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    • 6. 发明公开
    • Apparatus for and method of addressing data storage elements
    • 解决数据存储单元的方法和方法
    • EP0326254A3
    • 1990-12-19
    • EP89300342.6
    • 1989-01-13
    • TEKTRONIX, INC.
    • Buzak, Thomas S.
    • G11C7/00G11C11/22G09G3/36
    • G02F1/13334G09G3/3662G11C11/22G11C27/024
    • An apparatus for and a method of addressing data storage elements (16) employs an ionizable gas to address the storage elements for storing data in and reading data out of them. The storage elements are defined by the overlapping areas of multiple column electrodes (18) extending in a common direction on a first substrate (48) and multiple channels (20) extending in a common direction on a second substrate (54). A layer of dielectric material (46) separates the first and the second substrates, which are positioned face-to-face and spaced-apart with the direction of the channels transverse to that of the column electrodes. Each of the channels is filled with an ionizable gas and includes a reference potential electrode and a row electrode electrically isolated from each other. The column electrodes receive data drive signals, and the row electrodes and reference potential electrodes receive data strobe signals. The addressing apparatus is configured so that for each storage element the ionizable gas functions as an electrical switch that changes between a conducting or plasma state and a nonconducting or de-ionized state in response to an applied data strobe signal. The ionizable gas functions to either store data in or read data out of the storage element. If the storage element includes a layer (44) of material having electro-optic properties and receives incident image-carrying light, the ionizable gas functions to select and store image data across the layer and thereby provide a display system having gray scale luminance.
    • 10. 发明公开
    • Structures and methods for limiting current in ionizable gaseous medium devices
    • 电离器中的Strukturen und Verfahren zur Strombegrenzung Anordnungen
    • EP0798738A2
    • 1997-10-01
    • EP97302130.6
    • 1997-03-27
    • TEKTRONIX, INC.
    • Martin, Paul C.Buzak, Thomas S.Ilcisin, Kevin J.
    • G11C11/28G11C11/22
    • H01J17/485G02F1/13334G11C11/28H01J9/02H01J17/04H01J29/028H01J2329/00H01J2329/8625
    • This invention is a resistive layer (112, 122) for electrodes (30, 62) comprising at least one partially conductive compound and describes processes for coating the electrodes by way of cataphoretic deposition and/or screen printing of particles of at least one partially conductive compound. A second class of particles, known as a "frit," is also deposited or screen printed. In the subsequent one hour firing, these particles melt and thereby bond the partially conductive compound particles to the electrodes. This invention is also plasma addressing structures (110, 120) in which particles of at least one partially conductive compound are deposited on the electrodes of the display by cataphoretic deposition and/or screen printing. The resulting electrode structures limit and uniformly distribute discharge currents (102) in the operation of ionizable gaseous medium (90) devices, such as plasma addressed liquid crystal displays.
    • 本发明是一种用于包括至少一种部分导电化合物的电极(30,62)的电阻层(112,122),并且描述了通过阴极沉积和/或丝网印刷至少一种部分导电的颗粒的方法来涂覆电极 复合。 称为“玻璃料”的第二类颗粒也被沉积或丝网印刷。 在随后的一小时焙烧中,这些颗粒熔化,从而将部分导电的化合物颗粒结合到电极。 本发明还是等离子体寻址结构(110,120),其中至少一种部分导电化合物的颗粒通过阴极沉积和/或丝网印刷沉积在显示器的电极上。 所产生的电极结构在诸如等离子体寻址液晶显示器的可电离气体介质(90)装置的操作中限制和均匀分布放电电流(102)。