IP Library › Granted Patent US 11,221,703
Granted Patent B2
US 11,221,703 · App. 15/734,600 · Granted Jan 11, 2022

Pressure sensing apparatus and method

Inventors: Paul Routley (Cambridge, GB); Babak Bastani (Palo Alto, CA); Riccardo Micci (Cambridge, GB); Arokia Nathan (Cambridge, GB); Michael Astley (Cambridge, GB); Xiang Cheng (Cambridge, GB); Jiahao Li (Cambridge, GB)
Assignee: Cambridge Touch Technologies Ltd.
G06F3/0414G06F3/0412G06F3/0416G06F3/0418G06F3/0443G06F3/0445G06F3/0446G06F3/04144G06F3/04166G06F3/04186G06F2203/04104G06F2203/04105G06F2203/04106G06F2203/04107
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,221,703
App. No.
15/734,600
Granted
Jan 11, 2022
Kind
B2
Abstract

An apparatus ( 22 ) for processing signals from a touch panel ( 10 ) is described. The touch panel ( 10 ) includes a layer of piezoelectric material ( 16 ) disposed between a plurality of sensing electrodes ( 14, 20 ) and at least one common electrode ( 15 ). The apparatus ( 22 ) includes a first circuit ( 23 ) for connection to the plurality of sensing electrodes ( 14, 20 ). The first circuit ( 23 ) is configured to generate one or more first pressure signals ( 29 ). Each first pressure signal ( 29 ) corresponds to one or more sensing electrodes ( 14, 20 ) and is indicative of a pressure acting on the touch panel ( 10 ) proximate to the corresponding one or more sensing electrodes ( 14, 20 ). The apparatus also includes a second circuit ( 24 ) for connection to the at least one common electrode ( 15 ). The second circuit ( 24 ) is configured to generate a second pressure signal ( 30 ) indicative of a total pressure applied to the touch panel ( 10 ). The apparatus also includes a controller ( 25 ) configured to determine an estimate of the total pressure based on a weighted difference of the second pressure signal ( 30 ) and a sum over the one or more first pressure signals ( 29 ).

Claims (34)

1. An apparatus for processing signals from a touch panel, the touch panel comprising a layer of piezoelectric material disposed between a plurality of sensing electrodes and at least one common electrode, the apparatus comprising:

a first circuit comprising:

a capacitive touch controller for connection to the plurality of sensing electrodes;

a charge amplifier for connection to each of the plurality of sensing electrodes via an impedance network, the charge amplifier configured to output a first pressure signal corresponding to all of the plurality of sensing electrodes, wherein the first pressure signal is indicative of a pressure acting on the touch panel proximate to the plurality of sensing electrodes;

a second circuit comprising a common electrode charge amplifier for connection to the at least one common electrode and configured to generate a second pressure signal indicative of a total pressure applied to the touch panel; and

a controller configured to determine an estimate of the total pressure based on a weighted difference of the second pressure signal and the first pressure signal.

2. The apparatus according to claim 1 , wherein the controller is further configured to determine a location at which pressure is applied to the touch panel;

wherein a coefficient used for the weighted difference of the second pressure signal and the first pressure signals depends upon the location.

3. The apparatus according to claim 1 , wherein the controller determines the estimate of the total pressure using equation:

F CE =(1− C CE ) Q CE C CE Q sen

in which F CE is a piezoelectric charge induced on the at least one common electrode, Q CE is a charge measured on the at least one common electrode, Q sen is a sum of charges measured on all of the plurality of sensing electrodes, and C CE is a pre-calibrated constant having a value between zero and unity;

wherein the estimate of the total pressure is based on F CE .

4. The apparatus according to claim 1 , wherein the first circuit is configured to generate, for each sensing electrode of the plurality of sensing electrodes, a capacitance signal indicative of a capacitance of the each sensing electrode;

wherein the controller is configured to determine a location at which pressure is applied to the touch panel based on the capacitance signals.

5. The apparatus according to claim 4 , wherein generating the first pressure signals and the capacitance signals comprises separating single signals received from the plurality of sensing electrodes.

6. The apparatus according to claim 1 , further comprising a differential amplifier configured to receive the first pressure signal and the second pressure signal, and to output a weighted difference of the received first pressure signal and the second pressure signal to the controller;

wherein the controller is configured to determine the estimate of the total pressure based on the weighted difference received from the differential amplifier.

7. A touch panel system comprising:

the apparatus according to claim 1 ; and

the touch panel comprising a layer of piezoelectric material disposed between the plurality of sensing electrodes and the at least one common electrode.

8. An electronic device comprising the touch panel system according to claim 7 .

9. A method of processing signals from a touch panel, the touch panel comprising a layer of piezoelectric material disposed between a plurality of sensing electrodes and at least one common electrode, the method comprising:

generating a first pressure signals, the first pressure signal based on signals received from all of the plurality of sensing electrodes, and output from a charge amplifier connected to each of the plurality of sensing electrodes via an impedance network, wherein the first pressure signal is indicative of a pressure acting on the touch panel proximate to the plurality of sensing electrodes;

generating, based on signals received from the at least one common electrode by a common electrode charge amplifier, a second pressure signal indicative of a total pressure applied to the touch panel; and

determining an estimate of the total pressure based on a weighted difference of the second pressure signal and the first pressure signal.

10. The method according to claim 9 , further comprising determining a location at which pressure is applied to the touch panel;

wherein a coefficient used for the weighted difference of the second pressure signal and the first pressure signals-depends upon the location.

11. The method according to claim 9 , wherein determining the estimate of the total pressure applied to the touch panel comprises using the equation:

F CE =(1− C CE ) Q CE −C CE Q sen

in which F CE is a piezoelectric charge induced on the at least one common electrode, Q CE is a charge measured on the at least one common electrode, Q sen is a sum of charges measured on all of the plurality of sensing electrodes and C CE is a pre-calibrated constant having a value between zero and unity;

wherein the estimate of the total pressure is based on F CE .

12. The method according to claim 9 , comprising generating, based on signals received from each sensing electrode of the plurality of sensing electrodes, a capacitance signal indicative of a capacitance of the each sensing electrode;

the method further comprising determining a location at which pressure is applied to the touch panel based on the capacitance signals.

13. The method according to claim 12 , wherein generating the first pressure signal and the capacitance signals comprises separating single signals received from the plurality of sensing electrodes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2021
From: LI, JIAHAO; MICCI, RICCARDO; BASTANI, BABAK; ROUTLEY, PAUL; NATHAN, AROKIA; ASTLEY, MICHAEL; CHENG, XIANG
To: CAMBRIDGE TOUCH TECHNOLOGIES LTD.
Reel/Frame 058004/0341 →
Priority Claims (1)
GB 1809320 · Jun 6, 2018 · national
Continuity (1)
Related Publication 20210232257A1 · Jul 29, 2021
Cited By (2)
US 12,282,627 US 12,315,466