1. Field of the Invention
The present invention relates to an embedded lamp and a replaceable illumination module for the embedded lamp; in particular, to an embedded lamp that receives a replaceable light module for the embedded lamp in the lamp mask. The illumination module of the embedded lamp can be changed with different illumination modules.
2. Description of Related Art
Embedded lamps are widely used as indoor illuminating devices. For reducing power consumption, the embedded lamp does not use the hot light bulb as the light source again. The power-saving light source is adopted.
However, the embedded lamp cannot be changed with different light modules, such as power-saving bulbs, LED lamps, or PL-C lamp. When different module is used, the embedded lamp must be totally changed. It is consumed and is not good for environment.
The object of the present invention is to provide an embedded lamp and a replaceable illumination module for the embedded lamp. The embedded lamp can be changed with different illumination modules. When a different illumination module is used, the embedded lamp does not need to be totally changed. The environment protection is achieved.
In order to achieve the aforementioned objects, according to an embodiment of the present invention, a replaceable illumination module for an embedded lamp is provided. The replaceable illumination module is installed in a lamp cover of the embedded lamp and can be disassembled. The replaceable illumination module includes a connection base, a middle sleeve, a rotation sleeve, a stop ring, a rotation locking flake, and a elastic element. The connection base includes a bottom board for connecting a lamp set, and a ring-shaped wall protruding upwards from the bottom board. The inner side of the ring-shaped wall has a plurality of concave slots and a plurality of slanted guiding surfaces located between the concave slots. The middle sleeve is received in the ring-shaped wall, and includes a plurality of guiding blocks protruding outwards from the external ring surface and received in the concave slots. The rotation sleeve is received in the middle sleeve and exposed outside of the top surface of the middle sleeve, and includes a plurality of sliding blocks extending outwards from the bottom and slidingly connecting the guiding blocks of the middle sleeve. The stop ring is fastened at the top side of the middle sleeve. The rotation locking flake is located above the stop ring, and is fastened at the top side of the rotation sleeve. The elastic element pushes rotation sleeve upwards.
In order to achieve the aforementioned objects, according to an embodiment of the present invention, an embedded lamp is provided. The embedded lamp includes a lamp cover, and a replaceable illumination module for an embedded lamp. The lamp cover includes a hollow housing, and a top frame located above the hollow housing. The top frame is fastened at two sides of the hollow housing. The replaceable illumination module for an embedded lamp is received in the hollow housing, and includes a connection base, a middle sleeve, a rotation sleeve, a stop ring, a rotation locking flake, and a elastic element. The connection base includes a bottom board for connecting a lamp set, and a ring-shaped wall protruding upwards from the bottom board. The inner side of the ring-shaped wall has a plurality of concave slots and a plurality of slanted guiding surfaces located between the concave slots. The middle sleeve is received in the ring-shaped wall, and includes a plurality of guiding blocks protruding outwards from the external ring surface and received in the concave slots. The rotation sleeve is received in the middle sleeve and exposed outside of the top surface of the middle sleeve, and includes a plurality of sliding blocks extending outwards from the bottom and slidingly connecting the guiding blocks of the middle sleeve. The stop ring is fastened at the top side of the middle sleeve. The rotation locking flake is located above the stop ring, and is fastened at the top side of the rotation sleeve. The elastic element pushes rotation sleeve upwards.
The present invention has the following characteristics. The embedded lamp can be changed with different kinds of illumination modules, and the original lamp cover of the embedded lamp can re reserved. The resource is not wasted and the environment protection is achieved. Furthermore, the user can replace different kinds of light sources and does not need to change the total set of embedded lamp.
In order to further the understanding regarding the present invention, the following embodiments are provided along with illustrations to facilitate the disclosure of the present invention.
The aforementioned illustrations and following detailed descriptions are exemplary for the purpose of further explaining the scope of the present invention. Other objectives and advantages related to the present invention will be illustrated in the subsequent descriptions and appended drawings.
Reference is made to
The replaceable illumination module 2 for an embedded lamp is installed in the lamp cover 10 and can be disassembled. When the user changes the light source, such as LED lamp with different temperature color, the user does not need to change the total set of embedded lamp. The user only needs to change the replaceable illumination module 2 for an embedded lamp.
Reference is made to
The connection base 21 includes a bottom board 211 for connecting a lamp set 28 (as shown in
In this embodiment, the bottom board 211 of the connection base 21 has a plurality of screw holes 210. The bottom board 211 is locked with the lamp set 28 via screws (as shown in
The middle sleeve 23 is received in the ring-shaped wall 212 of the connection base 21. The middle sleeve 23 has a plurality of guiding blocks protruding outwards from the external ring surface and received in the concave slots 213a, 213b. In this embodiment, the quantity of the guiding blocks is four and the guiding blocks 232a, 232b, 232c, 232d are disposed with the identical angle.
The rotation sleeve 22 is received in the middle sleeve 23 and exposes outside of the top surface of the middle sleeve, and includes a convex plate 221 protruding outwards from the external ring surface and a plurality of sliding blocks extending outwards from the bottom. In this embodiment, the quantity of the sliding blocks 222a, 222b, 222c, 222d is four and the sliding blocks are slidingly connected with the guiding blocks 232a, 232b, 232c, 232d of the middle sleeve 23. The outer diameter of the convex plate 221 is the same as the outer diameter of the middle sleeve 23. The convex plate 221 contacts and connects the bottom edge of the middle sleeve 23.
In this embodiment, the convex plate 221 of the rotation sleeve 22 has a plurality of slant surfaces 223 and a plurality convex portions 225 located between the slant surfaces 223. The bottom edge of the middle sleeve 23 has a plurality of slant surfaces 233 and a plurality of concave portions 235. The outline of the bottom edge of the middle sleeve 23 corresponds to the outline of the convex plate 221. The location of the concave portions 235 and the location of the convex portions have a pre-determined angle. In this embodiment, the angle is 15 degrees.
The stop ring 24 is fastened at the top side of the middle sleeve 23. In this embodiment, the stop ring 24 has a screw-locking portion 242 to be screwed at the top side of the middle sleeve 23. The rotation locking flake 25 is located above the stop ring 24, and is fastened at the top side of the rotation sleeve 22. In this embodiment, the rotation locking flake 25 is connected with the rotation sleeve 22 via a connection screw 26. However, the connection way is not limited to above. For example, the bottom of the rotation locking flake 25 is wedged with the rotation sleeve 22 by a tight-fitness way. There is a distance between the stop ring 24 and the rotation locking flake 25 for receiving the top frame 14 of the lamp cover 10. The shape of the rotation locking flake 25 corresponds to the opening 140 of the top board 142.
The elastic element 27 pushes upwards to the rotation sleeve 22. In this embodiment, the elastic element 27 is a spring. The elastic element 27 is located in the rotation sleeve 22. The elastic element 27 has a top side for contacting the connection screw 26, and a bottom side for contacting the top surface of the lamp set 28. In this embodiment, the bottom side of the elastic element 27 contacts the top surface of the cooling fin 281.
Reference is made to
Reference is made to
Reference is made to
Due to the slant surface of the bottom of the guiding blocks and the flexible force of the spring 27, the sliding blocks 222a, 222c slides along the slant guiding surface 214 of the connection base 21 (referring to
Reference is made to
Reference is made to
When the user changes the replaceable illumination module 2, the user pushes the replaceable illumination module 2 upwards. The sliding blocks of the rotation sleeve 22 leaves the concave slots again, and rotate along the clockwise direction. When the user feels that the convex plate 221 of the rotation sleeve 22 is temporarily wedged with the bottom edge of the middle sleeve 23, the force is reduced to make the connection base 21 recover to the original location. Next, the rotation sleeve 22 and the rotation locking flake 25 continuously rotate to the unlock location. In other words, the rotation locking flake 25 can leave the opening 140 of the top frame 14. Finally, the replaceable illumination module 2 moves downwards and leaves from the lamp cover 2.
As shown in
The present invention provides replaceable illumination module 2 for an embedded lamp. Therefore, the user does not need to replace the lamp cover 10 and can be assembled with different light sources, such as power-saving bulb, LED, etc. The environment protection is achieved. Furthermore, the user can easily change the different illumination modules to meet the requirements, and does not need the change the total set of embedded lamp.
The descriptions illustrated supra set forth simply the preferred embodiments of the present invention; however, the characteristics of the present invention are by no means restricted thereto. All changes, alternations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present invention delineated by the following claims.