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公开(公告)号:US20170178577A1
公开(公告)日:2017-06-22
申请号:US15454045
申请日:2017-03-09
Inventor: Shoichi HIROTA , Shinichi KOMURA , Yoshifumi SEKIGUCHI , Tsunenori YAMAMOTO , Masaya ADACHI
IPC: G09G3/36 , G02F1/1368 , G02F1/1362 , G09G3/20
Abstract: In a color display device, when using white (W) sub-pixels in addition to subpixels of red (R) and green (G) plus blue (B) without increasing a wiring line number, the per-color pixel number in a unit area decreases so that the image resolution is deteriorated. The area and number of subpixels are adjusted in accordance with the visual sensitivity or luminosity required. Practically, the area of red (R) and blue (B) subpixels which are relatively low in luminosity is set to be about two times greater than the area of green (G) and white (W) subpixels that are relatively high in luminosity while letting the number of green (G) and white (W) subpixels be twice the number of red (R) and blue (B) subpixels. A larger subpixel is configured from a plurality of unit subpixels. A smaller subpixel is formed of a one unit subpixel.
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公开(公告)号:US20160365406A1
公开(公告)日:2016-12-15
申请号:US15175215
申请日:2016-06-07
Applicant: Japan Display Inc.
Inventor: Masaya ADACHI , Toshihiro SATO , Hajime AKIMOTO
CPC classification number: H01L27/3279 , H01L27/1218 , H01L27/1222 , H01L27/124 , H01L27/3211 , H01L27/326 , H01L51/5284 , H01L2251/5315
Abstract: A display device includes: a plurality of pixels; a plurality of first wirings extending in a first direction; and a plurality of second wirings extending in a second direction, wherein each of the pixels includes a light-emitting region and a light-transmitting region, the light-transmitting region includes a first light-transmitting region adjacent to the light-emitting region in the first direction and a second light-transmitting region adjacent to the light-emitting region in the second direction, the light-transmitting region is divided into a plurality of regions by at least one wiring of the first and second wirings, and the plurality of regions include a first region with a first width and a second region with a second width, a direction of the first and second widths are a same direction and at least one direction of the first and second directions, and the first width is different from the second width.
Abstract translation: 显示装置包括:多个像素; 沿第一方向延伸的多个第一配线; 以及沿第二方向延伸的多个第二布线,其中每个所述像素包括发光区域和透光区域,所述透光区域包括与所述发光区域相邻的第一透光区域 所述第一方向和与所述第二方向上的所述发光区域相邻的第二透光区域,所述透光区域通过所述第一和第二布线的至少一个布线被分割为多个区域,并且所述多个 区域包括具有第一宽度的第一区域和具有第二宽度的第二区域,第一和第二宽度的方向是相同的方向和第一和第二方向的至少一个方向,并且第一宽度不同于 第二宽度。
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公开(公告)号:US20160276421A1
公开(公告)日:2016-09-22
申请号:US15063793
申请日:2016-03-08
Applicant: Japan Display Inc.
Inventor: HaoChun LEE , Toshihiro SATO , Masaya ADACHI , Shigeru SAKAMOTO
CPC classification number: H01L51/5284 , H01L27/3213 , H01L27/3218 , H01L27/322 , H01L27/3244 , H01L27/3246 , H01L27/3248 , H01L27/326 , H01L27/3272 , H01L29/78633 , H01L33/58 , H01L51/524 , H01L2924/12041
Abstract: A display device includes a plurality of pixels each including a light emitting region; and a light blocking layer provided on a side of the plurality of pixels on which light is output. In each of the plurality pixels, the light blocking layer has a plurality of openings allowing light from the light emitting region to be output. In one embodiment, in the light blocking layer, the openings adjacent to each other may be located line-symmetrically. In one embodiment, in the light blocking layer, the openings adjacent to each other may be located point-symmetrically.
Abstract translation: 显示装置包括多个像素,每个像素包括发光区域; 以及设置在输出光的多个像素的一侧上的遮光层。 在多个像素中的每一个中,遮光层具有允许来自发光区域的光的多个开口。 在一个实施例中,在遮光层中,彼此相邻的开口可以线对称地定位。 在一个实施例中,在遮光层中,彼此相邻的开口可以位于对称的位置。
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公开(公告)号:US20180204888A1
公开(公告)日:2018-07-19
申请号:US15915948
申请日:2018-03-08
Applicant: JAPAN DISPLAY INC.
Inventor: Masaya ADACHI
IPC: H01L27/32
CPC classification number: H01L27/3216 , H01L27/3213 , H01L27/3218 , H01L27/322 , H01L27/326 , H01L27/3276 , H01L51/5284 , H01L2251/5315
Abstract: A plurality of pixels P and a plurality of light-transmitting regions L are alternately disposed such that a light-transmitting region M1 is disposed between two pixels closest to each other in a X-direction and a light-transmitting region M2 is disposed between two pixels closest to each other in a Y-direction. Each of the light-transmitting regions is divided into a plurality of divided regions by a plurality of wirings WX and a plurality of wirings WY. The divided regions include first regions and second regions that are different from each other in widths in at least one of the X-direction and the Y-direction.
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公开(公告)号:US20180026086A1
公开(公告)日:2018-01-25
申请号:US15708870
申请日:2017-09-19
Inventor: Masaya ADACHI , Kazutaka TSUJI , Hajime MURAKAMI , Etsuko NISHIMURA
CPC classification number: H01L27/3258 , H01L27/3211 , H01L27/322 , H01L27/3246 , H01L27/3248 , H01L27/3262 , H01L27/3265 , H01L27/3295 , H01L51/5203 , H01L51/5206 , H01L51/5221 , H01L51/5234 , H01L51/5237 , H01L51/524 , H01L51/5246 , H01L51/525 , H01L51/5262 , H01L51/5271 , H01L51/5275 , H01L51/5281 , H01L2251/5315 , H01L2251/5353 , H05B33/02 , H05B33/04 , H05B33/14 , H05B33/22
Abstract: A display device includes a plurality of light-emitting elements aligned on a TFT substrate in a formation of a matrix. The plurality of light-emitting elements each have a flat surface portion and including a light-emitting layer, an anode, and a cathode, an insulating layer formed on the TFT substrate and under the light emitting element, and a tilted metal surface provided on a peripheral area surrounding the flat surface portion of the light-emitting element and having a tilt angle with respect to the flat surface portion of the light-emitting element. The tilted metal surface is provided on a surface of a slope of a bank that is provided on the insulation layer, and a width of a cross-section of the bank becomes smaller as the cross section conies farther away from a surface of the TFT substrate. A counter substrate is placed on the TFT substrate.
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公开(公告)号:US20180012941A1
公开(公告)日:2018-01-11
申请号:US15473856
申请日:2017-03-30
Applicant: Japan Display Inc.
Inventor: Masaya ADACHI
CPC classification number: H01L27/3213 , H01L27/124 , H01L27/3218 , H01L27/322 , H01L27/326 , H01L27/3262 , H01L27/3276 , H01L51/5284
Abstract: A display device includes a plurality of pixels each having a plurality of light-emitting regions including at least a first light-emitting region of a first color, a second light-emitting region of a second color, and a third light-emitting region of a third color and a light-transmitting region. Visibility of the first color is higher than visibility of the second color. The plurality of light-emitting regions are divided into a first group including the first light-emitting region and a second group including the second light-emitting region. The first light-emitting region is adjacent to the second light-emitting region. The light-transmitting region is located between the first light-emitting region and the second light-emitting region. The light-transmitting region is not located in a region between light-emitting regions adjacent to each other in the first group and in a region between light-emitting regions adjacent to each other in the second group.
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公开(公告)号:US20170250240A1
公开(公告)日:2017-08-31
申请号:US15373766
申请日:2016-12-09
Applicant: Japan Display Inc.
Inventor: Haochun LEE , Masaru UCHIYAMA , Masaya ADACHI
IPC: H01L27/32 , H01L27/12 , G09G3/3266
CPC classification number: H01L27/3276 , G09G3/3266 , H01L27/124 , H01L27/3218 , H01L27/326 , H01L27/3272
Abstract: Provided is a display device including: a first gate line and a second gate line which extend in a first direction; a signal line and a current-supplying line which extend in a second direction intersecting with the first direction; a first sub-pixel surrounded by the first gate line, the second gate line, the signal line, and the current-supplying line; and a light-shielding film located over the first sub-pixel. The light-shielding film has a first opening portion and a second opening portion, and the first sub-pixel overlaps with the first opening portion and the second opening portion and has an emission region and a light-transmitting region. In the light-transmitting region, a distance in the first direction between the signal line and the current-supplying line continuously changes along the second direction.
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公开(公告)号:US20170141170A1
公开(公告)日:2017-05-18
申请号:US15419138
申请日:2017-01-30
Inventor: Masaya ADACHI , Kazutaka TSUJI , Hajime MURAKAMI , Etsuko NISHIMURA
CPC classification number: H01L27/3258 , H01L27/3211 , H01L27/322 , H01L27/3246 , H01L27/3248 , H01L27/3262 , H01L27/3265 , H01L27/3295 , H01L51/5203 , H01L51/5206 , H01L51/5221 , H01L51/5234 , H01L51/5237 , H01L51/524 , H01L51/5246 , H01L51/525 , H01L51/5262 , H01L51/5271 , H01L51/5275 , H01L51/5281 , H01L2251/5315 , H01L2251/5353 , H05B33/02 , H05B33/04 , H05B33/14 , H05B33/22
Abstract: A display device includes plurality of light-emitting elements aligned on a TFT substrate in a formation of a matrix. The plurality of light-emitting elements each have a flat surface portion and including a light-emitting layer, an anode, and a cathode, an insulating layer formed on the TFT substrate and under the light emitting element, and a tilted metal surface provided on a peripheral area surrounding the flat surface portion of the light-emitting element and having a tilt angle with respect to the flat surface portion of the light-emitting element. The tilted metal surface is provided on a surface of a slope of a bank that is provided on the insulation layer, and a width of a cross-section of the bank becomes smaller as the cross section comes farther away from a surface of the TFT substrate. A counter substrate is placed on the TFT substrate.
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公开(公告)号:US20160141345A1
公开(公告)日:2016-05-19
申请号:US15001817
申请日:2016-01-20
Inventor: Masaya ADACHI , Kazutaka TSUJI , Hajime MURAKAMI , Etsuko NISHIMURA
CPC classification number: H01L27/3258 , H01L27/3211 , H01L27/322 , H01L27/3246 , H01L27/3248 , H01L27/3262 , H01L27/3265 , H01L27/3295 , H01L51/5203 , H01L51/5206 , H01L51/5221 , H01L51/5234 , H01L51/5237 , H01L51/524 , H01L51/5246 , H01L51/525 , H01L51/5262 , H01L51/5271 , H01L51/5275 , H01L51/5281 , H01L2251/5315 , H01L2251/5353 , H05B33/02 , H05B33/04 , H05B33/14 , H05B33/22
Abstract: A display device includes a plurality of light-emitting elements aligned on a TFT substrate in a formation of a matrix. The plurality of light-emitting elements each have a flat surface portion and including a light-emitting layer, an anode, and a cathode, an insulating layer formed on the TFT substrate and under the light emitting element, and a tilted metal surface provided on a peripheral area surrounding the flat surface portion of the light-emitting element and having a tilt angle with respect to the flat surface portion of the light-emitting element. The tilted metal surface is provided on a surface of a slope of a bank that is provided on the insulation layer, and a width of a cross-section of the bank becomes smaller as the cross section comes farther away from a surface of the TFT substrate. A counter substrate is placed on the TFT substrate.
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公开(公告)号:US20150123885A1
公开(公告)日:2015-05-07
申请号:US14532053
申请日:2014-11-04
Applicant: Japan Display Inc.
Inventor: Masaya ADACHI
CPC classification number: G09G3/3208 , G09G3/3233 , G09G3/3433 , G09G2300/0452 , G09G2300/0852 , H01L27/3213 , H01L27/3216 , H01L27/322 , H01L27/3262 , H01L27/3265 , H01L51/5265
Abstract: When a previously existing technique is applied to a white OLED, such a structure is adopted that the peak wavelength of the intensity of interference is the emission peak wavelength corresponding to blue or less. However, in this case, the intensity of interference of the wavelength range corresponding to red is reduced to decrease the light emission intensity of red. A display device is configured in which a stacked film configuring a white light emitting element (an organic light-emitting diode element) is configured in such a manner that the peak wavelength of the intensity of interference is the peak wavelength of the light emission intensity corresponding to blue or less. The light emission intensity of the light emitting element corresponding to a red pixel is made greater than the light emission intensity of the light emitting elements corresponding to pixels for other colors.
Abstract translation: 当将以前存在的技术应用于白色OLED时,采用这样的结构,即干涉强度的峰值波长是对应于蓝色或更少的发射峰值波长。 然而,在这种情况下,减少对应于红色的波长范围的干涉强度,以降低红色的发光强度。 一种显示装置,其中构成白色发光元件(有机发光二极管元件)的层叠膜被构造成使得干涉强度的峰值波长是对应于发光强度的峰值波长 到蓝色或更少。 使与红色像素相对应的发光元件的发光强度大于与其他颜色的像素对应的发光元件的发光强度。
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