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    • 4. 发明授权
    • Coordinate detecting apparatus
    • 坐标检测装置
    • US4680430A
    • 1987-07-14
    • US706224
    • 1985-02-27
    • Kazuo YoshikawaToru AsanoHisashi YamaguchiHideaki TakizawaShizuo Andoh
    • Kazuo YoshikawaToru AsanoHisashi YamaguchiHideaki TakizawaShizuo Andoh
    • G06K11/00G06F3/03G06F3/033G06F3/045G08C21/00
    • G06F3/045
    • A coordinate detecting apparatus for determining the coordinate data of a point on a plane by indicating the point with a touch of a fingertip or other load to the point. The apparatus comprises a transparent resistive film forming the plane (touch panel) and a buffer circuit operating as a voltage follower circuit having substantially infinate input impedance. The buffer amplifier is operatively connected between each selected pair of facing ends of a substantially rectangular region of the resistive film, and equalizes the potentials at the ends. The change of the impedance between one of the ends and the ground is detected in accordance with the touch of the fingertip to the touch panel and is used as an original coordinate data. Further modifications concerning the avoidance of degradation in the detection quality due to fluctuations of the impedance provided by the touch of a fingertip, for example, and the methods to perform 2-dimensional coordinate detection are described.
    • 一种坐标检测装置,用于通过用指尖的触摸或其他负载指示点来确定平面上的点的坐标数据。 该装置包括形成平面(触摸面板)的透明电阻膜和作为基本上具有输入阻抗的电压跟随器电路的缓冲电路。 缓冲放大器可操作地连接在电阻膜的大致矩形区域的每个所选择的一对相对端之间,并且使末端的电位相等。 根据触摸面板的指尖的触摸检测端部和地面之间的阻抗的变化,并将其用作原始坐标数据。 描述了关于避免由于触摸触摸提供的阻抗的波动引起的检测质量退化的进一步修改以及执行二维坐标检测的方法。
    • 6. 发明授权
    • Gas discharge panel
    • 排气面板
    • US4185229A
    • 1980-01-22
    • US810747
    • 1977-06-28
    • Kazuo YoshikawaShizuo Andoh
    • Kazuo YoshikawaShizuo Andoh
    • G09G3/29H01J17/49H05B37/00H05B39/00H05B41/00
    • H01J11/00G09G3/29G09G3/285
    • A pulse driven self-shift plasma display panel characterized by having meander type shift channels for shifting a discharge spot. Each meander type shift channel is composed of an array of discharge cells defined in the discharge gap at the crossing points of electrodes arranged on parallel substrates, the electrodes on one substrate being oriented generally transversely to those on the other substrate, and barrier structure for determining the meander route being provided. Data in the form of a discharge spot is written in at one end of a shift channel and is shifted by the pulse shift voltages with various phases over the meander route for display at the desired positions. The barrier structure may also be formed using photo-luminescent phosphor material to create desired colored display effects.
    • 一种脉冲驱动的自移动等离子体显示面板,其特征在于具有用于移位放电点的曲折型移位通道。 每个弯曲型移位通道由在排列在平行基板上的电极的交叉点处的放电间隙中限定的放电单元的阵列组成,一个基板上的电极大致横向于另一个基板上的电极,以及用于确定 提供曲折路线。 放电点形式的数据被写入移位通道的一端,并通过在曲折路径上的各种相位的脉冲偏移电压移位,以便在期望的位置显示。 也可以使用光致发光荧光体材料形成屏障结构,以产生期望的彩色显示效果。
    • 10. 发明授权
    • Gas discharge panel and method for driving the same
    • US4044349A
    • 1977-08-23
    • US507797
    • 1974-09-20
    • Shizuo AndohNorihiko Nakayama
    • Shizuo AndohNorihiko Nakayama
    • G09G3/28H01J11/10H01J11/12H01J11/28G06F3/14
    • H01J11/00G09G3/291G09G3/2986
    • A gas discharge panel includes several pairs of column (X) electrodes arranged on a first substrate and several pairs of row (Y) electrodes arranged on a second substrate, the column and row electrodes being orthogonally oriented and in spaced, opposed relation to define therebetween a gap filled with an ionizable gas. In a first driving configuration, a corresponding electrode of each pair of (X) electrodes is selectively driven by an (X) address driver and similarly a corresponding one of each of the (Y) electrode pairs is selectively driven by a (Y) address driver. The other electrode of each of the (X) and (Y) electrode pairs then is connected in common to respective (X) and (Y) sustain voltage driver terminals. In a further embodiment, each of the (X) and (Y) electrode pairs is arranged in corresponding groups of electrode pairs, each group including a common number of such pairs. First electrodes of each pair of each group are connected to a common output terminal of an address and sustain voltage driver; thus, plural address and sustain voltage driver outputs corresponding to the plural groups are employed for each of the (X) and (Y) electrode pairs. The second electrodes of corresponding pairs of the plural groups are connected to respectively corresponding, further common output terminals of address and sustain voltage drivers; thus, a plurality of further common terminals corresponding to the number of electrode pairs in each group are provided, as to each of the (X) and (Y) electrodes. The panel as thus configured affords decoding of addressing signals applied to the common terminals by means of plasma coupling within the panel whereby the discharge point or cell defined by a desired electrode of each of the column and the row electrode pairs can be addressed selectively. A further embodiment provides shifting of the display to successive positions in either the (X) or (Y) directions.