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    • 61. 发明授权
    • Liquid crystal display with dielectric layer having at least two openings corresponding to each picture element and method of making same
    • 具有介电层的液晶显示器,其具有至少两个对应于每个像素的开口及其制造方法
    • US06259501B1
    • 2001-07-10
    • US09721189
    • 2000-11-24
    • Zvi Yaniv
    • Zvi Yaniv
    • G02F11333
    • G02F1/133377G02F1/133753G02F1/134363G02F2203/34
    • A liquid crystal display device includes a substrate having one or more electrodes formed onto one major surface thereof. The substrate and electrodes are then coated with a layer of a dielectric material through which is formed a plurality of openings or vias. Into the openings is disposed a layer of a light influencing material, such as a color filter medium, a liquid crystal material, or an alignment material. In the embodiment in which the light influencing material is a liquid crystal material, it is possible to put one or more different liquid crystal materials into each opening. This allows two adjacent openings to project light of a substantially different character, based on the differing material disposed in each opening. A method for forming a liquid crystal device such as that described above includes the step of providing a liquid crystal display substrate, and forming at least one, and preferably a plurality of electrodes on a surface thereof. Thereafter, a layer of dielectric material is formed onto the surface of the electrodes and substrate. The dielectric material is the treated, as by a laser, to form a plurality of holes or openings therein. Into the openings is disposed the light influencing material.
    • 一种液晶显示装置,其具有在一个主面上形成有一个或多个电极的基板。 然后用一层电介质材料涂覆衬底和电极,通过该层形成多个开口或通孔。 在开口中设置有影响光的材料层,例如滤色器介质,液晶材料或取向材料。 在光影响材料是液晶材料的实施例中,可以将一种或多种不同的液晶材料放入每个开口中。 这允许两个相邻的开口基于设置在每个开口中的不同材料来投射基本上不同的特征的光。一种用于形成如上所述的液晶装置的方法包括提供液晶显示基板的步骤,以及形成 至少一个,并且优选地在其表面上具有多个电极。 此后,在电极和基板的表面上形成介电材料层。 介电材料是通过激光被处理以在其中形成多个孔或开口。 在开口中设置光影响材料。
    • 63. 发明授权
    • Multipole liquid crystal display with alignment layer
    • 具有取向层的多极液晶显示器
    • US5905557A
    • 1999-05-18
    • US996223
    • 1997-12-22
    • Zvi Yaniv
    • Zvi Yaniv
    • G02F1/1343
    • G02F1/134363
    • An improved efficiency liquid crystal display device (10) includes at least two pairs of electrode disposed above and below, and on two sides of each display pixel (12). Operatively associated with at least one electrode of each pair is an alignment layer. Each pair of electrodes is capable of applying an electrical field to a layer of liquid crystal material disposed therebetween. The applied electrical fields cause the liquid crystal materials to switch from a first to a second optical state corresponding to an opaque and transparent state. The result is a display device having higher optical efficiencies, and faster display response times. Multiple intermediate optical states are possible by applying varying amounts of electrical charge to the two pairs of electrodes at the same time. The alignment layer lets the liquid crystal material remain in the state set until a second field is applied.
    • 改进的效率液晶显示装置(10)包括在每个显示像素(12)的上方和下方以及两侧设置的至少两对电极。 与每对的至少一个电极操作相关联的是取向层。 每对电极能够将电场施加到设置在它们之间的液晶材料层。 所施加的电场导致液晶材料从对应于不透明和透明状态的第一光学状态切换到第二光学状态。 结果是具有更高的光学效率和更快的显示响应时间的显示装置。 通过在两对电极同时施加不同数量的电荷,可以实现多个中间光学状态。 取向层使液晶材料保持在设定的状态,直到施加第二场。
    • 68. 发明授权
    • Step and repeat exposure apparatus and method
    • 步骤和重复曝光装置和方法
    • US4669868A
    • 1987-06-02
    • US853534
    • 1986-04-18
    • Walter ChapelleZvi YanivYair Baron
    • Walter ChapelleZvi YanivYair Baron
    • G03F7/20G03B27/42
    • G03F7/70425G03F7/7035
    • An apparatus and method for exposing a film of radiation sensitive material overlying a substrate to a pattern of radiation utilizes proximity focusing of a mask pattern onto the film and step and repeat techniques for exposing the entire area of the film to be exposed. The apparatus includes a source of radiation, a substrate holder supporting the substrate with the film of radiation sensitive material thereon in the path of the radiation, and a mask holder for supporting the mask intermediate the radiation source and the film in close proximity thereto for proximity focusing the mask pattern onto the film. A stepping means incrementally moves the mask relative to the substrate to permit exposure of the film area.
    • 用于将覆盖在衬底上的辐射敏感材料的膜暴露于辐射图案的装置和方法利用掩模图案到膜上的接近聚焦和步骤以及用于暴露待暴露的膜的整个区域的重复技术。 该设备包括辐射源,在辐射路径中支撑基底与其上的辐射敏感材料的基底保持器,以及掩模支架,用于在靠近辐射源和膜附近支撑掩模以用于接近 将掩模图案聚焦到胶片上。 步进装置逐渐地移动掩模相对于基底以允许胶片区域的曝光。
    • 69. 发明授权
    • Programmable semiconductor structures and methods for using the same
    • 可编程半导体结构及其使用方法
    • US4646266A
    • 1987-02-24
    • US655961
    • 1984-09-28
    • Stanford R. OvshinskyRobert R. JohnsonVincent D. CannellaZvi Yaniv
    • Stanford R. OvshinskyRobert R. JohnsonVincent D. CannellaZvi Yaniv
    • H01L21/82H01L21/8229H01L27/06H01L27/10H01L27/102H01L27/118H01L29/861G11C17/00
    • H01L29/8615H01L27/0688H01L27/1021H01L27/118Y10S257/926
    • A solid state semiconductor device is disclosed which is programmable so as to alter the impedance between its two terminals. In many embodiments, the device is programmable to have any one of four conditions: a first in which the electrical impedance is relatively high in both directions; a second in which the impedance is relatively high in one direction and relatively low in the opposite direction; a third in which the impedance is relatively high in the opposite direction and relatively low in the first direction; and a fourth in which the impedance is relatively low in both directions. Such a programmable device can be made with semiconductor layers which form two series coupled back-to-back diodes, each of which can be selectively programmed to lose its rectifying feature. Structures are disclosed which include a plurality of such programmable devices in one or more separately programmable planes, each with its own addressing means. Programmable logic arrays can be formed out of such multilayered cell structures, including programmable logic arrays, in which the AND and OR planes are vertically disposed one on top of the other.
    • 公开了一种可编程的固态半导体器件,以便改变其两个端子之间的阻抗。 在许多实施例中,该装置可编程为具有以下四个条件中的任何一个:第一,其中电阻抗在两个方向上相对较高; 阻抗在一个方向上相对较高并且在相反方向上相对较低的第二个; 其中阻抗在相反方向上相对较高并且在第一方向上相对较低的第三, 阻抗在两个方向上相对较低的第四个。 这种可编程器件可以由形成两个串联耦合的背对背二极管的半导体层制成,每个二极管可被选择性地编程以失去其整流特征。 公开了在一个或多个单独可编程平面中包括多个这样的可编程设备的结构,每个具有其自己的寻址装置。 可编程逻辑阵列可以由这样的多层单元结构形成,包括可编程逻辑阵列,其中AND和OR平面垂直地布置在另一个之上。
    • 70. 发明授权
    • Thin film transistor having an annealed gate oxide and method of making
same
    • 具有退火栅极氧化物的薄膜晶体管及其制造方法
    • US4633284A
    • 1986-12-30
    • US549979
    • 1983-11-08
    • Gregory L. HansellZvi YanivVincent D. Cannella
    • Gregory L. HansellZvi YanivVincent D. Cannella
    • H01L29/786H01L29/78
    • H01L29/78684H01L29/78642
    • A new and improved thin film field effect transistor and method provides such a transistor having increased operating frequencies and higher output currents. The transistor includes a gate electrode having a non-coplanar surface with respect to the substrate and a deposited semiconductor material overlying the gate electrode to form a current conductor channel between a source and drain. The length of the current conduction channel is determined by the thickness of the gate electrode which can be accurately controlled. As a result, short channel lengths are possible without high precision photolithography for high output currents and fast operating speeds. Further, a gate insulator is disposed between the gate and the deposited semiconductor. The gate insulator, which can be a gate oxide, can be annealed prior to the deposition of the deposited semiconductor to provide enhanced field effect mobilities. This further increases the transistor output currents and operating speeds.
    • 新的和改进的薄膜场效应晶体管和方法提供了具有增加的工作频率和更高输出电流的这种晶体管。 晶体管包括相对于衬底具有非共面表面的栅电极和覆盖栅电极的沉积半导体材料,以在源极和漏极之间形成电流导体沟道。 电流传导通道的长度由可精确控制的栅电极的厚度确定。 因此,对于高输出电流和快速的工作速度,短沟道长度可能没有高精度光刻。 此外,栅极绝缘体设置在栅极和沉积的半导体之间。 可以在栅极氧化物之间的栅极绝缘体在沉积半导体之前进行退火,以提供增强的场效应迁移率。 这进一步增加了晶体管的输出电流和工作速度。