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    • 1. 发明授权
    • Method for fabricating microbeads and microbeads
    • 微珠和微珠的制备方法
    • US08546068B2
    • 2013-10-01
    • US13120967
    • 2009-09-04
    • Mari IchimuraKenzo MachidaNoriyuki KishiiMasanobu Tanaka
    • Mari IchimuraKenzo MachidaNoriyuki KishiiMasanobu Tanaka
    • G03F7/26
    • G01N33/54313B01J2219/00432B01J2219/005B01J2219/00502B01J2219/0061B01J2219/00612B01J2219/00637B01J2219/00677B01J2219/00722
    • In one example embodiment, a method fabricates microbeads, which can supply a bead set containing a various types of microbeads and having distinct populations of the respective types of microbeads. In one example embodiment, the method includes forming a hydrophilic layer made of a hydrophilic organic material on a substrate. In one example embodiment, the method includes laminating on the hydrophilic layer a thin film capable of being peeled off in the form of microbeads. In one example embodiment, the method includes forming the thin film in a given configuration by photolithography. In one example embodiment, the method includes solid-phasing a given substance on the post-formed thin films. In one example embodiment, the method includes peeling off the post-formed thin films, which have been solid-phased with the substance, from the substrate along with at least a part of the hydrophilic layer to obtain microbeads.
    • 在一个示例性实施例中,一种制造微珠的方法,其可以提供包含各种类型的微珠并且具有各种类型的微珠的不同种群的珠粒组。 在一个示例性实施例中,该方法包括在基底上形成由亲水性有机材料制成的亲水层。 在一个示例性实施例中,该方法包括在亲水层上层叠能够以微珠形式剥离的薄膜。 在一个示例性实施例中,该方法包括通过光刻法以给定的配置形成薄膜。 在一个示例性实施例中,该方法包括将定影物质固定在后成形薄膜上。 在一个示例性实施例中,该方法包括将已经与物质固相化的后成形薄膜与至少一部分亲水层一起从衬底剥离以获得微珠。
    • 6. 发明授权
    • Printing method and display apparatus manufacturing method
    • 印刷方法和显示装置的制造方法
    • US08381649B2
    • 2013-02-26
    • US12646476
    • 2009-12-23
    • Masanobu TanakaTakahiro Kamei
    • Masanobu TanakaTakahiro Kamei
    • B41F16/00
    • G03F7/0002B82Y10/00B82Y40/00H01L27/1288H05K3/1275
    • A printing method including the steps of, forming a transfer layer on a blanket, forming a groove portion on the transfer layer by pressing a protrusion portion of a mold member including the protrusion portion having a predetermined pattern against the transfer layer, the groove portion having the pattern corresponding to the protrusion portion, forming a print pattern layer on the blanket by causing the transfer layer on the blanket and a relief printing plate including a convex portion having a pattern corresponding to a reverse pattern of the protrusion portion to face each other and pressure-contacting them so that a portion on the transfer layer corresponding to the convex portion is selectively eliminated, and transferring the print pattern layer onto a substrate to be printed by causing the print pattern layer on the blanket and the substrate to be printed to face each other and pressure-contacting them.
    • 一种打印方法,包括以下步骤:在橡皮布上形成转印层,通过将包含具有预定图案的突出部分的模具的突出部分压靠在转印层上,在转印层上形成凹槽部分,凹槽部分 所述图案对应于所述突起部分,通过使所述橡皮布上的转印层形成在所述橡皮布上的印刷图案层,以及凸版印刷版,所述凸版印刷版具有与所述突出部的相反图案对应的图案的凸部, 使其压接,使得与凸部对应的转印层上的部分被选择性地去除,并且通过使印刷图案层和基板上的印刷图案层被印刷来将印刷图案层转印到要印刷的基板上 彼此压力接触。
    • 8. 发明授权
    • Camera, camera system, and camera body
    • 相机,相机系统和相机机身
    • US08330824B2
    • 2012-12-11
    • US12741388
    • 2008-11-07
    • Hideyuki HashiKenichi HayashiHironori HonshoMasanobu TanakaKazuo Sibukawa
    • Hideyuki HashiKenichi HayashiHironori HonshoMasanobu TanakaKazuo Sibukawa
    • H04N5/228
    • H04N5/23248G03B5/00H04N5/23258H04N5/2328
    • A camera is provided with which a small size can be achieved while ensuring good image blur correction performance. The camera (1) has an optical system (O), a housing (2), a second drive unit (12) serving as part of an image blur corrector, an imaging element (17), a first angular velocity sensor (4), an acceleration sensor (7), a sensor drive unit (240), and a drive controller (22). The first angular velocity sensor (4) is configured to acquire the rotational angle of the housing (2). The acceleration sensor (7) is configured to acquire the amount of displacement of the housing (2). A correction computer (21) calculates the amount of drive of a correcting lens (9) from the displacement amount acquired by the acceleration sensor (7), and calculates the amount of drive of the correcting lens (9) from the rotational angle acquired by the first angular velocity sensor (4) using the position of the acceleration sensor (7) as a reference. The drive controller (22) controls the operation of the second drive unit (12) on the basis of these drive amounts.
    • 提供了可以实现小尺寸的相机,同时确保良好的图像模糊校正性能。 相机(1)具有作为图像模糊校正器的一部分的光学系统(O),壳体(2),第二驱动单元(12),成像元件(17),第一角速度传感器(4) ,加速度传感器(7),传感器驱动单元(240)和驱动控制器(22)。 第一角速度传感器(4)被配置为获取壳体(2)的旋转角度。 加速度传感器(7)被构造成获取壳体(2)的位移量。 校正计算机(21)根据由加速度传感器(7)获取的位移量计算校正透镜(9)的驱动量,并根据由所述加速度传感器(7)获取的旋转角度来计算校正透镜(9)的驱动量 使用加速度传感器(7)的位置作为基准的第一角速度传感器(4)。 驱动控制器(22)基于这些驱动量来控制第二驱动单元(12)的操作。