IP Library Granted Patent US 10,723,399
Granted Patent B2
US 10,723,399 · App. 15/230,195 · Granted Jul 28, 2020

Cycle management system with locking mechanism

Inventors: Raphaël Assénat (Quebec, CA); Jean-Sébastien Bettez (Hudson, CA)
Assignee: Lyft, Inc.
B62H3/00B62H2003/005
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Quick Facts
Patent No.
US 10,723,399
App. No.
15/230,195
Granted
Jul 28, 2020
Kind
B2
Abstract

An object management system and locking mechanism and method, such as may be used in a bicycle rental station. The system comprises a plurality of docking stations and a terminal connected to the docking stations by a network. At least one of the docking stations includes the locking mechanism for locking a connecting member secured to a bicycle or other object. The locking mechanism comprises a locking receptacle configured to receive the connecting member; a movable member positioned in the locking receptacle, the movable member having a lockable position and an unlockable position; and a locking member having a locked position and an unlocked position. The locking member is configured to secure the movable member, the movable member is configured to secure the connecting member, and the locking member is configured to rotate to switch between the locked position and unlocked position.

Claims (85)

1. A locking mechanism for locking a connecting member secured to an object, the locking mechanism comprising:

a locking receptacle having an opening with sloped walls leading into a slot configured to receive the connecting member and guide the connecting member into a predetermined position as the connecting member is pushed into the locking receptacle, the connecting member comprising a triangular portion and a projection extending from the triangular portion, the projection comprising a first edge and a second edge, opposite the first edge of the projection, wherein the sloped walls are configured to engage the triangular portion and the slot is configured to receive the projection;

a movable member positioned in the locking receptacle, the movable member configured to rotate between a lockable position and an unlockable position and the movable member comprising a first edge and a second edge opposite the first edge of the movable member; and

a locking member having a locked position and an unlocked position,

wherein:

the locking member is configured to secure the movable member when the movable member is in the lockable position and the locking member is in the locked position,

the movable member is configured to secure the connecting member when the movable member is in the lockable position while the connecting member is disposed within the locking receptacle,

the locking member is configured to rotate about an axis perpendicular to an axis of rotation of the movable member to switch between the locked position and the unlocked position, and

movement of the movable member positions the second edge of the movable member adjacent the second edge of the projection when the movable member is in the lockable position.

2. The locking mechanism of claim 1 , wherein:

the movable member is configured to rotate from the unlockable position to the lockable position based on force applied by the connecting member to the movable member.

3. The locking mechanism of claim 1 , wherein:

the locking member comprises a first side and a second side, wherein the first side includes a tab.

4. The locking mechanism of claim 3 , wherein:

the tab is configured to be in a path of rotation of the movable member when the locking member is in the locked position, and

the tab is configured to be out of the path of rotation of the movable member when the locking member is in the unlocked position.

5. The locking mechanism of claim 1 , wherein:

the locking member comprises a cylindrical shaft configured to axially rotate to switch between the locked position and the unlocked position.

6. The locking mechanism of claim 2 , wherein:

the movable member is configured to be out of a path of displacement of the connecting member when the movable member is in the unlockable position,

the movable member is configured to be in the path of displacement of the connecting member when the movable member is in the lockable position, and

the locking mechanism comprises a portion of a bicycle rental station configured to receive the connecting member.

7. The locking mechanism of claim 6 , wherein:

the force applied by the connecting member to the movable member comprises force applied by the first edge of the projection against the first edge of the movable member, and

a ratio of a first distance to a second distance is between 3 to 1 and 7 to 1, the first distance being from the axis of rotation of the movable member to a point of contact between the locking member and the movable member, the second distance being from the axis of rotation of the movable member to a point of contact between the connecting member and the movable member.

8. The locking mechanism of claim 1 , wherein:

the connecting member comprises an aperture configured to not engage with the locking mechanism when the locking mechanism is positioned to secure the connecting member,

the object comprises a bicycle, and

the locking mechanism comprises a portion of a bicycle rental station, the bicycle rental station including a user interface configured to receive input from a user to control a bicycle rental transaction.

9. A method for operating a locking mechanism on a structure to lock an object to the structure, the method comprising:

receiving a connecting member attached to the object in a locking receptacle of the locking mechanism, the connecting member comprising a projection having a first edge and a second edge, opposite the first edge of the projection;

rotating a movable member from a first position to a second position due to force applied by the first edge of the projection against a first edge of the movable member, wherein the movable member comprises a second edge opposite the first edge of the movable member, and rotation of the movable member positions the second edge of the movable member adjacent the second edge of the projection when the movable member is in the second position; and

displacing an additional member into a position adjacent the movable member at which the additional member blocks rotation of the movable member from the second position toward the first position, wherein

the projection extends from a first portion of the connecting member,

displacing the additional member comprises rotating the additional member about an axis perpendicular to an axis of rotation of the movable member,

the first position comprises an unlockable position,

the second position comprises a lockable position, and

a ratio of a first distance to a second distance is between 3 to 1 and 7 to 1, the first distance being from the axis of rotation of the movable member to a point of contact between the additional member and the movable member, the second distance being from the axis of rotation of the movable member to a point of contact between the connecting member and the movable member.

10. The method of claim 9 , wherein:

at least a portion of the movable member is C-shaped,

the position adjacent the movable member at which the additional member blocks the rotation of the movable member comprises a locked position,

the structure comprises a bicycle rental station including a user interface,

the object comprises a bicycle, and

the method further comprises:

receiving, via the user interface, input from a user to control a rental of the bicycle;

receiving, from a terminal connected to the bicycle rental station, a signal indicating the rental of the bicycle;

displacing the additional member into a position at which the additional member is out of a path of rotation of the movable member; and

rotating the movable member from the second position to the first position.

11. An object management system comprising:

a plurality of docking stations; and

a terminal connected to the plurality of docking stations by a network,

wherein at least one of the plurality of docking stations comprises:

a key reader configured to read a key; and

a locking mechanism for locking a connecting member secured to an object, the locking mechanism comprising:

a locking receptacle configured to receive the connecting member, the connecting member comprising a first portion and a projection extending from the first portion, the projection comprising a first edge and a second edge, opposite the first edge of the projection;

a movable member positioned in the locking receptacle, the movable member configured to rotate between a lockable position and an unlockable position and the movable member comprising a first edge and a second edge opposite the first edge of the movable member; and

a locking member having a locked position and an unlocked position, wherein:

the locking member is configured to secure the movable member when the movable member is in the lockable position and the locking member is in the locked position,

the movable member is configured to secure the connecting member when the movable member is in the lockable position while the connecting member is disposed within the locking receptacle,

the locking member is configured to rotate about an axis perpendicular to an axis of rotation of the movable member to switch between the locked position and the unlocked position, and

movement of the movable member positions the second edge of the movable member adjacent the second edge of the projection when the movable member is in the lockable position.

12. The object management system of claim 11 , wherein:

the movable member is configured to rotate from the unlockable position to the lockable position based on force applied by the connecting member to the movable member,

based on a signal received from the terminal, the locking member is configured to rotate from the locked position to the unlocked position and the movable member is configured to rotate from the lockable position to the unlockable position, and

a ratio of a first distance to a second distance is between 3 to 1 and 7 to 1, the first distance being from an axis of rotation of the movable member to a point of contact between the locking member and the movable member, the second distance being from the axis of rotation of the movable member to a point of contact between the connecting member and the movable member.

13. The object management system of claim 11 , wherein:

the locking member comprises a first side and a second side, wherein the first side includes a tab.

14. The object management system of claim 13 , wherein:

the tab is configured to be in a path of rotation of the movable member when the locking member is in the locked position, and

the tab is configured to be out of the path of rotation of the movable member when the locking member is in the unlocked position.

15. The object management system of claim 11 , wherein:

at least a portion of the movable member is C-shaped,

the locking member comprises a cylindrical shaft configured to axially rotate to switch between the locked position and the unlocked position,

the at least one of the plurality of docking stations comprises a bicycle rental station including a user interface,

the object comprises a bicycle, and

the at least one of the plurality of docking stations is configured to:

receive, via the user interface, input from a user to control a rental of the bicycle;

receive, from the terminal, a signal indicating the rental of the bicycle;

cause the locking member to rotate to the unlocked position; and

cause the movable member to rotate to the unlockable position.

16. The object management system of claim 11 , wherein:

the movable member is configured to be out of a path of displacement of the connecting member when the movable member is in the unlockable position, and

the movable member is configured to be in the path of displacement of the connecting member when the movable member is in the lockable position.

17. The object management system of claim 11 , wherein:

the connecting member comprises an aperture configured to not engage with the locking mechanism when the locking mechanism is positioned to secure the connecting member.

Assignments (8)
SECURITY INTEREST Recorded Nov 3, 2022
From: LYFT, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 061880/0237 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2019
From: 8D TECHNOLOGIES ULC
To: LYFT, INC.
Reel/Frame 049159/0281 →
CHANGE OF NAME Recorded Jul 26, 2018
From: 9352-3033 QUEBEC INC.
To: 8D TECHNOLOGIES INC.
Reel/Frame 046633/0561 →
CHANGE OF INCORPORATION Recorded Jul 26, 2018
From: 8D TECHNOLOGIES INC.
To: 8D TECHNOLOGIES INC.
Reel/Frame 047445/0806 →
MERGER Recorded Jul 26, 2018
From: 8D TECHNOLOGIES INC.
To: 1103123 B.C. UNLIMITED LIABILITY COMPANY
Reel/Frame 046633/0641 →
CHANGE OF NAME Recorded Jul 26, 2018
From: 1103123 B.C. UNLIMITED LIABILITY COMPANY
To: 8D TECHNOLOGIES ULC
Reel/Frame 046465/0809 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2016
From: 8D TECHNOLOGIES INC.
To: 9352-3033 QUEBEC INC.
Reel/Frame 040806/0787 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2016
From: ASSENAT, RAPHAEL; BETTEZ, JEAN-SEBASTIAN
To: 8 D TECHNOLOGIES, INC.
Reel/Frame 040665/0133 →
Continuity (2)
Provisional Application 62201544 · Aug 5, 2015
Related Publication 20170036722A1 · Feb 9, 2017
Cited By (2)
US 1,130,202 US 12,291,296