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    • 12. 发明授权
    • Reflective display device
    • 反光显示装置
    • US06753846B2
    • 2004-06-22
    • US10029362
    • 2001-12-21
    • Yukihisa TakeuchiTsutomu NanatakiNatsumi ShimogawaTakayoshi Akao
    • Yukihisa TakeuchiTsutomu NanatakiNatsumi ShimogawaTakayoshi Akao
    • G09G334
    • G09F9/372G09F9/305G09F9/375Y10S385/901
    • A reflective display device includes a transparent display panel into which light is introduced. A driving section is disposed at the back of the display panel. Actuator elements corresponding to a number of picture elements are arranged in the driving section. A picture element assembly is provided on each of the actuator elements. The picture element assembly includes a light-reflecting layer and a color filter. A light-absorptive material is filled between the display panel and an actuator substrate. The actuator elements are selectively driven according to an attribute of an input image signal for controlling displacement of the picture element assembly in a direction closer to or away from the display panel, thereby adjusting degree of light-absorption and/or light reflection between the display panel and the picture element assembly so that a screen image corresponding to the image signal is displayed on the display panel.
    • 反射显示装置包括透明显示面板,光被引入到该透明显示面板中。 驱动部设置在显示面板的背面。 对应于多个像素的致动器元件布置在驱动部分中。 在每个致动器元件上设置有一个像素组件。 像素组件包括光反射层和滤色器。 在显示面板和致动器基板之间填充吸光材料。 根据输入图像信号的属性来选择性地驱动致动器元件,用于控制图像元件组件在更接近或远离显示面板的方向上的位移,从而调节显示器之间的光吸收和/或光反射的程度 面板和图像元素组件,使得在显示面板上显示与图像信号对应的屏幕图像。
    • 13. 发明授权
    • Display-driving device and display-driving method
    • 显示驱动装置和显示驱动方法
    • US06452583B1
    • 2002-09-17
    • US09115978
    • 1998-07-15
    • Yukihisa TakeuchiTsutomu NanatakiIwao OhwadaTakayoshi Akao
    • Yukihisa TakeuchiTsutomu NanatakiIwao OhwadaTakayoshi Akao
    • G09G334
    • G09G3/3473G09G3/2018G09G3/3493G09G2310/06
    • Assuming that a display period for one image is one field, a light source turn on period and a light source turn off period are set for the one field. An overall bending displacement period for making bending displacement of all actuator elements is set within the light source turn off period. A gradational display period for performing substantial gradational display and a reset period for resetting the bending displacement of all of the actuator elements are set within the light source turn on period. Subfields of a number corresponding to the maximum gradation level are set within the gradational display period. Timing control is performed so that all row selection is completed within each of the subfields. Accordingly, the gradation level is advantageously extended when a relationship of Tr>>Tf is given between a light-emitting rising time Tr of the picture element and a quenching falling time Tf of the picture element.
    • 假设一个图像的显示周期是一个场,则为一个场设置光源打开周期和光源关闭周期。 用于使所有致动器元件的弯曲位移的整体弯曲位移周期设定在光源截止周期内。 在光源打开周期内设置用于执行实质梯度显示的等级显示周期和用于复位所有致动器元件的弯曲位移的复位周期。 在等级显示周期内设置与最大灰度级相对应的数字的子场。 执行定时控制,使得在每个子场内完成所有行选择。 因此,当在像素的发光上升时间Tr和像素的淬灭下降时间Tf之间给出Tr >> Tf的关系时,有利地延长了灰度级。
    • 15. 发明授权
    • Light source
    • 光源
    • US07474060B2
    • 2009-01-06
    • US10919747
    • 2004-08-16
    • Yukihisa TakeuchiTsutomu NanatakiIwao OhwadaTakayoshi Akao
    • Yukihisa TakeuchiTsutomu NanatakiIwao OhwadaTakayoshi Akao
    • G09G3/10
    • G09G3/22
    • A light source has a light emission section comprising a two-dimensional array of electron emitters and a drive circuit for applying a drive voltage to each of the electron emitters of the light emission section. The drive circuit applies the drive voltage between upper and lower electrodes of each of the electron emitters based on a control signal representative of turn-on/turn-off from an external source (a turn-on/turn-off switch or the like), for thereby controlling each of the electron emitters. Each of the electron emitters has a plate-like emitter, an upper electrode disposed on a face side of the emitter, and a lower electrode disposed on a reverse side of the emitter.
    • 光源具有包括电子发射体的二维阵列的发光部和用于向发光部的各个电子发射体施加驱动电压的驱动电路。 驱动电路基于表示来自外部源(导通/关断开关等)的接通/断开的控制信号,在每个电子发射器的上下电极之间施加驱动电压, ,从而控制每个电子发射器。 每个电子发射器具有板状发射极,设置在发射极的正面侧的上部电极和设置在发射极背面的下部电极。
    • 17. 发明申请
    • Electron-emitting apparatus
    • 电子发射装置
    • US20060132024A1
    • 2006-06-22
    • US11224689
    • 2005-09-12
    • Tsutomu NanatakiIwao OhwadaTakayoshi AkaoHirokazu Nakamura
    • Tsutomu NanatakiIwao OhwadaTakayoshi AkaoHirokazu Nakamura
    • H01J3/00H01J63/04
    • H01J1/312B82Y10/00H01J1/30H01J1/32H01J29/467H01J31/127
    • An electron-emitting apparatus includes an emitter section made of a dielectric material, lower electrodes, upper electrodes having micro through holes, insulating layers disposed on the upper surface of the emitter section and between the adjacent upper electrodes, and focusing electrodes to which a predetermine potential is applied and which are disposed on the insulating layers. The electron-emitting apparatus applies a negative potential to the upper electrode to accumulate electrons in the emitter section and then applies a positive potential to the upper electrode. As a result, the polarization of the emitter section is reversed, and the accumulated electrons are emitted through the micro through holes in the upper electrodes by Coulomb repulsion. Owing to electric fields generated by the focusing electrodes, the emitted electrons travel in the upward direction of the upper electrode without spreading into a shape of a cone.
    • 电子发射装置包括由电介质材料制成的发射极部分,下电极,具有微通孔的上电极,设置在发射极部分的上表面和相邻上电极之间的绝缘层,以及预定的 施加电位并且设置在绝缘层上。 电子发射装置向上电极施加负电位以在发射极部分中积聚电子,然后向上电极施加正电位。 结果,发射极部分的极化反转,并且累积的电子通过库仑排斥通过上电极中的微通孔发射。 由于聚焦电极产生的电场,发射的电子沿着上电极的向上方向移动,而不会扩散成锥形。