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
    • 11. 发明授权
    • Opto-electrical apparatus employing lateral MIM device pairs
    • 采用横向MIM器件对的光电器件
    • US5396353A
    • 1995-03-07
    • US904104
    • 1992-06-24
    • Kotoyoshi TakahashiTakeyoshi Ushiki
    • Kotoyoshi TakahashiTakeyoshi Ushiki
    • G02F1/136G02F1/1362G02F1/1365
    • G02F1/1365G02F1/13624
    • An opto-electrical apparatus, such as, a liquid crystal display device, comprises a pixel electrode driving element a first conductor, an insulator and a second conductor formed in stacked sequence on the substrate with the insulator comprising a thicker barrier layer atop the first conductor compared to the side portions thereof. The second conductor is formed in two locations on the insulating side portions of the insulator as well as a portion of the top surface comprising the barrier layer. As a result, a pair of nonlinear devices are formed relative to the same insulator and are connected between a pixel electrode and inter-device interconnect so that an electrically aligned, series connected pair of MIM devices with opposite polarity formation both having nonlinear current/voltage characteristics. Concurrently, a pair of parasitic, secondary MIM devices are also formed in electrically aligned fashion between a pixel electrode and is inter-device interconnect, but the signal path developed through these secondary MIM, devices is characterized by including two thick barrier layers and has the same effect of doubling the barrier layer thickness and creating about twice the resistance and reducing by about one half the capacitance. As a result, deteriorating electrical characteristics due to presence of the secondary nonlinear device, are prevented so that there is a major improvement in the image quality and the reproducibility and yield of the opto-electrical apparatus.
    • 诸如液晶显示装置的光电装置包括像素电极驱动元件,第一导体,绝缘体和第二导体,其以层叠的顺序形成在衬底上,绝缘体包括在第一导体顶部较厚的阻挡层 与其侧部相比。 第二导体形成在绝缘体的绝缘侧部分上的两个位置以及包括阻挡层的顶表面的一部分。 结果,一对非线性器件相对于相同的绝缘体形成,并且连接在像素电极和器件间互连之间,使得具有相反极性形成的电对齐的串联连接的MIM器件对具有非线性电流/电压 特点 同时,一对寄生二次MIM器件也以像素电极之间的电对准方式形成并且是器件间互连,但是通过这些二次MIM器件形成的信号路径的特征在于包括两个厚的阻挡层,并且具有 阻挡层厚度加倍并产生约两倍的电阻并减少电容约一半的同样的效果。 结果,防止了由于存在二次非线性装置而导致的劣化的电特性,使得光电装置的图像质量和再现性和产量有了显着的提高。
    • 16. 发明授权
    • Input-capable display device
    • 具有输入能力的显示设备
    • US07633566B2
    • 2009-12-15
    • US11956385
    • 2007-12-14
    • Sumio UtsunomiyaTakeshi KoshiharaTakeyoshi UshikiYoichi Fujikawa
    • Sumio UtsunomiyaTakeshi KoshiharaTakeyoshi UshikiYoichi Fujikawa
    • G02F1/1335G02F1/1343G06F3/044
    • G06F3/044
    • An input-capable display device includes a first substrate a second substrate, a detection electrode, a dielectric film, and a detector. A pair of electrodes that drive a liquid crystal layer are provided on the first substrate. The second substrate is opposed to the first substrate through the liquid crystal layer. The detection electrode and the dielectric film are laminated on an outer surface of the second substrate. The detector detects a position at which an electrostatic capacitance is formed with the detection electrode through the dielectric film. The second substrate includes a shield conductor that is provided on a side adjacent to the liquid crystal layer. An electric potential of the shield conductor is fixed. The shield conductor has a plurality of birefringent structures that are arranged in a stripe.
    • 具有输入能力的显示装置包括第一基板,第二基板,检测电极,电介质膜和检测器。 驱动液晶层的一对电极设置在第一基板上。 第二基板通过液晶层与第一基板相对。 检测电极和电介质膜层叠在第二基板的外表面上。 检测器通过电介质膜检测与检测电极形成静电电容的位置。 第二基板包括设置在与液晶层相邻的一侧的屏蔽导体。 屏蔽导体的电位是固定的。 屏蔽导体具有布置成条纹的多个双折射结构。
    • 18. 发明授权
    • Two-terminal type non-linear element, manufacturing method and liquid crystal display panel
    • 双端子型非线性元件,制造方法和液晶显示面板
    • US06710826B2
    • 2004-03-23
    • US10095688
    • 2002-03-13
    • Takashi InoueYasushi TakanoHideaki NaonoWataru ItoTsutomu AsakawaTakeyoshi Ushiki
    • Takashi InoueYasushi TakanoHideaki NaonoWataru ItoTsutomu AsakawaTakeyoshi Ushiki
    • G02F1136
    • H01L45/00G02F1/1365
    • The present invention provides a MIM type non-linear element in which the capacitance is sufficiently small and in which little changes over time are exhibited in the current-voltage characteristics, a liquid crystal display panel with high image quality using the MIM type non-linear element, and a method of manufacturing the MIM type non-linear element. The MIM type non-linear element includes a first conductive film, an insulation film and a second conductive film, which are laminated on a substrate. The insulation film has a relative dielectric constant of 25.5 or less, preferably 24.0-25.5. In elementary analysis by SIMS, a hydrogen spectrum of the boundary region between the first conductive film and the insulation film has a width of 10 nm or more in the depth direction at an intensity of one tenth of the peak intensity. The first conductive film of the MIM type non-linear element shows a peak temperature of 300° C. or higher in a thermal desorption spectroscopy of hydrogen. The MIM type non-linear element is manufactured by, for example, a method containing the steps of (a) forming the first conductive film, (b) heat-treating the first conductive film at a temperature of 300° C. or higher in an inert gas, (c) forming the insulation film on the surface of the first conductive film by anodization of the first conductive film, and (d) forming the second conductive film on the surface of the insulation film.
    • 本发明提供了一种MIM型非线性元件,其中电容足够小,并且在电流 - 电压特性中随时间呈现小的变化,使用MIM型非线性的具有高图像质量的液晶显示面板 元件,以及MIM型非线性元件的制造方法。 MIM型非线性元件包括层叠在基板上的第一导电膜,绝缘膜和第二导电膜。 绝缘膜的相对介电常数为25.5以下,优选为24.0〜25.5。 在通过SIMS的元素分析中,第一导电膜和绝缘膜之间的边界区域的氢谱在峰强度的十分之一处具有在深度方向上的10nm或更大的宽度。 MIM型非线性元件的第一导电膜在氢的热解吸光谱中显示出300℃以上的峰值温度。 MIM型非线性元件例如通过以下步骤制造:(a)形成第一导电膜,(b)在300℃以上的温度下对第一导电膜进行热处理 惰性气体,(c)通过第一导电膜的阳极氧化在第一导电膜的表面上形成绝缘膜,以及(d)在绝缘膜的表面上形成第二导电膜。
    • 19. 发明授权
    • Method of fabricating two-terminal nonlinear element using non-aqueous electrolyte
    • 使用非水电解质制造二端非线性元件的方法
    • US06663760B2
    • 2003-12-16
    • US09117681
    • 1998-09-15
    • Takashi InoueTakeyoshi UshikiTakumi SekiMakoto UeFumikazu MizutaniSachie Takeuchi
    • Takashi InoueTakeyoshi UshikiTakumi SekiMakoto UeFumikazu MizutaniSachie Takeuchi
    • C25D1126
    • C25D11/02G02F1/1365
    • A non-aqueous electrolyte comprises an organic solvent and a solute, and also has an electrolytic conductivity that is greater than or equal to 1 mS/cm but less than or equal to 100 mS/cm. This solute preferably includes at least one of a carboxylate and a salt of inorganic oxoacid. In addition, the non-aqueous electrolyte preferably comprises water in a proportion of 1 to 10 wt %. In an MIM nonlinear element (20), an insulated film (24) is formed by anodic oxidation using the above non-aqueous electrolyte. In addition, the insulated film comprises at least one of carbon atoms and atoms of families 3 to 7 that were originally the central atoms of the salt of inorganic oxoacid, and has a relative permittivity of 10 to 25. With this MIM nonlinear element, the capacitance is sufficiently small, the steepness of the voltage-current characteristic is sufficiently large, and also the resistance is sufficiently uniform over a wide area.
    • 非水电解质包含有机溶剂和溶质,并且还具有大于或等于1mS / cm但小于或等于100mS / cm的电解电导率。 该溶质优选包括无机含氧酸的羧酸盐和盐中的至少一种。 此外,非水电解质优选含有1〜10重量%的比例的水。 在MIM非线性元件(20)中,通过使用上述非水电解质的阳极氧化形成绝缘膜(24)。 此外,绝缘膜包含原子为无机含氧酸盐的中心原子的3至7族的碳原子和原子中的至少一个,并且具有10至25的相对介电常数。利用该MIM非线性元件, 电容足够小,电压 - 电流特性的陡峭度足够大,并且电阻在广泛的面积上也足够均匀。
    • 20. 发明授权
    • Methods of manufacturing a two-terminal nonlinear device
    • 制造两端非线性器件的方法
    • US06563555B1
    • 2003-05-13
    • US09532018
    • 2000-03-21
    • Takashi InoueYasushi TakanoTakeyoshi UshikiTakumi Seki
    • Takashi InoueYasushi TakanoTakeyoshi UshikiTakumi Seki
    • G02F1136
    • H01L45/00G02F1/1365Y10T29/413
    • An MIM nonlinear device having a large nonlinearity coefficient that represents the sharpness of the voltage-current characteristic, a liquid crystal display panel with high image-quality that uses this device, and a manufacturing method of said MIM nonlinear device are provided. The MIM nonlinear device contains a first conductive film 22, an insulating film 24, and a second conductive film 26 laminated on a substrate 30. The insulating film 24 may contain water, and in the insulating film, in a thermal desorption spectrum, a peak derived from water in the insulating film is 225-300° C. Further, in said thermal desorption spectrum, the number of molecules calculated from the area of the peak derived from the water is preferably 5×1014/cm2 or more.
    • 提供了具有表示电压 - 电流特性的锐度的非线性系数大的MIM非线性器件,使用该器件的具有高图像质量的液晶显示面板以及所述MIM非线性器件的制造方法。 MIM非线性器件包含层叠在基板30上的第一导电膜22,绝缘膜24和第二导电膜26.绝缘膜24可以含有水,并且在绝热膜中,在热解吸光谱中,峰 绝缘膜中的水衍生自225-300℃。此外,在所述热解吸附光谱中,从源自水的峰的面积计算出的分子数优选为5×10 14 / cm 2以上。