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
    • 1. 发明授权
    • Evaporation crucible assembly
    • 蒸发坩埚组件
    • US5596673A
    • 1997-01-21
    • US342330
    • 1994-11-18
    • Anthony T. WardDonald J. TeneySteven J. Grammatica
    • Anthony T. WardDonald J. TeneySteven J. Grammatica
    • B01D7/00C23C14/12C23C14/24F27B14/10C23C16/00
    • F27B14/10B01D7/00C23C14/12C23C14/243
    • There is disclosed a crucible assembly comprising: (a) an electrically conductive tube having a first end portion and a second end portion and defining an opening in the surface of the tube, wherein the tube defines an imaginary horizontal line which bisects the cross-sectional dimension of the tube and an imaginary vertical line which bisects the cross-sectional dimension of the tube; and (b) at least one power connection area, operatively associated with the first end portion of the tube, wherein for the crucible assembly having only one power connection area associated with the first end portion, the one power connection area is positioned above the imaginary horizontal line on the same side of the horizontal line as the opening in the tube surface, wherein for the crucible assembly having at least two power connection areas associated with the first end portion, the at least two power connection areas permit coupling of at least two power cables.
    • 公开了一种坩埚组件,其包括:(a)导电管,其具有第一端部部分和第二端部部分,并且在所述管子的表面中限定开口,其中所述管道限定假想水平线,其将所述横截面 管的尺寸和将管的横截面尺寸平分的虚拟垂直线; 和(b)与管的第一端部可操作地相关联的至少一个电源连接区域,其中对于仅具有与第一端部相关联的一个电力连接区域的坩埚组件,一个电源连接区域位于虚拟 水平线在水平线的与管表面中的开口相同的一侧,其中对于具有与第一端部相关联的至少两个电源连接区域的坩埚组件,至少两个电源连接区域允许至少两个 电力电缆
    • 2. 发明授权
    • Method for fabricating a photoreceptor
    • 感光体的制造方法
    • US4098655A
    • 1978-07-04
    • US836125
    • 1977-09-23
    • Anthony T. WardDonald J. TeneyJames M. IshlerAleksandar Damjanovic
    • Anthony T. WardDonald J. TeneyJames M. IshlerAleksandar Damjanovic
    • G03G5/043G03G5/082G03G5/05C25D11/34
    • G03G5/08207G03G5/0433
    • There is described a method for forming a photoreceptor wherein a substrate having a thin electrically insulating oxide film on a surface thereof is subjected to an electroless deposition step from a selenious acid solution whereby the oxide film is dissolved and a thin selenium layer is formed on the substrate. In one embodiment, a relatively thick photoconductive insulating layer comprising selenium or alloys thereof is deposited by vacuum evaporation over the previously electrolessly deposited selenium layer. In another embodiment, a layer of a charge carrier transport material is deposited over the selenium layer. In a preferred embodiment of the invention, an oxide-free substrate is initially subjected to an electrochemical oxidation step in an alkaline medium to form a thin electrically insulating oxide film on the surface thereof.
    • 描述了一种用于形成感光体的方法,其中在其表面上具有薄的电绝缘氧化物膜的基板经受来自亚硝酸溶液的无电沉积步骤,由此氧化膜溶解并且在其上形成薄硒层 基质。 在一个实施例中,通过真空蒸发沉积先前无电沉积的硒层来沉积包含硒或其合金的相对厚的光电导绝缘层。 在另一个实施例中,电荷载流子传输材料层沉积在硒层上。 在本发明的优选实施方案中,首先在碱性介质中对无氧化物的基底进行电化学氧化步骤,以在其表面上形成薄的电绝缘氧化膜。
    • 3. 发明授权
    • Photoreceptor fabrication method
    • 感光体制造方法
    • US5525451A
    • 1996-06-11
    • US454460
    • 1995-05-30
    • Anthony T. WardDonald J. Teney
    • Anthony T. WardDonald J. Teney
    • G03G5/043G03G5/047
    • G03G5/047G03G5/043
    • There is disclosed a method for forming a photosensitive imaging member to be subjected to light of a specific wavelength comprising: depositing a charge generating layer on a substrate, depositing a charge transport layer on the charge generating layer, wherein there is variation in the thickness of the transport layer, and controlling during the deposition of the charge generating layer the thickness of the generating layer as a way to substantially suppress the optical interference effects at the wavelength of illumination due to the variation in the thickness of the transport layer, wherein the thickness of the generating layer is controlled to enable the imaging member to exhibit an optical absorption modulation which is effective for substantially suppressing the optical interference effects.
    • 公开了一种用于形成要经受特定波长的光的感光成像构件的方法,包括:在基板上沉积电荷产生层,在电荷产生层上沉积电荷输送层,其中厚度的变化 传输层,并且在电荷产生层沉积期间控制生成层的厚度,作为基本上抑制由于传输层的厚度变化而导致的在照明波长处的光学干涉效应的方式,其中厚度 控制发光层以使成像构件能够呈现出对基本上抑制光学干涉效应有效的光吸收调制。