IP Library Granted Patent US 10,372,232
Granted Patent B2
US 10,372,232 · App. 15/112,500 · Granted Aug 6, 2019

Keyboard devices with flexible layers and lattice substrates

Inventor: Chien-Kuo Lee (Taipei, TW)
Assignee: Hewlett-Packard Development Company, L.P.
G06F3/0221G06F3/0202G06F3/044G06F2203/04111
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Quick Facts
Patent No.
US 10,372,232
App. No.
15/112,500
Granted
Aug 6, 2019
Kind
B2
Abstract

A keyboard device includes a flexible layer, electrical traces on the flexible layer and a lattice substrate to support the flexible layer. The keyboard device further includes a key actuatable to contact the flexible layer and to stretch at least a portion of the flexible layer into an opening in the lattice substrate and a sensor to detect a change of capacitance of the electrical traces in response to actuation of the key by a conductive object.

Claims (26)

1. A keyboard device comprising:

a flexible layer;

electrical traces printed on the flexible layer, wherein the electrical traces comprise a first electrical trace and a second electrical trace, the first electrical trace overlaps the second electrical trace to form corresponding nodes at intersection points of the first and second electrical traces, and the nodes comprise a first node;

a lattice substrate to support the flexible layer, wherein the flexible layer is disposed outside of an opening in the lattice substrate such that the first node is disposed outside of the opening;

a key actuatable to contact the flexible layer and to stretch at least a portion of the flexible layer into the opening in the lattice substrate from outside of the opening to cause the first node to stretch into the opening by the key becoming disposed within the opening if actuated; and

a sensor connected to the first trace and the second trace to detect a change of capacitance of the first and second electrical traces in response to actuation of the key by a conductive object.

2. The keyboard device of claim 1 wherein the key is disposed on the flexible layer in alignment with the opening in the lattice substrate.

3. The keyboard device of claim 1 , wherein a node of the plurality of nodes is substantially aligned with a corresponding opening of the lattice substrate.

4. The keyboard device of claim 1 , wherein a node of the plurality of nodes is substantially aligned with a corresponding key.

5. The keyboard device of claim 1 , wherein the portion of the flexible layer stretched into the opening in the lattice substrate comprises a node of the plurality of nodes.

6. The keyboard device of claim 1 , wherein the key is a key cap.

7. A keyboard device comprising:

a flexible film;

electrical traces printed on the flexible film, wherein the electrical traces comprise a first electrical trace and a second electrical trace, the first electrical trace overlaps the second electrical trace to form corresponding nodes at intersection points of the first and second electrical traces, and the nodes comprise a first node;

a lattice structure to support the flexible film, wherein the lattice structure having an opening and the flexible film being disposed outside of the opening such that the first node is disposed outside of the opening;

a depressible element to contact and stretch the flexible film into the opening to cause the first node to stretch into the opening from outside of the opening by the depressible element becoming disposed within the opening if depressed; and

a sensor connected to the first trace and the second trace to detect a change of capacitance of the first and second electrical traces in response to depression of the element by a conductive object to contact the flexible film.

8. The keyboard device of claim 7 , wherein the depressible element is moveable with respect to the lattice structure to stretch the flexible film.

9. A method of manufacturing a keyboard device comprising:

printing electrical traces on a flexible layer, wherein the electrical traces comprise a first electrical trace and a second electrical trace, the first electrical trace overlaps the second electrical trace to form corresponding nodes at intersection points of the first and second electrical traces, and the nodes comprise a first node;

disposing the flexible layer on a lattice substrate, wherein the flexible layer is disposed outside of an opening in the lattice substrate such that the first node is disposed outside of the opening;

providing a key movable into the opening of the lattice substrate for contacting the flexible layer and stretching a portion of the flexible layer into the opening of the lattice substrate from outside of the opening to cause the first node to stretch into the opening by the key becoming disposed within the opening if actuated; and

providing a sensor connected to the first trace and the second trace for detecting a change of capacitance of the first and second electrical traces in response to actuation of the key by a conductive object to contact the flexible layer.

10. The method of claim 9 , wherein providing the key for contacting the flexible layer comprises disposing the key on the flexible layer in alignment with the opening of the lattice substrate.

11. The method of claim 9 , wherein printing the electrical traces on the flexible layer comprises printing the electrical traces on the flexible layer to form a grid defining a plurality of nodes.

12. The method of claim 9 , further comprising extending the flexible layer to an extended state, printing the electrical traces on the flexible layer in the extended state and releasing the flexible layer from the extended state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2016
From: LEE, CHIEN-KUO
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 039417/0358 →
Continuity (1)
Related Publication 20160370874A1 · Dec 22, 2016
Cited By (1)
US 1,127,807