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    • 55. 发明授权
    • High resolution display panel with emissive organic layers emitting light of different colors
    • 具有发射不同颜色的光的发射有机层的高分辨率显示面板
    • US09190456B2
    • 2015-11-17
    • US13456043
    • 2012-04-25
    • Gholamreza Chaji
    • Gholamreza Chaji
    • H05B33/14H01J9/00H01L27/32
    • H01L27/322H01L27/3209H01L27/3213H01L27/3216H01L27/3218
    • An arrangement for a high resolution active matrix display includes organic emissive layers of distinct colors each deposited across continuous regions so as to include more than one pixel emissive region. Color filters are situated to partially block light from at least some of the emissive regions such that primary additive colors are transmitted from distinct subsets of pixels. The emissive layers may be deposited in alternating parallel stripes along rows or columns of the display, or may be oriented perpendicularly with respect to one another such that the emissive layers overlap in the emissive regions of at least some pixels. In some examples, red, green, and blue of pixels are arranged in regular patterns across the display and with the emissive regions for the blue pixels forming a relatively larger area of the display than either the red or green pixels.
    • 用于高分辨率有源矩阵显示器的装置包括各自不同颜色的有机发光层,每个沉积在连续区域上,以便包括多于一个的像素发射区域。 滤色器被设置为部分地阻挡来自至少一些发射区域的光,使得主要添加剂颜色从不同的像素子集传输。 发光层可以沿着显示器的行或列以交替的平行条纹沉积,或者可以相对于彼此垂直取向,使得发光层在至少一些像素的发射区域中重叠。 在一些示例中,红色,绿色和蓝色的像素以规则的图案排列在显示器上,并且蓝色像素的发射区域形成比红色或绿色像素更大的显示区域。
    • 56. 发明申请
    • HIGH RESOLUTION DISPLAY ARCHITECTURE
    • 高分辨率显示架构
    • US20130285537A1
    • 2013-10-31
    • US13456043
    • 2012-04-25
    • Gholamreza Chaji
    • Gholamreza Chaji
    • H05B33/14H01J9/00
    • H01L27/322H01L27/3209H01L27/3213H01L27/3216H01L27/3218
    • An arrangement for a high resolution active matrix display includes organic emissive layers of distinct colors each deposited across continuous regions so as to include more than one pixel emissive region. Color filters are situated to partially block light from at least some of the emissive regions such that primary additive colors are transmitted from distinct subsets of pixels. The emissive layers may be deposited in alternating parallel stripes along rows or columns of the display, or may be oriented perpendicularly with respect to one another such that the emissive layers overlap in the emissive regions of at least some pixels. In some examples, red, green, and blue of pixels are arranged in regular patterns across the display and with the emissive regions for the blue pixels forming a relatively larger area of the display than either the red or green pixels.
    • 用于高分辨率有源矩阵显示器的装置包括各自不同颜色的有机发光层,每个沉积在连续区域上,以便包括多于一个的像素发射区域。 滤色器被设置为部分地阻挡来自至少一些发射区域的光,使得主要添加剂颜色从不同的像素子集传输。 发光层可以沿着显示器的行或列以交替的平行条纹沉积,或者可以相对于彼此垂直取向,使得发光层在至少一些像素的发射区域中重叠。 在一些示例中,红色,绿色和蓝色的像素以规则的图案排列在显示器上,并且蓝色像素的发射区域形成比红色或绿色像素更大的显示区域。
    • 57. 发明申请
    • THIN FILM TRANSISTOR INCLUDING A NANOCONDUCTOR LAYER
    • 包括纳米管层的薄膜晶体管
    • US20130032784A1
    • 2013-02-07
    • US13563930
    • 2012-08-01
    • Gholamreza ChajiMaryam Moradi
    • Gholamreza ChajiMaryam Moradi
    • H01L29/786H01L21/336B82Y40/00
    • H01L29/0673B82Y10/00H01L29/78696H01L51/0048
    • A thin film transistor having a channel region including a nanoconductor layer. The nanoconductor layer can be a dispersed monolayer of nanotubes or nanowires formed of carbon. The thin film transistor generally includes a gate terminal insulated by a dielectric layer. The nanoconductor layer is placed on the dielectric layer and a layer of semiconductor material is developed over the nanoconductor layer to form the channel region of the thin film transistor. A drain terminal and a source terminal are then formed on the semiconductor layer. At low field effect levels, the operation of the thin film transistor is dominated by the semiconductor layer, which provides good leakage current performance. At high field effect levels, the charge transfer characteristics of the channel region are enhanced by the nanoconductor layer such that the effective mobility of the thin film transistor is enhanced.
    • 一种薄膜晶体管,其具有包括纳米电导体层的沟道区。 纳米结层可以是由碳形成的纳米管或纳米线的分散单层。 薄膜晶体管通常包括由电介质层绝缘的栅极端子。 将纳米导体层放置在电介质层上,并在纳米导体层上形成半导体材料层以形成薄膜晶体管的沟道区。 然后在半导体层上形成漏极端子和源极端子。 在低场效应水平下,薄膜晶体管的工作由半导体层主导,提供良好的漏电流性能。 在高场效应电平下,通过纳米电导体层增强了沟道区的电荷转移特性,从而提高了薄膜晶体管的有效迁移率。