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    • 3. 发明授权
    • Micro stage using piezoelectric element
    • 微电极采用压电元件
    • US07732985B2
    • 2010-06-08
    • US11231471
    • 2005-09-20
    • Sang Kuk ChoiDae Jun KimJin Woo JeongDae Yong Kim
    • Sang Kuk ChoiDae Jun KimJin Woo JeongDae Yong Kim
    • H01L41/00
    • H02N2/028H01J2237/20264
    • Provided is a micro stage comprising: a body having a vertically perforated through-hole passing through a central portion thereof; a bobbin including a tip portion with an electron emission tip embedded in the center thereof, and passing through the through-hole of the body to be moved in the through-hole along a first axis perpendicular to a vertical direction; a first piezoelectric element disposed on the body and lengthened when a voltage is applied thereto to push the bobbin in one direction along the first axis; a second piezoelectric element disposed on the body and lengthened when a voltage is applied thereto to push the bobbin in the other direction along the first axis; and an upper cover that is coupled to an upper portion of the body and has a through-hole, through which the bobbin passes and communicates with the through-hole of the body, wherein the bobbin can be positioned as desired along the first axis by adjusting the voltages applied to the first piezoelectric element and the second piezoelectric element. Accordingly, the emission tip can be exactly and stably positioned using only the movable piezoelectric elements.
    • 提供了一种微型台,包括:主体,其具有穿过其中心部分的垂直穿孔的通孔; 线轴,其包括具有嵌入其中心的电子发射尖端的尖端部分,并沿着垂直于垂直方向的第一轴线穿过所述通孔的待通孔; 第一压电元件,其设置在所述主体上,并且当施加电压时被延长以沿着所述第一轴线沿一个方向推动所述线轴; 第二压电元件,其设置在所述主体上并且当施加电压时被延长以沿着所述第一轴线沿另一方向推动所述线轴; 以及上盖,其联接到所述主体的上部并且具有通孔,所述筒管通过所述通孔,所述通孔与所述主体的所述通孔连通,其中所述线轴可根据需要沿着所述第一轴线由 调整施加到第一压电元件和第二压电元件的电压。 因此,可以仅使用可动压电元件来精确且稳定地定位发射尖端。
    • 4. 发明授权
    • Micro-column electron beam apparatus
    • 微柱电子束装置
    • US07375351B2
    • 2008-05-20
    • US11257244
    • 2005-10-24
    • Sang Kuk ChoiDae Jun KimJin Woo JeongDae Yong Kim
    • Sang Kuk ChoiDae Jun KimJin Woo JeongDae Yong Kim
    • G21G5/00
    • H01J37/067B82Y10/00B82Y40/00H01J37/3177H01J2237/1205H01J2237/1502H01J2237/2818
    • Provided is a micro-column electron beam apparatus including: a base; an electron lens bracket on which an electron lens module can be fixed, mounted in a central portion of the base; an electron beam source tip module vertically disposed on the electron lens module; a pan spring plate stage module that is mounted over the base, supports the electron beam source tip module at a central portion thereof, and includes a three-coupling pan spring plate portion including first through third spring units that are coupled to the electron beam source tip module in three directions on a plane perpendicular to the vertical axis, which vertically passes the center of the electron beam source tip module, to elastically support the electron beam source tip module in three directions; a first piezoelectric actuator coupled to the pan spring plate stage module to move the electron beam source tip module along a first axis perpendicular to the vertical axis; and a second piezoelectric actuator coupled to the pan spring plate stage module to move the electron beam source tip module along a second axis perpendicular to the vertical axis and the first axis.
    • 本发明提供一种微柱电子束装置,包括:基底; 电子透镜支架,其上可以固定电子透镜模块,安装在基座的中心部分; 垂直设置在电子透镜模块上的电子束源头模块; 安装在基座上方的平板弹簧板台模块在其中心部分处支撑电子束源头模块,并且包括三联盘盘弹簧板部分,其包括耦合到电子束源的第一至第三弹簧单元 尖端模块在垂直于垂直轴线的平面上垂直通过电子束源头模块的中心,在三个方向弹性支撑电子束源头模块; 第一压电致动器,其联接到所述盘簧板模块以沿着垂直于所述垂直轴线的第一轴线移动所述电子束源尖端模块; 以及耦合到盘簧级模块的第二压电致动器,用于沿垂直于垂直轴线和第一轴线的第二轴线移动电子束源尖端模块。
    • 5. 发明授权
    • Field emission back light unit, cathode structure thereof and method for fabricating the same
    • 场发射背光单元及其阴极结构及其制造方法
    • US08093795B2
    • 2012-01-10
    • US12739190
    • 2008-06-25
    • Jin Woo JeongYoon Ho SongDae Jun Kim
    • Jin Woo JeongYoon Ho SongDae Jun Kim
    • H01J1/62
    • G02F1/133602G02F2001/133601G02F2001/133625H01J63/02
    • Provided is a field emission device, and more particularly, a field emission back light unit which makes an interconnection connected with an external electrode simple and capable of local dimming. To this end, a cathode structure for the field emission back light unit includes a plurality of data electrodes formed on a cathode substrate and spaced apart from one another, an insulating layer formed on the data electrodes, and having exposure regions exposing the predetermined data electrodes, cathode electrodes formed on the insulating layer and electrically connected with the data electrodes through the exposure regions, and at least one field emitter formed on the cathode electrodes, wherein a cathode block is defined based on the cathode electrodes electrically isolated from one another, and brightness of each cathode block can be controlled according to current supplied through the data electrode.
    • 本发明提供一种场发射装置,更具体地说,是使与外部电极连接的互连简单且能够进行局部调光的场致发射背光单元。 为此,用于场发射背光单元的阴极结构包括形成在阴极基板上并彼此间隔开的多个数据电极,形成在数据电极上的绝缘层,并且具有暴露预定数据电极的曝光区域 ,形成在绝缘层上并通过曝光区域与数据电极电连接的阴极电极和形成在阴极电极上的至少一个场致发射体,其中基于彼此电隔离的阴极电极来限定阴极块,以及 可以根据通过数据电极提供的电流来控制每个阴极块的亮度。
    • 6. 发明授权
    • Field emission device
    • 场发射装置
    • US08018169B2
    • 2011-09-13
    • US12279284
    • 2007-03-27
    • Jin Woo JeongYoon Ho SongDae Jun Kim
    • Jin Woo JeongYoon Ho SongDae Jun Kim
    • H01J1/30H01J1/304
    • H01J1/304H01J63/06
    • Disclosed is a field emission device. The field emission device includes: an anode substrate including an anode electrode formed on a surface thereof and a fluorescent layer formed on the anode electrode; a cathode substrate disposed opposite to and spaced apart from the anode substrate, and including at least one cathode electrode formed toward the anode substrate and a field emitter formed on each cathode electrode; and a gate substrate having one surface in contact with the cathode substrate, wherein the gate substrate include gate insulators surrounding the field emitters and having a plurality of openings exposing the field emitters, and a plurality of gate electrodes formed on the gate insulators around the openings and electrically isolated from one another. Thus, when the trajectories of the electron beams emitted from the emitters are rapidly changed over time by a voltage difference between the gate electrodes, an electron beam-scanned area can be expanded due to residual images and the electron beam can be more uniformly emitted due to an electron beam scattering effect and a linear beam spreading effect, resulting in improved emission uniformity of the fluorescent layer.
    • 公开了一种场致发射装置。 场致发射器件包括:阳极基板,包括形成在其表面上的阳极电极和形成在阳极电极上的荧光层; 阴极基板,设置成与阳极基板相对且间隔开,并且包括朝向阳极基板形成的至少一个阴极电极和形成在每个阴极电极上的场致发射体; 以及具有与所述阴极基板接触的一个表面的栅极基板,其中所述栅极基板包括围绕所述场致发射体的栅极绝缘体,并且具有暴露所述场致发射体的多个开口,以及形成在所述栅极绝缘体周围的所述开口 并彼此电隔离。 因此,当从发射器发射的电子束的轨迹随着时间的推移随着栅电极之间的电压差而快速变化时,电子束扫描区域可以由于残留图像而扩大,并且电子束可以更均匀地发射,因为 电子束散射效应和线性光束扩散效应,导致荧光层的发射均匀性得到改善。
    • 9. 发明申请
    • FIELD EMISSION BACK LIGHT UNIT, CATHODE STRUCTURE THEREOF AND METHOD FOR FABRICATING THE SAME
    • 场发射背光单元,其阴极结构及其制造方法
    • US20100225225A1
    • 2010-09-09
    • US12739190
    • 2008-06-25
    • Jin Woo JeongYoon Ho SongDae Jun Kim
    • Jin Woo JeongYoon Ho SongDae Jun Kim
    • H01J1/62H01J1/02H01J9/02
    • G02F1/133602G02F2001/133601G02F2001/133625H01J63/02
    • Provided is a field emission device, and more particularly, a field emission back light unit which makes an interconnection connected with an external electrode simple and capable of local dimming. To this end, a cathode structure for the field emission back light unit includes a plurality of data electrodes formed on a cathode substrate and spaced apart from one another, an insulating layer formed on the data electrodes, and having exposure regions exposing the predetermined data electrodes, cathode electrodes formed on the insulating layer and electrically connected with the data electrodes through the exposure regions, and at least one field emitter formed on the cathode electrodes, wherein a cathode block is defined based on the cathode electrodes electrically isolated from one another, and brightness of each cathode block can be controlled according to current supplied through the data electrode.
    • 本发明提供一种场发射装置,更具体地说,是使与外部电极连接的互连简单且能够进行局部调光的场致发射背光单元。 为此,用于场发射背光单元的阴极结构包括形成在阴极基板上并彼此间隔开的多个数据电极,形成在数据电极上的绝缘层,并且具有暴露预定数据电极的曝光区域 ,形成在绝缘层上并通过曝光区域与数据电极电连接的阴极电极和形成在阴极电极上的至少一个场致发射体,其中基于彼此电隔离的阴极电极来限定阴极块,以及 可以根据通过数据电极提供的电流来控制每个阴极块的亮度。
    • 10. 发明申请
    • Methods of Manufacturing Carbon Nanotube (Cnt) Paste and Emitter with High Reliability
    • 制造具有高可靠性的碳纳米管(Cnt)浆料和发射体的方法
    • US20080299298A1
    • 2008-12-04
    • US12094480
    • 2006-12-01
    • Dae Jun KimYoon Ho SongJin Woo Jeong
    • Dae Jun KimYoon Ho SongJin Woo Jeong
    • B05D5/12H01B1/24
    • B82Y40/00B82Y30/00C01B32/168C01B32/174H01B1/24H01J9/025
    • Provided are methods of manufacturing carbon nanotube (CNT) paste, to which a nano-sized particle is added, and a CNT emitter with high reliability for a field emission display (FED). The method includes the steps of: (i) dispersing CNT powder in a solvent; (ii) adding an organic binder to the solution in which the CNT powder is dispersed; and (iii) performing a milling process to adjust viscosity of the dispersion solution to which the organic binder is added, wherein a nano-sized metal particle is added in step (i) or (iii). Accordingly, the nano-sized metal particle is added as a metal filler of the CNT paste, and thus a metal may be melted at a low temperature at which CNTs do not deteriorate. Thus, adhesion between the CNT paste and a cathode may be improved, and resistance between the cathode and the CNT or between CNTs may be reduced. Further, the CNT paste manufactured by the above method is employed in manufacturing the CNT emitter to thereby obtain uniform emission of electrons from the CNT emitter and increase electron emission sites, and thus the reliability of the CNT emitter may be further improved.
    • 提供了制造纳米尺寸颗粒的碳纳米管(CNT)浆料和用于场发射显示(FED)的具有高可靠性的CNT发射体的方法。 该方法包括以下步骤:(i)将CNT粉末分散在溶剂中; (ii)向其中分散有CNT粉末的溶液中加入有机粘合剂; 和(iii)进行研磨过程以调节添加有机粘合剂的分散液的粘度,其中在步骤(i)或(iii)中加入纳米尺寸的金属颗粒。 因此,纳米尺寸金属颗粒作为CNT浆料的金属填料添加,因此金属可以在不劣化CNT的低温下熔融。 因此,可以提高CNT浆料和阴极之间的粘附性,并且可以降低阴极和CNT之间或CNT之间的电阻。 此外,通过上述方法制造的CNT浆料用于制造CNT发射体,从而从CNT发射体获得均匀的电子发射并增加电子发射部位,从而可以进一步提高CNT发射体的可靠性。