Disclosure of utility model
The application provides a mounting seat and a lamp.
In a first aspect, the present application provides a mounting base, where the mounting base is used for mounting a lighting module of a lamp, and the mounting base includes a housing, a light-emitting cover plate, a light source module and a light guide member. The shell includes casing and printing opacity lamp shade, and printing opacity lamp shade is connected in one side of casing. The light-emitting cover plate is connected to the shell and is positioned in the light-transmitting lampshade. The light source module is arranged in the shell and is positioned between the light-emitting cover plate and the shell. The light guide piece is arranged on the light-emitting cover plate in a penetrating way, one side of the light-emitting cover plate is opposite to the light source module, so that a part of light is transmitted to the outside through the light-emitting cover plate and the light-transmitting lampshade, one end of the light guide piece is opposite to the light source module, and the other end of the light guide piece extends to be opposite to the inner surface of the light-transmitting lampshade, so that a part of light is transmitted to the outside through the light guide piece and the light-transmitting lampshade.
In some optional examples, the light guide member includes a mounting portion and a light guide portion, the mounting portion is clamped between the light source module and the light emitting cover plate, and the light guide portion is connected to the mounting portion and penetrates through the light emitting cover plate.
In some optional examples, at least part of the structure of the light-transmitting lampshade is arranged at intervals with the light-emitting cover plate, the light-emitting cover plate is provided with a yielding groove, and one end of the light guide part, which is away from the mounting part, penetrates through the yielding groove and extends between the light-emitting cover plate and the light-transmitting lampshade.
In some optional examples, the light guiding portion protrudes toward the light-transmitting lampshade relative to the surface of the light-emitting cover plate, and the surface of the light guiding portion facing away from the light-emitting cover plate is covered with a light-transmitting layer, and the light transmittance of the light-transmitting layer is smaller than that of the light guiding portion.
In some alternative examples, the light source module comprises a circuit board and a plurality of light emitting parts, wherein the circuit board is fixedly connected to the shell, the plurality of light emitting parts are arranged on one side, facing the light emitting cover plate, of the circuit board at intervals, the mounting part is clamped between the circuit board and the light emitting cover plate, the plurality of light guide parts are arranged around the mounting part at intervals in sequence, and each light guide part faces the light emitting surface of at least one light emitting part.
In some alternative examples, the mounting base further includes an elastic member elastically abutting between the circuit board and the mounting portion.
In some alternative examples, the mounting base further includes a weight member disposed in the housing and located on a side of the light source module remote from the light-transmitting globe.
In some alternative examples, the mounting base further includes a mounting bracket fixedly connected to the housing and positioned between the weight and the light source module, the mounting bracket being configured to be cooperatively connected with the lighting module.
In some alternative examples, the light-transmitting lampshade is provided with a first mounting hole, the light-emitting cover plate is provided with a second mounting hole, the light guide piece is provided with a third mounting hole, the light source module is provided with a fourth mounting hole, the first mounting hole, the second mounting hole, the third mounting hole and the fourth mounting hole are coaxial and jointly form a mounting channel for the lighting module to penetrate, and the lighting module is connected to the mounting seat through the mounting channel.
In some optional examples, the light-emitting cover plate has a light-emitting pattern area, and a part of light emitted by the light source module is conducted to the outside through the light-emitting pattern area and the light-transmitting lampshade.
In a second aspect, the application further provides a lamp, which comprises the mounting seat and the lighting module, wherein the lighting module is mounted on the mounting seat.
Compared with the prior art, when the mounting seat provided by the application is used, the lighting module is mounted on the mounting seat and is placed in the application environment of the lamp through the mounting seat. The lighting module provides main lighting and the mounting seat provides auxiliary lighting. In the mount pad, the light source module is relative with light-emitting cover plate, light guide spare, and a part of light that the light source module sent forms a kind of lamp effect through light-emitting cover plate, the conduction of printing opacity lamp shade to the external world, and another part of light that the light source module sent forms another kind of lamp effect through light guide spare, printing opacity lamp shade conduction to the external world. The mounting seat provided by the embodiment of the application not only can play a role in supporting and fixing the lighting module, but also can provide auxiliary lighting and has a richer light-emitting effect.
Drawings
In order to more clearly illustrate the technical solutions of the present application, the drawings that are needed in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and that other drawings can be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic structural diagram of a lamp according to an embodiment of the application.
Fig. 2 is a schematic structural diagram of a mounting seat according to an embodiment of the application.
Fig. 3 is an exploded view of a portion of the structure of the mount shown in fig. 2.
Fig. 4 is a schematic cross-sectional view of the mounting base shown in fig. 2.
Fig. 5 is an exploded view of a portion of the structure of the mount shown in fig. 2.
The reference numerals comprise 100, a mounting seat, 10, a shell, 12, a shell, 121, a matching part, 123, a containing part, 14, a light-transmitting lampshade, 141, a first mounting hole, 16, a bottom cover, 30, a light-emitting cover plate, 32, a light-emitting pattern area, 34, a yielding groove, 36, a second mounting hole, 50, a light source module, 52, a circuit board, 521, a fourth mounting hole, 54, a luminous element, 56, a power wire, 60, an elastic element, 70, a light guide element, 72, a mounting part, 721, a third mounting hole, 74, a light guide part, 741, a light-transmitting layer, 80, a weight element, 81, an elastic pad, 83, a containing groove, 90, a mounting bracket, 92, an insulating film, 101, a mounting channel, 200, a lamp, 201, a lighting module, 2012 and a lamp housing.
Detailed Description
In order to enable those skilled in the art to better understand the present application, the following description will make clear and complete descriptions of the technical solutions according to the embodiments of the present application with reference to the accompanying drawings. It will be apparent that the described embodiments are only some, but not all, embodiments of the application. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to be within the scope of the application.
As a particular component is referred to by some of the terms used in the description and claims, it should be understood by those skilled in the art that a hardware manufacturer may refer to the same component by different terms. The description and claims do not take the difference in name as a way of distinguishing between components, but rather take the difference in functionality of the components as a criterion for distinguishing. As used throughout the specification and claims, the word "comprising" is intended to be construed as "including but not limited to", and "substantially" means that a person skilled in the art can solve the technical problem within a certain margin of error, substantially achieving the technical effect.
Referring to fig. 1, an embodiment of the present application provides a lamp 200, where the lamp 200 may be used for being disposed in a building to provide illumination or decoration for the building, for example, the lamp 200 may be used for decorative illumination in living rooms, restaurants, bedrooms, etc., to improve the space style.
The lamp 200 may include a mount 100 and a lighting module 201, the lighting module 201 being mounted to the mount 100. The lighting module 201 provides main lighting, and the mounting base 100 is used for mounting the lighting module 201 on one hand, so that the lamp 200 is placed integrally, and on the other hand, the mounting base 100 can also serve as an auxiliary light source to provide lighting. The specific shape of the lighting module 201 is not limited in this specification, and for example, the lighting module 201 may be designed in geometric shapes (such as cubes, spheres, cylinders) or may be designed in an irregular artistic manner. In this embodiment, the lighting module 201 is a lamp post, which has a generally cylindrical housing. The specific structure of the lighting module 201 is not limited in this specification, and the lighting module 201 may include a lamp housing 2012, a lamp housing (not shown) connected to the lamp housing 2012, and a light source (not shown) disposed between the lamp housing 2012. The lighting module 201 is mounted to the mounting base 100 through the lamp housing 2012.
Referring to fig. 2 and 3, in the present embodiment, the mounting base 100 may include a housing 10, a light-emitting cover 30, a light source module 50 and a light guide 70. The housing 10 may include a shell 12 and a light transmissive cover 14, the light transmissive cover 14 being attached to one side of the shell 12. The light-emitting cover plate 30 is connected to the housing 12 and located in the light-transmitting cover 14, the light source module 50 is disposed in the housing 12 and located between the light-emitting cover plate 30 and the housing 12, and the light guide member 70 is disposed through the light-emitting cover plate 30. One side of the light-emitting cover plate 30 is opposite to the light source module 50 so that a part of light is conducted to the outside through the light-emitting cover plate 30 and the light-transmitting lampshade 14, one end of the light guide member 70 is opposite to the light source module 50, and the other end extends to be opposite to the inner surface of the light-transmitting lampshade 14, so that a part of light is conducted to the outside through the light guide member 70 and the light-transmitting lampshade 14.
When in use, the lighting module 201 is mounted on the mounting base 100, and is placed in the application environment of the lamp 200 through the mounting base 100. The lighting module 201 provides primary lighting and the mount 100 provides secondary lighting. In the mounting base 100, the light source module 50 is opposite to the light-emitting cover plate 30 and the light-guiding member 70, a part of light emitted by the light source module 50 is conducted to the outside through the light-emitting cover plate 30 and the light-transmitting lampshade 14 to form one light effect, and another part of light emitted by the light source module 50 is conducted to the outside through the light-guiding member 70 and the light-transmitting lampshade 14 to form another light effect. The mounting seat 100 provided by the embodiment of the application not only can play a role in supporting and fixing the lighting module 201, but also can provide auxiliary lighting and has a rich light-emitting effect.
In the present application, the terms "mounted," "connected," "secured," and the like are to be construed broadly, unless otherwise specifically indicated or defined. For example, the connection may be fixed connection, detachable connection, or integral connection, mechanical connection, electrical connection, direct connection, indirect connection via an intermediate medium, communication between two elements, or surface contact. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art according to the specific circumstances.
In this embodiment, the housing 12 is used for mounting other structures of the mounting base 100, the housing 12 is a hollow structure extending along the axis direction a thereof, two ends of the housing 12 are open and penetrate the entire housing 12 to form a penetrating cavity, and the housing 12 is a substantially rectangular housing. In order to facilitate the installation of the light-transmitting globe 14, the case 12 may include a fitting portion 121 and a receiving portion 123, the fitting portion 121 and the receiving portion 123 being connected in succession in the axial direction a, an outer diameter of the fitting portion 121 being smaller than an outer diameter of the receiving portion 123.
The specific shape of the light-transmitting globe 14 is not limited in this specification, and the light-transmitting globe 14 may be, for example, columnar, conical, spherical, or the like. In the present embodiment, the light-transmitting lampshade 14 is approximately in a hollow quadrangular frustum shape, and has four sides which are trapezoidal, and the four sides are smoothly transited, so that light can be effectively scattered, glare is reduced, and more uniform illumination is provided. The light-transmitting lampshade 14 has a smaller top opening for the lighting module 201 to pass through, and the light-transmitting lampshade 14 has a larger bottom opening for being connected and matched with the shell 12. The light-transmitting globe 14 is connected to one end of the housing 12, for example, the light-transmitting globe 14 may be connected to the mating portion 121 in a plug-and-socket mating manner. The matching portion 121 is embedded in the light-transmitting lampshade 14, the maximum inner diameter of the light-transmitting lampshade 14 is larger than the outer diameter of the matching portion 121, and the maximum outer diameter of the light-transmitting lampshade 14 is smaller than the outer diameter of the accommodating portion 123. In this embodiment, an end of the fitting portion 121 facing away from the receiving portion 123 may be provided with a guide slope to accommodate the inclined sidewall of the light-transmitting globe 14.
The light-transmitting globe 14 may be a transparent globe having high light transmittance or a translucent globe having low light transmittance. In this embodiment, the light-transmitting globe 14 is a translucent black globe. The transparent lampshade 14 can be made of dark gray or black acrylic, polycarbonate, glass and other materials, or the transparent lampshade 14 can be made to have semi-transparent black effect by dyeing or coating treatment on the surface of transparent or semi-transparent materials. The translucent lampshade 14 is a translucent black lampshade, can softly scatter light, can also reach the structure in the translucent lampshade 14 that can't see when turning off the light, can the effect of light transmission when turning on the light.
The housing 10 may further include a bottom cover 16, where the bottom cover 16 is connected to an end of the casing 12 facing away from the light-transmitting globe 14, and in particular, the bottom cover 16 may be connected to the accommodating portion 123 by a snap-fit manner. The bottom cover 16 and the light-transmitting globe 14 cover both ends of the case 12, respectively, and protect the structure inside the case 12. In use of the light fixture 200, the bottom cover 16 is placed on a horizontal table surface, and in some embodiments, a non-slip pad may be provided on a side surface of the bottom cover 16 that contacts the horizontal table surface, thereby improving placement stability of the light fixture 200.
In this embodiment, the light-emitting cover plate 30 is connected to one end of the mating portion 121 away from the accommodating portion 123, the light-emitting cover plate 30 is located in the light-transmitting cover 14, at least a portion of the light-transmitting cover plate 14 and the light-emitting cover plate 30 are disposed at intervals, and the light-emitting cover plate 30 is configured to transmit part of the light emitted by the light source module 50 to the light-transmitting cover plate 14. The light-emitting cover plate 30 and the matching portion 121 may be connected by a clamping manner. The light-emitting cover 30 has a light-emitting pattern region 32 (not shown), and the light-emitting pattern region 32 is opposite to the light source module 50, so that a portion of the light emitted from the light source module 50 is conducted to the outside through the light-emitting pattern region 32 and the light-transmitting lampshade 14. The outline of the light-emitting pattern area 32 is arranged according to a preset pattern, the area surrounded by the outline is used for transmitting light, and the light-emitting cover plate 30 enables the light emitted from the light-transmitting lampshade 14 to have richer light efficiency. The light-emitting cover 30 may be made of a material having high light transmittance, and as an example, the light-emitting cover 30 is a transparent polycarbonate film (PC film). By screen printing black ink on the light-exiting cover plate 30 to form opaque regions, the non-screen printed portions remain transparent to form clear light-exiting pattern regions 32.
The light guide 70 is disposed through the light-emitting cover 30, and is used for guiding a portion of the light emitted by the light source module 50. The light guide 70 may include a mounting portion 72 and a light guide portion 74, where the mounting portion 72 is clamped between the light source module 50 and the light-emitting cover 30, and the light guide portion 74 is connected to the mounting portion 72 and penetrates through the light-emitting cover 30. The light guide 70 is fixed in the housing 12 by the mounting portion 72, and transmits light emitted from the light source module 50 by the light guide portion 74.
The mounting portion 72 has a substantially annular shape, the light guide portion 74 is connected to the peripheral wall of the mounting portion 72, and the light guide portion 74 has a substantially plate shape. As an example, the number of the light guide portions 74 may be plural, and the plural light guide portions 74 are sequentially spaced around the mounting portion 72. In particular, in the present embodiment, the number of the light guide portions 74 is four, and the four light guide portions 74 are substantially uniformly arranged on the peripheral wall of the mounting portion 72. In order to adapt to the shape similar to a quadrangular frustum of the light-transmitting globe 14, the light guide portions 74 are disposed obliquely on the opposite side of the inner wall of the light-transmitting globe 14, and the four light guide portions 74 correspond to the four side edges of the light-transmitting globe 14, respectively.
The light-emitting cover plate 30 is provided with a relief groove 34, and one end of the light guide portion 74, which is away from the mounting portion 72, is penetrated through the relief groove 34 and extends between the light-emitting cover plate 30 and the light-transmitting lampshade 14. The light guide part 74 extends to the light-transmitting lampshade 14 through the abdication groove 34, and the light guide part 74 is matched with the light-emitting cover plate 30, so that two different light effects can be realized, and the light-emitting effect is enriched. The relief grooves 34 penetrate the light-emitting cover plate 30 along the thickness direction of the light-emitting cover plate 30, and the shape or/and the number of the relief grooves 34 correspond to the light guide portions 74. As an example, the relief groove 34 may be an entire larger groove for all the light guide portions 74 to pass through, and in this embodiment, the relief groove 34 may include a plurality of bar-shaped grooves, where the plurality of bar-shaped grooves are disposed in one-to-one correspondence with the plurality of light guide portions 74, and each light guide portion 74 passes through the corresponding bar-shaped groove.
In the description of the present application, it should be understood that the terms "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "inner," and the like indicate orientation or positional relationships based on that shown in the drawings, and are merely used for simplifying the description of the present application, rather than indicating or implying that the apparatus or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present application.
The specific material of the light guide portion 74 is not limited in this specification, and the light guide portion 74 may be made of a light guide material having high transparency or a light guide material having low light transmittance. The light guide portion 74 protrudes toward the light-transmitting lampshade 14 relative to the surface of the light-emitting cover plate 30, the surface of the light guide portion 74 away from the light-emitting cover plate 30 is covered with a light-transmitting layer 741, and the light transmittance of the light-transmitting layer 741 is smaller than that of the light guide portion 74. The light emitted from the light source module 50 is partially emitted from the side surface of the light guide 74 to the translucent cover 14, and partially emitted from the translucent layer 741 to the translucent cover 14. In the present embodiment, the light-transmitting layer 741 may be a translucent coating such as a milky paint or a special paint or the like applied to the surface of the light guide 74. In other embodiments, the light-transmitting layer 741 may be opal glass, opal plastic, or the like stacked on the surface of the light-guiding portion 74, or the light-transmitting layer 741 may be a microstructure molded on the surface of the light-guiding portion 74. In this embodiment, the light guide portion 74 is made of a transparent material with high transmittance, and the light guide portion 74 protrudes out of the light cover 30 into the light-transmitting lampshade 14, so that the mounting base 100 achieves a transparent and three-dimensional light-emitting effect when seen from the side.
In this embodiment, the light source module 50 may include a circuit board 52 and a plurality of light emitting elements 54, where the circuit board 52 is fixedly connected to the housing 12, and the plurality of light emitting elements 54 are disposed at intervals on a side of the circuit board 52 facing the light emitting cover 30. The mounting portion 72 is sandwiched between the circuit board 52 and the light-emitting cover 30, and each light guide portion 74 faces the light-emitting surface of at least one light-emitting member 54. The light emitting surface of the light emitting element 54 is opposite to the light guiding portion 74, so that the light transmission efficiency of the light guiding portion 74 is improved, and the light utilization rate is improved.
The circuit board 52 may be fixedly connected to the housing 12 by a fastener such as a screw, and the circuit board 52 may be accommodated in the mating portion 121 and fixedly connected to the mating portion 121. The circuit board 52 and the light-emitting cover plate 30 restrict the position of the mounting portion 72, improving the mounting stability of the light guide 70. The specific type of the light emitting member 54 is not limited in this specification, and for example, the light emitting member 54 may include at least one of an LED lamp bead, a laser. As one example, the plurality of luminous elements 54 may include a plurality of lamp beads arranged on the circuit board 52 at intervals along the circumferential direction of the circuit board 52.
In some embodiments, the light source module 50 may further include a power cord 56, where the power cord 56 is connected to a side of the circuit board 52 facing away from the light emitting element 54, and is used to connect to an external power source to supply power to the light emitting element 54.
Referring to fig. 3 and 4, the mounting portion 72 may be directly clamped between the circuit board 52 and the light-emitting cover 30, two sides of the mounting portion 72 are respectively contacted with the circuit board 52 and the light-emitting cover 30, or the mounting portion 72 may be indirectly clamped between the circuit board 52 and the light-emitting cover 30, and a centering element may be further disposed between the mounting portion 72 and the light-emitting cover 30. In this embodiment, the mounting base 100 may further include an elastic member 60, where the elastic member 60 is elastically abutted between the circuit board 52 and the mounting portion 72, so that on one hand, the mounting stability of the light guide 70 is further improved, and on the other hand, the fixing effect is also achieved on the circuit board 52, and the possibility of shaking the circuit board 52 is reduced. The specific type of the elastic member 60 is not limited in this specification, and for example, the elastic member 60 may include at least one of a silica gel, a foam, a rubber, and the like. The outer diameter of the elastic member 60 is larger than the outer diameter of the mounting portion 72 to fix the mounting portion 72 entirely.
Referring to fig. 4 and fig. 5, in the present embodiment, the mounting base 100 may further include a weight member 80, where the weight member 80 is disposed in the housing 12 and located at a side of the light source module 50 away from the translucent cover 14. The weight 80 is used to increase the weight of the mounting base 100, lower the center of gravity of the lamp 200 as a whole, and prevent the lamp 200 from toppling or shaking in an application environment. The fitting portion 121 of the housing 12 has an inner diameter smaller than that of the receiving portion 123, the weight 80 is disposed in the receiving portion 123 and near the bottom cover 16, or the weight 80 may be directly fixed to the bottom cover 16 and located at a central position of the bottom cover 16 to uniformly distribute the weight. In this embodiment, the weight 80 is a weight, the shape of the weight 80 can be adapted to the space in the accommodating portion 123, and the weight 80 can be further provided with a notch, a groove, or other structures (such as the power cord 56 on the side of the circuit board 52) to be configured for other structures.
To protect the circuit board 52, the mount 100 may further include a mount bracket 90, and the mount bracket 90 is fixedly coupled to the housing 12 and located between the weight 80 and the light source module 50. A mounting bracket 90 is located between the weight 80 and the circuit board 52 for spacing the two apart to protect the circuit board 52. The mounting bracket 90 may be fixedly connected to the accommodating portion 123 by a screw, and may be disposed against the circuit board 52, so as to further compress the circuit board 52 and the light guide member 70. The specific material of the mounting bracket 90 is not limited in this specification, and the mounting bracket 90 may be a metal bracket, for example, the mounting bracket 90 may be an aluminum alloy bracket, a steel bracket, a copper bracket, or the like.
In this embodiment, mounting block 100 may further include an insulating film 92, where insulating film 92 is disposed between mounting bracket 90 and circuit board 52, and may be adhesively coated onto mounting bracket 90. Insulating film 92 is used to separate metal mounting bracket 90 from circuit board 52 to protect circuit board 52. The specific material of insulating film 92 is not limited in this specification, and insulating film 92 may be made of Polycarbonate (PC) or polyethylene terephthalate (PET), for example.
In order to reduce the possibility of wear and collision between the weight 80 and the mounting bracket 90, in this embodiment, the mount 100 may further include an elastic pad 81, and the elastic pad 81 is disposed between the weight 80 and the mounting bracket 90. The side of the weight 80 facing the mounting bracket 90 may be provided with a receiving groove 83, the receiving groove 83 being recessed with respect to the surface of the weight 80, and a part of the elastic pad 81 being embedded in the receiving groove 83. The number of the elastic pads 81 may be plural, the number of the receiving grooves 83 may be plural, and the plurality of receiving grooves 83 may be arranged in the circumferential direction of the weight 80. The plurality of accommodating grooves 83 and the plurality of elastic pads 81 are arranged in a one-to-one correspondence, each elastic pad 81 is accommodated in the corresponding accommodating groove 83, and opposite sides of the elastic pad 81 can be provided with back glue to be adhered to the weight 80 and the mounting bracket 90 respectively. The resilient pad 81 provides a good cushion against impact and wear between the weight 80 and the mounting bracket 90 or other structure, extending the useful life of each structure.
Referring to fig. 1 and 3 again, in the present embodiment, the lighting module 201 is mounted on the mounting base 100 through the lamp housing 2012, and one end of the lamp housing 2012 is inserted into the mounting base 100 and connected to the mounting base 100. The light-transmitting cover 14 has a first mounting hole 141, the light-emitting cover 30 has a second mounting hole 36, the light guide 70 has a third mounting hole 721, and the light source module 50 has a fourth mounting hole 521. The first mounting hole 141, the second mounting hole 36, the third mounting hole 721 and the fourth mounting hole 521 are coaxial and together form a mounting channel 101 through which the lighting module 201 passes, and the lighting module 201 is connected to the mounting base 100 through the mounting channel 101. The first mounting hole 141 is formed in a middle portion of one end of the light-transmitting lampshade 14 away from the light-emitting cover plate 30, and the second mounting hole 36 is formed in a middle portion of the light-emitting cover plate 30 and is communicated with the abdication groove 34. The third mounting hole 721 is an inner hole of the mounting portion 72, the elastic member 60 is an elastic washer, the inner hole of the elastic member 60 is coaxially communicated with the third mounting hole 721, and the aperture of the inner hole of the elastic member 60 is larger than that of the third mounting hole 721. The fourth mounting hole 521 is formed in the circuit board 52, and the plurality of light emitting elements 54 surrounds the fourth mounting hole 521.
Referring to fig. 5, correspondingly, through holes for the lamp housing 2012 (shown in fig. 1) are formed at corresponding positions of the insulating film 92, the mounting bracket 90 and the weight 80. These through holes together form a mounting channel 101, and the lamp housing 2012 is embedded within the mounting channel 101. The bottom cover 16 may be provided with a connection structure for connecting the lamp housing 2012, for example, a threaded connection portion may be provided at the bottom cover 16, and the lamp housing 2012 is screwed with the bottom cover 16 after being inserted into the mounting channel 101. The mounting bracket 90 is also used for mating connection with the lighting module 201, for example, the mounting bracket 90 may be provided with a limiting portion to pull the housing 12 to make the connection between the housing 10 and the lamp housing 2012 more compact.
When the mounting seat 100 provided by the application is used, the lighting module 201 is mounted on the mounting seat 100 and is placed in the application environment of the lamp 200 through the mounting seat 100. The lighting module 201 provides primary lighting and the mount 100 provides secondary lighting. In the mounting base 100, the light source module 50 is opposite to the light-emitting cover plate 30 and the light-guiding member 70, a part of light emitted by the light source module 50 is conducted to the outside through the light-emitting cover plate 30 and the light-transmitting lampshade 14 to form one light effect, and another part of light emitted by the light source module 50 is conducted to the outside through the light-guiding member 70 and the light-transmitting lampshade 14 to form another light effect. The mounting seat 100 provided by the embodiment of the application not only can play a role in supporting and fixing the lighting module 201, but also can provide auxiliary lighting and has a rich light-emitting effect.
In the description of the present specification, a description referring to terms "one embodiment," "some embodiments," "examples," "specific examples," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, the different embodiments or examples described in this specification and the features of the different embodiments or examples may be combined and combined by those skilled in the art without contradiction.
Finally, it should be noted that the above-mentioned embodiments are only for illustrating the technical solution of the present application, and are not limiting. Although the application has been described in detail with reference to the foregoing embodiments, those skilled in the art will appreciate that modifications may be made to the techniques described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Such modifications and substitutions do not drive the essence of the corresponding technical solutions to depart from the spirit and scope of the technical solutions of the embodiments of the present application.