一种液晶显示面板
    12.
    发明公开

    公开(公告)号:CN104503171A

    公开(公告)日:2015-04-08

    申请号:CN201410799546.8

    申请日:2014-12-19

    Inventor: 廖作敏 韩丙

    Abstract: 本发明涉及一种液晶显示面板,其包括数据驱动模块,位于显示区的平行排布的数据线,位于扇出区的数据线配线,其一端连接所述数据驱动模块的输出端,其另一端连接所述显示区的数据线。其中,所述显示区中的数据线具有不同的宽度。本发明能够在液晶显示面板空间紧张无法改变扇出区数据布线的情况下,通过在显示区中设置渐变的不等线宽的数据线来代替传统的等线宽的数据线,有效地减小整个液晶显示面板上两侧数据线与中间数据线之间的阻抗差异,进而改善液晶显示面板的色偏现象。

    光调制器
    13.
    发明公开

    公开(公告)号:CN103226251A

    公开(公告)日:2013-07-31

    申请号:CN201310038784.2

    申请日:2013-01-31

    Abstract: 一种光调制器,容易实现光强度比调整。光调制器具有光调制部,光调制部具有马赫-曾德尔型光波导和调制在马赫-曾德尔型光波导中传送的光波的调制电极,如下形成整体光波导:将光调制部在同一基板上以并联状态配置多个,分支一个输入波导以连接到各光调制部的马赫-曾德尔型光波导,并且将来自马赫-曾德尔型光波导的输出合波,以一个输出波导输出,其中,向各光调制部的调制电极施加相同强度的调制信号,对至少一部分光调制部设定包括光调制部的调制电极在内的机械构造,以使由该光调制部的调制信号调制的光输出的振幅值相对于由其他光调制部通过调制信号调制的光输出的振幅值最大的最大振幅值成为1/2n。

    光学数模转换器
    18.
    发明公开

    公开(公告)号:CN1652008A

    公开(公告)日:2005-08-10

    申请号:CN200410083225.4

    申请日:2004-09-29

    CPC classification number: G02F7/00 G02F2201/18

    Abstract: 本发明涉及通过利用连续波或脉冲激光信号来实现光学数模转换。该激光信号分成多个互相干光束,这些光束由数字数据序列的比特进行相移调制,以便转换成模拟信号。这些相移调制的光束被重新组合,以便实现想要的数模转换的光信号。

    블럭 광도파로가 제공된 광강도 변조기 열 구조
    19.
    发明授权
    블럭 광도파로가 제공된 광강도 변조기 열 구조 失效
    블럭광도파로가제공된광도변조기열구조

    公开(公告)号:KR100389823B1

    公开(公告)日:2003-07-02

    申请号:KR1020010044008

    申请日:2001-07-21

    Inventor: 조정환

    Abstract: A planar lightguide circuit with the optical intensity modulator array structure capable of generating less influence upon the adjacent channels, by inserting a block optical waveguide between optical channels formed in a planar lightguide circuit chip having the optical intensity modulator array. The circuit is provided with a plurality of channel arrays each including an input waveguide, a waveguide modulation region connected to the input waveguide, for modulating an input light wave, an output waveguide connected to the waveguide modulation region, for outputting the modulated light wave, and a modulating unit for modulating the light wave that is disposed in the vicinity of the waveguide modulation region. The circuit chip further includes at least one first channel having a first optical intensity modulator provided with said modulating means, at least one second channel having a second optical intensity modulator provided with the modulating unit, and at least one block waveguide arranged between the first and second channels, for blocking the mutual interference between the light waves in the adjacent channels.

    Abstract translation: 通过在形成于具有光强度调制器阵列的平面光导电路芯片中形成的光学通道之间插入块光波导,具有能够对相邻通道产生较小影响的光强度调制器阵列结构的平面光导电路。 该电路设置有多个通道阵列,每个通道阵列包括输入波导,连接到输入波导的波导调制区域,用于调制输入光波,输出波导连接到波导调制区域,用于输出调制光波, 以及调制单元,用于调制布置在波导调制区附近的光波。 该电路芯片还包括至少一个第一通道,该第一通道具有配备有所述调制装置的第一光强度调制器,至少一个第二通道具有配备有调制单元的第二光强度调制器,以及至少一个块波导,布置在第一和第二 第二通道,用于阻止相邻通道中的光波之间的相互干扰。

    A supercontinuum source
    20.
    发明公开
    A supercontinuum source 有权
    一个超连续源

    公开(公告)号:EP2770370A3

    公开(公告)日:2016-08-31

    申请号:EP14155841.1

    申请日:2014-02-19

    Abstract: A supercontinuum optical pulse source provides a combined supercontinuum. The supercontinuum optical pulse source comprises one or more seed pulse sources (13), and first and second optical amplifiers (7) arranged along first and second respective optical paths. The first and second optical amplifiers are configured to amplify one or more optical signals generated by said one or more seed pulse sources. The supercontinuum optical pulse source further comprises a first microstructured light-guiding member (9) arranged along the first optical path and configured to generate supercontinuum light responsive to an optical signal propagating along said first optical path, and a second microstructured light-guiding member (9) arranged along the second optical path and configured to generate supercontinuum light responsive to an optical signal propagating along said second optical path. The supercontinuum optical pulse source further comprises a supercontinuum-combining member (5) to combine supercontinuum generated in at least the first and second microstructured light-guiding members to form a combined supercontinuum. The supercontinuum-combining member comprises an output fibre, wherein the output fibre comprises a silica-based multimode optical fibre supporting a plurality of spatial modes at one or more wavelengths of the combined supercontinuum.

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