IP Library Granted Patent US 9,692,286
Granted Patent B2
US 9,692,286 · App. 13/954,777 · Granted Jun 27, 2017

Vibration actuator

Inventors: Masaya Endo (Tokyo, JP); Yoshihide Tonogai (Tokyo, JP)
Assignee: NIDEC COPAL CORPORATION
H02K33/18H02K33/16
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 9,692,286
App. No.
13/954,777
Granted
Jun 27, 2017
Kind
B2
Abstract

A first weight portion of a vibration actuator includes an inner-side enlarged portion that protrudes from an end portion of a solid head in a direction of a vibration axis and that is inserted into an opening portion extending within a first compression coil spring along the direction of the vibration axis. An outer peripheral surface of the inner-side enlarged portion becomes continuously smaller in diameter from a base end towards a free end, with the vibration axis being the center of the diameter. That is, the inner-side enlarged portion has the shape of a truncated cone. The inner-side enlarged portion is inserted into the opening portion of the first compression coil spring and the opening portion is utilized to change the length of the inner-side enlarged portion in the direction of the vibration axis, thereby changing the mass of the first weight portion.

Claims (29)

1. A vibration actuator in which a magnet vibrates linearly in a housing along a vibration axis as a result of cooperation of a coil and the magnet, the vibration actuator comprising:

the housing;

the coil that is disposed in the housing;

the magnet that is surrounded by the coil;

a first weight portion that vibrates together with the magnet along the vibration axis, the first weight portion including a first weight body portion and a first inner-side enlarged portion, the first weight body portion being urged by a first compression coil spring disposed along the vibration axis, the first inner-side enlarged portion having a conical outer peripheral surface, protruding from the first weight body portion in a direction of the vibration axis, and being inserted into an opening portion extending uninterrupted within the first compression coil spring along the direction of the vibration axis to the housing,

wherein the conical outer peripheral surface of the first inner-side enlarged portion becomes continuously smaller in diameter from a base end towards a free end, the vibration axis being a center of the diameter; and

a second weight portion that vibrates together with the magnet alone the vibration axis, the second weight portion including:

a second weight body portion being urged by a second compression coil spring disposed along the vibration axis; and

a second inner-side enlarged portion having an outer peripheral surface, protruding from the second weight body portion in a direction of the vibration axis, and being inserted into an opening portion extending within the second compression coil spring along the direction of the vibration axis,

wherein the outer peripheral surface of the second inner-side enlarged portion becomes smaller in diameter from a base end towards a free end, the vibration axis being a center of the diameter.

2. The vibration actuator according to claim 1 , wherein the first weight portion further includes an outer-side enlarged portion that protrudes from the weight body portion at an outer side of the compression coil spring in the direction of the vibration axis.

3. A vibration actuator in which a magnet vibrates linearly in a housing along a vibration axis as a result of cooperation of a coil and the magnet, the vibration actuator comprising:

the housing;

the coil that is disposed in the housing;

the magnet that is surrounded by the coil; and

a weight that vibrates together with magnet along the vibration axis, the weight comprising:

a weight body portion urged by a compression coil spring disposed along the vibration axis;

an inner-side enlarged portion having a conical outer peripheral surface, protruding from the weigh body portion in a direction of the vibration axis, and being inserted into an opening portion extending uninterrupted within the compression coil spring along the direction of the vibration axis to the housing; and

an outer-side enlarged portion that protrudes from the weight body portion at an outer side of the compression coil spring in the direction of the vibration axis,

wherein the outer peripheral surface of the inner-side enlarged portion becomes continuously smaller in diameter from a base end towards a free end as a first step,

wherein the outer peripheral surface of the inner-side enlarged portion maintains the smaller diameter from the first sep to the free end,

wherein the vibration axis being a center of the diameter, and

wherein the outer-side enlarged portion has an inner peripheral surface that becomes larger in diameter from a base end towards a free end, the vibration axis being a center of the diameter, the inner peripheral surface facing the compression coil spring.

4. A vibration actuator in which a magnet vibrates linearly in a housing along a vibration axis as a result of cooperation of a coil and the magnet, the vibration actuator comprising:

the housing;

the coil that is disposed in the housing;

the magnet that is surrounded by the coil; and

a weight that vibrates together with the magnet along the vibration axis, the weight including a weight body portion and an inner-side enlarged portion, the weight body portion being urged by a compression coil spring disposed along the vibration axis, the inner-side enlarged portion having an outer peripheral surface, protruding from the weight body portion in a direction of the vibration axis, and being inserted into an opening portion extending uninterrupted within the compression coil spring along the direction of the vibration axis,

wherein the outer peripheral surface of the inner-side enlarged portion is progressively smaller in diameter in a plurality of steps from a base end towards a free end, the vibration axis being a center of the diameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2013
From: ENDO, MASAYA; TONOGAI, YOSHIHIDE
To: NIDEC COPAL CORPORATION
Reel/Frame 030918/0264 →
Priority Claims (1)
JP 2012-170333 · Jul 31, 2012 · national
Continuity (1)
Related Publication 20140035397A1 · Feb 6, 2014