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    • 8. 发明授权
    • Plane emissive cathode structure of field emission display
    • 平面发射阴极结构的场发射显示
    • US07638936B2
    • 2009-12-29
    • US11757560
    • 2007-06-04
    • Chih-Che Kuo
    • Chih-Che Kuo
    • H01J1/62
    • H01J31/127H01J29/467H01J29/481H01J2329/4634
    • In a plane emissive cathode structure of a field emission display having a common plane structure, a cathode plate includes a cathode substrate, and a plurality of cathode units on the cathode substrate, and the cathode unit includes an emitter layer, a gate electrode layer and a dielectric layer. The emitter layer and the gate electrode layer are disposed on a common plane of the cathode substrate and separated with each other to form an interval. The dielectric layer is formed in the interval between the emitter layer and the gate electrode layer, but not connected to the interval between the emitter layer and the gate electrode layer, so as to change the electric field distribution of the emitter layer and the gate electrode layer.
    • 在具有公共平面结构的场发射显示器的平面发射阴极结构中,阴极板包括阴极基板和阴极基板上的多个阴极单元,阴极单元包括发射极层,栅电极层和 电介质层。 发射极层和栅电极层设置在阴极基板的公共平面上并彼此分离以形成间隔。 电介质层形成在发射极层和栅电极层之间的间隔中,但不与发射极层和栅极电极层之间的间隔连接,以便改变发射极层和栅电极的电场分布 层。
    • 10. 发明授权
    • Sintering method for carbon nanotube cathode of field-emission display
    • 场致发射显示碳纳米管阴极的烧结方法
    • US07367860B2
    • 2008-05-06
    • US10883708
    • 2004-07-06
    • Chih-Che KuoWei-Sheng HsuChun-Yen Hsiao
    • Chih-Che KuoWei-Sheng HsuChun-Yen Hsiao
    • H01J9/00
    • H01J9/025B82Y10/00H01J31/123H01J2201/30469
    • A vacuuming sintering method for forming a carbon nanotube of a field display is disclosed. A cathode is attached to an anode, and the assembly of the cathode and anode is disposed on a heating element of a vacuum sintering furnace with cathode adjacent to the heating element. Each of the cathode and anode has at least one electrode lead connected to an external voltage source. The internal pressure of the vacuum sintering furnace is reduced, the heating element is activated, and a voltage is provided across the cathode and the anode, such that an electric field is generated between the cathode and the anode. The voltage is switched off after the electric field is formed and continuing heating for a predetermined period of time. The heating is terminated and the assembly of the cathode and anode is removed from the vacuum sintering furnace, such that the carbon nanotube is formed parallel to the electric field and perpendicular to the cathode, or one end of the carbon nanotube is inclined towards the anode to advantage electron generation therefrom.
    • 公开了一种用于形成场显示器的碳纳米管的真空烧结方法。 阴极连接到阳极,并且阴极和阳极的组件设置在具有与加热元件相邻的阴极的真空烧结炉的加热元件上。 阴极和阳极中的每一个具有连接到外部电压源的至少一个电极引线。 真空烧结炉的内部压力降低,加热元件被激活,并且在阴极和阳极之间提供电压,使得在阴极和阳极之间产生电场。 在形成电场后,电压被切断,持续加热预定的时间。 加热结束,阴极和阳极的组装从真空烧结炉中除去,使得碳纳米管平行于电场并垂直于阴极形成,或者碳纳米管的一端向阳极倾斜 从而有利于电子生成。