Claims
- 1. An acceleration measuring apparatus, comprising:a movable part provided with a substantially spherical part at a lower end thereof and further provided with a weight, so that when an acceleration is experienced, said movable part is inclined under an effect of a force exerted at said weight; bearing means in contact with and rotatably supporting said substantially spherical part of said movable part; recovery means which rotates said substantially spherical part within said bearing means so as to recover an upright position of the movable part; and inclination detecting means which detects a direction of inclination and an angle of inclination of said movable part, wherein the acceleration is measured based on the direction of inclination and the angle of inclination of said movable part, and wherein said recovery means comprises a cover having a cylindrical part, a flange protruding outward from said substantially spherical part, a slider slidably provided in said cylindrical part of said cover, a lower end of said slider being supported by said flange, and a spring which downwardly spring-biasing said slider, wherein, when said movable part is inclined, said slider is pushed up by said flange and said spring is elastically deformed, and when said movable part is released, said slider is pushed down by an elastic force of said spring and said slider pushes said flange, so that said movable part recovers to an original position thereof.
- 2. The acceleration measuring apparatus as claimed in claim 1, further comprising;an attachment member to secure said acceleration measuring apparatus on a part of a human body.
- 3. The acceleration measuring apparatus as claimed in claim 1,wherein said slider is provided with a plurality of ribs, said ribs being in line contact with an inner surface of said cylindrical part.
- 4. An input device main body to be mounted on a substrate equipped with a sensor, said main body, comprising:a movable part having a substantially spherical part provided at a lower end thereof; bearing means in contact with and rotatably supporting said substantially spherical part of said movable part; a recovery means which rotates said substantially spherical part within said bearing means so as to recover an upright position of the movable part; and an object to be detected which is provided on said movable part, wherein said input device main body is mounted on said substrate so as to detect a direction of inclination and an angle of inclination of said object to be detected by means of said sensor, and wherein said recovery means comprises a cover having a cylindrical part, a flange protruding outward from said substantially spherical part, a slider slidably provided in said cylindrical part of said cover, a lower end of said slider being supported by said flange, and a spring which downwardly spring-biasing said slider, wherein, when said movable part is inclined, said slider is pushed up by said flange and said spring is elastically deformed, and when said movable part is released, said slider is pushed down by an elastic force of said spring and said slider pushes said flange, so that said movable part recovers to an original position thereof.
- 5. An acceleration measuring apparatus, comprising:a movable part provided with a substantially spherical part at a lower end thereof and further provided with a weight, so that when an acceleration is experienced, said movable part inclines under an effect of a force exerted at said weight; a bearing unit in contact with and rotatably supporting said substantially spherical part of said movable part; a recovery unit rotating said substantially spherical part within said bearing unit so as to recover an upright position of the movable part; and inclination detecting unit measuring the acceleration experienced by detecting a direction of inclination and an angle of inclination of said movable part, and wherein said recovery unit comprises a cover having a cylindrical part, a flange protruding outward from said substantially spherical part, a slider slidably provided in said cylindrical part of said cover, a lower end of said slider being supported by said flange, and a spring which downwardly spring-biasing said slider, wherein, when said movable part is inclined, said flange pushes up said slider and said spring elastically deforms, and when said movable part is released, said spring pushes down said slider by an elastic force thereof and said slider pushes said flange, so that said movable part recovers to an original position thereof.
- 6. The acceleration measuring apparatus as claimed in claim 5, further comprising;an attachment member securing said acceleration measuring apparatus on a part of a human body.
- 7. The acceleration measuring apparatus as claimed in claim 5,wherein said slider is provided with a plurality of ribs, said ribs being in line contact with an inner surface of said cylindrical part.
- 8. An input device main body to be mounted on a substrate equipped with a sensor, said main body, comprising:a movable part having a substantially spherical part provided at a lower end thereof; a bearing unit in contact with and rotatably supporting said substantially spherical part of said movable part; a recovery unit rotating said substantially spherical part within said bearing unit so as to recover an upright position of the movable part; and an object to be detected is provided on said movable part, wherein said input device main body is mounted on said substrate to detect a direction of inclination and an angle of inclination of said object by said sensor, and wherein said recovery unit comprises a cover having a cylindrical part, a flange protruding outward from said substantially spherical part, a slider slidably provided in said cylindrical part of said cover, a lower end of said slider being supported by said flange, and a spring which downwardly spring-biasing said slider, wherein, when said movable part is inclined, said flange pushes up said slider and said spring elastically deforms, and when said movable part is released, said spring pushes down said slider by an elastic force thereof and said slider pushes said flange, so that said movable part recovers to an original position thereof.
- 9. An acceleration measuring apparatus, comprising:a movable part with a substantially spherical part at a lower end thereof and a weight such that the movable part inclines when subject to an acceleration; a bearing unit in contact with and rotatably supporting the substantially spherical part of the movable part; inclination detecting unit detecting the acceleration according to a direction and an angle of inclination of the movable and a recovery unit comprises a cover having a cylindrical part, a flange protruding outward from said substantially spherical part, a slider slidably provided in said cylindrical part of said cover, a lower end of said slider being supported by said flange, and a spring which downwardly spring-biasing said slider, wherein, when said movable part is inclined, said flange pushes up said slider and said spring elastically deforms, and when said movable part is released, said spring pushes down said slider by an elastic force thereof and said slider pushes said flange, so that said movable part recovers to an original position thereof.
- 10. An input device main body mountable with a sensor, said input device main body, comprising:a movable part with a substantially spherical part at a lower end thereof; a bearing unit in contact with and rotatably supporting the substantially spherical part of the movable part; an object to be detected by the sensor is provided on said movable part, wherein a direction and an angle of inclination of said object is detect by said sensor and corresponds to an acceleration of the movable and a recovery unit comprises a cover having a cylindrical part, a flange protruding outward from said substantially spherical part, a slider slidably provided in said cylindrical part of said cover, a lower end of said slider being supported by said flange, and a spring which downwardly spring-biasing said slider, wherein, when said movable part is inclined, said flange pushes up said slider and said spring elastically deforms, and when said movable part is released, said spring pushes down said slider by an elastic force thereof and said slider pushes said flange, so that said movable part recovers to an original position thereof.
Priority Claims (2)
Number |
Date |
Country |
Kind |
10-99517 |
Apr 1998 |
JP |
|
11-52468 |
Mar 1999 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a divisional application of application Ser. No. 09/285,884, filed Apr. 7, 1999, now allowed.
US Referenced Citations (12)
Foreign Referenced Citations (2)
Number |
Date |
Country |
7-117876 |
Dec 1995 |
JP |
9-134251 |
May 1997 |
JP |