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    • 2. 发明公开
    • ABERRATION CORRECTING UNIT, OPTICAL PICKUP DEVICE, INFORMATION REPRODUCING APPARATUS, ABERRATION CORRECTING PROGRAM, AND ABERRATION CORRECTING METHOD
    • 取消修改单元,光学拾取装置,信息再现装置,修正程序和修正方法
    • KR20070100640A
    • 2007-10-11
    • KR20070030609
    • 2007-03-29
    • FUNAI ELECTRIC CO
    • SHIHARA TETSUYASHIMIZU SHINYAEIZA TSUYOSHINAGASHIMA KENJI
    • G11B7/135
    • G11B7/13925G11B7/1369G11B2007/0006
    • An aberration correcting unit, an optical pickup device, an information reproducing apparatus, an aberration correcting program, and an aberration correcting method are provided to stabilize a detecting signal during control time. An aberration correcting unit comprises a liquid crystal unit, a lens unit, a drive unit, and a control unit. The liquid crystal unit includes a first transparent electrode, a second transparent electrode, and a liquid crystal. The first transparent electrode has a plate shape divided into areas of a first number of a division in a concentric circle. The second transparent electrode has a plate shape areas of a second number of a division in a concentric circle greater than the number of the division in the concentric circle. The liquid crystal is interposed between the first transparent electrode and the second transparent electrode generates a phase difference corresponding to a predetermined potential with respect to an incident light beam. The lens unit concentrates light beams passing through the liquid crystal unit on a predetermined light focusing position. The drive unit applies predetermined potential, correcting aberration of the light beam, to each divided electrodes comprising the first and second transparent electrodes. The drive unit controls the drive unit. The control unit includes a potential calculating unit(322), a change quantity calculating unit(323), and a potential changing unit(324). The potential calculating unit calculates potentials applied to each of divided electrodes of the first and second transparent electrodes. The change quantity calculating unit calculates potential change quantity between calculated potentials and applied potentials. The potential changing unit changes the potentials applied to the divided electrodes sequentially through the potential calculating unit based on the potential change quantity.
    • 提供像差​​校正单元,光学拾取装置,信息再现装置,像差校正程序和像差校正方法,以在控制时间期间稳定检测信号。 像差校正单元包括液晶单元,透镜单元,驱动单元和控制单元。 液晶单元包括第一透明电极,第二透明电极和液晶。 第一透明电极具有被划分成同心圆的第一数量的划分的区域的板形。 第二透明电极具有大于同心圆分割数的同心圆的第二数量的板形区域。 在第一透明电极和第二透明电极之间插入液晶,相对于入射光束产生对应于预定电位的相位差。 透镜单元将通过液晶单元的光束集中在预定的光聚焦位置上。 驱动单元对包括第一和第二透明电极的每个分割电极施加预定电位,校正光束的像差。 驱动单元控制驱动单元。 控制单元包括电位计算单元(322),变化量计算单元(323)和电位改变单元(324)。 电位计算单元计算施加到第一和第二透明电极的每个分割电极的电位。 变化量计算单元计算计算出的电位和施加电位之间的电位变化量。 电位改变单元基于电位变化量,通过电位计算单元依次改变施加到分割电极的电位。
    • 4. 发明申请
    • MICRO-FLUIDIC DEVICE
    • 微流体装置
    • WO2017110714A1
    • 2017-06-29
    • PCT/JP2016/087717
    • 2016-12-19
    • FUNAI ELECTRIC CO., LTD.
    • BARKLEY, Lucas D.
    • F04B43/04
    • F04B19/006F04B19/24F04F1/18F22B1/282
    • A micro-fluidic device (10). The device (10) includes a semiconductor substrate (12) attached to a fluid supply source (18). The substrate (12) contains at least one vaporization heater (14), one or more bubble pumps (16) for feeding fluid from the fluid supply source (18) to the at least one vaporization heater (14), a fluid supply inlet from the fluid supply source (18) in fluid flow communication with each of the one or more bubble pumps (16), and a vapor outlet in vapor flow communication with the at least one vaporization heater (14). The one or more bubble pumps (16) each have a fluid flow path selected from a linear path, a spiral path, a circuitous path, and a combination thereof from the supply inlet to the at least one vaporization heater (14).
    • 微流体装置(10)。 装置(10)包括附接到流体供应源(18)的半导体衬底(12)。 衬底(12)包含至少一个汽化加热器(14),一个或多个用于从流体供应源(18)向至少一个汽化加热器(14)供应流体的泡罩泵(16),来自 与一个或多个气泡泵(16)中的每一个流体流动连通的流体供应源(18),以及与至少一个蒸发加热器(14)蒸气流连通的蒸气出口。 所述一个或多个气泡泵(16)各自具有从供给入口到所述至少一个蒸发加热器(14)的线性路径,螺旋路径,迂回路径及其组合的流体流动路径。 p>
    • 6. 发明申请
    • PRINTHEAD AND INKJET PRINTER
    • PRINTHEAD和INKJET打印机
    • WO2016031225A1
    • 2016-03-03
    • PCT/JP2015/004233
    • 2015-08-24
    • FUNAI ELECTRIC CO., LTD.
    • EDELEN, John GlennMARRA, Michael
    • B41J2/14
    • B41J2/04536B41J2/04501B41J2/04541B41J2/04543B41J2/04545B41J2/0458B41J2/04586B41J2/14427
    • A printhead (10) including one or more fluid vias (110) in fluid communication with a fluid supply, each of the one or more fluid vias (110) being associated with a first number of heating elements, the heating elements being divided into groups of a second number of heating elements so as to form a number of primitive groups, and an electrical interface having at least one shift register that receives primitive address data to allow for selective application of electrical signals to the heating elements so that fluid is ejected from the printhead (10) in accordance with image data, the number of primitive groups being dependent on the print resolution of the printhead (10) so that a number of bits required for the at least one shift register to address each heater is independent of the print resolution of the printhead (10).
    • 打印头(10)包括与流体供应源流体连通的一个或多个流体通路(110),所述一个或多个流体通道(110)中的每一个与第一数量的加热元件相关联,所述加热元件被分成组 的第二数量的加热元件,以便形成多个原始组,以及具有至少一个移位寄存器的电接口,其接收原始地址数据以允许选择性地向加热元件施加电信号,使得流体从 打印头(10)根据图像数据,原始组的数量取决于打印头(10)的打印分辨率,使得至少一个移位寄存器寻址每个加热器所需的位的数量独立于 打印头(10)的打印分辨率。
    • 8. 发明申请
    • ENCAPSULATION OF INKJET HEATER CHIP FOR ION BEAM CROSS-SECTION POLISHING AND METHOD OF PREPARING CHIP CROSS-SECTION SAMPLE
    • 用于离子束的喷嘴芯片的封装交叉部分抛光和制备芯片的交叉截面样品的方法
    • WO2014072834A3
    • 2014-07-24
    • PCT/IB2013003107
    • 2013-11-01
    • FUNAI ELECTRIC CO
    • ZHANG QINGWU XIAOMING
    • G01N1/36C08G59/68H01J37/00
    • G01N1/36H01J2237/31745
    • A method for preparing an integrated circuit or iincro-electo-mechanical system chip sample for ion cross-section polishing is provided. The method includes preparing a polymer coating formulation. The polymer coating formulation includes a novolac epoxy resin, a bisphenol-A/epichlorhydrin epoxy resin, a photoacid generator, an adhesion promoter, and a mixture of acetophenone, cyclohexanone and butyrolactone organic solvents. The integrated circuit or micro-electro -mechanical system chip sample is encapsulated by the polymer coating formulation, wherein the chip sample is then ready for ion beam cross-section polishing. A cross-section sample of integrated circuit or micro-electro-mechanicai system chip is prepared by polishing the obtained polymer encapsulated integrated circuit or micro-electro-mechanical system chip with ion beam cross-section polisher. The disclosed method allows the cross-section sample to be obtained at a reduced polishing time. Moreover, a good quality and larger cross-sectional area of the sample is obtained, thus allowing for accurate inspection or analysis of the integrated circuit or micro-electro-mechanical system chip.
    • 提供了一种用于制备用于离子横截面抛光的集成电路或非机电 - 机电系统芯片样品的方法。 该方法包括制备聚合物涂层制剂。 聚合物涂料配方包括酚醛清漆环氧树脂,双酚-A /表氯醇环氧树脂,光致酸发生剂,粘合促进剂,以及苯乙酮,环己酮和丁内酯有机溶剂的混合物。 集成电路或微电子机械系统芯片样品由聚合物涂层配方包封,其中芯片样品然后准备用于离子束横截面抛光。 通过用离子束截面抛光机研磨得到的聚合物封装集成电路或微电子机械系统芯片,制备集成电路或微机电系统芯片的横截面样品。 所公开的方法允许在减少的抛光时间获得横截面样品。 此外,获得样品的质量好且截面积较大的截面积,从而可以精确地检查或分析集成电路或微机电系统芯片。
    • 9. 发明申请
    • PERISTALTIC PUMP FOR IMAGING APPARATUS
    • 用于成像装置的PERICALIC PUMP
    • WO2013190388A3
    • 2014-05-08
    • PCT/IB2013001924
    • 2013-06-21
    • FUNAI ELECTRIC CO
    • HUTCHISON GREGORY LEONJAMES EDMUND HULINWILLIAMSON RANDAL SCOTTHEADLEY ALEXANDER J
    • F04B43/12B41J2/175
    • F04B43/1276B41J2/175B41J2/17596F04B43/1261
    • A pump for pumping fluid using peristaltic compression. The pump includes a rotor and a roller. The rotor includes a first cam that extends along a circumferential direction relative to the rotor. The first cam has first and second dwells. The roller is movable relative to the rotor between the first dwell and the second dwell of the first cam as the rotor rotates in a first direction and a second direction. The rotor includes a second cam extending radially from its shaft for engaging the roller. Contact between the second cam and the roller increases frictional resistance between the rotor and the roller as the roller translates between the first and second dwells of the first cam such that the roller transitions between the first and second dwells without slipping.
    • 用于使用蠕动压缩泵送流体的泵。 泵包括转子和辊子。 转子包括相对于转子沿圆周方向延伸的第一凸轮。 第一个凸轮有第一和第二个住所。 当转子沿第一方向和第二方向旋转时,辊可以在第一凸轮的第一停留和第二停留之间相对于转子移动。 转子包括从其轴径向延伸的用于接合辊的第二凸轮。 当第二凸轮和辊之间的接触增加了转子和辊之间的摩擦阻力,因为辊在第一凸轮的第一和第二腔之间平移,使得辊在第一和第二腔之间转变而不滑动。