference Figures 3-5 In some possible implementations, the lamp holder 100 is configured as an arc-shaped lamp holder 100 so that the lamp holder 100 can fit into the arc-shaped forehead seat 300, making the installation of the lamp holder 100 more stable and the appearance of the lamp holder 100 more aesthetically pleasing.

[0088] The mounting part 110 can be located inside the light-transmitting part 120. The surface of the mounting part 110 facing away from the light-transmitting part 120 can be used to fit against the surface of the forehead seat 300, so that the inner side of the mounting seat can face and fit against the forehead seat 300.

[0089] The light-transmitting portion 120 can be located outside the mounting portion 110. The surface of the light-transmitting portion 120 facing away from the mounting portion 110 can be set as an arc-shaped surface, making the shape of the light-transmitting portion 120 more aesthetically pleasing. The light-emitting element 200 emits light towards the light-transmitting portion 120, and the light-transmitting portion 120 is set as an arc, so that the light-transmitting portion 120 can play a certain role in diffusing and regulating the light emitted by the light-emitting element 200, so that the light from the light-emitting element 200 is emitted more evenly from the light-transmitting portion 120.

[0090] For example, the mounting part 110 and the light-transmitting part 120 can be integrally formed to make the structure of the lamp holder 100 more stable, thereby reducing the possibility of separation between the mounting part 110 and the light-transmitting part 120.

[0091] The integrally formed mounting part 110 and light-transmitting part 120 form a receiving groove 130. The mounting part 110 can be used to form the first part of the inner wall of the receiving groove 130, and the light-transmitting part 120 can be used to form the second part of the inner wall of the receiving groove 130, making the structure of the receiving groove 130 more stable, and making it easier to insert the light-emitting element 200 into the receiving groove 130 through the opening 131.

[0092] The surface of the mounting portion 110 facing the light-transmitting portion 120 can abut against the backlight side of the light-emitting element 200, and the surface of the light-transmitting portion 120 facing the mounting portion 110 can abut against the light-emitting side of the light-emitting element 200, so that when the light-emitting element 200 is inserted into the receiving groove 130, one end of the light-emitting element 200 can abut against the bottom surface of the receiving groove 130, and the other end of the light-emitting element 200 faces the opening 131 of the receiving groove 130.

[0093] For example, the lamp holder 100 can be configured as a light-transmitting lamp holder 100, which can make the light from the light-emitting element 200 more uniform, improve the light diffusion, and reduce the light particle size, thereby improving the lighting effect of the ambient light.

[0094] Reference Figures 6-7 In some possible implementations, the top end of the mounting portion 110 may be connected to the top end of the light-transmitting portion 120, and a downward-facing opening 131 is formed between the bottom end of the mounting portion 110 and the bottom end of the light-transmitting portion 120.

[0095] In some possible implementations, the wall structure also includes a third wall structure that connects the first wall structure and the second wall structure. An opening is formed on the opposite side of the third wall structure, allowing the light-emitting element to extend into the receiving groove through the opening toward the third wall structure, thereby making the installation process of the light-emitting element more convenient.

[0096] The third wall structure can be configured as a connecting part 160, which can be used to connect the first wall structure and the second wall structure.

[0097] It is easy to understand that when the lamp holder 100 is installed on the top mount 300 of the handlebar assembly, the opening 131 of the receiving groove 130 can face downwards, thereby reducing the possibility of rainwater and other debris entering the receiving groove 130 through the opening 131, and reducing the possibility of short circuits or other damage to the light-emitting element 200 in the receiving groove 130.

[0098] It should be noted that the opening 131 of the receiving groove 130 can be provided in the mounting part 110, and the opening 131 of the receiving groove 130 can be provided on the side of the mounting part 110 away from the light-transmitting part 120. When the lamp holder 100 is installed on the top mount 300 of the handlebar assembly, the surface of the mounting part 110 facing the light-transmitting part 120 can abut against the top mount 300, so that the top mount 300 can be used to close the opening 131 of the receiving groove 130, thereby reducing the possibility of rainwater and other debris entering the receiving groove 130 through the opening 131.

[0099] For example, the opening 131 of the receiving groove 130 can be provided at the top of the lamp holder 100. When the lamp holder 100 is installed on the top mount 300 of the handlebar assembly, the opening 131 of the receiving groove 130 can be blocked by a sealing member or part of the top mount 300 to reduce the possibility of rainwater and other debris entering the receiving groove 130 through the opening 131.

[0100] In other words, the opening 131 of the receiving groove 130 can be set at multiple positions of the lamp holder 100. When the opening 131 of the receiving groove 130 is set at the bottom of the lamp holder 100, in the vertical direction, the mounting part 110 and the light-transmitting part 120 of the lamp holder 100 can provide a certain degree of shielding for the opening 131 of the receiving groove 130, making it difficult for rainwater and other debris to come into contact with the opening 131 of the receiving groove 130.

[0101] Furthermore, rainwater and debris entering the receiving tank 130 can be more easily discharged through the opening 131 of the receiving tank 130, thereby reducing the possibility of damage to the light-emitting element 200.

[0102] By adopting the above technical solution, when the lamp holder 100 is installed on the forehead seat 300, the surface of the mounting part 110 facing away from the light-transmitting part 120 can be fitted against the forehead seat 300, so that the light-transmitting part 120 is away from the forehead seat 300. Furthermore, the opening 131 of the receiving groove 130 is oriented in a specific direction, thereby providing a certain positioning function for the installation process of the lamp holder 100 through the opening 131, reducing the possibility of the lamp holder 100 being installed backwards.

[0103] Reference Figures 6-7 In some possible implementations, the light-transmitting portion 120 may be provided with at least one light-transmitting groove 121.

[0104] The lamp holder 100 also includes at least one partition wall 170, the extension direction of the partition wall 170 is the same as the extension direction of the first wall structure and the second wall structure; the partition wall 170 is disposed between the first wall structure and the second wall structure, and the partition wall 170 and the second wall structure enclose a light-transmitting groove 121.

[0105] The light-transmitting groove 121 can be disposed around the receiving groove 130 so that light from the light-emitting element 200 can pass through the light-transmitting groove 121 located in the light-transmitting part 120. This allows the light from the light-emitting element 200 to be more uniform, improves the diffusion of light, and reduces the particle size of light, thereby improving the lighting effect of the ambient light.

[0106] For example, the number of light-transmitting slots 121 can be set to one or more.

[0107] For example, the number of light-transmitting slots 121 can be set to one. The light-transmitting slot 121 can be set on the periphery of the receiving slot 130, the shape of the light-transmitting slot 121 can be the same as the shape of the receiving slot 130, and the extension direction of the light-transmitting slot 121 can be set parallel to the extension direction of the receiving slot 130, so that light from different positions of the light-emitting element 200 can be emitted more evenly from the light-transmitting part 120 through the light-transmitting slot 121.

[0108] Alternatively, the number of light-transmitting slots 121 can be set to multiple.

[0109] Multiple light-transmitting grooves 121 can be disposed around the receiving groove 130. The shape of the light-transmitting grooves 121 can be the same as the shape of the receiving groove 130, and the extension direction of the multiple light-transmitting grooves 121 can be parallel to the extension direction of the receiving groove 130, so that light from different positions of the light-emitting element 200 can be emitted more evenly from the light-transmitting part 120 through the light-transmitting grooves 121.

[0110] It is easy to understand that when the number of light-transmitting slots 121 is set to multiple, two adjacent light-transmitting slots 121 need to share a partition so that the partition forms the side wall of the two light-transmitting slots 121. The mounting part 110, the light-transmitting part 120 and the side wall of the light-transmitting slot 121 can be integrally formed so that the structure of the lamp holder 100 is more stable.

[0111] Reference Figure 1 and Figure 4 In some possible embodiments, the mounting portion 110 may be provided with a wire groove 140 communicating with the receiving groove 130. The wire groove 140 is at least used to accommodate the wire 210 of the light-emitting element 200, so that the wire 210 of the light-emitting element 200 can extend out of the receiving groove 130 through the wire groove 140 of the mounting portion 110, thereby enabling the light-emitting element 200 to communicate with external circuits through the wire 210.

[0112] For example, along the extending direction of the mounting portion 110, the wire groove 140 may be provided in the middle of the mounting portion 110. The wire groove 140 may face downwards, and the orientation of the wire groove 140 is the same as the orientation of the opening 131 of the receiving groove 130, so that when the light-emitting element 200 is inserted into the receiving groove 130 through the opening 131, the wire 210 of the light-emitting element 200 can be more easily placed in the wire groove 140, thereby making the installation process of the light-emitting element 200 more convenient.

[0113] The depth of the wire groove 140 can be less than the depth of the receiving groove 130, and the depth of the wire groove 140 can be greater than the diameter of the wire 210 of the light-emitting element 200, so that the wire 210 of the light-emitting element 200 can be completely placed in the wire groove 140, thereby reducing the possibility of the wire 210 of the light-emitting element 200 detaching from the wire groove 140, and making the connection between the wire 210 of the light-emitting element 200 and the lamp holder 100 more stable.

[0114] Reference Figure 4 and Figure 8 In some possible implementations, the lamp holder 100 may also include a fixing part 150, which is at least used to connect with the forehead seat 300, so that the lamp holder 100 can be fixed to the forehead seat 300 by the fixing part 150.

[0115] For example, in the extending direction of the light-transmitting portion 120, the fixing portion 150 may be located at the end of the light-transmitting portion 120, and the outer surface of the fixing portion 150 may smoothly transition with the outer surface of the light-transmitting portion 120 so that the connection between the fixing portion 150 and the light-transmitting portion 120 is more aesthetically pleasing.

[0116] A locking member 151 may be provided on the fixing part 150 so that the fixing part 150 can be fixed to the forehead seat 300 by the locking member 151.

[0117] For example, the locking member 151 can be set as a locking bolt. When it is necessary to connect the lamp holder 100 to the forehead seat 300, the fixing part 150 can be fitted to the forehead seat 300, and then the locking bolt can be passed through the fixing part 150 and threadedly connected to the forehead seat 300. This allows the fixing part 150 to be fixedly connected to the forehead seat 300 by the locking bolt, making the connection between the fixing part 150 and the forehead seat 300 more stable.

[0118] It is easy to understand that by setting the fixing part 150 at the end of the light-transmitting part 120 and fixing the fixing part 150 to the forehead seat 300 by locking bolts, both ends of the light-transmitting part 120 can be fixed to the forehead seat 300, thereby reducing the possibility of gaps between the lamp holder 100 and the forehead seat 300, and reducing the possibility of rainwater and other debris entering the receiving groove 130 from between the fixing part 150 and the forehead seat 300.

[0119] Alternatively, the fixing part 150 can be configured as a snap-fit ​​connector, which can be fixed to the forehead seat 300 by snap-fit ​​or other means, thereby making the connection between the fixing part 150 and the forehead seat 300 more convenient.

[0120] In some possible implementations, the light-emitting element 200 includes a first light-emitting element, a second light-emitting element, and a third light-emitting element with different light-emitting colors.

[0121] For example, the first light-emitting element can be set to a red light-emitting element, the second light-emitting element can be set to a green light-emitting element, and the third light-emitting element can be set to a blue light-emitting element.

[0122] Among them, red light-emitting elements can emit red light, green light-emitting elements can emit green light, and blue light-emitting elements can emit blue light. Several red light-emitting elements, several green light-emitting elements, and several blue light-emitting elements can be integrated to form several pixel units.

[0123] Each pixel unit may include a red light-emitting element, a green light-emitting element, and a blue light-emitting element. The pixel unit can combine red light from the red light-emitting element, green light from the green light-emitting element, and blue light from the blue light-emitting element to form a combined light beam, so that the light-emitting element 200 can be used to emit light of different colors.

[0124] For example, the light-emitting element 200 may include a substrate 220 and a plurality of lamp beads 230 disposed on the substrate 220. The substrate 220 is electrically connected to the wire 210 and can be used to drive the plurality of lamp beads 230 to emit light. Each lamp bead 230 may include one or more pixel units, so that the substrate 220 can drive the plurality of lamp beads 230 to emit light of different colors.

[0125] Alternatively, the multiple LEDs 230 may include several first LEDs 230, several second LEDs 230, and several third LEDs 230.

[0126] The first LED 230 may include one or more first light-emitting elements, enabling it to emit red light. The second LED 230 may include one or more second light-emitting elements, enabling it to emit green light. The third LED 230 may include one or more third light-emitting elements, enabling it to emit blue light.

[0127] The first, second, and third light-emitting elements can be selected from one or more of the following: inorganic light-emitting diodes (LEDs), mini light-emitting diodes (MiniLEDs), and micro light-emitting diodes (MicroLEDs).

[0128] It should be noted that, compared to other types of light-emitting elements, the third light-emitting element is set as an inorganic light-emitting diode, which makes the light-emitting element 200 more impact-resistant and reliable, and the display device can be applied to more application scenarios, ensuring the normal use of the ambient light.

[0129] In some possible implementations, the ambient light may also include a control element. The control element may be disposed on the substrate 220 and may be connected to the control terminal of the light-emitting element 200, thereby enabling the control element to control the light emission of multiple LED beads 230 of the light-emitting element 200.

[0130] For example, the light-emitting element 200 can receive signals from the control element, and the light-emitting element 200 can be used to emit light of various colors, thereby indicating different information about the mobility scooter or handlebar assembly.

[0131] For example, when the mobility scooter is in normal working condition, the light-emitting element 200 can receive a signal from the control element and cause the second light-emitting element to emit light, thereby emitting green light through the light-emitting element 200 to indicate to the user that the mobility scooter is in normal working condition.

[0132] When the mobility scooter is charging, the light-emitting element 200 can receive a signal from the control element and cause the third light-emitting element to emit light, thereby emitting blue light through the light-emitting element 200 to indicate to the user that the mobility scooter is charging.

[0133] When the mobility scooter is in a malfunction, the light-emitting element 200 can receive a signal from the control element and cause the first light-emitting element to emit light, thereby emitting red light through the light-emitting element 200 to indicate to the user that the mobility scooter is in a malfunction.

[0134] In summary, the ambient light includes a lamp holder 100 and a light-emitting element 200. The lamp holder 100 is provided with a receiving groove 130, which has an opening 131, allowing the light-emitting element 200 to be placed inside the receiving groove 130 through the opening 131. The light-emitting element 200 can be disposed in the receiving groove 130 and opposite to the opening 131. The light-emitting element 200 can emit light through the inner wall of the receiving groove 130, thereby providing illumination or indicator information to the user.

[0135] When assembling the ambient light, the light-emitting element 200 can be inserted into the receiving groove 130 through the opening 131, so that the light-emitting side of the light-emitting element 200 faces the inner wall of the receiving groove 130, and the light-emitting element 200 is opposite to the opening 131, thereby realizing the assembly process of the ambient light. Compared with the method of fixing the light-emitting element 200 by a matching base and cover plate in related technologies, in this embodiment, the light-emitting element 200 can be connected to the lamp holder 100 by plugging, so that the light-emitting element 200 does not need to be fixed to the lamp holder 100 by other fasteners, making the structure of the ambient light simpler and the assembly process more convenient.

[0136] This application provides a handlebar assembly that includes the ambient light described in any of the above embodiments.

[0137] Since the handlebar assembly includes ambient lighting according to any of the above embodiments, the advantages of this handlebar assembly including ambient lighting according to any of the above embodiments can be found in the relevant description above, and will not be repeated here.

[0138] In some possible implementations, the handlebar assembly may include a top mount 300, which has a mounting groove 310 extending circumferentially along the top mount 300, so that the top mount 300 can accommodate a portion of the lamp holder 100 through the mounting groove 310, thereby making the connection between the ambient light and the top mount 300 more stable.

[0139] For example, the lamp holder 100 includes a mounting portion 110 and a light-transmitting portion 120 connected to each other. The backlight side of the light-emitting element 200 faces the mounting portion 110, and the light-emitting side of the light-emitting element 200 faces the light-transmitting portion 120, so that the light-emitting element 200 can emit light in a direction away from the forehead seat 300, thereby providing illumination light or indication information to the user.

[0140] The specific arrangement of the mounting section 110 and the light-transmitting section 120 can be found in the above description, and will not be repeated here in the embodiments of this application.

[0141] For example, the lamp holder 100 is disposed in the mounting groove 310, the mounting part 110 may face the bottom of the mounting groove 310, and the light-transmitting part 120 may be disposed in the opening of the mounting groove 310 so that the light-emitting element 200 can emit light through the light-transmitting part 120 in a direction away from the forehead seat 300.

[0142] The mounting portion 110 can face the bottom surface of the mounting groove 310, and at least a portion of the light-transmitting portion 120 can protrude from the opening of the mounting groove 310, thereby increasing the luminous range of the ambient light and allowing the light-emitting element 200 to emit light through the portion of the light-transmitting portion 120 protruding from the opening of the mounting groove 310, so that the light-emitting element 200 can emit light in multiple directions.

[0143] In some possible implementations, the mounting groove 310 may have a top wall 311 and a bottom wall 312 disposed opposite to each other, both of which may extend circumferentially along the forehead seat 300.

[0144] In the extending direction of the forehead seat 300, the top wall 311 and the bottom wall 312 are arranged parallel and opposite to each other. The top wall 311 and the bottom wall 312 can be used to form two side walls of the mounting groove 310, so that the ambient light can be installed between the top wall 311 and the bottom wall 312, and the mounting part 110 of the lamp holder 100 can abut against the bottom surface of the mounting groove 310.

[0145] For example, the top wall 311 may face the top of the mounting portion 110 and the top of the light-transmitting portion 120, and the bottom wall 312 may close the opening 131, so that the bottom wall 312 can provide a certain protection for the light-emitting element 200 located in the receiving groove 130, thereby reducing the possibility of damage to the light-emitting element 200 located in the receiving groove 130.

[0146] The wire 210 of the light-emitting element 200 can be inserted into the forehead seat 300, so that it can be electrically connected to the wire 210 of the light-emitting element 200 through an external line located in the forehead seat 300, so as to supply power to the light-emitting element 200 through the external line located in the forehead seat 300.

[0147] When installing an ambient light on the forehead mount 300, first connect the wire 210 of the light-emitting element 200 to the external wiring of the forehead mount 300. Then, abut the mounting portion 110 of the lamp holder 100 against the bottom surface of the mounting groove 310, with the top of the lamp holder 100 facing the top wall 311 and the bottom of the lamp holder 100 facing the bottom wall 312. The bottom wall 312 closes the opening 131 of the receiving groove 130, allowing the receiving groove 130 to be closed by the base. Next, connect the fixing portion 150 of the lamp holder 100 to the forehead mount 300, thereby fixing the lamp holder 100 to the forehead mount 300. The light-transmitting portion 120 protrudes from the opening of the mounting groove 310, thus completing the installation process of the ambient light.

[0148] This application provides a personal mobility vehicle, including the handlebar assembly described in any of the above embodiments.

[0149] Since the mobility scooter includes the handlebar assembly of any of the above embodiments, the advantages of the mobility scooter including the handlebar assembly of any of the above embodiments can be found in the relevant description above, and will not be repeated here.

[0150] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the utility models disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the following claims.

[0151] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.

Claims

1. An ambient light, characterized in that, Includes a lamp holder (100) and a light-emitting element (200); The lamp holder (100) includes a wall structure that surrounds a receiving groove (130) having an opening (131) and a light-transmitting portion (120). The light-emitting element (200) is disposed in the receiving groove (130) through the opening (131) and can emit light through the light-transmitting part (120).

2. The ambient light according to claim 1, characterized in that, The wall structure includes a first wall structure (110) and a second wall structure. The first wall structure (110) and the second wall structure are disposed opposite to each other. The second wall structure has the light-transmitting part (120). The backlight side of the light-emitting element (200) faces the first wall structure (110).

3. The ambient light according to claim 2, characterized in that, The wall structure further includes a third wall structure (160), which connects the first wall structure (110) and the second wall structure, and the opening (131) is formed on the opposite side of the third wall structure (160).

4. The ambient light according to claim 3, characterized in that, The first wall structure (110) is located inside the second wall structure, and the opening (131) is arranged facing downwards.

5. The ambient light according to claim 3, characterized in that, The lamp holder (100) further includes at least one partition wall (170), the extension direction of which is the same as the extension direction of the first wall structure (110) and the second wall structure (170); The partition wall (170) is disposed between the first wall structure (110) and the second wall structure, and the partition wall (170) and the second wall structure form a light-transmitting groove (121).

6. The ambient light according to claim 1, characterized in that, The lamp holder (100) is a one-piece molded structure.

7. The ambient light according to claim 1, characterized in that, The lamp holder (100) is configured as an arc-shaped lamp holder (100).

8. The ambient light according to claim 2, characterized in that, The lamp holder (100) further includes a fixing part (150), which is at least used for connecting with the opposite part; The fixing part (150) is located at the end of the second wall structure. The outer surface of the fixing part (150) smoothly transitions with the outer surface of the second wall structure. The thickness of the fixing part (150) is less than the sum of the thicknesses of the first wall structure (110) and the second wall structure.

9. The ambient light according to claim 2, characterized in that, The first wall structure (110) is provided with a wire groove (140) communicating with the receiving groove (130), and the wire groove (140) is at least used to accommodate the wire (210) of the light-emitting element (200).

10. The ambient light according to any one of claims 1-9, characterized in that, The ambient light also includes a control component, which is connected to the control terminal of the light-emitting element (200); The light-emitting element (200) can receive signals from the control element, and the light-emitting element (200) can be used to emit light of various colors.

11. A handlebar assembly, characterized in that, Includes a forehead mount (300) and an ambient light as described in any one of claims 1-10; The forehead mount (300) is provided with a mounting groove (310) to accommodate the lamp holder (100); The mounting groove (310) has a groove bottom, and the light-transmitting part (120) is located on the side of the lamp holder (100) away from the groove bottom.

12. The handlebar assembly according to claim 11, characterized in that, The mounting groove (310) has a top wall (311) and a bottom wall (312) disposed opposite to each other; One of the bottom of the tank, the top wall (311), and the bottom wall (312) is disposed opposite to the opening (131) to close the opening (131).

13. The handlebar assembly according to claim 11, characterized in that, The mounting groove (310) extends circumferentially along the forehead seat (300).

14. The handlebar assembly according to claim 11, characterized in that, At least a portion of the light-transmitting portion (120) protrudes from the groove of the mounting groove (310).

15. A mobility scooter, characterized in that, Includes the handlebar assembly as described in any one of claims 11-14, or the ambient light as described in any one of claims 1-10.