Lamp

By employing an inclined reflector and lens design in the luminaire, combined with a light-transmitting cover and heat dissipation components, the problems of glare and low lighting efficiency caused by front-facing light emission are solved, achieving more efficient lighting and safety.

CN223610002UActive Publication Date: 2025-11-28CHAMP TECH OPTICAL (FOSHAN) CORP
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Patent Information

Application Number
CN202422953567.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-11-28
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The front-emitting design of existing lamps is prone to glare and excessive light, which can damage human eye health. Furthermore, the side-emitting design has low luminous efficiency and is not conducive to energy conservation.

Method used

The installation structure with the reflective surface tilted is used to concentrate and emit light through the lens and reflective surface and diffuse it into the environment, reducing direct light. Combined with the design of the light-transmitting cover and heat dissipation components, the lighting efficiency is improved.

Benefits of technology

It effectively reduces glare, improves lighting efficiency, enhances the safety and energy-saving effect of lamps, and eliminates the need for light guide plates and diffuser plates.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of lighting devices, in particular to a lamp. The lamp comprises a mounting base and a first light source assembly. The mounting base is used for being connected with a mounting foundation. The first light source assembly comprises a first light source, a first mounting structure and a lens, the lens is adjacent to the first light source, the first mounting structure is connected with the mounting base, the first light source surrounds the mounting base and is provided with a light-emitting part and a mounting part, the mounting part is mounted on the first mounting structure, and the light-emitting part is located on the side, close to the mounting base, of the first mounting structure; wherein the first mounting structure is provided with a reflecting surface, the reflecting surface is the surface of the side, close to the mounting base, of the first mounting structure, and the reflecting surface is inclined relative to the horizontal plane, so that light emitted by the first light source is reflected towards the outer side away from the mounting base through the reflecting surface. According to the arrangement, the problem that an existing lamp is low in illumination efficiency can be solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of lighting devices, in particular to a lamp. BACKGROUND

[0002] At present, the lamp generally adopts the structure design of front light emission, but the lamp with front light emission is easy to cause glare and the light is too strong, which is easy to cause harm to the eyes of people. In order to improve the problem that the lamp with front light emission is easy to harm the eyes of people, the related technology has a lamp with side light emission, which realizes side light emission by reflecting light through structure, but the above-mentioned lamp with side light emission reduces the light efficiency, which is not conducive to energy saving. CONTENT OF THE UTILITY MODEL

[0003] Therefore, the present application provides a lamp, which can improve the light efficiency of the lamp.

[0004] One embodiment of the present application provides a lamp, which comprises a mounting seat and a first light source assembly, the mounting seat is used for connecting with a mounting base; the first light source assembly comprises a first light source, a first mounting structure and a lens, the lens is arranged adjacent to the first light source, the first mounting structure is connected with the mounting seat, the first light source is arranged around the mounting seat, the first light source has a light emitting part and a mounting part, the mounting part is mounted on the first mounting structure, and the light emitting part is located on the side of the first mounting structure close to the mounting seat; wherein the first mounting structure has a reflecting surface, the reflecting surface is the side surface of the first mounting structure close to the mounting base, and the reflecting surface is arranged to be inclined to the horizontal plane, so as to reflect the light emitted by the first light source to the outside away from the mounting seat through the reflecting surface.

[0005] In the above arrangement, the light emitted by the first light source is concentratedly emitted within a specific angle and the light emitting angle range of the first light source is improved through the action of the lens, the first mounting structure can shield at least part of the light emitted by the first light source, and the light directly emitted downward by the first light source is reduced, so as to improve the problem that the lamp with front light emission is easy to harm the eyes of people, and the first light source emits light toward the mounting base, so as to reflect the light through the mounting base and perform environmental diffuse reflection, and through the arrangement of the reflecting surface of the first mounting structure, part of the light dispersed toward the mounting seat can be reflected to make more light emitted to the outside away from the mounting seat, so that more light performs environmental diffuse reflection on the outside of the mounting seat. The lamp of the present application does not need to be provided with a light guide plate and a diffusion plate, the light transmittance of the first light source of the present application is high, so as to improve the light efficiency of the lamp and improve the problem of low light efficiency of the existing lamp.

[0006] In at least one embodiment, the first mounting structure comprises a mounting base plate and a positioning plate, the mounting base plate is connected with the mounting seat; the positioning plate is connected with the mounting base plate and is arranged at an angle, the positioning plate is located on the side of the mounting base plate close to the mounting seat, the surface of the side of the positioning plate away from the mounting base plate is a reflecting surface, and the first light source is mounted on the mounting base plate and protrudes from the positioning plate.

[0007] In the above arrangement, by arranging the positioning plate and the mounting base plate and arranging the reflecting surface on the positioning plate, when the positioning plate and the mounting base plate are connected, the angle of the reflecting surface can be adjusted by adjusting the angle between the positioning plate and the mounting base plate, compared with directly cutting a tilted reflecting surface, the arrangement of the positioning plate and the mounting base plate is more convenient for adjusting the angle of the reflecting surface, and the adjustment of the angle of the reflecting surface is more flexible.

[0008] In at least one embodiment, the first mounting structure comprises a second clamping structure, comprising a second clamping hook and a second clamping hole, one of the mounting base plate and the positioning plate is provided with the second clamping hook, the other of the mounting base plate and the positioning plate is provided with the second clamping hole, and the second clamping hook is clamped into the second clamping hole.

[0009] In the above arrangement, the detachable connection between the positioning plate and the mounting base plate is realized by the arrangement of the second clamping structure, so that the connection between the positioning plate and the mounting base plate is convenient, and the disassembly and assembly of the lamp are convenient.

[0010] In at least one embodiment, the first mounting structure comprises a third clamping structure, the second clamping structure and the third clamping structure are arranged at intervals along the width direction of the positioning plate, the third clamping structure comprises a third clamping hook and a third clamping hole, one of the mounting base plate and the positioning plate is provided with the third clamping hook, the other of the mounting base plate and the positioning plate is provided with the third clamping hole, and the third clamping hook is clamped into the third clamping hole; wherein the third clamping structure is located on the side of the second clamping structure close to the mounting seat, and the length of the third clamping hook is greater than the length of the second clamping hook.

[0011] In the above arrangement, a connection line is formed between the second clamping structure and the third clamping structure, compared with arranging one second clamping structure, the cooperation of the second clamping structure and the third clamping structure makes the connection between the positioning plate and the mounting base plate more stable; and the length of the third clamping hook is greater than the length of the second clamping hook, so as to realize the arrangement of the positioning plate inclined to the first mounting plate segment, so that part of the light diverging towards the mounting seat can be reflected to make more light emit towards the outside away from the mounting seat.

[0012] In at least one embodiment, the first mounting structure further comprises a support, the support is located between the mounting base plate and the positioning plate, and the support is located between the second clamping structure and the third clamping structure.

[0013] By setting the second clamping structure, the support and the third clamping structure, the positioning plate and the mounting substrate can be positioned at a preset included angle position, so that the included angle between the positioning plate and the mounting substrate is stable, and the included angle between the positioning plate and the mounting substrate can be adjusted by changing the height of the support, so that the included angle between the positioning plate and the mounting substrate is flexible.

[0014] In at least one embodiment, a plurality of first light sources and lenses are provided, the plurality of first light sources are arranged at intervals around the mounting base, and the plurality of first light sources and the plurality of lenses are arranged one-to-one.

[0015] In the above arrangement, by providing a plurality of first light sources and lenses, the light emitting effect can be ensured through the cooperation of the plurality of first light sources and the plurality of lenses.

[0016] In at least one embodiment, the lens is located on the side of the first light source close to the mounting base.

[0017] In the above arrangement, the lens is located on the side of the first light source close to the mounting base, which can improve the light emitting angle range of the first light source, so that more light is emitted towards the outside away from the mounting base, and at the same time, the light can all be emitted towards the mounting base to achieve environmental diffuse reflection through the reflection of the mounting base, thereby improving the problem of glare and improving the light emitting efficiency.

[0018] In at least one embodiment, the lamp includes a heat dissipation member, the heat dissipation member and the first mounting structure form a heat dissipation space, the heat dissipation member includes a heat dissipation plate, the heat dissipation plate has a plurality of heat dissipation holes, the plurality of heat dissipation holes are in communication with the heat dissipation space, so that the heat generated by the first light source is discharged through the heat dissipation space and the heat dissipation holes; wherein, along the distribution direction from the mounting base to the first light source assembly, at least part of the plate segments of the heat dissipation plate are gradually arranged inclined to the first mounting structure.

[0019] In the above arrangement, the heat dissipation member is arranged to achieve heat dissipation of the lamp, improving the safety of the lamp in use; and at least part of the plate segments of the heat dissipation plate are gradually arranged close to the first mounting structure, so that the heat dissipation plate forms a streamline structure, thereby reducing the resistance of heat flow and improving the heat dissipation effect, and the heat dissipation effect is good, which can also improve the problems of light decay and light efficiency reduction caused by poor heat dissipation.

[0020] In at least one embodiment, the lamp further includes a light-transmitting cover, the cover is arranged on the first light source, the light-transmitting cover is connected with the first mounting structure, the light-transmitting cover is arranged around the heat dissipation member and connected with the heat dissipation member, the light-transmitting cover includes a light-transmitting plate, and the first light source emits light through the light-transmitting plate; wherein, along the distribution direction from the mounting base to the first light source, the light-transmitting plate is gradually arranged inclined to the first light source.

[0021] In the above arrangement, the light-transmitting cover can play a role of dustproof and insect prevention, and the light-transmitting cover is arranged around the heat-dissipating member, so that the light-transmitting plate is connected to the side of the heat-dissipating member away from the mounting base. In combination with the arrangement that at least part of the plate segments of the heat-dissipating plate gradually approach the first mounting structure, the part of the plate segments of the heat-dissipating plate are arranged to be gradually inclined to the light-transmitting cover, so that the heat-dissipating plate and the light-transmitting cover can be smoothly transitioned, and a streamlined structure is formed between the heat-dissipating plate and the light-transmitting cover, thereby reducing the resistance of heat flow and improving the heat-dissipating effect. The heat-dissipating effect is good, and the problems of light decay and light efficiency reduction caused by poor heat dissipation can also be improved.

[0022] In at least one embodiment, the heat-dissipating member includes a first connecting plate protruding toward the side close to the first mounting structure, and the light-transmitting cover includes a second connecting plate connected to the light-transmitting plate and protruding toward the side close to the first mounting structure, and the second connecting plate is connected to the first connecting plate.

[0023] In the above arrangement, the first connecting plate and the second connecting plate can hide the connection structure between the heat-dissipating member and the light-transmitting cover, so that the connection between the heat-dissipating member and the light-transmitting cover is tight, and the smoothness of the shape between the heat-dissipating member and the light-transmitting cover is further improved, so that a smooth streamlined structure is formed between the heat-dissipating member and the light-transmitting cover.

[0024] In at least one embodiment, the lamp includes a second light source assembly located on the side of the first light source assembly away from the mounting base, and the second light source assembly includes a second mounting structure and a second light source. The second mounting structure has a mounting groove, and the second light source is installed in the second mounting structure and located in the mounting groove.

[0025] In the above arrangement, the second light source is installed in the second mounting structure and located in the mounting groove to realize downward light emission, and in combination with the arrangement of the first light source, the light emission effect of the lamp can be further improved. The first light source can emit light alone, the second light source can emit light alone, and the first light source and the second light source can emit light simultaneously. In this way, the flexibility and diversity of the lamp in use can be improved. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is a structural schematic view of a first perspective of one embodiment of the lamp of the present application.

[0027] Figure 2 is a structural schematic view of a first perspective of the first light source assembly of one embodiment of the lamp of the present application.

[0028] Figure 3 is a structural schematic view of a second perspective of the first light source assembly of one embodiment of the lamp of the present application.

[0029] Figure 4 is Figure 3enlarged view of area A of the luminaire of

[0030] Figure 5 first sectional view of one embodiment of the luminaire of the present application.

[0031] Figure 6 enlarged view of area B of the luminaire of Figure 5

[0032] Figure 7 second sectional view of one embodiment of the luminaire of the present application.

[0033] Figure 8 enlarged view of area C of the luminaire of Figure 7

[0034] Figure 9 structural view of one embodiment of the luminaire of the present application from a second perspective.

[0035] Figure 10 exploded view of one embodiment of the luminaire of the present application.

[0036] Figure 11 structural view of the connection of the control assembly to the second mounting of one embodiment of the luminaire of the present application.

[0037] Explanation of main element symbols

[0038] ​​10, mounting seat; 100, first mounting space; 20, first light source assembly; 21, first light source; 210, light emitting part; 211, mounting part; 22, first mounting structure; 23, lens; 220, mounting substrate; 2202, first mounting plate segment; 2203, second mounting plate segment; 2204, connecting plate segment; 221, positioning plate; 2210, reflecting surface; 2201, mounting position; 2211, annular protrusion; 222, second clamping structure; 2220, second clamping hook; 2221, second clamping opening; 223, third clamping structure; 2230, third clamping hook; 2231, third clamping opening; 24, support; 240, pad plate; 241, support column; 200, heat dissipation space; 30, light transmission cover; 31, light transmission plate; 32, second connecting plate; 33, third connecting plate; 34, sixth connecting plate; 3110, second edge; 300, first fastener; 40, heat dissipation member; 400, heat dissipation hole; 41, heat dissipation plate; 411, first heat dissipation plate segment; 412, second heat dissipation plate segment; 42, first connecting plate; 4110, first edge; 420, first clamping structure; 422, first clamping opening; 421, first clamping hook; 50, second light source assembly; 501, second mounting structure; 51, first mounting member; 52, second mounting member; 53, second light source; 500, mounting groove; 510, connecting seat; 511, fourth connecting plate; 515, connecting column; 513, connecting rib; 5131, first avoiding groove; 5132, second avoiding groove; 514, connecting bottom plate; 520, support plate; 521, fifth connecting plate; 522, transition connecting plate; 512, connecting inclined surface; 60, control assembly; 600, clamping protrusion; 601, clamping groove. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all the embodiments.

[0040] Lamps are widely used in homes and offices. Existing lamps generally adopt a front light-emitting structural design. Although the front light-emitting light efficiency is good, it is easy to cause glare and the light is too intense, which can easily cause harm to the eyes.

[0041] In order to improve the problem that the light emitted by the front light-emitting is too intense and easy to cause glare, in the related art, a side light-emitting lamp is disclosed. The side light-emitting lamp uses a structure to reflect light to achieve side light-emitting. Specifically, the side light-emitting lamp generally has a light guide plate and a diffusion plate. The light source emits light through the light guide plate and the diffusion plate. The light transmittance of the light guide plate and the diffusion plate is generally about 70%. The light transmittance of the light guide plate and the diffusion plate is low. Thus, the illumination efficiency of the above-mentioned side light-emitting lamp is low, which is not conducive to energy saving.

[0042] The embodiment of the present application provides a lamp, which comprises a mounting base and a first light source assembly, the mounting base is used for being connected with a mounting foundation, the first light source assembly comprises a first mounting structure, a first light source and a lens, the lens is arranged adjacent to the first light source, the first mounting structure is connected with the mounting base, the first light source has a light emitting part and a mounting part, the mounting part is mounted on the first mounting structure, and the light emitting part is located on one side of the first mounting structure close to the mounting base, so that the light emitting part of the first light source emits light towards the mounting foundation, and the problem that the light emitted in the front direction is too strong and is easy to cause glare can be solved; wherein the first mounting structure has a reflecting surface, the reflecting surface is a side surface of the first mounting structure close to the mounting foundation, and the reflecting surface is arranged to be inclined to a horizontal plane, so as to reflect the light emitted by the first light source towards the outside away from the mounting base through the reflecting surface.

[0043] In the above arrangement, the light emitted by the first light source is concentrated within a specific angle through the lens, and the light emitting angle range of the first light source is improved, the first mounting structure can shield at least part of the light emitted by the first light source, and the light directly emitted downwards by the first light source is reduced, so that the problem that the lamp is easy to hurt the eyes due to the light emitted in the front direction is solved, and the first light source emits light towards the mounting foundation, so as to reflect the light through the mounting foundation and perform environmental diffuse reflection, and through the arrangement of the reflecting surface of the first mounting structure, part of the light dispersed towards the mounting base can be reflected, so that more light is emitted towards the outside away from the mounting base, so that more light is subjected to environmental diffuse reflection on the outside of the mounting base, the lamp of the present application does not need to be provided with a light guide plate and a diffusion plate, the light transmittance of the first light source of the present application is high, so that the light illumination efficiency of the lamp is improved, and the problem that the light illumination efficiency of the existing lamp is low is solved.

[0044] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The features in the following embodiments and examples can be combined with each other without conflict.

[0045] Please refer to Figure 1 and Figure 2 An embodiment of the present application provides a lamp, which comprises a mounting base 10 and a first light source assembly 20, the mounting base 10 is used for being connected with a mounting foundation.

[0046] In the related art, the light emitting angle of the light source of the lamp is generally 100° to 120°, and the light emitting range is small.

[0047] Please refer to Figure 2 and Figure 3In some embodiments, the first light source assembly 20 comprises a first light source 21, a first mounting structure 22 and a lens 23, the lens 23 is arranged adjacent to the first light source 21, the first mounting structure 22 is connected to the mounting base 10, the first light source 21 is arranged around the mounting base 10, the first light source 21 has a light emitting part 210 and a mounting part 211, the mounting part 211 is mounted on the first mounting structure 22, and the light emitting part 210 is located on the side of the first mounting structure 22 close to the mounting base 10.

[0048] In the above arrangement, by arranging the lens 23 adjacent to the first light source 21, the light emitted by the first light source 21 is concentrated within a certain angle, thereby improving the lighting effect, and the light emitting angle of the first light source 21 can be increased from 100° to 120° to 140°, thereby increasing the amount of light emitted by the first light source 21 towards the outside away from the mounting base; and the light emitting part 210 of the first light source 21 is located on the side of the first mounting structure 22 close to the mounting base, so that the light emitting part 210 can emit light towards the mounting base, and the first mounting structure 22 can block at least part of the light emitted by the light emitting part 210 of the first light source 21, reducing the light directly emitted downwards by the light emitting part 210, thereby improving the problem that the lamp is easy to hurt people's eyes due to front light emission.

[0049] In some embodiments, the lens 23 is a convex lens.

[0050] In some embodiments, the mounting base is the indoor top surface of a building, such as a ceiling, when the lamp is installed on the ceiling, the mounting base is the ceiling, the first light source 21 is installed on the surface of the first mounting structure 22 towards the mounting base 10, i.e. the first light source 21 is installed on the surface of the first mounting structure 22 towards the ceiling, so that in use, the light of the first light source 21 will illuminate the ceiling, and the light emitted by the first light source 21 will not directly shine into people's eyes.

[0051] In some embodiments, the mounting base is the indoor side wall surface of a building, such as a wall, when the lamp is installed on the wall, the mounting base is the wall, the first light source 21 is installed on the surface of the first mounting structure 22 towards the mounting base 10, i.e. the first light source 21 is installed on the surface of the first mounting structure 22 towards the wall, so that in use, the light of the first light source 21 will illuminate the wall.

[0052] In some embodiments, the first light source 21 is an LED lamp.

[0053] Specifically, the light emitting part 210 of the first light source 21 is a lamp bead, which is used to be arranged towards the mounting base. In this way, in use, the light of the first light source 21 will illuminate the ceiling, and the light emitted by the first light source 21 will not directly shine into people's eyes.

[0054] Please refer to Figure 2In some embodiments, the first mounting structure 22 has a reflective surface 2210, which is a side surface of the first mounting structure 22 close to the mounting base, and the reflective surface 2210 is inclined to the horizontal plane, so that the light emitted by the first light source 21 is emitted outward through the reflective surface 2210.

[0055] In the above arrangement, part of the light emitted towards the mounting base 10 can be reflected by the reflective surface 2210, so that more light is emitted outward away from the mounting base 10, so that more light is subjected to ambient diffuse reflection on the outside of the mounting base 10, thereby improving the lighting efficiency of the lamp and solving the problem of low lighting efficiency of existing lamps.

[0056] Please refer to Figure 4 and Figure 5 In some embodiments, the first mounting structure 22 includes a mounting base plate 220 and a positioning plate 221, the mounting base plate 220 is connected to the mounting base 10; please refer to Figure 2 The positioning plate 221 and the mounting base plate 220 are connected, and the positioning plate 221 and the mounting base plate 220 are arranged at an angle, the positioning plate 221 is located on the side of the mounting base plate 220 close to the mounting base 10, the side surface of the positioning plate 221 close to the mounting base is the reflective surface 2210, and the first light source 21 is installed on the mounting base plate 220 and protrudes from the positioning plate 221.

[0057] In the above arrangement, by arranging the positioning plate 221 and the mounting base plate 220, and arranging the reflective surface 2210 on the positioning plate 221, when the positioning plate 221 and the mounting base plate 220 are connected, the angle between the positioning plate 221 and the mounting base plate 220 can be adjusted to adjust the inclination angle of the reflective surface 2210. Compared with directly cutting an inclined reflective surface, the arrangement of the positioning plate 221 and the mounting base plate 220 is more convenient for adjusting the inclination angle of the reflective surface 2210, and the inclination angle of the reflective surface 2210 is more flexible.

[0058] Please refer to Figure 5 and Figure 6 In some embodiments, the first mounting structure 22 includes a second clamping structure 222, the second clamping structure 222 includes a second clamping hook 2220 and a second clamping hole 2221, one of the mounting base plate 220 and the positioning plate 221 is provided with the second clamping hook 2220, the other of the mounting base plate 220 and the positioning plate 221 is provided with the second clamping hole 2221, and the second clamping hook 2220 is clamped into the second clamping hole 2221. In the above arrangement, the detachable connection between the positioning plate 221 and the mounting base plate 220 is realized through the arrangement of the second clamping structure 222, so that the connection between the positioning plate 221 and the mounting base plate 220 is convenient, and the disassembly and assembly of the lamp are also convenient.

[0059] Please refer to Figure 5And Figure 6 In some embodiments, the first mounting structure 22 comprises a third clamping structure 223, the second clamping structure 222 and the third clamping structure 223 are arranged along the width direction of the positioning plate 221, the third clamping structure 223 comprises a third clamping hook 2230 and a third clamping hole 2231, one of the mounting substrate 220 and the positioning plate 221 is provided with the third clamping hook 2230, the other of the mounting substrate 220 and the positioning plate 221 is provided with the third clamping hole 2231, the third clamping hook 2230 is clamped into the third clamping hole 2231, which is arranged such that a connecting line is formed between the second clamping structure 222 and the third clamping structure 223, and compared with arranging one second clamping structure 222, the cooperation of the second clamping structure 222 and the third clamping structure 223 makes the connection between the positioning plate 221 and the mounting substrate 220 more stable; and the third clamping structure 223 is located on the side of the second clamping structure 222 close to the mounting base 10, and the length of the third clamping hook 2230 is greater than the length of the second clamping hook 2220, so as to realize the arrangement of the positioning plate 221 inclined to the first mounting plate segment 2202, thereby reflecting part of the light diverging towards the mounting base 10 to make more light emit towards the outside away from the mounting base 10.

[0060] Please refer to Figure 5 And Figure 6 In some embodiments, the first mounting structure 22 further comprises a support 24, the support 24 is located between the mounting substrate 220 and the positioning plate 221, and the support 24 is located between the second clamping structure 222 and the third clamping structure 223. In the above arrangement, since the positioning plate 221 and the mounting substrate 220 are arranged at an included angle, by arranging the second clamping structure 222, the support 24 and the third clamping structure 223, the positioning plate 221 and the mounting substrate 220 can be positioned at a preset included angle position, so that the included angle between the positioning plate 221 and the mounting substrate 220 is stable, and the included angle between the positioning plate 221 and the mounting substrate 220 can be adjusted by changing the height of the support 24, so that the included angle between the positioning plate 221 and the mounting substrate 220 is adjusted flexibly.

[0061] Please refer to Figure 2 And Figure 4 In some embodiments, the positioning plate 221 is provided with a mounting position 2201, the mounting position 2201 is provided with an annular protrusion 2211 protruding towards the mounting substrate 220, the annular protrusion 2211 encloses a mounting hole, the first light source 21 passes through the mounting hole, and the light emitting part 210 of the first light source 21 protrudes from the reflecting surface 2210. By arranging the annular protrusion 2211, the contact area between the inner wall of the mounting hole and the first light source 21 can be increased, thereby improving the connection stability between the first light source 21 and the mounting hole.

[0062] Please refer to Figure 6In some embodiments, the support 24 comprises a pad plate 240 and a support column 241.

[0063] In some embodiments, the pad plate 240 is an annular plate.

[0064] In some embodiments, a plurality of pad plates 240 are provided, and each of the plurality of pad plates 240 and the plurality of first light sources 21 are provided in a one-to-one correspondence, and each of the plurality of pad plates 240 is arranged at the mounting position 2201 of a corresponding one of the plurality of first light sources 21.

[0065] In some embodiments, the support column 241 is connected with the positioning plate 221; and the support column 241 and the positioning plate 221 are in an integrated structure.

[0066] Please refer to Figure 5 and Figure 6 In some embodiments, the mounting base plate 220 comprises a first mounting plate segment 2202, the first mounting plate segment 2202 is superposed with the positioning plate 221 and is located on a side of the positioning plate 221 away from the first light source 21; and the distance between the positioning plate 221 and the first mounting plate segment 2202 gradually increases along the distribution direction of the first light source 21 to the mounting seat 10, so that the positioning plate 221 is arranged in the above-mentioned predetermined direction, and part of the light emitted by the first light source 21 is reflected by the positioning plate 221 towards the outside away from the mounting seat.

[0067] In some embodiments, the first mounting plate segment 2202 of the mounting base plate 220 is parallel to the horizontal plane.

[0068] In some embodiments, the first light source 21 is arranged around the mounting seat 10.

[0069] In some embodiments, the first light source 21 and the lens 23 are both provided in a plurality, the plurality of first light sources 21 are arranged at intervals around the mounting seat 10, and the plurality of first light sources 21 and the plurality of lenses 23 are arranged in a one-to-one correspondence. In the above-mentioned arrangement, the plurality of first light sources 21 and the plurality of lenses 23 are provided, and the cooperation of the plurality of first light sources 21 and the plurality of lenses 23 can ensure the light emitting effect.

[0070] In some embodiments, the first light source 21 is in an annular structure to realize the arrangement of the first light source 21 around the mounting seat 10; and the lens 23 is in an annular structure.

[0071] In some embodiments, the lens 23 is located on the side of the first light source 21 close to the base 10. If the lens 23 is located on the side of the first light source 21 away from the base 10 (the outer side), although the light emitting angle range of the first light source can be improved, part of the light can be directly emitted downward, which is not conducive to solving the problem of glare. By locating the lens 23 on the side of the first light source 21 close to the base 10 (the inner side), the light emitting angle range of the first light source 21 can be improved, so that more light is dispersed away from the outer side of the base 10, and at the same time, the light can be emitted toward the base to achieve environmental diffuse reflection through the reflection of the base, thereby improving the problem of glare and improving the light emitting efficiency.

[0072] In some embodiments, at least part of the first mounting structure 22 is made of plastic material. The first mounting structure 22 made of plastic material is relatively light.

[0073] In some embodiments, the mounting substrate 220 is made of plastic material.

[0074] In some embodiments, the positioning plate 221 is made of plastic material.

[0075] Please refer to Figure 1 and Figure 6 In some embodiments, the lamp includes a heat dissipation member 40, the heat dissipation member 40 and the first mounting structure 22 form a heat dissipation space 200, the heat dissipation member 40 includes a heat dissipation plate 41, the heat dissipation plate 41 has a plurality of heat dissipation holes 400, the plurality of heat dissipation holes 400 are in communication with the heat dissipation space 200, so that the heat generated by the first light source 21 is discharged through the heat dissipation space 200 and the heat dissipation holes 400; wherein, along the distribution direction of the base 10 to the first light source assembly 20, at least part of the plate section of the heat dissipation plate 41 is gradually arranged close to the first mounting structure. In the above arrangement, the heat dissipation of the lamp is realized by the heat dissipation member 40, which improves the safety of the lamp in use; and at least part of the plate section of the heat dissipation plate 41 is gradually arranged close to the first mounting structure 22, so that the heat dissipation plate 41 forms a streamlined structure, thereby reducing the resistance of heat flow and improving the heat dissipation effect, and the heat dissipation effect is good, which can also improve the problems of light decay and light efficiency reduction caused by poor heat dissipation.

[0076] In some embodiments, at least part of the first mounting structure 22 is made of heat dissipation material, the heat dissipation material has good heat dissipation performance, and the first light source 21 is installed on the first mounting structure 22, so that the first mounting structure 22 is used in cooperation with the heat dissipation member 40, which can further improve the heat dissipation effect of the lamp.

[0077] In some embodiments, the mounting substrate 220 is made of heat dissipation material.

[0078] In some embodiments, the positioning plate 221 is made of heat dissipation material.

[0079] Referring to Figure 5 and Figure 6 In some embodiments, the mounting substrate 220 comprises a second mounting plate segment 2203 and a connecting plate segment 2204, the second mounting plate segment 2203 is connected with the first mounting plate segment 2202 through the connecting plate segment 2204, and the heat dissipation member 40 is located outside the second mounting plate segment 2203 and encloses a heat dissipation space 200 with the second mounting plate segment 2203.

[0080] Specifically, the connecting plate segment 2204 comprises a plurality of bending plate segments arranged in sequence, so that the second mounting plate segment 2203 is higher than the first mounting plate segment 2202.

[0081] Specifically, the second mounting plate segment 2203 comprises a plurality of bending plate segments arranged in sequence, so that the second mounting plate segment 2203 is connected with the mounting base 10.

[0082] Referring to Figure 1 and Figure 5 In some embodiments, the lamp further comprises a light-transmitting cover 30, which is arranged on the first light source 21. Referring to Figure 5 and Figure 6 The light-transmitting cover 30 is connected with the first mounting structure 22, the light-transmitting cover 30 is arranged around the heat dissipation member 40 and connected with the heat dissipation member 40, the light-transmitting cover 30 comprises a light-transmitting plate 31, the first light source 21 emits light through the light-transmitting plate 31; wherein, along the distribution direction of the mounting base 10 to the first light source 21, the light-transmitting plate 31 is arranged in a gradually inclined manner close to the first light source 21. In the above arrangement, by arranging the light-transmitting cover 30, the light-transmitting cover 30 can play a role in preventing dust and insects, and the light-transmitting cover 30 is arranged around the heat dissipation member 40, so that the light-transmitting plate 31 is connected with the side of the heat dissipation member 40 away from the mounting base 10, in combination with the arrangement that at least part of the plate segments of the heat dissipation plate 41 gradually approach the first mounting structure 22, the part of the plate segments of the heat dissipation plate 41 are arranged in a gradually inclined manner close to the light-transmitting cover 30, so that the heat dissipation plate 41 and the light-transmitting cover 30 can be smoothly transitioned, forming a streamline structure between the heat dissipation plate 41 and the light-transmitting cover 30, thereby reducing the resistance of heat flow and improving the heat dissipation effect, and the heat dissipation effect is good, which can also improve the problems of light decay and light efficiency reduction caused by poor heat dissipation.

[0083] In some embodiments, the light-transmitting plate 31 is located on the side of the positioning plate 221 away from the first mounting plate segment 2202 of the mounting substrate 220.

[0084] In some embodiments, the light-transmitting cover 30 is made of PC material. The light transmission rate of PC material can reach more than 90%, thereby ensuring the light emitting effect of the light emitting part 210 of the first light source 21.

[0085] In some embodiments, the light-transmitting cover 30 is connected with the first mounting structure 22 and encloses the first mounting space 100 with the first mounting structure 22, and the first light source 21 is located in the first mounting space 100.

[0086] In some embodiments, the light-transmitting plate 31 extends along the circumference of the heat-dissipating piece 40, and the light-transmitting plate 31 is a ring-shaped plate structure.

[0087] In some embodiments, the heat-dissipating plate 41 comprises a first heat-dissipating plate segment 411 and a second heat-dissipating plate segment 412, the first heat-dissipating plate segment 411 and the second heat-dissipating plate segment 412 are connected with each other, the first heat-dissipating plate segment 411 is located on the side of the second heat-dissipating plate segment 412 close to the light-transmitting cover 30, please refer to Figure 1 Figure 2 In some embodiments, the second heat-dissipating plate segment 412 is arranged parallel to the second mounting plate segment 2203 of the first mounting structure 22, and the second heat-dissipating plate segment 412 is arranged at an angle with the first heat-dissipating plate segment 411, so that the first heat-dissipating plate segment 411 is gradually arranged close to the second mounting plate segment 2203. Figure 2 Figure 6 In some embodiments, the first heat-dissipating plate segment 411 has heat-dissipating holes 400.

[0088] In some embodiments, the first heat-dissipating plate segment 411 and the second heat-dissipating plate segment 412 are both provided with heat-dissipating holes 400, and the heat-dissipating holes 400 of the first heat-dissipating plate segment 411 and the heat-dissipating holes 400 of the second heat-dissipating plate segment 412 are in communication with each other or independent of each other.

[0089] In some embodiments, the first heat-dissipating plate segment 411 has a first edge 4110 located on the side of the heat-dissipating plate 41 away from the mounting base 10, and the light-transmitting plate 31 has a second edge 3110 located on the side of the light-transmitting plate 31 close to the mounting base 10, and the first edge 4110 and the second edge 3110 are arranged flush, so that the heat-dissipating plate 41 and the light-transmitting cover 30 can be smoothly transitioned to form a streamline structure, thereby reducing the resistance of heat flow and improving the heat-dissipating effect, and the flush arrangement of the first edge 4110 and the second edge 3110 makes the structure of the heat-dissipating plate 41 and the light-transmitting plate 31 in the height direction of the mounting base 10 more compact, which can reduce the volume in the thickness direction of the lamp, and there is no protruding structure between the light-transmitting cover 30 and the heat-dissipating piece 40 when disassembling the light-transmitting cover 30 and the heat-dissipating piece 40, so it is not easy to scratch the operator, which can improve the safety of disassembling the light-transmitting cover 30 and the heat-dissipating piece 40.

[0090] In some embodiments, the heat-dissipating piece 40 is a louver structure to achieve good heat-dissipating effect through the louver structure. Figure 1 Figure 2 In some embodiments, the heat-dissipating piece 40 is a louver structure to achieve good heat-dissipating effect through the louver structure.

[0091] In some embodiments, the heat-dissipating piece 40 is a louver structure to achieve good heat-dissipating effect through the louver structure. ​​​

[0092] Referring to Figure 5 and Figure 6 In some embodiments, the heat dissipation member 40 comprises a first connecting plate 42 protruding towards the side close to the first mounting structure 22, the light-transmitting cover 30 comprises a second connecting plate 32 connected with the light-transmitting plate 31 and protruding towards the side close to the first mounting structure 22, and the second connecting plate 32 is connected with the first connecting plate 42. In the above arrangement, by arranging the first connecting plate 42 and the second connecting plate 32, the connecting structure between the heat dissipation member 40 and the light-transmitting cover 30 can be hidden, the connection between the heat dissipation member 40 and the light-transmitting cover 30 is tight, and the smoothness of the shape between the heat dissipation member 40 and the light-transmitting cover 30 is further improved, so that a smooth streamlined structure is formed between the heat dissipation member 40 and the light-transmitting cover 30.

[0093] Referring to Figure 7 and Figure 8 In some embodiments, the first connecting plate 42 and the second connecting plate 32 are connected through a first clamping structure 420, the first clamping structure 420 comprises a first clamping hook 421 and a first clamping hole 422, and the first clamping hook 421 is clamped into the first clamping hole 422. By arranging the first clamping hook 421 and the first clamping hole 422, the connection between the heat dissipation member 40 and the light-transmitting cover 30 is facilitated.

[0094] In some embodiments, a plurality of first clamping structures 420 are arranged, and the plurality of first clamping structures 420 are arranged at intervals along the circumference of the heat dissipation member 40 / light-transmitting cover 30. By arranging the plurality of first clamping structures 420, the connection stability between the heat dissipation member 40 and the light-transmitting cover 30 can be improved.

[0095] Referring to Figure 5 and Figure 6 In some embodiments, the light-transmitting cover 30 comprises a third connecting plate 33 connected with the second connecting plate 32 and arranged at an angle, the third connecting plate 33 is located between the first connecting plate 42 and the first mounting structure 22, and the third connecting plate 33 is connected with the first mounting structure 22. In the above arrangement, by arranging the third connecting plate 33 and locating the third connecting plate 33 between the first connecting plate 42 and the first mounting structure 22, the first connecting plate 42 serves as a limiting part for the third connecting plate 33, and while the first connecting plate 42 and the second connecting plate 32 are connected with each other, the third connecting plate 33 is connected with the first mounting structure 22, so that the light-transmitting cover 30 is connected with the heat dissipation member 40 and the first mounting structure 22 at the same time, and the connection structure between the light-transmitting cover 30, the heat dissipation member 40 and the first mounting structure 22 is stable.

[0096] Referring to Figure 6 In some embodiments, the third connecting plate 33 and the first mounting structure 22 are connected through a first fastener 300.

[0097] Referring to Figure 2 and Figure 9 In some embodiments, the lamp further comprises a second light source assembly 50 located on the side of the first light source assembly 20 away from the base 10, the second light source assembly 50 comprising a second mounting structure 501 and a second light source 53, the second mounting structure 501 being connected with the first mounting structure 22, the second mounting structure 501 having a mounting groove 500, and the second light source 53 being mounted on the second mounting structure 501 and located in the mounting groove 500. In the above arrangement, the second light source 53 is mounted on the second mounting structure 501 and located in the mounting groove 500 to realize downward light emission. In combination with the first light source 21, the second light source 53 can further improve the light emission effect of the lamp. The first light source 21 can emit light alone, the second light source 53 can emit light alone, and the first light source 21 and the second light source 53 can emit light simultaneously. In this way, the flexibility and diversity of the lamp in use can be improved.

[0098] In some embodiments, the second light source 53 is arranged at the inner side wall of the mounting groove 500 so that the second light source 53 emits light towards the inner side of the mounting groove 500 to realize side light emission of the second light source 53.

[0099] In some embodiments, the second light source 53 is an LED lamp.

[0100] In some embodiments, the second light source 53 is arranged in multiple numbers, and the multiple second light sources 53 are arranged at intervals along the circumference of the mounting groove 500.

[0101] In some embodiments, the second light source 53 is of a ring structure, and the second light source 53 extends along the circumference of the mounting groove 500.

[0102] Referring to Figure 6 and Figure 7 In some embodiments, the second mounting structure 501 comprises a first mounting member 51 and a second mounting member 52, and the first mounting member 51 and the second mounting member 52 enclose the mounting groove 500.

[0103] Referring to Figure 6 and Figure 7 In some embodiments, the first mounting member 51 comprises a connecting seat 510 and a fourth connecting plate 511, the connecting seat 510 being connected with the first mounting structure 22, and the fourth connecting plate 511 being connected with the connecting seat 510 and arranged at an angle, and the fourth connecting plate 511 being connected with the light-transmitting cover 30. In the above arrangement, the connection between the light-transmitting cover 30 and the first mounting member 51 is realized, and the light-transmitting cover 30 is further connected with the first mounting structure 22. In this way, the connection area of the light-transmitting cover 30 is improved, and the mounting stability of the light-transmitting cover 30 is improved.

[0104] Referring toFigure 6 And Figure 7 In some embodiments, the light-transmitting cover 30 comprises a sixth connecting plate 34, which is connected to the light-transmitting plate 31 and protrudes towards the first mounting structure 22, and is located on the inner side of the fourth connecting plate 511 and connected to the fourth connecting plate 511. In the above arrangement, the connection structure between the light-transmitting cover 30 and the first mounting member 51 is hidden by the sixth connecting plate 34 and the fourth connecting plate 511, so that the connection between the light-transmitting cover 30 and the first mounting member 51 is tight.

[0105] In some embodiments, the side edge of the light-transmitting plate 31 away from the mounting base 10 is flush with the side edge of the fourth connecting plate 511 away from the connecting base 510, so that the light-transmitting plate 31 and the first mounting member 51 are smoothly transitioned.

[0106] Please refer to Figure 6 And Figure 7 In some embodiments, the connecting base 510 has a connecting slope 512 located on the side of the fourth connecting plate 511 away from the first light source assembly 20; wherein the distance between the connecting slope 512 and the mounting position 2201 of the first light source 21 gradually decreases in the direction away from the mounting base 10, so that the thickness of the entire lamp is reduced.

[0107] Specifically, the connecting slope 512 of the connecting base 510 combines the above arrangement between the light-transmitting plate 31 and the fourth connecting plate 511 and the arrangement between the heat dissipation member 40 and the light-transmitting cover 30, so that the entire lamp has a streamlined design, which is beneficial to heat dissipation of the lamp.

[0108] Please refer to Figure 6 And Figure 10 In some embodiments, the sixth connecting plate 34 and the fourth connecting plate 511 are connected through a fourth clamping structure, which comprises a clamping protrusion 600 and a clamping groove 601, and the clamping protrusion 600 is clamped into the clamping groove 601. Through the arrangement of the clamping protrusion 600 and the clamping groove 601, the connection between the light-transmitting cover 30 and the first mounting member 51 is facilitated.

[0109] In some embodiments, the fourth clamping structure is provided in multiple, and the multiple fourth clamping structures are arranged at intervals along the circumference of the light-transmitting cover 30. By arranging multiple fourth clamping structures, the connection stability between the light-transmitting cover 30 and the first mounting member 51 is improved.

[0110] Please refer to Figure 6 And Figure 11In some embodiments, the connecting seat 510 comprises a connecting bottom plate 514 and a connecting column 515, the connecting column 515 is arranged on the inner wall of the connecting bottom plate 514 close to the first light source assembly 20, the connecting column 515 has a connecting hole, the first mounting structure 22 and the first mounting member 51 are connected by the second fastener penetrating the connecting hole of the first mounting structure 22 and the connecting column 515.

[0111] Referring to Figure 6 and Figure 11 In some embodiments, the connecting seat 510 comprises a connecting rib 513, the connecting rib 513 is arranged on the inner wall of the connecting bottom plate 514 close to the first light source assembly 20, the connecting rib 513 extends along the width direction of the connecting bottom plate 514 to strengthen the structure of the first mounting member 51, the connecting column 515 and the connecting rib 513 are connected to each other, the connecting rib 513 is provided with a first avoiding slot 5131 and a second avoiding slot 5132, the first avoiding slot 5131 and the second avoiding slot 5132 are located on both sides of the connecting column 515, the first avoiding slot 5131 is used for avoiding the second clamping hook 2220, and the second avoiding slot 5132 is used for avoiding the third clamping hook.

[0112] Referring to Figure 6 In some embodiments, the second mounting member 52 comprises a supporting plate 520, a fifth connecting plate 521 and a transition connecting plate 522, the fifth connecting plate 521 is located between the first mounting structure 22 and the first mounting member 51, and the fifth connecting plate 521 is connected with the first mounting member 51; the supporting plate 520 and the fifth connecting plate 521 are located on both sides of the transition connecting plate 522 and connected with the transition connecting plate 522, and the supporting plate 520, the transition connecting plate 522 and the connecting seat 510 form the mounting groove 500. In the above arrangement, by locating the fifth connecting plate 521 between the first mounting structure 22 and the first mounting member 51, the connecting structure between the second mounting member 52 and the first mounting member 51 can be hidden, and by arranging the transition connecting plate 522, the fifth connecting plate 521 and the first mounting structure can have a spacing distance, so as to improve the problem that the connecting structure between the fifth connecting plate 521 and the first mounting member 51 easily interferes with the first mounting structure 22, so that the structure between the first mounting structure 22, the first mounting member 51 and the second mounting member 52 is compact and the structure arrangement is reasonable.

[0113] Specifically, the fifth connecting plate 521 and the supporting plate 520 are arranged in a spaced manner along the height direction of the mounting seat 10.

[0114] In some embodiments, the fifth connecting plate 521 and the first mounting member 51 are connected by a third fastener.

[0115] Specifically, the first fastener 300, the second fastener and the third fastener are all screws or bolts.

[0116] Please refer to Figure 6 and Figure 10 In some embodiments, the lamp further comprises a control assembly 60, the second mounting member 52 and the first mounting structure 22 form a second mounting space, the control assembly 60 is mounted on the second mounting member 52 and located in the second mounting space, and the control assembly 60 is electrically connected with the first light source 21 and the second light source 53 respectively. In this way, the first light source 21 and the second light source 53 can emit light through the control of the control assembly 60, wherein the first light source 21 can emit light alone, the second light source 53 can emit light alone, and the first light source 21 and the second light source 53 can emit light at the same time.

[0117] Please refer to Figure 11 In some embodiments, the control assembly 60 is arranged on the support plate 520 of the second mounting member 52.

[0118] In some embodiments, the first light source assembly 20 is a main lamp module, and the second light source assembly 50 is a night light module, and the light emitted by the second light source assembly 50 is weaker than the light emitted by the first light source assembly 20.

[0119] Among them, the first light source 21 / second light source 53 has ordinary white bulb, fluorescent lamp, high-intensity gas discharge lamp, halogen lamp, LED lamp and the like.

[0120] In addition, for those skilled in the art, other various corresponding changes and modifications can be made according to the technical concept of the present application, and all these changes and modifications shall belong to the protection scope of the claims of the present application.

Claims

1. A luminaire characterized by, The lamp comprises: a mounting base for connecting with a mounting foundation; a first light source assembly comprising a first light source, a first mounting structure and a lens, the lens being arranged adjacent to the first light source to diffuse light emitted by the first light source, the first mounting structure being connected with the mounting base, the first light source being arranged around the mounting base, the first light source having a light emitting part and a mounting part, the mounting part being mounted to the first mounting structure, the light emitting part being located on a side of the first mounting structure close to the mounting base; wherein the first mounting structure has a reflecting surface, the reflecting surface being a side surface of the first mounting structure close to the mounting foundation, the reflecting surface being arranged obliquely to a horizontal plane to reflect light emitted by the first light source towards an outer side away from the mounting base through the reflecting surface.

2. The luminaire of claim 1, wherein, The first mounting structure comprises: a mounting substrate connected with the mounting base; a positioning plate connected with the mounting substrate and arranged at an angle, the positioning plate being located on a side of the mounting substrate close to the mounting base, a side surface of the positioning plate away from the mounting substrate being the reflecting surface, the first light source being mounted to the mounting substrate and protruding from the positioning plate.

3. The luminaire of claim 2, wherein, The first mounting structure comprises: a second clamping structure comprising a second clamping hook and a second clamping hole, one of the mounting substrate and the positioning plate being provided with the second clamping hook, the other of the mounting substrate and the positioning plate being provided with the second clamping hole, the second clamping hook being clamped into the second clamping hole.

4. The luminaire of claim 3, wherein, The first mounting structure comprises: a third clamping structure, the second clamping structure and the third clamping structure being arranged at intervals along a width direction of the positioning plate, the third clamping structure comprising a third clamping hook and a third clamping hole, one of the mounting substrate and the positioning plate being provided with the third clamping hook, the other of the mounting substrate and the positioning plate being provided with the third clamping hole, the third clamping hook being clamped into the third clamping hole; wherein the third clamping structure is located on a side of the second clamping structure close to the mounting base, a length of the third clamping hook being greater than a length of the second clamping hook.

5. The luminaire of claim 4, wherein, The first mounting structure further comprises: a support located between the mounting substrate and the positioning plate, the support being located between the second clamping structure and the third clamping structure.

6. The lamp of any one of claims 1 to 5, wherein: the first light source and the lens are each provided in a plurality, the plurality of first light sources being arranged at intervals around the mounting base, the plurality of first light sources and the plurality of lenses being arranged in one-to-one correspondence; and / or the lens is located on a side of the first light source close to the mounting base.

7. The luminaire of any one of claims 1 to 5, wherein, The lamp comprises: a heat dissipation member surrounding a heat dissipation space with the first mounting structure, the heat dissipation member comprising a heat dissipation plate having a plurality of heat dissipation holes in communication with the heat dissipation space to allow heat generated by the first light source to be dissipated through the heat dissipation space and the heat dissipation holes; At least one part of the heat-dissipating plate is gradually inclined to the first mounting structure along a distribution direction from the mounting base to the first light source assembly.

8. The luminaire of claim 7, wherein, The lamp further comprises: A light-transmitting cover is arranged on the first light source, and the light-transmitting cover is connected with the first mounting structure. The light-transmitting cover surrounds the heat-dissipating member and is connected with the heat-dissipating member. The light-transmitting cover comprises a light-transmitting plate, and the first light source emits light through the light-transmitting plate. At least one part of the light-transmitting plate is gradually inclined to the first light source along a distribution direction from the mounting base to the first light source.

9. The luminaire of claim 8, wherein, The heat-dissipating member comprises a first connecting plate, and the first connecting plate protrudes towards a side close to the first mounting structure. The light-transmitting cover comprises a second connecting plate, and the second connecting plate is connected with the light-transmitting plate and protrudes towards a side close to the first mounting structure. The second connecting plate is connected with the first connecting plate.

10. The luminaire of any one of claims 1 to 5, wherein, The lamp comprises: A second light source assembly is located on a side of the first light source assembly away from the mounting base. The second light source assembly comprises a second mounting structure and a second light source. The second mounting structure has a mounting groove, and the second light source is mounted on the second mounting structure and located in the mounting groove.