JP2011028991A - Light source device and display device having the same - Google Patents

Light source device and display device having the same Download PDF

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JP2011028991A
JP2011028991A JP2009173410A JP2009173410A JP2011028991A JP 2011028991 A JP2011028991 A JP 2011028991A JP 2009173410 A JP2009173410 A JP 2009173410A JP 2009173410 A JP2009173410 A JP 2009173410A JP 2011028991 A JP2011028991 A JP 2011028991A
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source device
light source
light
reflection
emitting diode
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Hidehito Takeuchi
秀仁 竹内
Koji Kikuchi
孝治 菊池
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Sharp Corp
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Sharp Corp
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<P>PROBLEM TO BE SOLVED: To provide a light source device capable of raising light reflectivity around a lens and attaining uniformity of luminance, and a display device having the light source device. <P>SOLUTION: The light source device has a light-emitting diode base board 2 wherein light-emitting diodes 1 are mounted on one surface, lenses 4 mounted on one surface of the base board 2 and diffusing light emitted from the light-emitting diodes 1, and reflection sheets 5, 6 having through-holes 51, 61 where the lenses 4 are arranged inside and reflecting the light by facing to one surface of the base board 2. The through-holes 51, 61 of the reflection sheets 5, 6 have large hole sections 51a, 61a and small hole sections 51b, 61b ranging to the large hole sections 51a, 61a, and two reflection sheets are laminated so as to enable to relatively move along the light-emitting diode base board 2. <P>COPYRIGHT: (C)2011,JPO&INPIT

Description

本発明は発光ダイオードが実装されている回路基板を備える光源装置及びこの光源装置を備える表示装置に関する。   The present invention relates to a light source device including a circuit board on which a light emitting diode is mounted, and a display device including the light source device.

テレビジョン等の表示装置は、画像を表示する表示面を前側に有する表示部の後側に光源装置が配されている。   In a display device such as a television, a light source device is disposed on the rear side of a display unit having a display surface for displaying an image on the front side.

光源装置は、例えば発光ダイオードを収容し、該発光ダイオードが出射した光を拡散させる半球形の樹脂ホルダと、該樹脂ホルダの複数が並置される配線基板と、該配線基板を収容支持する溝を有し、離隔して配置される複数のアレイベースと、該アレイベースを収容して支持するケース体と、各樹脂ホルダが挿通される貫通孔を有し、前記アレイベース上に載置される反射シートとを備える(例えば、特許文献1参照。)。   The light source device includes, for example, a light emitting diode, a hemispherical resin holder that diffuses light emitted from the light emitting diode, a wiring board on which a plurality of the resin holders are juxtaposed, and a groove that houses and supports the wiring board. A plurality of array bases that are spaced apart from each other, a case body that accommodates and supports the array bases, and a through-hole through which each resin holder is inserted, and is placed on the array base A reflection sheet (see, for example, Patent Document 1).

前記樹脂ホルダは半球形をなし、反射シートの貫通孔は前記樹脂ホルダよりも大径であり、樹脂ホルダの周面及び貫通孔の間に、樹脂ホルダが貫通孔に嵌まり易くするための比較的大きい環状の隙間が設けられており、この隙間から配線基板の表面が露出する。配線基板の表面は光反射性が低いため、配線基板の表面に白色ソルダーレジストが塗布され、前記隙間での光反射性を高めてある。   The resin holder has a hemispherical shape, and the through hole of the reflection sheet has a larger diameter than the resin holder, and the comparison is made so that the resin holder can easily fit into the through hole between the peripheral surface of the resin holder and the through hole. A large annular gap is provided, and the surface of the wiring board is exposed from this gap. Since the surface of the wiring board has low light reflectivity, a white solder resist is applied to the surface of the wiring board to enhance the light reflectivity in the gap.

特開2008−147147号公報JP 2008-147147 A

しかし、特許文献1のように配線基板の表面に塗布される白色ソルダーレジストの光反射性は、反射シートの光反射性よりも劣るため、樹脂ホルダ周りの輝度が、反射シートにて反射する部分の輝度よりも悪くなり、輝度の均一化が図り難いという問題がある。   However, since the light reflectivity of the white solder resist applied to the surface of the wiring board is inferior to the light reflectivity of the reflection sheet as in Patent Document 1, the brightness around the resin holder is reflected by the reflection sheet. There is a problem that it is difficult to achieve uniform luminance.

本発明は斯かる事情に鑑みてなされたものであり、主たる目的はレンズ周りの光反射性を高めることができ、輝度の均一化を図ることができる光源装置及び表示装置を提供することにある。   The present invention has been made in view of such circumstances, and a main object thereof is to provide a light source device and a display device that can improve the light reflectivity around the lens and can achieve uniform luminance. .

本発明に係る光源装置は、一面に発光ダイオードが実装されている回路基板と、前記一面に取付けられ、前記発光ダイオードが発射した光を拡散させるレンズと、該レンズがその内部に配される貫通孔を有し、前記一面に対向して前記光を反射させる反射シートとを備える光源装置において、前記反射シートは、前記回路基板に沿って相対移動を可能に複数枚が積層されていることを特徴とする。   A light source device according to the present invention includes a circuit board on which a light emitting diode is mounted on one surface, a lens attached to the one surface for diffusing light emitted from the light emitting diode, and a through hole in which the lens is disposed. A light source device having a hole and a reflection sheet that reflects the light facing the one surface, the reflection sheet being stacked in a plurality of layers so as to be relatively movable along the circuit board; Features.

この発明にあっては、レンズに対応する貫通孔にて反射シートを容易に積層配置することができ、この反射シートを回路基板に沿って相対移動させることにより、レンズ周面と貫通孔との間の隙間量を、反射シートの貫通孔周縁部にて低減することができ、レンズ周りの光反射性を高めることができ、輝度の均一化を図ることができる。   In the present invention, the reflective sheet can be easily stacked and disposed in the through hole corresponding to the lens, and by moving the reflective sheet relative to the circuit board, the lens peripheral surface and the through hole are arranged. The amount of the gap between them can be reduced at the periphery of the through hole of the reflection sheet, the light reflectivity around the lens can be increased, and the luminance can be made uniform.

また、本発明に係る光源装置は、少なくとも1枚の前記反射シートの前記貫通孔は、大孔部及び該大孔部に連なる小孔部を有する構成とするのが好ましい。
この発明にあっては、貫通孔の大孔部にレンズが嵌まる状態にして反射シートを積層配置した後、反射シートを回路基板に沿って相対移動させることにより、レンズ周面と貫通孔との間の隙間量を反射シートの小孔部にて低減することができ、レンズ周りの光反射性をより一層高めることができ、輝度の均一化をより一層図ることができる。
In the light source device according to the present invention, it is preferable that the through hole of at least one of the reflection sheets has a large hole portion and a small hole portion connected to the large hole portion.
In this invention, the lens is fitted in the large hole portion of the through hole, the reflective sheet is laminated and disposed, and then the reflective sheet is relatively moved along the circuit board, whereby the lens peripheral surface and the through hole are arranged. It is possible to reduce the amount of the gap between the small holes in the reflection sheet, further improve the light reflectivity around the lens, and further achieve uniform luminance.

また、本発明に係る光源装置は、前記レンズは、前記回路基板へ向く位置決め突起を有し、少なくとも1枚の前記反射シートの前記貫通孔は、半円孔部及び該半円孔部に連なり、その孔縁が前記位置決め突起の周面と対向する非円孔部を有する構成とするのが好ましい。
この発明にあっては、位置決め突起にてレンズの透光部を回路基板から離隔させることができるため、貫通孔の半円孔部に透光部が嵌まる状態にして反射シートを積層配置した後、反射シートを回路基板に沿って相対移動させることにより、非円孔部を前記透光部及び回路基板の間の空間に嵌め込むことができ、レンズ周面と貫通孔との間の隙間の一部を反射シートの非円孔部にてなくすることができ、レンズ周りの光反射性をより一層高めることができ、輝度の均一化をより一層図ることができる。
In the light source device according to the present invention, the lens has a positioning protrusion facing the circuit board, and the through hole of at least one of the reflection sheets is connected to the semicircular hole portion and the semicircular hole portion. It is preferable that the hole edge has a non-circular hole portion facing the peripheral surface of the positioning protrusion.
In this invention, since the translucent part of the lens can be separated from the circuit board by the positioning protrusion, the reflection sheet is laminated and disposed so that the translucent part fits into the semicircular hole part of the through hole. After that, by moving the reflection sheet along the circuit board, the non-circular hole part can be fitted into the space between the light transmitting part and the circuit board, and the gap between the lens peripheral surface and the through hole Can be eliminated by the non-circular hole portion of the reflection sheet, the light reflectivity around the lens can be further enhanced, and the luminance can be made more uniform.

また、本発明に係る光源装置は、前記反射シートの夫々は略四角形をなし、1枚の反射シートは、隣合う二つの辺に連なり、略L字形をなす第1枠片を有し、他の1枚の反射シートは、前記二つの辺に対応する二つの辺に連なり、前記第1枠片と対向して四角の枠部を形成するための第2枠片を有する構成とするのが好ましい。
この発明にあっては、略四角形をなす反射シート同士を積層することにより、第1枠片及び第2枠片により四角の枠部を形成することができるため、反射シートによる光反射性を枠部にてより一層高めることができるとともに、枠部に影響されることなく反射シートを相対移動させることができる。
Further, in the light source device according to the present invention, each of the reflection sheets has a substantially rectangular shape, and one reflection sheet has a first frame piece that is connected to two adjacent sides and has a substantially L-shape. The one reflection sheet is configured to have a second frame piece that is continuous with two sides corresponding to the two sides and that forms a square frame portion facing the first frame piece. preferable.
In this invention, since the rectangular frame portion can be formed by the first frame piece and the second frame piece by laminating the reflection sheets having a substantially rectangular shape, the light reflectivity by the reflection sheet is reduced by the frame. The reflection sheet can be further increased at the portion, and the reflection sheet can be relatively moved without being affected by the frame portion.

また、本発明に係る光源装置は、前記反射シートの夫々は略四角形をなし、1枚の反射シートは、三つの辺に連なり、略コ字形をなす第3枠片を有し、他の1枚の反射シートは、一つの辺に連なり、前記第3枠片と対向して四角の枠部を形成するための第4枠片を有する構成とするのが好ましい。
この発明にあっては、略四角形をなす反射シート同士を積層することにより、第3枠片及び第4枠片により四角の枠部を形成することができるため、反射シートによる光反射性を枠部にてより一層高めることができるとともに、枠部に影響されることなく反射シートを相対移動させることができる。
Further, in the light source device according to the present invention, each of the reflection sheets has a substantially rectangular shape, and one reflection sheet has a third frame piece that is connected to three sides and has a substantially U-shape. It is preferable that the reflection sheet has a fourth frame piece that is continuous with one side and that forms a square frame portion facing the third frame piece.
In this invention, since the rectangular frame portion can be formed by the third frame piece and the fourth frame piece by laminating the reflection sheets having a substantially rectangular shape, the light reflectivity by the reflection sheet is reduced by the frame. The reflection sheet can be further increased at the portion, and the reflection sheet can be relatively moved without being affected by the frame portion.

また、本発明に係る光源装置は、前記反射シートの周りに配され、前記光を反射させる反射枠体を備える構成とするのが好ましい。
この発明にあっては、積層された反射シートの周りに反射枠体が配されるため、反射シートによる光反射性を反射枠体にてより一層高めることができるとともに、反射枠体の保形性を高めることができ、また、反射枠体に影響されることなく反射シートを相対移動させることができる。
Moreover, it is preferable that the light source device according to the present invention includes a reflection frame that is arranged around the reflection sheet and reflects the light.
In this invention, since the reflective frame is arranged around the laminated reflective sheets, the light reflectivity by the reflective sheet can be further enhanced by the reflective frame, and the shape of the reflective frame is maintained. The reflection sheet can be relatively moved without being affected by the reflection frame.

また、本発明に係る表示装置は、一側に表示面を有する表示部と、該表示部の他側に前記発光ダイオードが前記一側へ向くように配された前述の光源装置とを備えることを特徴とする。
この発明にあっては、反射シートが回路基板に沿って相対移動を可能に積層されているため、回路基板の一面に取付けられているレンズに影響されることなく反射シートを配置することができるとともに、レンズ周りの隙間量を反射シートにて低減することができ、レンズ周りの光反射性を高めることができ、輝度の均一化を図ることができる。
The display device according to the present invention includes a display unit having a display surface on one side, and the above-described light source device arranged on the other side of the display unit so that the light-emitting diode faces the one side. It is characterized by.
In this invention, since the reflection sheet is laminated so as to be relatively movable along the circuit board, the reflection sheet can be arranged without being affected by a lens attached to one surface of the circuit board. In addition, the amount of gap around the lens can be reduced by the reflection sheet, the light reflectivity around the lens can be improved, and the luminance can be made uniform.

本発明によれば、レンズに対応する貫通孔にて反射シートを容易に積層配置することができ、この反射シートを回路基板に沿って相対移動させることにより、レンズ周面と貫通孔との間の隙間量を、反射シートの貫通孔周縁部にて低減することができ、レンズ周りの光反射性を高めることができ、輝度の均一化を図ることができる。   According to the present invention, it is possible to easily stack and arrange the reflective sheets in the through holes corresponding to the lenses, and by relatively moving the reflective sheets along the circuit board, between the lens peripheral surface and the through holes. Can be reduced at the periphery of the through hole of the reflection sheet, the light reflectivity around the lens can be increased, and the luminance can be made uniform.

本発明に係る光源装置を備える表示装置の構成を示す一部を拡大した断面図である。It is sectional drawing which expanded a part which shows the structure of a display apparatus provided with the light source device which concerns on this invention. 本発明に係る光源装置の要部の構成を示す分解斜視図である。It is a disassembled perspective view which shows the structure of the principal part of the light source device which concerns on this invention. レンズが取付けられている発光ダイオード基板の構成を示す斜視図である。It is a perspective view which shows the structure of the light emitting diode board | substrate with which the lens is attached. レンズが取付けられている発光ダイオード基板の構成を示す平面図である。It is a top view which shows the structure of the light emitting diode board | substrate with which the lens is attached. 本発明に係る光源装置が備える反射シートの構成を示す模式的平面図である。It is a typical top view which shows the structure of the reflective sheet with which the light source device which concerns on this invention is provided. 本発明に係る光源装置が備える反射シートの構成を示す分解した模式的平面図である。It is the decomposed | disassembled schematic top view which shows the structure of the reflective sheet with which the light source device which concerns on this invention is provided. 本発明に係る光源装置が備える反射シートの構成を示す一部を拡大した平面図である。It is the top view which expanded a part which shows the structure of the reflective sheet with which the light source device which concerns on this invention is provided. (a) は1枚の反射シートとレンズとの関係を示す平面図、(b) は2枚の反射シートとレンズとの関係を示す平面図である。(a) is a top view which shows the relationship between one reflective sheet and a lens, (b) is a top view which shows the relationship between two reflective sheets and a lens. 本発明に係る光源装置の要部の他の構成を示す拡大した平面図である。It is the expanded top view which shows the other structure of the principal part of the light source device which concerns on this invention. 本発明に係る光源装置の要部の他の構成を示す拡大した平面図である。It is the expanded top view which shows the other structure of the principal part of the light source device which concerns on this invention. 本発明に係る光源装置の要部の他の構成を示す拡大した平面図である。It is the expanded top view which shows the other structure of the principal part of the light source device which concerns on this invention. 本発明に係る光源装置が備える反射シートの他の構成を示す分解した模式的平面図である。It is the decomposed | disassembled schematic top view which shows the other structure of the reflective sheet with which the light source device which concerns on this invention is provided. 本発明に係る光源装置の要部の他の構成を示す分解した模式的平面図である。It is the decomposed | disassembled schematic top view which shows the other structure of the principal part of the light source device which concerns on this invention.

以下本発明をその実施の形態を示す図面に基づいて詳述する。
実施の形態1
図1は光源装置を備える表示装置の構成を示す一部を拡大した断面図、図2は要部の構成を示す分解斜視図、図3はレンズが取付けられている発光ダイオード基板の構成を示す斜視図、図4はレンズが取付けられている発光ダイオード基板の構成を示す平面図である。
Hereinafter, the present invention will be described in detail with reference to the drawings illustrating embodiments thereof.
Embodiment 1
FIG. 1 is a partially enlarged cross-sectional view showing the structure of a display device including a light source device, FIG. 2 is an exploded perspective view showing the structure of a main part, and FIG. 3 shows the structure of a light-emitting diode substrate to which a lens is attached. FIG. 4 is a perspective view and FIG. 4 is a plan view showing a configuration of a light emitting diode substrate to which a lens is attached.

図示した光源装置Aは、前側に表示面を有し、略直方体をなす表示部10を備える薄型の表示装置における前記表示部10の後側に装着されるもので、碁盤目のように並置される光源としての複数の発光ダイオード1と、該発光ダイオード1を一面2aに実装してあり、複数列に並置される複数の発光ダイオード基板2と、隣合う発光ダイオード基板2,2同士を接続してある複数のコネクタ3と、発光ダイオード基板2の一面2aに取付けられて発光ダイオード1の頂部と対向し、該発光ダイオード1が発光した光を拡散させる複数のレンズ4と、該レンズ4がその内部に配される貫通孔51,61を有し、前記一面2a及びコネクタ3の一面に対向してレンズ4が拡散した光を反射させる第1及び第2の反射シート5,6と、発光ダイオード基板2を複数列に並べて収容支持する支持ケース7とを備える。   The illustrated light source device A is mounted on the rear side of the display unit 10 in a thin display device having a display unit 10 having a substantially rectangular parallelepiped and has a display surface on the front side, and is juxtaposed like a grid. A plurality of light emitting diodes 1 as light sources, and the light emitting diodes 1 are mounted on one surface 2a, and a plurality of light emitting diode substrates 2 juxtaposed in a plurality of rows and adjacent light emitting diode substrates 2 and 2 are connected to each other. A plurality of connectors 3, a plurality of lenses 4 attached to one surface 2 a of the light-emitting diode substrate 2, facing the top of the light-emitting diode 1, and diffusing light emitted by the light-emitting diode 1, First and second reflecting sheets 5 and 6 that have through holes 51 and 61 disposed inside, reflect the light diffused by the lens 4 facing the one surface 2a and one surface of the connector 3, and a light emitting diode. And a support case 7 for accommodating supporting side by side de substrate 2 in a plurality of rows.

発光ダイオード基板2は図3、図4に示すように一面2aに回路部を有する短冊状をなし、略矩形をなす支持ケース7の一面7aに長さ方向及び幅方向に離隔して複数列に並置されている(図2参照)。発光ダイオード基板2夫々の一面2aには図3、図4に示すように複数の発光ダイオード1を長さ方向に離隔して実装してあり、一面2aの長さ方向両端部には接続部21,22が設けられている。   As shown in FIGS. 3 and 4, the light-emitting diode substrate 2 is formed in a strip shape having a circuit portion on one surface 2a. They are juxtaposed (see FIG. 2). As shown in FIGS. 3 and 4, a plurality of light emitting diodes 1 are mounted on one surface 2a of each light emitting diode substrate 2 so as to be separated from each other in the length direction, and connecting portions 21 are provided at both ends of the surface 2a in the length direction. , 22 are provided.

長さ方向一端が対向するように複数列に並置された発光ダイオード基板2において、各列の発光ダイオード基板2は、隣合う二つの接続部21,21同士がコネクタ3にて接続され、一方の発光ダイオード基板2の接続部22が、支持ケース7の後面に装着される電源回路基板に第2コネクタにて接続され、他方の発光ダイオード基板2の接続部22が、支持ケース7の後面に装着される制御回路基板に第3コネクタにて接続されている。   In the light emitting diode substrates 2 juxtaposed in a plurality of rows so that one ends in the length direction are opposed to each other, the light emitting diode substrates 2 in each row are connected to each other by two connectors 21 and 21 through a connector 3. The connection portion 22 of the light emitting diode substrate 2 is connected to the power circuit board mounted on the rear surface of the support case 7 by the second connector, and the connection portion 22 of the other light emitting diode substrate 2 is mounted on the rear surface of the support case 7. Connected to the control circuit board by a third connector.

発光ダイオード1は図2に示すように発光ダイオード基板2の長さ方向に離隔して例えば5個、又は6個実装されており、発光ダイオード1夫々に対応して5個、又は6個のレンズ4が接着剤にて一面2aに取付けられている。   As shown in FIG. 2, for example, 5 or 6 light emitting diodes 1 are mounted separately in the length direction of the light emitting diode substrate 2, and 5 or 6 lenses corresponding to each of the light emitting diodes 1. 4 is attached to one surface 2a with an adhesive.

レンズ4は、発光ダイオード1の頂部と離隔して対向し、該発光ダイオード1が発光した光を四方に拡散させるための半球状凹部を有する透光部41と、該透光部41の一面2aと対向する面から発光ダイオード基板2へ向けて突出し、前記透光部41の発光ダイオード基板2に対する位置を決める三つの位置決め突起42とを有し、該位置決め突起42の先端が一面2aに接着剤にて取付けられている。前記位置決め突起42は、前記透光部41と発光ダイオード基板2との間の距離を、反射シート5,6の厚さよりも若干長くし、反射シート5,6の発光ダイオード基板2に沿う方向への相対移動を可能にしてある。   The lens 4 is spaced apart from the top of the light emitting diode 1 and has a translucent part 41 having a hemispherical recess for diffusing light emitted by the light emitting diode 1 in all directions, and one surface 2a of the translucent part 41. Projecting toward the light emitting diode substrate 2 and having three positioning projections 42 for determining the position of the translucent portion 41 with respect to the light emitting diode substrate 2, and the tip of the positioning projection 42 is attached to the one surface 2a with an adhesive. It is attached with. The positioning protrusion 42 makes the distance between the light transmitting portion 41 and the light emitting diode substrate 2 slightly longer than the thickness of the reflective sheets 5 and 6, and extends in the direction along the light emitting diode substrate 2 of the reflective sheets 5 and 6. Relative movement is possible.

支持ケース7は金属板を成形してなり、略矩形をなす扁平状の板部71及び該板部71の周縁に連なり、前側が開放されている枠部72を有し、板部71の一面7aに発光ダイオード基板2を長さ方向及び幅方向に並べて収容支持してある。枠部72は、板部71の四辺に連なる枠片を折曲げることにより形成されている。   The support case 7 is formed by forming a metal plate, has a flat plate portion 71 having a substantially rectangular shape, and a frame portion 72 that is continuous with the periphery of the plate portion 71 and is open on the front side. The light emitting diode substrate 2 is accommodated and supported by 7a in the length direction and the width direction. The frame portion 72 is formed by bending frame pieces that are continuous with the four sides of the plate portion 71.

板部71における後面には、前記表示部10の表示面に表示する映像信号を処理する信号処理回路基板、信号処理回路基板及び発光ダイオード基板2等に実装されている部品に電圧を供給する電源回路基板、前記表示部10の駆動及び制御を行う制御回路基板、発光ダイオード基板2のドライバを制御する制御回路基板等の複数の回路基板が装着されている。   A power supply for supplying a voltage to components mounted on a signal processing circuit board, a signal processing circuit board, a light emitting diode board 2 and the like that process a video signal displayed on the display surface of the display unit 10 on the rear surface of the plate unit 71 A plurality of circuit boards such as a circuit board, a control circuit board for driving and controlling the display unit 10, and a control circuit board for controlling a driver of the light emitting diode board 2 are mounted.

図5は反射シートの構成を示す模式的平面図、図6は反射シートの構成を示す分解した模式的平面図、図7は反射シートの構成を示す一部を拡大した平面図、図8の(a) は1枚の反射シートとレンズとの関係を示す平面図、(b) は2枚の反射シートとレンズとの関係を示す平面図である。   5 is a schematic plan view showing the configuration of the reflective sheet, FIG. 6 is an exploded schematic plan view showing the configuration of the reflective sheet, FIG. 7 is a partially enlarged plan view showing the configuration of the reflective sheet, and FIG. (a) is a top view which shows the relationship between one reflective sheet and a lens, (b) is a top view which shows the relationship between two reflective sheets and a lens.

第1及び第2の反射シート5,6は、高反射性を有し、矩形をなす合成樹脂シート素材からなり、支持ケース7の板部71よりも小形の矩形をなす扁平部52,62と、該扁平部52,62の2辺に被折目にて折曲げを可能に連なる第1枠片53,第2枠片63とを有し、扁平部52,62には、レンズ4夫々に対応する貫通孔51,61と、コネクタ3に対応する第2貫通孔54,64とが設けられている。尚、第1枠片53,第2枠片63は、扁平部52,62の1辺と隣合う第3辺の端部にも設けられている。また、第1枠片53,第2枠片63の周縁には鍔部55,65が設けられている。   The first and second reflection sheets 5 and 6 are made of a synthetic resin sheet material having a high reflectivity and a rectangular shape, and flat portions 52 and 62 having a rectangular shape smaller than the plate portion 71 of the support case 7; The first frame piece 53 and the second frame piece 63 are connected to the two sides of the flat parts 52 and 62 so as to be foldable at the folds. Corresponding through holes 51 and 61 and second through holes 54 and 64 corresponding to the connector 3 are provided. The first frame piece 53 and the second frame piece 63 are also provided at the end of the third side adjacent to one side of the flat portions 52 and 62. Further, flanges 55 and 65 are provided on the periphery of the first frame piece 53 and the second frame piece 63.

貫通孔51,61は透光部41よりも若干大径の大孔部51a,61a及び該大孔部51a,61aの一側縁から外方へ窪み、透光部41よりも若干小径の小孔部51b,61bを有する。第2貫通孔54,64は、略矩形をなし、コネクタ3が挿通されている。   The through holes 51, 61 are recessed outward from one side edge of the large hole portions 51 a, 61 a having a slightly larger diameter than the light transmitting portion 41 and the large hole portions 51 a, 61 a, and having a slightly smaller diameter than the light transmitting portion 41. It has holes 51b and 61b. The second through holes 54 and 64 are substantially rectangular, and the connector 3 is inserted therethrough.

以上のように構成された光源装置Aは、一面2aに複数の発光ダイオード1が実装され、該発光ダイオード1夫々の頂部と対向するレンズ4が取付けられている発光ダイオード基板2が支持ケース7における板部71の一面7aに複数列に並置され、止具等の移動止め手段にて板部71に取付けられた後、該発光ダイオード基板2の一面2aに第1の反射シート5が対向載置され(図8(a) 参照)、該第1の反射シート5上に第2の反射シート6が対向載置される(図8(b) 参照)。   In the light source device A configured as described above, the light emitting diode substrate 2 in which the plurality of light emitting diodes 1 are mounted on one surface 2 a and the lens 4 facing the top of each of the light emitting diodes 1 is attached is the support case 7. A plurality of rows are juxtaposed on the one surface 7a of the plate portion 71 and attached to the plate portion 71 by means of detent such as a stopper, and then the first reflective sheet 5 is placed on the one surface 2a of the light emitting diode substrate 2 so as to face it. Then, the second reflection sheet 6 is placed on the first reflection sheet 5 so as to be opposed to the first reflection sheet 5 (see FIG. 8B).

第1の反射シート5が載置される際、レンズ4における透光部41が反射シート5の各貫通孔51の大孔部51aに嵌まり、扁平部52が発光ダイオード基板2の一面2aに載置される。この状態から第1の反射シート5を発光ダイオード基板2に沿って一方向へ移動させることにより、透光部41及び一面2a間の空間に各貫通孔51の小孔部51bが嵌まる。   When the first reflection sheet 5 is placed, the translucent part 41 of the lens 4 is fitted into the large hole part 51a of each through hole 51 of the reflection sheet 5, and the flat part 52 is placed on the one surface 2a of the light emitting diode substrate 2. Placed. By moving the first reflective sheet 5 in one direction along the light emitting diode substrate 2 from this state, the small hole portions 51b of the respective through holes 51 fit into the space between the light transmitting portion 41 and the one surface 2a.

第2の反射シート6が載置される際、レンズ4における透光部41が反射シート6の各貫通孔61の大孔部61aに嵌まり、扁平部62が発光ダイオード基板2の一面2aに載置される。この状態から第2の反射シート6を発光ダイオード基板2に沿って他方向へ移動させることにより、透光部41及び一面2a間の空間に各貫通孔61の小孔部61bが嵌まる。   When the second reflection sheet 6 is placed, the translucent part 41 of the lens 4 is fitted into the large hole part 61a of each through hole 61 of the reflection sheet 6, and the flat part 62 is placed on the one surface 2a of the light emitting diode substrate 2. Placed. By moving the second reflecting sheet 6 in the other direction along the light emitting diode substrate 2 from this state, the small hole portions 61b of the through holes 61 fit into the space between the light transmitting portion 41 and the one surface 2a.

このようにレンズ4の透光部41及び一面2a間の空間に各貫通孔51,61の小孔部51b,61bが嵌まることにより、透光部41周面と貫通孔51,61の大孔部51a,61aとの間の隙間は反射シート5,6の貫通孔51,61周りにて低減でき、レンズ4周りの光反射性を高めることができる。   In this way, the small holes 51b and 61b of the through holes 51 and 61 are fitted in the space between the light transmitting part 41 and the one surface 2a of the lens 4, so that the circumferential surface of the light transmitting part 41 and the through holes 51 and 61 are large. The gap between the holes 51a and 61a can be reduced around the through holes 51 and 61 of the reflection sheets 5 and 6, and the light reflectivity around the lens 4 can be improved.

また、第1及び第2の反射シート5,6が積層配置されることにより、反射シート5,6は、前側が開放されたケース形状となるため、扁平部52,62が発光ダイオード基板2の一面2a及び支持ケース7の板部71と対向し、第1枠片53,第2枠片63が支持ケース7の枠部72と対向し、支持ケース7内の全面が反射面となる。   In addition, since the first and second reflection sheets 5 and 6 are arranged in a stacked manner, the reflection sheets 5 and 6 have a case shape with the front side opened, so that the flat portions 52 and 62 are formed on the light emitting diode substrate 2. The first surface piece 2a and the plate portion 71 of the support case 7 are opposed to each other, the first frame piece 53 and the second frame piece 63 are opposed to the frame portion 72 of the support case 7, and the entire surface of the support case 7 is a reflective surface.

光源装置Aを備える表示装置は、図1に示すようにテレビ画像を表示する表示面を前側に有する表示部10と、該表示部10の後側に配されている光源装置Aと、表示部10の周縁部及び光源装置Aの後側を隠蔽するキャビネット11とを備える。   As shown in FIG. 1, the display device including the light source device A includes a display unit 10 having a display surface for displaying a television image on the front side, a light source device A disposed on the rear side of the display unit 10, and a display unit. 10 and a cabinet 11 for concealing the rear side of the light source device A.

表示部10は、表示面を有する表示パネル12と、該表示パネル12の後側に配されている光学シート13とを有する。表示パネル12の周縁部は、前保持枠体14と、後保持枠体15とにより前後に挾着保持され、パネルモジュールを構成しており、後保持枠体15が支持ケース7の周縁部に取付けられている。   The display unit 10 includes a display panel 12 having a display surface, and an optical sheet 13 disposed on the rear side of the display panel 12. The peripheral edge of the display panel 12 is held in front and back by a front holding frame body 14 and a rear holding frame body 15 to constitute a panel module, and the rear holding frame body 15 is formed on the peripheral edge portion of the support case 7. Installed.

光学シート13は、光源としての発光ダイオード1が発光した光を拡散する比較的厚肉の拡散板と、反射偏光板、プリズムシート、拡散シート等の比較的薄肉の合成樹脂シートが積層された積層体であり、枠部72に前記拡散板の周縁部を支持してある。   The optical sheet 13 is a laminate in which a relatively thick diffuser plate that diffuses light emitted from the light emitting diode 1 as a light source and a relatively thin synthetic resin sheet such as a reflective polarizing plate, a prism sheet, and a diffuser sheet are laminated. The peripheral part of the said diffusing plate is supported by the frame part 72. FIG.

キャビネット11は、表示部10の周縁部前側を隠蔽するキャビネット前分体11aと、光源装置Aの周縁部及び後側を隠蔽する深皿形状のキャビネット後分体11bとを有し、支持ケース7の枠部72に雄螺子により取付けられている。   The cabinet 11 includes a cabinet front part 11a that conceals the front side of the peripheral part of the display unit 10, and a deep dish-shaped cabinet rear part 11b that conceals the peripheral part and the rear side of the light source device A. Is attached to the frame portion 72 by a male screw.

実施の形態2
図9は光源装置の要部の他の構成を示す拡大した平面図である。この光源装置は、反射シート5,6における貫通孔51,61を、大孔部51a,61aの一側縁から若干窪む小孔部51b,61bを有する形状とする代わりに、半円形をなす大孔部51a,61a及び該大孔部51a,61aの一側縁に連なり、半円形をなす小孔部51c,61cを有する貫通孔51,61としたものである。
Embodiment 2
FIG. 9 is an enlarged plan view showing another configuration of the main part of the light source device. In this light source device, the through holes 51 and 61 in the reflection sheets 5 and 6 have a semicircular shape instead of the small holes 51b and 61b that are slightly recessed from the side edges of the large holes 51a and 61a. The through holes 51 and 61 have small holes 51c and 61c that are continuous with the large holes 51a and 61a and one side edge of the large holes 51a and 61a and are semicircular.

大孔部51a,61aは透光部41よりも大径であり、小孔部51c,61cは透光部41と同径又は透光部41よりも小径であり、透光部41が各貫通孔51,61の大孔部51a,61aに嵌まっている状態から反射シート5,6が相対移動したとき、透光部41及び一面2a間の空間に各貫通孔51,61の小孔部51c,61cが嵌まるように構成されている。
その他の構成及び作用は実施の形態1と同様であるため、同様の部品については同じ符号を付し、その詳細な説明及び作用効果の説明を省略する。
The large hole portions 51a and 61a have a larger diameter than the light transmitting portion 41, the small hole portions 51c and 61c have the same diameter as the light transmitting portion 41 or a smaller diameter than the light transmitting portion 41, and the light transmitting portion 41 passes through each of the light transmitting portions 41. When the reflection sheets 5 and 6 are relatively moved from the state of being fitted into the large holes 51a and 61a of the holes 51 and 61, the small holes of the through holes 51 and 61 are formed in the space between the light transmitting part 41 and the one surface 2a. 51c and 61c are configured to fit.
Since other configurations and operations are the same as those of the first embodiment, the same components are denoted by the same reference numerals, and detailed description thereof and description of operations and effects are omitted.

実施の形態3
図10、図11は光源装置の要部の他の構成を示す拡大した平面図である。この光源装置は、反射シート5,6における貫通孔51,61を、透光部41よりも大径の半円孔部51d,61d及び該半円孔部51d,61dに連なり、その孔縁が位置決め突起42の周面と対向する非円孔部51e,61eを有する形状としたものである。
Embodiment 3
10 and 11 are enlarged plan views showing another configuration of the main part of the light source device. In this light source device, the through holes 51 and 61 in the reflection sheets 5 and 6 are connected to the semicircular hole portions 51d and 61d having a diameter larger than that of the light transmitting portion 41 and the semicircular hole portions 51d and 61d, and the edge of the hole is formed. The shape is such that it has non-circular hole portions 51e, 61e facing the peripheral surface of the positioning projection 42.

非円孔部51e,61eは、位置決め突起42の個数及び周方向位置に対応して非円形に形成され、非円孔部51e,61eを、透光部41及び一面2a間の空間にて透光部41の周面よりも中心側に寄せることができるように構成されている。図10は位置決め突起42が3個である場合を示しており、図11は位置決め突起42が2個である場合を示している。
その他の構成及び作用は実施の形態1と同様であるため、同様の部品については同じ符号を付し、その詳細な説明及び作用効果の説明を省略する。
The non-circular hole portions 51e and 61e are formed in a non-circular shape corresponding to the number of the positioning protrusions 42 and the circumferential position, and the non-circular hole portions 51e and 61e are transmitted through the space between the translucent portion 41 and the one surface 2a. It is comprised so that it can approach to the center side rather than the surrounding surface of the optical part 41. FIG. FIG. 10 shows a case where there are three positioning protrusions 42, and FIG. 11 shows a case where there are two positioning protrusions 42.
Since other configurations and operations are the same as those of the first embodiment, the same components are denoted by the same reference numerals, and detailed description thereof and description of operations and effects are omitted.

実施の形態4
図12は光源装置が備える反射シートの他の構成を示す分解した模式的平面図である。この反射シート5,6は、矩形をなす扁平部52,62と、該扁平部52,62の2辺に連なる第1枠片53,第2枠片63とを有する構成とする代わりに、板部71よりも小形の矩形をなす扁平部52,62と、扁平部52の3辺に被折目にて折曲げを可能に連なり、略コ字形をなす第3枠片56と、扁平部62の1辺に被折目にて折曲げを可能に連なり、第3枠片56と対向して四角の枠部を形成するための第4枠片66とを有する構成としたものである。
Embodiment 4
FIG. 12 is an exploded schematic plan view showing another configuration of the reflection sheet provided in the light source device. Instead of the reflection sheets 5 and 6 having a rectangular flat parts 52 and 62, and a first frame piece 53 and a second frame piece 63 that are connected to two sides of the flat parts 52 and 62, Flat portions 52 and 62 having a rectangular shape smaller than the portion 71, a third frame piece 56 having a substantially U-shape that is connected to the three sides of the flat portion 52 so as to be foldable, and a flat portion 62. It is configured to have a fourth frame piece 66 for forming a square frame portion opposite to the third frame piece 56 so as to be able to be bent at one side.

扁平部52,62には、レンズ4夫々に対応する貫通孔51,61と、コネクタ3に対応する第2貫通孔54,64とが設けられている。また、第4枠片66は、扁平部62の1辺と隣合う二つの辺の端部にも設けられている。また、第3枠片56,第4枠片66の周縁には鍔部55,65が設けられている。   The flat portions 52 and 62 are provided with through holes 51 and 61 corresponding to the respective lenses 4 and second through holes 54 and 64 corresponding to the connector 3. The fourth frame piece 66 is also provided at the ends of two sides adjacent to one side of the flat portion 62. Further, flanges 55 and 65 are provided on the periphery of the third frame piece 56 and the fourth frame piece 66.

この場合にあっても反射シート5,6が積層配置されることにより、第3枠片56,第4枠片66にて四角の枠部が形成され、また、レンズ4周面と貫通孔51,61との間の隙間量を低減できる。
その他の構成及び作用は実施の形態1と同様であるため、同様の部品については同じ符号を付し、その詳細な説明及び作用効果の説明を省略する。
Even in this case, by arranging the reflective sheets 5 and 6 in a stacked manner, a square frame portion is formed by the third frame piece 56 and the fourth frame piece 66, and the lens 4 peripheral surface and the through hole 51 are formed. , 61 can be reduced.
Since other configurations and operations are the same as those of the first embodiment, the same components are denoted by the same reference numerals, and detailed description thereof and description of operations and effects are omitted.

実施の形態5
図13は光源装置の要部の他の構成を示す分解した模式的平面図である。この光源装置は、矩形をなす扁平部52,62の辺に枠片を設けてある反射シート5,6を備える構成とする代わりに、枠片がなく、矩形をなす扁平部52,62からなる反射シート5,6と、台形状の四角筒形をなし、反射シート5,6の周りに配される反射枠体8とを備える構成としたものである。
Embodiment 5
FIG. 13 is an exploded schematic plan view showing another configuration of the main part of the light source device. This light source device is composed of the flat portions 52 and 62 having a rectangular shape without the frame pieces, instead of the reflection sheets 5 and 6 having the frame pieces provided on the sides of the flat portions 52 and 62 having a rectangular shape. The reflection sheets 5 and 6 and a trapezoidal square cylinder shape are provided, and the reflection frame 8 is provided around the reflection sheets 5 and 6.

反射シート5,6には、レンズ4夫々に対応する貫通孔51,61と、コネクタ3に対応する第2貫通孔54,64とが設けられている。   The reflection sheets 5 and 6 are provided with through holes 51 and 61 corresponding to the lenses 4 and second through holes 54 and 64 corresponding to the connector 3.

反射枠体8は、高反射性を有する合成樹脂シートが台形状の四角筒形に成形されるか、又は、帯状をなす合成樹脂シートの三個所が直交状に折曲げられ、両端が両面テープ等の結合手段にて結合される。また、反射枠体8の周縁には鍔部81が設けられている。   The reflection frame 8 is formed by forming a highly reflective synthetic resin sheet into a trapezoidal rectangular tube shape, or bending the three portions of the synthetic resin sheet having a band shape in an orthogonal shape, and double-sided tape at both ends. It couple | bonds by the coupling | bonding means. A flange 81 is provided on the periphery of the reflection frame 8.

この場合にあっても積層された反射シート5,6の周りに反射枠体8が配されるため、反射シート5,6による光反射性を反射枠体8にてより一層高めることができ、また、レンズ4周面と貫通孔51,61との間の隙間量を低減できる。
その他の構成及び作用は実施の形態1と同様であるため、同様の部品については同じ符号を付し、その詳細な説明及び作用効果の説明を省略する。
Even in this case, since the reflective frame 8 is arranged around the laminated reflective sheets 5 and 6, the light reflectivity by the reflective sheets 5 and 6 can be further enhanced by the reflective frame 8, In addition, the amount of the gap between the peripheral surface of the lens 4 and the through holes 51 and 61 can be reduced.
Since other configurations and operations are the same as those of the first embodiment, the same components are denoted by the same reference numerals, and detailed description thereof and description of operations and effects are omitted.

尚、以上説明した実施の形態では、2枚の反射シート5,6を相対移動を可能に積層したが、その他、1枚の反射シート5を非移動に配し、他の1枚の反射シート6を移動可能に積層配置する構成としてもよい。この場合にあってもレンズ4周面と貫通孔51,61との間の隙間量を低減できる。   In the embodiment described above, the two reflection sheets 5 and 6 are laminated so as to be relatively movable, but in addition, one reflection sheet 5 is arranged non-moving and the other reflection sheet is one. It is good also as a structure which carries out lamination | stacking arrangement | positioning of 6 so that movement is possible. Even in this case, the gap amount between the peripheral surface of the lens 4 and the through holes 51 and 61 can be reduced.

また、以上説明した実施の形態では、反射シート5,6を長さ方向へ相対移動を可能に配したが、その他、反射シート5,6は幅方向への相対移動を可能に配してもよい。   In the embodiment described above, the reflection sheets 5 and 6 are arranged so as to be capable of relative movement in the length direction. However, the reflection sheets 5 and 6 may be arranged so as to be capable of relative movement in the width direction. Good.

また、以上説明した実施の形態では、反射シート5,6が第1枠片53,第2枠片63、又は、第3枠片56,第4枠片66を有する構成とするか、又は、扁平部52,62からなる反射シート5,6とは別個に反射枠体8を備える構成としたが、その他、反射枠体8等の枠部がない構成としてもよい。   Moreover, in embodiment described above, it is set as the structure in which the reflection sheets 5 and 6 have the 1st frame piece 53, the 2nd frame piece 63, or the 3rd frame piece 56, the 4th frame piece 66, or Although the reflection frame body 8 is provided separately from the reflection sheets 5 and 6 including the flat portions 52 and 62, a configuration without a frame portion such as the reflection frame body 8 may be employed.

1 発光ダイオード
2 発光ダイオード基板(回路基板)
4 レンズ
42 位置決め突起
5,6 反射シート
51,61 貫通孔
51a,61a 大孔部
51b,61b 小孔部
51d,61d 半円孔部
51e,61e 非円孔部
53 第1枠片
63 第2枠片
56 第3枠片
66 第4枠片
8 反射枠体
10 表示部
A 光源装置
1 Light-emitting diode 2 Light-emitting diode substrate (circuit board)
4 Lens 42 Positioning projection 5, 6 Reflective sheet 51, 61 Through hole 51a, 61a Large hole part 51b, 61b Small hole part 51d, 61d Semi-circular hole part 51e, 61e Non-circular hole part 53 First frame piece 63 Second frame Piece 56 Third frame piece 66 Fourth frame piece 8 Reflecting frame 10 Display unit A Light source device

Claims (7)

一面に発光ダイオードが実装されている回路基板と、前記一面に取付けられ、前記発光ダイオードが発射した光を拡散させるレンズと、該レンズがその内部に配される貫通孔を有し、前記一面に対向して前記光を反射させる反射シートとを備える光源装置において、前記反射シートは、前記回路基板に沿って相対移動を可能に複数枚が積層されていることを特徴とする光源装置。   A circuit board having a light emitting diode mounted on one surface; a lens attached to the one surface for diffusing light emitted by the light emitting diode; and a through hole in which the lens is disposed. A light source device comprising: a reflection sheet that reflects the light opposite to the light source device, wherein a plurality of the reflection sheets are stacked so as to be relatively movable along the circuit board. 少なくとも1枚の前記反射シートの前記貫通孔は、大孔部及び該大孔部に連なる小孔部を有する請求項1記載の光源装置。   2. The light source device according to claim 1, wherein the through hole of at least one of the reflection sheets includes a large hole portion and a small hole portion connected to the large hole portion. 前記レンズは、前記回路基板へ向く位置決め突起を有し、少なくとも1枚の前記反射シートの前記貫通孔は、半円孔部及び該半円孔部に連なり、その孔縁が前記位置決め突起の周面と対向する非円孔部を有する請求項1記載の光源装置。   The lens has a positioning projection facing the circuit board, and the through hole of at least one of the reflection sheets is connected to a semicircular hole portion and the semicircular hole portion, and an edge of the hole is a circumference of the positioning projection. The light source device according to claim 1, further comprising a non-circular hole facing the surface. 前記反射シートの夫々は略四角形をなし、1枚の反射シートは、隣合う二つの辺に連なり、略L字形をなす第1枠片を有し、他の1枚の反射シートは、前記二つの辺に対向する二つの辺に連なり、前記第1枠片と対向して四角の枠部を形成するための第2枠片を有する請求項1から3のいずれか一つに記載の光源装置。   Each of the reflection sheets has a substantially rectangular shape, and one reflection sheet has a first frame piece that is continuous with two adjacent sides and has a substantially L-shape, and the other reflection sheet is the two reflection sheets. 4. The light source device according to claim 1, further comprising: a second frame piece that is connected to two sides that face one side, and that forms a square frame portion facing the first frame piece. 5. . 前記反射シートの夫々は略四角形をなし、1枚の反射シートは、三つの辺に連なり、略コ字形をなす第3枠片を有し、他の1枚の反射シートは、一つの辺に連なり、前記第3枠片と対向して四角の枠部を形成するための第4枠片を有する請求項1から3のいずれか一つに記載の光源装置。   Each of the reflection sheets has a substantially rectangular shape, and one reflection sheet has a third frame piece that is connected to three sides and has a substantially U-shape, and the other reflection sheet is on one side. 4. The light source device according to claim 1, wherein the light source device includes a fourth frame piece that is continuous and forms a square frame portion facing the third frame piece. 5. 前記反射シートの周りに配され、前記光を反射させる反射枠体を備える請求項1から3のいずれか一つに記載の光源装置。   The light source device according to any one of claims 1 to 3, further comprising a reflective frame body that is arranged around the reflection sheet and reflects the light. 一側に表示面を有する表示部と、該表示部の他側に前記発光ダイオードが前記一側へ向くように配された請求項1から6のいずれか一つに記載の光源装置とを備えることを特徴とする表示装置。   A display unit having a display surface on one side, and the light source device according to claim 1, wherein the light emitting diode is disposed on the other side of the display unit so as to face the one side. A display device characterized by that.
JP2009173410A 2009-07-24 2009-07-24 Light source device and display device having the same Pending JP2011028991A (en)

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Publication number Priority date Publication date Assignee Title
JP2011100648A (en) * 2009-11-06 2011-05-19 Sharp Corp Lighting system, display device equipped with the same, and television receiver
JP2013025945A (en) * 2011-07-19 2013-02-04 Sharp Corp Surface light-emitting device and display device equipped with surface light-emitting device
CN102955190A (en) * 2011-08-26 2013-03-06 优志旺电机株式会社 Polarizing element unit, transmittance setting method of polarizing element unit, light irradiation apparatus using same
CN103062674A (en) * 2012-03-29 2013-04-24 东莞市美光达光学科技有限公司 Straight down type backlight light-emitted diode (LED) module set and manufacturing method thereof
CN106873239A (en) * 2015-10-26 2017-06-20 船井电机株式会社 Display device
JP2019135729A (en) * 2019-05-24 2019-08-15 三菱電機照明株式会社 Illumination lamp

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011100648A (en) * 2009-11-06 2011-05-19 Sharp Corp Lighting system, display device equipped with the same, and television receiver
JP2013025945A (en) * 2011-07-19 2013-02-04 Sharp Corp Surface light-emitting device and display device equipped with surface light-emitting device
CN102955190A (en) * 2011-08-26 2013-03-06 优志旺电机株式会社 Polarizing element unit, transmittance setting method of polarizing element unit, light irradiation apparatus using same
CN103062674A (en) * 2012-03-29 2013-04-24 东莞市美光达光学科技有限公司 Straight down type backlight light-emitted diode (LED) module set and manufacturing method thereof
CN106873239A (en) * 2015-10-26 2017-06-20 船井电机株式会社 Display device
CN110031998A (en) * 2015-10-26 2019-07-19 船井电机株式会社 Display device
CN106873239B (en) * 2015-10-26 2020-11-24 船井电机株式会社 Display device
USRE48493E1 (en) 2015-10-26 2021-03-30 Funai Electric Co., Ltd. Display device
JP2019135729A (en) * 2019-05-24 2019-08-15 三菱電機照明株式会社 Illumination lamp

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