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    • 1. 发明申请
    • Bright Full Color Reflective Display
    • 明亮全彩反光显示屏
    • US20080094689A1
    • 2008-04-24
    • US11718765
    • 2005-11-09
    • Ramon Van GorkomSiebe De ZwartVolker SchollmannRuediger LangeYvonne Kruijt-StegemanRogier Winters
    • Ramon Van GorkomSiebe De ZwartVolker SchollmannRuediger LangeYvonne Kruijt-StegemanRogier Winters
    • G02F1/167G02F1/23G02F1/13
    • G02F1/23G02F1/133553G02F1/1506G02F1/167
    • A full color high brightness reflective display (200, 250, 300, 350) is formed from individual multifaced pyramid-like reflectors (400, 450, 500, 600, 725, 800). Each face (410, 420, 460, 470 510, 520, 610, 620, 730, 740, 810, 820) of the reflector specularly reflects two of the three primary colors of incident light (461, 481, 581, 661, 781, 861), and can be controlled to either reflect, diffusely or specularly, or absorb the other primary color, thereby controlling a color of reflected light (462, 482, 582, 662, 782, 862). A liquid crystal layer (415, 425, 465, 475) may be used at each face, with a polarization filter (480) at the entrance to the reflector, or combined with the layer. An electro wetting cell (514, 524) or an electrophoretic layer (615, 625) may also be used. A deposition layer formed by reversible metal deposition may be used. A movable, dynamic foil mechanism (850) may also be used. The display may be made up of multiple reflectors (210, 220, 260, 270, 310, 320, 360, 370) arranged in a repeating pattern.
    • 单色多角锥体反射器(400,450,500,600,725,800)形成全色高亮度反射显示器(200,250,3300,350)。 反射镜的每个面(410,420,460,470,520,610,620,730,740,810,820)镜面反射入射光(461,481,581,671,781)的三原色中的两个 ,861),并且可以被控制以反射,漫反射或镜面反射或吸收另一个原色,从而控制反射光(462,482,582,662,782,862)的颜色。 可以在每个面处使用液晶层(415,425,465,475),在反射器的入口处使用偏振滤光器(480),或者与层结合。 还可以使用电润湿池(514,524)或电泳层(615,625)。 可以使用通过可逆金属沉积形成的沉积层。 还可以使用可移动的动态箔机构(850)。 显示器可以由以重复图案排列的多个反射器(210,220,260,270,310,320,360,370)组成。
    • 2. 发明申请
    • Line-at-a-time foil display
    • 线上一次性箔片显示
    • US20070008260A1
    • 2007-01-11
    • US10557343
    • 2004-05-14
    • Ramon Van GorkomPeter DuineVolker SchoemannRuediger LangeSiebe De Zwart
    • Ramon Van GorkomPeter DuineVolker SchoemannRuediger LangeSiebe De Zwart
    • G09G3/34
    • G09F9/372G02B26/02
    • A display device comprising a light guide (12), a front plate (14), and an intermediate electromechanically operable foil (16). Two electrode layers (22, 23) are arranged on either side of the foil (16) to induce electrostatic forces on the foil (16) and to bring selected portions of the foil into contact with the light guide (12), thereby extracting light from the light guide (12). The second electrode layer (22) is arranged on the opposite side of the light guide (12) with reference to the foil (16), and separated from the light guide (12) by means of a refractive layer (28). As no electrode layer is required on the light guide itself, the light path of rays extracted from the light guide is cleaner, and the absorption of light is reduced. The light guide can have a thickness such that the light extracted from the light guide per unit length is sufficient to allow for line-at-a-time addressing
    • 一种显示装置,包括导光体(12),前板(14)和中间机电操作箔(16)。 两个电极层(22,23)布置在箔(16)的任一侧上以在箔(16)上引起静电力,并使箔的选定部分与光导(12)接触,从而提取光 从光导(12)。 第二电极层(22)相对于箔(16)设置在导光体(12)的相反侧,并且通过折射层(28)与光导(12)分离。 由于在导光体本身不需要电极层,所以从导光体抽出的光线的光路更清洁,并且减少了光的吸收。 光导可以具有这样的厚度,使得从每个单位长度的光导提取的光足以允许一次寻址
    • 3. 发明申请
    • Picture display device
    • 图片显示装置
    • US20060061253A1
    • 2006-03-23
    • US10531606
    • 2003-09-15
    • Ramon Van GorkomSiebe De Zwart
    • Ramon Van GorkomSiebe De Zwart
    • H01J1/62H01J63/04
    • H01J31/124
    • A display device (1) comprises a luminescent display screen (15), and means for directing electrons towards the display screen (15). Said means comprises comprise an arrangement of at least three plates (36, 41, 42), with a middle plate (36) having selection apertures, and selection electrodes associated with the selection apertures. The selection apertures, the selection electrodes and the plates are arranged for having the electron currents, on their way from a source to the electroluminescent screen, selectively pass the apertures in the middle plate and alternately run at opposite sides of the middle plate. An anti-leakage layer (44 eg) for providing in operation a tunneling counteracting potential is provided on a plate of the arrangement to prevent leakage electrons through gaps between the middle plate and an adjacent plate.
    • 显示装置(1)包括发光显示屏(15),以及用于将电子引向显示屏(15)的装置。 所述装置包括至少三个板(36,41,42)的布置,其中具有选择孔的中间板(36)和与选择孔相关联的选择电极。 选择孔,选择电极和板被布置成具有从源到电致发光屏的途中具有电子电流,选择性地通过中间板中的孔并交替地在中间板的相对侧运行。 用于在操作中提供隧道反作用电位的防漏层(44 eg)设置在该装置的板上,以防止电子通过中间板和相邻板之间的间隙而泄漏。
    • 4. 发明申请
    • Projection Display Device
    • 投影显示设备
    • US20080013052A1
    • 2008-01-17
    • US11574735
    • 2005-08-31
    • Ramon Van GorkomMarcellinus KrijnSiebe De ZwartOscar Willemsen
    • Ramon Van GorkomMarcellinus KrijnSiebe De ZwartOscar Willemsen
    • G03B21/14G03B21/00
    • H04N9/3132H04N5/7416
    • The invention relates to a projection display device (10, 40, 60, 70) for casting an image onto a projection screen (26, 56, 86). The device comprises a spatial light modulator (16, 46, 62, 76) including an array of light modulating elements (18, 48, 78), and a light source (12, 42, 72) arranged to illuminate the modulator. The device is characterized in that each light modulating element of the modulator is illuminated by light diverging in a least one dimension, which light is spatially modulated by the modulator and cast onto the projection screen. An advantage with the projection display device according to the invention is that it can be realized in a very compact fashion. The invention further relates to a hand held device comprising such projection display device.
    • 本发明涉及一种用于将图像投影到投影屏幕(26,56,86)上的投影显示装置(10,40,60,70)。 该装置包括包括光调制元件阵列(18,48,78)的空间光调制器(16,46,62,76)和被布置成照亮调制器的光源(12,42,72)。 该装置的特征在于,调制器的每个光调制元件以至少一个维度发散的光照射,该光被调制器空间调制并投射到投影屏幕上。 根据本发明的投影显示装置的优点是可以以非常紧凑的方式实现。 本发明还涉及一种包括这种投影显示装置的手持式装置。
    • 8. 发明申请
    • Field emission device with self-aligned gate electrode structure, and method of manufacturing same
    • 具有自对准栅电极结构的场发射器件及其制造方法
    • US20070141736A1
    • 2007-06-21
    • US10530308
    • 2003-09-12
    • Liesbeth Van PietersonSiebe De ZwartHugo Visser
    • Liesbeth Van PietersonSiebe De ZwartHugo Visser
    • H01L21/00H01L21/331H01L29/74H01L29/51H01L31/111
    • H01J9/025H01J3/021
    • The invention relates to a field emission device, and a method of manufacturing same. The field emission device comprises a gate electrode (140, 340, 440) which is provided with a pattern of electron passing apertures (135, 335, 435). The gate electrode (140, 340, 440) is arranged near particles (110, 310, 410) distributed on a substrate (125, 325, 425), at least a part of said particles (110, 310, 410) being arranged for emitting electrons. By means of the gate electrode (140, 340, 440), an electric field is applicable by means of which emitting particles emit electrons. Particularly good electron emission is obtained, because the pattern of apertures (135, 335, 435) is similar to the distribution of particles (110, 310, 410) on the substrate. This is achieved by means of the manufacturing method, in which the particles (110, 310, 410) are used in an illumination step to mask regions (155, 355) of a photo layer (150, 352). Thus, a pattern is obtained in the photo layer (150, 352), which can be used to obtain a similar pattern in the gate electrode (140, 340, 440) with relative case.
    • 本发明涉及场发射装置及其制造方法。 场致发射器件包括设置有电子通过孔(135,335,435)图案的栅电极(140,340,440)。 栅电极(140,340,440)布置在分布在衬底(125,325,425)上的颗粒(110,310,410)附近,所述颗粒(110,310,410)的至少一部分被布置为 发射电子。 借助于栅电极(140,340,440),可以通过电场来发射电子发射粒子。 由于孔(135,335,435)的图案类似于衬底上的颗粒(110,310,410)的分布,所以获得了特别好的电子发射。 这通过制造方法来实现,其中在照明步骤中使用颗粒(110,310,410)以掩蔽光层(150,352)的区域(155,355)。 因此,在光电层(150,352)中获得图案,其可以用于以相对尺寸在栅电极(140,340,440)中获得相似的图案。