IP Library Granted Patent US 8,379,337
Granted Patent B2
US 8,379,337 · App. 13/012,021 · Granted Feb 19, 2013

Lens drive device

Inventors: Tatsuki Wade (Nagano, JP); Takeshi Sue (Nagano, JP); Akihito Wada (Nagano, JP)
Assignee: Nidec Sankyo Corporation
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Quick Facts
Patent No.
US 8,379,337
App. No.
13/012,021
Granted
Feb 19, 2013
Kind
B2
Abstract

A lens drive device may include a front side spring member which is connected between a movable body having a lens and a support body. The front side spring member includes a support body side connecting part, a movable body side connecting part and a arm part connected between the support body side connecting part and the movable body side connecting part. The support body includes a yoke having a yoke front plate part and the yoke front plate part is formed with a yoke opening part which is overlapped with at least a part of the front side spring member. Damper material having viscoelasticity is provided, for example, on a portion extending over the movable body side connecting part and the arm part and overlapped with the yoke opening part in the lens optical axis direction. Therefore, the damper material can be applied to the front side spring member through the yoke opening part in the final stage of assembling steps.

Claims (60)

1. A lens drive device comprising:

a support body;

a movable body provided with a lens;

a magnetic drive mechanism for magnetically driving the movable body in a lens optical axis direction with respect to the support body; and

a front side spring member which is connected with a front side end part in the lens optical axis direction of the movable body and the support body;

wherein the front side spring member comprises:

a support body side connecting part which is connected with the support body;

a movable body side connecting part which is located on an inner peripheral side with respect to the support body side connecting part and connected with the movable body; and

an arm part which is connected with the support body side connecting part and the movable body side connecting part;

wherein the support body comprises a yoke comprising:

a yoke front plate part which faces the front side end part of the movable body from a front side in the lens optical axis direction; and

a yoke side plate part which faces a side face part of the movable body;

wherein the yoke front plate part is formed with a yoke opening part which is overlapped with at least a part of the front side spring member in the lens optical axis direction;

wherein damper material having viscoelasticity is provided on one of a portion extending over the movable body side connecting part and the arm part, a portion extending over the arm part and the support body side connecting part, a portion extending over the movable body side connecting part and the support body side connecting part, a portion extending over the movable body and the arm part, a portion extending over the arm part and the support body, and a portion extending over the movable body and the support body, the portion being overlapped with the yoke opening part in the lens optical axis direction;

the yoke opening part is provided with a circular opening portion with a lens optical axis as a center and a protruded opening portion which is protruded to an outer side in a radial direction from an outer circumferential edge of the circular opening part, and

the damper material is provided on the portion overlapping with the protruded opening portion in the lens optical axis direction.

2. The lens drive device according to claim 1 , wherein the damper material is provided only on the portion extending over the movable body side connecting part and the arm part.

3. The lens drive device according to claim 1 , wherein a connected portion of the movable body side connecting part with the arm part and a connected portion of the support body side connecting part with the arm part are located in the protruded opening portion.

4. The lens drive device according to claim 1 , wherein

the yoke front plate part is formed in a rectangular shape when viewed in the lens optical axis direction, and

the protruded opening portion is protruded toward a corner portion of the yoke front plate part.

5. The lens drive device according to claim 4 , wherein a connected portion of the movable body side connecting part with the arm part and a connected portion of the support body side connecting part with the arm part are located in the protruded opening portion.

6. The lens drive device according to claim 5 , wherein the damper material is provided so as to extend over the movable body side connecting part and a portion of the arm part in a vicinity of the connected portion of the arm part with the support body side connecting part.

7. The lens drive device according to claim 6 , wherein the damper material is provided on plural positions with an equal angular interval in a circumferential direction with the lens optical axis as a center.

8. The lens drive device according to claim 2 , wherein

the support body is provided with a spacer which is disposed between the front side end part of the movable body and the yoke front plate part and connected with the support body side connecting part, and

the spacer is provided with a spacer opening part whose opening area is larger than an opening area of the yoke opening part and which is overlapped with the yoke opening part in the lens optical axis direction.

9. A lens drive device comprising:

a support body;

a movable body provided with a lens;

a magnetic drive mechanism for magnetically driving the movable body in a lens optical axis direction with respect to the support body; and

a front side spring member which is connected with a front side end part in the lens optical axis direction of the movable body and the support body;

wherein the front side spring member comprises:

a support body side connecting part which is connected with the support body;

a movable body side connecting part which is located on an inner peripheral side with respect to the support body side connecting part and connected with the movable body; and

an arm part which is connected with the support body side connecting part and the movable body side connecting part;

wherein the support body comprises a yoke comprising:

a yoke front plate part which faces the front side end part of the movable body from a front side in the lens optical axis direction; and

a yoke side plate part which faces a side face part of the movable body;

wherein the yoke front plate part is formed with a yoke opening part which is overlapped with at least a part of the front side spring member in the lens optical axis direction;

damper material having viscoelasticity is provided on one of a portion extending over the movable body side connecting part and the arm part, a portion extending over the arm part and the support body side connecting part, a portion extending over the movable body side connecting part and the support body side connecting part, a portion extending over the movable body and the arm part, a portion extending over the arm part and the support body, and a portion extending over the movable body and the support body, the portion being overlapped with the yoke opening part in the lens optical axis direction;

the yoke front plate part is formed in a rectangular shape having four corner portions when viewed in the lens optical axis direction,

the support body side connecting part of the front side spring member is located at positions overlapping with the four corner portions of the yoke front plate part,

the arm part is extended in a substantially circular arc shape from a connected portion with the support body side connecting part to the movable body side connecting part,

a connected portion of the arm part with the movable body side connecting part and the connected portion of the arm part with the support body side connecting part are disposed with an equal angular interval in a circumferential direction with a lens optical axis as a center;

the yoke opening part comprises:

a circular opening portion which is formed with a lens optical axis as a center so as to cover the movable body side connecting part and the arm part of the front side spring member when viewed in the lens optical axis direction; and

protruded opening portions which are protruded to an outer side in a radial direction from an outer circumferential edge of the circular opening part; and

the protruded opening portion is protruded toward the corner portion of the yoke front plate part, and

the damper material is provided on a portion overlapping with the protruded opening portion in the lens optical axis direction.

10. The lens drive device according to claim 9 , wherein the connected portion of the movable body side connecting part with the arm part and the connected portion of the support body side connecting part with the arm part are located in the protruded opening portion.

11. The lens drive device according to claim 10 , wherein the damper material is provided on either of:

a portion extending over the movable body side connecting part and a portion of the arm part in a vicinity of the connected portion of the arm part with the support body side connecting part,

a portion extending over the support body side connecting part and a portion of the arm part in a vicinity of the connected portion of the arm part with the movable body side connecting part, and

a portion extending over the movable body side connecting part, the arm part and the support body side connecting part.

12. The lens drive device according to claim 9 , wherein

the support body is provided with a spacer which is disposed between the front side end part of the movable body and the yoke front plate part and connected with the support body side connecting part, and

the spacer is provided with a spacer opening part whose opening area is larger than an opening area of the yoke opening part and which is overlapped with the yoke opening part in the lens optical axis direction.

13. The lens drive device according to claim 9 , wherein the damper material is provided on plural positions with an equal angular interval in a circumferential direction with the lens optical axis as the center.

14. The lens drive device according to claim 1 , wherein the damper material is silicone-based viscoelastic composition.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2011
From: WADE, TATSUKI; SUE, TAKESHI; WADA, AKIHITO
To: NIDEC SANKYO CORPORATION
Reel/Frame 026089/0942 →
Priority Claims (1)
JP 2010-14668 · Jan 26, 2010 · national
Continuity (1)
Related Publication 20120120512A1 · May 17, 2012