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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 MOTORIZATION UNIT FOR MANUAL STAGE, AND MANUAL STAGE HAVING MOTORIZATION UNIT US14433790 2013-10-02 US20150263586A1 2015-09-17 Hiroaki Muramatsu
By removably attaching a simplified mechanism to a prior-art stage for moving a sliding component by manual rotation of a control knob, an automatic mode and a manual mode can be made selectable and moreover, a motorization unit for a manual stage capable of fine adjustment by manual operation and a manual stage with the motorization unit is provided.A motorization unit for a manual stage is provided with a clamp for preventing co-rotation by sandwiching a sliding component or a fixed component of a manual stage, a coupling coupled to a control knob while holding substantial coaxiality with a control knob shaft, a coupling claw for gripping a knob portion, and a motor for rotating the coupling, either one of manual operation and automatic operation being selected by removal from/attachment to the manual stage, and constitutes a manual stage with the motorization unit by being equipped to the manual stage.
62 Wireless charger installed with a two-dimensional moving mechanism US13333428 2011-12-21 US08907619B2 2014-12-09 Rei Shukuya; Takashi Yamanaka
A wireless charger installed with a two-dimensional moving mechanism which is simply configured, inexpensive and can be easily miniaturized is provided wherein a table is freely moved in the X-axis direction and the Y-axis direction. In the two dimensional moving mechanism, each pair of X axis pinions are arranged to simultaneously mesh with teeth near both ends of each rack arranged on an X axis slider and Y axis slider respectively. Each pair of pinions are driven by each motor and rotated in synchronization.
63 XYtheta PRECISION ALIGNMENT PLATFORM US13935562 2013-07-05 US20130291667A1 2013-11-07 MAU-HSIANG WU
A xyθ precision alignment platform including three power units and three moving platforms is provided. Two of the power units can drive a third moving platform moving in X or Y direction. The other power unit has a worm which can drive an arcuate teeth arrange disposed between the second and third moving platforms to drive the third moving platform rotating. Whereby, since the worm is arranged to drive the arcuate teeth arrange laterally, the alignment platform is thin and the rotative movement of the third moving platform can be precisely controlled. Additionally, each power unit may be electrically connected to a controller for respectively driving and controlling each power unit. When only the rotation of the third moving platform is required, only one of the power units needs to be driven, thus simplifying the operation of the alignment platform and improving the work efficiency.
64 XY ALL-DIRECTIONAL PRECISION ALIGNMENT PLATFORM US13584833 2012-08-14 US20130291666A1 2013-11-07 MAU-HSIANG WU
The present invention provides an XY all-directional precision alignment platform comprising: an XY-axes moving platform comprising: X-axis moving platform and Y-axis moving platform; said X-axis and Y-axis moving platforms being stacked together; a θ-angle rotating platform; said θ-angle rotating platform stacked onto said carrier surface thereof; wherein said θ-angle rotating platform is driven to perform precise θangle rotation achieving 360° and is of a four-layered thickness only, achieving the goal of having a light and thin product.
65 STAGE UNIT, EXPOSURE APPARATUS, AND EXPOSURE METHOD US13679523 2012-11-16 US20130120731A1 2013-05-16 Yuichi SHIBAZAKI
A power usage supply unit that supplies power usage to a stage which moves on a movement surface has a first axis section, first support section, a second axis section, and a second support section. The first axis section is movably supported by the first support section in a direction of the first axis and around the first axis, and the second axis section is movably supported by the second support section in a direction of the second axis and around the second axis. Using a mechanism in which the power usage supply unit has at least four degrees of freedom, the power usage supply unit does not interfere with the movement of a stage even when the stage moves in the first and second axis directions and in the rotational direction of each axis, thereby completely avoiding decrease in position controllability of the stage caused by dragging a tube.
66 STACK SAMPLING APPARATUS US13033231 2011-02-23 US20120210805A1 2012-08-23 Randall F. Lind; Peter D. Lloyd; Lonnie J. Love; Mark W. Noakes; Francois G. Pin; Bradley S. Richardson; John C. Rowe
An apparatus for obtaining samples from a structure includes a support member, at least one stabilizing member, and at least one moveable member. The stabilizing member has a first portion coupled to the support member and a second portion configured to engage with the structure to restrict relative movement between the support member and the structure. The stabilizing member is radially expandable from a first configuration where the second portion does not engage with a surface of the structure to a second configuration where the second portion engages with the surface of the structure.
67 Flexure mount for an optical assembly US13324459 2011-12-13 US08205853B2 2012-06-26 Zvi Bleier; Alexander Jacobson
A flexure mount for economically producing pure translational motion with no arcuate or error motion in the vertical direction utilizing alignment pins and parts reducing structures including monolithic springs. A low profile embodiment utilizes a compound monolithic spring. The flexure mount may be used to translate a mirror or retroreflector in a purely linear direction of precisely controlled and known distance, useful in myriad interferometer applications including spectroscopy.
68 WIRELESS CHARGER INSTALLED WITH A TWO-DIMENSIONAL MOVING MECHANISM US13333428 2011-12-21 US20120146579A1 2012-06-14 Rei SHUKUYA; Takashi YAMANAKA
A wireless charger installed with a two-dimensional moving mechanism which is simply configured, inexpensive and can be easily miniaturized is provided wherein a table is freely moved in the X-axis direction and the Y-axis direction. In the two dimensional moving mechanism, each pair of X axis pinions are arranged to simultaneously mesh with teeth near both ends of each rack arranged on an X axis slider and Y axis slider respectively. Each pair of pinions are driven by each motor and rotated in synchronization.
69 System for Precisely Adjusting the Space Between Two Elements US12732679 2010-03-26 US20100247234A1 2010-09-30 Martin Closs
A device for precisely adjusting the space between two elements includes a connection member that mutually connects the first element and the second element, a first space adjusting member, and a second space adjusting member. The first space adjusting member has a first thread that interacts with an assigned counterthread of one of the elements, and the second space adjusting member has a second thread that interacts with an assigned counterthread of the first space adjusting member or of the other of the elements. The first thread and the second thread have different thread pitches.
70 Apparatus for positioning an image measuring platform US11849303 2007-09-03 US07766298B2 2010-08-03 Chih-Kuang Chang; Sen Zhang
An apparatus for positioning an image measuring platform, the apparatus includes a horizontal base (11); a measuring platform (21) movable on the horizontal base; a support arm (12) extending in the Z-axis direction secured to the horizontal base; two parallel sliders (435) extending in the Z-axis direction fixed on the upper ends of the support arm; a first bar (411) for controlling the measuring platform to move in X-axis direction; a second bar (421) for controlling the measuring platform to move in Y-axis direction; a first cantilever (314) and a second cantilever (315) vertically attached on the two parallel sliders; a charge coupled device lens (31) fixed on the first cantilever and the second cantilever through a lens clamp (312) and a locking cap (313); a first screw handle (414) engaged with the holes of both sides of a first bracket (413) secured on the horizontal base, a first male screw thread (415) formed outside the first screw handle, and a first female screw thread (416) corresponding to the first male screw thread formed outside the first bar; and a second screw handle (424) engaged with the holes of both sides of a second bracket secured (423) on the horizontal base, a second male screw thread (425) formed outside the second screw handle, and a second female screw thread (426) corresponding to the second male screw thread formed outside the second bar.
71 FLEXURE MOUNT FOR AN OPTICAL ASSEMBLY US12505279 2009-07-17 US20100012808A1 2010-01-21 Alexander Jacobson; Zvi Bleier
A flexure mount for economically producing pure translational motion with no arcuate or error motion in the vertical direction utilizing alignment pins and parts reducing structures including monolithic springs. A low profile embodiment utilizes a compound monolithic spring. The flexure mount may be used to translate a mirror or retroreflector in a purely linear direction of precisely controlled and known distance, useful in myriad interferometer applications including spectroscopy.
72 Supporting unit, and moving table device and linear-motion guiding device that use the supporting unit US10558686 2004-06-25 US07624661B2 2009-12-01 Shigehiro Umetsu; Tatsuro Shimoyama; Koji Uchida
A supporting unit in a moving table device, easily connected to a base and a table, is provided. A supporting unit (Uα) has a pair of planar bearing plates. Inside the planar bearing plates are positioned spherical bearing plates, respectively. Further, a spherical axial member is sandwiched between the spherical bearing plates (34a, 34b). A planar bearing is formed between each of the planar bearing plates and each of the spherical bearing plates. A spherical bearing is formed between each of the spherical bearing plates and the spherical axial member. Thus, the supporting unit (Uα) is provided with a certain degree of movability in five-axis directions. With the high degree of movability, the supporting unit (Uα) can be easily connected to a base and a table.
73 MOVABLE TABLE US12055655 2008-03-26 US20090056597A1 2009-03-05 Sadayoshi HARA; Toshihisa Fujiwara
A movable table positioned to a predetermined position with respect to a base through manual movement, fixed to the base after the positioning. A lift mechanism that releases a top plate from a fixed state and lifts the top plate from the base against an attraction force of a magnet, or against the attraction force and the gravity of the magnet, and a mechanism that lowers the top plate from a predetermined lifted position with either or both the attraction force or the gravity of the magnet, and fixes the top plate to the base with an action of the attraction force of the magnet.
74 Precise Positioning Apparatus US11886427 2005-03-16 US20090045699A1 2009-02-19 Tetsunori Otaguro
A precision positioning device 1 having degrees of freedom along multi-axial directions includes a single unitary structure 2 and a plurality of expansion/contraction actuators 4a, 4b, and 4c. Movements of an object-to-be-positioned in the axial directions are effected through such elastic deformations of the unitary structure 2 as to move the object-to-be-positioned only in the axial directions. Forces to generate the elastic deformations are based on expansion/contraction of the expansion/contraction actuators 4a, 4b, and 4c incorporated in the unitary structure 2. The expansion/contraction actuators 4a, 4b, and 4c can be formed of piezoelectric elements.
75 Leveling and Support Device US11782550 2007-07-24 US20090026333A1 2009-01-29 John Lenzini
A leveling device comprising one or more bracket sections, an integrated structure coupling mechanism, a brace section, and a leveler. The one or more bracket sections may have a top member with a substantially flat top side and a generally perpendicularly aligned side member. The brace section may comprise a top surface substantially planar to the bracket section top side and extending one of away from and between the one or more bracket sections, a substantially flat bottom surface, and an angled bore. The leveler may comprise an angled nut and bolt.
76 Method and apparatus for releasable fastening and for modification of the relative positions of two components with respect to one another US10931859 2004-09-01 US07186047B2 2007-03-06 Peter Soppelsa; Waldemar Blüthgen
An apparatus for releasable fastening and for modifying the relative position of two components (1, 1′, Bf, G; 2, 2′, Bk, Br), which have a common connecting surface forming a contact surface (5, 5′), comprises two screws (3), which in coaction with specially configured V-shaped notch zones (9a1, 9a2; 9b1, 9b2; 9a3, 9a4; 9b3, 9b4) permit a relative positioning in zero-backlash and accurately aligned fashion, and serve as the fastening means. It is thereby possible to perform a linear displacement and/or a rotation and/or a tilt in simple fashion.
77 Handling device, especially for positioning a test head on a testing device US10482001 2002-07-04 US06940273B2 2005-09-06 Helmuth Heigl; Hubertus Heigl
Disclosed is a handling device, especially for positioning a test head on a testing device, including a holder for a test head and a column. Positioning apparatus adjustable in a vertical direction is connected to the test head on the column. The handling device advantageously has a simple and compact structure and an exactly reproducible, smooth movement of the test head, because the positioning apparatus has at least one pair of interspaced articulated arms in which one end thereof is respectively articulated on the holder and the other end thereof is articulated on a carriage which can be displaced in a horizontal direction. The articulated arms can be pivotably arranged around a vertical axis. The carriages can move independently from each other.
78 Adjustment table US10156251 2002-05-28 US06727983B2 2004-04-27 Erich Thallner
An adjustment table for aligning a body in a horizontal plane. The adjustable table includes an external frame, an intermediate frame moveable in a first horizontal direction in the external frame along a first path, and a holding unit for the body movable in a second horizontal direction that is perpendicular to the first horizontal direction in the intermediate frame along a second path. The intermediate frame can be positioned according to the external frame via a first adjustable device pivoted/hinged to the intermediate frame at a freely definable position along the first path. The holding unit can be positioned according to the intermediate frame via a second adjustment device pivoted/hinged to the holding unit at a freely definable position along the second path.
79 Compact video inspection apparatus with Y, Z, X compounded measurement axes US09256343 1999-02-22 US06518996B1 2003-02-11 Edward T. Polidor; Albert G. Choate
A yoke is supported on a frame for vertical movement in a Z direction above a transparent work support that is mounted on the frame for horizontal adjustment in a Y direction, normal to the Z direction. A carriage which is mounted for horizontal adjustment on the yoke in an X direction, normal to the Y and Z directions, carries a video camera and lens system which overlies the work support to project an image of an inspected workpiece to the camera. A substage collimator which is mounted on the frame beneath the work support for adjustment in the X direction, has thereon a souce of collimated light that registers with the lens system. The collimator is connected to the carriage to be moved in unison therewith in the X direction, and always to maintain the light source in registry with the lens system.
80 Tilt-adjustable supporting device, in particular maintained in a horizontal position US81938 1998-05-21 US6161809A 2000-12-19 Laurent Mahy; Felix Touret
A support device comprising two superposed platforms connected by two electrically controlled jacks of adjustable length and by an upright of constant length forming on these platforms the apices of triangles, device characterized in that the jacks and the upright are rigidly fixed on one of the platforms, so-called upper platform, by an articulation assembly comprising a universal joint and a pivot pin, each pivot pin being located parallel to the opposite side of the triangle defined on this platform.
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