IP Library Granted Patent US 9,513,673
Granted Patent B2
US 9,513,673 · App. 13/351,096 · Granted Dec 6, 2016

Wide touchpad on a portable computer

Inventors: Steven P. Hotelling (San Jose, CA); Chris Ligtenberg (San Carlos, CA); Duncan Kerr (San Francisco, CA); Bartley K. Andre (Menlo Park, CA); Joshua A. Strickon (San Jose, CA); Brian Q. Huppi (San Francisco, CA); Imran Chaudhri (San Francisco, CA); Greg Christie (San Jose, CA); Bas Ording (San Francisco, CA)
Assignee: Apple Inc.
G06F1/169G06F1/1616G06F1/1684G06F3/03547G06F3/04883G06F3/04886
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Quick Facts
Patent No.
US 9,513,673
App. No.
13/351,096
Granted
Dec 6, 2016
Kind
B2
Abstract

In one exemplary embodiment, a portable computer having a display assembly coupled to a base assembly to alternate between a closed position and an open position. Palm rest areas are formed by a touchpad disposed on the surface of the base assembly. In an alternative embodiment, a touchpad disposed on the base assembly has a width that extends substantially into the palm rests areas of the base assembly.

Claims (31)

1. A portable computer, comprising:

a display assembly coupled to a base assembly;

a touchpad disposed on the base assembly, wherein the touchpad has a width that is half or greater than half a width of the base assembly and the touchpad includes a plurality of predefined regions, wherein the touchpad can detect an object in contact with a surface at any position on the touchpad within a first predefined region of the plurality of predefined regions; and

a processor coupled to the touchpad, wherein, in response to the processor determining that the contact is unintentional, the processor deactivates the first predefined region independently of a second predefined region of the plurality of predefined regions.

2. The portable computer of claim 1 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an intentional or unintentional contact based upon determining various characteristics of one or more contact patches on the touchpad.

3. The portable computer of claim 2 , wherein the various characteristics include contact patch location, trajectory, and size.

4. The portable computer of claim 1 , further comprising:

a keyboard disposed on a top surface of the base assembly, wherein the touchpad has a width that is substantially similar to a width of the keyboard or greater than a width of the keyboard.

5. The portable computer of claim 4 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an unintentional contact based upon detecting when a user's hand is positioned over the keyboard using a sensor disposed between the keyboard and the touchpad.

6. The portable computer of claim 4 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an unintentional contact based upon detecting when a user's hand is positioned over the keyboard using a sensor disposed in the display assembly.

7. The portable computer of claim 1 , wherein the touchpad comprises a capacitive sensor touchpad.

8. A portable computer, comprising:

a display assembly coupled to a base assembly;

a touchpad disposed on the base assembly, wherein the touchpad has a width that is between 100 millimeters and 400 millimeters and the touchpad includes a plurality of predefined regions, and wherein the touchpad can detect an object in contact with a surface at any position on the touchpad within a first predefined region of the plurality of predefined regions; and

a processor coupled to the touchpad, wherein, in response to the processor determining that the contact is unintentional, the processor deactivates the first predefined region independently of a second predefined region of the plurality of predefined regions.

9. The portable computer of claim 8 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an intentional or unintentional contact based upon determining various characteristics of one or more contact patches on the touchpad.

10. The portable computer of claim 9 , wherein the various characteristics include contact patch location, trajectory, and size.

11. The portable computer of claim 8 , further comprising:

a keyboard disposed on a top surface of the base assembly, wherein the touchpad has a width that is substantially similar to a width of the keyboard or greater than a width of the keyboard.

12. The portable computer of claim 11 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an unintentional contact based upon detecting when a user's hand is positioned over the keyboard using a sensor disposed between the keyboard and the touchpad.

13. The portable computer of claim 11 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an unintentional contact based upon detecting when a user's hand is positioned over the keyboard using a sensor disposed in the display assembly.

14. A portable computer comprising:

a display assembly coupled to a base assembly;

a touchpad disposed on the base assembly, wherein a width of the touchpad is substantially similar to a width of the base assembly and the touchpad includes a plurality of predefined regions, and wherein the touchpad can detect an object in contact with a surface at any position on the touchpad within a first predefined region of the plurality of predefined regions; and

a processor coupled to the touchpad, wherein, in response to the processor determining that the contact is unintentional, the processor deactivates the first predefined region independently of a second predefined region of the plurality of predefined regions.

15. The portable computer of claim 14 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an intentional or unintentional contact based upon determining the various characteristics of one or more contact patches on the touchpad.

16. The portable computer of claim 15 , wherein the various characteristics include contact patch location, trajectory, and size.

17. The portable computer of claim 14 , further comprising: a keyboard disposed on a top surface of the base assembly, wherein the touchpad has a width that is substantially similar to a width of the keyboard or greater than a width of the keyboard.

18. The portable computer of claim 17 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an unintentional contact based upon detecting when a user's hand is positioned over the keyboard using a sensor disposed between the keyboard and the touchpad.

19. The portable computer of claim 17 , wherein the processor estimates a probability that the object detected on the surface of the touchpad is an unintentional contact based upon detecting when a user's hand is positioned over the keyboard using a sensor disposed in the display assembly.

20. The portable computer of claim 14 , wherein the touchpad comprises a capacitive sensor touchpad.

Continuity (3)
Continuation 11731118 · Mar 30, 2007
Continuation 10927575 · Aug 25, 2004
Related Publication 20120113009A1 · May 10, 2012