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    • 1. 发明授权
    • Display device and electronic device
    • 显示设备和电子设备
    • US07333077B2
    • 2008-02-19
    • US10719031
    • 2003-11-24
    • Jun KoyamaYu YamazakiYoshifumi TanadaSatoshi SeoTakeshi NishiYasuo NakamuraShunpei Yamazaki
    • Jun KoyamaYu YamazakiYoshifumi TanadaSatoshi SeoTakeshi NishiYasuo NakamuraShunpei Yamazaki
    • G09G3/30
    • H01L27/3267G09G3/32G09G2300/0443G09G2300/0809G09G2300/0842G09G2340/0492H01L2251/5323
    • A display device capable of displaying on both screens and switching between vertical and horizontal display, and a driving method thereof. Each pixel comprises a first region including a first light emitting element, and a second region including a second light emitting element. The first region has a bottom emission structure whereas the second region has a top emission structure. The display device comprises a source signal line driver circuit for driving the pixel, a first gate signal line driver circuit having a scan direction perpendicular to that of the source signal line driver circuit, and a second gate signal line driver circuit having a scan direction perpendicular to that of the first gate signal line driver circuit. In a normal display, the first gate signal line driver circuit performs perpendicular scanning, and when switching between vertical and horizontal display, the second gate signal line driver circuit performs perpendicular scanning.
    • 一种能够在两个屏幕上显示并在垂直和水平显示之间切换的显示装置及其驱动方法。 每个像素包括包括第一发光元件的第一区域和包括第二发光元件的第二区域。 第一区域具有底部发射结构,而第二区域具有顶部发射结构。 显示装置包括用于驱动像素的源极信号线驱动电路,具有与源极信号线驱动电路的扫描方向垂直的扫描方向的第一栅极信号线驱动电路和具有扫描方向垂直的第二栅极信号线驱动电路 与第一栅极信号线驱动电路的电路。 在正常显示中,第一栅极信号线驱动电路执行垂直扫描,并且当在垂直和水平显示之间切换时,第二栅极信号线驱动电路执行垂直扫描。
    • 2. 发明授权
    • Display device and electronic device
    • 显示设备和电子设备
    • US07592984B2
    • 2009-09-22
    • US11941318
    • 2007-11-16
    • Jun KoyamaYu YamazakiYoshifumi TanadaSatoshi SeoTakeshi NishiYasuo NakamuraShunpei Yamazaki
    • Jun KoyamaYu YamazakiYoshifumi TanadaSatoshi SeoTakeshi NishiYasuo NakamuraShunpei Yamazaki
    • G09G3/30
    • H01L27/3267G09G3/32G09G2300/0443G09G2300/0809G09G2300/0842G09G2340/0492H01L2251/5323
    • A display device capable of displaying on both screens and switching between vertical and horizontal display, and a driving method thereof. Each pixel comprises a first region including a first light emitting element, and a second region including a second light emitting element. The first region has a bottom emission structure whereas the second region has a top emission structure. The display device comprises a source signal line driver circuit for driving the pixel, a first gate signal line driver circuit having a scan direction perpendicular to that of the source signal line driver circuit, and a second gate signal line driver circuit having a scan direction perpendicular to that of the first gate signal line driver circuit. In a normal display, the first gate signal line driver circuit performs perpendicular scanning, and when switching between vertical and horizontal display, the second gate signal line driver circuit performs perpendicular scanning.
    • 一种能够在两个屏幕上显示并在垂直和水平显示之间切换的显示装置及其驱动方法。 每个像素包括包括第一发光元件的第一区域和包括第二发光元件的第二区域。 第一区域具有底部发射结构,而第二区域具有顶部发射结构。 显示装置包括用于驱动像素的源极信号线驱动电路,具有与源极信号线驱动电路的扫描方向垂直的扫描方向的第一栅极信号线驱动电路和具有扫描方向垂直的第二栅极信号线驱动电路 与第一栅极信号线驱动电路的电路。 在正常显示中,第一栅极信号线驱动电路执行垂直扫描,并且当在垂直和水平显示之间切换时,第二栅极信号线驱动电路执行垂直扫描。
    • 4. 发明授权
    • Semiconductor device and method for manufacturing the same
    • 半导体装置及其制造方法
    • US08253144B2
    • 2012-08-28
    • US12898345
    • 2010-10-05
    • Shunpei YamazakiJun KoyamaHideki UochiYasuo NakamuraJunpei Sugao
    • Shunpei YamazakiJun KoyamaHideki UochiYasuo NakamuraJunpei Sugao
    • H01L27/14
    • H01L27/12H01L27/124
    • As for a semiconductor device which is typified by a display device, it is an object to provide a highly reliable semiconductor device to which a large-sized or high-definition screen is applicable and which has high display quality and operates stably. By using a conductive layer including Cu as a long lead wiring, an increase in wiring resistance is suppressed. Further, the conductive layer including Cu is provided in such a manner that it does not overlap with the semiconductor layer in which a channel region of a TFT is formed, and is surrounded by insulating layers including silicon nitride, whereby diffusion of Cu can be prevented; thus, a highly reliable semiconductor device can be manufactured. Specifically, a display device which is one embodiment of a semiconductor device can have high display quality and operate stably even when the size or definition thereof is increased.
    • 对于以显示装置为代表的半导体装置,其目的在于提供一种高可靠性的可应用大尺寸或高清晰度屏幕的高可靠性半导体装置,其具有高显示质量并且稳定地工作。 通过使用包含Cu作为长引线的导电层,可以抑制布线电阻的增加。 此外,包括Cu的导电层以与形成TFT的沟道区域的半导体层不重叠并且被包括氮化硅的绝缘层包围的方式设置,由此可以防止Cu的扩散 ; 因此,可以制造高度可靠的半导体器件。 具体地说,作为半导体装置的一个实施方式的显示装置,即使在尺寸或定义增加的情况下也能够具有高的显示质量,并且稳定地工作。
    • 6. 发明申请
    • SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING THE SAME
    • 半导体器件及其制造方法
    • US20110084337A1
    • 2011-04-14
    • US12898345
    • 2010-10-05
    • Shunpei YamazakiJun KoyamaHideki UochiYasuo NakamuraJunpei Sugao
    • Shunpei YamazakiJun KoyamaHideki UochiYasuo NakamuraJunpei Sugao
    • H01L27/12H01L21/84
    • H01L27/12H01L27/124
    • As for a semiconductor device which is typified by a display device, it is an object to provide a highly reliable semiconductor device to which a large-sized or high-definition screen is applicable and which has high display quality and operates stably. By using a conductive layer including Cu as a long lead wiring, an increase in wiring resistance is suppressed. Further, the conductive layer including Cu is provided in such a manner that it does not overlap with the semiconductor layer in which a channel region of a TFT is formed, and is surrounded by insulating layers including silicon nitride, whereby diffusion of Cu can be prevented; thus, a highly reliable semiconductor device can be manufactured. Specifically, a display device which is one embodiment of a semiconductor device can have high display quality and operate stably even when the size or definition thereof is increased.
    • 对于以显示装置为代表的半导体装置,其目的在于提供一种高可靠性的可应用大尺寸或高清晰度屏幕的高可靠性半导体装置,其具有高显示质量并且稳定地工作。 通过使用包含Cu作为长引线的导电层,可以抑制布线电阻的增加。 此外,包括Cu的导电层以与形成TFT的沟道区域的半导体层不重叠并且被包括氮化硅的绝缘层包围的方式设置,由此可以防止Cu的扩散 ; 因此,可以制造高度可靠的半导体器件。 具体地说,作为半导体装置的一个实施方式的显示装置,即使在尺寸或定义增加的情况下也能够具有高的显示质量,并且稳定地工作。
    • 8. 发明申请
    • Light-Emitting Element and Display Device
    • 发光元件和显示设备
    • US20120061653A1
    • 2012-03-15
    • US13229918
    • 2011-09-12
    • Shunpei YamazakiRyoji NomuraSatoshi SeoHiroko AbeYasuo Nakamura
    • Shunpei YamazakiRyoji NomuraSatoshi SeoHiroko AbeYasuo Nakamura
    • H01L51/50
    • H01L33/42H01L27/3209H01L51/5088H01L51/5092H01L51/5278H01L2924/0002H01L2924/00
    • When a light-emitting element having an intermediate conductive layer between a plurality of light-emitting layers is formed, the intermediate conductive layer can have transparency; and thus, materials are largely limited and the manufacturing process of an element becomes complicated by a conventional method. A light-emitting element according to the present invention is formed by sequentially stacking a pixel electrode, a first light-emitting layer, an intermediate conductive layer (including an electron injecting layer and a hole-injecting layer, one of which is island-like), a second light-emitting layer and an opposite electrode. Therefore, the present invention can provide a light-emitting element typified by an organic EL element in which a range of choice of materials that can be used as the intermediate conductive layer is broadened extremely, and which can realize a high light-emitting efficiency, a low power consumption and a high reliability, and further a display device using the light-emitting element.
    • 当形成具有在多个发光层之间的中间导电层的发光元件时,中间导电层可以具有透明性; 因此材料受到很大限制,并且通过常规方法使元件的制造过程变得复杂。 根据本发明的发光元件通过顺序堆叠像素电极,第一发光层,中间导电层(包括电子注入层和空穴注入层,其中之一是岛状的 ),第二发光层和相对电极。 因此,本发明可以提供一种以有机EL元件为代表的发光元件,其中可以用作中间导电层的材料的选择范围极大,可以实现高的发光效率, 低功耗和高可靠性,以及使用该发光元件的显示装置。
    • 9. 发明申请
    • Light-Emitting Element and Display Device
    • 发光元件和显示设备
    • US20070222379A1
    • 2007-09-27
    • US11587843
    • 2005-05-17
    • Shunpei YamazakiRyoji NomuraSatoshi SeoHiroko AbeYasuo Nakamura
    • Shunpei YamazakiRyoji NomuraSatoshi SeoHiroko AbeYasuo Nakamura
    • H05B33/22
    • H01L33/42H01L27/3209H01L51/5088H01L51/5092H01L51/5278H01L2924/0002H01L2924/00
    • When a light-emitting element having an intermediate conductive layer between a plurality of light-emitting layers is formed, the intermediate conductive layer can have transparency; and thus, materials are largely limited and the manufacturing process of an element becomes complicated by a conventional method. A light-emitting element according to the present invention is formed by sequentially stacking a pixel electrode, a first light-emitting layer, an intermediate conductive layer (including an electron injecting layer and a hole-injecting layer, one of which is island-like), a second light-emitting layer and an opposite electrode. Therefore, the present invention can provide a light-emitting element typified by an organic EL element in which arange of choice of materials that can be used as the intermediate conductive layer is broadened extremely, and which can realize a high light-emitting efficiency, a low power consumption and a high reliability, and further a display device using the light-emitting element.
    • 当形成具有在多个发光层之间的中间导电层的发光元件时,中间导电层可以具有透明性; 因此材料受到很大限制,并且通过常规方法使元件的制造过程变得复杂。 根据本发明的发光元件通过顺序堆叠像素电极,第一发光层,中间导电层(包括电子注入层和空穴注入层,其中之一是岛状的 ),第二发光层和相对电极。 因此,本发明可以提供一种以有机EL元件为代表的发光元件,其中可以用作中间导电层的材料的选择范围极大,可以实现高的发光效率, 低功耗,高可靠性,以及使用该发光元件的显示装置。