IP Library Granted Patent US 11,125,632
Granted Patent B2
US 11,125,632 · App. 15/248,756 · Granted Sep 21, 2021

Piezoresistive detection resonant device in particular with large vibration amplitude

Inventors: Patrice Rey (St Jean de Moirans, FR); Guillaume Jourdan (Grenoble, FR); Philippe Robert (Grenoble, FR); Giacomo Langfelder (Milan, IT); Antonio F Longoni (Milan, IT); Stefano Dellea (Milan, IT)
Assignees: Commissariat a L'Energie Atomique et aux Energies Alternatives; POLITECNICO DI MILANO
G01L1/183G01C19/5607G01C19/5755G01P15/123B81B7/0016G01P2015/0814G01P2015/0817G01P2015/0857
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Quick Facts
Patent No.
US 11,125,632
App. No.
15/248,756
Granted
Sep 21, 2021
Kind
B2
Abstract

Piezoresistive detection resonant device comprising a substrate, a mobile par configured to move with respect the substrate, suspension elements suspending the mobile part to the substrate, a piezoresistive detection device to detect the motions of the mobile part, said piezoresistive detection device comprising at least one strain gauge, wherein the piezoresistive detection resonant device also comprises a folded spring with at least two spring arms, connected to the mobile part and configured to be deformed by the motion of the mobile part, the at least one gauge being suspended between the substrate and the folded spring in such manner that the deformation of the gauge is reduced compared to the motion of the mobile part.

Claims (20)

1. A piezoresistive detection resonant device comprising:

a substrate,

a mobile part configured to move with respect to the substrate,

at least one suspension element directly connected to the mobile part, directly connected to the substrate, and suspending the mobile part from the substrate,

a piezoresistive detection device to detect motion of the mobile part,

said piezoresistive detection device comprising

at least one strain gauge,

at least one first spring connected to the mobile part and configured to be deformed by the motion of the mobile part, the at least one first spring comprising a folded spring having n spring arms, n≥1, and

a rigid beam extending longitudinally in a first direction and connected to the at least one strain gauge and the at least one first spring, a longest side of the rigid beam extending in the first direction, wherein

in response to a component of motion of the mobile part in a second direction perpendicular to the longest side of the rigid beam, said at least one first spring is configured to deform and, during the deformation, cause rotation of the rigid beam around an axis,

wherein the at least one strain gauge is directly connected to the rigid beam and to the substrate and the at least one first spring is directly connected to the rigid beam.

2. The piezoresistive detection resonant device according to claim 1 , wherein the at least one strain gauge is directly connected to the substrate.

3. The piezoresistive detection resonant device according to claim 1 , wherein the mobile part is configured to move in a plane of the piezoresistive detection resonant device, the rigid beam being configured to rotate in a direction perpendicular to the plane of the piezoresistive detection resonant device.

4. The piezoresistive detection resonant device according to claim 3 , comprising at least one second spring connected to the rigid beam and to the substrate, the at least one second spring limiting out-of-plane motions of the rigid beam.

5. The piezoresistive detection resonant device according to claim 1 , comprising at least two strain gauges connected in such manner that a differential measurement of the motion of the mobile part is obtained.

6. The piezoresistive detection resonant device according to claim 1 , comprising at least one actuator for actuating the mobile part.

7. The piezoresistive detection resonant device according to claim 6 , the at least one actuator comprises an electrostatic actuator, a thermal actuator, a magnetic actuator or a piezoresistive actuator.

8. An accelerometer comprising at least one piezoresistive detection resonant device according to claim 1 .

9. A gyrometer comprising at least one piezoresistive detection resonant device according to claim 1 .

10. The piezoresistive detection resonant device according to claim 1 , wherein the at least one strain gauge is directly connected to a first end of the rigid beam in the first direction and the at least one first spring is directly connected to a second end of the rigid beam opposite to the first end in the first direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2017
From: REY, PATRICE; JOURDAN, GUILLAUME; ROBERT, PHILIPPE; LANGFELDER, GIACOMO; LONGONI, ANTONIO F; DELLEA, STEFANO
To: COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES; POLITECNICO DI MILANO
Reel/Frame 041378/0359 →
Priority Claims (1)
EP 15306336 · Aug 31, 2015 · regional
Continuity (1)
Related Publication 20170059420A1 · Mar 2, 2017
Cited By (1)
US 12,674,816