1. Field of the Invention
The present invention relates to an LED light device, and in particular relates to an LED light device with high heat dissipation.
2. Description of the Related Art
Light emitting diodes (LEDs) are elements that convert electric energy to light. The LEDs have some advantages including lower power consumption, smaller sizes, higher efficiencies, faster switching, and longer lifetimes, over incandescent light sources. Therefore, LEDs have become popular in illumination devices, such as light bulbs. However, heat dissipation and directional lighting are still issues for LEDs used for general illumination purposes.
For the conventional LED light bulb, the heat sink 13 must be hollowed out to place the power driver 15 therein, which increases the volume. Therefore, heat dissipation for the conventional light bulb can be improved. For this purpose, the present invention provides an LED light device provided with a heat sink with a new structure having better heat dissipation than those of prior art.
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The present invention provides an LED light device, including: a heat sink having a layered structure formed by a plurality of tubes; and a sub-mount positioned on the heat sink and mounted with an LED emitter.
In the LED light device in accordance with an embodiment of the invention, the plurality of tubes include a plurality of first tubes arranged in a first direction in a plane, which form a first layer, and a plurality of second tubes arranged in a second direction in the plane, which form a second layer. The heat sink includes a plurality of the first layers and the second layers piled up alternatively
In the LED light device in accordance with an embodiment of the invention, the plurality of tubes further include a plurality of third tubes perpendicular to the plane of the first layers and the second layers, wherein the third tubes penetrate through the first layers and the second layers, and space apart from the top surface and the bottom surface of the layered structure.
In the LED light device in accordance with an embodiment of the invention, the first direction and second direction are perpendicular. The cross sections of the first, second, and third tubes are rectangular
In the LED light device in accordance with an embodiment of the invention, the plurality of tubes include alumina coated with a nickel layer, or the plurality of tubes include copper.
In the LED light device in accordance with an embodiment of the invention, the sub-mount is further mounted with a power driver module for driving the LED emitter.
In the LED light device in accordance with an embodiment of the invention, the LED light device further includes a cylindrical lens covering the LED emitter and blended with phosphor.
For the cylindrical lens, the cylindrical lens has a cylindrical recess used for accepting the LED emitter, and an opposite surface of the cylindrical recess is a curved surface, wherein the curved surface can be convex or concave. When the curved surface is concave, the shape of the space surrounded by the curved surface can be a frustum with a cap and base according to an embodiment of the invention. In an embodiment, the angle between the base and the side surface of the frustum is larger than 30 degrees, and the diameter of the cap is longer than the width of the blue LED emitter.
In the LED light device in accordance with an embodiment of the invention, the LED emitter includes a white LED emitter, a red LED emitter, a green LED emitter, and a blue LED emitter, wherein the white LED emitter is located at the center of the sub-mount, and the red LED emitter, the green LED emitter, and the blue LED emitter surround the white LED emitter. In this case, the sub-mount is further mounted with a dimmable IC and a switch circuit, wherein the switch circuit is switched to several states to control the LED emitters to select a desired colored light.
The present invention also provides an LED light device, including a heat sink having a layered structure formed by the piling up of a plurality of tubes, and a plurality of light engines, each of which includes a sub-mount positioned on the heat sink, an LED emitter mounted on the sub-mount, and a power driver module mounted on the sub-mount for driving the LED emitter, wherein at least one of the plurality of light engine is selected to emit light depending on the power requirement.
In an embodiment of the present invention, the LED light device includes a ceiling light, a floor light, a high bay, and a track light.
According to the present invention, an LED light device is provided. This LED light device has a heat sink with a tube-constructed structure, which has better heat dissipation than those of prior art.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
a is a perspective view of the heat sink of the conventional LED light bulb shown in
b is a perspective view of the power driver of the conventional LED light bulb shown in
a is a perspective view of an LED light bulb in accordance with an embodiment of the invention.
b is a perspective view of the LED light bulb shown in
c is a perspective view of the LED light bulb shown in
a is a perspective view of a part of a LED light bulb in accordance with an embodiment of the invention.
b is a perspective view of the cylindrical lens shown in
c is a cross-sectional view of the cylindrical lens and the LED emitter shown in
a is a perspective view of a cylindrical lens in accordance with another embodiment of the invention.
b is a cross-sectional view of the cylindrical lens shown in
a is a perspective view of a cylindrical lens in accordance with another embodiment of the invention.
b is a cross-sectional view of the cylindrical lens shown in
The following description is of the best-contemplated mode of carrying out the invention. This description is made for the purpose of illustrating the general principles of the invention and should not be taken in a limiting sense. The scope of the invention is best determined by reference to the appended claims.
a is a perspective view of an LED light bulb in accordance with an embodiment of the invention. As shown in
c is a perspective view of the LED light bulb shown in
In this embodiment, the number of the layers is not limited, but at least 6 layers are preferred. Also, the number of the tubes in a layer is not limited, but at least 3 tubes in a layer are preferred. The size of the tubes is also not limited. The heat sink can be formed by layers constructed by thick tubes together with layers constructed by thin tubes (refer to
According to the structure of the heat sink of the embodiment, given the same volume, the total surface areas of the tube-constructed heat sink are much greater than those of the conventional fin-structured heat sink. Therefore, heat dissipation in the tube-constructed heat sink is better than in the conventional fin-structured heat sink. Heat can be quickly transferred along the X and Y axes by conduction.
According to the structure of the heat sink of the embodiment, heat can be transferred by both conduction and convection. In comparison with the heat sink not having tubes arranged along the Z axis, the heat sink having tubes arranged along the Z axis has better heat transfer efficiency.
By using the light engine 70 in the LED light bulb, the color and the intensity of the light emitted from the LED light bulb can be easily controlled. Therefore, the light bulb can change the atmosphere of the environment, which satisfies requirements for different occasions.
a is a perspective view of a part of a LED light bulb in accordance with an embodiment of the invention. In
b is a perspective view of the cylindrical lens shown in
According to the structure of the cylindrical lens 83, two recesses r1 and r2 respectively provide a curved surface which reflects or refracts light emitted from the LED emitter 81. Therefore, the light can be output from the light bulb with a larger angle range. For this embodiment, the illumination angle of the light bulb can be larger than 270 degree.
a is a perspective view of a cylindrical lens in accordance with another embodiment of the invention, and
a is a perspective view of a cylindrical lens in accordance with another embodiment of the invention, and
According to the above three embodiments, as long as the top end surface of the recess at the bottom end of the cylindrical lens and the top end surface of the cylindrical lens are curved surfaces so as to reflect or refract light to a wide illumination angle, there is no special limit to the curved surface. The curved surface can be a concave surface, or a convex surface with respect to the cylindrical lens. In addition, the cylindrical lens mixed with phosphor can provide more uniform white light output than the cylindrical lens applied with phosphor on its surface can do.
The above description recites the features of the heat sink, the light engine, and the cylindrical lens in an LED light bulb in accordance with the present invention. However, the heat sink and the light engine can further be utilized in other indoor or outdoor light devices, such as a ceiling light, a floor light, a high bay, a track light, or etc. In these light devices, the number of the light engine is not limited to 1. A plurality of the light engines can be connected in series or in parallel. In this case, a switch circuit or a control device can be provided in these light devices to select at least one light engine to emit light depending on the power requirement.
While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.