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    • 2. 发明申请
    • MICROMIRROR DEVICE
    • MICROMIRROR设备
    • US20090002795A1
    • 2009-01-01
    • US12145575
    • 2008-06-25
    • Tomoyuki HATAKEYAMA
    • Tomoyuki HATAKEYAMA
    • G02B26/08
    • G02B26/0841
    • A micromirror device includes a micromirror chip, an electrode substrate, and an intermediate spacer sandwiched between the micromirror chip and the electrode substrate and having substantially the same shape as that of the micromirror chip, the intermediate spacer inhibiting the mirror support portion from being deformed by the moving movable mirror portion. The micromirror chip, the electrode substrate, and the intermediate spacer are arranged and stacked in a thickness direction. The intermediate spacer has an opening located substantially in the center of the intermediate spacer and a plate-like fixed member having a plurality of through-holes disposed around the periphery of the opening. A junction member is melted by desired heating and weighting and inserted and placed in each of the through-holes. When melted, the junction member joins the micromirror chip to the electrode substrate.
    • 微反射镜装置包括微反射镜芯片,电极基板和夹在微镜芯片和电极基板之间的中间间隔物,并且具有与微反射镜芯片基本相同的形状,中间隔片阻止反射镜支撑部分被变形 移动可动镜部分。 微反射片芯片,电极基板和中间间隔物在厚度方向上排列并堆叠。 中间间隔件具有基本上位于中间间隔件的中心的开口和具有围绕开口的周边设置的多个通孔的板状固定构件。 接合构件通过所需的加热和加重而熔化并插入并放置在每个通孔中。 当熔融时,接合构件将微镜芯片连接到电极基板。
    • 3. 发明申请
    • JUNCTION STRUCTURE OF FLEXIBLE SUBSTRATE
    • 柔性基板的结构结构
    • US20080179080A1
    • 2008-07-31
    • US12020036
    • 2008-01-25
    • Yoshinori TANAKATomoyuki HATAKEYAMA
    • Yoshinori TANAKATomoyuki HATAKEYAMA
    • H05K1/14
    • H05K3/361H05K3/323H05K2201/09781
    • A junction structure of a flexible substrate includes a flexible substrate provided with junction terminals. An opposing substrate is placed opposite to the flexible substrate, and provided with junction terminals corresponding to the junction terminals. A thermosetting resin adhesive is interposed between the flexible substrate and opposing substrate, and used to join the flexible substrate and opposing substrate. A thermal conduction equalizing member is formed in at least one of the flexible substrate and opposing substrate, independently of the junction terminals formed in the flexible substrate and the junction terminals formed in the opposing substrate, not to make an electrical connection between the flexible substrate and opposing substrate.
    • 柔性基板的接合结构包括设置有接线端子的柔性基板。 相对的基板与柔性基板相对设置,并且设置有与接线端子对应的接线端子。 热固性树脂粘合剂插入柔性基板和相对基板之间,并用于连接柔性基板和相对基板。 在柔性基板和相对基板中的至少一个中形成导热均衡部件,而不管形成在柔性基板中的接合端子和形成在相对基板中的接合端子,不会使柔性基板和 相对的基板。
    • 4. 发明授权
    • Electrostatic driving device having an interval between electrodes facing each other and manufacturing method of the same
    • 具有彼此面对的电极之间的间隔的静电驱动装置及其制造方法
    • US07122937B2
    • 2006-10-17
    • US10795770
    • 2004-03-08
    • Tomoyuki HatakeyamaKatsuji Horiuchi
    • Tomoyuki HatakeyamaKatsuji Horiuchi
    • H02N1/00G02B26/08
    • G02B26/0825
    • An electrostatic driving device according to the present invention has a flexible thin film, a holding member, which holds the flexible thin film and allows the flexible thin film to bend, a function member disposed on the flexible thin film, a film-side facing electrode disposed on the flexible thin film, a base, which faces the holding member, a base-side facing electrode, which is disposed on the base and faces the film-side facing electrode; and a bonding spacer member, which is held between the holding member and base, bonds the holding member to the base, and holds an interval between the holding member and base at a predetermined interval so as to keep an electrode interval between the film-side facing electrode and base-side facing electrode at a predetermined interval.
    • 根据本发明的静电驱动装置具有柔性薄膜,保持柔性薄膜并允许柔性薄膜弯曲的保持构件,设置在柔性薄膜上的功能构件,薄膜侧面对电极 设置在所述柔性薄膜上,与所述保持部件相对的基部,设置在所述基部上且面向所述薄膜侧面对电极的基部侧面对电极; 并且保持在保持构件和基座之间的接合间隔构件将保持构件结合到基座,并且以预定间隔保持在保持构件和基部之间的间隔,以便保持膜侧之间的电极间隔 以预定间隔形成面对电极和基底侧电极。
    • 7. 发明授权
    • Photoconductive switch module and manufacturing method thereof
    • 光电开关模块及其制造方法
    • US06759668B2
    • 2004-07-06
    • US10616424
    • 2003-07-09
    • Daisuke MatsuoTomoyuki Hatakeyama
    • Daisuke MatsuoTomoyuki Hatakeyama
    • G02B2700
    • H01L31/16H01L27/1443H01L2224/16225H01L2224/45144H01S5/02252H01S5/423H01L2224/48091H01L2924/00014H01L2924/00
    • The present invention is directed to a photoconductive switch module. The photoconductive switch module comprises a first substrate having light-emitting elements, a second substrate having photoconductive switch elements, whose number is equal to that of the light-emitting elements. The light-emitting elements face the photoconductive switch elements so that the photoconductive switch elements are turned on/off in accordance with lighting/distinction of the light-emitting elements. The photoconductive switch module further comprises a third substrate arranged between the first substrate and the second substrate. The third substrate has through holes, whose number is equal to that of the light-emitting elements. Drive light emitted from a light-emitting element is trapped within a through hole to travel to a photoconductive switch element. The first substrate and the third substrate are connected to each other by heating and pressure contacting of first metal members.
    • 本发明涉及光导开关模块。 光电导开关模块包括具有发光元件的第一基板,具有光导开关元件的第二基板,其数量等于发光元件的数量。 发光元件面对感光开关元件,使得光电开关元件根据发光元件的发光/区别而导通/截止。 光电导开关模块还包括布置在第一基板和第二基板之间的第三基板。 第三基板具有与发光元件的数量相等的通孔。 从发光元件发出的驱动光被捕获在通孔内以行进到感光开关元件。 第一基板和第三基板通过第一金属构件的加热和压力接触彼此连接。
    • 8. 发明授权
    • Optical transmitter
    • 光发射机
    • US08532451B2
    • 2013-09-10
    • US13022878
    • 2011-02-08
    • Tomoyuki Hatakeyama
    • Tomoyuki Hatakeyama
    • G02B6/26G02B6/42
    • G02B6/2804
    • An optical transmitter includes three or more emission optical fibers that are three-dimensionally arranged, a single reception optical fiber, and an optical path converting component to optically couple the emission optical fibers to the reception optical fiber. The optical path converting component includes optical transmission portions that are optically coupled to the three or more emission optical fibers one to one, respectively, and optically coupled commonly to the single reception optical fiber. Entry ends of the optical transmission portions are aligned with exit ends of the three or more emission optical fibers, respectively. Exit ends of the optical transmission portions are aligned, as a whole, with an entry end of the single reception optical fiber. The exit ends of the optical transmission portions are arranged substantially parallel to one another and in closer proximity to one another than the entry ends of the optical transmission portions.
    • 光发射机包括三维排列的三个或更多个发射光纤,单个接收光纤,以及将发射光纤光学耦合到接收光纤的光路转换部件。 光路转换部件包括分别光纤耦合到三个或更多个发射光纤的光传输部分,并且光耦合到单个接收光纤。 光传输部分的入射端分别与三个或更多个发射光纤的出射端对准。 光传输部分的出口端整体上与单个接收光纤的进入端对齐。 光传输部分的出口端彼此基本上平行并且彼此比光传输部分的入口端彼此更接近。
    • 10. 发明申请
    • OPTICAL TRANSMITTER
    • 光学发射器
    • US20110194859A1
    • 2011-08-11
    • US13022878
    • 2011-02-08
    • Tomoyuki HATAKEYAMA
    • Tomoyuki HATAKEYAMA
    • H04B10/04H04B10/12
    • G02B6/2804
    • An optical transmitter includes three or more emission optical fibers that are three-dimensionally arranged, a single reception optical fiber, and an optical path converting component to optically couple the emission optical fibers to the reception optical fiber. The optical path converting component includes optical transmission portions that are optically coupled to the three or more emission optical fibers one to one, respectively, and optically coupled commonly to the single reception optical fiber. Entry ends of the optical transmission portions are aligned with exit ends of the three or more emission optical fibers, respectively. Exit ends of the optical transmission portions are aligned, as a whole, with an entry end of the single reception optical fiber. The exit ends of the optical transmission portions are arranged substantially parallel to one another and in closer proximity to one another than the entry ends of the optical transmission portions.
    • 光发射机包括三维排列的三个或更多个发射光纤,单个接收光纤,以及将发射光纤光学耦合到接收光纤的光路转换部件。 光路转换部件包括分别光纤耦合到三个或更多个发射光纤的光传输部分,并且光耦合到单个接收光纤。 光传输部分的入射端分别与三个或更多个发射光纤的出射端对准。 光传输部分的出口端整体上与单个接收光纤的进入端对齐。 光传输部分的出口端彼此基本上平行并且彼此比光传输部分的入口端彼此更接近。