Bulk acoustic wave accelerometers
First Claim
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1. An accelerometer for measuring motion, the accelerometer-comprising:
- a substrate defining a plane of an x-axis and a y-axis;
a proof mass suspended above the substrate by a suspension system, the suspension system comprising;
at least one first suspension member configured to allow motion of the proof mass along a z-axis;
at least one second suspension member configured to allow motion of the proof mass along the x-axis and the y-axis, the at least one second suspension member being mechanically connected to the at least one first suspension member, wherein the at least one second suspension member is suspended from the at least one first suspension member; and
at least one electrode to capacitively sense motion of the proof mass, the at least one electrode being separated from the proof mass by no more than about 200 nm,wherein the at least one first suspension member comprises at least four first suspension members, and the at least one second suspension member comprises at least four second suspension members that are each mechanically connected to a respective one of the at least four first suspension members.
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Abstract
Accelerometers and associated techniques for detecting motion are described. For a resonant accelerometer, an externally-applied acceleration can cause a change in the electrical spring constant Ke of the electromechanical system. A resonant accelerometer can be driven to resonate in a bulk acoustic wave mode of vibration, which can have a high resonant frequency. Other accelerometers and associated techniques are disclosed.
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Citations
8 Claims
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1. An accelerometer for measuring motion, the accelerometer-comprising:
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a substrate defining a plane of an x-axis and a y-axis; a proof mass suspended above the substrate by a suspension system, the suspension system comprising; at least one first suspension member configured to allow motion of the proof mass along a z-axis; at least one second suspension member configured to allow motion of the proof mass along the x-axis and the y-axis, the at least one second suspension member being mechanically connected to the at least one first suspension member, wherein the at least one second suspension member is suspended from the at least one first suspension member; and at least one electrode to capacitively sense motion of the proof mass, the at least one electrode being separated from the proof mass by no more than about 200 nm, wherein the at least one first suspension member comprises at least four first suspension members, and the at least one second suspension member comprises at least four second suspension members that are each mechanically connected to a respective one of the at least four first suspension members. - View Dependent Claims (2, 3, 4)
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5. An accelerometer for measuring motion, the accelerometer comprising:
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a substrate defining a plane of an x-axis and a y-axis; a proof mass suspended above the substrate by a suspension system, the suspension system comprising; at least one first suspension member configured to allow motion of the proof mass along a z-axis; and at least one second suspension member configured to allow motion of the proof mass along the x-axis and the y-axis, the at least one second suspension member being mechanically connected to the at least one first suspension member, wherein the at least one second suspension member is suspended from the at least one first suspension member wherein the at least one first suspension member comprises at least four first suspension members, and the at least one second suspension member comprises at least four second suspension members that are each mechanically connected to a respective one of the at least four first suspension members. - View Dependent Claims (6, 7, 8)
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Specification