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    • 41. 发明申请
    • Double-faced plasma display panel
    • 双面等离子显示面板
    • US20050280366A1
    • 2005-12-22
    • US11115467
    • 2005-04-27
    • Pi-Jin ChenPeng LiuLi QianYang WeiLei-Mei ShengYou-Hua LeiLiang LiuShou-Shan Fan
    • Pi-Jin ChenPeng LiuLi QianYang WeiLei-Mei ShengYou-Hua LeiLiang LiuShou-Shan Fan
    • H01J9/24H01J17/49
    • H01J11/34H01J9/241H01J11/12
    • A double-faced plasma display panel includes two parallel viewing screens (20, 20′), and a discharge structure (30) located between the viewing screens. Each viewing screen includes a transparent substrate (21, 21′), with a plurality of transparent electrodes (23, 24, 23′, 24′), a transparent dielectric layer (22, 22′), and a protection layer (25, 25′) formed at an inner surface of the transparent substrate. The discharge structure includes an opaque insulative substrate (31), with a plurality of addressing electrodes (37, 37′), an opaque dielectric layer (38, 38′), a plurality of separation walls (39, 39′), and a fluorescent layer (40, 40′) formed at each of opposite surfaces (310, 310′) thereof. Symmetrically opposite pairs of same electrodes are electrically interconnected so that the viewing screens can simultaneous display a same image. Only a single driving system is needed to achieve the simultaneous display.
    • 双面等离子体显示面板包括两个平行观察屏(20,20')和位于观察屏之间的放电结构(30)。 每个观看屏幕包括具有多个透明电极(23,24,23',24'),透明电介质层(22,22')和保护层(25,22')的透明基板(21,21'), 25')形成在透明基板的内表面。 放电结构包括不透明绝缘衬底(31),具有多个寻址电极(37,37'),不透明电介质层(38,38'),多个分隔壁(39,39')和 形成在其每个相对表面(310,310')处的荧光层(40,40')。 对称相对的相对电极电互连,使得观察屏幕可以同时显示相同的图像。 只需要一个驱动系统来实现同时显示。
    • 42. 发明授权
    • Method for making thermionic electron emission device
    • 制造热离子电子发射装置的方法
    • US08808554B2
    • 2014-08-19
    • US13301658
    • 2011-11-21
    • Peng LiuLiang LiuKai-Li JiangShou-Shan Fan
    • Peng LiuLiang LiuKai-Li JiangShou-Shan Fan
    • H01B13/00B44C1/22
    • H01J1/14H01J9/04H01J31/127H01J2201/196
    • A method for making a thermionic electron emission device. The method includes the following steps. First, an insulating substrate is provided. Second, a number of lattices are formed on the insulating substrate. Third, a first electrode and a second electrode are fabricated in each lattice on the insulating substrate. Fourth, a carbon nanotube film structure is provided and at least part of the carbon nanotube film is suspended structure above the insulating substrate. Sixth, excess carbon nanotube film structure is cut away to obtain a number of thermionic electron emitters. The thermionic electron emitters are spaced from each other and located between the first electrode and the second electrode in each lattice.
    • 一种制造热离子电子发射装置的方法。 该方法包括以下步骤。 首先,提供绝缘基板。 其次,在绝缘基板上形成多个格子。 第三,在绝缘基板上的每个格子中制造第一电极和第二电极。 第四,提供一种碳纳米管薄膜结构,并且至少部分碳纳米管薄膜在绝缘基板上方悬浮结构。 第六,切掉多余的碳纳米管薄膜结构以获得许多热离子电子发射体。 热电子发射体彼此间隔开,并位于第一电极和第二电极之间。
    • 44. 发明授权
    • Field emission display
    • 场发射显示
    • US08299698B2
    • 2012-10-30
    • US13159609
    • 2011-06-14
    • Peng LiuShou-Shan FanLiang LiuKai-Li Jiang
    • Peng LiuShou-Shan FanLiang LiuKai-Li Jiang
    • H01J1/62
    • H01J29/02H01J31/127
    • A field emission device includes a transparent plate, an insulating substrate, one or more grids located on the insulating substrate. Each grid includes a first, second, third and fourth electrode down-leads and a pixel unit. The first, second, third and fourth electrode down-leads are located on the periphery of the grid. The first and the second electrode down-leads are parallel to each other. The third and the fourth electrode down-leads are parallel to each other. The pixel unit includes a phosphor layer, a first electrode, a second electrode and at least one electron emitter. The first electrode and the second electrode are separately located. The first electrode is electrically connected to the first electrode down-lead, and the second electrode is electrically connected to the third electrode down-lead. The phosphor layer is directly located on the corresponding first electrode.
    • 场发射器件包括透明板,绝缘衬底,位于绝缘衬底上的一个或多个栅极。 每个栅格包括第一,第二,第三和第四电极下引线和像素单元。 第一,第二,第三和第四电极下引线位于电网的外围。 第一和第二电极下引线彼此平行。 第三和第四电极下引线彼此平行。 像素单元包括荧光体层,第一电极,第二电极和至少一个电子发射体。 第一电极和第二电极分开设置。 第一电极与第一电极下引线电连接,第二电极与第三电极下引线电连接。 磷光体层直接位于相应的第一电极上。
    • 45. 发明授权
    • Field emission display device
    • 场致发射显示装置
    • US08110975B2
    • 2012-02-07
    • US12317146
    • 2008-12-19
    • Peng LiuLiang LiuKai-Li JiangShou-Shan Fan
    • Peng LiuLiang LiuKai-Li JiangShou-Shan Fan
    • H01J1/62
    • H01J29/04H01J31/127
    • A field emission device includes an insulating substrate, one or more grids located on the insulating substrate. Each grid includes a first, second, third and fourth electrode down-leads and an electron emitting unit. The first, second, third and fourth electrode down-leads are located on the periphery of the grid. The first and the second electrode down-leads are parallel to each other. The third and the fourth electrode down-leads are parallel to each other. The electron emitting unit includes a first electrode, a second electrode and at least one electron emitter. The first electrode is electrically connected to the first electrode down-lead, and the second electrode is electrically connected to the third electrode down-lead. One end of the electron emitter is connected to the second electrode and an opposite end of the electron emitter is spaced from the first electrode by a predetermined distance.
    • 场发射器件包括绝缘衬底,位于绝缘衬底上的一个或多个栅极。 每个栅格包括第一,第二,第三和第四电极下引线和电子发射单元。 第一,第二,第三和第四电极下引线位于电网的外围。 第一和第二电极下引线彼此平行。 第三和第四电极下引线彼此平行。 电子发射单元包括第一电极,第二电极和至少一个电子发射器。 第一电极与第一电极下引线电连接,第二电极与第三电极下引线电连接。 电子发射器的一端连接到第二电极,并且电子发射器的相对端与第一电极间隔预定距离。