This application claims priority under 35 U.S.C. §119(b) and 37 CFR 1.55 to Chinese application filed on Oct. 23, 2014 and having serial number 201420618430.5, wherein the entirety of said application is incorporated herein by reference.
The present invention relates to a field of LED lighting, and more particularly relates to an LED ceiling lamp.
A ceiling lamp usually has a relative flat base, such that when installing the ceiling lamp, the base of the ceiling lamp can be completely attached to the ceiling. The light source of the ceiling lamp includes a common incandescent lamp, a fluorescent lamp, a high intensity gas-discharge lamp, and a halogen tungsten lamp, etc. Currently, the LED ceiling lamp is the most popular ceiling lamp, the LED ceiling lamp with a gorgeous appearance can be attached to or embedded in the ceiling of the roof, which becomes the main lighting equipment in the room.
With regarding to the conventional LED ceiling lamp, in order to achieve fireproofing, waterproofing, and explosion-proofing functions of the power supply, an independent power supply installing box is additionally provided for installing a power supply, however, the additional power supply installing box can cause a lot of problems, such as:
1. A large space is occupied;
2. The manufacturing cost and the material cost are high;
3. The stability of the overall structure cannot be ensured;
4. The power supply installing box will increase an installing difficulty of the LED ceiling lamp.
Thus, how to omit the power supply installing box under the premise of protecting the LED power supply is a research hotspot.
Accordingly, it is necessary to provide an LED ceiling lamp which has a compact structure, a high space using rate, a low cost, an integral firm construction, and facilitates to install.
An LED ceiling lamp includes:
a base including a main body and a receiving box having an opening, the main body defining a through hole, an opening end of the receiving box being disposed on the main body and connected to an edge of the through hole;
a lampshade shielding the base, the receiving box being received in a cavity enclosed by the lampshade and the base;
an LED component disposed on the base and received in the cavity; and
a power supply assembly received in the receiving box and located outside the cavity, the receiving box defines a wire hole, the power supply assembly comprises a wire extending through the wire hole, and the power supply assembly is electrically connected to the LED component through the wire.
According to one embodiment, the LED component includes an annular lamp plate and an LED lamp positioned on the annular lamp plate, the annular lamp plate is sleeved on the receiving box.
According to one embodiment, the receiving box is shaped as a hollow truncated cone.
According to one embodiment, the LED ceiling lamp further includes a protecting cover disposed on the base, the LED component is disposed between the protecting cover and the base.
According to one embodiment, the protecting cover has an annular shape and is sleeved on the receiving box.
According to one embodiment, the power supply assembly is a non-isolated power supply.
According to one embodiment, an outer edge of the main body extends and is bent to form a flanging, the flanging latches with an edge of the lampshade.
According to one embodiment, the base is made of metal.
According to one embodiment, the base has a thickness greater than 0.5 millimeters.
According to one embodiment, the base defines an installing hole, the base is installed on a ceiling through the installing hole.
The receiving box of the base of the LED ceiling lamp can receive the power supply assembly directly. Compared to the conventional LED ceiling lamp, in which an extra power supply installing box is disposed on the base, the LED ceiling lamp can save the space, reduce the manufacturing cost and the material cost and enhance the stability of the overall structure, and reduce an installing difficulty of the LED ceiling lamp.
Unless the context clearly requires otherwise, throughout the description and the claims, the words “comprise,” “comprising,” and the like are to be construed in an inclusive sense as opposed to an exclusive or exhaustive sense; that is to say, in the sense of “including, but not limited to.” Words using the singular or plural number in this Detailed Description section also include the plural or singular number respectively. Additionally, the words “herein,” “above,” “below” and words of similar import, when used in this application, shall refer to this application as a whole and not to any particular portions of this application. When the claims use the word “or” in reference to a list of two or more items, that word covers all of the following interpretations of the word: any of the items in the list, all of the items in the list and any combination of the items in the list.
Referring to
Referring to
In order to enhance a mechanical strength of the base 100, in one embodiment, the main body 110 and the receiving box 120 are integrally punch-formed. In another embodiment, the main body 110 and the receiving box 120 are integrally cast-formed. In yet another embodiment, the main body 110 and the receiving box 120 are integrally die cast-formed. In still yet another embodiment, the receiving box 120 is formed by protruding the main body 110 to one side, which can enhance the mechanical strength of the base 100.
In order to enhance a heat dissipation effect of the base 100, in one embodiment, the base 100 is made of metal, in another embodiment, the base 100 is made of aluminum alloy, which can enhance the heat dissipation of the base 100. The base 100 has a thickness greater than 0.5 millimeters, which can ensure a high mechanical strength and a good heat dissipation effect of the base 100.
In order to make sure that the base 100 is securely installed on the ceiling, referring to
Referring to
In order to make sure that the lampshade 200 is securely installed on the base 100, referring to
Referring to
In order to effectively save a space in the LED ceiling lamp 10, and make sure that an overall structure of the LED ceiling lamp 10 is more compact and the LED component 300 is securely installed on the base 100, referring to
Referring to
In order to make sure that the protecting cover 400 is securely installed on the base 100, referring to
Referring to
In order to make sure that the power supply assembly 500 is securely installed in the receiving box 120, a side surface of an inner wall of the receiving box 120 adjacent to the power supply assembly 500 is provided with a plurality of backing pads 123. One side surface of the power supply assembly 500 closely contacts with the plurality of backing pads 123. In addition to that, the backing pads 123 can further absorb a part of an extrusion force of the power supply assembly 500 exerted by the ceiling.
In one embodiment, the power supply assembly 500 is a non-isolated power supply, the non-isolated power supply has advantages of simple structure, small volume, low manufacturing cost, wide adjusting range of output voltage, high power supply efficiency. In addition, after the LED ceiling lamp 10 is installed, the non-isolated power supply is housed within an enclosed space formed by the receiving box and the ceiling, avoiding the non-isolated power supply from being exposed to the outside, thus the LED ceiling lamp 10 is safe, which can meet national safety standards.
In order to make sure that the power supply assembly 500 and the LED component 400 are better electrically connected, referring to
The receiving box 120 of the base 100 of the LED ceiling lamp 10 can receive the power supply assembly 500, compared to the conventional LED ceiling lamp, which an extra power supply installing box is required to be disposed on the base 100, the LED ceiling lamp 10 can save the space, reduce the manufacturing cost and the material cost and enhance the stability of the overall structure, and reduce an installing difficulty of the LED ceiling lamp.
In the LED ceiling lamp 10, the power supply assembly 500 is installed in the receiving box 120 of the base 100, safety test requirements can be met by employing the base 100, a testing cost thereof is reduced.
Although the present invention has been described with reference to the embodiments thereof and the best modes for carrying out the present invention, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention, which is intended to be defined by the appended claims.
Number | Date | Country | Kind |
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201420618430.5 | Oct 2014 | CN | national |