IP Library › Granted Patent US 12,115,605
Granted Patent B2
US 12,115,605 · App. 16/871,205 · Granted Oct 15, 2024

Welding systems and devices having a configurable personal computer user interface

Inventors: William Joshua Becker (Manitowoc, WI); Alan Edward Stein (Little Chute, WI); John Alan Luck (Appleton, WI)
Assignee: ILLINOIS TOOL WORKS INC.
B23K9/0953B23K9/1062B23K9/1087
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Quick Facts
Patent No.
US 12,115,605
App. No.
16/871,205
Granted
Oct 15, 2024
Kind
B2
Abstract

A welding system includes a welding power source having a user interface disposed thereon and a weld controller disposed therein and being adapted to generate a welding power output for use in a welding operation. The welding system also includes a personal computer having control circuitry disposed therein and being removably interfaced with the welding power source via a docking mechanism. When the personal computer is docked within the docking mechanism, the personal computer is enabled for receiving operator input, and the control circuitry communicates with the weld controller to coordinate control of a welding operation in accordance with the operator input.

Claims (33)

1. A welding power source, comprising:

power conversion circuitry configured to receive input power from an input power source, convert the input power to output power, and provide the output power to one or more welding devices;

control circuitry in electrical communication with the power conversion circuitry, the control circuitry configured to control the conversion of the power conversion circuitry;

a universal serial bus (USB) hub configured to connect with a USB port of a computing device, the USB hub being in electrical communication with the control circuitry such that the computing device and the control circuitry are enabled to coordinate control of the power conversion circuitry when the USB port of the computing device is connected with the USB hub; and

a computer power supply connected directly to the power conversion circuitry and configured to provide power to the computing device.

2. The welding power source of claim 1 , further comprising a USB to RS485 converter, wherein the USB hub is in electrical communication with the control circuitry through the USB to RS485 converter.

3. The welding power source of claim 1 , wherein the computer power supply is configured to receive the input power from the input power source and modify the input power to generate a computer power output.

4. The welding power source of claim 3 , further comprising a power switch positioned in series between the input power source and the power conversion circuitry such that the input power to the power conversion circuitry may be switched on or off by the power switch.

5. The welding power source of claim 4 , wherein the computer power supply is positioned in parallel with the power switch such that the computer power supply may continue to receive the input power when the power switch is in the off setting.

6. The welding power source of claim 5 , wherein the computer power supply comprises an alternating current (AC) to direct current (DC) power supply.

7. A welding system, comprising:

a welding power source, comprising:

power conversion circuitry configured to receive input power from an input power source, convert the input power to output power, and provide the output power to one or more welding devices,

control circuitry in electrical communication with the power conversion circuitry, the control circuitry configured to control the conversion of the power conversion circuitry,

a universal serial bus (USB) hub configured to connect with a USB port of a computing device, the USB hub being in electrical communication with the control circuitry such that the computing device and control circuitry are enabled to coordinate control of the power conversion circuitry when the USB port of the computing device is connected with the USB hub; and

a computer power supply connected directly to the power conversion circuitry and configured to provide power to the computing device.

8. The welding system of claim 7 , wherein the welding power source further comprises a USB to RS485 converter, wherein the USB hub is in electrical communication with the control circuitry through the USB to RS485 converter.

9. The welding system of claim 7 , wherein the welding power source further comprises a computer power supply configured to couple to the computing device, the computer power supply configured to receive the input power from the input power source and modify the input power to generate a computer power output.

10. The welding system of claim 9 , wherein the welding power source further comprises a power switch positioned in series between the input power source and the power conversion circuitry such that the input power to the power conversion circuitry may be switched on or off by the power switch.

11. The welding system of claim 10 , wherein the computer power supply is positioned in parallel with the power switch such that the computer power supply may continue to receive the input power when the power switch is in the off setting.

12. The welding system of claim 7 , further comprising the computing device, the computing device comprising memory circuitry comprising a plurality of stored customizations.

13. The welding system of claim 12 , wherein the computing device further comprises a user interface configured to receive an input corresponding to a stored user customization, the memory circuitry configured to retrieve the stored user customization from the plurality of stored customizations in response to the input, wherein the stored user customization comprises a customized control interface or customized power source settings.

14. A retrofit kit for a welding power source, comprising:

a USB hub configured to electrically connect to a USB port of a computing device;

a USB to RS485 converter configured to electrically connect to the USB hub and control circuitry of the welding power source; and

a computer power supply configured to:

electrically connect with the computing device; and

electrically connect with an input power source of the welding power source at a location upstream from, or in parallel with, a power switch of the welding power source, wherein the computer power supply is powered by the input power source and configured to enable the computing device to utilize the input power source when the welding power source is powered off.

15. The retrofit kit of claim 14 , further comprising a dock configured to secure the computing device to a housing of the welding power source.

16. The retrofit kit of claim 15 , wherein the dock comprises a bracket configured to be coupled to a top surface of a housing of the welding power source, or a mounting device configured to be coupled to a side surface of the housing.

17. The retrofit kit of claim 14 , further comprising a wireless remote receiver.

18. The retrofit kit of claim 14 , wherein the computer power supply is configured to receive the input power from the input power source and modify the input power to generate a computer power output.

19. The retrofit kit of claim 14 , wherein the computer power supply comprises an alternating current (AC) to direct current (DC) power supply.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2020
From: BECKER, WILLIAM JOSHUA; STEIN, ALAN EDWARD; LUCK, JOHN ALAN
To: ILLINOIS TOOL WORKS INC.
Reel/Frame 052622/0451 →
Continuity (3)
Continuation 13969043 · Aug 16, 2013
Provisional Application 61698364 · Sep 7, 2012
Related Publication 20200269339A1 · Aug 27, 2020
Cited By (1)
US 12,703,415