Ntrue0PSPMPR121zh22产品变更通知Product Change Noticet5261应用笔记Application Notet78910手册Brochuret5182数据手册Data Sheett5202用户指南User Guidet7921白皮书White Papert5301简介Fact Sheett5234选型指南Selector Guidet5281zhzhzh数据手册Data Sheet214EnglishThe MPR121 is the second generation sensor controller following the initial release
of the MPR03x series of devices. The MPR121 features an increased internal intelligence
plus Our second generation capacitance detection engine. Some major enhancements include
an increased electrode count, a hardware configurable I2C address, an expanded filtering
system with debounce, and completely independent electrodes with built-in autoconfiguration.
1252432663304730020713PSP289.9 KBNoneNonedocumentsNone1252432663304730020713/docs/en/data-sheet/MPR121.pdf289918/docs/en/data-sheet/MPR121.pdfMPR121documentsNN2009-09-08MPR121, Proximity Capacitive Touch Sensor Controller - Data Sheet/docs/en/data-sheet/MPR121.pdf/docs/en/data-sheet/MPR121.pdfData SheetN9800009962129933402022-12-07pdfNenFeb 7, 2013980000996212993340Data SheetYNMPR121, Proximity Capacitive Touch Sensor Controller - Data Sheet2CEnglishSchematics and Board Layouts for MPR121 and MPR121 Daughter Board1266526034924713583166PSP979.8 KBNoneNonedocumentsNone1266526034924713583166/docs/en/data-sheet/KITMRP121EVM_SCH.pdf979779/docs/en/data-sheet/KITMRP121EVM_SCH.pdfKITMPR121EVM_SCHdocumentsN2010-02-18KITMPR121EVM_SCH/docs/en/data-sheet/KITMRP121EVM_SCH.pdf/docs/en/data-sheet/KITMRP121EVM_SCH.pdfData SheetN9800009962129933402022-12-07pdfenJul 30, 2009980000996212993340Data SheetYNKITMPR121EVM_SCH应用笔记Application Note1032EnglishThe MPR121 uses an I2C Serial Interface. The I2C protocol implementation and the specifics
of communicating with the Touch Sensor Controller are detailed in this application
note.
1252434339112725629482PSP118.5 KBNoneNonedocumentsNone1252434339112725629482/docs/en/application-note/AN3895.pdf118533/docs/en/application-note/AN3895.pdfAN3895documentsNN2009-09-08MPR121 Serial Communication - Application Notes/docs/en/application-note/AN3895.pdf/docs/en/application-note/AN3895.pdfApplication NoteN6450366214023839892022-12-07pdfNenFeb 7, 2013645036621402383989Application NoteYNMPR121 Serial Communication - Application Notes40EnglishThis application note shows how to design a touch panel around the MPR121 capacitive
touch sensor controller, using minimal hardware and software.
1354727783875731648424PSP244.7 KBNoneNonedocumentsNone1354727783875731648424/docs/en/application-note/AN4600.pdf244704/docs/en/application-note/AN4600.pdfAN4600documentsNN2012-12-05Designing a Touch Panel using the Xtrinsic MPR121 Capacitive Touch Sensor Controller
- Application Note
/docs/en/application-note/AN4600.pdf/docs/en/application-note/AN4600.pdfApplication NoteN6450366214023839892022-12-07pdfNenDec 5, 2012645036621402383989Application NoteNNDesigning a Touch Panel using the Xtrinsic MPR121 Capacitive Touch Sensor Controller
- Application Note
51EnglishThe capacitance sensing front end of the MPR121 produces data at extremely high rates,
which significantly improves the capabilities of a filtering system. The capacitance
engine described in AN3889 act on a 1 ms - 32 ms per sample data rate. THis application
note will discuss the first and second level filters in the MPR121 and how they impact
timing and power consumption.
1252433346324725263253PSP164.9 KBNoneNonedocumentsNone1252433346324725263253/docs/en/application-note/AN3890.pdf164881/docs/en/application-note/AN3890.pdfAN3890documentsN2009-09-08MPR121 Capacitance Sensing - Filtering and Timing/docs/en/application-note/AN3890.pdf/docs/en/application-note/AN3890.pdfApplication NoteN6450366214023839892022-12-07pdfenMar 26, 2010645036621402383989Application NoteYNMPR121 Capacitance Sensing - Filtering and Timing60EnglishMPR121 is a feature rich, second generation touch sensor controller after NXP’s
initial release of the MPR03x series device. Like MPR03x, MPR121 has a unique feature
that all the electrode inputs can be internally connected together so that all the
surface touch sensing area on the inputs are “summed” together to act
as a single large electrode pad. This can effectively increase the total area of the
sensing conductor for non-contact near proximity detection for hand approaching.
1269643987306732553198PSP174.1 KBNoneNonedocumentsNone1269643987306732553198/docs/en/application-note/AN3893.pdf174141/docs/en/application-note/AN3893.pdfAN3893documentsN2010-03-26MPR121 Proximity Detection/docs/en/application-note/AN3893.pdf/docs/en/application-note/AN3893.pdfApplication NoteN6450366214023839892022-12-07pdfenMar 26, 2010645036621402383989Application NoteNNMPR121 Proximity Detection71EnglishTouch acquisition takes a few different parts of the system in order to detect touch.
The baseline filter and touch detection are tightly coupled. The purpose of the baseline
filter is to “filter out touches” resulting in a system that is similar
to a long term average but also takes into account that one specific signature. A
touch must have different properties than noise and environmental change with respect
to the filter response. This is accomplished through four register types that operate
1252433461480711798231PSP302.5 KBNoneNonedocumentsNone1252433461480711798231/docs/en/application-note/AN3891.pdf302526/docs/en/application-note/AN3891.pdfAN3891documentsN2009-09-08MPR121 Baseline System/docs/en/application-note/AN3891.pdf/docs/en/application-note/AN3891.pdfApplication NoteN6450366214023839892022-12-07pdfenMar 26, 2010645036621402383989Application NoteYNMPR121 Baseline System81EnglishAN3889: Touch acquisition takes a few different parts of the system in order to detect
touch. The first stage of this process is to capture the pad capacitance. Our MPR121
utilizes the principle that a capacitor holds a fixed amount of charge at a specific
electric potential. Both the implementation and the configuration will be described
in this application note.
1252433113933700672334PSP294.8 KBNoneNonedocumentsNone1252433113933700672334/docs/en/application-note/AN3889.pdf294849/docs/en/application-note/AN3889.pdfAN3889documentsN2009-09-08AN3889, MPR121 Capacitance Sensing Settings - Application Notes/docs/en/application-note/AN3889.pdf/docs/en/application-note/AN3889.pdfApplication NoteN6450366214023839892022-12-07pdfenMar 26, 2010645036621402383989Application NoteYNAN3889, MPR121 Capacitance Sensing Settings - Application Notes91EnglishTouch acquisition takes a few different parts of the system in order to detect touch.
The baseline filter and touch detection are tightly coupled. The purpose of the touch
detection block is to use the baseline value and the 2nd level filter data to determine
when a user has touched an electrode. The electrodes are independently configured
using the Touch Threshold and Release Threshold registers. The global Debounce register
also controls when a touch is detected by adding some minimal delay. The data is t
1252433679105703355323PSP211.7 KBNoneNonedocumentsNone1252433679105703355323/docs/en/application-note/AN3892.pdf211677/docs/en/application-note/AN3892.pdfAN3892documentsN2009-09-08MPR121 Jitter and False Touch Detection/docs/en/application-note/AN3892.pdf/docs/en/application-note/AN3892.pdfApplication NoteN6450366214023839892022-12-07pdfenMar 26, 2010645036621402383989Application NoteYNMPR121 Jitter and False Touch Detection101EnglishAN3944: The MPR121 is one of NXP Semiconductor's touch sensors and can fit into a
wide range of applications. These applications can all be accommodated by having a
device a with a very large range of flexibility. While all of these added features
can allow for a wide range of flexibility, they can also add an unnecessary layer
of complication. To start, the device is configured through an I2C serial interface.
1252435180705690921635PSP266.6 KBNoneNonedocumentsNone1252435180705690921635/docs/en/application-note/AN3944.pdf266613/docs/en/application-note/AN3944.pdfAN3944documentsNN2016-10-31AN3944, MPR121 Quick Start Guide - Application Notes/docs/en/application-note/AN3944.pdf/docs/en/application-note/AN3944.pdfApplication NoteN6450366214023839892022-12-07pdfNenMar 26, 2010645036621402383989Application NoteYNAN3944, MPR121 Quick Start Guide - Application Notes110EnglishMPR121 is a feature rich second generation touch sensor controller after NXP’s
initial release of the MPR03x series device. MPR121 not only has priority unique features
like independent electrode auto configuration (refer to AN3889), 13th simulated pseudo
electrode for proximity detection (refer to AN3893), it also has 8 GPIO ports with
LED driver capability. The GPIO and LED driver function can be used when not all the
12 input sensing channels are occupied for touch sensing detection, which is
1269644219350711216747PSP168.3 KBNoneNonedocumentsNone1269644219350711216747/docs/en/application-note/AN3894.pdf168277/docs/en/application-note/AN3894.pdfAN3894documentsN2010-03-26MPR121 GPIO and LED Driver Function/docs/en/application-note/AN3894.pdf/docs/en/application-note/AN3894.pdfApplication NoteN6450366214023839892022-12-07pdfenMar 23, 2010645036621402383989Application NoteNNMPR121 GPIO and LED Driver Function121EnglishAN3747: NXP produces a range of Capacitive Touch Sensor Products using three sensing
technologies. Each of these technologies will have slightly different response to
changes in pad layout. Though, since each technology is measuring capacitance from
the electrode to ground, the overall difference will be relatively insignificant.
1217371913520692492040PSP214.0 KBNoneNonedocumentsNone1217371913520692492040/docs/en/application-note/AN3747.pdf213982/docs/en/application-note/AN3747.pdfAN3747documentsN2008-07-29AN3747, Pad Layout - Application Notes/docs/en/application-note/AN3747.pdf/docs/en/application-note/AN3747.pdfApplication NoteN6450366214023839892022-12-07pdfenSep 9, 2009645036621402383989Application NoteYNAN3747, Pad Layout - Application Notes用户指南User Guide1131EnglishSensor Toolbox KITMPR121EVM Proximity Sensor Kit1248106274316723976794PSP1.5 MBNoneNonedocumentsNone1248106274316723976794/docs/en/user-guide/KITMPR121EVMPQSG.pdf1514180/docs/en/user-guide/KITMPR121EVMPQSG.pdfKITMPR121EVMPQSGdocumentsNN2009-07-20Sensor Toolbox KITMPR121EVM Proximity Sensor Kit Quick Start Guide/docs/en/user-guide/KITMPR121EVMPQSG.pdf/docs/en/user-guide/KITMPR121EVMPQSG.pdfUser GuideN1323395378371986602023-06-19pdfNenJul 20, 2009132339537837198660User GuideYNSensor Toolbox KITMPR121EVM Proximity Sensor Kit Quick Start Guide手册Brochure21411EnglishBRSENSORS: Xtrinsic sensors go far beyond a sensor translating a signal it’s
enabling greater levels of sensing context and intelligence. By increasing levels
of modular integration with multiple sensor inputs, logic and other building blocks,
NXP brings greater value and decision making to the overall sensing solution. We’ve
put our expertise at your fingertips so it is easy to tailor our sensing capabilities
for your needs.
1139510547218720976475PSP2.5 MBNoneNonedocumentsNone1139510547218720976475/docs/en/brochure/BRSENSORS.pdf2493551/docs/en/brochure/BRSENSORS.pdfBRSENSORSdocumentsNN2016-10-31BRSENSORS, Xtrinsic Sensing Solutions Intelligent contextual sensing - Brochure/docs/en/brochure/BRSENSORS.pdf/docs/en/brochure/BRSENSORS.pdfBrochureN7124530038037785522022-12-07enDec 2, 2014712453003803778552BrochureYNBRSENSORS, Xtrinsic Sensing Solutions Intelligent contextual sensing - Brochure10ChineseBRSENSORS:Xtrinsic传感器远不止信号转换这么简单,还可以实现更高水平的情境传感和智能。借助多种传感器输入、逻辑和其他构建模块,恩智浦提高了模块化集成水平,为整个传感器平台带来了更多价值和更好的选择。我们提供了丰富的专业技术供您选择,让您更容易根据自己的需求量身定制传感器功能。1139510547218720976475zhPSP2.5 MBNoneNonedocumentsNone1139510547218720976475/docs/zh/brochure/BRSENSORS.pdf2493551/docs/zh/brochure/BRSENSORS.pdfBRSENSORSdocumentsNN2016-10-31BRSENSORS, Xtrinsic Sensing Solutions Intelligent contextual sensing - Brochure/docs/zh/brochure/BRSENSORS.pdf/docs/zh/brochure/BRSENSORS.pdfBrochureN7124530038037785522022-12-07pdfNzh712453003803778552BrochureYNBRSENSORS:Xtrinsic传感技术实现智能情景传感 - 手册152EnglishNXP’s introduction of the MAG3110 magnetometer is the first product of the expansion
into magnetic sensors, complimenting our broad portfolio of inertial, pressure and
touch sensors. NXP<sup>®</sup> is a leading provider of sensors for the appliance,
automotive, consumer, industrial and health care markets. The sensor ICs complement
NXP’s broad portfolio of ZigBee ® technology, MCUs, microprocessors, digital
signal processors, analog ICs, CodeWarrior<sup>®</sup>.
1306940498097721813460PSP4.5 MBNoneNonedocumentsNone1306940498097721813460/docs/en/brochure/SENSPRODCAT.pdf4516738/docs/en/brochure/SENSPRODCAT.pdfSENSPRODCATdocumentsNN2016-10-31Sensors NXP<sup>®</sup> Overview - Brochures/docs/en/brochure/SENSPRODCAT.pdf/docs/en/brochure/SENSPRODCAT.pdfBrochureN7124530038037785522022-12-07enJul 31, 2012712453003803778552BrochureYNSensors NXP<sup>®</sup> Overview - Brochures2Chinese1306940498097721813460zhPSP4.5 MBNoneNonedocumentsNone1306940498097721813460/docs/zh/brochure/SENSPRODCAT.pdf4516738/docs/zh/brochure/SENSPRODCAT.pdfSENSPRODCATdocumentsNN2016-10-31Sensors NXP<sup>®</sup> Overview - Brochures/docs/zh/brochure/SENSPRODCAT.pdf/docs/zh/brochure/SENSPRODCAT.pdfBrochureN7124530038037785522022-12-07pdfNzh712453003803778552BrochureN飞思卡尔传感器概述 - 手册简介Fact Sheet41610EnglishNXP’s Sensor Toolbox offers a customizable selection of sensor development tools,
accessories and software from NXP<sup>®</sup>.s portfolio of acceleration, magnetic,
pressure and touch sensors. Sensors enrich designs with a broad range of capabilities
in detecting real-world conditions. Target Applications: Altimeters, Barometry, Blood
pressure monitors.
1242949699640742937404PSP638.8 KBNoneNonedocumentsNone1242949699640742937404/docs/en/fact-sheet/SENSORTOOLBOXFS.pdf638809/docs/en/fact-sheet/SENSORTOOLBOXFS.pdfSENSORTOOLBOXFSdocumentsNN2017-07-10Sensor Toolbox - Fact Sheet/docs/en/fact-sheet/SENSORTOOLBOXFS.pdf/docs/en/fact-sheet/SENSORTOOLBOXFS.pdfFact SheetN7366754741633153142025-02-25enAug 27, 2020736675474163315314Fact SheetYNSensor Toolbox - Fact Sheet5Chinese1242949699640742937404zhPSP638.8 KBNoneNonedocumentsNone1242949699640742937404/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdf638809/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdfSENSORTOOLBOXFSdocumentsNN2017-07-10Sensor Toolbox - Fact Sheet/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdf/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdfFact SheetN7366754741633153142025-02-25pdfNzh736675474163315314Fact SheetN传感器工具箱 - 简介 (pdf)172EnglishMPR121 capacitive touch sensor controller simplifies design in the user interface
of choice which is touch sensing. Embedded developers require design simplicity and
power conservation in a small form factor for compact system designs. This CMOS-based
state machine simplifies designing numerous touch applications for lighting controls,
mobile phones, MP3 players, remote controls and other low-power, hand-held, electronic
products.
1254503998769722352156PSP232.6 KBNoneNonedocumentsNone1254503998769722352156/docs/en/fact-sheet/MPR121FS.pdf232649/docs/en/fact-sheet/MPR121FS.pdfMPR121FSdocumentsN2009-10-02MPR121 12-pad touch sensor controller - Fact Sheet/docs/en/fact-sheet/MPR121FS.pdf/docs/en/fact-sheet/MPR121FS.pdfFact SheetN7366754741633153142022-12-07enNov 18, 2014736675474163315314Fact SheetYNMPR121 12-pad touch sensor controller - Fact Sheet1Chinese1254503998769722352156zhPSP232.6 KBNoneNonedocumentsNone1254503998769722352156/docs/zh/fact-sheet/MPR121FS.pdf232649/docs/zh/fact-sheet/MPR121FS.pdfMPR121FSdocumentsN2009-10-02MPR121 12-pad touch sensor controller - Fact Sheet/docs/zh/fact-sheet/MPR121FS.pdf/docs/zh/fact-sheet/MPR121FS.pdfFact SheetN7366754741633153142022-12-07pdfzh736675474163315314Fact SheetNMPR121:12按钮触摸传感器控制器 - 简介1813EnglishOverview Over the past 25 years, NXP Semiconductors Sensor Products Division has supplied
the world with more than 650 million micro-electromechanical systems (MEMS)-based
sensors.
1092086607381736729272PSP2.2 MBNoneNonedocumentsNone1092086607381736729272/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdf2216251/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdfSNSRSOLUTNTMFSdocumentsNN2016-10-31Sensor Solutions/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdf/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdfFact SheetN7366754741633153142025-02-25pdfNenFeb 12, 2020736675474163315314Fact SheetYNSensor Solutions195EnglishProximity sensors with simple linear or rotational sliders, rotary wheels
and touch pads offer significant advantages for more intuitive user
interfaces.
1195497447066728868381PSP514.7 KBNoneNonedocumentsNone1195497447066728868381/docs/en/fact-sheet/PROXFAMFS.pdf514701/docs/en/fact-sheet/PROXFAMFS.pdfPROXFAMFSdocumentsNN2020-02-12Proximity Sensor Solutions/docs/en/fact-sheet/PROXFAMFS.pdf/docs/en/fact-sheet/PROXFAMFS.pdfFact SheetN7366754741633153142022-12-07enOct 9, 2009736675474163315314Fact SheetYNProximity Sensor Solutions5Chinese1195497447066728868381zhPSP514.7 KBNoneNonedocumentsNone1195497447066728868381/docs/zh/fact-sheet/PROXFAMFS.pdf514701/docs/zh/fact-sheet/PROXFAMFS.pdfPROXFAMFSdocumentsNN2020-02-12Proximity Sensor Solutions/docs/zh/fact-sheet/PROXFAMFS.pdf/docs/zh/fact-sheet/PROXFAMFS.pdfFact SheetN7366754741633153142022-12-07pdfNzh736675474163315314Fact SheetN接近传感器解决方案产品变更通知Product Change Notice1200English1436567582093713300068PSP3.5 KBNoneNonedocumentsNone1436567582093713300068/docs/en/product-change-notice/PCN16772.htm3495/docs/en/product-change-notice/PCN16772.htmPCN16772documentsN2015-07-10Touch Sensor Portfolio Product Transfer (MPR031, MPR121)/docs/en/product-change-notice/PCN16772.htm/docs/en/product-change-notice/PCN16772.htmProduct Change NoticeN4540767418254952782022-12-07htmenJul 10, 2015454076741825495278Product Change NoticeDNTouch Sensor Portfolio Product Transfer (MPR031, MPR121)选型指南Selector Guide12113EnglishFor system designers who want to work with various sensor types such as accelerometers,
pressure sensors and magnetic sensors for applications in automotive, industrial IoT
and medical.
1424471489332715853854PSP253.0 KBNoneNonedocumentsNone1424471489332715853854/docs/en/product-selector-guide/SENSSELECT.pdf252964/docs/en/product-selector-guide/SENSSELECT.pdfSENSSELECTdocumentsNN2016-10-31Sensor Product Selector Guide/docs/en/product-selector-guide/SENSSELECT.pdf/docs/en/product-selector-guide/SENSSELECT.pdfSelector GuideN5535579352748077772025-02-25pdfNenMay 13, 2024553557935274807777Selector GuideYNSensor Product Selector Guide白皮书White Paper1221EnglishToday, inductive proximity sensors use Faraday’s Law of Electromagnetic Induction
to detect the nearness of conductive materials without actually coming into contact
with them. The primary deficiency of these sensors, however, is that they only detect
metal conductors and different metal types can affect the detection range.
1196110582988715042709PSP552.1 KBNoneNonedocumentsNone1196110582988715042709/docs/en/white-paper/PROXIMITYWP.pdf552073/docs/en/white-paper/PROXIMITYWP.pdfPROXIMITYWPdocumentsNN2016-10-31Proximity Capacitive Sensor Technology for Touch Sensing Applications - White Papers/docs/en/white-paper/PROXIMITYWP.pdf/docs/en/white-paper/PROXIMITYWP.pdfWhite PaperN9186330855417409382022-12-07pdfNenMar 13, 2008918633085541740938White PaperYNProximity Capacitive Sensor Technology for Touch Sensing Applications - White Papersfalse0MPR121downloadszh-Hanstrue1YPSP产品变更通知1/docs/en/product-change-notice/PCN16772.htm2015-07-101436567582093713300068PSP20Jul 10, 2015Product Change NoticeNone/docs/en/product-change-notice/PCN16772.htmEnglishdocuments3495None4540767418254952782022-12-07/docs/en/product-change-notice/PCN16772.htmTouch Sensor Portfolio Product Transfer (MPR031, MPR121)/docs/en/product-change-notice/PCN16772.htmdocuments454076741825495278Product Change NoticeNenNoneDhtm0NTouch Sensor Portfolio Product Transfer (MPR031, MPR121)3.5 KBPCN16772N1436567582093713300068应用笔记10/docs/en/application-note/AN3895.pdf2009-09-081252434339112725629482PSP3Feb 7, 2013Application NoteThe MPR121 uses an I2C Serial Interface. The I2C protocol implementation and the specifics
of communicating with the Touch Sensor Controller are detailed in this application
note.
None/docs/en/application-note/AN3895.pdfEnglishdocuments118533None6450366214023839892022-12-07N/docs/en/application-note/AN3895.pdfMPR121 Serial Communication - Application Notes/docs/en/application-note/AN3895.pdfdocuments645036621402383989Application NoteNenNoneYpdf2NNMPR121 Serial Communication - Application Notes118.5 KBAN3895N1252434339112725629482/docs/en/application-note/AN4600.pdf2012-12-051354727783875731648424PSP4Dec 5, 2012Application NoteThis application note shows how to design a touch panel around the MPR121 capacitive
touch sensor controller, using minimal hardware and software.
None/docs/en/application-note/AN4600.pdfEnglishdocuments244704None6450366214023839892022-12-07N/docs/en/application-note/AN4600.pdfDesigning a Touch Panel using the Xtrinsic MPR121 Capacitive Touch Sensor Controller
- Application Note
/docs/en/application-note/AN4600.pdfdocuments645036621402383989Application NoteNenNoneNpdf0NNDesigning a Touch Panel using the Xtrinsic MPR121 Capacitive Touch Sensor Controller
- Application Note
244.7 KBAN4600N1354727783875731648424/docs/en/application-note/AN3890.pdf2009-09-081252433346324725263253PSP5Mar 26, 2010Application NoteThe capacitance sensing front end of the MPR121 produces data at extremely high rates,
which significantly improves the capabilities of a filtering system. The capacitance
engine described in AN3889 act on a 1 ms - 32 ms per sample data rate. THis application
note will discuss the first and second level filters in the MPR121 and how they impact
timing and power consumption.
None/docs/en/application-note/AN3890.pdfEnglishdocuments164881None6450366214023839892022-12-07/docs/en/application-note/AN3890.pdfMPR121 Capacitance Sensing - Filtering and Timing/docs/en/application-note/AN3890.pdfdocuments645036621402383989Application NoteNenNoneYpdf1NMPR121 Capacitance Sensing - Filtering and Timing164.9 KBAN3890N1252433346324725263253/docs/en/application-note/AN3893.pdf2010-03-261269643987306732553198PSP6Mar 26, 2010Application NoteMPR121 is a feature rich, second generation touch sensor controller after NXP’s
initial release of the MPR03x series device. Like MPR03x, MPR121 has a unique feature
that all the electrode inputs can be internally connected together so that all the
surface touch sensing area on the inputs are “summed” together to act
as a single large electrode pad. This can effectively increase the total area of the
sensing conductor for non-contact near proximity detection for hand approaching.
None/docs/en/application-note/AN3893.pdfEnglishdocuments174141None6450366214023839892022-12-07/docs/en/application-note/AN3893.pdfMPR121 Proximity Detection/docs/en/application-note/AN3893.pdfdocuments645036621402383989Application NoteNenNoneNpdf0NMPR121 Proximity Detection174.1 KBAN3893N1269643987306732553198/docs/en/application-note/AN3891.pdf2009-09-081252433461480711798231PSP7Mar 26, 2010Application NoteTouch acquisition takes a few different parts of the system in order to detect touch.
The baseline filter and touch detection are tightly coupled. The purpose of the baseline
filter is to “filter out touches” resulting in a system that is similar
to a long term average but also takes into account that one specific signature. A
touch must have different properties than noise and environmental change with respect
to the filter response. This is accomplished through four register types that operate
None/docs/en/application-note/AN3891.pdfEnglishdocuments302526None6450366214023839892022-12-07/docs/en/application-note/AN3891.pdfMPR121 Baseline System/docs/en/application-note/AN3891.pdfdocuments645036621402383989Application NoteNenNoneYpdf1NMPR121 Baseline System302.5 KBAN3891N1252433461480711798231/docs/en/application-note/AN3889.pdf2009-09-081252433113933700672334PSP8Mar 26, 2010Application NoteAN3889: Touch acquisition takes a few different parts of the system in order to detect
touch. The first stage of this process is to capture the pad capacitance. Our MPR121
utilizes the principle that a capacitor holds a fixed amount of charge at a specific
electric potential. Both the implementation and the configuration will be described
in this application note.
None/docs/en/application-note/AN3889.pdfEnglishdocuments294849None6450366214023839892022-12-07/docs/en/application-note/AN3889.pdfAN3889, MPR121 Capacitance Sensing Settings - Application Notes/docs/en/application-note/AN3889.pdfdocuments645036621402383989Application NoteNenNoneYpdf1NAN3889, MPR121 Capacitance Sensing Settings - Application Notes294.8 KBAN3889N1252433113933700672334/docs/en/application-note/AN3892.pdf2009-09-081252433679105703355323PSP9Mar 26, 2010Application NoteTouch acquisition takes a few different parts of the system in order to detect touch.
The baseline filter and touch detection are tightly coupled. The purpose of the touch
detection block is to use the baseline value and the 2nd level filter data to determine
when a user has touched an electrode. The electrodes are independently configured
using the Touch Threshold and Release Threshold registers. The global Debounce register
also controls when a touch is detected by adding some minimal delay. The data is t
None/docs/en/application-note/AN3892.pdfEnglishdocuments211677None6450366214023839892022-12-07/docs/en/application-note/AN3892.pdfMPR121 Jitter and False Touch Detection/docs/en/application-note/AN3892.pdfdocuments645036621402383989Application NoteNenNoneYpdf1NMPR121 Jitter and False Touch Detection211.7 KBAN3892N1252433679105703355323/docs/en/application-note/AN3944.pdf2016-10-311252435180705690921635PSP10Mar 26, 2010Application NoteAN3944: The MPR121 is one of NXP Semiconductor's touch sensors and can fit into a
wide range of applications. These applications can all be accommodated by having a
device a with a very large range of flexibility. While all of these added features
can allow for a wide range of flexibility, they can also add an unnecessary layer
of complication. To start, the device is configured through an I2C serial interface.
None/docs/en/application-note/AN3944.pdfEnglishdocuments266613None6450366214023839892022-12-07N/docs/en/application-note/AN3944.pdfAN3944, MPR121 Quick Start Guide - Application Notes/docs/en/application-note/AN3944.pdfdocuments645036621402383989Application NoteNenNoneYpdf1NNAN3944, MPR121 Quick Start Guide - Application Notes266.6 KBAN3944N1252435180705690921635/docs/en/application-note/AN3894.pdf2010-03-261269644219350711216747PSP11Mar 23, 2010Application NoteMPR121 is a feature rich second generation touch sensor controller after NXP’s
initial release of the MPR03x series device. MPR121 not only has priority unique features
like independent electrode auto configuration (refer to AN3889), 13th simulated pseudo
electrode for proximity detection (refer to AN3893), it also has 8 GPIO ports with
LED driver capability. The GPIO and LED driver function can be used when not all the
12 input sensing channels are occupied for touch sensing detection, which is
None/docs/en/application-note/AN3894.pdfEnglishdocuments168277None6450366214023839892022-12-07/docs/en/application-note/AN3894.pdfMPR121 GPIO and LED Driver Function/docs/en/application-note/AN3894.pdfdocuments645036621402383989Application NoteNenNoneNpdf0NMPR121 GPIO and LED Driver Function168.3 KBAN3894N1269644219350711216747/docs/en/application-note/AN3747.pdf2008-07-291217371913520692492040PSP12Sep 9, 2009Application NoteAN3747: NXP produces a range of Capacitive Touch Sensor Products using three sensing
technologies. Each of these technologies will have slightly different response to
changes in pad layout. Though, since each technology is measuring capacitance from
the electrode to ground, the overall difference will be relatively insignificant.
None/docs/en/application-note/AN3747.pdfEnglishdocuments213982None6450366214023839892022-12-07/docs/en/application-note/AN3747.pdfAN3747, Pad Layout - Application Notes/docs/en/application-note/AN3747.pdfdocuments645036621402383989Application NoteNenNoneYpdf1NAN3747, Pad Layout - Application Notes214.0 KBAN3747N1217371913520692492040手册2/docs/zh/brochure/BRSENSORS.pdf2016-10-311139510547218720976475zhPSP14BrochureBRSENSORS:Xtrinsic传感器远不止信号转换这么简单,还可以实现更高水平的情境传感和智能。借助多种传感器输入、逻辑和其他构建模块,恩智浦提高了模块化集成水平,为整个传感器平台带来了更多价值和更好的选择。我们提供了丰富的专业技术供您选择,让您更容易根据自己的需求量身定制传感器功能。None/docs/zh/brochure/BRSENSORS.pdfChinesedocuments2493551None7124530038037785522022-12-07N/docs/zh/brochure/BRSENSORS.pdfBRSENSORS:Xtrinsic传感技术实现智能情景传感 - 手册/docs/zh/brochure/BRSENSORS.pdfdocuments712453003803778552BrochureNzhNoneYpdf10NNBRSENSORS, Xtrinsic Sensing Solutions Intelligent contextual sensing - Brochure2.5 MBBRSENSORSN1139510547218720976475/docs/zh/brochure/SENSPRODCAT.pdf2016-10-311306940498097721813460zhPSP15BrochureNone/docs/zh/brochure/SENSPRODCAT.pdfChinesedocuments4516738None7124530038037785522022-12-07N/docs/zh/brochure/SENSPRODCAT.pdf飞思卡尔传感器概述 - 手册/docs/zh/brochure/SENSPRODCAT.pdfdocuments712453003803778552BrochureNzhNonepdf2NNSensors NXP<sup>®</sup> Overview - Brochures4.5 MBSENSPRODCATN1306940498097721813460数据手册2/docs/en/data-sheet/MPR121.pdf2009-09-081252432663304730020713PSP1Feb 7, 2013Data SheetThe MPR121 is the second generation sensor controller following the initial release
of the MPR03x series of devices. The MPR121 features an increased internal intelligence
plus Our second generation capacitance detection engine. Some major enhancements include
an increased electrode count, a hardware configurable I2C address, an expanded filtering
system with debounce, and completely independent electrodes with built-in autoconfiguration.
None/docs/en/data-sheet/MPR121.pdfEnglishdocuments289918None9800009962129933402022-12-07N/docs/en/data-sheet/MPR121.pdfMPR121, Proximity Capacitive Touch Sensor Controller - Data Sheet/docs/en/data-sheet/MPR121.pdfdocuments980000996212993340Data SheetNenNoneYpdf4NNMPR121, Proximity Capacitive Touch Sensor Controller - Data Sheet289.9 KBMPR121N1252432663304730020713/docs/en/data-sheet/KITMRP121EVM_SCH.pdf2010-02-181266526034924713583166PSP2Jul 30, 2009Data SheetSchematics and Board Layouts for MPR121 and MPR121 Daughter BoardNone/docs/en/data-sheet/KITMRP121EVM_SCH.pdfEnglishdocuments979779None9800009962129933402022-12-07/docs/en/data-sheet/KITMRP121EVM_SCH.pdfKITMPR121EVM_SCH/docs/en/data-sheet/KITMRP121EVM_SCH.pdfdocuments980000996212993340Data SheetNenNoneYpdfCNKITMPR121EVM_SCH979.8 KBKITMPR121EVM_SCHN1266526034924713583166用户指南1/docs/en/user-guide/KITMPR121EVMPQSG.pdf2009-07-201248106274316723976794PSP13Jul 20, 2009User GuideSensor Toolbox KITMPR121EVM Proximity Sensor KitNone/docs/en/user-guide/KITMPR121EVMPQSG.pdfEnglishdocuments1514180None1323395378371986602023-06-19N/docs/en/user-guide/KITMPR121EVMPQSG.pdfSensor Toolbox KITMPR121EVM Proximity Sensor Kit Quick Start Guide/docs/en/user-guide/KITMPR121EVMPQSG.pdfdocuments132339537837198660User GuideNenNoneYpdf1NNSensor Toolbox KITMPR121EVM Proximity Sensor Kit Quick Start Guide1.5 MBKITMPR121EVMPQSGN1248106274316723976794白皮书1/docs/en/white-paper/PROXIMITYWP.pdf2016-10-311196110582988715042709PSP22Mar 13, 2008White PaperToday, inductive proximity sensors use Faraday’s Law of Electromagnetic Induction
to detect the nearness of conductive materials without actually coming into contact
with them. The primary deficiency of these sensors, however, is that they only detect
metal conductors and different metal types can affect the detection range.
None/docs/en/white-paper/PROXIMITYWP.pdfEnglishdocuments552073None9186330855417409382022-12-07N/docs/en/white-paper/PROXIMITYWP.pdfProximity Capacitive Sensor Technology for Touch Sensing Applications - White Papers/docs/en/white-paper/PROXIMITYWP.pdfdocuments918633085541740938White PaperNenNoneYpdf1NNProximity Capacitive Sensor Technology for Touch Sensing Applications - White Papers552.1 KBPROXIMITYWPN1196110582988715042709简介4/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdf2017-07-101242949699640742937404zhPSP16Fact SheetNone/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdfChinesedocuments638809None7366754741633153142025-02-25N/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdf传感器工具箱 - 简介 (pdf)/docs/zh/fact-sheet/SENSORTOOLBOXFS.pdfdocuments736675474163315314Fact SheetNzhNonepdf5NNSensor Toolbox - Fact Sheet638.8 KBSENSORTOOLBOXFSN1242949699640742937404/docs/zh/fact-sheet/MPR121FS.pdf2009-10-021254503998769722352156zhPSP17Fact SheetNone/docs/zh/fact-sheet/MPR121FS.pdfChinesedocuments232649None7366754741633153142022-12-07/docs/zh/fact-sheet/MPR121FS.pdfMPR121:12按钮触摸传感器控制器 - 简介/docs/zh/fact-sheet/MPR121FS.pdfdocuments736675474163315314Fact SheetNzhNonepdf1NMPR121 12-pad touch sensor controller - Fact Sheet232.6 KBMPR121FSN1254503998769722352156/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdf2016-10-311092086607381736729272PSP18Feb 12, 2020Fact SheetOverview Over the past 25 years, NXP Semiconductors Sensor Products Division has supplied
the world with more than 650 million micro-electromechanical systems (MEMS)-based
sensors.
None/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdfEnglishdocuments2216251None7366754741633153142025-02-25N/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdfSensor Solutions/docs/en/fact-sheet/SNSRSOLUTNTMFS.pdfdocuments736675474163315314Fact SheetNenNoneYpdf13NNSensor Solutions2.2 MBSNSRSOLUTNTMFSN1092086607381736729272/docs/zh/fact-sheet/PROXFAMFS.pdf2020-02-121195497447066728868381zhPSP19Fact SheetNone/docs/zh/fact-sheet/PROXFAMFS.pdfChinesedocuments514701None7366754741633153142022-12-07N/docs/zh/fact-sheet/PROXFAMFS.pdf接近传感器解决方案/docs/zh/fact-sheet/PROXFAMFS.pdfdocuments736675474163315314Fact SheetNzhNonepdf5NNProximity Sensor Solutions514.7 KBPROXFAMFSN1195497447066728868381选型指南1/docs/en/product-selector-guide/SENSSELECT.pdf2016-10-311424471489332715853854PSP21May 13, 2024Selector GuideFor system designers who want to work with various sensor types such as accelerometers,
pressure sensors and magnetic sensors for applications in automotive, industrial IoT
and medical.
None/docs/en/product-selector-guide/SENSSELECT.pdfEnglishdocuments252964None5535579352748077772025-02-25N/docs/en/product-selector-guide/SENSSELECT.pdfSensor Product Selector Guide/docs/en/product-selector-guide/SENSSELECT.pdfdocuments553557935274807777Selector GuideNenNoneYpdf13NNSensor Product Selector Guide253.0 KBSENSSELECTN1424471489332715853854trueYProducts