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    • 35. 发明授权
    • Crosspoint microwave switching architecture for optical telecommunications
    • 光通信交叉点微波交换架构
    • US06668106B1
    • 2003-12-23
    • US09792287
    • 2001-02-23
    • Jules D. LevineThomas W. MyersChristopher Weller
    • Jules D. LevineThomas W. MyersChristopher Weller
    • G02B626
    • H04Q11/0005G02B6/356H04J14/0212H04Q2011/0035
    • The present invention combines several features to create a novel type of optical telecommunications switching component using microwave waveguides as opposed to the usual methods employing light deflection or digital signal processing. Some of the components of the device include: (1) an optical crossconnect (OXC) which allows any combination of wavelengths to be added or dropped from an element to an optical network, (2) an optical add/drop multiplexer (OADM) which allows any wavelength to be converted to any other, (3) a microwave crossbar switch array optimized for this purpose, and (4) a means for reshaping the exiting signal from the microwave crosspoint switch array without regard to signal format and without need for complex and expensive digital signal processing. The minimal architecture for this functionality is shown to be three N×N microwave crossbar switch arrays.
    • 与使用光偏转或数字信号处理的通常方法相反,本发明组合了若干特征以创建使用微波波导的新型光通信开关部件。 器件的一些部件包括:(1)光学交叉连接(OXC),其允许将波长的任何组合从元件添加或掉落到光网络;(2)光分插复用器(OADM),其中 允许将任何波长转换为任何其他(3)为此目的而优化的微波交叉开关阵列,以及(4)用于重新形成来自微波交叉点开关阵列的退出信号的装置,而不考虑信号格式,并且不需要复杂 和昂贵的数字信号处理。 该功能的最小架构显示为三个NxN微波交叉开关阵列。
    • 37. 发明授权
    • Grooved anode plate for cathodoluminescent display device
    • 阴极发光显示装置用凹版阳极板
    • US5637958A
    • 1997-06-10
    • US399316
    • 1995-03-06
    • Jules D. Levine
    • Jules D. Levine
    • H01J29/89H01J29/08H01J29/18H01J29/24H01J31/12H01J1/62
    • H01J29/24H01J29/085
    • A face plate (10) of an FED image display has a grooved rear surface (25) formed with projections (36). Projections (36) have surfaces (39) covered in regions (58, 59) with electrical conductive material (54) and different color emitting phosphor particles (56a, 56b). The regions (58, 59) define different color anode combs. Surfaces (39) in regions (61) between regions (58,59) are covered with insulative, light absorbing material (62) for absorption of ambient light. Surfaces (39) are formed to encourage forward direction of phosphor-emitted light. In one embodiment, surfaces (39) serve to channel ambient light rearwardly toward projection apexes (40) which are covered with light absorbing material (62). Projections (36) may be parallel elongated prisms, pyramids or cones.
    • FED图像显示器的面板(10)具有形成有突起(36)的带槽的后表面(25)。 投影(36)具有用导电材料(54)和不同的发光荧光体颗粒(56a,56b)覆盖的区域(58,59)中的表面(39)。 区域(58,59)限定不同的颜色阳极梳。 区域(58,59)之间的区域(61)中的表面(39)被用绝缘光吸收材料(62)覆盖以吸收环境光。 形成表面(39)以促进磷光体发射光的向前方向。 在一个实施例中,表面(39)用于将环境光向后引导到被光吸收材料(62)覆盖的突出顶点(40)。 投影(36)可以是平行细长的棱镜,棱锥或锥体。
    • 38. 发明授权
    • Cluster arrangement of field emission microtips
    • 集束排列场发射微尖
    • US5569975A
    • 1996-10-29
    • US378328
    • 1995-01-26
    • Robert H. TaylorJules D. Levine
    • Robert H. TaylorJules D. Levine
    • H01J31/12H01J1/30H01J1/304H01J9/02
    • H01J1/3042H01J2201/319
    • The emitter plate 60 of a field emission flat panel display device includes a layer 68 of a resistive material and a mesh-like structure 62 of an electrically conductive material. A conductive plate 78 is also formed on top of resistive coating 68 within the spacing defined by the meshes of conductor 62. Microtip emitters 70, illustratively in the shape of cones, are formed on the upper surface of conductive plate 78. With this configuration, all of the microtip emitters 70 will be at an equal potential by virtue of their electrical connection to conductive plate 78. In one embodiment, a single conductive plate 82 is positioned within each mesh spacing of conductor 80; in another embodiment, four conductive plates 92 are symmetrically positioned within each mesh spacing of conductor 90. Also described is an arrangement of emitter clusters including conductive plates 102 having a plurality of microtip emitters 104 formed thereon, or spaced thereform by a thin layer of resistive material, each cluster adjacent and laterally spaced from a stripe conductor 100 by a region 106 of a resistive material. The conductive stripes 100 are substantially parallel to each other, are spaced from one another by two conductive plates 102, and are joined by bus regions 110 outside the active area of the display.
    • 场发射平板显示装置的发射极板60包括电阻材料层68和导电材料的网状结构62。 在由导体62的网格限定的间隔内,还在电阻涂层68的顶部形成导电板78.导电板78的上表面上形成了示意为锥体形状的微尖头发射体70。 通过它们与导电板78的电连接,所有微尖端发射器70将处于相等的电位。在一个实施例中,单个导电板82位于导体80的每个网格间隔内; 在另一个实施例中,四个导电板92对称地定位在导体90的每个网格间隔内。还描述了发射器簇的布置,其包括导电板102,其具有形成在其上的多个微尖端发射器104,或者由薄层 材料,每个簇通过电阻材料的区域106与条状导体100相邻和横向间隔开。 导电条100基本上彼此平行,通过两个导电板102彼此隔开,并且通过显示器的有效区域外的总线区域110连接。
    • 39. 发明授权
    • Cluster arrangement of field emission microtips on ballast layer
    • 场致发射微阵列在镇流器层上的簇排列
    • US5541466A
    • 1996-07-30
    • US341829
    • 1994-11-18
    • Robert H. TaylorJules D. Levine
    • Robert H. TaylorJules D. Levine
    • H01J1/304H01J1/02
    • H01J1/3042H01J2201/319
    • The emitter plate 60 of a field emission flat panel display device includes a layer 68 of a resistive material and a mesh-like structure 62 of an electrically conductive material. A conductive plate 78 is also formed on top of resistive coating 68 within the spacing defined by the meshes of conductor 62. Microtip emitters 70, illustratively in the shape of cones, are formed on the upper surface of conductive plate 78. With this configuration, all of the microtip emitters 70 will be at an equal potential by virtue of their electrical connection to conductive plate 78. In one embodiment, a single conductive plate 82 is positioned within each mesh spacing of conductor 80; in another embodiment, four conductive plates 92 are symmetrically positioned within each mesh spacing of conductor 90. Also disclosed is an arrangement of emitter clusters comprising conductive plates 102 having a plurality of microtip emitters 104 formed thereon, each cluster adjacent and laterally spaced from a stripe conductor 100 by a region 106 of a resistive material. The conductive stripes 100 are substantially parallel to each other, are spaced from one another by two conductive plates 102, and are joined by bus regions 110 outside the active area of the display.
    • 场发射平板显示装置的发射极板60包括电阻材料层68和导电材料的网状结构62。 在由导体62的网格限定的间隔内,还在电阻涂层68的顶部形成导电板78.导电板78的上表面上形成了示意为锥体形状的微尖头发射体70。 通过它们与导电板78的电连接,所有微尖端发射器70将处于相等的电位。在一个实施例中,单个导电板82位于导体80的每个网格间隔内; 在另一个实施例中,四个导电板92对称地定位在导体90的每个网格间隔内。还公开了发射器​​簇的布置,其包括导电板102,其具有形成在其上的多个微尖端发射器104,每个簇相邻并且横向间隔开条带 导体100由电阻材料的区域106。 导电条100基本上彼此平行,通过两个导电板102彼此隔开,并且通过显示器的有效区域外的总线区域110连接。