会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • Electrophoretic Display Panel
    • 电泳显示面板
    • US20080285113A1
    • 2008-11-20
    • US11569197
    • 2005-05-11
    • Murray GilliesMark Thomas Johnson
    • Murray GilliesMark Thomas Johnson
    • G02F1/167
    • G02F1/167G02F1/134363
    • For the electrophoretic display panel (1) to able to have a relatively large number of attainable optical states for displaying the picture, even if the liquid is transparent, the electrophoretic display panel (1) has a magnetic field generator (120) for generating a magnetic field, a pixel (2) having a viewing surface (91) for being viewed by a viewer, electrodes (10,15) for receiving potentials for generating an electric field, an electrophoretic medium (5) having first charged particles (6) and second charged particles (7) having dissimilar optical properties, at least one type of the first and the second particles (6,7) having a net magnetic moment, a combination of the electric and the magnetic field providing a decoupled movement of the first and the second charged particles (6,7) to their respective positions for displaying the picture. Furthermore, the electrodes (10,15) are arranged to enable the particles (10,15) to move in a plane parallel to the viewing surface (91) and the pixel (2) has an optical state depending on the positions of the particles (6,7).
    • 对于电泳显示面板(1),即使液体是透明的,即使液体是透明的,能够具有相对大量可获得的光学状态来显示图像,电泳显示面板(1)具有用于产生 磁场,具有用于观看者观看的观察表面(91)的像素(2),用于接收用于产生电场的电位的电极(10,15),具有第一带电粒子(6)的电泳介质(5) 和具有不同光学特性的第二带电粒子(7),至少一种类型的第一和第二粒子(6,7)具有净磁矩,电场和磁场的组合提供第一和第二粒子的去耦运动 和第二带电粒子(6,7)到其各自的位置以显示图像。 此外,电极(10,15)被布置成使得颗粒(10,15)能够在平行于观察表面(91)的平面中移动,并且像素(2)具有取决于颗粒的位置的光学状态 (6,7)。
    • 5. 发明申请
    • Electrophoretic Display Panel
    • 电泳显示面板
    • US20080024428A1
    • 2008-01-31
    • US11569198
    • 2005-05-11
    • Murray GilliesMark Thomas Johnson
    • Murray GilliesMark Thomas Johnson
    • G02F1/167
    • G02F1/167
    • For the electrophoretic display panel (1) to be able to be addressed by passive matrix techniques and to be used in light transmissive mode, the electrophoretic display panel (1) has a magnet (120) for generating a magnetic field, and a pixel (2) having electrodes (10,15) for receiving potentials for generating an electric field, an electrophoretic medium (5) having charged particles (6), the particles (6) having a net magnetic moment and being able to be moved to their position for displaying the picture by a combination of the electric and the magnetic field, an entrance window (92), and an exit window (91) for exiting a portion of transmissable light out of the pixel (2). Furthermore, the transmissable light is capable of having a lightpath from entering the pixel (2) via the entrance window (92), passing through the pixel (2) and exiting out of the pixel (2) via the exit window (91), the portion depending on the position of the particles (6). Furthermore, the magnet (120) is arranged outside the lightpath of at least part of the transmissable light for providing the entrance window (92) to be at least partly distinct from the exit window (91).
    • 为了能够通过无源矩阵技术对电泳显示面板(1)进行寻址并且在透光模式下使用,电泳显示面板(1)具有用于产生磁场的磁体(120)和用于产生磁场的像素( 2)具有用于接收用于产生电场的电位的电极(10,15),具有带电粒子(6)的电泳介质(5),所述粒子(6)具有净磁矩并能够移动到其位置 用于通过电场和磁场的组合来显示图像,入射窗(92)和用于将透射光的一部分离开像素(2)的出射窗(91)。 此外,透射光能够具有经由入口窗口(92)进入像素(2)的光路,穿过像素(2)并经由出射窗(91)离开像素(2), 该部分取决于颗粒(6)的位置。 此外,磁体(120)布置在可透射光的至少一部分的光路的外侧,用于提供与出射窗(91)至少部分不同的入口窗(92)。
    • 6. 发明申请
    • Display Device
    • 显示设备
    • US20080252606A1
    • 2008-10-16
    • US11568517
    • 2005-05-03
    • Murray GilliesMark Thomas Johnson
    • Murray GilliesMark Thomas Johnson
    • G06F3/041
    • G06F3/03545
    • A matrix display device (32) comprising at least one structured layer, arranged on a substrate and formed so as to include a code (31), detectable by a pointing device (33) to determine a position on the display (32). Providing the pixel structure with a location code can be achieved by relatively simple modifications of the manufacturing process. Therefore, the code can be incorporated in the display device in a very cost efficient manner, typically not increasing the manufacturing cost of a conventional matrix display. It will therefore either reduce the cost price of devices where a touch screen is already present or greatly improve the functionality of many products where a touch screen is at present too expensive.
    • 一种矩阵显示装置(32),包括至少一个结构化层,布置在基板上并且形成为包括可由指示装置(33)检测以便确定显示器(32)上的位置的代码(31)。 通过对生产过程的相对简单的修改可以实现具有位置代码的像素结构。 因此,代码可以以非常成本有效的方式并入显示设备中,通常不会增加常规矩阵显示器的制造成本。 因此,它将降低触摸屏已经存在的设备的成本价格,或者大大提高了目前触摸屏太贵的许多产品的功能。
    • 8. 发明申请
    • Field emission device, and method of manufacturing such a device
    • 场发射装置及其制造方法
    • US20060055310A1
    • 2006-03-16
    • US10538096
    • 2003-11-12
    • Teunis VinkMarcus VerschuurenMurray Gillies
    • Teunis VinkMarcus VerschuurenMurray Gillies
    • H01J63/04
    • H01J1/304H01J9/025
    • A field emission device (100) is provided with a cathode electrode (120) and a gate electrode (140). Between these electrodes, a patterned dielectric layer (130) is provided. According to the invention, this dielectric layer (130) is manufactured from a liquid precursor material (131) which is patterned by means of a liquid embossing step, i.e. engaging a patterned stamp (150) with the liquid material (131). After removing the stamp (150), the liquid material is cured to form the patterned dielectric layer (130). Preferably, in a subsequent manufacturing step, the cathode electrode (120) or the gate electrode (140) is formed over the patterned dielectric layer (130) in a self-aligned way.
    • 场发射器件(100)设置有阴极电极(120)和栅电极(140)。 在这些电极之间,提供了图案化的介电层(130)。 根据本发明,该电介质层(130)由液体前体材料(131)制成,该液体前体材料通过液体压花步骤进行图案化,即将图案化的印模(150)与液体材料(131)接合。 在移除印模(150)之后,液体材料被固化以形成图案化的介电层(130)。 优选地,在随后的制造步骤中,阴极电极(120)或栅电极(140)以自对准的方式形成在图案化的介电层(130)上。