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    • 4. 发明授权
    • Ink for liquid electrophotographic color printing system
    • 液体电子照相彩色印刷系统油墨
    • US06322944B1
    • 2001-11-27
    • US09659568
    • 2000-09-11
    • Yu-man KimIn-yong SongYong-kook KimSeung-young Byeon
    • Yu-man KimIn-yong SongYong-kook KimSeung-young Byeon
    • G03G912
    • G03G9/12G03G9/122G03G15/0105G03G2215/0629
    • An ink for a liquid electrophotographic color printing system is optimized to reduce the lowering of image density due to wash-off, to obtain a stable over-toned color, and to have a wide reproducible color gamut. The ink includes a plurality of toners for yellow (Y), magenta (M) and cyan (C), each toner being provided in a respective one of a plurality of developing devices, and each toner having a pigment (p) for forming an image having a predetermined color, a binder (b) for binding the pigment on printing paper, a charge controller for imparting electrical properties on the toners, and a stabilizer. A carrier transfers the toners from the developing devices to a photoreceptor belt during development. The blending ratio (b/p) of the binder (b) to the pigment (p) of each toner for yellow (Y), magenta (M) and cyan (C) satisfies the following expressions: b/pyellow(Y)=5±1; b/pmagenta(M)=7±1; and b/pcyan(C)=8±1.
    • 针对液体电子照相彩色印刷系统的油墨进行了优化,以减少由于洗涤而导致的图像浓度的降低,以获得稳定的超色调,并具有广泛的可再现色域。 油墨包括用于黄色(Y),品红色(M)和青色(C)的多个调色剂,每个调色剂设置在多个显影装置中的相应一个中,并且每个调色剂具有用于形成 具有预定颜色的图像,用于在打印纸上粘合颜料的粘合剂(b),用于赋予调色剂电性能的充电控制器和稳定剂。 载体在开发期间将调色剂从显影装置转移到感光带。 黄色(Y),品红色(M)和青色(C)的每种调色剂的粘合剂(b)与颜料(p)的混合比(b / p)满足以下表达式:
    • 5. 发明授权
    • Development apparatus of liquid electrophotographic printer
    • 液体电子照相打印机的开发设备
    • US06253050B1
    • 2001-06-26
    • US09471027
    • 1999-12-23
    • Yong-kook Kim
    • Yong-kook Kim
    • G03G1510
    • G03G15/11
    • A development apparatus of a liquid electrophotographic printer includes a photoreceptor web having an image area where an electrostatic latent image is formed and a non-image area at both sides of the image area. A development roller is installed to correspond to the image area to which a development electrical potential of a predetermined level is applied, in which developer is supplied to the electrostatic latent image. A squeegee roller removes developer remaining on the photoreceptor web, and an air injection nozzle is installed adjacent to both ends of the development roller. The air injection nozzle injects air to move developer remaining on the photoreceptor web from the non-image area to the image area so that a boundary line between the image area and the non-image area is prevented from being developed due to a difference in electrical potential therebetween.
    • 液体电子照相打印机的显影装置包括具有形成静电潜像的图像区域和图像区域两侧的非图像区域的感光体网。 安装显影辊以对应于将显影剂供应到静电潜像的施加预定水平的显影电位的图像区域。 刮板辊除去感光带上残留的显影剂,并且在显影辊的两端附近安装空气注入喷嘴。 空气注入喷嘴喷射空气以将残留在感光体网上的显影剂从非图像区域移动到图像区域,从而防止图像区域和非图像区域之间的边界线由于电气差异而被显影 之间的电位。
    • 9. 发明授权
    • Device for separating a heat roller from a pressure roller in a fixing
unit of an electrophotographic machine
    • 用于在电子照相机的定影单元中从加压辊分离加热辊的装置
    • US6035160A
    • 2000-03-07
    • US210620
    • 1998-12-14
    • Yong-Kook Kim
    • Yong-Kook Kim
    • G03G15/20
    • G03G15/2032
    • A roller separating device automatically separates a pressure roller from a heat roller when the rollers are unable to rotate or when a fixing operation is not in progress. The roller separating device includes an idle gear engaged with a pressure roller gear, a cam driving gear engaged with the idle gear, an electronic clutch fixed to a cam shaft to which a cam is also fixed. The electronic clutch is detachably coupled to the cam driving gear. The cam is driven by a driving force of a power gear and the electronic clutch couples/uncouples the driving force to the cam. When the electronic clutch is actuated, a driving force of the cam driving gear is transferred to the cam to move a pressure roller support frame so that the pressure roller is separated from the heat roller. When the electronic clutch is inactuated, the pressure roller support frame returns to its normal position by an elastic force of a spring so that the pressure roller contacts the heat roller.
    • 当辊不能旋转时或当定影操作未进行时,辊分离装置自动将加压辊与加热辊分离。 辊分离装置包括与压辊齿轮接合的空转齿轮,与空转齿轮啮合的凸轮驱动齿轮,固定到凸轮轴的电子离合器,凸轮也固定到凸轮轴上。 电子离合器可拆卸地联接到凸轮驱动齿轮。 凸轮由动力齿轮的驱动力驱动,并且电子离合器将驱动力耦合/解耦到凸轮。 当电子离合器被致动时,凸轮驱动齿轮的驱动力被传递到凸轮以移动压力辊支撑框架,使得加压辊与加热辊分离。 当电子离合器失效时,压力辊支撑架通过弹簧的弹力返回到其正常位置,使得压力辊接触加热辊。
    • 10. 发明申请
    • MEMS MICROPHONE AND METHOD FOR MANUFACTURING SAME
    • MEMS麦克风及其制造方法
    • US20110316100A1
    • 2011-12-29
    • US13201112
    • 2010-02-11
    • Yong-Kook KimChung-Dam Song
    • Yong-Kook KimChung-Dam Song
    • H01L29/84H01L21/306H01L21/20
    • H04R19/04B81B2201/0257B81B2203/0127B81C1/00158
    • A micro electro mechanical systems (MEMS) microphone, and a method of manufacturing the MEMS microphone having an interval between a membrane and a back plate, the interval being correctly adjusted by forming the membrane and the back plate after an air-gap forming portion on a silicon substrate. Since the membrane and/or the back plate are/is formed by electroless plating, a sacrificial layer is easily planarized, and a residual stress is easily removed or controlled. The MEMS microphone includes a silicon substrate in which a back chamber is formed and on which an air-gap forming portion is formed above the chamber by etching the silicon substrate to a predetermined depth above the chamber; a membrane formed on the air-gap forming portion of the silicon substrate or the silicon substrate; and a back plate that is formed on the air-gap forming portion or the silicon substrate so as to be spaced apart from the membrane, wherein an air gap is formed between the membrane and the back plate.
    • 微电子机械系统(MEMS)麦克风以及制造具有隔膜与背板之间间隔的MEMS麦克风的方法,该间隔通过在气隙形成部分上形成膜和背板而正确地调节 硅衬底。 由于膜和/或背板通过无电镀形成,牺牲层容易平坦化,并且容易地去除或控制残余应力。 MEMS麦克风包括硅衬底,其中形成后室,并且通过将硅衬底蚀刻到室上方的预定深度而在腔上方形成气隙形成部分; 形成在硅衬底或硅衬底的气隙形成部分上的膜; 以及形成在所述气隙形成部或所述硅基板上以与所述膜隔开的背板,其中在所述膜与所述背板之间形成气隙。