Micromachined members coupled for relative rotation by torsional flexure hinge
    1.
    发明专利
    Micromachined members coupled for relative rotation by torsional flexure hinge 有权
    通过扭转弯曲铰链相对旋转的微型构件

    公开(公告)号:JP2011104768A

    公开(公告)日:2011-06-02

    申请号:JP2010267138

    申请日:2010-11-30

    Abstract: PROBLEM TO BE SOLVED: To provide an improved structure of a micromachined member coupled for relative rotation by a torsional flexure hinge. SOLUTION: A reference frame is coupled to a dynamic plate 58, and the frame is coupled to the plate by not a torsion bar but a folded torsional flexure hinge 96. The folded torsional flexure hinge 96 for supporting the plate 58 from the frame side comprises three basic hinge segments 102a, 102b, and 102c. Each of basic hinge segments 102a, 102b, and 102c has a longitudinal axis 98 which is not oriented perpendicular to the rotation axis 62 of the plate 58. An intermediate region 104 of the folded torsional flexure hinge 96 couples together immediately adjacent ends 106 of the basic hinge segments 102a, 102b, and 102c. The basic hinge segment 102b includes a torsion sensor 108 for measuring angular rotation of the plate 58 about the axis 62 with respect to the frame. COPYRIGHT: (C)2011,JPO&INPIT

    Abstract translation: 要解决的问题:提供通过扭转挠性铰链相对旋转而联接的微机械构件的改进结构。 解决方案:参考框架联接到动态板58,并且框架通过不是扭杆而是折叠的扭转挠曲铰链96联接到板。折叠的扭转挠曲铰链96用于将板58从 框架侧包括三个基本铰链段102a,102b和102c。 每个基本铰链段102a,102b和102c具有纵向轴线98,其不垂直于板58的旋转轴线62定向。折叠的扭转挠曲铰链96的中间区域104将 基本铰链段102a,102b和102c。 基本铰链部分102b包括用于测量板58相对于框架围绕轴线62的角度旋转的扭转传感器108。 版权所有(C)2011,JPO&INPIT

    Microfabrication member connected by torsion flexure hinge and rotated relatively
    2.
    发明专利
    Microfabrication member connected by torsion flexure hinge and rotated relatively 审中-公开
    通过弯曲弯曲连接的微型构件和相对旋转

    公开(公告)号:JP2014176964A

    公开(公告)日:2014-09-25

    申请号:JP2014086619

    申请日:2014-04-18

    Abstract: PROBLEM TO BE SOLVED: To provide a structure that is improved in a microfabrication member connected by a torsion flexure hinge and relatively rotated.SOLUTION: A reference frame 56 is connected to a dynamic plate 58, and a frame 56 is connected to the plate 58 with a folding torsion flexure hinge 96 and not with a torsion bar. Then, the folding torsion flexure hinge 96 supports the plate 58 from the side of the frame 56 and comprises three basic hinge elements 102a, 102b, 102c. The direction of a longitudinal axis 98 of each of the basic hinge elements 102a, 102b, 102c is not perpendicular to a rotational axis 62 of the plate 58. An intermediate part 104 of the folding torsion flexure hinge 96 connects a direct adjacent end 106 of the basic hinge elements 102a, 102b, 102c with each other. The basic hinge element 102b includes a torsion sensor 108 for measuring an angular rotation of the plate 58 centering on the axis 62 to the frame 56.

    Abstract translation: 要解决的问题:提供一种通过扭转弯曲铰链连接并相对旋转的微细加工构件改进的结构。解决方案:参考框架56连接到动态板58,框架56连接到板58 具有折叠扭转挠曲铰链96并且不具有扭杆。 然后,折叠扭转挠曲铰链96从框架56的侧面支撑板58,并且包括三个基本的铰链元件102a,102b,102c。 每个基本铰链元件102a,102b,102c的纵向轴线98的方向不垂直于板58的旋转轴线62.折叠扭转挠曲铰链96的中间部分104将直接相邻端106 基本的铰链元件102a,102b,102c彼此。 基本铰链元件102b包括用于测量以轴线62为中心的板58与框架56的角度旋转的扭转传感器108。

    Micromachined member coupled with torsional flexure hinge and relatively rotating
    3.
    发明专利
    Micromachined member coupled with torsional flexure hinge and relatively rotating 审中-公开
    具有扭曲弯曲铰链和相对旋转的微型构件

    公开(公告)号:JP2013099843A

    公开(公告)日:2013-05-23

    申请号:JP2013008267

    申请日:2013-01-21

    Abstract: PROBLEM TO BE SOLVED: To provide an improved structure of a micromachined member coupled with a torsional flexure hinge and relatively rotating.SOLUTION: A reference frame is coupled to a dynamic plate 58, and the frame is coupled to the plate 58 by not a torsion bar but a folded torsional flexure hinge 96. The folded torsional flexure hinge 96 for supporting the plate 58 from the frame side includes three basic hinge segments 102a, 102b, and 102c. Each of basic hinge segments 102a, 102b, and 102c has a longitudinal axis 98 which is not oriented perpendicular to the rotation axis 62 of the plate 58. An intermediate region 104 of the folded torsional flexure hinge 96 together immediately adjacent ends 106 of the basic hinge segments 102a, 102b, and 102c to one another. The basic hinge segment 102b includes a torsion sensor 108 for measuring the angular rotation of the plate 58 about the axis 62 with respect to the frame.

    Abstract translation: 要解决的问题:提供与扭转弯曲铰链和相对旋转耦合的微机械构件的改进的结构。 解决方案:参考框架联接到动态板58,并且框架通过不是扭杆而是折叠的扭转挠曲铰链96联接到板58.折叠的扭转挠曲铰链96用于将板58从 框架侧包括三个基本铰链段102a,102b和102c。 基本铰链段102a,102b和102c中的每一个具有纵向轴线98,该纵向轴线98不垂直于板58的旋转轴线62定向。折叠的扭转弯曲铰链96的中间区域104一起紧邻基本铰链段 铰链段102a,102b和102c彼此。 基本铰链部分102b包括用于相对于框架测量板58围绕轴线62的角度旋转的扭转传感器108。 版权所有(C)2013,JPO&INPIT

    FLEXIBLE, MODULAR, COMPACT FIBER OPTIC SWITCH

    公开(公告)号:CA2344487A1

    公开(公告)日:2000-04-13

    申请号:CA2344487

    申请日:1999-09-15

    Applicant: XROS INC

    Abstract: A fiber optic switch (400) includes a fiber optic switching module (100) tha t receives and fixes ends (104) of optical fibers (106). The module (100) includes numerous reflective light beam deflectors (172) which may be select ed as pairs for coupling a beam of light (108) between a pair of optical fibers (106). The module (100) also produces orientation signals from each deflecto r (172) which indicate its orientation. A portcard (406) included in the switc h (400) supplies drive signals to the module (100) for orienting at least one deflector (172). The portcard (406) also receives the orientation signals produced by that deflector (172) together with coordinates that specify an orientation for the deflector (172). The portcard (406) compares the receive d coordinates with the orientation signals received from the deflector (172) a nd adjusts the drive signals supplied to the module (100) to reduce any difference between the received coordinates and the orientation signals. The switch (400) also employs optical alignment to precisely orient pairs of deflectors (172) coupling a beam of light (108) between optical fibers (106) .

    FLEXIBLE, MODULAR, COMPACT FIBER OPTIC SWITCH IMPROVEMENTS

    公开(公告)号:CA2379822A1

    公开(公告)日:2001-02-01

    申请号:CA2379822

    申请日:2000-07-21

    Applicant: XROS INC

    Abstract: A fiber optic switch (400) includes a fiber optic switching module (100) tha t receives and fixes ends (104) of optical fibers (106). The module (100) includes numerous reflective light beam deflectors (172) arranged in a V-sha pe which may be selected as pairs for coupling a beam of light (108) between a pair of optical fibers (106). The module (100) also produces orientation signals from each deflector (172) which indicate its orientation. A portcard (406) supplies drive signals to the module (100) for orienting at least one deflector (172). The portcard (406) also receives the orientation signals produced by that deflector (172) together with coordinates that specify an orientation for the deflector (172). The portcard (406) compares the receive d coordinates with the orientation signals and adjusts the drive signals supplied to the module (100) to reduce any difference between the received coordinates and the orientation signals. The switch (400) also employs optic al alignment to precisely orient pairs deflectors (172) coupling a beam of ligh t (108) between optical fibers (106).

    FLEXIBLE, MODULAR, COMPACT FIBER OPTIC SWITCH

    公开(公告)号:CA2344487C

    公开(公告)日:2004-11-30

    申请号:CA2344487

    申请日:1999-09-15

    Applicant: XROS INC

    Abstract: A fiber optic switch (400) includes a fiber optic switching module (100) tha t receives and fixes ends (104) of optical fibers (106). The module (100) includes numerous reflective light beam deflectors (172) which may be selected as pairs for coupling a beam of light (108) between a pair of optical fibers (106). The module (100) also produces orientation signals from each deflector (172) which indicate its orientation. A portcard (406) included in the switch (400) supplies drive signals to the module (100) for orienting at least one deflector (172). The portcard (406) also receives the orientation signals produced by that deflector (172) together with coordinates that specify an orientation for the deflector (172). The portcard (406) compares the received coordinate s with the orientation signals received from the deflector (172) and adjusts the drive signals supplied to the module (100) to reduce any difference between the received coordinates and the orientation signals. The switch (400) also employs optical alignment to precisely orient pairs of deflectors (172) coupling a beam of light (108) between optical fibers (106).

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