IP Library Granted Patent US 7,406,868
Granted Patent B2
US 7,406,868 · App. 11/460,985 · Granted Aug 5, 2008

Compensating accelerometer with optical angle sensing

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Quick Facts
Patent No.
US 7,406,868
App. No.
11/460,985
Granted
Aug 5, 2008
Kind
B2
Abstract

A compensating accelerometer includes a housing, and a sensing element mounted in the housing. The sensing element includes a pendulum flexibly mounted on a base. The sensing element includes a coil mounted on a movable plate, a curtain having a slit, and a load mass affixed to the curtain. An angle sensor within the housing includes the curtain, a fork, a light source and a differential light detector. A momentum sensor within the housing includes a permanent magnet, an inner magnetic conductor, an outer magnetic conductor and the coil. The permanent magnet is magnetized in a direction of an axis of the pendulum. A stopper is used to adjust position of the fork. A spring is on opposite side of the fork, for taking up slack in the fork. A fixator has an eccentric, for adjusting a gap between the curtain and the light detector.

Claims (50)

1. A compensating accelerometer comprising:

a housing;

a pendulum within the housing flexibly coupled to a base,

wherein the pendulum includes a coil mounted on a movable plate and a curtain having an opening;

a light source and a differential light detector both mounted on a fork and generating a signal proportional to angular displacement of the pendulum;

a magnet magnetized in a direction of an axis of the pendulum;

a magnetic conductor that, together with the coil and the magnet, is used to return the pendulum to a neutral position;

a feedback circuit generating an output proportional to acceleration experienced by the compensating accelerometer based on the angular displacement of the pendulum.

2. The accelerometer of claim 1 , wherein the fork, the curtain, the light source and the differential light detector form an angle sensor of angular displacement of the pendulum.

3. The accelerometer of claim 2 , further comprising a stopper that adjusts position of the fork.

4. The accelerometer of claim 3 , further comprising springs in contact with the fork, for taking up slack in the fork.

5. The accelerometer of claim 3 , further comprising a fixator that has an eccentric, for adjusting a gap between the curtain and the light detector.

6. The accelerometer of claim 2 , wherein the fork is movable along a measurement axis of the accelerometer using guides, and is fixed in place using screws.

7. The accelerometer of claim 6 , further comprising a stopper whose position can be adjusted in a threaded opening and which contacts the fork for fixing the fork in place.

8. The accelerometer of claim 7 , further comprising a spring for taking up slack in a position of the fork, the spring positioned between the fork and a flange.

9. The accelerometer of claim 7 , wherein a zero bias of the accelerometer is tuned mechanically by adjusting the stopper's position.

10. The accelerometer of claim 1 , wherein the magnet is a permanent magnet.

11. The accelerometer of claim 1 , wherein the opening is shaped as a slit.

12. The accelerometer of claim 1 , wherein the movable plate has a thin portion to enable deflection of the plate.

13. The accelerometer of claim 1 , wherein the magnetic conductor includes an inner magnetic conductor and an outer magnetic conductor.

14. The accelerometer of claim 1 , wherein a differential light detector and a light source are fixed relative to the housing.

15. The accelerometer of claim 1 , wherein the magnet, the magnetic conductor and the coil form a momentum sensor.

16. The accelerometer of claim 1 , wherein an axis of suspension of the pendulum substantially coincides with a neutral plane of the magnet.

17. A compensating accelerometer comprising:

a housing;

a pendulum within the housing flexibly coupled to a base,

wherein the pendulum includes a coil mounted on a movable plate and a curtain having an opening;

a light source and a differential light detector generating a signal proportional to angular displacement of the pendulum;

a magnet magnetized in a direction of an axis of the pendulum;

a magnetic conductor that, together with the coil and the magnet, is used to return the pendulum to a neutral position;

a feedback circuit generating an output proportional to acceleration experienced by the compensating accelerometer based on the angular displacement of the pendulum; and

a load mass affixed to the curtain.

18. A compensating accelerometer comprising:

a housing;

a pendulum within the housing flexibly coupled to a base,

wherein the pendulum includes a coil mounted on a movable plate and a curtain having an opening;

a light source and a differential light detector generating a signal proportional to angular displacement of the pendulum;

a magnet magnetized in a direction of an axis of the pendulum;

a magnetic conductor that, together with the coil and the magnet, is used to return the pendulum to a neutral position;

a feedback circuit generating an output proportional to acceleration experienced by the compensating accelerometer based on the angular displacement of the pendulum; and

a second feedback circuit that compensates for temperature effects that distort the output.

19. A compensating accelerometer comprising:

a housing;

a pendulum within the housing flexibly coupled to a base and including a movable coil, the movable coil being symmetrical about a suspension axis of the pendulum;

a light source;

a differential photodiode serving as current source and generating a signal proportional to angular displacement of the pendulum, the signal based on light received from the light source;

a magnet magnetized in a direction of an axis of the pendulum;

a magnetic conductor that, together with the coil and the magnet, is used to return the pendulum to a neutral position;

means for mechanical tuning of a zero bias of the accelerometer; and

a circuit generating an output proportional to acceleration experienced by the compensating accelerometer based on the angular displacement of the pendulum.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2012
From: INNALABS HOLDING, INC.
To: INNALABS, LTD.
Reel/Frame 027532/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2012
From: INNALABS TECHNOLOGIES, INC.
To: INNALABS HOLDING, INC.
Reel/Frame 027531/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 26, 2011
From: INNALABS TECHNOLOGIES, INC.
To: INNALABS LIMITED
Reel/Frame 027444/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 30, 2006
From: CHERNYAK, MYKOLA G.; SKRYPKOVSKYY, GENNADIY A.
To: INNALABS TECHNOLOGIES, INC.
Reel/Frame 018022/0056 →