IP Library Granted Patent US 9,535,532
Granted Patent B2
US 9,535,532 · App. 14/352,587 · Granted Jan 3, 2017

Method of acquiring data from a matrix touch sensor by performing global measurement and conditional sequential measurement

Inventors: Julien Olivier (Bordeaux, FR); Pascal Joguet (Sadirac, FR); Guillaume Largillier (Bordeaux, FR)
Assignee: NISSHA PRINTING CO., LTD.
G06F3/0416G06F1/3262G06F3/044G06F3/045
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Quick Facts
Patent No.
US 9,535,532
App. No.
14/352,587
Granted
Jan 3, 2017
Kind
B2
Abstract

A method of acquiring data of a matrix touch sensor including a matrix array of cells arranged according to a set of rows and columns, the method including: activating the cells arranged according to a column of at least one subset of columns of the matrix touch sensor; taking an overall measurement of an overall electrical characteristic on all the rows of at least one subset of rows of the matrix touch sensor; taking a sequential measurement of an electrical characteristic successively on each row of the at least one subset of rows, if the overall electrical characteristic has a value representative of a contact on at least one of the cells arranged according to the column; and repeating the overall measurement and sequential measurement after activating the cells arranged according to another column of the at least one subset of columns of the matrix touch sensor.

Claims (43)

1. A method of acquiring data from a matrix touch sensor including a matrix network of cells disposed in a set of rows and columns, the method comprising:

activating the cells disposed in a column of at least one subset of columns of the matrix touch sensor;

performing global measurement of a global electrical characteristic over all the rows of at least one subset of rows in the column of the matrix touch sensor;

performing, using processing circuitry, sequential measurement, only when the global electrical characteristic has a value representing a contact over at least one of the cells disposed in the column, of an electrical characteristic successively over each row of the at least one subset of rows in only the column where the global measurement is performed, the sequential measurement being performed by disconnecting all rows in the at least one subset of rows in the column from a measuring circuit, connecting a first row in the at least one subset of rows in the column to the measuring circuit, measuring an electrical signal, disconnecting the first row from the measuring circuit when the electrical signal is not measured, repeating the connecting and the disconnecting sequentially for each row in the at least one subset of rows in the column until the electrical signal is detected, and recording a location of a detected row in the at least one subset of rows in the column where the electrical signal is detected; and

when the global electrical characteristic has no value representing a contact over any of the cells disposed in the column, without performing the sequential measurement for the rows in the column where the global measurement is performed, reiterating the performing global measurement and the performing sequential measurement after activating the cells disposed in another column of at least one subset of columns of the matrix touch sensor.

2. The method of acquiring data according to claim 1 , further comprising performing a data acquisition standby mode when, after activation of the cells of all the columns of the at least one subset of columns, no global electrical characteristic measured has a value representing a contact, the data acquisition standby mode comprising:

activating the cells disposed in all the columns of at least one subset of columns of the matrix touch sensor; and

performing global measurement of a global electrical characteristic over all the rows of the at least one subset of rows of the matrix touch sensor.

3. The method of acquiring data according to claim 2 , wherein the data acquisition standby mode is suspended when a measured global electrical characteristic has a value representing a contact.

4. The method of acquiring data according to claim 1 , wherein the electrical characteristic measured is a voltage, the global electrical characteristic being measured at terminals of the rows of the at least one subset of rows connected in parallel.

5. The method of acquiring data according to claim 1 , wherein the subset of columns and the subset of rows of the matrix touch sensor correspond to a zone of interest of a touch surface of the matrix touch sensor.

6. The method of acquiring data according to claim 5 , wherein

the matrix touch sensor is disposed adjacent to a display screen, and

the zone of interest corresponds to a zone for displaying a virtual graphical object on the display screen.

7. The method of acquiring data according to claim 1 , further comprising:

storing coordinates in the matrix touch sensor corresponding to a location of an activated cell when an electrical characteristic having a value representing a contact is measured during the sequential measurement.

8. The method of acquiring data according to claim 1 , wherein, when an application is implemented on the matrix touch sensor, the activating, the performing global measurement, and the performing sequential measurement are performed only with respect to the subset of columns and the subset of rows of the matrix touch sensor, the subset of columns excluding at least a part of the columns of the matrix touch sensor, the subset of rows excluding at least a part of the rows of the matrix touch sensor.

9. The method of acquiring data according to claim 8 , wherein the subset of columns and the subset of rows of the matrix touch sensor correspond to zones of virtual graphical objects for user manipulation.

10. The method of acquiring data according to claim 1 , wherein the global measurement is performed without sequentially scanning the rows of the at least one subset of rows in the column, the global measurement enabling detection of whether or not a contact is present at any rows of the subset of rows in the column without enabling detection of a row location of the contact.

11. A matrix touch sensor comprising:

a matrix network of cells disposed in a set of rows and columns;

a sensor interface; and

processing circuitry configured to

activate the cells disposed in a column of at least one subset of columns of the matrix touch sensor;

perform global measurement of a global electrical characteristic over all the rows of at least one subset of rows in the column of the matrix touch sensor;

perform sequential measurement, only when the global electrical characteristic has a value representing a contact over at least one of the cells disposed in the column, of an electrical characteristic successively over each row of the at least one subset of rows in the column where the global measurement is performed, the sequential measurement being performed by disconnecting all rows in the at least one subset of rows in the column from a measuring circuit, connecting a first row in the at least one subset of rows in the column to the measuring circuit, measuring an electrical signal, disconnecting the first row from the measuring circuit when the electrical signal is not measured, repeating the connecting and the disconnecting sequentially for each row in the at least one subset of rows in the column until the electrical signal is detected, and recording a location of a detected row in the at least one subset of rows in the column where the electrical signal is detected; and

when the global electrical characteristic has no value representing a contact over any of the cells disposed in the column, without performing the sequential measurement for the rows in the column where the global measurement is performed, reiterate the performing global measurement and the performing sequential measurement after activating the cells disposed in another column of at least one subset of columns of the matrix touch sensor.

12. The matrix touch sensor according to claim 11 , wherein

the rows and columns are constituted by conductive tracks,

the cells are defined at an intersection of the conductive tracks, and

the measured electrical characteristic represents a level of impedance of each cell.

13. The matrix touch sensor according to claim 11 , wherein the rows of at least one subset of rows of the matrix touch sensor are connected via the sensor interface to the processing circuitry.

14. A touch screen comprising:

a display screen; and

a matrix touch sensor including

a matrix network of cells disposed in a set of rows and columns;

a sensor interface; and

processing circuitry configured to

activate the cells disposed in a column of at least one subset of columns of the matrix touch sensor;

perform global measurement of a global electrical characteristic over all the rows of at least one subset of rows in the column of the matrix touch sensor;

perform sequential measurement, only when the global electrical characteristic has a value representing a contact over at least one of the cells disposed in the column, of an electrical characteristic successively over each row of the at least one subset of rows in the column where the global measurement is performed, the sequential measurement being performed by disconnecting all rows in the at least one subset of rows in the column from a measuring circuit, connecting a first row in the at least one subset of rows in the column to the measuring circuit, measuring an electrical signal, disconnecting the first row from the measuring circuit when the electrical signal is not measured, repeating the connecting and the disconnecting sequentially for each row in the at least one subset of rows in the column until the electrical signal is detected, and recording a location of a detected row in the at least one subset of rows in the column where the electrical signal is detected; and

when the global electrical characteristic has no value representing a contact over any of the cells disposed in the column, without performing the sequential measurement for the rows in the column where the global measurement is performed, reiterate the performing global measurement and the performing sequential measurement after activating the cells disposed in another column of at least one subset of columns of the matrix touch sensor, wherein

the display screen is adjacent to the matrix touch sensor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2016
From: STANTUM
To: NISSHA PRINTING CO., LTD.
Reel/Frame 038782/0850 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 17, 2014
From: OLIVIER, JULIEN; JOGUET, PASCAL; LARGILLIER, GUILLAUME
To: STANTUM
Reel/Frame 032702/0568 →
Priority Claims (1)
FR 11 59502 · Oct 20, 2011 · national
Continuity (1)
Related Publication 20140247236A1 · Sep 4, 2014