Optoelectronic component and method for producing same
US-12176444-B2 · Dec 24, 2024 · US
US2020194635A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020194635-A1 |
| Application number | US-202016799017-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 24, 2020 |
| Priority date | May 31, 2017 |
| Publication date | Jun 18, 2020 |
| Grant date | — |
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A method of manufacturing a light-emitting device includes steps of: preparing at least one first member each including (i) a light-transmissive member having a top surface, a bottom surface, and a lateral surface contiguous with the top surface and the bottom surface, (ii) a phosphor layer disposed below the bottom surface, and (iii) a cover layer disposed on a lateral surface of the phosphor layer and the lateral surface of the light-transmissive member; and, for each of the at least one first member, mounting a light-emitting element on a base having a fat plate shape, bonding the light-emitting element and the phosphor layer of the first member together, placing a frame body on the base so as to surround the light-emitting element, and filling a light-reflective member in the frame body so that the light-reflective member covers at least a portion of the cover layer of the first member.
Opening claim text (preview).
What is claimed is: 1 . A method of manufacturing a light-emitting device, the method comprising steps of: preparing at least one first member each comprising (i) a light-transmissive member having a top surface, a bottom surface opposite the top surface, and a lateral surface contiguous with the top surface and the bottom surface, (ii) a phosphor layer disposed below the bottom surface of the light-transmissive member, and (iii) a cover layer disposed on a lateral surface of the phosphor layer and the lateral surface of the light-transmissive member; and, for each of the at least one first member, providing a base having a flat plate shape, mounting a light-emitting element on the base, bonding the light-emitting element and the phosphor layer of the first member together, placing a frame body on the base so as to surround the light-emitting element, and filling a light-reflective member in the frame body so that the light-reflective member covers at least a portion of the cover layer of the first member. 2 . The method of claim 1 , wherein in the bonding step, the light-emitting element and the phosphor layer of each of the at least one first member are bonded via a bonding member made of a material that is same as a matrix material of the phosphor layer. 3 . The method of claim 1 , wherein in the step of filling the light-reflective member in the frame body, the light-reflective member is filled so that the light-reflective member further covers at least a portion of a lateral surface of the light emitting element. 4 . The method of claim 1 , wherein the step of preparing the at least one first member comprises steps of: forming a dielectric multilayer film on an initial light-transmissive layer; forming an initial phosphor layer on the dielectric multilayer film; dividing the initial light-transmissive layer, the dielectric multilayer film, the initial phosphor layer together into first intermediate workpieces; placing the first intermediate workpieces on a thermal release sheet at predetermined intervals with the initial phosphor layer located at the lowermost portion of the first intermediate workpieces; filling an initial cover layer between the first intermediate workpieces on the thermal release sheet; dividing the initial cover layer so as to produce second intermediate workpieces each including one of the first intermediate workpieces and at least a portion of the initial cover layer and serving as one of the at least one first member, wherein the initial light-transmissive layer in the one of the first intermediate workpieces serves as the light-transmissive member of the one of the at least one first member, the initial phosphor layer in the one of the first intermediate workpieces serves as the phosphor layer of the one of the at least one first member, and the at least a portion of the initial cover layer serves as the cover layer of the one of the at least one first member; and separating the second intermediate workpieces from the thermal release sheet as the at least one first member. 5 . The method of claim 4 , wherein the step of forming the initial phosphor layer is performed by screen printing. 6 . A method of manufacturing a light-emitting device, the method comprising steps of: preparing at least one second member each comprising (i) a light-transmissive member having a top surface, a bottom surface opposite the top surface, and a lateral surface contiguous with the top surface and the bottom surface, (ii) a phosphor layer disposed below the bottom surface of the light-transmissive member, (iii) a cover layer disposed on a lateral surface of the phosphor layer and the lateral surface of the light-transmissive member, and (iv) a light-emitting element disposed below the phosphor layer; and, for each of the at least one second member, providing a base having a flat plate shape, mounting the light-emitting element of the second member on the base, placing a frame body on the base so as to surround the light-emitting element, and filling a light-reflective member in the frame body so that the light-reflective member covers at least a portion of the cover layer of the second member. 7 . The method of claim 6 , wherein in the step of filling the light-reflective member in the frame body, the light-reflective member is filled so that the light-reflective member further covers at least a portion of a lateral surface of the light emitting element. 8 . The method of claim 6 , wherein the step of preparing the at least one second member comprises steps of: forming a dielectric multilayer film on an initial light-transmissive layer; forming an initial phosphor layer on the dielectric multilayer film; dividing the initial light-transmissive layer, the dielectric multilayer film, the initial phosphor layer together into first intermediate workpieces; placing the first intermediate workpieces on a thermal release sheet at predetermined intervals with the initial light-transmissive layer located at the lowermost portion of the first intermediate workpieces; filling an initial cover layer between the first intermediate workpieces on the thermal release sheet; mounting a light-emitting element on the initial phosphor layer of each of the first intermediate workpieces; dividing the initial cover layer so as to produce second intermediate workpieces each including one of the first intermediate workpieces, the light-emitting element mounted on the one of the first intermediate workpieces, and at least a portion of the initial cover layer and serving as one of the at least one second member, wherein the initial light-transmissive layer in the one of the first intermediate workpieces serves as the light-transmissive member of the one of the at least one second member, the initial phosphor layer in the one of the first intermediate workpieces serves as the phosphor layer of the one of the at least one second member, the light-emitting element mounted on the one of the first intermediate workpieces serves as the light-emitting element of the one of the at least one second member, and the at least a portion of the initial cover layer serves as the cover layer of the one of the at least one second member; and separating the second intermediate workpieces from the thermal release sheet as the at least one second member. 9 . The method of claim 8 , wherein the step of forming the initial phosphor layer is performed by screen printing. 10 . The method of claim 8 , wherein in the step of mounting the light-emitting element on the initial phosphor layer of each of the first intermediate workpieces, the light-emitting element and the initial phosphor layer of each of the first intermediate workpieces are bonded via a bonding member made of a material that is same as a matrix material of the initial phosphor layer. 11 . A method of manufacturing a light-emitting device, the method comprising steps of: preparing at least one third member each comprising (i) a light-transmissive member having a top surface, a bottom surface opposite the top surface, and a lateral surface contiguous with the top surface and the bottom surface, (ii) a phosphor layer disposed above the top surface of the light-transmissive member, (iii) a cover layer disposed on a lateral surface of the phosphor layer and the lateral surface of the light-transmissive member, and (iv) a light-emitting element disposed below the light-transmissive member; and, for each of the at least one third member, providing a base having a flat plate shape, mounting the light-emitting element of the third member on the base, placing a frame body on the base so as to surround the light-e
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