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    • 2. 发明申请
    • Electrode structure
    • 电极结构
    • US20060220521A1
    • 2006-10-05
    • US11353791
    • 2006-02-14
    • Jer-Shien YangYen-Shan ChuangJen-Shou ChengYui-Shin Fran
    • Jer-Shien YangYen-Shan ChuangJen-Shou ChengYui-Shin Fran
    • H01J63/04H01J1/62
    • H01J65/046H01J1/02
    • An electrode structure is provided. The electrode structure contains a first auxiliary electrode and a second auxiliary electrode, a first edge electrode and a second edge electrode disposed between the first auxiliary electrode and the second auxiliary electrode, wherein the first edge electrode forming an electrode pair with the first auxiliary electrode and having a same polarity as that of the first auxiliary electrode and the second edge electrode forming an electrode pair with the second auxiliary electrode and having a same polarity as that of the second auxiliary electrode, and at least one middle electrode disposed between the first edge electrode and the second edge electrode. The electrode structure respectively enhance an interaction between the first edge electrode and the second edge electrode and a neighboring electrode by means of the first auxiliary electrode and the second auxiliary electrode. Alternatively, the width of the edge electrode increase to be 1.5 to 4 times of its original value in order to increase the current density on the edge electrode and to increase the brightness of the edge discharging zone so that the brightness difference between the middle zone and the edge zone is not great.
    • 提供电极结构。 电极结构包括第一辅助电极和第二辅助电极,第一边缘电极和设置在第一辅助电极和第二辅助电极之间的第二边缘电极,其中第一边缘电极与第一辅助电极形成电极对, 具有与第一辅助电极和第二边缘电极相同的极性,与第二辅助电极形成具有与第二辅助电极相同极性的电极对,并且至少一个中间电极设置在第一边缘电极 和第二边缘电极。 电极结构通过第一辅助电极和第二辅助电极分别增强第一边缘电极和第二边缘电极之间的相互作用以及相邻的电极。 或者,边缘电极的宽度增加为其原始值的1.5至4倍,以便增加边缘电极上的电流密度并增加边缘放电区的亮度,使得中间区域和中间区域之间的亮度差异 边缘区不是很大。
    • 4. 发明授权
    • Cold cathode flat fluorescent lamp and patterned electrode thereof
    • 冷阴极荧光灯及其图案化电极
    • US07250716B2
    • 2007-07-31
    • US11138613
    • 2005-05-25
    • Yui-Shin FranKung-Tung PanChun-Hui Tsai
    • Yui-Shin FranKung-Tung PanChun-Hui Tsai
    • H01J17/04
    • H01J61/305H01J65/00
    • A cold cathode flat fluorescent lamp (CCFFL) comprising a flat lamp chamber, fluorescent substance, discharge gas, and a patterned electrode is provided. The discharge gas is disposed in the gas discharge chamber. The fluorescent substance is disposed over the inner wall of the gas discharge chamber. The patterned electrode is disposed over a surface of the flat lamp chamber. In an embodiment, the patterned electrode comprises anode pairs and cathode pairs which are alternately arranged. Each anode pair comprises a first meandering anode with first protrusions and a second meandering anode with second protrusions, wherein the first protrusions and the second protrusions are staggered. Each cathode pair comprises a first meandering cathode with third protrusions and a second meandering cathode with fourth protrusions, wherein each third protrusion aligns with each second protrusion, and each fourth protrusion aligns with each first protrusion.
    • 提供了包括平坦灯室,荧光物质,放电气体和图案化电极的冷阴极平面荧光灯(CCFFL)。 放电气体设置在气体放电室中。 荧光物质设置在气体放电室的内壁上。 图案化电极设置在平坦灯室的表面上。 在一个实施例中,图案化电极包括交替布置的阳极对和阴极对。 每个阳极对包括具有第一突起的第一曲折阳极和具有第二突起的第二曲折阳极,其中第一突起和第二突起交错。 每个阴极对包括具有第三突起的第一曲折阴极和具有第四突起的第二曲折阴极,其中每个第三突起与每个第二突起对准,并且每个第四突起与每个第一突起对准。
    • 5. 发明授权
    • Method of fabricating emitter of field emission display
    • 制造场致发射显示器的方法
    • US06672926B2
    • 2004-01-06
    • US10033754
    • 2001-12-19
    • Wen-Tsang LiuYui-Shin FranLai-Cheng Chen
    • Wen-Tsang LiuYui-Shin FranLai-Cheng Chen
    • H01J902
    • B82Y10/00H01J9/025H01J2201/30469
    • A method of fabricating an emitter of a field emission display. A mixture of metal and silver paste with glass material is screen printed on a substrate as a silver electrode. The metal is selected from a hard solder alloy such as Al/Si alloy containing tin, zinc, aluminum or other low melting point metal. Alternatively, the metal and the silver paste with the glass material are separately screen printed on the substrate. The metal is selected from tin, zinc, aluminum, or an alloy with a low melting point such as aluminum/silicon alloy. A carbon nano-tube layer is formed on the silver electrode by coating the carbon nano-tube material with the electric arc. Alternately a catalyst layer can be formed on the silver electrode prior to the formation of the carbon nano-tube layer. A metal layer such as nickel and copper is formed on the carbon nano-tube layer to prevent the carbon nano-tube layer from absorbing gas.
    • 一种制造场发射显示器的发射极的方法。 将金属和银糊与玻璃材料的混合物丝网印刷在基板上作为银电极。 该金属选自含有锡,锌,铝或其它低熔点金属的Al / Si合金等硬焊料合金。 或者,将具有玻璃材料的金属和银膏分别丝网印刷在基板上。 金属选自锡,锌,铝或低熔点合金,如铝/硅合金。 通过用电弧涂覆碳纳米管材料,在银电极上形成碳纳米管层。 或者,可以在形成碳纳米管层之前在银电极上形成催化剂层。 在碳纳米管层上形成镍和铜等金属层,以防止碳纳米管层吸收气体。
    • 6. 发明授权
    • Low temperature method for phosphor screen formation
    • 荧光屏形成的低温方法
    • US6015587A
    • 2000-01-18
    • US39500
    • 1998-03-16
    • Yui-Shin FranDe-An ChangChih-Hao Tien
    • Yui-Shin FranDe-An ChangChih-Hao Tien
    • H01J9/22H01J29/28B05D5/06
    • H01J9/223H01J29/28
    • A process for manufacturing a phosphorescent screen for use in a cathode ray or field emission display, is described. The phosphor layer is applied in the form of a slurry consisting of a powdered phosphor, an ethylene glycol monobutyl ether acetate solvent, and a cellulose acetate butyrate binder. The phosphor concentration is between 30 and 60% by weight, the solvent between 5 and 52.5% and the binder between 17.5 and 35%. If the slurry composition falls within these ranges, then, once the aluminum anode layer is in place, all organic material can be removed by firing at a temperature that is less than 500.degree. C. By keeping the firing temperature below 500.degree. C., roughening of the undersurface of the aluminum is avoided and a more efficient screen is obtained. Data to illustrate this is also provided.
    • 描述了用于制造用于阴极射线或场发射显示的磷光屏的方法。 荧光体层以粉末状荧光体,乙二醇单丁醚乙酸酯溶剂和乙酸丁酸纤维素粘合剂组成的浆料的形式施加。 荧光体浓度为30〜60重量%,溶剂为5〜52.5%,粘合剂为17.5〜35%。 如果浆料组成落在这些范围内,则一旦铝阳极层就位,所有有机材料可以通过在低于500℃的温度下烧制除去。通过保持焙烧温度低于500℃, 避免铝的下表面的粗糙化,并获得更有效的屏幕。 还提供了说明这一点的数据。
    • 9. 发明授权
    • Planar fluorescent lamp with flat electrodes and method for fabricating
    • 具有扁平电极的平面荧光灯及其制造方法
    • US06639351B1
    • 2003-10-28
    • US09273023
    • 1999-03-19
    • Kuang Lung TsaiYui Shin FranChie-Ching LinLiang Kuei Sheu
    • Kuang Lung TsaiYui Shin FranChie-Ching LinLiang Kuei Sheu
    • H01J1716
    • H01J9/247H01J61/305
    • A planar fluorescent lamp equipped with a pair of flat electrodes and a method for fabricating such lamp are disclosed. In the planar fluorescent lamp, a lamp housing and a cover plate which are both formed of a soda-lime glass can be bonded together to form a vacuum tight seal by glass frit. A pair of flat electrodes and a pair of getter strips are pre-mounted in the cavity of the planar lamp. The pair of flat electrodes run substantially the full width of the interior cavity of the lamp such that a substantially uniform electric discharge field can be formed in the cavity when a RF power is supplied to the electrodes. A bottom panel of the lamp housing may be fabricated in a ribbed structure to improve the rigidity of the bottom panel such that it does not bow in when the cavity is sealed under a vacuum pressure.
    • 公开了配备有一对扁平电极的平面荧光灯及其制造方法。 在平面荧光灯中,由钠钙玻璃形成的灯壳体和盖板可以结合在一起,以通过玻璃料形成真空密封。 一对扁平电极和一对吸气带预先安装在平面灯的空腔中。 一对平面电极基本上延伸到灯的内部空腔的整个宽度,使得当将RF功率提供给电极时,可以在空腔中形成基本上均匀的放电场。 灯壳的底板可以制造成肋状结构,以提高底板的刚性,使得当空腔在真空压力下密封时它不会弯曲。
    • 10. 发明申请
    • STACKED SOLID-STATE ELECTROLYTIC CAPACITOR WITH MULTI-DIRECTIONAL PRODUCT LEAD FRAME STRUCTURE
    • 具有多方向产品引线框架结构的堆叠式固态电解电容器
    • US20110216475A1
    • 2011-09-08
    • US12833421
    • 2010-07-09
    • Chi-Hao ChiuYui-Shin FranChing-Feng LinChun-Chia HuangChun-Hung LinWen-Yen Huang
    • Chi-Hao ChiuYui-Shin FranChing-Feng LinChun-Chia HuangChun-Hung LinWen-Yen Huang
    • H01G9/00
    • H01G9/00
    • A stacked solid-state electrolytic capacitor with multi-directional product lead frame structure includes a plurality of capacitor units, a substrate unit and a package unit. The capacitor units are stacked onto each other. Each capacitor unit has a positive electrode and a negative electrode, the positive electrode of each capacitor unit has a positive pin extended outwards, the positive pins are electrically stacked onto each other, and the negative electrodes are electrically stacked onto each other. The substrate unit has at least one positive guiding substrate electrically connected to the positive pins of the capacitor units and a plurality of negative guiding substrates electrically connected to the negative electrodes of the capacitor units. The package unit covers the capacitor units and one part of the substrate unit in order to expose an end of the at least one positive guiding substrate and an end of each negative guiding substrate.
    • 具有多方向产品引线框架结构的堆叠式固态电解电容器包括多个电容器单元,基板单元和封装单元。 电容器单元堆叠在一起。 每个电容器单元具有正极和负极,每个电容器单元的正极具有向外延伸的正极,正极彼此电叠置,并且负极彼此电叠置。 基板单元具有电连接到电容器单元的正极销的至少一个正引导基板和电连接到电容器单元的负电极的多个负引导基板。 封装单元覆盖电容器单元和衬底单元的一部分,以暴露至少一个正引导衬底的端部和每个负引导衬底的端部。