EP0802396A2

Inclination sensor and surveying instrument using the same

Abstract

The present invention relates to an inclination sensor capable of detecting inclinations in two X- and Y-axis directions with use of only a single linear sensor. In this inclination sensor, a first optical system collimates the light emitted from a light source, a dark field pattern allows the light from the first optical system to pass therethrough, a half mirror changes the direction of the light which has passed through the dark field pattern, a first liquid member reflects the light which has been changed its direction by the half mirror, a second optical system focuses the light reflected by the first liquid member, the light receiving means receives a light image formed by the second optical system, and the processing means calculates an inclination on the basis of a reception signal provided from the light receiving means. The dark field pattern is constituted by a plurality of slits in such a manner that central lines of the pattern are arranged at equal pitches in one direction and that the pattern width varies in a direction orthogonal to the one direction.

EP0802396A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 15 April 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

7 claims: 7 independent, 0 dependent

  1. 1
    An inclination sensor comprising:a light source;a first optical system for collimating the light emitted from said light source;a dark field pattern which allows the light from said first optical system to pass therethrough;a half mirror for changing the direction of the light which has passed through said dark field pattern;a first liquid member having a free surface for reflecting the light thus changed in direction by said half mirror;a second optical system for focusing the light reflected by said first liquid member;a light receiving means for receiving a light image formed by said second optical system;and a processing means for calculating an inclination on the basis of a reception signal provided from said light receiving means, said dark field pattern being constituted by a plurality of slits in such a manner that central lines of the pattern are arranged at equal pitches in one direction and that the pattern width varies in a direction orthogonal to said one direction.
  2. 2
    An inclination sensor comprising:a light source;a first optical system for collimating the light emitted from said light source;a dark field pattern which allows the light from said first optical system to pass therethrough;a first liquid member having a free surface, said first liquid member being disposed so as to receive obliquely the light which has passed through said dark field pattern;a second optical system for focusing the light reflected by said first liquid member;a light receiving means for receiving a light image formed by said second optical system;and a processing means for calculating an inclination on the basis of a reception signal provided from said light receiving means, said dark field pattern being constituted by a plurality of slits in such a manner that central lines of the pattern are arranged at equal pitches in one direction and that the pattern width varies in a direction orthogonal to said one direction.
  3. 3
    An inclination sensor comprising:a light source;a first optical system for collimating the light emitted from said light source;a dark field pattern which allows the light from said first optical system to pass therethrough;a first liquid member having a free surface, said first liquid member being disposed so as to receive vertically the light which has passed through said dark field pattern;a second optical system for focusing the light which has passed through said first liquid member;a light receiving means for receiving a light image formed by said second optical system;and a processing means for calculating an inclination on the basis of a reception signal provided from said light receiving means, said dark field pattern being constituted by a plurality of slits in such a manner that central lines of the pattern are arranged at equal pitches in one direction and that the pattern width varies in a direction orthogonal to said one direction.
  4. 4
    An inclination sensor according to any of claims 1 to 3, including a second liquid member having a free surface for reflecting the light after passing through said half mirror which is for changing the direction of said dark field pattern, and for directing the reflected light to said light receiving means via said second optical system, to permit use of the inclination sensor in two directions.
  5. 5
    An inclination sensor according to any of claims 1 to 4, wherein said light receiving means is a linear sensor disposed in a direction (X direction) orthogonal to the image of said plural slits, and said processing means is constructed so as to determine a motion larger than the pattern pitch on the basis of an amount of shift relative to said linear sensor and determine a motion smaller than the pattern pitch by calculating a pattern phase according to Fourier transform, thereby determining an inclination in Y direction, and so as to determine an inclination in Y direction by utilizing the width of the slit image which varies in the Y direction.
  6. 6
    An inclination sensor according to any of claims 1 to 5, wherein said liquid member(s) having a free surface is substituted by a swingable suspended member.
  7. 7
    A surveying instrument using the inclination sensor described in any of claims 1 to 6, said inclination sensor being attached to the body of the surveying instrument to detect inclinations in both X and Y directions.