IP Library Granted Patent US 12699310
Granted Patent B2
US 12699310 · App. 18/175,611 · Granted Aug 4, 2026

Vibration generation device, vibration reduction device, and electronic apparatus

Inventors: Shinichi Wakabayashi (Suwa, JP); Tatsuya Takahashi (Azumino, JP)
Assignee: SEIKO EPSON CORPORATION
G03B21/142H02K33/18
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Quick Facts
Patent No.
US 12699310
App. No.
18/175,611
Granted
Aug 4, 2026
Kind
B2
Abstract

A vibration generation device includes: a base configured to transmit vibration to an object; a pendulum supported by the base swingably around a rotation axis; a first induction unit including a magnet, provided at an opposite-side end portion of the pendulum from the rotation axis, and configured to induce swing of the pendulum; and a first driving unit including a coil and configured to apply a driving force to the pendulum. The coil of the first driving unit faces the magnet of the first induction unit in a non-contact manner.

Claims (77)

1 . A vibration generation device comprising:

a base configured to transmit vibration to an object;

a pendulum supported by the base swingably around a rotation axis;

a first induction unit including a magnet, provided at an opposite-side end portion of the pendulum from the rotation axis, and configured to induce swing of the pendulum; and

a first driving unit including a coil and configured to apply a driving force to the pendulum, wherein

the coil of the first driving unit faces the magnet of the first induction unit in a non-contact manner;

the first driving unit includes a first coil and a second coil as the coil of the first driving unit,

the second coil is disposed in parallel with the first coil in a direction along the rotation axis, and

the magnet of the first induction unit faces the first coil and the second coil in a non-contact manner.

2 . The vibration generation device according to claim 1 , further comprising:

a control unit configured to alternately switch a direction of a current flowing through the coil of the first driving unit.

3 . The vibration generation device according to claim 1 , further comprising:

a yoke disposed in at least one of a position on an opposite side of the coil of the first driving unit from the rotation axis and a position on a rotation axis side of the magnet of the first induction unit.

4 . The vibration generation device according to claim 3 , wherein

the yoke includes a first yoke provided at the position on the opposite side of the coil of the first driving unit from the rotation axis, and

the first yoke is a holding member provided at the base and holding the coil of the first driving unit.

5 . The vibration generation device according to claim 1 , wherein

a center of gravity of the pendulum is located closer to the first driving unit side than is an intermediate position between the rotation axis and an end portion of the pendulum on the first driving unit side.

6 . The vibration generation device according to claim 1 , wherein

the pendulum includes a disposition portion, at which a weight portion is disposed, at a position separated from the rotation axis toward the first driving unit side.

7 . The vibration generation device according to claim 1 , wherein

the coil of the first driving unit is an air-core coil having a longitudinal axis, and

the magnet of the first induction unit is disposed to face the coil of the first driving unit along the longitudinal axis.

8 . The vibration generation device according to claim 7 , wherein

the coil of the first driving unit includes

a first extending portion extending along the longitudinal axis, and

a second extending portion that extends along the longitudinal axis and through which a current flows in a direction opposite from that of the first extending portion, and

a magnetic pole of a surface of the magnet of the first induction unit facing the first extending portion is different from a magnetic pole of a surface of the magnet of the first induction unit facing the second extending portion.

9 . The vibration generation device according to claim 8 , wherein

the magnet of the first induction unit includes

a first magnet member disposed to face the first extending portion, and

a second magnet member disposed to face the second extending portion and disposed to be separated from the first magnet member in a direction from the first extending portion toward the second extending portion, and

a magnetic pole of a surface of the first magnet member facing the first extending portion is different from a magnetic pole of a surface of the second magnet member facing the second extending portion.

10 . The vibration generation device according to claim 1 , wherein

the first induction unit includes a first magnet and a second magnet as the magnet of the first induction unit,

the first magnet is disposed to face the first coil, and

the second magnet is disposed to be separated from and in parallel with the first magnet in the direction along the rotation axis and is disposed to face the second coil.

11 . The vibration generation device according to claim 1 , further comprising:

a second induction unit; and

a second driving unit, wherein

the pendulum includes

a first arm extending from the rotation axis toward the first driving unit side, and

a second arm extending from the rotation axis toward an opposite side from the first arm,

the first induction unit is provided at an opposite-side end portion of the first arm from the rotation axis, and induces swing of the first arm,

the first driving unit applies a driving force to the first arm,

the second induction unit includes a magnet, is provided at an opposite-side end portion of the second arm from the rotation axis, and induces swing of the second arm,

the second driving unit includes a coil, faces the magnet of the second induction unit, and applies a driving force to the second arm, and

the coil of the second driving unit faces the magnet of the second induction unit in a non-contact manner.

12 . The vibration generation device according to claim 1 , wherein

the pendulum includes a plate member fixed to the base and constituting the rotation axis.

13 . The vibration generation device according to claim 1 , wherein

the base includes a relief portion configured to avoid contact with the pendulum.

14 . A vibration reduction device comprising:

the vibration generation device according to claim 1 ;

a detection unit configured to detect vibration; and

an operation control unit configured to cause the vibration generation device to generate vibration opposite in phase from the vibration detected by the detection unit.

15 . An electronic apparatus comprising:

the vibration reduction device according to claim 14 .

16 . The electronic apparatus according to claim 15 , further comprising:

a projection optical device configured to project an image, wherein

the vibration reduction device is attached to the projection optical device.

17 . A vibration generation device comprising:

a base configured to transmit vibration to an object;

a pendulum supported by the base swingably around a rotation axis, wherein the pendulum includes a first arm and a second arm;

a first induction unit including a magnet, provided at an opposite-side end portion of the first arm from the rotation axis, and configured to induce swing of the pendulum;

a second induction unit provided at an opposite-side end portion of the second arm from the rotation axis; and

a first driving unit including a coil and configured to apply a driving force to the pendulum, wherein

the coil of the first driving unit faces the magnet of the first induction unit in a non-contact manner;

the first arm of the pendulum extends from the rotation axis toward the first driving unit side, and

the second arm of the pendulum extends from the rotation axis toward an opposite side from the first arm.

18 . The vibration generation device according to claim 17 , further comprising:

a control unit configured to alternately switch a direction of a current flowing through the coil of the first driving unit.

19 . The vibration generation device according to claim 17 , further comprising:

a yoke disposed in at least one of a position on an opposite side of the coil of the first driving unit from the rotation axis and a position on a rotation axis side of the magnet of the first induction unit.

20 . The vibration generation device according to claim 19 , wherein

the yoke includes a first yoke provided at the position on the opposite side of the coil of the first driving unit from the rotation axis, and

the first yoke is a holding member provided at the base and holding the coil of the first driving unit.