Abstract:
A light source module (100) includes: at least one light source emitting light; and a body supporting the light source, wherein the body includes: a heat sink supporting the light source on a top surface thereof, the heat sink absorbing heat from the light source and dissipating the heat to the outside; an insulating part provided on at least one surface of the heat sink, the insulating layer having electrical insulating properties; and a plating part (40) provided on the insulating part, wherein the plating part (40) includes: a contact heat dissipation part (203, 303) contacting a portion of a bottom surface of the light source to receive heat generated from the light source; and a diffusion heat dissipation part (350) connected to the contact heat dissipation part (203, 303), the diffusion heat dissipation part (350) receiving heat from the contact heat dissipation part to discharge the heat to the heat sink. Accordingly, quick heat dissipation is performed, so that it is possible to obtain effects such as improvement of the lifespan of products, enhancement of the stability of products, rapid fabrication processes, inexpensive fabrication cost, facilitation of mass production, improvement of product yield, protection of a conductive material, and improvement of the reliability of products. Furthermore, it is possible to obtain various effects that can be understood through configurations described in embodiments.
Abstract:
A light source module includes at least one light source emitting light, and a body supporting the light source. The body includes a heat sink absorbing heat from the light source and dissipating the heat to the outside, an insulating layer having electrical insulating properties, the insulating layer being provided on at least one surface of the heat sink, and a conductive layer provided on the insulating layer to enable electric current to flow therein. The conductive layer includes an electrically conductive layer providing a path region in which electric current is applied to the light source, and a heat dissipation conductive layer diffusing generated by the light source. Accordingly, it is possible to obtain effects such as rapid fabrication processes, inexpensive fabrication cost, facilitation of mass production, improvement of product yield, and prevention of heat dissipation. Furthermore, it is possible to obtain various effects that can be understood through configurations described in embodiments.
Abstract:
A light source module (100) includes at least one light source (11) and a body supporting the light source (11). The body including a heat sink (120) supporting the light source (11) on a top surface thereof, the heat sink (120) absorbing heat from the light source (11) and dissipating the heat to the outside, an insulating layer (20) provided on at least one surface of the heat sink (120), the insulating layer (20) having electrical insulating properties, and a conductive layer (40) provided on the insulating layer (20), the conductive layer (40) being at least provided in a path region through which electric current is applied to the light source (11). The conductive layer (40) includes light source connection parts (220, 320, 420, 520) supplying the electric current to the light source (11), and a light source mounting part (200, 300, 400, 500) disposed between the light source connection parts (220, 320, 420, 520), the light source mounting part (200, 300, 400, 500) having the light source mounted (11) thereon. One portion of the light source connection part (220, 320, 420, 520) is divided into at least two portions to be connected to each other. Accordingly, it is possible to obtain effects such as rapid fabrication processes, inexpensive fabrication cost, facilitation of mass production, improvement of product yield, and optimization of a conductive material. Furthermore, it is possible to obtain various effects that can be understood through configurations described in embodiments.
Abstract:
A light source module (100) comprising: at least one light source (11) emitting light; and a heat sink (120) absorbing heat from the light source (11) and dissipating the heat to the outside; a mounting part (121) provided in a quadrangular structure at an upper portion of the heat sink (120) such that the light source (11) is mounted thereon; a heat dissipation fin (130) provided under the heat sink (120) to absorb heat generated from the mounting part (121) and dissipate the heat to the outside; an insulating layer (20) having electrical insulating properties, the insulating layer (20) being provided on at least one surface of the heat sink (120); an electrically conductive layer (40) provided in the insulating layer (20), the electrically conductive layer (40) providing a path through which electric current is applied to the light source (11); and a lens cover (142) provided over the light source (11).
Abstract:
A light source module (100) includes at least one light source (11) and a body supporting the light source (11). The body including a heat sink (120) supporting the light source (11) on a top surface thereof, the heat sink (120) absorbing heat from the light source (11) and dissipating the heat to the outside, an insulating layer (20) provided on at least one surface of the heat sink (120), the insulating layer (20) having electrical insulating properties, and a conductive layer (40) provided on the insulating layer (20), the conductive layer (40) being at least provided in a path region through which electric current is applied to the light source (11). The conductive layer (40) includes light source connection parts (220, 320, 420, 520) supplying the electric current to the light source (11), and a light source mounting part (200, 300, 400, 500) disposed between the light source connection parts (220, 320, 420, 520), the light source mounting part (200, 300, 400, 500) having the light source mounted (11) thereon. One portion of the light source connection part (220, 320, 420, 520) is divided into at least two portions to be connected to each other. Accordingly, it is possible to obtain effects such as rapid fabrication processes, inexpensive fabrication cost, facilitation of mass production, improvement of product yield, and optimization of a conductive material. Furthermore, it is possible to obtain various effects that can be understood through configurations described in embodiments.
Abstract:
A light source module includes at least one light source (11) emitting light, and a body supporting the light source, wherein the body includes a heat sink (120) absorbing heat from the light source (11) and dissipating the heat to the outside, an insulating layer (20) having electrical insulating properties, the insulating layer (20) being provided on at least one surface of the heat sink (120), and a conductive layer (40) contacted with the insulating layer (20), the conductive layer (40) being at least provided in a path region in which electric current is applied to the light source (11), the conductive layer (40) being contacted with the light source (11). Accordingly, it is possible to obtain effects such as rapid fabrication processes, inexpensive fabrication cost, facilitation of mass production, improvement of product yield, and prevention of heat dissipation. Furthermore, it is possible to obtain various effects that can be understood through configurations described in embodiments.