Resonator and resonance device
A vibration member is provided that includes a base with front and rear ends opposite to each other, and vibration arms fixed to the front end, extending away therefrom, and including at least one first vibration arm and a pair of second vibration arms positioned on both sides of a first vibration arm group including the at least one first vibration arm in a direction intersecting a longitudinal direction. A holding arm is provided that has one end connected to the base and the other end connected to a frame. A plurality of vibration portions include a piezoelectric film, and a lower electrode and an upper electrode that sandwich the piezoelectric film. A connection wiring line that connects the respective upper electrodes of the pair of second vibration arms to each other is provided in a region of at least either of the base or the holding arm.
1 . A resonator, comprising:
a vibration member that includes a base having a front end and a rear end that oppose each other and a plurality of vibration arms that extend from the front end of the base and include at least one first vibration arm and a pair of second vibration arms disposed on both sides of the at least one first vibration arm;
a frame disposed in at least part of a periphery of the vibration member; and
a holding arm having a first end connected to the base and a second end connected to the frame,
wherein the plurality of vibration arms each include a piezoelectric film, and a lower electrode and an upper electrode that face each other sandwiching the piezoelectric film,
wherein the upper electrode comprises a metal layer having a first region that extends from a tip end of a first arm of the pair of second vibration arms, a second region that extends from a tip end of a second arm of the pair of second vibration arms, and a third region that extends from a tip end of the at least one first vibration arm,
wherein the plurality of vibration arms, the base, and the holding arm each have a movable region configured to vibrate in a predetermined vibration mode,
wherein a connection wiring line connects the first region of the metal layer to the second region of the metal layer, with the connection wiring line disposed in the movable region of at least one of the base and the holding arm, and
wherein an insulation layer is disposed on the third region of the metal layer to electrically insulate the third region from each of the first and second regions of the metal layer.
2 . The resonator according to claim 1 , wherein the connection wiring line is disposed on the insulation layer that is laminated on the upper electrode of the at least one first vibration arm.
3 . The resonator according to claim 1 ,
wherein the holding arm includes two connection portions that are connected to the base, and
wherein the connection wiring line is disposed at a position adjacent to the two connection portions.
4 . The resonator according to claim 1 ,
wherein the holding arm includes three or more connection portions connected to the base, and
wherein the connection wiring line is disposed at a position adjacent to the three or more connection portions.
5 . The resonator according to claim 1 , wherein a first clearance is disposed between the first region and the third region and a second clearance is disposed between the second region and the third region.
6 . The resonator according to claim 5 , wherein a recess is provided in an end surface of the third region to route a wiring line from a frame to at least the first region.
7 . The resonator according to claim 1 , wherein the insulation layer is sandwiched between the connection wiring line and the third region of the metal layer.
8 . A resonance device comprising:
the resonator according to claim 1 ;
an upper lid and a lower lid disposed to face each other and sandwich the resonator; and
an outer electrode configured to apply a voltage to the upper and lower electrodes.
9 . The resonator according to claim 1 , wherein the connection wiring line extends in a lengthwise direction of the base of the vibration member and overlaps the vibration member in a plan view thereof.
10 . A resonator, comprising:
a vibration member that includes a base and a plurality of vibration arms that extend in parallel from a side of the base, with plurality of vibration arms including at least one inner vibration arm and a pair of outer vibration arms disposed on respective sides of the at least one inner vibration arm;
a frame disposed around at least part of a periphery of the vibration member;
a connection wiring line; and
a holding arm that connects the base to the frame,
wherein the plurality of vibration arms each include a piezoelectric film, and lower and upper electrodes that sandwich the piezoelectric film,
wherein the plurality of vibration arms, the base, and the holding arm each have a movable region configured to vibrate in a predetermined vibration mode,
wherein the upper electrode comprises a metal layer having a first region that extends from a tip end of a first outer arm of the pair of outer vibration arms, a second region that extends from a tip end of a second outer arm of the pair of outer vibration arms, and a third region that extends from a tip end of the at least one inner vibration arm,
wherein the connection wiring line connects the first region of the metal layer to the second region of the metal layer, with the connection wiring line disposed in the movable region of at least one of the base and the holding arm, and
wherein an insulation layer is disposed on the third region of the metal layer to electrically insulate the third region from each of the first and second regions of the metal layer.
11 . The resonator according to claim 10 , wherein the insulation layer is sandwiched between the connection wiring line and the third region of the metal layer.
12 . The resonator according to claim 10 , wherein the connection wiring line extends in a lengthwise direction of the base of the vibration member and overlaps the vibration member in a plan view thereof.