All-directional lighting spotlight and spotlight set
By combining forward and lateral light out designs in spotlights, the problem of insufficient lighting in existing spotlights in curves and blind spots at night is solved, and a clear lighting effect is achieved in all aspects and improve the safety and convenience of riding.
Patent Information
- Application Number
- CN202422232030.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-10
AI Technical Summary
Existing spotlights are not enough to ride at night, especially in curves and blind spots, resulting in poor riding experience and increased safety risks.
Design a full-dimensional spotlight, combining the forward-exit high and low beam light groups and the side-exit side light groups, by setting the left and/or right-facing light sources to increase the observation range and angle, and illuminate the night curves and side blind spots.
All-round lighting is achieved to ensure that the road conditions are clearly visible and there are no dead corners when riding at night, especially in curves and blind spots, which significantly improves the safety and convenience of riding.
Smart Images

Figure CN223020026U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of vehicle lighting, and particularly relates to a spot lamp and a spot lamp group for omnidirectional lighting. Background Art
[0002] Ride-on devices, such as electric vehicles, bicycles or motorcycles, are not only convenient means of transportation but also representatives of sports and fashion. Spot lamps are very important components for night driving of ride-on vehicles, which can mainly play the roles of lighting and signaling. The light emitted by the spot lamp can illuminate the road and road conditions in front of the vehicle body. Even some cars will use additional auxiliary lighting spot lamps due to modification needs.
[0003] Existing spot lamps usually consist of a lamp panel, a driving circuit board and an LED light-emitting panel arranged on the driving circuit board. Existing spot lamps generally emit light from the front, including high-beam lighting and low-beam lighting arranged at the front of the spot lamp. The LED light-emitting panel generally includes a high-beam lamp module and / or a low-beam lamp module that emits light forward independently. In some special application scenarios, the LED light-emitting panel of the spot lamp generally includes a high-beam lamp module and / or a low-beam lamp module that emits light backward independently.
[0004] The night lighting brightness in cities and suburbs is very sufficient, but there are still areas with insufficient lighting. For example, suburban curves or some urban alleyways. Especially for curved road sections, the lack of lighting not only results in a poor riding experience but also poses potential safety risks. In the prior art, the light emitted by the spot lamp generally shines directly forward. Ordinary spot lamps installed on bicycles or electric vehicles usually have sufficient lighting in the front or rear, but there are blind spots that cannot be illuminated on both sides of the vehicle. In the case of night riding, it is easy to miss roadblocks and road conditions, directly affecting the convenience and safety of riding. Summary of the Invention
[0005] Based on this, in order to solve the above technical problems in the traditional technology, the utility model proposes a combination of a high-beam lamp group and a low-beam lamp group that emit light forward and a side lamp group that emits light laterally, increasing the observation range and angle. By setting left and / or right side light sources, the blind spots of night curves can be illuminated, facilitating the user to observe the road conditions omnidirectionally when driving or reversing, and ensuring omnidirectional lighting of the road conditions with no dead angles, namely a spot lamp and a spot lamp group.
[0006] In a first aspect, the utility model relates to a spot lamp for omnidirectional lighting, which includes a lamp body with a driving circuit board inside. The lamp body includes a front light-emitting part and a side light-emitting part. A combined lamp group is arranged on the front light-emitting part, and at least one side lamp group is arranged on the side light-emitting part. The combined lamp group includes a combined lamp board, and each side lamp group includes a side lamp board. The combined lamp board and the side lamp board are electrically connected to the driving circuit board. The combined lamp group emits high beam and / or low beam from the front of the lamp body, and the side lamp group emits side light from the lateral direction of the lamp body.
[0007] In a general embodiment, the combined lamp group includes at least one high beam light source assembly and at least one low beam light source assembly. Each side lamp group further includes a side light reflector, which is installed below the lamp beads of the side lamp board, and the light emitted by the lamp beads of the side lamp board is reflected by the side light reflector.
[0008] In a specific embodiment, the combined lamp group includes a first high beam light source assembly and a second high beam light source assembly, and also includes a first low beam light source assembly to a fourth low beam light source assembly.
[0009] During specific implementation, the lamp body includes a housing, a rear cover, a fixing plate and a face cover. The driving circuit board includes an aluminum-based driving circuit board and a fiberglass driving circuit board. The rear cover is hermetically locked on the housing to form a receiving cavity. The aluminum-based driving circuit board and the fiberglass driving circuit board are fixed in the receiving cavity. The front part of the housing forms the front light-emitting part, and the side light-emitting part is arranged on the left or right side of the housing. The face cover is fixed on the housing by a plurality of screws.
[0010] In the side light-emitting design, the side light-emitting part includes a fixing cavity formed by concave in the housing and used for installing the corresponding side lamp group. Each side lamp group further includes a side filter lens and a side pressing plate installed at the outlet of the fixing cavity.
[0011] In the front light-emitting design, the fixing plate is recessed and fixed on the housing to press the combined lamp group inside. A front filter lens is arranged between the face cover and the fixing plate. The face cover is fixed on the housing by a plurality of screws. The upper part of the fixing plate is provided with a first high beam light outlet, a second high beam light outlet, and a first low beam light outlet to a fourth low beam light outlet.
[0012] Among them, the combined lamp board includes a high beam lamp board and a low beam lamp board. The first high beam light source assembly includes a first high beam reflector cup, which is attached to a lamp bead of the high beam lamp board and communicates with the first high beam light outlet. The second high beam light source assembly includes a second high beam reflector cup, which is attached to another lamp bead of the high beam lamp board and communicates with the second high beam light outlet; each low beam light source assembly includes a lens fixing seat and a low beam lens. The low beam lens is installed on the lens fixing seat, and the lens fixing seat is aligned with the lamp bead of the low beam lamp board and the corresponding low beam light outlet.
[0013] In the wireless connection control design, the rear cover includes a spring antenna and an antenna cover. A wireless receiving circuit board is also arranged in the receiving cavity. The antenna cover is hermetically fixed on the rear cover. The spring antenna is received in the antenna cover and electrically connected to the wireless receiving circuit board. The wireless receiving circuit board is electrically connected to the driving circuit board.
[0014] In terms of the fixed connection implementation method, the lamp body can be turned to install a U-shaped bracket or a fixed quick-release bracket, the U-shaped bracket can be rotatably fixed to both sides of the lamp body by rivets, or the quick-release bracket can be inserted and fixed in the clamp assembly.
[0015] In a second aspect, the utility model relates to a spotlight group with all-round lighting, including a left spotlight and a right spotlight, the left spotlight includes the spotlight structure with all-round lighting as described in the first aspect, the right spotlight includes the spotlight structure with all-round lighting as described in the first aspect, and the left spotlight and the right spotlight are wirelessly or wiredly connected to a remote control.
[0016] Technical effects of the utility model:
[0017] The all-round lighting spotlight and spotlight assembly of the utility model are provided with left and / or right directional light sources to illuminate the blind spots of curved roads and lateral blind spots at night, making it convenient for users to observe the side conditions and road conditions when driving or reversing. Using the spotlight or spotlight assembly of this embodiment, it is very convenient to drive at night even in roads without street lights, especially for driving on curved roads.
[0018] The all-round lighting spotlight and spotlight group of the present invention are provided with a side auxiliary lighting system for the spotlight, and one or more light source lamp groups, such as LED lamp groups, are integrated at the side positions inside the spotlight. Side light sources are emitted through side light reflectors at specific angles. The side light sources are bright and the light spot angle is just right so as not to illuminate drivers and passengers in the same direction.
[0019] The all-round lighting spotlight and spotlight group of the present invention combine a high beam light group, a low beam light group and a side light group to provide all-round lighting and more spotlight lighting effects.
[0020] The utility model provides all-round lighting spotlights and spotlight groups. The high-beam lamp group emitting light from the front focuses the emitted light spot into a circle through the high-beam reflector cup, and the light spot of the lens lamp group is in a rectangular shape. Combined with the side lamp group, the lighting angle is increased to achieve a good road paving effect. The all-round lighting ensures that the road section is fully illuminated and the road conditions are clear. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0022] in:
[0023] Figure 1 It is a front-view three-dimensional structural schematic diagram of the omnidirectional lighting spotlight of the utility model;
[0024] Figure 2 Schematic diagram of the light-emitting effect structure of the spot lamp for omnidirectional illumination of the present utility model;
[0025] Figure 3 Schematic diagram of the side view three-dimensional structure of the spot lamp for omnidirectional illumination of the present utility model;
[0026] Figure 4 Three-dimensional structure diagram of the back of the spot lamp for omnidirectional illumination of the present utility model;
[0027] Figure 5 is Figure 1 Schematic diagram of the sectional structure of the spot lamp for omnidirectional illumination shown along the section line B-B;
[0028] Figure 6 is Figure 1 Schematic diagram of the sectional structure of the spot lamp for omnidirectional illumination shown along the section line A-A;
[0029] Figure 7 is Figure 3 Schematic diagram of the sectional structure of the spot lamp for omnidirectional illumination shown along the section line C-C;
[0030] Figure 8 Three-dimensional exploded structure diagram of the spot lamp for omnidirectional illumination of the present utility model;
[0031] Figure 9 Structural diagram of the left and right spot lamps of the spot lamp group for omnidirectional illumination of the present utility model;
[0032] Figure 10 is Figure 1 Schematic diagram of the hoisting structure of the U-shaped bracket of the spot lamp for omnidirectional illumination shown;
[0033] Figure 11 Schematic diagram of the structure of the quick-release bracket for installing the spot lamp for omnidirectional illumination of the present utility model. Specific embodiments
[0034] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0035] Embodiment 1
[0036] Please refer to Figures 1 to 4 and Figure 8 , which show the front, back and three-dimensional structure diagrams of a single spot lamp for omnidirectional illumination in this embodiment.
[0037] The spot lamp of this embodiment includes a lamp body 1 with a driving circuit board (21, 22) arranged inside. As Figure 8 shown in the exploded view, the lamp body 1 includes a housing 12, a rear cover 13, a fixing plate 141 for stabilizing multiple front-emitting lamp groups, and a face cover 11. The lamp body 1 is supported on a U-shaped bracket 9 and can rotate back and forth within a certain angular range with the U-shaped bracket 7 as a reference.
[0038] As Figures 1 - 3 shown, the lamp body 1 includes a front-emitting part P1 and a side-emitting part P2. A combined lamp group 2 including one or more combinations of light source components is arranged on the front-emitting part P1, and at least one side lamp group 3 is arranged on the side-emitting part P2. In this embodiment, one side lamp group is adopted. It can be understood that according to the actual product requirements, one or more than one side lamp groups can be arranged on one side of a lamp body, or one or more than one side lamp groups can be respectively arranged on both sides of a lamp body.
[0039] There are many ways to arrange the lamp groups in the combined lamp group 2. In this embodiment, the combined lamp group 2 includes at least one high-beam light source component and at least one low-beam light source component. There are many ways to implement the high-beam light source component and the low-beam light source component. In this embodiment, the high-beam LED component and the low-beam LED component are taken as examples for introduction.
[0040] Generally speaking, the combined lamp group 2 includes a combined lamp board and a corresponding light guide structure. Corresponding to the embodiment of at least one high-beam light source component and at least one low-beam light source component, as Figure 8 shown, the combined lamp board includes a high-beam lamp board 24 and a low-beam lamp board 26. There are many ways to implement the high-beam lamp board 24 and the low-beam lamp board 26. In this embodiment, the high-beam LED lamp board and the low-beam LED lamp board are taken as examples for introduction.
[0041] Generally speaking, the side lamp group of this embodiment includes a side lamp board. The combined lamp board and the side lamp board are electrically connected to the driving circuit board (21, 22). The combined lamp group 2 emits high beam and / or low beam from the front of the lamp body, and the side lamp group 3 emits side light from the side direction of the lamp body.
[0042] In the overall embodiment, the combined lamp group 2 includes at least one high-beam light source component and at least one low-beam light source component. Each side lamp group further includes a side light reflector, which is installed below the lamp beads of the side lamp board, and the light emitted by the lamp beads of the side lamp board is reflected by the side light reflector.
[0043] In the following specific implementation, taking the combined lamp group 2 including two groups of high beam light source components and four groups of low beam light source components, and setting one side lamp group 3 as an example for introduction, the implementation structures of other more groups of high beam light source components, low beam light source components and side lamp groups are correspondingly the same, and only the high beam light source components, low beam light source components and side lamp groups electrically connected to the driving circuit boards (21, 22) need to be added.
[0044] Please refer to Figure 1 and Figure 2 Specifically, when implemented, the combined lamp group 2 includes a first high beam light source component 30, a second high beam light source component 31, a first low beam light source component 50, a second low beam light source component 51, a third low beam light source component 52 and a fourth low beam light source component 53. The first high beam light source component 30 and the second high beam light source component 31 of the combined lamp group 2 emit high beam L1 from the front of the lamp body 1; the first low beam light source component 50, the second low beam light source component 51, the third low beam light source component 52 and the fourth low beam light source component 53 of the combined lamp group 2 emit low beam L2 from the front of the lamp body 1; the side lamp group 3 emits side light L3 from the side direction of the lamp body 1.
[0045] Please refer to Figure 6 The driving circuit board includes an aluminum-based driving circuit board 21 and a fiberglass driving circuit board 22 to meet the high-power heat dissipation requirements of the spot lamp. The driving circuit board is connected to the external cable through a power supply female plug 28. The power supply female plug 28 is sealed and fixed on the rear cover 13 through a small sealing ring 83.
[0046] The rear cover 13 is hermetically locked to the rear of the housing 11 through a second contour sealing ring 82, and forms a receiving cavity inside the housing 11, and the aluminum-based driving circuit 21 and the fiberglass driving circuit board 22 are fixed in the receiving cavity. The front part of the housing 12 forms the front light-emitting part P1, and the side light-emitting part P2 is arranged on the left or right side of the housing. The face cover 11 is hermetically fixed to the front part of the housing 12 through a plurality of screws and a first contour sealing ring 81.
[0047] Please refer to Figure 7 and Figure 8, in the side light-emitting design, the side light-emitting part P2 includes a fixed cavity 125 recessed in the side wall of the housing 12 for installing the side light group 3. The side light group 3 includes a side light board 27, a side light reflector 71, a side filter lens 62 installed at the outlet of the fixed cavity 125, and a side pressing plate 142. The side light board 27 is installed at the top of the fixed cavity 125, the side light reflector 71 is installed below the LED lamp beads 273 of the side light board 27, and the emitted light of the LED lamp beads 273 of the side light board 27 is reflected by the side light reflector 71 and emitted after being filtered by the side filter lens 62. The side light group 3 integrates one or more LED light groups on the inner side of the spotlight, and emits side light sources through the side light reflectors 71 at specific angular orientations, which is bright and the light spot angle just does not irradiate the co-directional drivers and passengers.
[0048] Please also refer to Figure 1 , Figure 5 , Figure 6 and Figure 8 , the combined light group 2 with a front light-emitting design includes a first high beam light source component 30, a second high beam light source component 31, a first low beam light source component 50, a second low beam light source component 51, a third low beam light source component 52, and a fourth low beam light source component 53. The housing 12 of the lamp body 1 is divided into left and right parts by an internal partition 126, and a drive circuit board is installed on the partition 126, including an aluminum-based drive circuit board 21 and a fiberglass drive circuit board 22 that are isolated. A function switch 18 and an antenna module are arranged on the left side of the partition 126, the first high beam light source component 30 and the second high beam light source component 31 are arranged in the upper part on the right side, and the first low beam light source component 50, the second low beam light source component 51, the third low beam light source component 52, and the fourth low beam light source component 53 are arranged in the lower part.
[0049] The fixing plate 141 is recessed and fixed on the front light-emitting part P1 of the housing 11 for pressing each light source component of the internal combined light group 2. A forward filter lens 61 is arranged between the face cover 11 and the fixing plate 141, and the face cover 11 is fixed on the housing 12 by several screws, pressing the forward filter lens 61 on the front light-emitting part P1 of the housing 12.
[0050] Light-emitting openings are arranged on the fixing plate 141 corresponding to each light source component, including a first high beam light-emitting opening, a second high beam light-emitting opening, and a first low beam light-emitting opening to a fourth low beam light-emitting opening.
[0051] The combined light board includes a high beam light board 24 and a low beam light board 26.
[0052] As Figure 8As shown, the first high beam light source assembly 30 includes a first high beam reflector cup 301, which is attached to a lamp bead 241 of the high beam lamp board 24 and communicates with the first high beam light outlet of the fixing plate 141. The second high beam light source assembly 31 includes a second high beam reflector cup 311, which is attached to another lamp bead 242 of the high beam lamp board 24 and communicates with the second high beam light outlet of the fixing plate 141. The number of the high beam reflector cups is set to be the same as the number of lamp beads on the high beam lamp board 24.
[0053] Each low beam light source assembly includes a low beam lamp board 26, a lens fixing seat, and a low beam lens. The number of the low beam lenses is set to be the same as the number of lamp beads on the low beam lamp board 26. Taking the first low beam light source assembly 50 as an example, it includes a lens fixing seat 161 and a low beam lens 501. The low beam lens 501 is installed on the lens fixing seat 161. One end of the lens fixing seat 161 is aligned with one of the four lamp beads on the low beam lamp board 26, and the other end is aligned with the corresponding low beam light outlet of the fixing plate 141. Or as Figure 6 shown, the fourth low beam light source assembly 53 includes a lens fixing seat 532 and a low beam lens 531. The structures of other low beam lenses and the lens fixing seats are the same.
[0054] Please refer to Figure 6 and Figure 8 , in the wireless connection control design, the rear cover 13 seals and sets the antenna cover 17 through at least one small sealing ring, such as the sealing ring 84. A spring antenna 291 is covered in the antenna cover 17. As Figure 6 shown, a wireless receiving circuit board 29 is further set in the receiving cavity of the housing 12. The antenna cover 17 is sealed and fixed on the rear cover 13. The spring antenna 291 is received in the antenna cover 71 and electrically connected to the wireless receiving circuit board 29. The wireless receiving circuit board 29 is electrically connected to the driving circuit board.
[0055] The rear cover 13 seals and sets the protection switch 18 through at least one small sealing ring, such as the sealing ring 85. A switch circuit board 23 is set in the protection switch 18. The switch circuit board 23 is electrically connected to the driving circuit board.
[0056] Please refer to Figure 1 and Figure 10 , in the first fixed connection implementation method, a U-shaped bracket 9 can be rotatably installed on the lamp body 1. The U-shaped bracket 9 is rotatably fixed on both sides of the lamp body 1 through rivets 91. Different installation directions of the U-shaped bracket 9 can achieve different fixed connection methods of the lamp body 1 on the vehicle, such as Figure 1 the support installation shown or Figure 9 the hoisting form shown, so that users can have more choices of installation and fixing methods.
[0057] Please refer toFigure 11 In the second fixed connection implementation method, a quick-release bracket 901 is fixed to the bottom of the lamp body 1. The U-shaped bracket 901 is fixed to the bottom of the lamp body by rivets. The quick-release bracket 901 can be inserted and fixed in the clamp assembly 900 and is installed on the vehicle through the connection assembly 903 of the clamp assembly 900.
[0058] Embodiment 2
[0059] Please refer to Figure 9 This embodiment relates to a spotlight group using omnidirectional lighting, including a left spotlight and a right spotlight. The left spotlight includes the spotlight structure with omnidirectional lighting in Embodiment 1, and the right spotlight also includes the spotlight structure with omnidirectional lighting in Embodiment 1. The left spotlight and the right spotlight are wirelessly or wiredly connected to a remote controller.
[0060] The left spotlight of the spotlight group is provided with a lateral light group 3 on the outer side. The lateral light group 3 mainly includes a side light board 27 and a side light reflector 71. The side light board 27 is installed on the top of the fixed cavity 125 of the housing 12, and the side light reflector 71 is installed below the LED lamp beads of the side light board 27. The emitted light of the LED lamp beads of the side light board 27 is reflected by the side light reflector 71 and emits lateral light L31 in the lateral direction outward from the lamp body 1 of the left spotlight.
[0061] The right spotlight of the spotlight group is provided with a lateral light group on the outer side in the opposite direction. The lateral light group mainly includes a side light board 270 and a side light reflector 710. The side light reflector 710 is installed below the LED lamp beads of the side light board 270. The emitted light of the LED lamp beads of the side light board 27 is reflected by the side light reflector 710 and emits lateral light L32 in the lateral direction outward from the lamp body 1 of the right spotlight, thereby supplementing the illumination blind area of the forward light emission of the spotlight in the form of a light group and achieving a better lighting effect.
[0062] The spotlight with omnidirectional lighting includes a wireless receiving module for wireless communication with the remote controller, or includes a signal forwarding module for wired communication with the remote controller. The wireless receiving module includes a spring antenna 291 and a wireless receiving circuit board 29, and the spring antenna 291 is electrically connected to the wireless receiving circuit board 29.
[0063] The above-disclosed are only the preferred embodiments of the present invention. Of course, the scope of the rights of the present invention cannot be limited thereby. Therefore, equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.
Claims
1. A spotlight with omnidirectional lighting, characterized in that: The invention comprises a lamp body with a built-in driving circuit board, the lamp body comprises a front light emitting portion and a side light emitting portion, a combination light group is arranged on the front light emitting portion, at least one side light group is arranged on the side light emitting portion, the combination light group comprises a combination light board, each side light group comprises a side light board, the combination light board and the side light board are electrically connected to the driving circuit board, the combination light group emits high beam and / or low beam from the front of the lamp body, and the side light group emits side light from the lateral direction of the lamp body.
2. The omnidirectional lighting spotlight according to claim 1, characterized in that: The combination lamp group includes at least one high beam light source assembly and at least one low beam light source assembly, and each side lamp group also includes a side light reflector, which is installed below the lamp beads of the side light panel, and the output light of the lamp beads of the side light panel is reflected by the side light reflector.
3. The omnidirectional lighting spotlight according to claim 2, characterized in that: The combination lamp group includes a first high-beam light source assembly and a second high-beam light source assembly, and also includes a first low-beam light source assembly to a fourth low-beam light source assembly.
4. The omnidirectional lighting spotlight according to claim 3, characterized in that: The lamp body includes an outer shell, a back cover, a fixing plate and a face cover. The driving circuit board includes an aluminum-based driving circuit board and a glass-fiber driving circuit board. The back cover is sealed and locked on the outer shell to form a receiving cavity. The aluminum-based driving circuit board and the glass-fiber driving circuit board are fixed in the receiving cavity. The front part of the outer shell forms the front light-emitting portion. The side light-emitting portion is arranged on the left or right side of the outer shell. The face cover is fixed to the outer shell by a plurality of screws.
5. The omnidirectional lighting spotlight according to claim 4, characterized in that: The side light emitting portion includes a fixed cavity which is concavely formed in the housing and is used to install the corresponding side light group. Each side light group also includes a side filter lens and a side pressure plate installed at the outlet of the fixed cavity.
6. The omnidirectional lighting spotlight according to claim 4, characterized in that: The fixing plate is recessed and fixed on the outer shell to compress the internal combination lamp group, a forward filter lens is arranged between the surface cover and the fixing plate, and a first high beam light outlet, a second high beam light outlet and a first low beam light outlet to a fourth low beam light outlet are arranged on the upper part of the fixing plate.
7. The omnidirectional lighting spotlight according to claim 6, characterized in that: The combination light panel includes a high beam light panel and a low beam light panel, the first high beam light source assembly includes a first high beam reflector cup, the first high beam reflector cup is attached to a lamp bead of the high beam light panel and is connected to the first high beam light outlet, the second high beam light source assembly includes a second high beam reflector cup, the second high beam reflector cup is attached to another lamp bead of the high beam light panel and is connected to the second high beam light outlet; each low beam light source assembly includes a lens fixing seat and a low beam lens, the low beam lens is installed on the lens fixing seat, and the lens fixing seat is aligned with the lamp bead of the low beam light panel and the corresponding low beam light outlet.
8. The omnidirectional lighting spotlight according to claim 4, characterized in that: The back cover includes a spring antenna and an antenna cover. A wireless receiving circuit board is also arranged in the receiving cavity. The antenna cover is sealed and fixed on the back cover. The spring antenna is accommodated in the antenna cover and is electrically connected to the wireless receiving circuit board. The wireless receiving circuit board is electrically connected to the driving circuit board.
9. The omnidirectional lighting spotlight according to claim 1, characterized in that: The lamp body can be rotatably mounted with a U-shaped bracket or a fixed quick-release bracket. The U-shaped bracket can be rotatably fixed on both sides of the lamp body through rivets, or the quick-release bracket can be inserted and fixed in a clamp assembly.
10. A spotlight assembly with omnidirectional lighting, characterized in that: It comprises a left spotlight and a right spotlight, wherein the left spotlight comprises the omnidirectional lighting spotlight structure as described in any one of claims 1 to 9, and the right spotlight comprises the omnidirectional lighting spotlight structure as described in any one of claims 1 to 9, and the left spotlight and the right spotlight are wirelessly or wiredly connected to a remote control.