IP Library Granted Patent US 12,601,371
Granted Patent B2
US 12,601,371 · App. 18/321,245 · Granted Apr 14, 2026

Hinge structure having coupling structure of arm part and rotation part and electronic device including the same

Inventors: Hyungsoo Kim (Suwon-si, KR); Jaeho Kang (Suwon-si, KR); Jungjin Kim (Suwon-si, KR); Giyun Lee (Suwon-si, KR); Iksu Jung (Suwon-si, KR)
Assignee: SAMSUNG ELECTRONICS CO., LTD.
F16C11/04H05K5/0226
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Quick Facts
Patent No.
US 12,601,371
App. No.
18/321,245
Granted
Apr 14, 2026
Kind
B2
Abstract

An example hinge structure of an electronic device includes a first rotation part connected to a first housing and being rotatable about a first axis, a second rotation part connected to a second housing and being rotatable about a second axis in an opposite direction to that of the first rotation part, a first arm part connected to the first rotation part and being rotatable about a first rotary shaft, a second arm part connected to the second rotation part and being rotatable about a second rotary shaft in an opposite direction to that of the first arm part, a first fixing pin connecting the first rotation part and the first arm part, and a second fixing pin connecting the second rotation part and the second arm part. The first rotation part may include a first bracket body, and a first sliding part formed on one side of the first bracket body, and including a first slide hole, into which a portion of the first fixing pin is insertable, the first arm part may include a basic body, and a first connection part formed on one side of the first basic body, and the first connection part may include a first connection hole, into which a portion of the first fixing pin is insertable, and a first protrusion formed at a peripheral portion of the first connection hole such that at least a portion thereof is located in the first slide hole to contact the first sliding part.

Claims (87)

1 . A hinge structure comprising:

a first rotation part connected to a first housing and being rotatable about a first axis;

a second rotation part connected to a second housing and being rotatable about a second axis in an opposite direction to that of the first rotation part;

a first arm part connected to the first rotation part and being rotatable about a first rotary shaft;

a second arm part connected to the second rotation part and being rotatable about a second rotary shaft in an opposite direction to that of the first arm part;

a first fixing pin connecting the first rotation part and the first arm part; and

a second fixing pin connecting the second rotation part and the second arm part,

wherein the first rotation part includes:

a first bracket body; and

a first sliding part formed on one side of the first bracket body, and including a first slide hole, into which a portion of the first fixing pin is inserted,

wherein the first arm part includes:

a first basic body; and

a first connection part formed on one side of the first basic body, and

wherein the first connection part includes:

a first connection hole-, into which a portion of the first fixing pin is inserted; and

a first protrusion formed at a periphery of the first connection hole such that at least a portion thereof is located in the first slide hole to contact the first sliding part,

wherein the first protrusion is configured to surround the periphery of the first connection hole.

2 . The hinge structure of claim 1 , wherein at least a portion of the first protrusion and the first sliding part in the first slide hole point-contact or line-contact each other.

3 . The hinge structure of claim 1 , wherein the first sliding part includes:

a first sliding/holding part, on which the first protrusion is seated; and

a second sliding/holding part which is continuous to the first sliding/holding part and on which a portion of the first fixing pin is seated.

4 . The hinge structure of claim 3 , wherein a distance between a bottom surface and an upper surface of the first sliding/holding part is larger than a distance between a bottom surface and an upper surface of the second sliding/holding part.

5 . The hinge structure of claim 3 , wherein a bottom surface or an upper surface of the first sliding/holding part is formed to have an inclination angle that is larger than 0 degrees in a direction of the second sliding/holding part.

6 . The hinge structure of claim 1 , wherein the first connection part includes:

a female screw thread pattern formed on an inside of the first connection hole, and

wherein the first fixing pin includes:

a male screw thread pattern configured to engage with the female screw thread pattern.

7 . The hinge structure of claim 6 , wherein the male screw thread pattern has a length that is larger than a length of the first connection hole.

8 . The hinge structure of claim 6 , further comprising:

a pin coupling part coupled to an end of the first fixing pin.

9 . The hinge structure of claim 8 , wherein the pin coupling part includes:

a nut configured for coupling to the male screw thread pattern.

10 . The hinge structure of claim 8 , further comprising at least one of:

an elastic member or a washer ring disposed between the pin coupling part and the first connection part.

11 . The hinge structure of claim 1 , further comprising at least one of:

an elastic member or a washer ring disposed between the first fixing pin and the first sliding part.

12 . The hinge structure of claim 1 , wherein the first connection part includes:

a first cylindrical connection part, in which a portion of the first connection hole is formed at a center thereof;

a second cylindrical connection part spaced apart from the first cylindrical connection part by a specific distance, and in which another portion of the first connection hole is formed at the center thereof; and

a holding groove disposed between the first cylindrical connection part and the second cylindrical connection part,

wherein the first fixing pin includes:

a cover;

a column part extending from a central portion of the cover; and

a band groove formed at one end of the column part, and

wherein the hinge structure further comprises an elastic member, one side of which is insertable into the holding groove and in which the band groove is inserted into an opposite side thereof.

13 . The hinge structure of claim 12 , wherein the elastic member includes:

a support part;

a holding part extending from one side of the support part in a direction of the holding groove; and

a pin coupling part extending from an opposite side of the support part in a direction of the first connection part and coupled to the band groove.

14 . The hinge structure of claim 1 , wherein the first fixing pin is movable in the first slide hole in correspondence of rotations of the first rotation part and the second rotation part and is moved while a movement path thereof forms a specific curvature.

15 . The hinge structure of claim 14 , wherein the first sliding part is configured such that at least a portion of at least one of a hole inner bottom surface and a hole inner upper surface, which define the first slide hole, defines a curved surface in correspondence to the movement path.

16 . The hinge structure of claim 1 , wherein the second rotation part includes:

a second bracket body; and

a second sliding part formed on one side of the second bracket body, and including a second slide hole, into which a portion of the second fixing pin is insertable,

wherein the second arm part includes:

a second basic body; and

a second connection part formed on one side of the second basic body, and

wherein the second connection part includes:

a second connection hole, into a portion of the second fixing pin is insertable; and

a second protrusion formed at a peripheral portion of the second connection hole such that at least a portion thereof is located in the second slide hole to contact the second sliding part.

17 . The hinge structure of claim 16 , wherein at least a portion of the second protrusion and the second sliding part in the second slide hole point-contact or line-contact each other.

18 . The hinge structure of claim 16 , wherein a thickness of the second protrusion becomes gradually smaller further from the peripheral portion of the second connection hole.

19 . The hinge structure of claim 18 , wherein the second sliding part includes:

a third sliding/holding part, on which at least a portion of the second protrusion is seated, and at least a portion of which is curved in correspondence to a movement path of the second fixing pin; and

a fourth sliding/holding part, on which at least a portion of the second fixing pin is seated, and at least a portion of which is curved in correspondence to the movement path of the second fixing pin.

20 . An electronic device comprising:

a first housing;

a second housing;

at least one hinge structure connecting the first housing and the second housing; and

a display, at least a portion of which is disposed on the first housing, the second housing, and the at least one hinge structure,

wherein the hinge structure includes:

a first rotation part connected to the first housing and being rotatable about a first axis;

a second rotation part connected to the second housing and being rotatable about a second axis in an opposite direction to that of the first rotation part;

a first arm part connected to the first rotation part and being rotatable about a first rotary shaft;

a second arm part connected to the second rotation part and being rotatable about a second rotary shaft in an opposite direction to that of the first arm part;

a first fixing pin connecting the first rotation part and the first arm part; and

a second fixing pin connecting the second rotation part and the second arm part,

wherein the first rotation part includes:

a first bracket body; and

a first sliding part formed on one side of the first bracket body, and including a first slide hole, into which a portion of the first fixing pin is insertable,

wherein the first arm part includes:

a first basic body; and

a first connection part formed on one side of the first basic body, and

wherein the first connection part includes:

a first connection hole, into which a portion of the first fixing pin is insertable; and

a first protrusion formed in a periphery of the first connection hole such that at least a portion thereof is located in the first slide hole to contact the first sliding part,

wherein the first protrusion is configured to surround the periphery of the first connection hole.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2023
From: KIM, HYUNGSOO; KANG, JAEHO; KIM, JUNGJIN; LEE, GIYUN; JUNG, IKSU
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 063716/0447 →
Priority Claims (1)
KR 10-2021-0012197 · Jan 28, 2021 · national
Continuity (2)
Continuation PCTKR2021017879 · Nov 30, 2021
Related Publication 20230296129A1 · Sep 21, 2023
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Cited By (1)
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