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    • 1. 发明授权
    • Driving technique for electrochromic displays of the segmented type
driving uncommon segment electrodes only
    • 仅用于分段式驱动不常用段电极的电致变色显示器的驱动技术
    • US4209770A
    • 1980-06-24
    • US871040
    • 1978-01-20
    • Hiroshi HamadaHiroshi TakeYasuhiko InamiSadatoshi TakechiHisashi Uede
    • Hiroshi HamadaHiroshi TakeYasuhiko InamiSadatoshi TakechiHisashi Uede
    • G09G3/16G06F3/14G09F9/32
    • G09G3/16
    • A driving technique is provided for an electro-optical display which includes an electrochromic material and a predetermined number of display electrodes, different combinations of the display electrodes defining different desired display patterns. The electrochromic phenomenon is developed within the electro-optical display upon a flow of current supplied through the display electrodes. In transition of a visual display from a specific display pattern to another, voltages are applied to only the one or more display electrodes which are not common to the two display patterns, while no voltages are applied to the one or more display electrodes common to the two display patterns. Applications of a coloration voltage to particular one or more display electrodes and a bleaching voltage to different one or more display electrodes in transition of a visual display are initiated at a same time to reduce the time period required to transcend from one visual display to another.
    • 提供了一种用于电光显示器的驱动技术,其包括电致变色材料和预定数量的显示电极,显示电极的不同组合限定了不同的所需显示图案。 在通过显示电极提供的电流流动下,在电光显示器内形成电致变色现象。 在将视觉显示从特定显示图案转换到另一显示图案的过程中,仅向两个显示图案不共同的一个或多个显示电极施加电压,而没有电压施加到一个或多个共同的显示电极 两种显示模式。 同时启动着色电压对特定一个或多个显示电极的应用和漂白电压到视觉显示器转换中的不同一个或多个显示电极,以减少从一个视觉显示器到另一视觉显示器所需的时间段。
    • 4. 发明授权
    • Uniform coloration control in an electrochromic display of the segmented
type
    • 分段式电致变色显示中的均匀着色控制
    • US4210907A
    • 1980-07-01
    • US893513
    • 1978-04-04
    • Hiroshi HamadaHiroshi TakeYasuhiko InamiHisashi Uede
    • Hiroshi HamadaHiroshi TakeYasuhiko InamiHisashi Uede
    • G09F9/30G02F1/163G09G3/16G09G3/19G06F3/14G09F9/32
    • G09G3/16
    • A driving system is provided for an electrochromic display device in which the coloration state is maintained for several hours through several days of the removal of the coloration voltage as long as the electrochromic display device is held in an electrically opened state. The electrochromic display device includes a predetermined number of display segments, each of the combinations of the display segments defining a different one of the desired display patterns. The display segments placed in the coloration state are electrically connected to each other during the memory period in order to uniform the coloration degree of each of the selected display segments. In a preferred form, a detection means is provided for detecting the potential of the selected display segments, which are held in the memory coloration state. The write-in, or, coloration operation is again conducted when the potential of the selected display segments becomes higher than a preselected level.
    • 为电致变色显示装置提供一种驱动系统,其中只要电致变色显示装置保持在电打开状态,着色状态就可以在去除着色电压的几天内保持几个小时。 电致变色显示装置包括预定数量的显示段,显示区段的每个组合限定所需显示图案中的不同的一个。 放置在着色状态的显示段在存储期间彼此电连接,以便使所选择的显示段中的每一个的着色程度均匀。 在优选形式中,提供检测装置,用于检测保持在存储器着色状态中的所选择的显示段的电位。 当所选择的显示段的电位变得高于预选电平时,再次进行写入或着色操作。
    • 6. 发明授权
    • Electrochromic display devices
    • 电致变色显示装置
    • US4399436A
    • 1983-08-16
    • US268410
    • 1981-05-29
    • Hiroshi HamadaKohzo YanoKatubumi KoyanagiHiroshi TakeYasuhiko Inami
    • Hiroshi HamadaKohzo YanoKatubumi KoyanagiHiroshi TakeYasuhiko Inami
    • G09F9/30G02F1/163G09G3/16G09G3/19
    • G09G3/16
    • An electrochromic display device comprises a plurality of display segmented electrodes and first additional electrodes, a layer of an electrochromic material in contact with each of the display segmented electrodes and the first additional electrodes, a first connecting circuit for selectively connecting each of the display segmented electrodes into one of two groups, depending on a display pattern to be indicated, a counting circuit for counting the electrodes and determining the difference in display area between the two groups of display segmented electrodes, a circuit responsive to the difference in display area for connecting each of the first additional electrodes into one of the two groups of the display segmented electrodes, a power supply for supplying power to each of the two groups of the first additional electrodes and the display segmented electrodes, and a second additional electrode for keeping the total amount of charge for coloring all the display electrodes constant.
    • 电致变色显示装置包括多个显示分段电极和第一附加电极,与每个显示分段电极和第一附加电极接触的电致变色材料层,用于选择性地连接每个显示分段电极的第一连接电路 根据要指示的显示图案,根据要指示的显示图案,计数电路并确定两组显示分段电极之间的显示区域的差异的计数电路,响应于显示区域的差异的电路,用于连接每个 的第一附加电极分成两组显示分段电极中的一组,用于向两组第一附加电极和显示器分段电极中的每一组供电的电源和用于保持总量的第二附加电极 的所有显示电极着色恒定。
    • 7. 发明授权
    • Method for manufacturing an electrochromic display device
    • 电致变色显示装置的制造方法
    • US4505021A
    • 1985-03-19
    • US434502
    • 1982-10-15
    • Hiroshi HamadaHiroshi TakeKozo YanoYasuhiko Inami
    • Hiroshi HamadaHiroshi TakeKozo YanoYasuhiko Inami
    • G02F1/153G02F1/17
    • G02F1/1533Y10T29/417
    • A method for preparing an electrochromic display device comprising first and second electrochromic layers and a solid electrolyte interposed therebetween, comprises the steps of forming a conductive film on a substrate, forming an insulating film, over the entire surface of the conductive film forming a resist at portions on the insulating film other than a display pattern and lead-in electrodes, removing the insulating film at the display pattern and the lead-in electrodes, forming the electrochromic material layers and the solid electrolyte over the entire portions other than the lead-in electrode, removing the resist and the electrochromic layers and the solid electrolyte as formed on the insulating film, and forming a second electrode on the second electrochromic layer.
    • 一种制备包括第一和第二电致变色层和固体电解质的电致变色显示装置的方法,包括以下步骤:在基板上形成导电膜,形成绝缘膜,在形成抗蚀剂的导电膜的整个表面上 除了显示图案和引入电极之外的绝缘膜上的部分,去除显示图案上的绝缘膜和引入电极,在引入之外的整个部分上形成电致变色材料层和固体电解质 电极,除去形成在绝缘膜上的抗蚀剂和电致变色层和固体电解质,并在第二电致变色层上形成第二电极。