Headlight module having thin plate type metal PCB

10400983 ยท 2019-09-03

Assignee

Inventors

Cpc classification

International classification

Abstract

Provided is a headlight module having a thin plate type metal PCB, wherein the headlight module has the assembly structure of a metal PCB formed of a thin plate which is a thermal conductor and capable of being bent in various directions and including at least one protruded portion increasing a surface area on both sides, and a back plate coupled to the metal PCB through the protruded portion.

Claims

1. A headlight module comprising: a metal PCB formed of a thin plate which is a thermal conductor and capable of being bent in various directions and has at least one protruded portion increasing a surface area on both sides; and a back plate coupled with the metal PCB through the at least one protruded portion, in such a way that the metal PCB is fixed to the back plate by being pressed at a top of the back plate, wherein the metal PCB a) comprises a plurality of chip mounting parts disposed in a base, the chip mounting parts being mounted in parallel or directed in a same direction by relative bending of any one of the base and the chip mounting parts, and wherein the back plate a) is mounted to be pressed and closely attached to the at least one protruded portion of the metal PCB, and b) includes latching pieces, which are formed integrally with both sides of the back plate, and, each of which has an inclined surface disposed at a top thereof and a support groove corresponding to the at least one protruded portion, such that the at least one protruded portion of the metal PCB is pressed and fixed thereto, wherein the metal PCB and the back plate are formed in a stepped shape or an inclined shape.

Description

DESCRIPTION OF DRAWINGS

(1) FIG. 1 is an exploded view showing a conventional LED lamp module.

(2) FIGS. 2 to 4 are perspective views showing the bent state of a metal PCB according to the present invention.

(3) FIG. 5 is a perspective view showing the coupling state of the metal PCB and the back plate according to the present invention.

(4) FIGS. 6 to 9 are perspective views showing the coupling state of the metal PCB and the back plate according to other embodiments of the present invention.

BEST MODE FOR INVENTION

(5) Hereinafter, embodiments of the present invention are described in detail with reference to the accompanying drawings.

(6) A headlight module of the present invention has the assembly structure of a metal PCB 110 and a back plate 150.

(7) Furthermore, the metal PCB 110 is equipped with at least one protruded portion 111 formed of a thin plate which is a thermal conductor, can be bent, and increases a surface area in order to supplement a reduction of the volume attributable to a reduction in the thickness on both sides.

(8) In this case, the protruded portion 111 is formed in various shapes for coupling with the back plate 150.

(9) Furthermore, the back plate 150 is integrated with a support surface 151 having a stepped or inclined shape for close coupling with the metal PCB on the upper side and is integrated with a mounting portion 153 mounted in accordance with a lamp housing on the bottom surface.

(10) In addition, the metal PCB 110 includes a plurality of chip mounting parts 114 in a base 112.

(11) In this case, as in FIGS. 3 and 4, the plurality of chip mounting parts is disposed to be directed toward the same direction in the metal PCB 110 by relative bending in which the base 112 is bent or the chip mounting parts 114 are bent.

(12) Furthermore, the metal PCB is formed of a sheet made of aluminum or a sheet made of copper and is also made of a thin plate.

(13) In this case, the protruded portions 111 may be disposed at the same interval in the length direction of the metal PCB in the width direction.

(14) Thereafter, the back plate 150 is integrated with a plurality of contact support jaws 158 on the top surface so that they corresponds to the inclination of the chip mounting parts while they are formed to correspond to the base or the mounting portion.

(15) In addition, as in FIG. 5, the back plate 150 is inclined to have a width reduced from the top to the bottom. The protruded portion may be pressed in the back plate to closely fix the metal PCB to the back plate.

(16) Furthermore, the back plate 150 includes a latching ring 155 of a ring shape so that an elastic support plate 111a provided in the protruded portion 111 is fixed to the latching ring 155.

(17) Thereafter, the metal PCB 110 is equipped with an exploded groove 118 which has one surface connected to the base 112 and is open or shut in the periphery of the base when the mounting portion is formed.

(18) Furthermore, as in FIG. 6, in the metal PCB 110, the at least one protruded portion may be bent in the form of a latching ring 111b so that a fixed jaw 157 provided in the back plate is coupled to the latching ring 111b.

(19) Furthermore, the back plate 150 may have a configuration integrated with a latching hook 159 having an inclined surface S at the top so that the protruded portion is pressed in the latching hook 159 and fixed thereto.

(20) Although the embodiments of the present invention have been described in detail, the range of right of the present invention is not limited thereto, and a person having ordinary skill in the art will evidently understand that the present invention may be changed and modified in various ways without departing from the technical spirit of the present invention written in the claims.

(21) [Mode for Invention]

(22) An operation of the present invention having such a configuration is described.

(23) As shown in FIGS. 2 to 9, the headlight module of the present invention has the assembly structure the metal PCB 110 and the back plate 150.

(24) Furthermore, the metal PCB 110 is formed of a thin plate which is a thermal conductor and can be bent so that it can be easily bent in various directions.

(25) In addition, the metal PCB 110 solves a reduction of the volume attributable to a reduction in the thickness through the at least one protruded portion 111 that increases a surface area on both sides, thereby enabling an implementation of a required heat-dissipation effect.

(26) In this case, the metal PCB is easily coupled to the back plate 150 through the protruded portion 111 protruded for heat dissipation and a connection task.

(27) Furthermore, the back plate 150 is integrated with the support surface 151 having a stepped or inclined shape at the top for the contact coupling of the metal PCB, and is integrated with the mounting portion 153 mounted in according to the lamp housing at the bottom. Accordingly, when the back plate is mounted on a lamp housing, a light source can be radiated in various directions. An LED chip (not shown) is mounted on the mounting portion.

(28) In addition, in the metal PCB 110, the plurality of chip mounting parts 114 is provided in the base 112 so that the LED chips are integrated and mounted on the chip mounting parts, respectively.

(29) In this case, as in FIGS. 3 and 4, in the metal PCB 110, the plurality of chip mounting parts 114 is disposed in parallel or in the same direction by relative bending between the base 112 and the chip mounting parts 114 so that the mounting portion is directed in a required direction.

(30) Furthermore, the metal PCB is made of aluminum or copper and formed of a thin plate. Accordingly, the metal PCB is easily bent without damage to the thin plate.

(31) In this case, the protruded portions 111 are disposed at the same interval in the length direction of the metal PCB in the width direction to maintain a generally uniform coupling force.

(32) Thereafter, the back plate 150 is formed in accordance with the base or the mounting portion and is integrated with the plurality of contact support jaws 158 at the top in such a way as to correspond to the inclination of the mounting portion. Accordingly, when the metal PCB is mounted on the back plate, the mounting portion maintains an accurate tilt.

(33) In addition, the back plate 150 is inclined to have a width reduced from the top to the bottom. When the protruded portion is bent and closely attached to the back plate, the metal PCB is closely fixed to the back plate.

(34) Furthermore, as in FIG. 9, the back plate 150 is equipped with the latching ring 115 of a ring shape so that the elastic support plate 111a provided in the protruded portion 111 is firmly fixed when the elastic support plate enters the latching ring 115 in a narrowed state and extends when it is pressed from the upper side.

(35) Thereafter, the metal PCB 110 is equipped with the exploded groove 118 which has one surface connected to the base 111 and open or shut in its periphery when the mounting portion is formed, thereby enabling the tilt of the mounting portion to be easily adjusted.

(36) Furthermore, as in FIGS. 6 and 7, in the metal PCB 110, the at least one protruded portion is bent in the form of the latching ring 111b and the fixed jaw 157 provided in the back plate is coupled to the at least one protruded portion. Accordingly, the at least one protruded portion is coupled to the back plate by an operation of pressing the metal PCB from the top.

(37) Furthermore, the back plate 150 is integrated with the latching hook 159 having the inclined surface S at the top so that the protruded portion is pressed and fixed thereto on the upper side.

(38) That is, as described above, the present invention provides the configuration in which the protruded portion is fabricated in various shapes so that the protruded portion is coupled to the back plate without a separate tool. Accordingly, the coupling task of the metal PCB and the back plate can be rapidly performed.

INDUSTRIAL APPLICABILITY

(39) The present invention relates to a headlight module having a thin plate type metal PCB, wherein the headlight module has the assembly structure of a metal PCB formed of a thin plate which is a thermal conductor and capable of being bent in various directions and including at least one protruded portion increasing a surface area on both sides, and a back plate coupled to the metal PCB through the protruded portion.