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    • 4. 发明申请
    • METHOD FOR ATTACHING SPACERS IN AN EMISSION DISPLAY
    • 用于在发射显示器中连接间隔物的方法
    • WO2007040699A3
    • 2008-09-25
    • PCT/US2006025903
    • 2006-06-30
    • MOTOROLA INCDEAN KENNETH ALI HAO
    • DEAN KENNETH ALI HAO
    • H01J63/04G03F7/00
    • H01J29/327H01J9/242H01J29/864H01J31/127H01J2329/8625
    • A method is provided for bonding spacers (22) to an anode (12) and/or cathode (24) of a flat panel display. The method comprises forming a black matrix layer (26) between a ductile metal layer (28) and a first display plate (12), the black matrix layer (26) and the ductile metal layer (28) defining a plurality of regions (20) surrounding a plurality of pixels (16). A cathodoluminescent material (18) is formed within each of the pixels (16) and an aluminum layer (32) may be formed on the silver layer (28) and the cathodoluminescent layer (18). A first end (52) of each of a plurality of spacers is attached to one each of the regions (20), wherein a thermocompression bonding positions the spacer (22) contiguous to the ductile metal layer (28). The second display plate (24), e.g., cathode, is attached to a second end of each of the plurality of spacers (22).
    • 提供一种用于将间隔物(22)连接到平板显示器的阳极(12)和/或阴极(24)的方法。 该方法包括在延性金属层(28)和第一显示板(12)之间形成黑矩阵层(26),黑矩阵层(26)和延性金属层(28)限定多个区域 )围绕多个像素(16)。 在每个像素(16)内形成阴极发光材料(18),并且可以在银层(28)和阴极发光层(18)上形成铝层(32)。 多个间隔件中的每一个的第一端(52)附接到每个区域(20),其中热压接将位置与延性金属层(28)邻接的间隔物(22)定位。 第二显示板(24),例如阴极,附接到多个间隔件(22)中的每一个的第二端。
    • 5. 发明申请
    • PORTABLE ELECTRONIC DEVICE HAVING APPEARANCE CUSTOMIZABLE HOUSING
    • 具有外观可定制外壳的便携式电子设备
    • WO2008048736A1
    • 2008-04-24
    • PCT/US2007/074955
    • 2007-08-01
    • MOTOROLA, INC.DEAN, Kenneth A.
    • DEAN, Kenneth A.
    • G09G3/19
    • G02F1/13476G02F1/13718G02F2001/13478G06F1/1626G06F1/1656G06F1/1684G06F1/181G09G3/3433H04M1/0283H04M1/22
    • A portable electronics device (110) is provided having a thin, low power color and pattern customizable housing surface (118, 120, 122) wherein the color and/or pattern can be configured at anytime to any color. The portable electronics device (110) comprises a skin (200) positioned on the surface, wherein the skin (200) includes a first plurality of layers (202, 302, 406) for selectively reflecting a first color, a second plurality of layers (204, 304, 404) for selectively reflecting a second color; and a third plurality of layers (206, 306, 402) for selectively reflecting a third color. Circuitry is positioned within the housing for receiving and storing at least one appearance feature, and for selecting one of the at least one appearance feature for presentation by the skin.
    • 提供了一种便携式电子设备(110),其具有薄的,低功率的颜色和图案可定制的外壳表面(118,120,122),其中颜色和/或图案可以随时配置为任何颜色。 便携式电子设备(110)包括位于表面上的皮肤(200),其中皮肤(200)包括用于选择性地反射第一颜色的第一多个层(202,302,406),第二多个层 204,304,404),用于选择性地反射第二颜色; 以及用于选择性地反射第三颜色的第三多个层(206,306,402)。 电路定位在壳体内,用于接收和存储至少一个外观特征,并且用于选择至少一个外观特征中的一个以由皮肤呈现。
    • 10. 发明申请
    • FIELD EMISSION DEVICE
    • 场发射装置
    • WO2007089991A2
    • 2007-08-09
    • PCT/US2007060731
    • 2007-01-19
    • MOTOROLA INCDEAN KENNETH ACOLL BERNARD FHOWARD EMMETT M
    • DEAN KENNETH ACOLL BERNARD FHOWARD EMMETT M
    • H01J1/62
    • H01J31/127H01J29/025
    • A field emission device (10) is provided that prevents electrical breakdown. The field emission device (10) comprises an anode (40) distally disposed from a cathode plate that includes an insulating substrate (12) having a portion exposed to the anode (40), and a cathode metal (14) overlying another portion of the insulating substrate (12). A gate electrode (26) overlies an oxide (24) above at least a portion of the cathode metal (14) and optionally above a portion of the substrate. A dielectric layer (18) is positioned between a resistive layer (22) and the cathode metal (14), and substantially all of the exposed substrate, and underlies substantially all of the gate electrode (26) including its edges (34, 46), providing a resistance between the cathode metal (14) and the edges (34, 46).
    • 提供了一种防止电击穿的场致发射装置(10)。 场发射器件(10)包括从阴极板向远侧设置的阳极(40),阴极板包括具有暴露于阳极(40)的部分的绝缘衬底(12)和覆盖在阳极(40)的另一部分上的阴极金属 绝缘基板(12)。 栅电极(26)覆盖在阴极金属(14)的至少一部分上方的氧化物(24)上,并且任选地位于衬底的一部分上方。 电介质层(18)位于电阻层(22)和阴极金属(14)之间,并且基本上全部暴露的衬底,并且基本上包括其边缘(34,46)的所有栅电极(26) 提供阴极金属(14)和边缘(34,46)之间的电阻。