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    • 126. 发明授权
    • Self-aligned selective metal contact to source/drain diffusion region
    • 自对准选择性金属接触源极/漏极扩散区域
    • US08405132B2
    • 2013-03-26
    • US12910735
    • 2010-10-22
    • Peter Chang
    • Peter Chang
    • H01L29/78
    • H01L29/41783H01L21/28079H01L21/28568H01L21/288H01L21/76879H01L21/76885H01L21/76897H01L23/485H01L29/495H01L29/665H01L29/66545H01L2221/1094H01L2924/0002H01L2924/00
    • A transistor structure includes a semiconductor substrate with a first surface, a diffusion region at the first surface of the substrate, a sacrificial gate formed on the diffusion region, and insulating side walls formed adjacent to the sacrificial gate. A metal gate is formed by etching out the sacrificial gate and filling in the space between the insulating side walls with gate metals. Silicided source and drain contacts are formed over the diffusion region between the side walls of two adjacent aluminum gates. One or more oxide layers are formed over the substrate. Vias are formed in the oxide layers by plasma etching to expose the silicided source and drain contacts, which simultaneously oxidizes the aluminum gate metal. A first metal is selectively formed over the silicided contact by electroless deposition, but does not deposit on the oxidized aluminum gate.
    • 晶体管结构包括具有第一表面的半导体衬底,在衬底的第一表面处的扩散区域,形成在扩散区域上的牺牲栅极,以及邻近牺牲栅极形成的绝缘侧壁。 通过蚀刻牺牲栅极并用栅极金属填充绝缘侧壁之间的空间来形成金属栅极。 在两个相邻铝门的侧壁之间的扩散区域上形成硅化源极和漏极触点。 在衬底上形成一个或多个氧化物层。 通过等离子体蚀刻在氧化物层中形成通孔以暴露硅化物源极和漏极触点,其同时氧化铝栅极金属。 通过无电沉积在硅化物接触上选择性地形成第一金属,但不沉积在氧化的铝栅极上。
    • 127. 发明授权
    • Time base correction in video systems
    • 视频系统中的时基校正
    • US07649569B2
    • 2010-01-19
    • US11135724
    • 2005-05-24
    • Peter ChangRajitha Padakanti
    • Peter ChangRajitha Padakanti
    • H04N9/475
    • H04N5/126
    • System and method for digitally correcting time base errors in video display systems. A preferred embodiment comprises 1) correcting time base errors in a first portion of a horizontal line of video information, wherein the first correcting makes use of an error estimate for the horizontal line of video information and a preceding horizontal line of video information, 2) correcting time base errors in a second portion of a horizontal line of video information, wherein the second correcting makes use of an error estimate for the horizontal line of video information, and 3) repeating the first correcting and the second correcting for remaining horizontal lines of video information in the digitized video signal.
    • 用于数字校正视频显示系统中的时基误差的系统和方法。 优选实施例包括:1)校正视频信息的水平行的第一部分中的时基误差,其中第一校正利用视频信息的水平行和视频信息的前一水平行的误差估计,2) 在视频信息的水平线的第二部分中校正时基误差,其中所述第二校正使用视频信息的水平线的误差估计,以及3)对于剩余的水平线重复第一校正和第二校正 数字化视频信号中的视频信息。
    • 129. 发明授权
    • Method for treating inter-frame motion in a composite video signal
    • 在复合视频信号中处理帧间运动的方法
    • US07443454B2
    • 2008-10-28
    • US11240718
    • 2005-10-01
    • Ramesh M. ChandrasekaranWeider Peter ChangKarl Renner
    • Ramesh M. ChandrasekaranWeider Peter ChangKarl Renner
    • H04N9/78H04N5/21
    • H04N5/144
    • A method for treating inter-frame motion in a series of consecutive signal frames of a composite video signal includes the steps of, for an evaluation pixel position in each frame of a test frame-set including three successive signal frames: (a) determining whether there is at least a predetermined difference in chroma component or in luma component signals at the evaluation pixel; (b) if in step (a) there is not a predetermined difference in chroma component signals or in luma component signals, determining whether a first and third frame of the test frame-set are substantially identical; (c) determining whether at least a first predetermined number of the luma or chroma component signals in the test frame-set present at least one false color; and (d) determining whether at least a second predetermined number of high frequency luma component signals exist in the test frame-set.
    • 一种用于处理复合视频信号的一系列连续信号帧中的帧间运动的方法包括以下步骤:对于包括三个连续信号帧的测试帧集合的每个帧中的评估像素位置:(a)确定是否 评估像素处的色度分量或亮度分量信号中至少存在预定的差异; (b)如果在步骤(a)中色度分量信号或亮度分量信号中没有预定的差异,则确定测试帧组的第一和第三帧是否基本相同; (c)确定测试帧组中至少第一预定数量的亮度或色度分量信号是否存在至少一种假色; 和(d)确定在测试帧组中是否存在至少第二预定数量的高频亮度分量信号。