IP Library Granted Patent US 11,969,841
Granted Patent B2
US 11,969,841 · App. 17/497,748 · Granted Apr 30, 2024

Transport system, transport method, and article manufacturing method

Inventors: Takashi Nakamura (Tokyo, JP); Hidetada Narahara (Kawasaki, JP); Shinichiro Takahama (Matsudo, JP)
Assignee: Canon Kabushiki Kaisha
B23P21/004B23P19/04B65G37/02
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Quick Facts
Patent No.
US 11,969,841
App. No.
17/497,748
Granted
Apr 30, 2024
Kind
B2
Abstract

A transport system includes a transport path having at least two transporting modules, a carriage configured to move on the transport path, a controller provided on each of the two transporting modules and configured to drive the carriage in response to a drive command, and a sensor provided on each of the two transporting modules. The drive command is corrected with a distance between the sensors provided on the two transporting modules.

Claims (57)

1. A transport system comprising:

a transport path;

a carriage configured to move along the transport path;

a controller configured to control at least one of a position of the carriage and/or a speed of the carriage;

a first sensor provided on the transport path; and

a reference position for a second location on the transport path where the reference position is spaced at a predetermined distance from the first sensor,

wherein the controller is configured to cause the carriage to move and to determine a first distance between the first sensor and an actual location of the second location on the transport path, and

wherein the controller is further configured to determine a second distance between the first sensor and the reference position on the transport path, and to determine a difference between the first distance and the second distance.

2. The transport system according to claim 1 , wherein, after causing the carriage to stop, the controller causes the carriage to move and determines the first distance.

3. The transport system according to claim 2 , wherein, when the controller causes the carriage to stop, the carriage stops at a position across the first sensor and the reference position.

4. The transport system according to claim 1 , wherein the controller controls at least one of the position anclief the speed of the carriage based on at least one of the determined first distance, the determined second distance, and the determined difference between the first distance and the second distance.

5. The transport system according to claim 1 , wherein the reference position is a position on the transport path of a second sensor.

6. The transport system according to claim 5 ,

wherein the transport path includes a first transporting module and a second transporting module located upstream of the first transporting module, and

wherein the first sensor is provided on the first transporting module, and the second sensor is provided on the second transporting module.

7. The transport system according to claim 6 , wherein the second transporting module is adjacent to the first transporting module.

8. The transport system according to claim 1 ,

wherein the controller has a drive command for controlling at least one of the position and the speed of the carriage, and

wherein the drive command is determined based on at least one of the determined first distance, the determined second distance, and the determined difference between the first distance and the second distance.

9. The transport system according to claim 1 , wherein the carriage moves on the transport path.

10. The transport system according to claim 1 ,

wherein the carriage includes a plurality of permanent magnets,

wherein the transport path includes a plurality of coils at positions facing the plurality of permanent magnets, and

wherein the controller is configured to control an electric current flowing through the plurality of coils.

11. A transport method for a transport system,

wherein the transport system includes:

a transport path,

a carriage configured to move along the transport path,

a controller configured to control at least one of a position of the carriage and a speed of the carriage,

a first sensor provided on the transport path, and

a reference position for a second location on the transport path where the reference position is spaced at a predetermined distance from the first sensor,

the transport method comprising:

causing, by the controller, the carriage to move;

determining, by the controller, a first distance between the first sensor and an actual location of the second location on the transport path; and

determining, by the controller, a second distance between the first sensor and the reference portionposition on the transport path, and determining a difference between the first distance and the second distance.

12. The transport method according to claim 11 , wherein, after causing the carriage to stop, causing includes causing the carriage to move and determining includes determining the first distance.

13. The transport method according to claim 12 , wherein, when the controller causes the carriage to stop, the carriage stops at a position across the first sensor and the reference position.

14. The transport method according to claim 11 , wherein the controller controls at least one of the position and/of the speed of the carriage based on at least one of the determined first distance, the determined second distance, and the determined difference between the first distance and the second distance.

15. The transport method according to claim 11 ,

wherein the controller has a drive command for controlling at least one of the position and/or the speed of the carriage, and

wherein the drive command is determined based on the determined distance between the first sensor and the reference position.

16. The transport method according to claim 11 ,

wherein the carriage includes a plurality of permanent magnets,

wherein the transport path includes a plurality of coils at positions facing the plurality of permanent magnets, and

wherein the controller is configured to control an electric current flowing through the plurality of coils.

17. A method for manufacturing an article by using a transport system and a processing device,

wherein the transport system includes:

a transport path,

a carriage configured to move along the transport path,

a controller configured to control at least one of a position of the carriage and a speed of the carriage,

a first sensor provided on the transport path, and

a reference position for a second location on the transport path where the reference position is spaced at a predetermined distance from the first sensor,

wherein the controller is configured to cause the carriage to move, and to determine a first distance between the first sensor and an actual location of the second location on the transport path, and

wherein the controller is further configured to determine a second distance between the first sensor and the reference position on the transport path, and to determine a difference between the first distance and the second distance,

the method comprising:

transporting, to the processing device by the transport system, the carriage, with a workpiece carried by the carriage; and

performing, by the processing device, a predetermined process on the workpiece on the carriage.

Priority Claims (2)
JP 2017-230997 · Nov 30, 2017 · national
JP 2018-207506 · Nov 2, 2018 · national
Continuity (2)
Continuation 16201753 · Nov 27, 2018
Related Publication 20220023985A1 · Jan 27, 2022
Cited By (1)
US 12,545,532