IP Library Granted Patent US 9,989,779
Granted Patent B2
US 9,989,779 · App. 15/136,542 · Granted Jun 5, 2018

Lens driving device

Inventor: Shusuke Ichihashi (Tokyo, JP)
Assignee: TDK CORPORATION
G02B27/646G02B7/04G02B7/08G02B7/102G02B7/36G03B3/10H04N5/23212
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Quick Facts
Patent No.
US 9,989,779
App. No.
15/136,542
Granted
Jun 5, 2018
Kind
B2
Abstract

The present invention is a lens driving device comprising first driving coils 30 a which relatively moves a lens holder 40 against a base part 10 along X axis perpendicular to an optical axis of a lens 100 , and second driving coils 30 b which relatively moves a lens holder 40 against a base part 10 along Y axis perpendicular to an optical axis. At the base part 10 , an opening part 12 is formed where a part of the lens 100 is to be inserted in a movable manner along the driving plane. The oblique diameter Dxy 1 and Dxy 2 of the opening part 12 along the oblique direction positioned at the middle of X axis and Y axis, is larger than the first inner diameter Dx along X axis direction of the opening part 12 , and also larger than the second inner diameter Dy along Y axis direction of the opening part 12 . At the base part 10 , the cylinder shape projection part 14 is formed along the periphery of the opening part 12.

Claims (33)

1. A lens driving device comprising a first driving part allowing a lens part including at least one lens to relatively move against a base part along a first driving axis crossing with an optical axis of said lens,

a second driving part allowing said lens part to relatively move against said base along a second driving axis crossing with said optical axis of the lens and with said first driving axis, wherein

an opening part is formed at said base part to which a part of said lens is inserted in a movable manner along a driving plane including said first driving axis and said second driving axis, and

an oblique internal diameter of said opening part along an oblique direction positioned in the middle of said first driving axis and said second driving axis is larger than a first internal diameter of said opening part along a direction of said first driving axis, and also larger than a second internal diameter of said opening part along a direction of said second driving axis.

2. The lens driving device as set forth in claim 1 wherein said first driving part includes a pair of first driving coils positioned at both sides along said first driving axis direction while placing said opening part therebetween, and

a pair of said first driving coils are placed parallel along opposing two sides of said base part.

3. The lens driving device as set forth in claim 1 , wherein said second driving part includes a pair of second driving coils positioned at both sides along said second driving axis while placing said opening part therebetween, and

a pair of said second driving coils are placed parallel along opposing two sides of said base part.

4. The lens driving device as set forth in claim 1 , wherein said lens part is held at a flame in a movable manner in the optical axis direction, and

said flame is held in a movable manner along said driving plane against said base part using plurality of suspension wires.

5. The lens driving device as set forth in claim 1 , wherein said flame has a square ring shape as a whole and placed inside a case of square cylinder shape fixed to said base, and

said oblique direction roughly matches to a diagonal line direction of said square ring shape.

6. The lens driving device as set forth in claim 1 , wherein a cylinder shape projection part is formed at said base part along a periphery of the opening part, and

at least part of said first driving part and said second driving part are placed around said cylinder shape projection part.

7. A lens driving device comprising,

a movable part having a lens holder holding a lens and a driving magnet for driving said lens in optical axis perpendicular direction,

a fixing part having a driving coil placed to face against said driving magnet to drive said lens in said optical axis perpendicular direction, and a base part formed with a base opening part to allow an incident light on said lens to pass through and the base part is also provided with said driving coil, and

a supporting part connecting said movable part to said fixing part in relative movable manner, and supporting said movable part to said fixing part, wherein

a cylinder projection part which projects out along the optical axis direction of said lens towards said movable part is formed along a peripheral of said base opening part at said base part,

a projection end of said cylinder shape projection part is positioned at front side along the optical axis direction of said lens than a coil mounting plane where said driving coil is mounted in said base part, and

a coil front end of said driving coil is positioned at front side along said optical axis direction than said projection end.

8. The lens driving device as set forth in claim 7 , wherein a predetermined space is formed between an outer peripheral side plane of said cylinder shape projection part and said driving coil.

9. The lens driving device as set forth in claim 8 wherein a wire connecting to said driving coil is placed in said space.

10. A lens driving device comprising,

a movable part having a lens holder holding a lens and a driving magnet for driving said lens in optical axis perpendicular direction,

a fixing part having a driving coil placed to face against said driving magnet to drive said lens in said optical axis perpendicular direction, and a base part formed with a base opening part to allow an incident light on said lens to pass through and the base part is also provided with said driving coil, and

a supporting part connecting said movable part to said fixing part in relative movable manner, and supporting said movable part to said fixing part, wherein

a cylinder projection part which projects out along the optical axis direction of said lens towards said movable part is formed along a peripheral of said base opening part at said base part,

a projection end of said cylinder shape projection part is positioned at front side along the optical axis direction of said lens than a coil mounting plane where said driving coil is mounted in said base part,

a coil front end of said driving coil is positioned at front side along said optical axis direction than said projection end,

a predetermined space is formed between an outer peripheral side plane of said cylinder shape projection part and said driving coil,

said outer peripheral side plane of the cylinder projection part comprises a projection part flat plane part extending parallel to a flat plane including said optical axis, and

said projection part flat plane part faces against, by placing the space in between, a coil flat plane part which is part of the outer circumference side plane of said driving coil and extending parallel to the flat plane including said optical axis.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2026
From: TDK TAIWAN CORP.
To: ACTUTEK CORPORATION
Reel/Frame 074858/0498 →
COMPANY TO COMPANY ASSIGNMENT Recorded Mar 29, 2021
From: TDK CORPORATION
To: TDK TAIWAN CORPORATION
Reel/Frame 055820/0559 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2016
From: ICHIHASHI, SHUSUKE
To: TDK CORPORATION
Reel/Frame 039064/0797 →
Priority Claims (2)
JP 2015-088724 · Apr 23, 2015 · national
JP 2015-096080 · May 8, 2015 · national
Continuity (1)
Related Publication 20160313569A1 · Oct 27, 2016