IP Library Granted Patent US 12665462
Granted Patent B2
US 12665462 · App. 18/776,778 · Granted Jun 23, 2026

Vibration generating device, and production method therefor

Inventors: Takayuki Suizu (Miyagi, JP); Masaaki Mikawa (Miyagi, JP); Takahiro Umezu (Miyagi, JP); Takayuki Mizuhashi (Fukushima, JP); Ryota Suzuki (Miyagi, JP); Yuki Ikezoe (Miyagi, JP); Kazuhiro Takahashi (Miyagi, JP)
Assignee: ALPS ALPINE CO., LTD.
H02K5/04H02K15/14H02K33/02
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12665462
App. No.
18/776,778
Granted
Jun 23, 2026
Kind
B2
Abstract

A vibration generating device includes a housing; a movable body housed in the housing; a support configured to support the movable body so as to be vibratable; a bracket that includes a main plate and an attachment plate extending from the main plate, and is attached to the housing via the attachment plate; a coil attached to the main plate; and a permanent magnet attached to the movable body and configured to generate a magnetic flux toward the coil.

Claims (48)

1 . A vibration generating device, comprising:

a housing;

a movable body housed in the housing;

a support configured to support the movable body so as to be vibratable;

a bracket that includes a main plate and an attachment plate extending from the main plate, and is attached to the housing via the attachment plate;

a coil attached to the main plate; and

a permanent magnet attached to the movable body and configured to generate a magnetic flux toward the coil, wherein

the housing includes

a bottom plate,

a side plate perpendicular to the bottom plate, and

an attachment plate support configured to support the attachment plate of the bracket,

the side plate includes

a beam plate provided so as to face the attachment plate support in a plate thickness direction of the main plate of the bracket,

the attachment plate is disposed such that a plate thickness direction of the beam plate that is a part of the side plate crosses the plate thickness direction of the main plate of the bracket, and

the attachment plate is held between the attachment plate support and the beam plate.

2 . The vibration generating device according to claim 1 , wherein

the bracket is formed of a metal material having a melting point lower than a melting point of a metal material forming the housing.

3 . The vibration generating device according to claim 2 , wherein

the bracket is formed of the metal material having a strength lower than a strength of the metal material forming the housing.

4 . The vibration generating device according to claim 1 , wherein

the bracket is configured to generate an eddy current by the magnetic flux generated from the permanent magnet with the movable body vibrating, thereby reducing acceleration of the movable body.

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

the housing includes a base member, and

the base member includes

a bottom plate,

a bent portion,

an upright plate extending upward from the bottom plate via the bent portion, and

the attachment plate support provided at an upper portion of the upright plate.

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

the attachment plate in the bracket is a plurality of attachment plates,

the beam plate is a plurality of beam plates,

the attachment plate support is a plurality of attachment plate supports, and

one of the attachment plates is supported at three points by one of the beam plates and by one of the attachment plate supports.

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

the beam plate includes

an upper contact that projects toward the attachment plate in a direction perpendicular to the attachment plate and contacts an upper surface of the attachment plate,

the attachment plate support includes

a lower contact that projects toward the attachment plate in the direction perpendicular to the attachment plate and contacts a lower surface of the attachment plate, and

a distance between the upper contact and the lower contact in the direction perpendicular to the attachment plate is smaller than a plate thickness of the attachment plate.

8 . The vibration generating device according to claim 1 , wherein

the attachment plate support includes a projection that projects toward the attachment plate in a direction perpendicular to the attachment plate and that is inserted into a through-hole formed in the attachment plate.

9 . The vibration generating device according to claim 5 , wherein

a reinforcing recess is formed at the upright plate.

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

the beam plate is formed in a cantilever form.

11 . A production method for a vibration generating device that includes a housing, a movable body housed in the housing, a support configured to support the movable body so as to be vibratable, a bracket that includes a main plate and an attachment plate extending from the main plate, and is attached to the housing via the attachment plate, a coil attached to the main plate, and a permanent magnet attached to the movable body and configured to generate a magnetic flux toward the coil, the housing including a bottom plate, a side plate perpendicular to the bottom plate, and an attachment plate support configured to support the attachment plate of the bracket, the side plate including a beam plate provided so as to face the attachment plate support, the attachment plate being disposed such that a plate thickness direction of the beam plate that is a part of the side plate crosses a plate thickness direction of the main plate of the bracket, and the attachment plate being held between the attachment plate support and the beam plate, the production method comprising:

housing the bracket in the housing in a state in which the beam plate is bent outward of the side plate; and

pushing the beam plate inward of the side plate, thereby contacting the beam plate with an upper surface of the attachment plate.