IP Library Granted Patent US 7,781,980
Granted Patent B2
US 7,781,980 · App. 12/239,369 · Granted Aug 24, 2010

Intelligent user interface including a touch sensor device

Assignee: Azoteq Pty Ltd.
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Quick Facts
Patent No.
US 7,781,980
App. No.
12/239,369
Granted
Aug 24, 2010
Kind
B2
Abstract

The present invention, according to a preferred embodiment, is directed to portable electronic devices which operate on exhaustible power sources, for example, batteries. The electronic devices of the present invention comprise at least one signal switch and a microchip in communication with the switch wherein the switch is only capable of transmitting a signal to the microchip that the switch has been activated or deactivated. The microchip is in communication with the exhaustible power source of the electronic device and controls (i) the power on/off function of the device, (ii) at least one other function of the device in response to activation and deactivation signals from the switch, and (iii) an automatic shut off function in response to the receipt of an activation signal from the switch.

Claims (38)

1. An electronic module for use with a product, said product comprising a power source or a connection for a power source, and an energy consuming load, said module also comprising,

a circuit comprising a microchip and a touch sensor forming part of a user interface, wherein the microchip also controls a visible indicator that is activated in response to an activation signal received from the user interface when the load is not activated by the user.

2. An electronic module according to claim 1 , wherein the power source is mains.

3. An electronic module according to claim 1 , wherein the power source is non-mains and contained in the product housing.

4. An electronic module according to claim 1 , wherein the user interface enables selection of activation and deactivation functions of the product.

5. An electronic module according to claim 4 , wherein the visible indicator also gives an indication of the product condition or state of the product.

6. An electronic module according to claim 4 , wherein a function selected and activated via a user interface activation signal is automatically shut off after a predetermined period of time.

7. An electronic module according to claim 6 , wherein the product it works with comprises audio signals generating circuitry or radio frequency circuitry.

8. An electronic module according to claim 7 , wherein the indicator also shows a state or condition of the product.

9. An electronic module according to claim 8 , wherein the user interface is implemented using conductive paint or similar substance.

10. An electronic module according to claim 8 , wherein the user interface is implemented using flexible tape comprising conductive material.

11. An electronic module according to claim 7 , wherein a touch sensor switch is connected to the circuit or the microchip with only one connection and is used to adjust the power level to the load.

12. An electronic module according to claim 1 , wherein a location indicator is activated and is then subject to an automatic time out.

13. An electronic module according to claim 12 , wherein the location indicator is controlled by the microchip to have a duty cycle.

14. An electronic module according to claim 12 , wherein a function selected and activated by a user interface activation signal, automatically shuts off, a predetermined period of time after a signal was received from the user interface switch.

15. An electronic module according to claim 14 , wherein the user interface is implemented using conductive paint or similar substance.

16. An electronic module according to claim 15 , wherein the product comprises an electric motor.

17. An electronic module according to claim 15 , wherein a touch sensor switch is connected to the circuit and/or the microchip with only one connection and is used to adjust the power to the load.

18. An electronic module according to claim 14 , wherein the user interface is implemented using flexible tape comprising conductive material.

19. An electronic module according to claim 18 , wherein the product comprises an electric motor.

20. An electronic module according to claim 14 , wherein the power source is non-mains and contained in the product housing.

21. An electronic module according to claim 14 , adapted for use with a product comprising radio frequency (RF) circuitry.

22. An electronic module according to claim 14 , wherein a touch sensor switch is connected to the circuit and/or the microchip with only one connection and is used to adjust the power to the load.

23. An electronic module according to claim 22 , wherein the location indicator is an LED.

24. An electronic module according to claim 12 , wherein the product it works with comprises audio signals generating circuitry and radio frequency circuitry.

25. An electronic module according to claim 12 , wherein the product comprises an electric motor.

26. An electronic module according to claim 25 , wherein the electric motor is connected to a fan.

27. An electronic module according to claim 12 , adapted for use with a product comprising radio frequency (RF) circuitry.

28. An electronic module according to claim 12 , wherein a touch sensor switch is connected to the circuit and/or the microchip with only one connection and is used to adjust the power level to the load.

29. An electronic module according to claim 12 , wherein the location indicator is an LED.

30. An electronic module according to claim 1 , wherein a function selected and activated by a user interface activation signal is automatically shut off after a predetermined period of time.

31. An electronic module according to claim 1 , wherein the indicator is at least an LED.

32. An electronic module according to claim 1 , wherein the indicator also shows a state or condition of the product.

33. An electronic module according to claim 32 , adapted to be positioned as a serial element in the circuit that transfers power from the power source to the load, wherein the power switch is in parallel to the microchip, the module comprises an energy storage element to power the microchip at least when the power switch is conducting power to the load.

34. An electronic module according to claim 1 , wherein the user interface is implemented using conductive paint or similar substance.

35. An electronic module according to claim 1 , wherein the user interface is implemented using flexible tape comprising conductive material.

36. An electronic module according to claim 1 , adapted for use with a product comprising radio frequency (RF) circuitry, an electric motor and audio signal generating circuitry.

37. An electronic module according to claim 1 , adapted to be positioned as a serial element in the circuit that transfers power from the power source to the load, wherein the power switch is in parallel to the microchip, the module comprises an energy storage element to power the microchip at least when the power switch is conducting power to the load.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2013
From: AZOTEQ HOLDINGS LTD.
To: GLOBAL TOUCH SOLUTIONS, LLC
Reel/Frame 030654/0735 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2010
From: BRUWER, FREDERICK J.
To: AZOTEQ PTY LTD.
Reel/Frame 023991/0851 →
Continuity (7)
Continuation 1196172300 · Dec 20, 2007
Division 1106032900 · Feb 17, 2005
Continuation 1069042300 · Oct 21, 2003
Continuation 1036504200 · Feb 12, 2003
Continuation 0979330300 · Feb 26, 2001
Continuation 0916939500 · Oct 9, 1998
Related Publication 20090015420A1 · Jan 15, 2009