IP Library Granted Patent US 12,554,288
Granted Patent B2
US 12,554,288 · App. 17/914,640 · Granted Feb 17, 2026

Bistable hinge with determinant motion

Inventors: Christina Ashley Yee (Redmond, WA); Joseph Benjamin Gault (Seattle, WA); Brian David Bitz (Woodinville, WA)
Assignee: Microsoft Technology Licensing, LLC
G06F1/1681G06F1/162H04M1/0222G06F1/1616
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Quick Facts
Patent No.
US 12,554,288
App. No.
17/914,640
Granted
Feb 17, 2026
Kind
B2
Abstract

An electronic device hinge includes a first body, a second body, and a link. The link is rotatable relative to the first body around a first pivot point and rotatable relative to the second body around a second pivot point. The first pivot point has a first rotational resistance and the second pivot point has a second rotational resistance that is different from the first rotational resistance. The hinge further includes a third body that is selectively positionable relative to the first body in a first configuration. The third body limits a first rotational range of motion around the first pivot point when positioned in the first configuration.

Claims (24)

1 . A hinge system for bistable motion, the hinge system comprising:

a first body;

a second body;

a link, where the link is rotatable relative to the first body around a first pivot point and rotatable relative to the second body around a second pivot point, where the first pivot point has a first rotational resistance and the second pivot point has a second rotational resistance that is different from the first rotational resistance; and

a third body selectively positionable relative to the first body in a first stable closed configuration and a second stable closed configuration, the third body limiting a first rotational range of motion around the first pivot point when positioned in the first stable closed configuration, wherein the link is positioned in line with the second body to lie in plane with the second body in the second stable closed configuration and out of line with the second body to lie out of plane with the second body in the first stable closed configuration.

2 . The hinge system of claim 1 , further comprising a one-way bearing at the first pivot point that provides the first rotational resistance around the first pivot point in a first rotational direction and a third rotational resistance around the first pivot point in a second rotational direction, where the first rotational resistance is different from the third rotational resistance.

3 . The hinge system of claim 2 , the first rotational resistance being less than the second rotational resistance, and the second rotational resistance being less than the third rotational resistance.

4 . The hinge system of claim 1 , the first body including a locking mechanism with a pin that is movable between an inserted position and a retracted position, the inserted position limiting a first rotational range of motion of the link and the first body around the first pivot point.

5 . The hinge system of claim 4 , the pin being in the inserted position when the third body is in a laptop configuration.

6 . The hinge system of claim 4 , the locking mechanism including a mechanical linkage that moves the pin when the third body contacts the mechanical linkage.

7 . The hinge system of claim 4 , the locking mechanism including a biasing mechanism that biases the pin toward the retracted position.

8 . The hinge system of claim 4 , the locking mechanism including an actuatable movement device to selectively actuate a movement of the pin between the retracted position and the inserted position.

9 . The hinge system of claim 1 further comprising a hardstop between the link and the third body that mechanically limits the first rotational range of motion when the third body is in the first stable closed configuration.

10 . The hinge system of claim 1 further comprising:

a means for selectively limiting a first rotational range of motion of the first pivot point based upon a position of the third body relative to the first body.

11 . The hinge system of claim 10 , the first pivot point having a first rotational range of motion greater than 90° of rotation about the first pivot point when the third body is not connected to the second body.

12 . The hinge system of claim 10 , the means for selectively limiting the first rotational range of motion limiting rotation about the first pivot point to 90° or less when the third body is connected to the second body.

13 . The hinge system of claim 10 , a second rotational range of motion of the second pivot point being at least 90°.

14 . The hinge system of claim 10 , the third body being rotatably coupled to the first body to rotate between the first stable closed configuration and the second stable closed configuration proximate a back surface of the first body.

15 . The hinge system of claim 1 , wherein the first pivot point between the link and the first body includes a rotational resistance greater than the second pivot point between the link and the second body.

16 . The hinge system of claim 1 , wherein the first pivot point only is active when hinge system is moved from the second stable closed configuration.

17 . The hinge system of claim 1 , wherein the first pivot point has a larger range of motion when the hinge system is moved from the second stable closed configuration than when the hinge system is moved from the first stable closed configuration.

18 . The hinge system of claim 1 , further comprising a locking mechanism in the hinge to limit a rotational range of motion of the first pivot point configured to force any further rotation to occur around the second pivot point based upon a position of the third body relative to the first body.

19 . The hinge system of claim 18 , wherein the locking mechanism includes a pin that is moveable relative to the first body to selectively enter a track positioned in the first body based upon a position of the third body relative to the first body.

Continuity (1)
Related Publication 20230123520A1 · Apr 20, 2023
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