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    • 1. 发明授权
    • Driving mechanism and micro-mirror device provided with the same
    • 驱动机构和微镜装置相同
    • US07405506B2
    • 2008-07-29
    • US11201316
    • 2005-08-11
    • Masayoshi EsashiNaoki KikuchiRogerio Jun MizunoMasanori MaedaSatoshi Karasawa
    • Masayoshi EsashiNaoki KikuchiRogerio Jun MizunoMasanori MaedaSatoshi Karasawa
    • H02N1/00G02B26/08
    • H02N1/008G02B26/0841H02K2201/18
    • A driving mechanism configured to turn a plate member with respect to a frame member around a predetermined turning axis includes a pair of supporting members supporting the plate member, a pair of actuators provided on both sides with respect to the turning axis and on the same surface side of the plate member. Each of the actuators includes a fixed electrode unit fixed to the frame member and a movable electrode unit fixed to the plate member. The fixed electrode unit includes a substrate, a pair of fixed comb electrodes provided on both surface sides of the substrate. The movable electrode unit includes a pair of movable comb electrodes, each of which engages with the corresponding fixed comb electrode with a gap therebetween. Both pairs of the fixed comb electrode and the corresponding movable comb electrode are configured such that a voltage can be applied therebetween independently.
    • 相对于框架构件围绕预定转动轴线转动板状构件的驱动机构包括支撑板构件的一对支撑构件,设置在相对于转动轴线的两侧和相同表面上的一对致动器 侧板。 每个致动器包括固定到框架构件的固定电极单元和固定到板构件的可动电极单元。 固定电极单元包括基板,设置在基板的两个表面侧上的一对固定梳电极。 可动电极单元包括一对可动梳状电极,每一个可动梳状电极与对应的固定梳状电极接合,并在其间具有间隙。 固定梳状电极和对应的可动梳状电极的两对被配置成可以独立地施加电压。
    • 3. 发明授权
    • Scanning mirror unit and beam scanning probe
    • 扫描镜单元和光束扫描探头
    • US07236283B2
    • 2007-06-26
    • US10863382
    • 2004-06-09
    • Naoki KikuchiMasayoshi EsashiYoichi HagaMasanori Maeda
    • Naoki KikuchiMasayoshi EsashiYoichi HagaMasanori Maeda
    • G02B26/08
    • G02B23/2423G02B26/0816G02B26/105
    • A scanning mirror unit for scanning a beam comprises: at least one cantilever which is formed by bonding an elastic material and a piezoelectric material together and supported by a base at its one end; and a movable mirror which is supported at least by a free end of the cantilever at its peripheral part. When voltage is applied to the piezoelectric material, the free end of the cantilever moves in a prescribed direction to press and move the peripheral part of the movable mirror while leaving a central part of the movable mirror at substantially the same position to cause a tilt to the movable mirror. With such composition of the scanning mirror unit, a reflecting member having a sufficient thickness (e.g. some hundreds of microns) can be employed for the movable mirror, by which a high power laser beam effective for treatment of affected parts, etc. can be reflected finely and durably.
    • 用于扫描光束的扫描反射镜单元包括:至少一个悬臂,其通过将弹性材料和压电材料结合在一起而由基座在其一端支撑而形成; 以及可动反射镜,至少在其周边部分的悬臂的自由端处被支撑。 当向压电材料施加电压时,悬臂的自由端在规定的方向上移动,以将可移动镜的周边部分按压并移动,同时将可移动镜的中心部分保持在基本相同的位置, 可移动镜。 通过扫描反射镜单元的这种组成,可以使用具有足够厚度(例如几百微米)的反射部件用于可移动反射镜,通过该可移动反射镜可以反射有效用于处理受影响部分的高功率激光束等 精细耐用。
    • 4. 发明授权
    • Micromirror and micromirror device
    • 微镜和微镜装置
    • US07271946B2
    • 2007-09-18
    • US11616433
    • 2006-12-27
    • Masayoshi EsashiNaoki Kikuchi
    • Masayoshi EsashiNaoki Kikuchi
    • G09G3/34
    • G02B26/0841B81B3/0062B81B2201/042B81B2203/0109B81B2203/058
    • There is provided a micromirror, which is provided with a reflection mirror, a first pair of torsion bars formed to protrude from the reflection mirror, a first supporting frame that supports the reflection mirror such that the reflection mirror is torsionally rotatable about a first rotation axis via the first pair of torsion bars, a second pair of torsion bars formed to protrude from the first supporting frame in a direction substantially perpendicular to a direction in which the first pair of torsion bars are extended, and a second supporting frame that supports the first supporting frame such that the first supporting frame is torsionally rotatable about a second rotation axis substantially perpendicular to the first rotation axis via the second pair of torsion bars. In this configuration, each of the second pair of torsion bars includes two separate conductive members.
    • 提供了一种微反射镜,其具有反射镜,形成为从反射镜突出的第一对扭杆,支撑反射镜的第一支撑框架,使得反射镜可绕第一旋转轴线 经由所述第一对扭杆,第二对扭杆形成为在与所述第一对扭杆延伸的方向基本垂直的方向上从所述第一支撑框架突出;以及第二支撑框架,其支撑所述第一对扭杆 支撑框架,使得第一支撑框架能够通过第二对扭杆围绕基本上垂直于第一旋转轴线的第二旋转轴线扭转旋转。 在该构造中,第二对扭杆中的每一个包括两个单独的导电构件。
    • 5. 发明授权
    • Micromirror and micromirror device
    • 微镜和微镜装置
    • US07372620B2
    • 2008-05-13
    • US11616328
    • 2006-12-27
    • Masayoshi EsashiNaoki Kikuchi
    • Masayoshi EsashiNaoki Kikuchi
    • G02B26/00G09G3/34
    • G02B26/0841B81B2201/042
    • There is provided a micromirror which includes a holding unit, a mirror that is held by the holding unit to be pivotable about a rotation axis of the mirror, a first fixed electrode group including a plurality of electrodes fixed to the holding unit, a second fixed electrode group including a plurality of electrodes fixed to the holding unit, a first movable electrode group including a plurality of electrodes fixed to the mirror and located adjacently to the first fixed electrode group, and a second movable electrode group including a plurality of electrodes fixed to the mirror and located adjacently to the second fixed electrode group.
    • 提供了一种微反射镜,其包括保持单元,由保持单元保持以能够围绕反射镜的旋转轴线枢转的反射镜,包括固定到保持单元的多个电极的第一固定电极组,第二固定 电极组,其包括固定到所述保持单元的多个电极;第一可动电极组,包括固定到所述反射镜并且与所述第一固定电极组相邻的多个电极;以及第二可移动电极组,所述第二可动电极组包括固定到 反射镜并且与第二固定电极组相邻。
    • 6. 发明授权
    • Method for fabricating micromachine component of resin
    • 制造树脂微机械部件的方法
    • US08481248B2
    • 2013-07-09
    • US11922529
    • 2006-06-15
    • Nao HondaSatoshi MoriShuji TanakaMasayoshi Esashi
    • Nao HondaSatoshi MoriShuji TanakaMasayoshi Esashi
    • G03F7/22
    • F04D29/281B29C64/106B29C64/124B29L2031/7496B81C99/008F04D29/023F05D2230/31F05D2300/44
    • A method for fabricating a micromachine component of resin comprising step (a) of forming a sacrifice layer on a substrate, step (b) of forming at least two photosensitive resin composition layers sequentially on the sacrifice layer, and performing photolithography of each photosensitive resin composition layer to form an air gap portion defining the circumferential edge portion of the micromachine component and an air gap portion where an internal structure of the micromachine component is constituted to form a multilayer structure, step (c) for depositing dry film resist on the multilayer structure of the cured photosensitive resin composition layer, and performing photolithography of the dry film resist layer to form a cured dry film resist layer in which an air gap portion defining the circumferential edge of a shroud layer and an air gap where the structure of the shroud layer is constituted are formed, and step (d) for separating the micromachine component having the multilayer structure of the cured photosensitive resin composition layer and the cured dry film resist layer from the substrate by removing the sacrifice layer.
    • 一种用于制造树脂微机械部件的方法,包括在基板上形成牺牲层的步骤(a),在牺牲层上依次形成至少两个感光性树脂组合物层的步骤(b),并对各感光性树脂组合物进行光刻 形成限定微机械部件的周缘部的气隙部和构成微机械部件的内部结构的气隙部,形成多层结构,在多层结构体上设置干膜抗蚀剂的工序(c) 并进行干膜抗蚀剂层的光刻,形成固化的干膜抗蚀剂层,其中限定了护罩层的周缘的气隙部分和护罩层的结构的气隙 形成,并且步骤(d)用于分离具有多层的微机械部件 通过除去牺牲层从固化的光敏树脂组合物层和固化的干膜抗蚀剂层结构。
    • 8. 发明授权
    • Active slender tubes and method of making the same
    • 活动细长管及其制作方法
    • US07223329B2
    • 2007-05-29
    • US10703445
    • 2003-11-10
    • Masayoshi EsashiYoichi Haga
    • Masayoshi EsashiYoichi Haga
    • C25D5/02A61M29/00A61M5/00
    • A61M25/0138A61B1/005A61B1/0058A61M25/0158Y10S138/08
    • A method of making an active slender tube as implemented as a catheter, guide wire, or any other medical or non-medical micro-mechanical or -system or system's active micro-component is disclosed, comprising preparing an actuator made from a shape memory alloy (SMA) and forming at least a portion of a tubular body; disposing outside of SMA made actuator an elastically deformable outer skeleton coaxially therewith; and fastening together SMA made actuator and outer skeleton wire adjacent to non-insulated portions, step of fastening includes a step of passing an electric current through a lead wire while in an electroplating liquid to deposit a metal on lead wire and non-insulated portions from said liquid and thereby to electrically join SMA made actuator and outer skeleton together at corresponding areas.
    • 公开了一种制造活动细长管作为导管,导丝或任何其它医疗或非医疗微机械或系统或系统的活性微组件的方法,包括制备由形状记忆合金制成的致动器 (SMA)并且形成管状体的至少一部分; 在SMA制造的致动器外面与其同轴地设置可弹性变形的外骨架; 并且将SMA制造的致动器和外骨架线紧固在非绝缘部分附近,紧固步骤包括在电镀液中使电流通过引线的步骤,以将金属沉积在引线和非绝缘部分上 从而将SMA制造的致动器和外骨架在相应的区域电连接在一起。