IP Library Granted Patent US 8,400,514
Granted Patent B2
US 8,400,514 · App. 12/929,158 · Granted Mar 19, 2013

Antivibration actuator and lens unit and camera equipped with same

Inventor: Osamu Yagisawa (Saitama, JP)
Assignee: Tamron Co., Ltd.
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Quick Facts
Patent No.
US 8,400,514
App. No.
12/929,158
Granted
Mar 19, 2013
Kind
B2
Abstract

The present invention is an antivibration actuator including an affixing plate ( 12 ), a moving frame ( 14 ) to which an image stabilizing lens ( 16 ) is attached, and a drive means for generating drive force in a first direction and a second direction; the drive means is furnished with a drive magnet ( 22 ) and a first drive coil ( 20 a ) and second drive coil ( 20 b ) disposed on substantially the same plane so as to face that the drive magnet; a first magnetic boundary line (C 1 ) and a second magnetic boundary line (C 2 ) disposed to connect to the first magnetic boundary line are provided on the drive magnet, and when current flows, a first direction drive force is generated; the second drive coil is disposed to face the second magnetic boundary line, and when current flows, a second direction drive force is generated.

Claims (38)

1. An antivibration actuator for moving an image stabilizing lens within a plane perpendicular to the optical axis thereof, comprising:

a fixed portion;

a movable portion to which the image stabilizing lens is attached; and

drive means for generating drive force in a first direction and a second direction so that the movable portion is moved within a plane perpendicular to the optical axis of the image stabilizing lens;

the drive means including a single drive magnet disposed on one of either the fixed portion or the movable portion;

a first drive coil and second drive coil which are attached to the other of either the fixed portion or the movable portion and disposed on substantially a same plane; and

wherein the drive magnet is provided with a first magnetic boundary line and a second magnetic boundary line disposed to connect to the first magnetic boundary line;

wherein the first drive coil is disposed facing the first magnetic boundary line, and drive force is generated in the first direction when current flows therein; and

wherein the second drive coil is disposed facing the second magnetic boundary line, and drive force is generated in the second direction when current flows therein.

2. The antivibration actuator of claim 1 , wherein the first magnetic boundary line and the second magnetic boundary line are registered so that the image stabilizing lens is positioned within a region defined by their extension lines of the first and second magnetic boundary lines.

3. The antivibration actuator of claim 1 , wherein the first magnetic boundary line and the second magnetic boundary line are registered to form a substantially right angle, and the first drive coil and the second drive coil are respectively positioned to be line symmetrical with respect to a bisecting line of the right angle.

4. The antivibration actuator of claim 1 , wherein the first drive coil and the second drive coil are disposed in their entireties within a region formed by a first straight line extending from the optical axis of the image stabilizing lens parallel to the first magnetic boundary line, and a second straight line extending from the optical axis of the image stabilizing lens parallel to the second magnetic boundary line.

5. The antivibration actuator of claim 1 , wherein the first magnetic boundary line and the second magnetic boundary line are positioned so that a bisecting line of the first and second magnetic boundary lines and the optical axis of the image stabilizing lens intersect.

6. The antivibration actuator of claim 1 , wherein the drive magnet is formed in a shape which is substantially line symmetrical with respect to a bisecting line of the first and second magnetic boundary lines.

7. The antivibration actuator of claim 1 , wherein the first drive coil is formed in a shape substantially line symmetrical with respect to a straight line intersecting the first magnetic boundary line at a right angle; and

the second drive coil is formed in a shape substantially line symmetrical with respect to a straight line intersecting the second magnetic boundary line at a right angle.

8. The antivibration actuator of claim 1 , further comprising a first magnetic sensor and a second magnetic sensor for respectively detecting displacement of the movable portion in the first direction and the second direction by detecting the magnetism of the drive magnet;

wherein the first magnetic sensor is disposed inside the first drive coil winding, and the second magnetic sensor is disposed inside the second drive coil winding.

9. A lens unit, comprising:

a lens barrel;

an image capturing lens disposed within the lens barrel; and

the antivibration actuator of claim 1 , attached to the lens barrel.

10. A camera, comprising:

the lens unit of claim 9 ; and

a camera body to which the lens unit is attached.

11. An antivibration actuator for moving an image stabilizing lens within a plane perpendicular to the optical axis thereof, comprising:

a fixed portion;

a movable portion to which the image stabilizing lens is attached; and

drive means for generating drive force in a first direction and a second direction so that the movable portion is moved within a plane perpendicular to the optical axis of the image stabilizing lens;

the drive means including a drive magnet disposed on one of either the fixed portion or the movable portion;

a first drive coil and second drive coil which are attached to the other of either the fixed portion or the movable portion and disposed on substantially a same plane; and

wherein the drive magnet is provided with a first magnetic boundary line and a second magnetic boundary line disposed to connect to the first magnetic boundary line;

wherein the first drive coil is disposed facing the first magnetic boundary line, and drive force is generated in the first direction when current flows therein;

wherein the second drive coil is disposed facing the second magnetic boundary line, and drive force is generated in the second direction when current flows therein;

wherein the first drive coil is constituted to have a side substantially parallel to the first magnetic boundary line, and a side arrayed along a bisecting line of the first and second magnetic boundary lines; and

the second drive coil is constituted to have a side substantially parallel to the second magnetic boundary line, and a side arrayed along the bisecting line.

12. The antivibration actuator of claim 11 , wherein the first drive coil is constituted as a hexagon having a side substantially parallel to the first magnetic boundary line, and a side arrayed along the bisecting line; and

the second drive coil is constituted as a hexagon having a side substantially parallel to the second magnetic boundary line, and a side arrayed along the bisecting line.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2011
From: YAGISAWA, OSAMU
To: TAMRON CO., LTD.
Reel/Frame 025692/0481 →
Priority Claims (1)
JP 2010-006932 · Jan 15, 2010 · national
Continuity (1)
Related Publication 20110176012A1 · Jul 21, 2011