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    • 1. 发明授权
    • Fluorescent lamp and image display apparatus
    • 荧光灯和图像显示装置
    • US08803423B2
    • 2014-08-12
    • US13500312
    • 2010-02-23
    • Masakazu SagawaShin ImamuraToshiaki Kusunoki
    • Masakazu SagawaShin ImamuraToshiaki Kusunoki
    • H01J17/00
    • H01J17/00H01J11/22H01J11/34H01J11/50H01J17/04H01J17/066H01J17/20H01J17/49H01J61/16H01J65/04
    • To obtain effective luminance and light efficiency while avoiding discharge, it is necessary to sufficiently increase a current luminous efficiency of gas and an electron emission efficiency of an electron source. In a fluorescent lamp, an anode electric field is increased by setting a pressure of a noble gas or a molecular gas enclosed to 10 kPa or higher, setting an anode voltage to 240 V or lower, and setting a substrate distance to 0.4 mm or smaller. Furthermore, the resulting effect that the current luminous efficiency is increased in proportion to the electric field is used. Also, by applying a MIM electron source having an electron emission efficiency exceeding 10% as an electron source, a non-discharge fluorescent lamp having a light emission luminance equal to or larger than 104 [cd/m2] and a light emission efficiency equal to or larger than 120 [lm/W] is achieved.
    • 为了在避免放电的同时获得有效的亮度和光效率,必须充分提高气体的电流发光效率和电子源的电子发射效率。 在荧光灯中,通过将惰性气体或分子气体的压力设定为10kPa以上,将阳极电压设定为240V以下,将基板的距离设定为0.4mm以下,来增大阳极电场 。 此外,使用与电场成比例地增加当前发光效率的结果。 此外,通过应用电子发射效率超过10%的MIM电子源作为电子源,具有等于或大于104 [cd / m 2]的发光亮度和等于或等于的发光效率的非放电荧光灯 或大于120 [lm / W]。
    • 3. 发明授权
    • Display apparatus
    • 显示装置
    • US07310076B2
    • 2007-12-18
    • US10773365
    • 2004-02-09
    • Mutsumi SuzukiMasakazu SagawaToshiaki Kusunoki
    • Mutsumi SuzukiMasakazu SagawaToshiaki Kusunoki
    • G09G3/30
    • G09G3/22G09G2310/02G09G2310/0267G09G2310/06G09G2320/0209G09G2330/021G09G2330/04
    • An display apparatus arranged in a matrix having plural luminance modulation elements for modulating or do not modulating luminance depending upon application of a voltage of positive or reverse polarity,having plural parallel scanning electrodes and plural parallel data electrodes, in which each luminance modulation element is disposed at an intersection between the scanning electrode and the data electrode, andhaving first driving means connected to the scanning electrodes and outputting scanning pulses, and second driving means connected to the data electrodes,wherein the scanning electrodes are grouped into those in a selected state applied with a scanning pulse and those other than described above in a non-selected state at a certain time point during the scanning period; the number of the scanning lines in the selected state is n1; the scanning lines in the non-selected state are grouped into non-selected state scanning lines at a high impedance state and non-selected state scanning lines at a low impedance state, the high impedance non-selected state scanning lines has higher impedance than the scanning lines in the selected state, and the low impedance non-selected state scanning lines has lower impedance than the high impedance non-selected state scanning lines; and the number of the non-selected state scanning lines at the low impedance state is n1×2 or more.
    • 一种显示装置,具有多个亮度调制元件,具有多个用于调制或不调制亮度的亮度调制元件,该显示装置具有多个平行扫描电极和多个并行数据电极,其中配置有各个亮度调制元件 在扫描电极和数据电极之间的交叉点处,并且具有连接到扫描电极并输出扫描脉冲的第一驱动装置,以及连接到数据电极的第二驱动装置,其中扫描电极被分组为处于选择状态的扫描电极 扫描脉冲以及在扫描期间的某个时间点处于未选择状态的扫描脉冲; 所选择的状态下的扫描线的数量为n <1; 处于非选择状态的扫描线被分组成处于高阻抗状态的非选择状态扫描线和处于低阻抗状态的非选择状态扫描线,高阻抗非选择状态扫描线具有比 扫描线处于选择状态,低阻抗非选择状态扫描线的阻抗比高阻抗非选择状态扫描线低; 并且处于低阻抗状态的未选择状态扫描线的数量为n×1×2以上。
    • 8. 发明授权
    • Display device having a thin film electron source array
    • 具有薄膜电子源阵​​列的显示装置
    • US07129641B2
    • 2006-10-31
    • US10724149
    • 2003-12-01
    • Toshiaki KusunokiMasakazu SagawaMutsumi Suzuki
    • Toshiaki KusunokiMasakazu SagawaMutsumi Suzuki
    • G09G3/10
    • H01J31/127B82Y10/00H01J1/312Y10S345/905
    • The invention provides a display device using thin film type electron sources having a structure that can be formed in a simple manufacturing process. A lower electrode, a protective insulating layer and an interlayer film are formed on a cathode substrate. An upper bus electrode made from a laminated film of a metal film lower layer and a metal film upper layer is provided further on the interlayer film. A film of an upper electrode of a thin film type electron source for each pixel constituted by an insulating layer serving as an electron accelerating layer on the lower electrode and the upper electrode is formed on two stripe electrodes of the upper bus electrode in that pixel and another upper bus electrode in an adjacent pixel by sputtering. Then, the upper electrode is separated by self-alignment due to a setback portion of the metal film lower layer and an appentice of the metal film upper layer of the corresponding upper bus electrode. Thus, a thin film type electron source separated in accordance with each pixel is formed.
    • 本发明提供一种使用薄膜型电子源的显示装置,其具有能够以简单的制造工艺形成的结构。 在阴极基板上形成下电极,保护绝缘层和中间膜。 在层间膜上还设置由金属膜下层和金属膜上层的叠层膜制成的上部总线电极。 在该像素中的上部总线电极的两个条状电极上形成由用于在下部电极和上部电极上的电子加速层的绝缘层构成的每个像素的薄膜型电子源的上部电极的膜, 通过溅射在相邻像素中的另一个上总线电极。 然后,由于金属膜下层的后退部分和相应的上部总线电极的金属膜上层的附着,上部电极由于自对准而分离。 因此,形成根据每个像素分离的薄膜型电子源。
    • 9. 发明授权
    • Image display and method of driving image display
    • 图像显示和驱动图像显示的方法
    • US07116291B1
    • 2006-10-03
    • US10031377
    • 2000-09-04
    • Mutsumi SuzukiToshiaki KusunokiMakoto OkaiMasakazu SagawaAkitoshi Ishizaka
    • Mutsumi SuzukiToshiaki KusunokiMakoto OkaiMasakazu SagawaAkitoshi Ishizaka
    • G09G3/30
    • G09G3/22H01J31/127
    • The present invention provides an image display capable of reducing power used up or consumed by a thin-film electron-emitter matrix. As a typical one, there is provided an image display which comprises a display device including a first plate which has a plurality of electron-emitter elements each having a structure comprised of a base electrode, an insulating layer and a top electrode stacked on one another in this order, the electron-emitter element emitting electrons from the surface of the top electrode when a voltage of positive polarity is applied to the top electrode; a plurality of first electrodes for respectively applying driving voltages to the base electrodes of the electron-emitter elements lying in a row direction, of the plurality of electron-emitter elements; and a plurality of second electrodes for respectively applying driving voltages to the top electrodes of the electron-emitter elements lying in a column direction, of the plurality of electron-emitter elements, a frame component, and a second plate having phosphors, wherein a space surrounded by the first plate, the frame component and the second plate is brought into vacuum. In the image display, the first electrode and/or the second electrode held in a non-selected state is set to a high-impedance state.
    • 本发明提供能够减少由薄膜电子发射器矩阵使用或消耗的功率的图像显示器。 作为典型的图像显示器,提供了一种图像显示器,其包括显示装置,该显示装置包括第一板,该第一板具有多个电子发射元件,每个电子发射元件具有由彼此堆叠的基极,绝缘层和顶电极组成的结构 按照该顺序,当正极性的电压施加到顶部电极时,从顶部电极的表面发射电子的电子 - 发射体元件; 多个第一电极,分别向多个电子发射元件的行方向的电子发射元件的基极施加驱动电压; 以及多个第二电极,用于分别向多个电子发射元件的列方向上的电子发射元件的顶部电极,框架部件和具有荧光体的第二板分别施加驱动电压,其中空间 被第一板包围,框架部件和第二板被置于真空中。 在图像显示中,保持在未选择状态的第一电极和/或第二电极被设置为高阻抗状态。