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    • 33. 发明授权
    • Transflective liquid crystal display
    • 透光液晶显示屏
    • US07714964B2
    • 2010-05-11
    • US11565121
    • 2006-11-30
    • Jae-Hyun KimJun-Young LeeSung-Wook Kang
    • Jae-Hyun KimJun-Young LeeSung-Wook Kang
    • G02F1/1335G02F1/1343
    • G02F1/133553G02F1/133555
    • A transflective LCD having a transmissive area and a reflective area according to an exemplary embodiment of the present invention includes a first substrate, a plurality of pixel electrodes formed on the first substrate and including a plurality of reflective electrodes having protrusion patterns and depression patterns, a second substrate facing the first substrate, a plurality of color filters formed on the second substrate and having a light hole in the reflective area, and a common electrode formed on the color filters. The size of the protrusion patterns in a first reflective area having the light hole is different from that in a second reflective area having no light hole, and the size of the protrusion patterns at the center of the first reflective area may be larger than that in the second reflective area.
    • 根据本发明的示例性实施例的具有透射区域和反射区域的透反射型LCD包括第一基板,形成在第一基板上的多个像素电极,并且包括具有突出图案和凹陷图案的多个反射电极, 面对第一基板的第二基板,形成在第二基板上并在反射区域中具有光孔的多个滤色器,以及形成在滤色器上的公共电极。 具有光孔的第一反射区域中的突起图案的尺寸与不具有光孔的第二反射区域中的突起图案的尺寸不同,并且第一反射区域的中心处的突起图案的尺寸可以大于 第二反射区域。
    • 38. 发明授权
    • Method and device for sensing the quantity of ink remaining in an inkjet printer
    • 用于感测喷墨打印机中剩余墨水量的方法和装置
    • US06188413B1
    • 2001-02-13
    • US09144541
    • 1998-08-31
    • Sung-Wook Kang
    • Sung-Wook Kang
    • B41J2195
    • B41J2/17566
    • A method and a device for sensing the quantity of remaining ink of an ink-jet printer, the device including a memory for storing printing data from a computer, a jetting device for outputting a printed output corresponding to the printing data in the memory through an inkjetting motion, a scanning device for scanning in wider scanning width than an inkjetting width by movement in the same course, forward or returning direction, as the jetting device, the jetting device and the scanning device using the same driving unit, a picture memory for storing picture or scanning data identified through the scanning device, and a CPU for sensing the quantity of remaining ink by comparing the printing data in the print data memory with the scanning data in the picture memory.
    • 一种用于感测喷墨打印机的剩余墨水量的方法和装置,所述装置包括用于存储来自计算机的打印数据的存储器,用于通过以下步骤输出对应于打印数据的打印输出的喷射装置: 作为喷墨动作的扫描装置,作为喷射装置,喷射装置和使用该驱动装置的扫描装置,以相同的路线,正向或返回方向的移动,以比喷墨宽度更宽的扫描宽度进行扫描的扫描装置, 存储通过扫描装置识别的图像或扫描数据;以及CPU,用于通过将打印数据存储器中的打印数据与图像存储器中的扫描数据进行比较来感测剩余墨水量。
    • 39. 发明授权
    • Device for uncurling thermal sensitive recording paper
    • 热敏记录纸不灵敏的装置
    • US5760814A
    • 1998-06-02
    • US678053
    • 1996-07-12
    • Sung-Wook Kang
    • Sung-Wook Kang
    • B41J11/00B41J15/00B41J15/04B65H16/02B65H23/34B41J2/32
    • B41J15/042B41J11/0005B41J15/00
    • A device for uncurling thermal sensitive recording paper includes a paper container having first and second arcuate portions that are rotatably connected to form a cylindrical body. The paper container accommodates installation of a roll of the thermal sensitive recording paper. A projection is formed on a first end of the first arcuate portion for engaging and applying a predetermined pressure upon the thermal sensitive recording paper. A groove is formed between the projection and a first end of the second arcuate portion to provide a path through which the thermal sensitive recording paper travels. A locking member is positioned at the first end of the first arcuate portion and provides a slot to accommodate the connection between the first and second arcuate portions. A pole extends outwardly from the first end of the second arcuate portion and is inserted into the slot to establish the connection between the first and second arcuate portions. A hinge rotatably connects second ends of the first and second arcuate portions, respectively. The second ends are positioned respectively opposite the first ends. A thermal printing head is positioned adjacent to the paper container for generating an image on the thermal sensitive recording paper as the thermal sensitive recording paper is withdrawn from the paper container. A platen roller is formed on a first side of the thermal printing head for withdrawing the thermal sensitive recording paper from the paper container.
    • 用于解除热敏记录纸的装置包括具有可旋转地连接以形成圆柱体的第一和第二弓形部分的纸容器。 纸容器容纳热敏记录纸卷的安装。 在第一弓形部分的第一端部上形成突起,用于在热敏记录纸上接合和施加预定的压力。 在突起和第二弓形部分的第一端之间形成凹槽,以提供热敏记录纸通过的路径。 锁定构件定位在第一弓形部分的第一端处并且提供狭槽以适应第一和第二弓形部分之间的连接。 杆从第二弓形部分的第一端向外延伸并插入槽中以建立第一和第二弧形部分之间的连接。 铰链分别可旋转地连接第一和第二弓形部分的第二端。 第二端分别与第一端相对。 当热敏记录纸从纸容器中取出时,热敏打印头邻近纸容器定位,用于在热敏记录纸上产生图像。 压印辊形成在热敏打印头的第一侧上,用于从纸容器中取出热敏记录纸。
    • 40. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US08665193B2
    • 2014-03-04
    • US11488405
    • 2006-07-18
    • Eun-Hee HanHee-Seop KimJun-Young LeeChang-Hun LeeJun-Woo LeeSung-Wook Kang
    • Eun-Hee HanHee-Seop KimJun-Young LeeChang-Hun LeeJun-Woo LeeSung-Wook Kang
    • G09G3/36
    • G09G3/3648G09G2300/0491G09G2310/06G09G2320/02
    • An OCB (Optically Compensated Bend) liquid crystal display in which impulse driving is performed such that an impulse data voltage is applied between normal data voltages used for displaying an image. The impulse data voltage is divided into a first impulse data voltage and a second impulse data voltage having a voltage value that will not break a bent alignment of the OCB liquid crystals. Referring to the application of the first impulse data voltage between the normal data voltages as first impulse driving and the application of the second impulse data voltage between the normal data voltages as second impulse driving, the second impulse driving is performed at every two or more of the first impulse drivings, so as to not break the bent alignment of the liquid crystals and to thereby improve luminance of the LCD.
    • 执行脉冲驱动的OCB(光学补偿弯曲)液晶显示器,使得在用于显示图像的正常数据电压之间施加脉冲数据电压。 脉冲数据电压被分成第一脉冲数据电压和具有不会破坏OCB液晶的弯曲对准的电压值的第二脉冲数据电压。 参考在作为第一脉冲驱动的正常数据电压之间的第一脉冲数据电压的应用和作为第二脉冲驱动的正常数据电压之间的第二脉冲数据电压的施加之间,第二脉冲驱动在每两个或更多个 第一脉冲驱动,以便不破坏液晶的弯曲对准,从而提高LCD的亮度。