Nova Patents
EP0971208A2

Angular velocity sensor

Abstract

An angular velocity sensor includes: a board (1) in the form of a flat plate; a rotational vibrator (4) extended to the right and left from a central axis (01 - 01) vertical to the board (1) at the center of rotational vibration over the board (1) and supported at the location of the central axis (01 - 01) by rotational supporting beams (5, 7) so as to be rotationally vibrated; a first vibrator (6) located on the left side of the rotational vibrator (4) and supported by first supporting beams (5); a second vibrator (8) located on the right side of the rotational vibrator (4) and supported by second supporting beams (7); a rotational vibration generator (12A - D) for vibrating the second vibrator (8) backward and forward when the first vibrator (6) is vibrated forward and backward by giving rotational vibration to the rotational vibrator (4); a first displacement detector (16L, 16R) for detecting displacement of the first vibrator (6) vibrated to the right and left when an angular velocity is applied around the central axis (01 - 01) of the rotational vibrator (4) in the state that rotational vibration is given to the rotational vibrator (4) by the rotational vibration generator (12A - D); and a second displacement detector (20L, 20R) for detecting displacement of the second vibrator (8) vibrated to the right and left when an angular velocity is applied around the central axis (01 - 01) of the rotational vibrator (4) in the state that rotational vibration is given to the rotational vibrator (4) by the rotational vibration generator (12A - D).

EP0971208A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 6 July 2019, 7.2 years ago.

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

16 claims: 2 independent, 14 dependent

  1. 1
    An angular velocity sensor comprising:a board (1) in the form of a flat plate;a rotational vibrator (4) rotatable about a center of the board (1), the rotational vibrator (4) being extended to the right and left from a central axis (01 - 01) vertical to the board (1) and extending through the center thereof and being supported over the board (1) at the location of the central axis (01 - 01) by rotational supporting beams (3) so as to be rotationally vibrated;a first vibrator (6) located on a right side of the rotational vibrator (4) and supported by first supporting beans (5);a second vibrator (8) located on a left side of the rotational vibrator (4) and supported by second supporting beams (7);rotational vibration generating means (12A - D) for vibrating the second vibrator (8) backward and forward when the first vibrator (6) is vibrated forward and backward by giving rotational vibration to the rotational vibrator (4);a first displacement detector (16L, 16R) for detecting a displacement of the first vibrator (6) vibrated to the right and left when an angular velocity is applied around the central axis (01 - 01) of the rotational vibrator (4) in the state that rotational vibration (4) is given to the rotational vibrator by the rotational vibration generating means (12A - D);and a second displacement detector (20L, 20R) for detecting a displacement of the second vibrator (8) vibrated to the right and left when an angular velocity is applied around the central axis (01 - 01) of the rotational vibrator (4) in the state that rotational vibration is given to the rotational vibrator (4) by the rotational vibration generating means (12A - D).
  2. 8
    An angular velocity sensor comprising:a support (1);a rotational vibrator (4);rotational support beams (5, 7) connected to the board (1) and the rotational vibrator (4) for supporting the rotational vibrator (4) over the board (1) at a central axis (01 - 01) extending vertically from a center of the board (1);a first vibrator (6) located on a first side of the rotational vibrator (4) and supported by first supporting beams (5);a second vibrator (8) located on a second, opposite side of the rotational vibrator (4) and supported by second supporting beams (7);a rotational vibration generator (12A - D) for rotationally vibrating the rotational vibrator (4), the rotational vibrator (4) causing the first and second vibrators (6, 8) to vibrate;a first displacement detector (16L, 16R) for detecting a displacement of the first vibrator (6) when both an angular velocity is applied around the central axis (01 - 01) of the rotational vibrator (4) and the rotational vibrator (4) is rotationally vibrated;and a second displacement detector (20L, 20R) for detecting a displacement of the second vibrator (8) when both an angular velocity is applied around the central axis (01 - 01) of the rotational vibrator (4) and the rotational vibrator is rotationally vibrated.