IP Library Patent Application 15117631
Patent Application
App. No. 15/117,631

ELECTRONIC CONTROLLER HAPTIC DISPLAY WITH SIMULTANEOUS SENSING AND ACTUATION

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Quick Facts
Patent No.
US None
App. No.
15/117,631
Abstract

Touch interface devices having systems and methods for producing multi-point haptics utilizing simultaneous sensing and actuation, and electronic controllers for actuation thereof are disclosed. In a first configuration, two layers of electrodes are used, including a top layer for haptics near a touch surface of an insulating substrate and a deeper or bottom layer for sensing at a deeper layer or at the bottom surface of the insulating substrate, with the two electrode sets have substantially the same pattern as one another. In a second configuration, a single array of electrodes is used near a touch surface of an insulating substrate and serves as both surface haptic devices and sensing devices.

Claims (27)

1 - 5 . (canceled)

6 . A touch interface having simultaneous sensing and actuation comprising: an insulating substrate;

one or more electrodes connected to a front surface of the substrate, wherein the front surface electrodes are arranged in a pattern; and

wherein the front surface electrodes are configured in a control system that provides electronic current limiters that prevent perceptible conducted currents to a finger.

7 . (canceled)

8 . A haptic touch interface having simultaneous sensing and actuation comprising:

an insulating substrate;

one or more electrodes connected to a front surface of the substrate, wherein the front surface electrodes are arranged in a pattern; and

wherein flying logic is used to control actuation voltages to the front surface electrodes.

9 . The haptic touch interface of claim 8 wherein serial communication is used, via level shifters, to coordinate the flying logic with a main processor.

10 . The haptic touch interface of claim 9 wherein timing of voltages applied to the front surface electrodes is synchronized by a level shifted logic signal.

11 . The haptic touch interface of claim 9 wherein the timing of voltages applied to the front surface electrodes is synchronized by a time of arrival of a serial communication signal.

12 . A touch interface having simultaneous sensing and actuation comprising; an insulating substrate;

one or more electrodes connected to a front surface of the substrate, wherein the front surface electrodes are arranged in a pattern; and

wherein a charge that passes in the course of haptic actuation is used to estimate the capacitance of at least one front surface electrode.

13 . The touch interface of claim 12 wherein the charge is accumulated on a capacitor.

14 . The touch interface of claim 12 wherein the charge is estimated by repeated measures of current.

15 . The touch interface of claim 12 wherein the charge is estimated by an integration of the measure of current.

16 . The touch interface of claim 12 wherein the charge associated with both positive and negative actuation is summed.

17 . The touch interface of claim 12 wherein the charge is only measured on either positive or negative actuation.

18 . A touch interface having simultaneous sensing and actuation comprising:

an insulating substrate;

one or more electrodes connected to a front surface of the substrate, wherein the front surface electrodes are arranged in a pattern; and

wherein both positive and negative actuation supply voltages are derived from a single converter, wherein a sum of magnitudes of positive and negative actuation supply voltages is regulated.

19 . A method of finger position sensing on a touch interface wherein actual touch positions are distinguished from ghost touch positions by the use of fast sensing signals, comprising the steps of:

providing a touch interface having an insulating substrate and one or more electrodes connected to a front surface of the substrate, wherein the front surface electrodes are arranged in a pattern, and one or more electrodes are connected to a rear surface of the substrate, wherein the rear surface electrodes are aligned with and arranged in a substantially similar pattern to the pattern of the one or more front surface electrodes; and

providing fast sensing signals to the rear surface electrodes to measure capacitance to distinguish actual touch positions from ghost touch positions.

Assignments (3)
CONFIRMATORY LICENSE Recorded Sep 18, 2019
From: NORTHWESTERN UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 050413/0750 →
CORRECTIVE ASSIGNMENT TO CORRECT THE SECOND ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 039853 FRAME: 0640. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 8, 2017
From: OLLEY, MICHAEL F.D.; PESHKIN, MICHAEL A.; COLGATE, JAMES E.
To: NORTHWESTERN UNIVERSITY; TANVAS, INC.
Reel/Frame 043791/0434 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2016
From: OLLEY, MICHAEL F.D.; PESHKIN, MICHAEL A.; COLGATE, JAMES E.
To: NORTHWESTERN UNIVERSITY; TANVAS CORPORATION
Reel/Frame 039853/0640 →