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    • 31. 发明申请
    • Communication Through Phase-Conjugated Optical Variants
    • 通过相位共轭光学变体进行通信
    • US20130070786A1
    • 2013-03-21
    • US13411462
    • 2012-03-02
    • Xiang LiuAndrew Roman ChraplyvyRobert William TkachPeter J. Winzer
    • Xiang LiuAndrew Roman ChraplyvyRobert William TkachPeter J. Winzer
    • H04B10/00H04J14/00
    • C02F1/78H04B10/00H04B10/516H04B10/61Y02W10/37
    • An optical transport system configured to transmit at least two phase-conjugated optical variants carrying the same modulated symbols, with the phase-conjugated optical variants in being different from one another in one or more of polarization of light, the time of transmission, spatial localization, optical carrier wavelength, and subcarrier frequency during transmission. The two phase-conjugated optical variants can be generated by a single polarization-diversity transmitter to be orthogonally polarized, and propagate through an optical transmission link with the same wavelength and spatial path. The optical variants are detected and processed at the receiver in a manner that enables coherent summation of the corresponding electrical signals prior to constellation de-mapping. The coherent summation tends to cancel out the deleterious effects of nonlinear distortions imparted on the individual phase-conjugated optical variants in an optical fiber transmission link because said nonlinear distortions tend to be opposite to each other.
    • 一种光传送系统,被配置为传送携带相同调制符号的至少两个相位共轭光学变体,相位共轭光学变体在光的偏振中的一个或多个中的彼此不同,传输时间,空间定位 ,光载波波长,以及传输期间的副载波频率。 两个相位共轭的光学变型可以由单个偏振分集发射器产生,以被正交极化,并且通过具有相同波长和空间路径的光传输链路传播。 在接收机处以这样的方式检测和处理光学变体,使得能够在星座解映射之前对相应的电信号进行相干相加。 相干相加倾向于抵消由于所述非线性失真倾向于彼此相反而在光纤传输链路中赋予单个相位共轭光学变型的非线性失真的有害影响。
    • 32. 外观设计
    • Showerhead
    • USD1035830S1
    • 2024-07-16
    • US29938456
    • 2024-04-22
    • Xiang Liu
    • Xiang Liu
    • FIG. 1 is a front, right, top perspective view of a showerhead, showing my new design;
      FIG. 2 is a rear, left, bottom perspective view thereof;
      FIG. 3 is a front elevational view thereof;
      FIG. 4 is a rear elevational view thereof;
      FIG. 5 is a left side view thereof;
      FIG. 6 is a right side view thereof;
      FIG. 7 is a top plan view thereof;
      FIG. 8 is a bottom plan view thereof;
      FIG. 9 is an enlarged view of detail 9 in FIG. 1;
      FIG. 10 is an enlarged view of detail 10 in FIG. 3;
      FIG. 11 is a front, right, top perspective view of its enlarged in an alternate configuration;
      FIG. 12 is an enlarged view of detail 12 in FIG. 11; and,
      FIG. 13 is a front, right, top perspective view of its in an alternate configuration.
      The dashed broken lines in the figures are for the purposes of illustrating portions of the showerhead and form no part of the claimed design.
      The dash-dot-dash broken lines are for notating enlarged views and form no part of the claimed design.
    • 36. 发明授权
    • Touch screen, color filter substrate and manufacturing methods thereof
    • 触摸屏,滤色器基板及其制造方法
    • US08941596B2
    • 2015-01-27
    • US12782218
    • 2010-05-18
    • Zhenyu XieXu ChenXiang Liu
    • Zhenyu XieXu ChenXiang Liu
    • G06F3/041G06F3/045
    • G06F3/045G06F3/0414
    • A touch screen and a manufacturing method thereof, and a color filter substrate and a manufacturing method thereof are provided in the invention. The touch screen comprises a substrate, a plurality of touch regions defined by a plurality of first signal lines and a plurality of second signal lines are provided on the substrate. In each touch region, the first signal line is connected with a first piezoelectric switch, the second signal line is connected with a second piezoelectric switch, when the touch region is touched by a force the first piezoelectric switch and the second piezoelectric switch are turned on and transfer voltage signals respectively via the first signal line and the second signal line to determine the coordinate of the touched touch region.
    • 本发明提供了触摸屏及其制造方法以及滤色器基板及其制造方法。 触摸屏包括基板,在基板上设置由多条第一信号线和多条第二信号线限定的多个触摸区域。 在每个触摸区域中,第一信号线与第一压电开关连接,第二信号线与第二压电开关连接,当触摸区域被第一压电开关和第二压电开关导通的力接触时 并且分别经由第一信号线和第二信号线传送电压信号,以确定触摸的触摸区域的坐标。
    • 37. 发明授权
    • Thin film transistor array substrate and method for manufacturing the same and electronic device
    • 薄膜晶体管阵列基板及其制造方法及电子装置
    • US08895334B2
    • 2014-11-25
    • US13702115
    • 2012-08-17
    • Xiang LiuJianshe Xue
    • Xiang LiuJianshe Xue
    • H01L29/66H01L29/786H01L27/12
    • H01L29/66969H01L27/1225H01L27/1288H01L29/78693
    • Embodiments of the present invention disclose a thin film transistor array substrate and a method for manufacturing the same and an electronic device. The method for manufacturing the thin film transistor array substrate comprises: a first patterning process, in which a pattern of an active layer which is formed by a semiconductor layer and patterns of a source electrode and a drain electrode, which are separated from each other and are formed by a first metal layer, are formed on a transparent substrate; a second patterning process, in which a pattern of an insulating layer is formed on the transparent substrate subjected to the first patterning process, the pattern of the insulating layer comprising a contact via hole exposing the source electrode; and a third patterning process, in which a pattern of a pixel electrode, which is formed by a transparent conductive layer, and a pattern of a gate electrode, which is formed by a second metal layer, are formed on the transparent substrate subjected to the second patterning process, the pixel electrode being connected to the source electrode through the contact via hole.
    • 本发明的实施例公开了一种薄膜晶体管阵列基板及其制造方法和电子设备。 制造薄膜晶体管阵列基板的方法包括:第一图案化工艺,其中由半导体层形成的有源层的图案和源电极和漏电极的图案彼此分离,以及 由第一金属层形成,形成在透明基板上; 第二图案化工艺,其中在经过第一图案化工艺的透明基板上形成绝缘层的图案,所述绝缘层的图案包括暴露所述源电极的接触通孔; 以及第三图案化工艺,其中由透明导电层形成的像素电极的图案和由第二金属层形成的栅电极的图案形成在经受 第二图案化处理,像素电极通过接触通孔与源电极连接。
    • 39. 发明授权
    • Dynamic reconstruction of a calibration state of an absorption spectrometer
    • 吸收光谱仪的校准状态的动态重建
    • US08711357B2
    • 2014-04-29
    • US13235105
    • 2011-09-16
    • Xiang LiuJohn LewisonWenhai JiAlfred Feitisch
    • Xiang LiuJohn LewisonWenhai JiAlfred Feitisch
    • G01N21/00
    • G01J3/28G01J3/42G01N21/031G01N21/274G01N21/31G01N21/3504G01N21/3518G01N21/39G01N2021/399
    • A reference harmonic absorption curve of a laser absorption spectrometer, which can include a tunable or scannable laser light source and a detector, can have a reference curve shape and can include a first, second, or higher order harmonic signal of a reference signal generated by the detector in response to light passing from the laser light source through a reference gas or gas mixture. The reference gas or gas mixture can include one or more of a target analyte and a background gas expected to be present during analysis of the target analyte. The reference harmonic absorption curve can have been determined for the laser absorption spectrometer in a known or calibrated state. A test harmonic absorption curve having a test curve shape is compared with the reference harmonic absorption curve to detect a difference between the test curve shape and the reference curve shape. Operating and/or analytical parameters of the laser absorption spectrometer are adjusted to correct the test curve shape to reduce the difference between the test curve shape and the reference curve shape.
    • 可以包括可调谐或可扫描的激光光源和检测器的激光吸收光谱仪的参考谐波吸收曲线可以具有参考曲线形状,并且可以包括由第一,第二或更高次谐波信号产生的参考信号 检测器响应于从激光源通过参考气体或气体混合物的光。 参考气体或气体混合物可以包括目标分析物和预期在目标分析物的分析期间存在的背景气体中的一种或多种。 参考谐波吸收曲线可以在已知或校准状态下为激光吸收光谱仪确定。 将具有测试曲线形状的测试谐波吸收曲线与参考谐波吸收曲线进行比较,以检测测试曲线形状和参考曲线形状之间的差异。 调整激光吸收光谱仪的操作和/或分析参数以校正测试曲线形状,以减小测试曲线形状与参考曲线形状之间的差异。