Inertial sensor
An inertial sensor includes a resonator, a mounting board, and an actuator. The resonator has a first drive mode and a second drive mode. The mounting board has a plurality of electrode portions arranged at a distance from each other and surrounding the resonator. The actuator is configured to vibrate in a z-axis direction. The z-axis direction is a direction orthogonal to a planar direction of the mounting board. The actuator is further configured to vibrate the resonator in the z-axis direction to cause a resonance mode.
1 . An inertial sensor comprising:
a resonator having a first drive mode and a second drive mode;
a mounting board having a plurality of electrode portions arranged at a distance from each other and surrounding the resonator; and
an actuator configured to vibrate in a z-axis direction, the z-axis direction being a direction orthogonal to a planar direction of the mounting board, wherein
the actuator is further configured to vibrate the resonator in the z-axis direction to cause a resonance mode.
2 . The inertial sensor according to claim 1 , wherein
the actuator is further configured to vibrate the resonator at a resonance frequency that excites the first drive mode or the second drive mode.
3 . The inertial sensor according to claim 2 , wherein
the mounting board has one surface facing the resonator and an opposite surface that is opposite to the one surface, and
the actuator is disposed on the opposite surface of the mounting board.
4 . The inertial sensor according to claim 2 , wherein
the actuator is disposed between the resonator and the mounting board.
5 . The inertial sensor according to claim 2 , wherein
the actuator is configured as a part of the mounting board.
6 . The inertial sensor according to claim 2 , further comprising:
a housing accommodating the resonator and the mounting board and having an opening portion; and
a lid member closing the opening portion of the housing, wherein
the actuator is disposed at a position in contact with a part of a package constituted by the housing and the lid member.
7 . The inertial sensor according to claim 1 , wherein
the resonator has a two-dimensional symmetric structure having a circular shape or an annular shape.
8 . The inertial sensor according to claim 1 , wherein
the resonator has a three-dimensional symmetric structure including a curved surface portion and a connection portion,
the curved surface portion has a three-dimensional curved surface having a hemispherical shape, and
the connection portion extends from the curved surface portion toward a center of the hemispherical shape.