LIGHT-EMITTING APPARATUS AND MANUFACTURING METHOD THEREOF
20170229616 ยท 2017-08-10
Inventors
Cpc classification
H10H20/857
ELECTRICITY
H10H20/854
ELECTRICITY
H01L2924/00
ELECTRICITY
H01L24/97
ELECTRICITY
H01L2924/00
ELECTRICITY
H01L25/167
ELECTRICITY
International classification
H01L25/16
ELECTRICITY
Abstract
A light-emitting apparatus includes a light-emitting, a first lead, a second lead, and a resin molded body configured to support the first lead and the second lead. The main surfaces of the first and second leads includes first and second coverage areas covered by the resin molded body and first and second exposure regions exposed from the resin molded body at a window portion of the resin molded body, respectively. First and second metal layers are provided to cover main surfaces of the first and second leads at first and second exposure regions, respectively.
Claims
1-22. (canceled)
23. A light emitting device (LED) package comprising: a light emitting element; a first electrode having a main surface and a rear surface facing away from the main surface of the first electrode, and electrically connected to the light emitting element, the light emitting element mounted on the main surface side of the first electrode; a second electrode having a main surface and a rear surface facing away from the main surface of the second electrode, and electrically connected to the light emitting element; a light transmitting member covering the light emitting element, and transmitting light from the light emitting element; and a resin portion holding and supporting the first electrode and the second electrode, wherein the main surface of the first electrode has a first covered region covered with the resin portion and a first exposed region exposed from the resin portion, wherein the main surface of the second electrode has a second covered region covered with the resin portion and a second exposed region exposed from the resin portion, wherein the first exposed region has a protruding portion protruding toward the second electrode in the first exposed region, wherein the second exposed region has a concave portion corresponding to the protruding portion in the second exposed region, wherein the main surface of the first electrode is in contact with the resin portion in the first covering region, and wherein the main surface of the second electrode is in contact with the resin portion in the second covering region.
24. The LED package of claim 23, wherein a rear surface of the concave portion is exposed from the resin portion.
25. The LED package of claim 23, wherein the light emitting element is mounted on the protruding portion.
26. The LED package of claim 23, further comprising a Zener diode connected to the second electrode for preventing an excessive reverse voltage from being applied to the light emitting element mounted on the main surface of the first electrode.
27. The LED package of claim 23, further comprising a Zener diode formed on the main surface of the first electrode other than the protruding portion, wherein a distance from a deepest portion of the concave portion of the second electrode to the Zener diode is farther than a distance from the light emitting element to the Zener diode.
28. The LED package of claim 23, wherein the protruding portion has a first side and a second side, and each of the first side and the second side is formed away from the concave portion of the second electrode.
29. The LED package of claim 23, further comprising a first wire electrically connecting the second electrode and the light emitting element.
30. The LED package of claim 23, further comprising: a Zener diode formed on the main surface of the first electrode; and a second wire connecting the Zener diode and the second electrode.
31. The LED package of claim 23, wherein the first electrode further includes a third exposed region exposed from the resin portion, and the third exposed region extends from an outer surface of the resin portion away from the first covered region.
32. The LED package of claim 31, wherein the third exposed region wraps around a portion of the resin portion covering the rear surface of the first electrode to reach a position lower than a position of a rear surface of the resin portion.
33. The LED package of claim 23, wherein the second electrode further includes a fourth exposed region exposed from the resin portion, and the fourth exposed region extends from an outer surface of the resin portion away from the second covered region.
34. The LED package of claim 31, wherein the fourth exposed region wraps around a portion of the resin portion covering the rear surface of the second electrode to reach a position lower than a position of a rear surface of the resin portion.
35. The LED package of claim 23, wherein the second electrode has a U-shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
DETAILED DESCRIPTION
[0042] Reference will now be made in detail to various embodiments, examples of which are illustrated in the accompanying drawings. In the following detailed description, numerous specific details are set forth in order to provide a thorough understanding of the present invention(s). However, it will be apparent to one of ordinary skill in the art that the present invention(s) may be practiced without these specific details. In other instances, well-known methods, procedures, systems, and components have not been described in detail so as not to unnecessarily obscure aspects of the various embodiments.
[0043] Hereinafter, a preferred embodiment of the present disclosure will be described in detail with reference to the drawings.
[0044]
[0045] Portions of the first lead 11 protrude from the left side of the resin molded body 5 as shown in
[0046] The first lead 11, for example, made of copper is formed approximately in the shape of an elongated plate which extends in the x-direction. The first lead 11 includes protruding portions 11a which protrude from the left end of the resin molded body 5 as shown in
[0047] The main surface 111 includes a first coverage region 111a covered by the resin molded body 5 and a first exposure region 111b exposed from the resin molded body 5 through the window portion 51 as shown in
[0048] The first metal layer 21 is formed so as to cover the first exposure region 111b of the main surface 111. The first metal layer 21, for example, made of silver is laminated on the first exposure region 111b. As shown in
[0049] The second lead 12, made of silver, may be formed in the shape of the elongated plate which extends in the y-direction. The length along the y-direction of the second lead 12 is the same as the y-direction dimension of the first lead 11, and the x-direction dimension of the second lead 12 is shorter than the x-direction dimension of the first lead 11. The second lead 12 is disposed so as to be separated from the first lead 11 in the x-direction. More specifically, the second lead 12 is disposed on the right side of the first lead 11, as shown in
[0050] As illustrated in
[0051] The second metal layer 22 is formed so as to cover the second exposure region 121b of the main surface 121. The second metal layer 22, for example, formed of silver is laminated on the second exposure region 121b. An upper surface of the second metal layer 22 is in contact with the light-transmitting member 6, as shown in
[0052] For example, the light-emitting element 3 is a light-emitting diode (LED) element having a structure in which an n-type semiconductor layer formed of GaN, an active layer and a p-type semiconductor layer are laminated. The light-emitting element 3 emits blue light, for example. The light-emitting element 3 is of rectangular shape and includes a first electrode terminal 31 and a second electrode terminal 32 on an upper surface of the light-emitting element 3 as shown in
[0053] The first electrode terminal 31 is electrically connected with the first metal layer 21 through the first wire 41, and the second electrode terminal 32 is electrically connected with the second metal layer 22 through a second wire 42. Therefore, the first electrode terminal 31 is electrically connected to the first lead 11 through the first wire 41 and the first metal layer 21, and the second electrode terminal 32 is electrically connected to the second lead 12 through the second wire 42 and the second metal layer 22. Given such configuration, the first electrode terminal 31 and the second electrode terminal 32 may be powered by mounting the rear surface 112 of the first lead 11 and the rear surface 122 of the second lead 12 on the electronic circuit (not shown). Thus, the light-emitting element 3 may emit light.
[0054] A portion of the light emitted from the light-emitting element 3 is reflected upward in the z-direction of
[0055] The Zener diode 33 is provided on the first metal layer 21 to prevent excessive reverse voltage from being applied to the light-emitting element 3, as shown in
[0056] The first wire 41, the second wire 42, and the third wire 43 are, for example, gold wires.
[0057] The resin molded body 5 is formed of, for example, white thermoset resin. The thermoset resin may include unsaturated polyester resin. As shown in
[0058] The resin molded body 5 may be white, for example, by mixing a titanium oxide pigment into the unsaturated polyester resin.
[0059] The light-transmitting member 6 is formed so as to cover the light-emitting element 3. The light-transmitting member 6 is made of a material that transmits light from the light-emitting element 3. As shown in
[0060] Next, a manufacturing method of the light-emitting apparatus A1 will be described with reference to
[0061]
[0062] In manufacturing the light-emitting apparatus A1, the above-described process of forming the lead frame 10 is performed first, and then a process of forming a resin molded body 50 covering a portion of the lead frame 10 is performed. The process of forming the resin molded body 50 includes a process of performing an injection molding of the thermoset resin.
[0063] The process of performing the injection molding of the thermoset resin is carried out, for example, using an injection molding apparatus 70 whose main part is shown briefly in
[0064] The resin material supplied to the injection nozzle 74 may be the thermoset resin, more specifically, the unsaturated polyester resin in this process. The lead frame 10 is provided on the metallic pattern 76 and is sandwitched between the metallic pattern 76 and the metallic pattern 77 by pressing the movable portion 73 downward. The metallic pattern 76 includes, for example, a flat bottom surface, and the lead frame 10 is provided on the metallic pattern 76 so that a rear surface of the lead frame 10 may be in contact with the bottom surface. The metallic pattern 77 is formed to have unevenness and a plurality of convex portions which are brought into contact with the main surface of the lead frame 10 when the metallic pattern 76 and the metallic pattern 77 are put together by pressing the movable portion 73 downward. Using these metallic patterns 76 and 77, the resin molded body 50 may be formed so as to include a plurality of window portions 51 exposing a portion of the main surface of the lead frame 10.
[0065] As shown in
[0066] As shown in
[0067] After the resin molded body 50 is formed, a process of eliminating burrs is performed, and then a process of forming a metal layer is performed.
[0068] The process of forming a metal layer is carried out, for example, by performing silver plating on the lead frame 10. The metal layer is not formed on the region covered with the resin molded body 50. In addition, even in the portion exposed from the resin molded body 50, the plating may be selectively performed on a required region by covering the portion of which the metal layer is not required with resins or the like in advance.
[0069] As shown in
[0070] After the metal layer is formed, a process of providing a plurality of light-emitting elements 3 on the lead frame 10 is performed. Each light-emitting element 3 is provided on a corresponding portion of the first island portions 13 in this process. More specifically, one light-emitting element 3 is provided on the region 131b exposed from the window portion 51 of each first island portion 13. Since the first metal layer 21 is formed on the region 131b in the previous process, a silver paste is provided on a predetermined position of the first metal layer 21, and the light-emitting element 3 is introduced on the silver paste in this process. In addition, the Zener diode 33 is also provided in this process.
[0071] Further, a process of forming the first wire 41, the second wire 42, and the third wire 43 is followed. In this process, a wire bonding is performed for each of a plurality of light-emitting elements 3 and a plurality of Zener diodes 33.
[0072] After the first wire 41, the second wire 42, and the third wire 43 are provided, a process of filling each of a plurality of window portions 51 with light-transmitting resin is performed. The liquid light-transmitting resin used in this process is cured to become the light-transmitting member 6. After this process, a process of cutting the connecting portion 15 of the lead frame 10 to remove unnecessary portions of the resin molded body 50 is performed. In this process, each of the plurality of first island portions 13 becomes the first lead 11, and each of the plurality of second island portions 14 becomes the second lead 12. Further, the resin molded body 50 is divided into a plurality of resin molded bodies 5. In addition, remaining portions after cutting the connecting portion 15 become protruding portions 11a and 12a.
[0073] As described above, a plurality of light-emitting devices A1 can be manufactured at once.
[0074] Subsequently, effects of the light-emitting apparatus A1 and the manufacturing method thereof will be described.
[0075] Most of the region of the first lead 11 and the second lead 12 exposed from the window portion 51 is covered by the first metal layer 21 and the second metal layer 22 in the light-emitting apparatus A1. The first metal layer 21 and the second metal layer 22 are made of silver, which is an excellent medium for the light reflectance and the thermal conductivity compared with the first lead 11 and the second lead 12 made of copper. Therefore, the light-emitting apparatus A1 has a high efficiency of emitting light and ability to dissipate heat emitted from the light-emitting element 3 more quickly, as compared with the case in which the first metal layer 21 and the second metal layer 22 are not provided on the first lead 11 and the second lead 12.
[0076] According to the manufacturing method as described above, the first metal layer 21 and the second metal layer 22 are formed after forming the resin molded body 50 and removing burr. Therefore, the first metal layer 21 and the second metal layer 22 may be obtained in better condition, without being damaged by the process for removing burrs. Accordingly, the light-emitting apparatus A1 can be improved in its performance by performing the silver plating while using the lead frame 10 made of copper which is easy to process and inexpensive.
[0077] Further, in the above-described manufacturing method, when the lead frame 10 in the shape of the continuous hoop is used, it is possible to produce a plurality of light-emitting apparatuses A1 at once. Therefore, according to the above-described manufacturing method, it is possible to reduce manufacturing cost of the light-emitting apparatus A1 by performing mass production.
[0078] The metallic patterns 76 and 77 which fit the lead frame 10 in the shape of the continuous hoop are relatively large. In case of pouring the resin material added with the curing agent into the large metallic patterns 76 and 77, the resin material may start to cure in the course of pouring the resin material. Therefore, it is necessary to pour the resin material into the metallic patterns 76 and 77 as soon as possible. The injection molding of the thermoset resin is performed in the above-described method of manufacturing the light-emitting apparatus A1, and the injection molding is suitable for pouring the resin material as soon as possible when using the large metallic patterns 76 and 77.
[0079]
[0080]
[0081] In the second embodiment, the rear surface 112 of the first lead 11 is covered by a metal layer 23. In addition, an upper surface in the z-direction of the protruding portion 11a is covered by a metal layer 25, as shown in
[0082] The rear surface 122 of the second lead 12 is covered by a metal layer 24. In addition, an upper surface in the z-direction of the protruding portion 12a is covered by a metal layer 26, as shown in
[0083] A resin coating film with which the first island portion 13, the second island portion 14 and the connecting portion 15 are masked in the plating process of the manufacturing method of the light-emitting apparatus A1 shown in
[0084] According to this embodiment, it is also possible to have the high efficiency of light extraction to the outside and dissipate the heat emitted from the light-emitting element 3 more quickly.
[0085]
[0086] The resin molded body 5 includes a portion covering the rear surface 112 of the first lead 11 and the rear surface 122 of the second lead 12 in the third embodiment. The portion of the resin molded body 5 covering the rear surfaces 112 and 122 has a length approximately equal to that of the window portion 51 in the z-direction dimension and its central portion in the x-direction slightly bulges downward in the z-direction.
[0087] In the third embodiment, the protruding portions 11a and 12a extend from side surfaces of the resin molded body 5, and then bent downward in the z-direction, and further bent inward in the x-direction, as shown in
[0088] The metal layers 23, 25, and 27 are laminated on the protruding portion 11a. The metal layer 23 covers a portion of the protruding portion 11a connected to the rear surface 112. The metal layer 25 covers a portion of the protruding portion 11a connected to the main surface 111. The metal layer 27 covers an inner surface of the above-described opening of the protruding portion 11a. On the other hand, an end surface of the protruding portion 11a is not covered by the metal layer.
[0089] The metal layers 24, 26, and 28 are laminated on the protruding portion 12a. The metal layer 24 covers a portion of the protruding portion 12a connected to the rear surface 122. The metal layer 26 covers a portion of the protruding portion 12a connected to the main surface 121. The metal layer 28 covers an inner surface of the above-described opening of the projecting portion 12a. On the other hand, an end surface of the protruding portion 12a is not covered by the metal layer.
[0090] According to this embodiment, it is also possible to have the high efficiency of light extraction to the outside and dissipate the heat emitted from the light-emitting element 3 more quickly.
[0091] The light-emitting apparatus according to the present disclosure is not limited to the embodiments described above. Various design changes may be made to the specific configuration of the light-emitting apparatus according to the present disclosure.
[0092] The above-described light-emitting apparatus A1 is a so-called two-wire type apparatus, but one-wire type apparatus or another type of apparatus where the light-emitting element 3 is flip-chip mounted may also be used.
[0093] The unsaturated polyester resin is illustrated as an example of the thermoset resin for forming the resin molded body 5 in the above-described light-emitting apparatus A1, but the thermoset resin is not limited thereto. For example, the resin molded body 5 may be formed of epoxy resin. Further, the thermoset resin for forming the resin molded body 5 may include silicon resin.
[0094] While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the embodiments herein may be embodied in a variety of other forms. Furthermore, various omissions, substitutions and changes in the form of the embodiments described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications which would fall within the scope and spirit of the inventions.