IP Library Granted Patent US 9,789,572
Granted Patent B1
US 9,789,572 · App. 14/531,769 · Granted Oct 17, 2017

Universal automation line

Inventors: Dason Cheung (Fremont, CA); Murad Kurwa (San Jose, CA); Tor Krog (Seattle, WA); Xiuchuan Wang (Campbell, CA); Hao Tan (Zhuhai, CN)
Assignee: Flextronics AP, LLC
B23P21/004
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Quick Facts
Patent No.
US 9,789,572
App. No.
14/531,769
Granted
Oct 17, 2017
Kind
B1
Abstract

A universal automation line is configured for the assembly of electronics and mechanical devices. The universal automation line includes universal cells or stations that can be programmed to perform a variety of automated assembly tasks such as glue dispensing, screw driving, pick and place, etc. The stations are interchangeable by different module design such as selective soldering, heat stacking, bottom lead trimming, bottom screwing and ultrasonic welding. Each station can also include an automated robot, which is also interchangeable, to perform different tasks and complete fully automated assemblies. The stations can be sequenced inline for a fully automated line or combined with some manual operation. The stations can communicate by standardized interfaces and local networks, and can be expanded to an intranet or the internet for remote control.

Claims (46)

1. An assembly line configured to perform a plurality of assembly steps on a device under assembly, wherein the assembly line comprises:

a plurality of stations aligned serially, wherein each station is a stand-alone device and comprises:

a module configured to perform one or more assembly steps on the device under assembly;

a conveyor mechanism configured to receive as input the device under assembly, to transport the device under assembly to a defined work position, and to output the device under assembly from the station; and

an external housing on all sides of the station,

wherein the plurality of stations are serially aligned such that the conveyor mechanisms of adjacent stations are aligned to output the device under assembly from one station and to input the device under assembly to an adjacent station, a loading device coupled to a first station in the serially aligned plurality of stations, wherein the loading device comprises a conveyor mechanism configured to output the device under assembly from the loading device, further wherein the conveyor mechanism of the loading device is aligned with the conveyor mechanism of the first station, wherein the loading device further comprises a movable supply device coupled to the conveyor mechanism of the loading device, wherein the movable supply device comprises a plurality of carrier tray holder shelves, each carrier tray holder shelf is configured to hold a carrier tray that carries the device under assembly, and the movable supply device is movable so as to selectively align one of the carrier tray holder shelves with the conveyor mechanism such that each carrier tray with the device under assembly is transported from the movable supply device to an output opening in the loading device.

2. The assembly line of claim 1 wherein the module comprises a robot.

3. The assembly line of claim 2 wherein the robot comprises one of a 6-axis robot, a 4-axis robot, a cartesian robot, and a Selective Compliance Assembly Robot Arm.

4. The assembly line of claim 3 wherein the module comprises an interchangeable tool coupled to the robot.

5. The assembly line of claim 1 wherein the module comprises one of an ultrasonic welding machine, a press machine, a laser engraving machine, and a heat staking machine.

6. The assembly line of claim 1 wherein for each station, one side of the external housing has an input opening through which the device under assembly is input into the station, wherein the input opening is aligned with the conveyor mechanism, further wherein another side of the external housing has an output opening through which the device under assembly is output from the station, wherein the output opening is aligned with the conveyor mechanism.

7. The assembly line of claim 6 wherein the output opening of one station is aligned with the input opening of an adjacent other station.

8. The assembly line of claim 6 wherein the external housing of each station further comprises a material access opening through which assembly materials are input into the station.

9. The assembly line of claim 8 further comprising a material supply cabinet configured to store the assembly materials, wherein the material supply cabinet is aligned with the material access opening of one of the stations.

10. The assembly line of claim 9 wherein the station further comprises an assembly materials conveyor mechanism aligned with the material access opening and configured to receive the assembly materials input from the material supply cabinet.

11. The assembly line of claim 1 wherein the loading device further comprises an external housing on all sides, one side of the external housing having the output opening, further wherein the output opening of the loading device is aligned with the input opening of the first station.

12. The assembly line of claim 1 further comprising an unloading device coupled to a last station in the serially aligned plurality of stations.

13. The assembly line of claim 12 wherein the unloading device comprises a conveyor mechanism configured to input the device under assembly into the unloading device from the last station, further wherein the conveyor mechanism of the unloading device is aligned with the conveyor mechanism of the last station.

14. The assembly line of claim 13 wherein the unloading device further comprises a movable supply device coupled to the conveyor mechanism of the unloading device, wherein the movable supply device comprises a plurality of carrier tray holder shelves, each carrier tray holder shelf is configured to hold a carrier tray that carries the device under assembly, and the movable supply device is movable so as to selectively align one of the carrier tray holder shelves with the conveyor mechanism such that each carrier tray with the device under assembly is transported from an input opening in the unloading device to the movable supply device of the unloading device.

15. The assembly line of claim 14 wherein the unloading device further comprises an external housing on all sides, one side of the external housing having the input opening, further wherein the input opening of the unloading device is aligned with the output opening of the last station.

16. The assembly line of claim 1 wherein each station further comprises station electronics including a controller configured to automate operation of the station including operation of the module and the conveyor mechanism.

17. The assembly line of claim 16 further comprising a control network including the controller of each station of the plurality of stations.

18. The assembly line of claim 16 wherein each station further comprises a human interface machine coupled to the controller.

19. The assembly line of claim 16 wherein the controller is re-programmable to modify the one or more assembly steps performed by the module.

20. The assembly line of claim 1 further comprising a camera configured to perform visual monitoring corresponding to one or more assembly steps.

21. The assembly of claim 1 wherein one or more stations further comprises a second module configured to perform one or more assembly steps on the device under assembly.

22. The assembly of claim 21 wherein the module comprises a top-side module and the second module comprises a bottom-side module.

23. The assembly line of claim 1 where each station is interchangeable within the assembly line.

24. An assembly line configured to perform a plurality of assembly steps on a device under assembly, wherein the assembly line comprises:

a plurality of stations aligned serially, wherein each station is a stand-alone device and comprises:

a module configured to perform one or more assembly steps on the device under assembly;

a conveyor mechanism configured to receive as input the device under assembly, to transport the device under assembly to a defined work position, and to output the device under assembly from the station,

wherein the plurality of stations are serially aligned such that the conveyor mechanisms of adjacent stations are aligned to output the device under assembly from one station and to input the device under assembly to another adjacent station; and

an external housing on all sides of the station, one side of the external housing has an input opening through which the device under assembly is input into the station, wherein the input opening is aligned with the conveyor mechanism, further wherein another side of the external housing has an output opening through which the device under assembly is output from the station, wherein the output opening is aligned with the conveyor mechanism, further wherein the output opening of one station is aligned with the input opening of the other adjacent station, wherein the external housing further comprises a material access opening through which assembly materials are input into the station;

an assembly materials conveyor mechanism aligned with the material access opening and configured to receive the input assembly materials; and

station electronics including a controller configured to automate operation of the station including operation of the module, the conveyor mechanism, and the assembly materials conveyor mechanism;

one or more material supply cabinets each configured to store the assembly materials, wherein one of the material supply cabinets is aligned with a corresponding material access opening of one of the plurality of stations, further wherein the assembly materials conveyor mechanism of the station is configured to input the assembly materials from the material supply cabinet into the station;

a loading device coupled to a first station in the serially aligned plurality of stations, wherein the loading device comprises an external housing on all sides, one side of the external housing having an output opening, a first movable supply device having a plurality of carrier tray holder shelves, and a conveyor mechanism coupled to the first movable supply device, wherein each carrier tray holder shelf is configured to hold a carrier tray that carries the device under assembly, and the first movable supply device is movable so as to selectively align one of the carrier tray holder shelves with the conveyor mechanism such that each carrier tray with the device under assembly is selectively output from the loading device through the output opening, further wherein the output opening of the loading device is aligned with the input opening of the first station; and

an unloading device coupled to a last station in the serially aligned plurality of stations, wherein the unloading device comprises an external housing on all sides, one side of the external housing having an input opening, a second movable supply device having a plurality of carrier tray holder shelves, and a conveyor mechanism coupled to the second movable supply device, the second movable supply device is movable so as to selectively align one of the carrier tray holder shelves with the conveyor mechanism such that each carrier tray with the device under assembly is selectively input from the last station into the unloading device through the input opening, further wherein the input opening of the unloading device is aligned with the output opening of the last station.

25. An assembly line configured to perform a plurality of assembly steps on a device under assembly, wherein the assembly line comprises:

a plurality of stations aligned serially, wherein each station is a stand-alone device and comprises:

a module configured to perform one or more assembly steps on the device under assembly;

a conveyor mechanism configured to receive as input the device under assembly, to transport the device under assembly to a defined work position, and to output the device under assembly from the station; and

an external housing on all sides of the station,

wherein the plurality of stations are serially aligned such that the conveyor mechanisms of adjacent stations are aligned to output the device under assembly from one station and to input the device under assembly to an adjacent station; and

an unloading device coupled to a last station in the serially aligned plurality of stations, wherein the unloading device comprises a conveyor mechanism configured to input the device under assembly into the unloading device from the last station, further wherein the conveyor mechanism of the unloading device is aligned with the conveyor mechanism of the last station, wherein the unloading device further comprises a movable supply device coupled to the conveyor mechanism of the unloading device, wherein the movable supply device comprises a plurality of carrier tray holder shelves, each carrier tray holder shelf is configured to hold a carrier tray that carries the device under assembly, and the movable supply device is movable so as to selectively align one of the carrier tray holder shelves with the conveyor mechanism such that each carrier tray with the device under assembly is transported from an input opening in the unloading device to the movable supply device of the unloading device.

Assignments (9)
SECURITY INTEREST Recorded Jun 2, 2025
From: BRIGHT MACHINES, INC.; BRIGHT MACHINES AUTOMATION CORP.
To: STIFEL BANK
Reel/Frame 071467/0419 →
RELEASE OF SECURITY INTEREST IN INTELLECTUAL PROPERTY COLLATERAL AT REEL/FRAME NO. 67201/0797 Recorded Jun 2, 2025
From: JPMORGAN CHASE BANK, N.A.
To: BRIGHT MACHINES, INC.
Reel/Frame 071851/0097 →
TERMINATION AND RELEASE OF INTELLECTUAL PROPERTY SECURITY AGREEMENT AT REEL/FRAME NO. 58085/0124 Recorded May 29, 2025
From: HERCULES CAPITAL, INC.
To: BRIGHT MACHINES, INC.
Reel/Frame 071460/0482 →
TERMINATION AND RELEASE OF INTELLECTUAL PROPERTY SECURITY AGREEMENT AT REEL 057911 FRAME 0323 Recorded Apr 25, 2024
From: SILICON VALLEY BANK, A DIVISION OF FIRST-CITIZENS BANK & TRUST COMPANY (SUCCESSOR TO SILICON VALLEY BANK)
To: BRIGHT MACHINES, INC.
Reel/Frame 067238/0600 →
SECURITY INTEREST Recorded Apr 23, 2024
From: BRIGHT MACHINES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 067201/0797 →
SECURITY INTEREST Recorded Nov 11, 2021
From: BRIGHT MACHINES, INC.
To: HERCULES CAPITAL, INC.
Reel/Frame 058085/0124 →
SECURITY INTEREST Recorded Oct 26, 2021
From: BRIGHT MACHINES, INC.; BRIGHT MACHINES AUTOMATION CORP.
To: SILICON VALLEY BANK, AS ADMINISTRATIVE AGENT AND COLLATERAL AGENT
Reel/Frame 057911/0323 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2021
From: FLEXTRONICS AP, LLC
To: BRIGHT MACHINES, INC.
Reel/Frame 055707/0012 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2014
From: CHEUNG, DASON; KURWA, MURAD; KROG, TOR; WANG, XIUCHUAN; TAN, HAO
To: FLEXTRONICS AP, LLC
Reel/Frame 034093/0629 →
Continuity (1)
Provisional Application 61925587 · Jan 9, 2014