Lamp
By adopting an integrated design of lighting modules and lighting mounting brackets in the lamps, integrated power supply and control of dual light-emitting units are achieved, solving the problems of complex wiring and unstable voltage in traditional lamps, improving power supply stability and reducing production costs.
Patent Information
- Application Number
- CN202520554257.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-25
AI Technical Summary
In traditional lighting fixtures, the light-emitting units of the base and the lamp post are equipped with independent power supply lines, resulting in complex internal wiring layout, high maintenance costs, and unstable voltage, which affects the lifespan of the light source.
The lighting module and lighting mounting base are integrated into one design. The first and second light-emitting modules are electrically connected to the control motherboard through the connecting shell, realizing integrated power supply and control of the dual light-emitting units, simplifying the circuit structure and reducing the number of power interfaces.
The internal wiring structure of the lamps has been simplified, production costs have been reduced, power supply stability has been improved, and assembly steps have been reduced.
Smart Images

Figure CN223954074U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of lighting devices, in particular to a lamp. BACKGROUND
[0002] In the structure of conventional lamps, the base is usually only used as a support component, and the light-emitting function is mainly concentrated in the lamp post or lampshade part. With the popularization of LED technology and the increasing demand for lighting environment, lamp bases with light-emitting function have gradually attracted attention. There are some products in the prior art that both the base and the lamp post have light-emitting function, but they generally have the following defects: the light-emitting units of the base and the lamp post are respectively provided with independent power supply lines, multiple power supply interfaces or separate control modules need to be configured, which leads to complex internal wiring layout and high maintenance cost; and the separated power supply design is easy to cause unstable voltage, affecting the service life of the light source. CONTENT OF THE UTILITY MODEL
[0003] The present application provides a lamp.
[0004] The present application provides a lamp, which comprises a lighting module, a lighting mounting base and a control mainboard. The lighting module comprises a first light-transmitting shell and a first light-emitting module. The first light-transmitting shell comprises a mounting shell and a connecting shell which are in communication, and the connecting shell has a wire passing channel. The first light-emitting module is arranged in the mounting shell, and the first light-emitting module is provided with a wire which is arranged in the wire passing channel. The lighting mounting base comprises a second light-transmitting shell and a second light-emitting module, and the second light-emitting module is arranged in the second light-transmitting shell. The control mainboard is arranged in the second light-transmitting shell, the second light-emitting module is electrically connected to the control mainboard, the connecting shell is sequentially arranged in the second light-transmitting shell and the control mainboard, the wire passing channel is in communication with the second light-transmitting shell, and the wire is electrically connected to the control mainboard.
[0005] In some optional examples, the second light-transmitting shell comprises a base and a light-transmitting cover body, and the light-transmitting cover body is connected to one side of the base. The connecting shell has a first end and a second end which are opposite to each other. The first end is located at the side of the light-transmitting cover body which is away from the base and is connected to the mounting shell. The second end is located at the side of the base which is away from the light-transmitting cover body. The first end is provided with a pressing part. The lighting mounting base further comprises a locking piece. The second end is connected to the locking piece so that the pressing part abuts against the light-transmitting cover body. The locking piece abuts against the base. The pressing part and the locking piece jointly press the light-transmitting cover body and the base.
[0006] In some optional examples, the base is provided with a mounting through slot. The mounting base further comprises a mounting bracket which is arranged in the mounting through slot and is fixedly connected to the base. The connecting shell is arranged in the mounting bracket. The locking piece is arranged in the mounting through slot and abuts against the side of the mounting bracket which is away from the light-transmitting cover body.
[0007] In some optional examples, the light-transmitting cover and the base are stacked in a designated mounting direction; the connecting shell comprises a connecting column and a pressing part, the connecting column is sequentially arranged in the light-transmitting cover and the mounting bracket, and the pressing part is connected to the peripheral wall of the connecting column and protrudes relative to the peripheral wall to be spaced apart from the mounting bracket in the mounting direction.
[0008] In some optional examples, the control mainboard is arranged on the side of the mounting bracket facing the light-transmitting cover, the connecting shell is provided with a gap for the wire channel, and the gap is located on the side of the mounting bracket away from the control mainboard, and the wire is connected to the control mainboard through the gap.
[0009] In some optional examples, the gap is arranged on the peripheral wall of the connecting shell, the side of the mounting bracket away from the control mainboard is recessed to form a wire passing groove, the wire passing groove is communicated with the gap, and the bottom of the wire passing groove is spaced apart from the locking part to enable the wire to be connected to the control mainboard through the gap and the wire passing groove.
[0010] In some optional examples, the mounting seat further comprises a counterweight and a bottom cover, the bottom cover is connected to the side of the mounting slot away from the light-transmitting cover and closes the mounting slot, and the counterweight is arranged between the bottom cover and the mounting bracket.
[0011] In some optional examples, the mounting seat further comprises an elastic pad, the elastic pad is arranged between the counterweight and the mounting bracket, and the opposite sides of the elastic pad are fixedly connected to the counterweight and the mounting bracket, respectively.
[0012] In some optional examples, the outer wall of the base is provided with a first limiting part, one end of the light-transmitting cover is provided with a second limiting part, the first limiting part and the second limiting part are nested and matched, and one of the first limiting part and the second limiting part is a slot and the other is a protrusion.
[0013] In some optional examples, the locking part is a locking nut, the peripheral wall of the second end has external threads, and the second end is threadedly connected with the locking part.
[0014] Compared with the prior art, when the lamp provided by the present application is used, the lighting module is mounted on the lighting mounting seat and placed in the application environment of the lamp through the lighting mounting seat. The lighting module provides main lighting through the first light-emitting module, and the lighting mounting seat provides auxiliary lighting through the second light-emitting module. The lighting mounting seat not only can support and fix the lighting module, but also can provide auxiliary lighting. The wire of the first light-emitting module enters the second light-transmitting shell through the wire channel in the first light-transmitting shell, and the first light-emitting module is electrically connected with the control mainboard through the wire; the second light-emitting module is also electrically connected with the control mainboard. In the lamp provided by the present application, the lighting module and the lighting mounting seat are electrically connected to the control mainboard together, realizing integrated power supply and control of the double light-emitting units, simplifying the internal circuit structure of the lamp, reducing the number of power supply interfaces, and improving the power supply stability; and the modular connection structure reduces the assembly process and reduces the production cost. Attached Figure Description
[0015] To more clearly illustrate the technical solution of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the structure of a lamp provided in one embodiment of this application.
[0017] Figure 2 yes Figure 1 An exploded view of the lighting module of the lamp shown.
[0018] Figure 3 yes Figure 1 An exploded view of the lighting mounting base of the lamp shown.
[0019] Figure 4 yes Figure 3 The diagram shows a cross-sectional view of the lighting mounting bracket.
[0020] Figure 5 yes Figure 4 A magnified structural diagram of part B.
[0021] Figure 6 yes Figure 1 The diagram shown illustrates the structure of the mounting bracket and connecting housing for the luminaire.
[0022] Labeling Explanation: 100, Lamp Fixture; 10, Lighting Module; 12, First Transparent Housing; 121, Mounting Housing; 1212, Main Housing; 1214, Lampshade; 123, Connecting Housing; 1232, Wiring Channel; 1233, Connecting Post; 1234, First End; 1235, Clamping Part; 1236, Second End; 1237, Relief Notch; 14, First Light-Emitting Module; 141, Wire; 143, Circuit Board; 145, First Light-Emitting Component; 30, Lighting Mounting Base; 31. Bottom cover; 32. Second light-transmitting outer shell; 3201. Mounting slot; 321. Base; 3212. Mating part; 3214. Receiving part; 3215. First limiting part; 323. Light-transmitting cover; 3232. Second limiting part; 33. Counterweight; 332. Elastic pad; 34. Second light-emitting module; 341. Second light-emitting element; 35. Insulating film; 36. Locking part; 38. Mounting bracket; 381. Cable tray; 50. Control main board; 52. Power cord. Detailed Implementation
[0023] In order to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described in the following with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0024] As some terms are used in the description and claims to refer to certain components, those skilled in the art can understand that hardware manufacturers can use different names to refer to the same components. The description and claims do not distinguish components by name difference, but by functional difference. As mentioned throughout the description and claims, "including" is an open term, which should be interpreted as "including but not limited to"; "approximately" means that those skilled in the art can solve technical problems within a certain error range and basically achieve technical effects.
[0025] Please refer to Figure 1 The embodiments of the present application provide a lamp 100, which can be used in a building to provide lighting or decoration for the building. For example, the lamp 100 can be used in a living room, a dining room, a bedroom, etc. as decorative lighting to improve the space style.
[0026] The lamp 100 can include a lighting module 10, a lighting mounting seat 30, and a control mainboard 50. The lighting module 10 provides main lighting. The lighting mounting seat 30 is used to mount the lighting module 10, facilitating the overall placement of the lamp 100, and can also serve as an auxiliary light source to provide lighting.
[0027] Please refer to Figure 2 and Figure 3 The lighting module 10 can include a first light-transmitting shell 12 and a first light-emitting module 14. The first light-transmitting shell 12 includes a mounting shell 121 and a connecting shell 123, and the connecting shell 123 has a wire passage 1232. The first light-emitting module 14 is arranged in the mounting shell 121 and is provided with a wire 141, which is arranged in the wire passage 1232. The lighting mounting seat 30 can include a second light-transmitting shell 32 and a second light-emitting module 34, and the second light-emitting module 34 is arranged in the second light-transmitting shell 32. The control mainboard 50 is arranged in the second light-transmitting shell 32, and the second light-emitting module 34 is electrically connected to the control mainboard 50. The connecting shell 123 is sequentially arranged in the second light-transmitting shell 32 and the control mainboard 50, the wire passage 1232 is communicated with the second light-transmitting shell 32, and the wire 141 is electrically connected to the control mainboard 50.
[0028] In use, the lighting module 10 is mounted on the lighting mount 30, and is placed in the application environment of the lamp 100 through the lighting mount 30. The lighting module 10 provides main lighting through the first light-emitting module 14, and the lighting mount 30 provides auxiliary lighting through the second light-emitting module 34. The lighting mount 30 can not only support and fix the lighting module 10, but also provide auxiliary lighting. The wire 141 of the first light-emitting module 14 enters the second light-transmitting shell 32 through the wire passage 1232 in the first light-transmitting shell 12, and the first light-emitting module 14 is electrically connected to the control mainboard 50 through the wire 141; the second light-emitting module 34 is also electrically connected to the control mainboard 50. In the lamp 100 provided in the application, the lighting module 10 and the lighting mount 30 are electrically connected to the control mainboard 50 together, realizing integrated power supply and control of the two light-emitting units, simplifying the internal circuit structure of the lamp 100, reducing the number of power supply interfaces, and improving the power supply stability; and the modular connection structure reduces the assembly process and reduces the production cost.
[0029] In the embodiment, the mounting shell 121 is used to mount other structures of the lighting module 10. The specific shape of the mounting shell 121 is not limited in the specification, and the shape of the mounting shell 121 can be adaptively adjusted according to the required shape of the lamp 100. The specific shape of the lighting module 10 is not limited in the specification, for example, the lighting module 10 can be designed in a geometric shape (such as a cube, a sphere, a cylinder) or a non-regular artistic design. In the embodiment, the lighting module 10 is a lamp post, and the mounting shell 121 is generally columnar. The mounting shell 121 can include a non-light-transmitting main shell 1212 and a light-transmitting lampshade 1214, the main shell 1212 has a mounting cavity for mounting the first light-emitting module 14, and the lampshade 1214 is connected to one side of the main shell 1212 and covers the mounting cavity of the main shell 1212. The lampshade 1214 can be opposite to the light-emitting side of the first light-emitting module 14 to conduct the light emitted by the first light-emitting module 14 to the outside.
[0030] The connecting shell 123 is connected to the mounting shell 121 and is used to be connected to the second light-transmitting shell 32 to support the lighting module 10. The connecting shell 123 is also generally columnar, and the outer diameter of the connecting shell 123 is smaller than that of the mounting shell 121. The connecting shell 123 can be integrally connected with the mounting shell 121. The wire passage 1232 is opened in the connecting shell 123 and penetrates the connecting shell 123 along the length direction of the connecting shell 123, and is in communication with the mounting cavity of the mounting shell 121.
[0031] The first light-emitting module 14 is installed in the mounting shell 121 and is configured to provide illumination. The first light-emitting module 14 can include a circuit board 143, a first light-emitting element 145, and the wire 141 described above. The circuit board 143 is fixedly connected in the main shell 1212, the first light-emitting element 145 can be disposed on the side of the circuit board 143 facing the lampshade 1214, and the wire 141 is connected to one end of the circuit board 143 close to the connecting shell 123 and passes through the wire passage 1232. The present specification does not limit the specific type of the first light-emitting element 145. For example, the first light-emitting element 145 can include at least one of the following light sources: LED lamp beads, lasers.
[0032] In some embodiments, the lighting module 10 can further include a light guide element, which can be disposed between the first light-emitting element 145 and the lampshade 1214. Different light-out lamp effects can be achieved by the structural design of the light guide element in cooperation with the lampshade 1214. In other embodiments, the main shell 1212 can further include a light-transmitting portion, further enriching the lamp effect of the lighting module 10.
[0033] In the present embodiment, the second light-transmitting shell 32 can include a base 321 and a light-transmitting cover 323 connected to one side of the base 321. The base 321 is a hollow structure with both ends open and penetrating through the entire base 321, forming a through inner cavity, and the base 321 is generally a rectangular shell. In order to facilitate the installation of the light-transmitting cover 323, the base 321 can include a fitting portion 3212 and a receiving portion 3214, which are connected in succession along the vertical direction (the vertical direction of the luminaire 100 when placed on the water surface in the application environment). The outer diameter of the fitting portion 3212 is smaller than the outer diameter of the receiving portion 3214.
[0034] The specific shape of the light-transmitting cover 323 is not limited in the specification, for example, the light-transmitting cover 323 can be in a columnar shape, a conical shape, a spherical shape, etc. In the embodiment, the light-transmitting cover 323 is in a hollow quadrangular frustum shape, which has four sides in a trapezoidal shape, and the four sides are smoothly connected, which can effectively scatter light, reduce glare, and provide more uniform illumination. The top of the light-transmitting cover 323 is small in opening for the connection shell 123 to pass through, and the bottom of the light-transmitting cover 323 is large in opening for connection with the base 321. The light-transmitting cover 323 is connected to one end of the base 321, for example, the light-transmitting cover 323 can be connected with the fitting part 3212 in a plug-in manner. The fitting part 3212 is embedded in the light-transmitting cover 323, the maximum inner diameter of the light-transmitting cover 323 is greater than the outer diameter of the fitting part 3212, and the maximum outer diameter of the light-transmitting cover 323 is less than the outer diameter of the accommodating part 3214. The light-transmitting cover 323 is sleeved on the fitting part 3212 and abuts against the accommodating part 3214, and the fitting part 3212 can provide a certain guiding effect for the light-transmitting cover 323 during installation. The light-transmitting cover 323 is nested with the fitting part 3212 and abuts against the accommodating part 3214, which further improves the connection tightness between the light-transmitting cover 323 and the base 321. In the embodiment, the end of the fitting part 3212 away from the accommodating part 3214 can be provided with a guide inclined surface to adapt to the inclined side wall of the light-transmitting cover 323.
[0035] The light-transmitting cover 323 can be a transparent lampshade with high light transmission or a semi-transparent lampshade with low light transmission. In the embodiment, the light-transmitting cover 323 is a semi-transparent black lampshade. The light-transmitting cover 323 can be made of materials such as dark gray or black acrylic, polycarbonate, glass, etc., or the light-transmitting cover 323 can be dyed or coated on the surface of transparent or semi-transparent materials to achieve a semi-transparent black effect. The light-transmitting cover 323 is a semi-transparent black lampshade, which can softly scatter light and also achieve the effect that the structure inside the light-transmitting cover 323 cannot be seen when the light is off and the light-transmitting cover 323 can transmit light when the light is on.
[0036] Please refer to Figure 4 and Figure 5 In the embodiment, the outer wall of the accommodating part 3214 is provided with a first limiting part 3215, one end of the light-transmitting cover 323 is provided with a second limiting part 3232, and the first limiting part 3215 and the second limiting part 3232 are nested when the light-transmitting cover 323 is sleeved on the fitting part 3212. One of the first limiting part 3215 and the second limiting part 3232 is a slot, and the other is a protrusion. The nested connection of the first limiting part 3215 and the second limiting part 3232 effectively limits the relative rotation between the light-transmitting cover 323 and the base 321, and improves the connection stability of the two.
[0037] The specific structure of the first limiting part 3215 and the second limiting part 3232 is not limited in the specification, for example, the first limiting part 3215 can be a protrusion arranged on the end face of the accommodating part 3214, and the second limiting part 3232 is a slot arranged on the end face of the light-transmitting cover body 323. In the embodiment, the first limiting part 3215 is a slot, and the first limiting part 3215 is arranged on the end face of the accommodating part 3214 facing the light-transmitting cover body 323 and is recessed relative to the end face. The second limiting part 3232 is a protrusion, and the second limiting part 3232 can be integrally formed on the end face of the light-transmitting cover body 323 facing the base 321 and protrude relative to the end face. When the light-transmitting cover body 323 is sleeved on the fitting part 3212, the second limiting part 3232 is inserted into the first limiting part 3215, which avoids relative rotation between the light-transmitting cover body 323 and the base 321, and realizes fixation of the light-transmitting cover body 323 and the base 321.
[0038] The light-transmitting cover body 323 and the base 321 are superposed in the specified mounting direction A. The connecting shell 123 is arranged through the light-transmitting cover body 323 and the base 321, and the connecting shell 123 has opposite first and second ends 1234 and 1236. The first end 1234 is located on the side of the light-transmitting cover body 323 away from the base 321 and is connected to the mounting shell 121. The second end 1236 is located on the side of the base 321 away from the light-transmitting cover body 323. The first end 1234 is provided with a pressing part 1235. The lighting mounting base 30 can further include a locking piece 36. The second end 1236 is connected to the locking piece 36 so that the pressing part 1235 abuts against the light-transmitting cover body 323. The locking piece 36 abuts against the base 321. The pressing part 1235 and the locking piece 36 jointly press the light-transmitting cover body 323 and the base 321.
[0039] The pressing part 1235 and the locking piece 36 abut against the light-transmitting cover body 323 and the base 321, respectively, and jointly press the light-transmitting cover body 323 and the base 321, thereby improving the structural compactness and connection stability of the lighting mounting base 30. The lamp 100 provided in the embodiment not only installs the lighting module 10 on the lighting mounting base 30 through the connecting shell 123, but also strengthens the connection between the light-transmitting cover body 323 and the base 321 through the connecting shell 123. The structure is simple, the overall volume is small, and the aesthetic appearance and space utilization of the lighting mounting base 30 are improved.
[0040] Please refer to Figure 3 and Figure 4In order to be connected with the connecting shell 123, the lighting mount 30 can further comprise a mounting bracket 38 in the embodiment. The accommodating portion 3214 is provided with a mounting through slot 3201 on the side away from the light-transmitting cover body 323, and the inner side wall of the mounting through slot 3201 is provided with a pressing step face. The mounting bracket 38 is arranged in the mounting through slot 3201 and fixedly connected to the pressing step face. The connecting shell 123 is sequentially arranged in the light-transmitting cover body 323 and the mounting bracket 38, and the locking piece 36 is abutted against the side of the mounting bracket 38 away from the connecting portion 3212. The connecting shell 123 is connected to the base 321 through the mounting bracket 38, so that the structural installation in the base 321 is more convenient.
[0041] The connecting shell 123 comprises a connecting column 1233 and a pressing portion 1235. The connecting column 1233 is sequentially arranged in the light-transmitting cover body 323 and the mounting bracket 38, and the pressing portion 1235 protrudes relative to the peripheral wall of the connecting column 1233 to be spaced apart from the mounting bracket 38 in the mounting direction A. Under the action of the locking piece 36 and the connecting shell 123, the pressing portion 1235 and the mounting bracket 38 jointly press the light-transmitting cover body 323 and the base 321, so as to improve the connection stability therebetween. The first light-transmitting housing 12 pulls the lighting mount 30 towards the lighting module 10 through the connecting shell 123, the mounting bracket 38 and the locking piece 36, so as to achieve the effect that the whole lamp 100 is stably clamped and does not shake.
[0042] The specific connection mode between the locking piece 36 and the connecting shell 123 is not limited in the specification. For example, the locking piece 36 can be a fastener such as a screw or a bolt. In the embodiment, the locking piece 36 is a locking nut, and the peripheral wall of the second end 1236 is provided with external threads. The second end 1236 is threadedly connected with the locking piece 36. During installation, the connecting shell 123 is inserted into the light-transmitting cover body 323 and the mounting bracket 38, and the light-transmitting cover body 323 provides a supporting action for the connection between the connecting shell 123 and the locking piece 36. When the locking piece 36 is tightened relative to the connecting shell 123, the locking piece 36 presses the mounting bracket 38, and the connecting shell 123 has a displacement downward along the mounting direction A, so that the pressing portion 1235 is pressed against the light-transmitting cover body 323. Through the threaded and nut (locking piece 36) connection of the connecting shell 123, the fixing scheme of the connecting shell 123 can be adjusted according to the actual situation of the cooperation degree of the threads and the nut, the structural part error can be better eliminated, the structure is more stable, and the structure is simple, the fastening is more effectively realized by using other structural parts, and space is saved.
[0043] In the embodiment, the control mainboard 50 is arranged on the side of the mounting bracket 38 facing the light-transmitting cover body 323. The control mainboard 50 is used for controlling the first light-emitting module 14 (such as the first light-emitting module 14 in FIG. 1) and the second light-emitting module 16 (such as the second light-emitting module 16 in FIG. 1). Figure 2The second light-emitting module 34 emits light. The control mainboard 50 can be fixedly connected to the base 321 by a fastener such as a screw. The specific structure of the control mainboard 50 is not limited in the present specification. For example, the control mainboard 50 can include a circuit board, and can further include a controller, a driving chip, and the like. The second light-emitting module 34 can include a plurality of second light-emitting pieces 341, which can be arranged at intervals on the side of the control mainboard 50 facing the light-transmitting cover 323.
[0044] Please refer to Figure 4 and Figure 6 , the wire 141 extends into the mounting slot 3201 through the threading passage 1232 and is electrically connected to the control mainboard 50. The control mainboard 50 can be provided with a power cord 52, which is arranged in the base 321 (as shown in Figure 1 ) and is used to be connected to an external power source, so as to supply power to the first light-emitting module 14 and the second light-emitting module 34. In the present embodiment, the connecting column 1233 is provided with a clearance gap 1237 communicating with the threading passage 1232. The clearance gap 1237 is located on the side of the mounting bracket 38 away from the control mainboard 50, and the wire 141 is connected to the control mainboard 50 through the clearance gap 1237. The clearance gap 1237 can be formed on the end face of the second end 1236. The wire 141 extends out of the threading passage 1232 through the second end 1236. The mounting bracket 38 can be provided with a clearance opening for the wire 141 to pass through, so as to facilitate the connection of the wire 141 to the control mainboard 50.
[0045] The clearance gap 1237 can be formed on the peripheral wall of the connecting column 1233. The side of the mounting bracket 38 away from the control mainboard 50 is recessed to form a wire passing groove 381, which communicates with the clearance gap 1237. The bottom of the wire passing groove 381 is spaced apart from the locking piece 36, so that the wire 141 can be connected to the control mainboard 50 through the clearance gap 1237 and the wire passing groove 381. The clearance gap 1237 formed on the peripheral wall of the connecting column 1233 allows the wire 141 to pass out of the side wall of the connecting column 1233, without occupying the space in the base 321 at the second end 1236, thereby improving the compactness of the structure and reducing the size of the lighting mounting seat 30 in the mounting direction A. The provision of the wire passing groove 381 avoids the wire 141 being squeezed by the locking piece 36 and the mounting bracket 38 and being damaged.
[0046] Please refer to Figure 3 , in the present embodiment, the lighting mounting seat 30 can further include a counterweight 33 and a bottom cover 31. The bottom cover 31 is connected to the side of the mounting slot 3201 away from the fitting portion 3212 and closes the mounting slot 3201. The counterweight 33 is arranged between the bottom cover 31 and the mounting bracket 38. The counterweight 33 is used to increase the weight of the lighting mounting seat 30, thereby reducing the lamp 100 (as shown in Figure 1The center of gravity of the whole lamp 100 is prevented from being deviated from the center of gravity of the whole lamp 100, so that the lamp 100 is prevented from being tilted or shaken in the application environment.
[0047] The bottom cover 31 is connected to the bottom base 321 away from the light-transmitting cover 323. Specifically, the bottom cover 31 can be connected to the accommodating portion 3214 by clamping. The bottom cover 31 and the light-transmitting cover 323 shield two ends of the mounting slot 3201, respectively, and protect the structure in the bottom base 321. When the lamp 100 is used, the bottom cover 31 is placed on the water platform. In some embodiments, the side surface of the bottom cover 31 in contact with the water platform can be provided with an anti-skid pad to improve the stability of the lamp 100. The counterweight 33 can be fixed to the bottom cover 31 or the mounting bracket 38. In this embodiment, the counterweight 33 is a counterweight block. The shape of the counterweight 33 can be adapted to the space in the accommodating portion 3214. The counterweight 33 can also be provided with a through hole for accommodating the locking member 36.
[0048] In order to reduce the possibility of wear and collision between the counterweight 33 and the mounting bracket 38, the lighting mounting base 30 can also include an elastic pad 332 in this embodiment. The elastic pad 332 is arranged between the counterweight 33 and the mounting bracket 38. The opposite sides of the elastic pad 332 are fixedly connected to the counterweight 33 and the mounting bracket 38, respectively. The side of the counterweight 33 facing the mounting bracket 38 can be provided with an accommodating groove for accommodating the elastic pad 332. The number of elastic pads 332 can be set to be multiple. The opposite sides of the elastic pad 332 can be provided with back glue to be bonded to the counterweight 33 and the mounting bracket 38, respectively. The elastic pad 332 well buffers the collision and wear between the counterweight 33 and the mounting bracket 38 or other structures, prolonging the service life of each structure.
[0049] The mounting bracket 38 is located between the counterweight 33 and the control mainboard 50, and can separate the two to protect the control mainboard 50. The specific material of the mounting bracket 38 is not limited in this specification. The mounting bracket 38 can be a metal bracket, for example, the mounting bracket 38 can be an aluminum alloy bracket, a steel bracket, a copper bracket, etc. In this embodiment, the lighting mounting base 30 can also include an insulating film 35 arranged between the mounting bracket 38 and the control mainboard 50. The insulating film 35 can be covered on the mounting bracket 38 by gluing. The insulating film 35 is used to separate the metal mounting bracket 38 and the control mainboard 50 to protect the control mainboard 50. The specific material of the insulating film 35 is not limited in this specification. For example, the insulating film 35 can be made of polycarbonate (PC) or polyethylene terephthalate (PET) material.
[0050] The connecting shell 123 is arranged in the light-transmitting cover 323 and the base 321, and the control mainboard 50, the insulating film 35, the mounting bracket 38 and the counterweight 33 are all provided with through holes for the connecting shell 123 to pass through at corresponding positions. The through holes form a mounting channel together, and the connecting shell 123 is embedded in the mounting channel.
[0051] In the lamp 100 provided by the application, the lighting module 10 is installed on the lighting mounting seat 30 and placed in the application environment of the lamp 100 through the lighting mounting seat 30. The lighting module 10 provides main lighting through the first light-emitting module 14, and the lighting mounting seat 30 provides auxiliary lighting through the second light-emitting module 34. The lighting mounting seat 30 can not only support and fix the lighting module 10, but also provide auxiliary lighting. The wire 141 of the first light-emitting module 14 enters the second light-transmitting shell 32 through the wire passage 1232 in the first light-transmitting shell 12, and the first light-emitting module 14 is electrically connected to the control mainboard 50 through the wire 141; the second light-emitting module 34 is also electrically connected to the control mainboard 50. The lamp 100 provided by the application is electrically connected to the control mainboard 50 through the lighting module 10 and the lighting mounting seat 30, realizes integrated power supply and control of the double light-emitting units, simplifies the internal circuit structure of the lamp 100, reduces the number of power supply interfaces, and improves the power supply stability; and the modular connection structure reduces the assembly process and reduces the production cost.
[0052] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the application. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.
[0053] Finally, it should be pointed out that: the above embodiments are only used to illustrate the technical solutions of the application, and not to limit them. Although the application has been described in detail with reference to the foregoing embodiments, those skilled in the art will understand that they can modify the technical solutions described in the foregoing embodiments, or make equivalent replacement to part of the technical features. And these modifications or replacements do not drive the essence of the corresponding technical solutions out of the spirit and scope of the technical solutions of the embodiments of the application.
Claims
1. A lamp, characterized in that, include: A lighting module, comprising a first light-transmitting housing and a first light-emitting module, the first light-transmitting housing comprising a mounting housing and a connecting housing that are connected together, the connecting housing having a wiring channel, the first light-emitting module being disposed within the mounting housing, the first light-emitting module having a wire passing through the wiring channel; A lighting mounting base, the lighting mounting base including a second light-transmitting shell and a second light-emitting module, the second light-emitting module being disposed inside the second light-transmitting shell; as well as A control motherboard is disposed inside the second light-transmitting housing. The second light-emitting module is electrically connected to the control motherboard. The connecting shell is sequentially disposed between the second light-transmitting housing and the control motherboard. The wiring channel communicates with the inside of the second light-transmitting housing. The wire is electrically connected to the control motherboard.
2. The lamp as described in claim 1, characterized in that, The second light-transmitting housing includes a base and a light-transmitting cover, the light-transmitting cover being connected to one side of the base; the connecting shell has a first end and a second end facing away from each other, the first end being located on the side of the light-transmitting cover facing away from the base and connected to the mounting shell, the second end being located on the side of the base facing away from the light-transmitting cover; the first end is provided with a pressing part, the lighting mounting base further includes a locking member, the second end being connected to the locking member so that the pressing part abuts against the light-transmitting cover, the locking member abuts against the base, the pressing part and the locking member working together to press the light-transmitting cover and the base together.
3. The lamp as described in claim 2, characterized in that, The base is provided with a mounting slot, and the mounting base also includes a mounting bracket. The mounting bracket is disposed in the mounting slot and fixedly connected to the base. The connecting shell passes through the mounting bracket, and the locking member is disposed in the mounting slot and abuts against the side of the mounting bracket away from the light-transmitting cover.
4. The lamp as described in claim 3, characterized in that, The light-transmitting cover and the base are stacked on each other in a specified installation direction; the connecting shell includes a connecting column and a clamping part, the connecting column is sequentially inserted through the light-transmitting cover and the mounting bracket, and the clamping part is connected to the peripheral wall of the connecting column and protrudes relative to the peripheral wall to be spaced apart from the mounting bracket in the installation direction.
5. The lamp as described in claim 3, characterized in that, The control motherboard is located on the side of the mounting bracket facing the light-transmitting cover. The connecting shell has a clearance notch that connects to the wire passage. The clearance notch is located on the side of the mounting bracket away from the control motherboard. The wire is connected to the control motherboard through the clearance notch.
6. The lamp as described in claim 5, characterized in that, The clearance notch is formed on the peripheral wall of the connecting shell. The mounting bracket is recessed on the side opposite to the control motherboard to form a wire passage groove. The wire passage groove communicates with the clearance notch. The bottom of the wire passage groove is spaced from the locking member so that the wire can be connected to the control motherboard through the clearance notch and the wire passage groove.
7. The lamp as described in claim 5, characterized in that, The mounting base also includes a counterweight and a bottom cover. The bottom cover is connected to the side of the mounting slot away from the light-transmitting cover and closes the mounting slot. The counterweight is disposed between the bottom cover and the mounting bracket.
8. The lamp as described in claim 7, characterized in that, The mounting base also includes an elastic pad, which is disposed between the counterweight and the mounting bracket, and the opposite sides of the elastic pad are respectively fixedly connected to the counterweight and the mounting bracket.
9. The lamp as described in claim 4, characterized in that, The outer wall of the base is provided with a first limiting part, and one end of the light-transmitting cover is provided with a second limiting part. The first limiting part and the second limiting part are nested together, and one of the first limiting part and the second limiting part is a slot and the other is a protrusion.
10. The lamp as described in claim 2, characterized in that, The locking element is a locking nut, and the second end has an external thread on its peripheral wall. The second end is threadedly connected to the locking element.