IP Library › Granted Patent US 12,275,495
Granted Patent B2
US 12,275,495 · App. 17/481,254 · Granted Apr 15, 2025

Electrical device and system for human-powered vehicle

Inventors: Yuki Sakagawa (Sakai, JP); Toyoto Shirai (Sakai, JP); Noor Ashyikkin Binti Mohd Noor (Sakai, JP); Akihiro Nozaki (Sakai, JP); Satoshi Shahana (Sakai, JP); Hitoshi Takayama (Sakai, JP)
Assignee: SHIMANO INC.
B62M9/132B60L3/0084H04W12/50H04W84/20B60L2200/12
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Quick Facts
Patent No.
US 12,275,495
App. No.
17/481,254
Granted
Apr 15, 2025
Kind
B2
Abstract

An electrical device for a system of a human-powered vehicle comprises a controller. The controller is configured to selectively act, based on reference information relating to the system, as each of a master controller and a slave controller. The master controller is configured to transmit a first control signal to a different slave controller of a different electrical device of the system. The different slave controller is configured to be operated in response to the first control signal. The slave controller is configured to be operated in response to a second control signal transmitted from a different master controller of a different electrical device of the system.

Claims (85)

1. An electrical device for a system of a human-powered vehicle, the electrical device comprising:

a controller configured to selectively act, based on reference information relating to the system, as each of

a master controller configured to transmit a first control signal to a different slave controller of a different electrical device of the system, the different slave controller being configured to be operated in response to the first control signal, and

a slave controller configured to be operated in response to a second control signal transmitted from a different master controller of a different electrical device of the system,

wherein

the controller is configured to communicate with at least one of the different slave controller and the different master controller via a wireless communication channel,

the master controller is configured to directly wirelessly transmit the first control signal to the different slave controller, and

the slave controller is configured to directly wirelessly receive the second control signal from the different master controller;

wherein the controller is one of:

a rear derailleur controller configured to control an actuator of a rear derailleur of the human-powered vehicle;

a front derailleur controller configured to control an actuator of a front derailleur of the human-powered vehicle; and

an adjustable seatpost controller configured to control an actuator of an adjustable seatpost of the human-powered vehicle;

wherein the rear derailleur controller, the front derailleur controller, and the adjustable seatpost controller can each selectively act as the master controller or as the slave controller.

2. The electrical device according to claim 1 , wherein

the reference information includes at least one of

a hardware configuration of the system,

a state of the hardware configuration of the system, and

an input transmitted from an external device.

3. The electrical device according to claim 2 , wherein the external device includes a display and the external device is configured to display a hardware configuration of the system on the display.

4. The electrical device according to claim 1 , wherein

the controller is configured to act as the slave controller if the reference information indicates that the system includes the different master controller, and

the controller is configured to act as the master controller if the reference information indicates that the system does not include the different master controller.

5. The electrical device according to claim 1 , wherein

the controller is configured to detect, as the reference information, whether the system includes the different master controller or not.

6. The electrical device according to claim 1 , wherein

the controller is configured to act as the slave controller if the reference information indicates at least one of that the slave controller is selected by a user, that the master controller is not selected by the user, and that the different master controller is selected by the user, and

the controller is configured to act as the master controller if the reference information indicates at least one of that the master controller is selected by the user, that the slave controller is not selected by the user, and that the different slave controller is selected by the user.

7. The electrical device according to claim 1 , wherein

the controller is configured to communicate with at least one of the different slave controller and the different master controller via a wired communication channel.

8. The electrical device according to claim 1 , wherein

the controller includes a user interface configured to receive a user input,

the controller has a pairing mode in which the controller executes pairing between the controller and one of the different slave controller and the different master controller, and

the controller is configured to enter the pairing mode in response to the user input received by the user interface.

9. The electrical device according to claim 8 , wherein

the controller is configured to act as the slave controller if the controller detects a master signal transmitted directly from the different master controller in the pairing mode during a master determination time that begins when the controller enters the pairing mode, and

the controller is configured to act as the master controller and to transmit a master signal to each electrical device of the system if the controller does not detect the master signal transmitted directly from the different master controller in the pairing mode during the master determination time.

10. The electrical device according to claim 1 , wherein

the controller is configured to transmit the first control signal to the different slave controller in response to an operating signal transmitted from an operating device if the controller acts as the master controller.

11. The electrical device according to claim 10 , wherein

the controller is configured to be operated in response to the second control signal transmitted from the different master controller without transmitting the first control signal to the different slave controller if the controller acts as the slave controller.

12. The electrical device according to claim 1 , wherein

the controller is configured to act as the master controller on behalf of the different master controller if the reference information indicates that the different master controller is in an abnormal state.

13. The electrical device according to claim 12 , wherein

the abnormal state includes at least one of a failure of the different master controller and unresponsiveness of the different master controller.

14. The electrical device according to claim 13 , wherein

the controller is configured to detect a communication signal transmitted from the different master controller,

the controller is configured to conclude that the different master controller is not in the abnormal state if the controller detects the communication signal within a state determination time, and

the controller is configured to conclude that the different master controller is in the abnormal state if the controller does not detect the communication signal within the state determination time.

15. The electrical device according to claim 1 , wherein

the controller is configured to transmit the first control signal to the different slave controller to control an additional actuator of the different electrical device if the controller acts as the master controller.

16. The electrical device according to claim 1 , further comprising

an actuator configured to generate actuating force, wherein

the controller is configured to control the actuator in response to the second control signal transmitted from the different master controller if the controller acts as the slave controller.

17. The electrical device according to claim 16 , further comprising:

a base member; and

a movable member movable relative to the base member, wherein

the actuator is configured to move the movable member relative to the base member in response to the second control signal.

18. A system for a human-powered vehicle, the system comprising:

the electrical device according to claim 1 ; and

at least one of

a slave electrical device including the different slave controller, and

a master electrical device including the different master controller.

19. The system according to claim 18 , wherein

the at least one of the slave electrical device and the master electrical device includes

an additional base member,

an additional movable member movable relative to the additional base member, and

an additional actuator configured to move the additional movable member relative to the additional base member.

20. A bicycle system comprising:

an electrical device comprising:

a controller configured to selectively act, based on reference information relating to the bicycle system, as each of

a master controller configured to transmit a first control signal to a different slave controller of a different electrical device of the bicycle system, the different slave controller being configured to be operated in response to the first control signal, and

a slave controller configured to be operated in response to a second control signal transmitted from a different master controller of a different electrical device of the bicycle system;

a slave electrical device including the different slave controller; and

a master electrical device including the different master controller, wherein

the controller is configured to communicate with at least one of the different slave controller and the different master controller via a wireless communication channel,

the master controller is configured to directly wirelessly transmit the first control signal to the different slave controller, and

the slave controller is configured to directly wirelessly receive the second control signal from the different master controller;

wherein the controller is one of:

a rear derailleur controller configured to control an actuator of a rear derailleur of the bicycle system;

a front derailleur controller configured to control an actuator of a front derailleur of the bicycle system; and

an adjustable seatpost controller configured to control an actuator of an adjustable seatpost of the bicycle system;

wherein the rear derailleur controller, the front derailleur controller, and the adjustable seatpost controller can each selectively act as the master controller or as the slave controller.

21. The bicycle system according to claim 20 , wherein

the controller is configured to act as the slave controller if the controller detects a master signal transmitted directly from the different master controller in a pairing mode during a master determination time that begins when the controller enters the pairing mode, and

the controller is configured to act as the master controller and to transmit a master signal to each electrical device of the system if the controller does not detect the master signal transmitted directly from the different master controller in the pairing mode during the master determination time.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2021
From: SAKAGAWA, YUKI; SHIRAI, TOYOTO; BINTI MOHD NOOR, NOOR ASHYIKKIN; NOZAKI, AKIHIRO; SHAHANA, SATOSHI; TAKAYAMA, HITOSHI
To: SHIMANO INC.
Reel/Frame 057551/0881 →
Continuity (1)
Related Publication 20230089903A1 · Mar 23, 2023
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