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    • 21. 发明申请
    • Double-faced light emiting diode display
    • 双面发光二极管显示屏
    • US20060001625A1
    • 2006-01-05
    • US11168221
    • 2005-06-28
    • 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
    • H01J1/62G09G3/32
    • G09G3/32G09G2300/02
    • A double-faced light emitting diode display includes a pair of parallel shield panels (20, 20′), and a light emitting module (30) located between the shield panels. Each shield panel includes a video contrast enhancement assembly. The light emitting module includes an opaque insulative substrate (31) with a pair of pixel matrixes symmetrically formed on opposite surfaces (310, 310′) thereof and a circuit driving system formed at at least one of the surfaces. Each pixel matrix includes a plurality of pixel units (320, 320′). Symmetrically opposite pairs of pixel units are electrically interconnected so that the shield panels can simultaneously display same images. The double-faced light emitting diode display has a simple structure, a small size, low cost and full color display capability, and can be advantageously applied in traffic signal boards, large-scale display boards, surround cinemas and so on.
    • 双面发光二极管显示器包括一对平行屏蔽面板(20,20')和位于屏蔽面板之间的发光模块(30)。 每个屏蔽面板包括视频对比度增强组件。 发光模块包括具有对称地形成在其相对表面(310,310')上的一对像素矩阵的不透明绝缘衬底(31)和形成在至少一个表面上的电路驱动系统。 每个像素矩阵包括多个像素单元(320,320')。 对称相对的像素单元对被电互连,使得屏蔽面板可以同时显示相同的图像。 双面发光二极管显示器具有结构简单,体积小,成本低,全彩显示能力,可有效应用于交通信号灯,大型显示板,环绕影院等。
    • 22. 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。
    • 24. 发明授权
    • Double-faced light emitting diode display
    • 双面发光二极管显示
    • US07609241B2
    • 2009-10-27
    • US11168221
    • 2005-06-28
    • 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
    • G09G3/32
    • G09G3/32G09G2300/02
    • A double-faced light emitting diode display includes a pair of parallel shield panels (20, 20′), and a light emitting module (30) located between the shield panels. Each shield panel includes a video contrast enhancement assembly. The light emitting module includes an opaque insulative substrate (31) with a pair of pixel matrixes symmetrically formed on opposite surfaces (310, 310′) thereof and a circuit driving system formed at at least one of the surfaces. Each pixel matrix includes a plurality of pixel units (320, 320′). Symmetrically opposite pairs of pixel units are electrically interconnected so that the shield panels can simultaneously display same images. The double-faced light emitting diode display has a simple structure, a small size, low cost and full color display capability, and can be advantageously applied in traffic signal boards, large-scale display boards, surround cinemas and so on.
    • 双面发光二极管显示器包括一对平行屏蔽面板(20,20')和位于屏蔽面板之间的发光模块(30)。 每个屏蔽面板包括视频对比度增强组件。 发光模块包括具有对称地形成在其相对表面(310,310')上的一对像素矩阵的不透明绝缘衬底(31)和形成在至少一个表面上的电路驱动系统。 每个像素矩阵包括多个像素单元(320,320')。 对称相对的像素单元对被电互连,使得屏蔽面板可以同时显示相同的图像。 双面发光二极管显示器具有结构简单,体积小,成本低,全彩显示能力,可有效应用于交通信号灯,大型显示板,环绕影院等。
    • 25. 发明授权
    • Double-faced plasma display panel
    • 双面等离子显示面板
    • US07583024B2
    • 2009-09-01
    • 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
    • H01J17/49
    • 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)。 每个观察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。
    • 28. 发明授权
    • Reference leak
    • 参考泄漏
    • US07353687B2
    • 2008-04-08
    • US11228821
    • 2005-09-16
    • Jie TangLiang LiuPeng LiuZhao-Fu HuBing-Chu DuCai-Lin GuoPi-Jin ChenShou-Shan Fan
    • Jie TangLiang LiuPeng LiuZhao-Fu HuBing-Chu DuCai-Lin GuoPi-Jin ChenShou-Shan Fan
    • G01F25/00
    • G01M3/007
    • A reference leak includes a leak layer formed of one of a metallic material, a glass material, and a ceramic material. The metallic material is selected from the group consisting of copper, nickel, and molybdenum. The leak layer comprises a number of substantially parallel leak through holes defined therein. The leak through holes may be cylindrical holes or polyhedrical holes. A length of each of the leak through holes is preferably not less than 20 times a diameter thereof. A diameter of each of the leak through holes is generally in the range from 10 nm to 500 nm. A length of each of the leak through holes is generally in the range from 100 nm to 100 μm. A leak rate of the reference leak is in the range from 10−8 to 10−15 tor×l/s. The leak through holes have substantially same length and diameter.
    • 参考泄漏包括由金属材料,玻璃材料和陶瓷材料之一形成的泄漏层。 金属材料选自铜,镍和钼。 泄漏层包括限定在其中的多个基本上平行的泄漏通孔。 泄漏孔可以是圆柱形孔或多面孔。 每个泄漏通孔的长度优选不小于其直径的20倍。 每个泄漏通孔的直径通常在10nm至500nm的范围内。 每个泄漏通孔的长度通常在100nm至100μm的范围内。 参考泄漏的泄漏率在10 -8至10 -15 torxl / s的范围内。 泄漏孔具有基本相同的长度和直径。
    • 29. 发明申请
    • Reference leak
    • 参考泄漏
    • US20060144120A1
    • 2006-07-06
    • US11228821
    • 2005-09-16
    • Jie TangLiang LiuPeng LiuZhao-Fu HuBing-Chu DuCai-Lin GuoPi-Jin ChenShou-Shan Fan
    • Jie TangLiang LiuPeng LiuZhao-Fu HuBing-Chu DuCai-Lin GuoPi-Jin ChenShou-Shan Fan
    • G01F25/00
    • G01M3/007
    • A reference leak includes a leak layer formed of one of a metallic material, a glass material, and a ceramic material. The metallic material is selected from the group consisting of copper, nickel, and molybdenum. The leak layer comprises a number of substantially parallel leak through holes defined therein. The leak through holes may be cylindrical holes or polyhedrical holes. A length of each of the leak through holes is preferably not less than 20 times a diameter thereof. A diameter of each of the leak through holes is generally in the range from 10 nm to 500 nm. A length of each of the leak through holes is generally in the range from 100 nm to 100 μm. A leak rate of the reference leak is in the range from 10−8 to 10−15 tor×l/s. The leak through holes have substantially same length and diameter.
    • 参考泄漏包括由金属材料,玻璃材料和陶瓷材料之一形成的泄漏层。 金属材料选自铜,镍和钼。 泄漏层包括限定在其中的多个基本上平行的泄漏通孔。 泄漏孔可以是圆柱形孔或多面孔。 每个泄漏通孔的长度优选不小于其直径的20倍。 每个泄漏通孔的直径通常在10nm至500nm的范围内。 每个泄漏通孔的长度通常在100nm至100μm的范围内。 参考泄漏的泄漏率在10 -8至10 -15 torxl / s的范围内。 泄漏孔具有基本相同的长度和直径。