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    • 2. 发明授权
    • RGBW OLED display for extended lifetime and reduced power consumption
    • RGBW OLED显示屏可延长使用寿命并降低功耗
    • US08502445B2
    • 2013-08-06
    • US13185063
    • 2011-07-18
    • Peter LevermoreWoo-Young SoMichael WeaverMichael Hack
    • Peter LevermoreWoo-Young SoMichael WeaverMichael Hack
    • H01L51/00
    • H01L27/3213H01L51/5036
    • A first device is provided that includes a first light source that has at least one organic light emitting device that may emit near white light having a correlated color temperature (CCT) that is less than 6504K. The first device may also have a plurality of pixels comprising a first sub-pixel having a color filter in optical communication with the first light source that passes light having a peak wavelength between 400 and 500 nm. A second sub-pixel having a color filter in optical communication with the first light source that passes light having a peak wavelength between 500 and 580 nm. A third sub-pixel having a color filter in optical communication with the first light source that passes light having a peak wavelength between 580 and 700 nm. A fourth sub-pixel that emits near white light that may have a CCT that is less than 6504 K.
    • 提供了第一装置,其包括具有至少一个有机发光装置的第一光源,所述有机发光装置可以发射具有小于6504K的相关色温(CCT)的白光附近。 第一装置还可以具有多个像素,其包括具有滤色器的第一子像素,第一子像素与第一光源光通信,所述滤色器透过峰值波长在400和500nm之间的光。 具有与第一光源光通信的彩色滤光片的第二子像素,其通过具有500和580nm之间的峰值波长的光。 具有与第一光源光通信的滤色器的第三子像素,所述滤色器使峰值波长在580和700nm之间的光通过。 发射近白光的第四子像素,其可以具有小于6504K的CCT。
    • 4. 发明授权
    • Thin film transistor and method of manufacturing the same
    • 薄膜晶体管及其制造方法
    • US06706573B2
    • 2004-03-16
    • US10114463
    • 2002-04-03
    • Woo-Young So
    • Woo-Young So
    • H01L2184
    • H01L29/78696H01L29/66757
    • A method of manufacturing a thin film transistor that provides high electric field mobility is disclosed. The method comprising: a) forming an amorphous silicon layer and a blocking layer on an insulating substrate; b) forming a photoresist layer having first and second photoresist patterns on the blocking layer, the first and second photoresist patterns spaced apart from each other; c) etching the blocking layer using the first photoresist pattern as a mask to form first and second blocking patterns; d) reflowing the photoresist layer, so that the first and second photoresist patterns abut on each other to entirely cover the first and second blocking patterns; e) forming a metal layer over the entire surface of the insulating substrate; f) removing the photoresist layer to expose the blocking layer and an offset region between the blocking layer and the metal layer; g) crystallizing the amorphous silicon layer to form a poly silicon layer, wherein a portion of the amorphous silicon layer directly contacting the first metal layer is crystallized through a metal induced crystallization (MIC), and the remaining portion of the amorphous silicon layer is crystallized through a metal induced lateral crystallization (MILC), so that a MILC front exists on a portion of the poly silicon layer between the first and second blocking patterns; h) etching the poly silicon layer using the first and second blocking patterns as a mask to form first and second semiconductor layers and to remove the MILC front; and i) removing the first and second blocking patterns.
    • 公开了制造提供高电场迁移率的薄膜晶体管的方法。 该方法包括:a)在绝缘基板上形成非晶硅层和阻挡层; b)在所述阻挡层上形成具有第一和第二光致抗蚀剂图案的光致抗蚀剂层,所述第一和第二光致抗蚀剂图案彼此间隔开; c)使用第一光致抗蚀剂图案作为掩模蚀刻阻挡层以形成第一和第二阻挡图案; d)回流光致抗蚀剂层,使得第一和第二光致抗蚀剂图案彼此邻接以完全覆盖第一和第二阻挡图案; e)在绝缘基板的整个表面上形成金属层; f)去除光致抗蚀剂层以暴露阻挡层和阻挡层与金属层之间的偏移区域; g)使非晶硅层结晶以形成多晶硅层,其中直接接触第一金属层的部分非晶硅层通过金属诱导结晶(MIC)结晶,并且非晶硅层的剩余部分结晶 通过金属诱导横向结晶(MILC),使得MILC前沿存在于第一和第二阻挡图案之间的多晶硅层的一部分上; h)使用第一和第二阻挡图案作为掩模蚀刻多晶硅层以形成第一和第二半导体层并去除MILC前面; 和i)去除第一和第二阻挡图案。
    • 5. 发明授权
    • Power-efficient RGBW OLED display
    • 高效率RGBW OLED显示屏
    • US09123667B2
    • 2015-09-01
    • US13252491
    • 2011-10-04
    • Woo-Young SoMichael Weaver
    • Woo-Young SoMichael Weaver
    • H01L27/32H01L51/54H01L51/50
    • H01L27/3213H01L27/322H01L51/5036
    • Embodiments described herein may provide for devices comprising a power efficient RGBW display. In some embodiments, a first device may be provided. The first device may include at least one pixel. The pixel may include a first sub-pixel, a second sub-pixel, a third sub-pixel, and a fourth sub-pixel. The first sub-pixel may include a first color filter in optical communication with a first organic light emitting device. The second sub-pixel may include a second color filter in optical communication with a second organic light emitting device. The third sub-pixel may include a third color filter in optical communication with a third organic light emitting device. The fourth sub-pixel may include a fourth organic light emitting device and emits near white light. At least one of the first sub-pixel or the second sub-pixel may include a color conversion layer in optical communication with the first or second organic light emitting device.
    • 本文描述的实施例可以提供包括功率有效的RGBW显示器的设备。 在一些实施例中,可以提供第一设备。 第一设备可以包括至少一个像素。 像素可以包括第一子像素,第二子像素,第三子像素和第四子像素。 第一子像素可以包括与第一有机发光器件光学通信的第一滤色器。 第二子像素可以包括与第二有机发光器件光学通信的第二滤色器。 第三子像素可以包括与第三有机发光器件光学通信的第三滤色器。 第四子像素可以包括第四有机发光器件并且发射近白光。 第一子像素或第二子像素中的至少一个可以包括与第一或第二有机发光器件光学通信的颜色转换层。
    • 6. 发明申请
    • Method For Driving Quad-Subpixel Display
    • 驱动四子像素显示的方法
    • US20120256938A1
    • 2012-10-11
    • US13082052
    • 2011-04-07
    • Woo-Young So
    • Woo-Young So
    • G09G5/02
    • G09G3/3208G09G2300/0443G09G2300/0452G09G2320/046G09G2320/0693G09G2340/06
    • A device that may be used as a multi-color pixel is provided. The device has a first organic light emitting device, a second organic light emitting device, a third organic light emitting device, and a fourth organic light emitting device. The device may be a pixel of a display having four sub-pixels. The first device may emit red light, the second device may emit green light, the third device may emit light blue light and the fourth device may emit deep blue light. A method of displaying an image on such a display is also provided, where the image signal may be in a format designed for use with a three sub-pixel architecture, and the method involves conversion to a format usable with the four sub-pixel architecture.
    • 提供了可以用作多色像素的装置。 该器件具有第一有机发光器件,第二有机发光器件,第三有机发光器件和第四有机发光器件。 该装置可以是具有四个子像素的显示器的像素。 第一装置可以发射红光,第二装置可以发射绿光,第三装置可以发射浅蓝光,并且第四装置可以发射深蓝光。 还提供了一种在这种显示器上显示图像的方法,其中图像信号可以是被设计为与三个子像素结构一起使用的格式,并且该方法涉及转换成可用于四个子像素结构的格式 。