IP Library Granted Patent US 11,243,224
Granted Patent B2
US 11,243,224 · App. 16/472,199 · Granted Feb 8, 2022

Fiber-optic acceleration sensor having lever arm

Inventors: Sascha Kienitz (Munich, DE); Markus Schmid (Munich, DE); Manuel Mai (Munich, DE)
Assignee: FOS4X GMBH
G01P15/093G01H9/004G01P1/006G01P15/18G01P2015/0828
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Quick Facts
Patent No.
US 11,243,224
App. No.
16/472,199
Granted
Feb 8, 2022
Kind
B2
Abstract

The invention relates to a device for detecting acceleration. The device contains: a frame; a mass; a lever arm connected to the mass, wherein the mass is provided at a first lever position; an optical fiber having a fiber-optic sensor; and a compensation element for disturbance variables, wherein the compensation element for disturbance variables is connected to the lever arm or the mass and wherein the compensation element for disturbance variables is connected to the frame.

Claims (41)

1. A device for detecting acceleration, comprising:

a frame;

a mass;

a lever arm connected to the mass, wherein the mass is provided at a first lever position;

an optical fiber having a fiber-optic sensor; and

a compensation element for disturbance variables, wherein the compensation element for disturbance variables is connected to the lever arm, wherein the compensation element for disturbance variables is connected to the frame, and wherein the compensation element includes a fiber mount provided independently from the lever arm, the optical fiber being connected to said fiber mount.

2. The device according to claim 1 , wherein the compensation element is a temperature compensation element.

3. The device according to claim 1 , wherein the compensation element is a fiber mount connected to the frame so that the mass is connected to the lever arm, the lever arm is connected to the fiber mount, and the fiber mount is connected to the frame.

4. The device according to claim 3 , wherein the lever arm is attached directly or by means of the fiber mount to a fixed point in such a manner that a rotation is performed about a rotary axis.

5. The device according to claim 4 , wherein the rotation is performed about a spatially fixed rotary axis.

6. The device according to claim 1 , wherein the thermal expansion coefficient of the frame is less than the thermal expansion coefficient of the compensation element for disturbance variables at least by a factor of 1.5.

7. The device according to claim 1 , wherein the compensation element further includes a rod.

8. The device according to claim 7 , wherein the rod is extends between the fiber mount and the frame.

9. The device according to claim 7 , wherein the rod is pretensioned.

10. The device according to claim 7 , wherein the rod comprises silicone.

11. The device according to claim 1 , wherein the optical fiber is connected to the lever arm or the fiber mount at a second lever position.

12. A system for detecting acceleration in at least two spatial directions, comprising:

at least two devices for detecting acceleration, each device comprising:

a frame;

a mass;

a lever arm connected to the mass, wherein the mass is provided at a first lever position;

an optical fiber having a fiber-optic sensor; and

a compensation element for disturbance variables, wherein the compensation element for disturbance variables is connected to the lever arm, and wherein the compensation element for disturbance variables is connected to the frame, and wherein the compensation element includes a fiber mount provided separately from the lever arm, the optical fiber being connected to said fiber mount,

wherein respective frames of the at least two devices are mutually connected.

13. A method for detecting acceleration, comprising:

irradiating electromagnetic radiation into a device for detecting acceleration, comprising:

a frame;

a mass;

a lever arm connected to the mass, wherein the mass is provided at a first lever position;

an optical fiber having a fiber-optic sensor; and

a compensation element for disturbance variables, wherein the compensation element for disturbance variables is connected to the lever arm, and wherein the compensation element for disturbance variables is connected to the frame, and wherein the compensation element includes a fiber mount provided separately from the lever arm, the optical fiber being connected to said fiber mount;

detecting an optical signal provided by the electromagnetic radiation influenced by the device; and

evaluating the optical signal.

14. A system for detecting acceleration in at least two spatial directions, comprising:

at least three devices for detecting acceleration, each device comprising:

a frame;

a mass;

a lever arm connected to the mass, wherein the mass is provided at a first lever position;

an optical fiber having a fiber-optic sensor; and

a compensation element for disturbance variables, wherein the compensation element for disturbance variables is connected to the lever arm, and wherein the compensation element for disturbance variables is connected to the frame, and wherein the compensation element includes a fiber mount provided separately from the lever arm, the optical fiber being connected to said fiber mount,

wherein the respective frames of the at least two devices are mutually connected.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE TYPOGRAPHICAL ERROR IN STRRET ADDRESS OF ASSIGNEE-SHOULD BE "INDUSTRIVEJ" NOT "INDUSTRIEVEJ" PREVIOUSLY RECORDED AT REEL: 064897 FRAME: 0939. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 5, 2023
From: FOS4X GMBH
To: VC VIII POLYTECH HOLDING APS
Reel/Frame 065578/0741 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2023
From: FOS4X GMBH
To: VC VIII POLYTECH HOLDING APS
Reel/Frame 064897/0939 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2019
From: KIENITZ, SASCHA; SCHMID, MARKUS; MAI, MANUEL
To: FOS4X GMBH
Reel/Frame 049779/0184 →
Priority Claims (1)
DE 10 2016 125 612.9 · Dec 23, 2016 · national
Continuity (1)
Related Publication 20200233008A1 · Jul 23, 2020