Physical quantity sensor and inertial measurement unit
A physical quantity sensor includes a fixed portion, a support beam, a movable body, a first fixed electrode portion, and a second fixed electrode portion. The movable body includes a first coupling portion, a first base portion, a first movable electrode portion, a second coupling portion, a second base portion, and a second movable electrode portion. The first base portion is coupled to the first coupling portion. A first movable electrode of the first movable electrode portion extends from the first base portion in a first direction, and faces a first fixed electrode of the first fixed electrode portion in a second direction. The second base portion is coupled to the second coupling portion. A second movable electrode of the second movable electrode portion extends from the second base portion in the first direction, and faces a second fixed electrode of the second fixed electrode portion in the second direction.
1 . A physical quantity sensor that detects, when three directions orthogonal to one another are defined as a first direction, a second direction, and a third direction, a physical quantity in the third direction, the physical quantity sensor comprising:
a fixed portion fixed at a substrate;
a support beam having one end coupled to the fixed portion and provided along the second direction;
a movable body coupled to the other end of the support beam; and
a first fixed electrode portion and a second fixed electrode portion which are provided at the substrate, wherein
the movable body includes
a first coupling portion coupled to the other end of the support beam and extending from the support beam in the first direction,
a first base portion coupled to the first coupling portion and provided along the second direction,
a first movable electrode portion including a first movable electrode, the first movable electrode extending from the first base portion in the first direction and facing a first fixed electrode of the first fixed electrode portion in the second direction,
a second coupling portion coupled to the other end of the support beam and extending from the support beam in a fourth direction opposite to the first direction,
a second base portion coupled to the second coupling portion and provided along the second direction,
a second movable electrode portion including a second movable electrode, the second movable electrode extending from the second base portion in the first direction and facing a second fixed electrode of the second fixed electrode portion in the second direction, and
a third fixed electrode portion and a fourth fixed electrode portion which are provided at the substrate,
wherein
the first movable electrode portion and the second movable electrode portion are provided at symmetrical positions in the first direction with respect to the support beam, and
the movable body further includes
a third base portion coupled to the first coupling portion and provided along the second direction,
a third movable electrode portion including a third movable electrode, the third movable electrode extending from the third base portion in the fourth direction and facing a third fixed electrode of the third fixed electrode portion in the second direction,
a fourth base portion coupled to the second coupling portion and provided along the second direction, and
a fourth movable electrode portion including a fourth movable electrode, the fourth movable electrode extending from the fourth base portion in the fourth direction and facing a fourth fixed electrode of the fourth fixed electrode portion in the second direction.
2 . The physical quantity sensor according to claim 1 , wherein
the third movable electrode portion and the fourth movable electrode portion are provided at symmetrical positions in the first direction with respect to the support beam.
3 . The physical quantity sensor according to claim 1 , wherein
a thickness of the first movable electrode of the first movable electrode portion in the third direction is different from a thickness of the first fixed electrode of the first fixed electrode portion in the third direction, and
a thickness of the second movable electrode of the second movable electrode portion in the third direction is different from a thickness of the second fixed electrode of the second fixed electrode portion in the third direction.
4 . The physical quantity sensor according to claim 1 , wherein
a thickness of the first movable electrode of the first movable electrode portion in the third direction is larger than a thickness of the first fixed electrode of the first fixed electrode portion in the third direction, and
a thickness of the second movable electrode of the second movable electrode portion in the third direction is larger than a thickness of the second fixed electrode of the second fixed electrode portion in the third direction.
5 . The physical quantity sensor according to claim 1 , wherein
a thickness of the first movable electrode of the first movable electrode portion in the third direction is smaller than a thickness of the first fixed electrode of the first fixed electrode portion in the third direction, and
a thickness of the second movable electrode of the second movable electrode portion in the third direction is smaller than a thickness of the second fixed electrode of the second fixed electrode portion in the third direction.
6 . The physical quantity sensor according to claim 1 , wherein
positions of back surfaces of the first movable electrode portion and the first fixed electrode portion in the third direction coincide with each other, and
positions of back surfaces of the second movable electrode portion and the second fixed electrode portion in the third direction coincide with each other.
7 . The physical quantity sensor according to claim 1 , wherein
in a stationary state,
a position of an end in the third direction of the first fixed electrode of the first fixed electrode portion is different from a position of an end in the third direction of the first movable electrode of the first movable electrode portion,
a position of an end in a fifth direction of the first fixed electrode of the first fixed electrode portion is different from a position of an end in the fifth direction of the first movable electrode of the first movable electrode portion, the fifth direction being opposite to the third direction,
a position of an end in the third direction of the second fixed electrode of the second fixed electrode portion is different from a position of an end in the third direction of the second movable electrode of the second movable electrode portion, and
a position of an end in the fifth direction of the second fixed electrode of the second fixed electrode portion is different from a position of an end in the fifth direction of the second movable electrode of the second movable electrode portion.
8 . The physical quantity sensor according to claim 1 , wherein
the support beam is a torsion spring configured to be twisted with the second direction as a rotation axis.
9 . An inertial measurement unit comprising:
the physical quantity sensor according to claim 1 ; and
a control unit configured to perform control based on a detection signal output from the physical quantity sensor.