Movatterモバイル変換


[0]ホーム

URL:


US20150338966A1 - Touch sensing method, processor and system - Google Patents

Touch sensing method, processor and system
Download PDF

Info

Publication number
US20150338966A1
US20150338966A1US14/819,768US201514819768AUS2015338966A1US 20150338966 A1US20150338966 A1US 20150338966A1US 201514819768 AUS201514819768 AUS 201514819768AUS 2015338966 A1US2015338966 A1US 2015338966A1
Authority
US
United States
Prior art keywords
sensing information
values
touch
value
line piece
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US14/819,768
Inventor
Chin-Fu Chang
Shang-Tai Yeh
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Egalax Empia Technology Inc
Original Assignee
Egalax Empia Technology Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Egalax Empia Technology IncfiledCriticalEgalax Empia Technology Inc
Priority to US14/819,768priorityCriticalpatent/US20150338966A1/en
Assigned to EGALAX_EMPIA TECHNOLOGY INC.reassignmentEGALAX_EMPIA TECHNOLOGY INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CHANG, CHIN-FU, YEH, SHANG-TAI
Publication of US20150338966A1publicationCriticalpatent/US20150338966A1/en
Priority to US15/066,473prioritypatent/US10162468B2/en
Abandonedlegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

The invention provides a touch sensing method. The touch sensing method comprises the following steps: determining that a 1D sensing information comprises a first line piece if at least one value of the first line piece is higher than a preset range, or all values of the first line piece are within the preset range, wherein the 1D sensing information comprises a plurality of values, and the first line piece comprises part of the values.

Description

Claims (20)

What is claimed is:
1. A touch sensing method, comprising:
determining that a 1D sensing information comprises a first line piece if at least one value of the first line piece is higher than a preset range, or all values of the first line piece are within the preset range, wherein the 1D sensing information comprises a plurality of values, and the first line piece comprises part of the values.
2. The method ofclaim 1, further comprising:
determining at least one touch group based on the overlapping relationships between two line pieces of two adjacent parallel 1D sensing information, wherein each line piece and at least one other line piece in the touch group are in adjacent 1D sensing information respectively, and the touch group reaches at least one of the following conditions:
the ratio of overlapping between the line piece and the at least one other line piece in the same touch group exceeds a ratio threshold;
the number of values that are overlapped by the line piece and the at least one other line piece in the same touch group exceeds a threshold; or
the distance between the centroid locations of the line pieces is within a distance threshold; and
keeping the touch group if at least one value of at least one line piece of the touch group is higher than the preset range.
3. The method ofclaim 2, wherein the touch group comprises a plurality of line pieces of a plurality of adjacent parallel 1D sensing information.
4. The method ofclaim 1, wherein the preset range comprises a first threshold and a second threshold.
5. The method ofclaim 4, wherein the first threshold is a positive value, and the second threshold is a negative value.
6. The method ofclaim 5, wherein the determining of each line piece corresponding to touch or proximity of an external conductive object in each 1D sensing information includes extending forward and backward from a value greater than a positive threshold to at least one negative value, or extending forward and backward from a value less than a negative threshold to at least one positive value, and each line piece is determined based on one or any combination of the following group:
values of the 1D sensing information, wherein each 1D sensing information is obtained by mutual-capacitive detection, and when at least one adjacent first conductive strip in a plurality of first conductive strips arranged along the first axis is provided with a driving signal, each 1D sensing information is generated based on the plurality of second conductive strips arranged along the second axis;
differential values of the values of the 1D sensing information, wherein each differential value is generated based on two adjacent second conductive strips, and each line piece is a combination of a set of at least one positive value or continuous positive values and an adjacent set of at least one negative value or continuous negative values, wherein at least one positive value in the continuous positive values is greater than the positive threshold, and at least one negative value in the continuous negative values is greater than the negative threshold; or
dual differential values of the values of the 1D sensing information, wherein each dual differential value is generated based on three adjacent second conductive strips, and each line piece is a combination of continuous adjacent at least one negative value, at least one positive value, and at least one negative value, respectively, or continuous adjacent at least one positive value, at least one negative value, and at least one positive value, respectively.
7. The method ofclaim 4, further comprising the step of increasing the first threshold of the preset range when the 1D sensing information comprises at least one third line piece, and at least one value of the at least one third line piece is lower than the preset range.
8. The method ofclaim 1, further comprising the step of updating the base line values of the 1D sensing information except the first line piece if the 1D sensing information comprises a third line piece with at least one value lower than the preset range.
9. A touch processor, performing the following steps:
determining that a 1D sensing information comprises a first line piece if at least one value of the first line piece is higher than a preset range, or all values of the first line piece are within the preset range, wherein the 1D sensing information comprises a plurality of values, and the first line piece comprises part of the values.
10. The touch processor ofclaim 9, further performing the following steps:
determining at least one touch group based on the overlapping relationships between two line pieces of two adjacent parallel 1D sensing information, wherein each line piece and at least one other line piece in the touch group are in adjacent 1D sensing information respectively, and the touch group reaches at least one of the following conditions:
the ratio of overlapping between the line piece and the at least one other line piece in the same touch group exceeds a ratio threshold;
the number of values that are overlapped by the line piece and the at least one other line piece in the same touch group exceeds a threshold; or
the distance between the centroid locations of the line pieces is within a distance threshold; and
keeping the touch group if at least one value of at least one line piece of the touch group is higher than the preset range.
11. The touch processor ofclaim 10, wherein the touch group comprises a plurality of line pieces of a plurality of adjacent parallel 1D sensing information.
12. The touch processor ofclaim 10, wherein the preset range comprises a first threshold and a second threshold.
13. The touch processor ofclaim 12, wherein the first threshold is a positive value, and the second threshold is a negative value.
14. The touch processor ofclaim 13, wherein the determining of each line piece corresponding to touch or proximity of an external conductive object in each 1D sensing information includes extending forward and backward from a value greater than a positive threshold to at least one negative value, or extending forward and backward from a value less than a negative threshold to at least one positive value, and each line piece is determined based on one or any combination of the following group:
values of the 1D sensing information, wherein each 1D sensing information is obtained by mutual-capacitive detection, and when at least one adjacent first conductive strip in a plurality of first conductive strips arranged along the first axis is provided with a driving signal, each 1D sensing information is generated based on the plurality of second conductive strips arranged along the second axis;
differential values of the values of the 1D sensing information, wherein each differential value is generated based on two adjacent second conductive strips, and each line piece is a combination of a set of at least one positive value or continuous positive values and an adjacent set of at least one negative value or continuous negative values, wherein at least one positive value in the continuous positive values is greater than the positive threshold, and at least one negative value in the continuous negative values is greater than the negative threshold; or
dual differential values of the values of the 1D sensing information, wherein each dual differential value is generated based on three adjacent second conductive strips, and each line piece is a combination of continuous adjacent at least one negative value, at least one positive value, and at least one negative value, respectively, or continuous adjacent at least one positive value, at least one negative value, and at least one positive value, respectively.
15. The touch processor ofclaim 12, further performing the step of increasing the first threshold of the preset range when the 1D sensing information comprises at least one third line piece, and at least one value of the at least one third line piece is lower than the preset range.
16. The touch processor ofclaim 9, further performing the step of updating the base line values of the 1D sensing information except the first line piece if the 1D sensing information comprises a third line piece with at least one value lower than the preset range.
17. A touch system, comprising:
a touch screen, obtaining 1D sensing information of at least one of a plurality of electrodes; and
a touch processor, determining that a 1D sensing information comprises a first line piece if at least one value of the first line piece is higher than a preset range, or all values of the first line piece are within the preset range, wherein the 1D sensing information comprises a plurality of values, and the first line piece comprises part of the values.
18. The touch system ofclaim 17, further performing the following steps:
determining at least one touch group based on the overlapping relationships between two line pieces of two adjacent parallel 1D sensing information, wherein each line piece and at least one other line piece in the touch group are in adjacent 1D sensing information respectively, and the touch group reaches at least one of the following conditions:
the ratio of overlapping between the line piece and the at least one other line piece in the same touch group exceeds a ratio threshold;
the number of values that are overlapped by the line piece and the at least one other line piece in the same touch group exceeds a threshold; or
the distance between the centroid locations of the line pieces is within a distance threshold; and
keeping the touch group if at least one value of at least one line piece of the touch group is higher than the preset range.
19. The touch system ofclaim 18, wherein the touch group comprises a plurality of line pieces of a plurality of adjacent parallel 1D sensing information.
20. The touch system ofclaim 17, further performing the step of increasing the upper value of the preset range when the 1D sensing information comprises at least one third line piece, and at least one value of the at least one third line piece is lower than the preset range.
US14/819,7682012-08-312015-08-06Touch sensing method, processor and systemAbandonedUS20150338966A1 (en)

Priority Applications (2)

Application NumberPriority DateFiling DateTitle
US14/819,768US20150338966A1 (en)2012-08-312015-08-06Touch sensing method, processor and system
US15/066,473US10162468B2 (en)2012-08-312016-03-10Method and controller for detecting touch or proximity

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US201261695805P2012-08-312012-08-31
US14/016,686US9134868B2 (en)2012-08-312013-09-03Touch sensing method, processor and system
US14/819,768US20150338966A1 (en)2012-08-312015-08-06Touch sensing method, processor and system

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US14/016,686ContinuationUS9134868B2 (en)2012-08-312013-09-03Touch sensing method, processor and system

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US14/141,780Continuation-In-PartUS20140184565A1 (en)2012-08-312013-12-27Method and device for detecting touch or proximity

Publications (1)

Publication NumberPublication Date
US20150338966A1true US20150338966A1 (en)2015-11-26

Family

ID=50186878

Family Applications (4)

Application NumberTitlePriority DateFiling Date
US14/016,803Active2033-12-28US9069429B2 (en)2012-08-312013-09-03Method and device for image segmentation
US14/016,525Active2035-12-30US10007383B2 (en)2012-08-312013-09-03Touch sensing method, processor and system
US14/016,686Active2033-11-13US9134868B2 (en)2012-08-312013-09-03Touch sensing method, processor and system
US14/819,768AbandonedUS20150338966A1 (en)2012-08-312015-08-06Touch sensing method, processor and system

Family Applications Before (3)

Application NumberTitlePriority DateFiling Date
US14/016,803Active2033-12-28US9069429B2 (en)2012-08-312013-09-03Method and device for image segmentation
US14/016,525Active2035-12-30US10007383B2 (en)2012-08-312013-09-03Touch sensing method, processor and system
US14/016,686Active2033-11-13US9134868B2 (en)2012-08-312013-09-03Touch sensing method, processor and system

Country Status (3)

CountryLink
US (4)US9069429B2 (en)
CN (4)CN103677393B (en)
TW (5)TWI509560B (en)

Families Citing this family (41)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20160209963A1 (en)*2008-03-192016-07-21Egalax_Empia Technology Inc.Touch processor and method
KR20150019352A (en)*2013-08-132015-02-25삼성전자주식회사Method and apparatus for grip recognition in electronic device
TWI552048B (en)*2013-12-052016-10-01禾瑞亞科技股份有限公司Method and device for determining whether line piece corresponds to stylus tip or hovering conductive object
KR102207193B1 (en)*2013-12-312021-01-26엘지디스플레이 주식회사Touch sensing system
US9310934B2 (en)2014-02-212016-04-12Qualcomm IncorporatedSystems and methods of moisture detection and false touch rejection on touch screen devices
US9256333B2 (en)*2014-04-152016-02-09Samsung Electronics Co., Ltd.Method and apparatus for reducing noise in capacitive touch interfaces
TWI582652B (en)*2014-05-072017-05-11禾瑞亞科技股份有限公司Touch sensitive information transmission method, processor and system
US20150378498A1 (en)*2014-06-302015-12-31Synaptics IncorporatedHybrid capacitive sensor device
JP6199825B2 (en)*2014-07-302017-09-20Smk株式会社 Capacitive touch panel and its input operation position detection method
JP5923585B2 (en)*2014-10-172016-05-24日本写真印刷株式会社 Pressure detection device, control method of pressure detection device, and program
US10437384B2 (en)*2015-03-132019-10-08Parade Technologies, Ltd.Water detection and wipe detection algorithms for touchscreen proximity sensing
JP6250585B2 (en)2015-04-162017-12-20株式会社東海理化電機製作所 Operation detection device
CN105045426B (en)*2015-08-132017-12-12北京集创北方科技股份有限公司A kind of touch-screen anti-noise method and device
TWI576752B (en)*2015-08-172017-04-01宏碁股份有限公司Touch apparatus and touch detecting method thereof
US10241619B2 (en)*2015-11-062019-03-26Egalax_Empia Technology Inc.Touch sensitive processing apparatus and electronic system for detecting whether touch panel is mostly covered by conductive liquid or object and method thereof
JP6406461B2 (en)*2016-01-122018-10-17株式会社村田製作所 Electronics
TWI666583B (en)*2016-03-302019-07-21禾瑞亞科技股份有限公司Touch processor and method
TWI602099B (en)*2016-10-212017-10-11鹽光股份有限公司Capacitive Sensor Device And Detecting Method For A Touch event in A Conductive Matter Thereon
TWI620097B (en)*2016-12-302018-04-01漳州立達信光電子科技有限公司 Input method and touch device using the input method, gesture detecting device, computer readable recording medium, and computer program product
KR102811755B1 (en)2017-02-032025-05-23삼성디스플레이 주식회사Touch sensor and display device having the touch sensor
WO2018157268A1 (en)*2017-02-282018-09-07深圳市汇顶科技股份有限公司Method and device for touch detection
TWI661348B (en)*2017-05-112019-06-01禾瑞亞科技股份有限公司Touch sensitive processing apparatus, system and method thereof
KR101932650B1 (en)2017-05-152018-12-28삼성디스플레이 주식회사Touch sensor and display device having the touch sensor
US10928955B1 (en)*2017-09-112021-02-23Apple Inc.Suppression of structured image artifacts
US10747358B2 (en)2018-02-222020-08-18Wacom Co., Ltd.Position detection circuit and position detection method
CN109240518B (en)*2018-08-162020-11-20汉王科技股份有限公司Noise processing method and device of electromagnetic handwriting equipment and storage medium
US10699430B2 (en)*2018-10-092020-06-30Industrial Technology Research InstituteDepth estimation apparatus, autonomous vehicle using the same, and depth estimation method thereof
JP6853233B2 (en)*2018-12-142021-03-31ファナック株式会社 A non-temporary tangible computer-readable storage medium that stores a touch panel device, a control method of the touch panel device, a program, and a program.
JP6721667B2 (en)*2018-12-192020-07-15Nissha株式会社 Touch panel, touch panel module, and touch panel inspection method
TWI832976B (en)*2019-02-272024-02-21美商愛奎有限公司Method and apparatus for measuring vision function
US11003288B2 (en)*2019-06-212021-05-11Synaptics IncorporatedActive input sensing using regional scanning
US11599223B1 (en)2020-03-132023-03-07Apple Inc.System and machine learning method for separating noise and signal in multitouch sensors
US11899881B2 (en)2020-07-172024-02-13Apple Inc.Machine learning method and system for suppressing display induced noise in touch sensors using information from display circuitry
TWI819340B (en)*2020-07-202023-10-21禾瑞亞科技股份有限公司Flexible touch screen
US11954288B1 (en)2020-08-262024-04-09Apple Inc.System and machine learning method for separating noise and signal in multitouch sensors
KR102783657B1 (en)*2020-09-012025-03-20삼성디스플레이 주식회사Display system and method of driving the same
US11481070B1 (en)2020-09-252022-10-25Apple Inc.System and method for touch sensor panel with display noise correction
CN114708222B (en)*2022-04-022023-04-18广西壮族自治区自然资源遥感院Remote sensing image change detection quality evaluation method based on target area distribution characteristics
US12189895B2 (en)*2023-04-122025-01-07Samsung Electronics Co., Ltd.Electronic device sensing contact of fluid through touch sensor
TWI849948B (en)*2023-06-022024-07-21大陸商北京集創北方科技股份有限公司 Touch area division method, electronic chip and information processing device
CN118259779B (en)*2024-05-312024-09-03苏州瀚瑞微电子有限公司Touch detection method and touch detection device

Citations (16)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20040178997A1 (en)*1992-06-082004-09-16Synaptics, Inc., A California CorporationObject position detector with edge motion feature and gesture recognition
US20080036473A1 (en)*2006-08-092008-02-14Jansson Hakan KDual-slope charging relaxation oscillator for measuring capacitance
US20080048990A1 (en)*2006-08-222008-02-28Samsung Electronics Co., Ltd.Apparatus, method, and medium of sensing movement of multi-touch point and mobile apparatus using the same
US20080136792A1 (en)*2006-12-072008-06-12Tao PengPreventing unintentional activation of a touch-sensor button caused by a presence of conductive liquid on the touch-sensor button
US20080158182A1 (en)*2007-01-032008-07-03Apple Inc.Periodic sensor panel baseline adjustment
US20090046827A1 (en)*2007-08-132009-02-19Winbond Electronics CorporationTime interval measurement for capacitive detection
US20090167325A1 (en)*2007-12-282009-07-02Geaghan Bernard OPulsed capacitance measuring circuits and methods
US20090284495A1 (en)*2008-05-142009-11-193M Innovative Properties CompanySystems and methods for assessing locations of multiple touch inputs
US20100066701A1 (en)*2008-09-182010-03-18Stmicroelectronics Asia Pacific Pte Ltd.Multiple touch location in a three dimensional touch screen sensor
US20100079413A1 (en)*2008-09-292010-04-01Denso CorporationControl device
US20100194682A1 (en)*2009-01-302010-08-05Research In Motion LimitedMethod for tap detection and for interacting with a handheld electronic device, and a handheld electronic device configured therefor
US20110141054A1 (en)*2009-12-152011-06-16Silicon Integrated Systems Corp.Multiple fingers touch sensing method using matching algorithm
US20110157076A1 (en)*2009-12-302011-06-30Hui-Hung ChangMethod and Apparatus for Adjusting Touch Control Parameter
US8040142B1 (en)*2006-03-312011-10-18Cypress Semiconductor CorporationTouch detection techniques for capacitive touch sense systems
US8159462B1 (en)*2006-11-152012-04-17Cypress Semiconductor CorporationReference voltage offset for capacitive touch-sensor measurement
US20130076700A1 (en)*2011-09-222013-03-28Elan Microelectronics CorporationMethod for identifying touch object

Family Cites Families (28)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US6998545B2 (en)*2002-07-192006-02-14E.G.O. North America, Inc.Touch and proximity sensor control systems and methods with improved signal and noise differentiation
TWI269214B (en)*2005-06-082006-12-21Elan Microelectronics CorpObject-detecting method of capacitive touch panel
GB2439614B (en)*2006-05-312008-12-24Harald PhilippTwo-dimensional position sensor
KR20080032901A (en)*2006-10-112008-04-16삼성전자주식회사 Multi-touch judgment device and method
US8482530B2 (en)*2006-11-132013-07-09Apple Inc.Method of capacitively sensing finger position
US7920129B2 (en)*2007-01-032011-04-05Apple Inc.Double-sided touch-sensitive panel with shield and drive combined layer
US8355009B2 (en)*2007-04-252013-01-15Mcdermid William JMethod and apparatus for determining coordinates of simultaneous touches on a touch sensor pad
TWI358661B (en)*2007-06-142012-02-21Elan Microelectronics CorpObject location sensor of touch pad
US8378974B2 (en)*2007-07-022013-02-19Elo Touch Solutions, Inc.Method and system for detecting touch events based on magnitude ratios
US8730213B2 (en)*2007-07-022014-05-20Elo Touch Solutions, Inc.Method and system for detecting touch events based on redundant validation
WO2009007704A1 (en)*2007-07-122009-01-15Qrg LimitedTwo-dimensional touch panel
TW200941008A (en)*2008-03-282009-10-01Winbond Electronics CorpCapacitive detection systems, modules and methods
US9927924B2 (en)*2008-09-262018-03-27Apple Inc.Differential sensing for a touch panel
KR100971501B1 (en)2008-10-242010-07-21주식회사 애트랩 Contact sensor device
TW201027494A (en)*2009-01-082010-07-16Chi Mei Optoelectronics CorpDisplay device and control method thereof
TWI408578B (en)*2009-01-222013-09-11Wintek CorpResistive touch control device and driving method and driving controller thereof
US8619008B2 (en)*2009-02-132013-12-31Global Oled Technology LlcDividing pixels between chiplets in display device
TWI401597B (en)*2009-02-252013-07-11Ite Tech IncMethod and apparatus for drift compensation of capacitive touch panel
TW201035815A (en)*2009-03-312010-10-01Topseed Technology CorpGesture-based remote control system
JP2010267251A (en)*2009-04-152010-11-25Rohm Co LtdTouch-type input device and method for controlling the same
CN101615097A (en)*2009-08-052009-12-30福州华映视讯有限公司The scan method of contact panel
US8400422B2 (en)*2009-10-092013-03-19Egalax—Empia Technology Inc.Method and device for analyzing positions
US8570289B2 (en)*2009-10-092013-10-29Egalax—Empia Technology Inc.Method and device for position detection
TWI410852B (en)*2010-05-052013-10-01Novatek Microelectronics CorpTouch detection method and related touch control device
JP2013540259A (en)*2010-06-302013-10-31ライフ テクノロジーズ コーポレーション Array column integrator
CN202177880U (en)*2011-06-272012-03-28比亚迪股份有限公司Touch device
CN102890576B (en)*2011-07-222016-03-02宸鸿科技(厦门)有限公司Touch screen touch track detection method and pick-up unit
TWM429926U (en)*2011-07-292012-05-21Mastouch Optoelectronics Technologies Co LtdTouch sensing device and touch panel

Patent Citations (16)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20040178997A1 (en)*1992-06-082004-09-16Synaptics, Inc., A California CorporationObject position detector with edge motion feature and gesture recognition
US8040142B1 (en)*2006-03-312011-10-18Cypress Semiconductor CorporationTouch detection techniques for capacitive touch sense systems
US20080036473A1 (en)*2006-08-092008-02-14Jansson Hakan KDual-slope charging relaxation oscillator for measuring capacitance
US20080048990A1 (en)*2006-08-222008-02-28Samsung Electronics Co., Ltd.Apparatus, method, and medium of sensing movement of multi-touch point and mobile apparatus using the same
US8159462B1 (en)*2006-11-152012-04-17Cypress Semiconductor CorporationReference voltage offset for capacitive touch-sensor measurement
US20080136792A1 (en)*2006-12-072008-06-12Tao PengPreventing unintentional activation of a touch-sensor button caused by a presence of conductive liquid on the touch-sensor button
US20080158182A1 (en)*2007-01-032008-07-03Apple Inc.Periodic sensor panel baseline adjustment
US20090046827A1 (en)*2007-08-132009-02-19Winbond Electronics CorporationTime interval measurement for capacitive detection
US20090167325A1 (en)*2007-12-282009-07-02Geaghan Bernard OPulsed capacitance measuring circuits and methods
US20090284495A1 (en)*2008-05-142009-11-193M Innovative Properties CompanySystems and methods for assessing locations of multiple touch inputs
US20100066701A1 (en)*2008-09-182010-03-18Stmicroelectronics Asia Pacific Pte Ltd.Multiple touch location in a three dimensional touch screen sensor
US20100079413A1 (en)*2008-09-292010-04-01Denso CorporationControl device
US20100194682A1 (en)*2009-01-302010-08-05Research In Motion LimitedMethod for tap detection and for interacting with a handheld electronic device, and a handheld electronic device configured therefor
US20110141054A1 (en)*2009-12-152011-06-16Silicon Integrated Systems Corp.Multiple fingers touch sensing method using matching algorithm
US20110157076A1 (en)*2009-12-302011-06-30Hui-Hung ChangMethod and Apparatus for Adjusting Touch Control Parameter
US20130076700A1 (en)*2011-09-222013-03-28Elan Microelectronics CorporationMethod for identifying touch object

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
Cho US 2008/0048990*
Ningrat US 2010/00667010*

Also Published As

Publication numberPublication date
TW201604741A (en)2016-02-01
CN103677393B (en)2017-09-26
CN103677394B (en)2017-08-15
TWI516999B (en)2016-01-11
TWI581147B (en)2017-05-01
CN105045497A (en)2015-11-11
TW201419081A (en)2014-05-16
TWI484378B (en)2015-05-11
US20140062951A1 (en)2014-03-06
CN107526466A (en)2017-12-29
CN107526466B (en)2021-02-05
US10007383B2 (en)2018-06-26
US20140062949A1 (en)2014-03-06
CN105045497B (en)2018-05-18
TW201543413A (en)2015-11-16
TWI509560B (en)2015-11-21
US9069429B2 (en)2015-06-30
CN103677394A (en)2014-03-26
TWI579797B (en)2017-04-21
US20140062950A1 (en)2014-03-06
US9134868B2 (en)2015-09-15
TW201415303A (en)2014-04-16
TW201409395A (en)2014-03-01
CN103677393A (en)2014-03-26

Similar Documents

PublicationPublication DateTitle
US9134868B2 (en)Touch sensing method, processor and system
US10310693B2 (en)Controller for position detection
US8564564B2 (en)Method and device for position detection
US8400423B2 (en)Method and device for analyzing positions
US8941597B2 (en)Method and device for analyzing two-dimension sensing information
US8537131B2 (en)Method and device for converting sensing information
US9864471B2 (en)Method and processor for analyzing two-dimension information

Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:EGALAX_EMPIA TECHNOLOGY INC., TAIWAN

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:CHANG, CHIN-FU;YEH, SHANG-TAI;REEL/FRAME:036268/0400

Effective date:20130917

STCBInformation on status: application discontinuation

Free format text:ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION


[8]ページ先頭

©2009-2025 Movatter.jp