IP Library Granted Patent US 10,852,623
Granted Patent B2
US 10,852,623 · App. 16/196,128 · Granted Dec 1, 2020

Camera module

Inventors: Jae Kyung Kim (Suwon-si, KR); Bo Sung Seo (Suwon-si, KR); Young Bok Yoon (Suwon-si, KR)
Assignee: Samsung Electro-Mechanics Co., Ltd.
G03B9/06G03B5/04G03B13/36G03B2205/0015G03B2205/0069
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Quick Facts
Patent No.
US 10,852,623
App. No.
16/196,128
Granted
Dec 1, 2020
Kind
B2
Abstract

A camera module includes a housing including a lens module, blades disposed on an object side of the lens module to consecutively form apertures having various sizes, a magnet portion including a driving magnet opposing a driving coil and being moveable rectilinearly, and a rotating plate interlocked with the magnet portion and the blades to convert linear movement of the magnet portion to rotational movement.

Claims (33)

1. A camera module, comprising:

a housing comprising a lens module;

blades disposed on an object side of the lens module and configured to consecutively form apertures having various sizes;

a magnet portion comprising a driving magnet opposing a driving coil and configured to be moveable rectilinearly, the driving magnet opposing the driving coil in a direction that intersects an optical axis direction; and

a rotating plate interlocked with the magnet portion and the blades, and configured to convert linear movement of the magnet portion to rotational movement.

2. The camera module of claim 1 , further comprising a base configured to accommodate the rotating plate, the base comprising a protrusion extended in the optical axis direction along a side surface of the lens module.

3. The camera module of claim 2 , wherein the magnet portion is disposed in the protrusion and is configured to move back and forth in a direction approximately perpendicular to the optical axis direction.

4. The camera module of claim 3 , wherein the blades consecutively form the apertures having the various sizes by expanding and retracting around the optical axis according to a movement of the magnet portion with respect to the protrusion.

5. The camera module of claim 2 , wherein the rotating plate is configured to rotate about an optical axis.

6. The camera module of claim 5 , wherein each of the blades comprises a fixed shaft inserting portion and a driving shaft inserting portion, the fixed shaft inserting portion is rotatably inserted into a respective fixed shaft on the base, and the driving shaft inserting portion is inserted into a respective driving shaft on the rotating plate.

7. The camera module of claim 6 , wherein the driving shaft inserting portion is lengthened in one direction and inclined to a rotation direction of the rotation plate.

8. The camera module of claim 6 , wherein a number of fixed shafts on the base correspond to a number of the blades, and when the fixed shafts are sequentially connected, the fixed shafts form a regular polygon.

9. The camera module of claim 6 , wherein the rotating plate is disposed closer to the optical axis than the fixed shafts.

10. The camera module of claim 6 , wherein the rotating plate is disposed farther away from the optical axis than the fixed shafts.

11. The camera module of claim 5 , wherein each of the blades comprises a fixed protrusion inserting portion and a driving shaft, the fixed shaft protrusion portion is rotatably inserted into a respective fixed shaft on the base, and the driving shaft is inserted into a respective driving shaft inserting portion on the rotating plate.

12. The camera module of claim 1 , wherein the driving coil is disposed in the housing.

13. The camera module of claim 1 , further comprising a position sensor disposed to oppose the driving magnet.

14. The camera module of claim 1 , wherein the blades comprise three blades or six blades.

15. The camera module of claim 1 , wherein the rotating plate is separate from the magnet portion.

16. A camera module, comprising:

a housing comprising a lens module;

blades disposed on an object side of the lens module and configured to consecutively form apertures having various sizes;

a magnet portion comprising a driving magnet opposing a driving coil and configured to be moveable rectilinearly; and

a rotating plate interlocked with the magnet portion and the blades, and configured to convert linear movement of the magnet portion to rotational movement,

wherein the rotating plate comprises a driving protrusion inserting portion, the magnet portion comprises a driving protrusion, and the driving protrusion is inserted into the driving protrusion inserting portion.

17. The camera module of claim 16 , wherein the driving protrusion inserting portion is inclined to a movement direction of the magnet portion.

18. A camera module, comprising:

a lens module;

a magnet portion comprising a driving magnet opposing a driving coil and configured to be moveable rectilinearly, the driving magnet opposing the driving coil in a direction that intersects an optical axis direction;

a rotating plate interlocked with the magnet portion, and configured to convert linear movement of the magnet portion to rotational movement;

blades disposed on an object side of the lens module and interlocked with the rotating plate, the blades being configured to expand and retract around an optical axis based on the rotational movement.

19. The camera module of claim 18 , wherein the blades are configured to expand and retract around the optical axis to form a variably sized aperture.

20. The camera module of claim 18 , wherein at least two of the blades overlap each other in an optical axis direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2018
From: KIM, JAE KYUNG; SEO, BO SUNG; YOON, YOUNG BOK
To: SAMSUNG ELECTRO-MECHANICS CO., LTD.
Reel/Frame 047551/0944 →
Priority Claims (1)
KR 10-2018-0066394 · Jun 8, 2018 · national
Continuity (1)
Related Publication 20190377238A1 · Dec 12, 2019
Cited By (1)
US 12,645,048