IP Library › Granted Patent US 12,607,819
Granted Patent B2
US 12,607,819 · App. 18/734,775 · Granted Apr 21, 2026

Camera module

Inventors: Young Hwan Kwon (Suwon-si, KR); Kum Kyung Lee (Suwon-si, KR); Nam Ki Park (Suwon-si, KR); Ta Kyoung Lee (Suwon-si, KR); Jung Seok Lee (Suwon-si, KR); Young Bok Yoon (Suwon-si, KR); Dong Yeon Shin (Suwon-si, KR)
Assignee: Samsung Electro-Mechanics Co., Ltd.
G02B7/021G02B7/102G02B27/646G03B5/00G03B13/36G02B13/0065G02B17/023
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Quick Facts
Patent No.
US 12,607,819
App. No.
18/734,775
Granted
Apr 21, 2026
Kind
B2
Abstract

A camera module includes a housing; a plurality of movable lens modules disposed in an internal space of the housing and configured to be movable in an optical axis direction, each of the plurality of movable lens modules comprising at least one lens; and a stopper configured to prevent contact between at least two of the plurality of movable lens modules, wherein the stopper includes a frame mounted on the housing; an extension portion extending from the frame into the internal space of the housing to face a side of one movable lens module of the plurality of movable lens modules in the optical axis direction; and a damping member disposed on the extension portion to face the side of the one movable lens module in the optical axis direction.

Claims (52)

1 . A camera module comprising:

a housing;

a lens barrel disposed in the housing and to be movable in an optical axis direction;

a reflection module disposed in front of the lens barrel and to be rotatable with respect to the housing; and

a plurality of ball bearings disposed between a lower surface of the lens barrel and a bottom surface of the housing,

wherein the lens barrel comprises one side surface and another side surface, the one side surface and the other side surface being spaced apart in a first axis direction perpendicular to the optical axis direction,

wherein a pulling magnet is disposed on the lower surface of the lens barrel, and a pulling yoke facing the pulling magnet in a direction perpendicular to the optical axis direction is disposed on the housing,

wherein a plurality of guide grooves in which the plurality of ball bearings are disposed are formed on the lower surface of the lens barrel,

wherein the one side surface of the lens barrel comprises an extension portion extending in the optical axis direction,

wherein the extension portion protrudes further in the optical axis direction than the other side surface of the lens barrel, and

wherein at least some of the plurality of guide grooves are disposed on a bottom surface of the extension portion.

2 . The camera module of claim 1 , further comprising:

a driving portion comprising a magnet disposed on one side surface of the lens barrel and a coil disposed to face the magnet in the first axis direction perpendicular to the optical axis direction,

wherein the pulling magnet and the pulling yoke face each other in a second axis direction perpendicular to both the optical axis direction and the first axis direction.

3 . The camera module of claim 2 , wherein the lens barrel comprises the other side surface spaced apart from the one side surface in the first axis direction,

the pulling magnet is disposed closer to the one side surface than the other side surface,

a number of the plurality of ball bearings is three, and

two ball bearings among the plurality of bearings are disposed in a space between the one side surface of the lens barrel and the pulling magnet.

4 . The camera module of claim 3 , wherein the two of ball bearings are spaced apart in the optical axis direction.

5 . The camera module of claim 4 , wherein one of the two ball bearings is disposed between the bottom surface of the extension portion and the bottom surface of the housing.

6 . The camera module of claim 3 , wherein a remaining one ball bearing among the three ball bearings is disposed in a space between the pulling magnet and the other side surface of the lens barrel.

7 . The camera module of claim 1 , wherein the plurality of ball bearings comprises three ball bearings,

two of the three ball bearings are disposed between one side of the lens barrel and the housing,

a remaining one ball bearing is disposed between the other side of the lens barrel and the housing, and

the pulling magnet is disposed closer to the two ball bearings than to the one ball bearing.

8 . The camera module of claim 7 , further comprising a driving portion comprising a magnet disposed on the lens barrel and a coil disposed to face the magnet in the first axis direction,

wherein the magnet is disposed closer to the two ball bearings than to the one ball bearing.

9 . The camera module of claim 1 , further comprising a plurality of magnets disposed on the reflection module and a plurality of coils facing the plurality of magnets,

wherein the housing comprises a plurality of through-holes, and

the plurality of magnets and the plurality of coils face each other directly through the plurality of through-holes.

10 . The camera module of claim 9 , wherein one magnet among the plurality of magnets is disposed on a bottom surface of the reflection module, and

two magnets among the plurality of magnets are disposed on one side surface and the other side surface of the reflection module.

11 . The camera module of claim 9 , wherein a position sensor is disposed inside the plurality of coils.

12 . The camera module of claim 9 , further comprising a driving portion comprising a magnet disposed on the lens barrel and a coil disposed to face the magnet in a first axis direction perpendicular to the optical axis direction,

wherein a main board is disposed on the housing, and

the coil and the plurality of coils are disposed on the main board.

13 . The camera module of claim 1 , wherein a ball bearing is disposed between the reflection module and the housing.

14 . The camera module of claim 1 , wherein an elastic damper is disposed between the reflection module and the lens barrel.

15 . A camera module comprising:

a housing;

a lens barrel disposed in the housing and to be movable in an optical axis direction;

a reflection module disposed in front of the lens barrel and to be rotatable with respect to the housing;

a plurality of ball bearings disposed between a lower surface of the lens barrel and a bottom surface of the housing; and

a driving portion comprising a magnet disposed on one side surface of the lens barrel and a coil disposed to face the magnet in a first axis direction perpendicular to the optical axis direction,

wherein a pulling magnet is disposed on the lower surface of the lens barrel, and a pulling yoke facing the pulling magnet in a direction perpendicular to an optical axis direction is disposed on the housing,

wherein a plurality of guide grooves in which the plurality of ball bearings are disposed are formed on the lower surface of the lens barrel,

wherein the lens barrel comprises an extension portion extending in the optical axis direction,

wherein at least some of the plurality of guide grooves are disposed on a bottom surface of the extension portion,

wherein the housing has a through-hole, and

the magnet and the coil face each other directly through the through-hole.

16 . The camera module of claim 15 , wherein one surface of the magnet facing the coil has an N-pole, a neutral region, and an S-pole along the optical axis direction.

17 . The camera module of claim 15 , wherein a position sensor is disposed inside the coil.

Priority Claims (2)
KR 10-2019-0050936 · Apr 30, 2019 · national
KR 10-2019-0092229 · Jul 30, 2019 · national
Continuity (3)
Continuation 18093045 · Jan 4, 2023
Continuation 16823060 · Mar 18, 2020
Related Publication 20240319472A1 · Sep 26, 2024
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