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    • 1. 发明申请
    • X-Y TABLE APPARATUS
    • X-Y表装置
    • WO1993021639A1
    • 1993-10-28
    • PCT/JP1993000420
    • 1993-04-01
    • MITUTOYO CORPORATIONTENG, Hongchun;ISHIBASHI, Wataru;
    • MITUTOYO CORPORATION
    • G12B05/00
    • G01D5/34715G12B5/00Y10S33/03Y10S248/913
    • An X-Y table apparatus provided with a base (12), a member (14) capable of being moved in an X-direction with respect to the base, a member (18) capable of being moved in a Y-direction with respect to the X-direction-movable member and supporting an object placed thereon, and a means (20) for detecting an amount of movement of the object support member with respect to the base, the movement amount detecting means including a main scale (24) which is provided at the central portion of a lower surface of the object support member so that the main scale can be operated in accordance with the movement of the object support member, and which has a matrix type island-like first lattice, and an index scale (26) which is provided on the base so that it can be moved relatively and two dimensionally with respect to and extends in parallel with the main scale, and which has a second grid-ironed lattice (80) and a third grid-ironed lattice (82). This apparatus has a simple construction, and, moreover, it is capable of detecting the displacement of an object in the X- and Y-directions with a high accuracy. A block (100) attached unitarily to the object support member (18) is provided with a mounting hole (101). A free end portion (102) of a detecting shaft (22) of an X-Y encoder is inserted into this mounting hole and three-line-supported on three parallel pins (103a-103c). The relative position of angle of rotation of a table with respect to the X-Y encoder are finely regulated by turning the detecting shaft by a regulating lever (105) directly under the object support member.
    • 一种具有基座(12)的XY台面装置,能够相对于基座在X方向上移动的构件(14),能够相对于所述基座沿Y方向移动的构件(18) X方向可动构件,并支撑放置在其上的物体,以及用于检测物体支撑构件相对于基座的移动量的装置(20),移动量检测装置包括主秤(24) 设置在物体支撑构件的下表面的中心部分,使得主标尺可以根据物体支撑构件的移动而被操作,并且具有矩阵型岛状第一格子和指标( 26),其设置在基座上,使得其可以相对于主刻度相对并相对于并平行地移动并且与主刻度平行地移动,并且具有第二格栅格(80)和第三格栅格( 82)。 该装置结构简单,而且能够高精度地检测物体在X方向和Y方向上的位移。 一体地安装在物体支撑部件(18)上的块(100)设置有安装孔(101)。 X-Y编码器的检测轴(22)的自由端部(102)被插入到该安装孔中,并且三线支撑在三个平行的销(103a-103c)上。 台面相对于X-Y编码器的旋转角度的相对位置通过直接在对象支撑构件正下方的调节杆(105)转动检测轴来进行微调节。
    • 3. 发明公开
    • Stabilized zoom binocular
    • 稳定的ZOOM双键
    • EP0029612A3
    • 1981-11-18
    • EP80107349
    • 1980-11-25
    • Schwem Instruments
    • Alvarez, Luis WalterSchwemin, Arnold Joseph
    • G02B27/64G12B05/00
    • G02B27/644
    • A stabilized binocular using a gimbaled and stabilized triple-reflecting compensator (such as that in Humphrey U.S Patent 3,475,073) having three reflecting surfaces for each binocular path is disclosed. Each of the binocular paths is in convergent light from an objective to and through gimbaled stabilizer assembly to a primary focus that is stabilized with respect to the case. The triple-reflecting surfaces disposed to reflect light in the manner corresponding to a single plane mirror at an effective mirroring plane with a displacement between the incident and reflected light beams. The compensator remains stabilized with respect to inertial space, while the instrument undergoes accidental angular motion. The reflecting property of the compensator brings the image back to the same place on the case despite the accidental angular motion. The displacing function of the compensator enables the image to be displaced to a location where the image does not interfere with the incoming light path. This image is then processed by conventional field optics, including a zoom relay lens. Provision is made to adjustably compensate for displacement and resultant angular velocity, acceleration, and jerk. Resonance is naturally avoided as torquing forces are not applied where inertial centering of the compensator is sufficient.
    • 9. 发明公开
    • Improvements in or relating to assemblies with a movable part
    • 改进或相关于可移动部件的组装
    • EP0073110A3
    • 1985-06-12
    • EP82304058
    • 1982-08-02
    • PLESSEY OVERSEAS LIMITED
    • Carrier, John Allan
    • G12B05/00
    • G12B9/08F16M11/10F16M2200/041Y10S248/923
    • The cathode ray tube assembly of a visual display unit is suspended over the static base in a cradle, the suspension pivots being as close as possible to the centre of gravity of the moving section. Attached to the underside of the cradle is a bracket with forked arms. The forks engage with a spindle carrying a pair of friction pads and a helical compression spring. The spindle runs in a curved slot in a bracket attached to the static base. The friction pads are situated one on each side of the bracket and are maintained in intimate contact with it by the helical spring generating a friction force. Thus a force of sufficient magnitude applied to the moving part of the visual display unit will overcome the friction force and permit it to move, although normally the friction force will hold it in the required position.
    • 视觉显示单元的阴极射线管组件悬挂在支架上的静态基座上,悬架枢转得尽可能靠近移动部分的重心。 挂在底座底部的是支架,带有叉形臂。 叉子与承载一对摩擦垫片和螺旋压缩弹簧的主轴接合。 主轴在连接到静态底座的支架中的弯曲槽中运行。 摩擦垫位于支架的每一侧上,并通过产生摩擦力的螺旋弹簧保持其紧密接触。 因此,施加到视觉显示单元的移动部分的足够大的力将克服摩擦力并允许其移动,尽管通常摩擦力将其保持在所需位置。