IL194864A

Pendulous accelerometer with balanced gas damping

Abstract

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Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

20 claims: 5 independent, 15 dependent

  1. 1
    / What is claimed is:) 1? TTpeSdulous accelerometer comprising: a) a substrate having a substantially planar upper surface;5 b) a sensing plate having a central anchor portion supported on the upper surface of the substrate to define a hinge axis, the sensing plate including a solid proof mass on a first side of the central anchor portion and a substantially hollow proof mass on a second side of the central anchor portion, the solid proof mass having a first lower surface with a first electrode element thereon, and the substantially hollow proof mass 10 having a second lower surface with a second electrode element thereon, wherein the sensing plate is mounted to rotate about the hinge axis relative to the upper surface of the substrate in response to an acceleration of the proof masses;c) a first electrode section positioned on the upper surface of the substrate beneath the solid proof mass to interact with the electrode element on the lower 15 surface of the solid proof mass;and d) a second electrode section positioned on the upper surface of the substrate beneath the hollow proof mass to interact with the electrode element on the lower surface of the hollow proof mass.
  2. 16
    A pendulous accelerometer for operating in an open-loop mode, the accelerometer comprising:a) a substrate having a substantially planar upper surface;b) a sensing plate having a central anchor portion supported on the upper surface 5 of the substrate to define a hinge axis, the sensing plate defining a solid proof mass on a first side of the central anchor portion and a substantially hollow proof mass on a second side of the central anchor portion, the solid proof mass having a first lower surface with a first electrode element thereon, and the substantially hollow proof mass having a second lower surface with a second electrode element thereon, wherein the 10 sensing plate is mounted to rotate about the hinge axis relative to the upper surface of the substrate in response to an acceleration of the proof masses;c) a first electrode section positioned on the upper surface of the substrate beneath the solid proof mass to interact with the electrode element on the lower surface of the solid proof mass;and 15 d) a second electrode section positioned on the upper surface of the substrate beneath the hollow proof mass to interact with the electrode element on the lower surface of the hollow proof mass, e) wherein the sensing plate is displaced from a reference position, the sensing plate being substantially parallel to the substrate in the reference position, and 20 f) wherein a differential capacitive output signal is produced that is proportional to the magnitude of the displacement of the sensing plate from the reference position. 16
  3. 18
    A pendulous accelerometer for operating in a closed-loop mode, the accelerometer 5 comprising:a) a substrate having a substantially planar upper surface;b) a sensing plate having a central anchor portion supported on the upper surface of the substrate to define a hinge axis, the sensing plate defining a solid proof mass on a first side of the central anchor portion and a substantially hollow proof mass on a 10 second side of the central anchor portion, the solid proof mass having a first lower surface with a first electrode element thereon, and the substantially hollow proof mass having a second lower surface with a second electrode element thereon, wherein the sensing plate is mounted to rotate about the hinge axis relative to the upper surface of the substrate in response to an acceleration of the proof masses;15 c) a first electrode section positioned on the upper surface of the substrate beneath the solid proof mass to interact with the electrode element on the lower surface of the solid proof mass, wherein the first electrode section comprises a first sensing electrode and a first feedback electrode;and d) a second electrode section positioned on the upper surface of the substrate 20 beneath the hollow proof mass to interact with the electrode element on the lower surface of the hollow proof mass wherein the second electrode section comprises a second sensing electrode and a second feedback electrode, 17 e) wherein the first and second feedback electrodes electrostatically balance the sensing plate to maintain the sensing plate in a reference position that is substantially parallel to the upper surface of the substrate, and f) wherein an electronic output signal is produced that is proportional to a force 5 exerted by the feedback electrodes to maintain the sensing plate in the reference position.
  4. 19
    The invention according to any of claims 1-18, and substantially as shown and described hereinabove in conjunction with any of Figs. 1-4.
  5. 20
    The invention according to any of claims 1-18, and substantially as shown in any of Figs. 1-4 For the Applicant, JMB, Fa©tor Co. ROSE 90177/9.2 18 crayon , crnxan rwzn ατα pnow pnszn irn πτ “|»ob ,ρνο ηχζοπ ίώοώπε nizma π^πίώώ πρ’ΐοζ .□Oswan tto rnirnn pmi1? oxnm □ιηπη pv v-~^3? SB0*4*3 12 Νου 2)0311 :®41 4Q2:CD 'id··» · ·· .(mcna nzrnn) craswan nwa