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    • 7. 发明专利
    • METHOD FOR DRIVING LASER SCANNING MICROSCOPE HAVING PRECISE FOCUSING STAGE CAPABLE OF BEING INCLINED
    • JP2000206419A
    • 2000-07-28
    • JP12639399
    • 1999-05-06
    • ZEISS CARL JENA GMBH
    • WEYH THOMASSIMON ULRICH DRTILLE SEBASTIAN
    • G01B11/24G02B21/24G02B21/26
    • PROBLEM TO BE SOLVED: To provide a method for expressing the distribution of three-dimensional points in a laser scanning microscope, having an precise focusing stage which can be inclined, so that the inclination of an X/Y scanner and the table of the microscope is adjusted based on the distribution of raster points given previously by calculation and a raster point to be scanned is made to coincide with the previously given distribution of the raster points. SOLUTION: A first distribution (OR1) of the raster points is compared with the second distribution (OR2) of the raster points produced by the calculation. At a place where the raster points are made to coincide with each other, the first raster point is quoted for expressing the second distribution (OR2). At a place, where they are not made to coincide with each other, an intermediate value is formed from the first distribution (OR1) set around the second raster point. Then, the state of the second raster point is made to correspond to such a state. Moreover, the inclination of an X/Y scanner and the table of the microscope is adjusted, based on the distribution of two-dimensional or the three-dimensional raster points previously given by the calculation so that the raster point to be scanned is made to coincide with the mainly stored distribution of raster points as a whole or in part.
    • 10. 发明专利
    • 360°-OMNIDIRECTIONAL TYPE REFLECTOR
    • JP2000056110A
    • 2000-02-25
    • JP20022799
    • 1999-07-14
    • ZEISS CARL JENA GMBH
    • FEIST WIELAND
    • G02B5/122
    • PROBLEM TO BE SOLVED: To provide a 360 deg.-omnidirectional reflector capable of removing defects regarding the precision of position setting and distance measuring due to height deviation of the pupil as much as possible by facilitating adjustment in the direction perpendicular to a aiming direction and minimizing signal loss. SOLUTION: Triangular prisms 6.1 and 6.2 whose incident surfaces 10 form a part of a main body 1 roundly constituted are arranged, side by side, in the main body 1 so that they come into contact with each other at one point or in a nearly overlapped stage, their peaks (angle) 8 are on the plane containing their axes 11, 12, and 13 spreading at right angles to the incident surfaces 10 of the triangular prisms 6.1 and 6.2 and crossing one another at one point A; and the mutually adjacent triangular prisms 6.1 and 6.2 face to each other and are arranged by rotating by 60 deg. around their own axes.