Ntrue0PSPMAG3110zh15应用笔记Application Notet7895手册Brochuret5181支持信息Supporting Informationt5311数据手册Data Sheett5201用户指南User Guidet7922白皮书White Papert5303简介Fact Sheett5231选型指南Selector Guidet5281zhzhzh数据手册Data Sheet119.2EnglishFreescale’s MAG3110 is a small, low-power, digital 3-axis magnetometer. The
device can be used in conjunction with a 3-axis accelerometer to realize an orientation
independent electronic compass that can provide accurate heading information. It features
a standard I2C serial interface output and smart embedded functions.
1294413760914707434442PSP475.9 KBNoneNonedocumentsNone1294413760914707434442/docs/en/data-sheet/MAG3110.pdf475912/docs/en/data-sheet/MAG3110.pdfMAG3110documentsNN2016-10-31Freescale MAG3110 Three-Axis, Digital Magnetometer - Data Sheet/docs/en/data-sheet/MAG3110.pdf/docs/en/data-sheet/MAG3110.pdfData SheetN9800009962129933402022-12-07pdfNenFeb 15, 2013980000996212993340Data SheetYNFreescale MAG3110 Three-Axis, Digital Magnetometer - Data Sheet应用笔记Application Note524.0EnglishAN4247: This application note is intended to guide engineers in the successful design
of Printed Circuit Boards (PCBs) incorporating magnetometer sensors. For convenience,
the application discussed is an electronic compass (or eCompass) designed into a smartphone
but the guidelines are equally applicable to other products using a magnetometer.
1304101701460727668501PSP332.3 KBNoneNonedocumentsNone1304101701460727668501/docs/en/application-note/AN4247.pdf332287/docs/en/application-note/AN4247.pdfAN4247documentsNN2016-10-31AN4247, Layout Recommendations for PCBs Using a Magnetometer Sensor - Application
Notes
/docs/en/application-note/AN4247.pdf/docs/en/application-note/AN4247.pdfApplication NoteN6450366214023839892022-12-07pdfNenNov 13, 2015645036621402383989Application NoteYNAN4247, Layout Recommendations for PCBs Using a Magnetometer Sensor - Application
Notes
31.0EnglishAN4249: This application note addresses the relationship between errors in the outputs
from accelerometer and magnetometer sensors and the resulting errors in the roll,
pitch and yaw angles computed by a tilt-compensated eCompass or 3D Pointer application.
1308237516737728147258PSP337.3 KBNoneNonedocumentsNone1308237516737728147258/docs/en/application-note/AN4249.pdf337314/docs/en/application-note/AN4249.pdfAN4249documentsNN2016-10-31AN4249, Accuracy of Angle Estimation in eCompass and 3D Pointer Applications - Application
Notes
/docs/en/application-note/AN4249.pdf/docs/en/application-note/AN4249.pdfApplication NoteN6450366214023839892022-12-07pdfNenNov 13, 2015645036621402383989Application NoteYNAN4249, Accuracy of Angle Estimation in eCompass and 3D Pointer Applications - Application
Notes
44.0EnglishThis application note provides the theory for the in-situ calibration of a smartphone
electronic compass (eCompass) for hard- and soft- iron effects. The mathematical framework
is that which is developed in AN4248 “Implementing a Tilt-Compensated eCompass
using Accelerometer and Magnetometer Sensors” and AN4247 “Layout Recommendations
for PCBs Using a Magnetometer Sensor.” It is therefore highly recommended to
read these application notes first before reading this document.
1307815370599723958283PSP307.1 KBNoneNonedocumentsNone1307815370599723958283/docs/en/application-note/AN4246.pdf307093/docs/en/application-note/AN4246.pdfAN4246documentsNN2011-06-11Calibrating an eCompass in the Presence of Hard- and Soft-Iron Interference - Application
Note
/docs/en/application-note/AN4246.pdf/docs/en/application-note/AN4246.pdfApplication NoteN6450366214023839892022-12-07pdfNenNov 13, 2015645036621402383989Application NoteYNCalibrating an eCompass in the Presence of Hard- and Soft-Iron Interference - Application
Note
54.0EnglishAN4248: This technical note provides the mathematics, reference source code and guidance
for engineers implementing a tilt-compensated electronic compass (eCompass). The eCompass
uses a three-axis accelerometer and three- axis magnetometer. The accelerometer measures
the components of the earth's gravity and the magnetometer measures the components
of earth's magnetic field.
1301006528855698902331PSP670.1 KBNoneNonedocumentsNone1301006528855698902331/docs/en/application-note/AN4248.pdf670116/docs/en/application-note/AN4248.pdfAN4248documentsNN2016-10-31AN4248, Implementing a Tilt-Compensated E-Compass Using Accelerometer and Magnetometer
Sensors - Application Notes
/docs/en/application-note/AN4248.pdf/docs/en/application-note/AN4248.pdfApplication NoteN6450366214023839892022-12-07pdfNenNov 13, 2015645036621402383989Application NoteYNAN4248, Implementing a Tilt-Compensated E-Compass Using Accelerometer and Magnetometer
Sensors - Application Notes
60EnglishThis application note describes two measurement methods associated with reducing current
consumption in low data rate applications for two NXP magnetometers (FXOS8700 6-Axis
E-Compass and MAG3110 Digital Magnetometer): the one-shot measurement method and the
power cycling measurement method.
1412983550342689833703PSP653.5 KBNoneNonedocumentsNone1412983550342689833703/docs/en/application-note/AN4984.pdf653524/docs/en/application-note/AN4984.pdfAN4984documentsNN2016-10-31AN4984, Optimizing Magnetic Sensor Power Operations for Low Data Rates/docs/en/application-note/AN4984.pdf/docs/en/application-note/AN4984.pdfApplication NoteN6450366214023839892022-12-07pdfNenOct 10, 2014645036621402383989Application NoteYNAN4984, Optimizing Magnetic Sensor Power Operations for Low Data Rates用户指南User Guide272EnglishThis User’s Guide describes the operation of the NXP Sensor Toolbox e-compass
and magnetic calibration software which supports MAG3110, MMA8451 and FXOS8700CQ.
1344298646122726388188PSP978.9 KBNoneNonedocumentsNone1344298646122726388188/docs/en/user-guide/eCOMPASSSTUG.pdf978919/docs/en/user-guide/eCOMPASSSTUG.pdfECOMPASSSTUGdocumentsNN2016-10-31E-Compass Sensor Toolbox User’s Guide/docs/en/user-guide/eCOMPASSSTUG.pdf/docs/en/user-guide/eCOMPASSSTUG.pdfUser GuideN1323395378371986602023-06-19pdfNenApr 22, 2013132339537837198660User GuideYNE-Compass Sensor Toolbox User’s Guide82EnglishThe RD4247MAG3110 sensor toolbox tilt-compensated eCompass kit provides hardware and
software for demonstrating the capability of the MAG3110 3-axis digital magnetometer
in an eCompass application with hard- and soft-iron calibration.
1305319850557715929217PSP1.4 MBNoneNonedocumentsNone1305319850557715929217/docs/en/user-guide/MAG3110UG.pdf1390893/docs/en/user-guide/MAG3110UG.pdfMAG3110UGdocumentsNN2016-10-31RD4247MAG3110 Sensor Toolbox Tilt-Compensated eCompass Kit - User's Guide/docs/en/user-guide/MAG3110UG.pdf/docs/en/user-guide/MAG3110UG.pdfYUser GuideN1323395378371986602022-12-07pdfNenAug 19, 2011132339537837198660User GuideYNRD4247MAG3110 Sensor Toolbox Tilt-Compensated eCompass Kit - User's Guide手册Brochure192EnglishNXP’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 Sheet1104EnglishOur MAG3110 Xtrinsic 3-axis magnetometer is the latest addition to the extensive family
of accelerometers, pressure and touch sensors. NXP’s MAG3110 measures the magnetic
field in all three axes with ranges up to 1000 uT, at data rates up to 80 Hz. Provides
full tilt-compensated electronic compass capability.
1294251870549734854420PSP395.3 KBNoneNonedocumentsNone1294251870549734854420/docs/en/fact-sheet/MAG3110FS.pdf395303/docs/en/fact-sheet/MAG3110FS.pdfMAG3110FSdocumentsNN2016-10-31MAG3110 Freescale Magnetometer - Fact Sheet/docs/en/fact-sheet/MAG3110FS.pdf/docs/en/fact-sheet/MAG3110FS.pdfFact SheetN7366754741633153142022-12-07enFeb 18, 2020736675474163315314Fact SheetYNMAG3110 Freescale Magnetometer - Fact Sheet3Chinese1294251870549734854420zhPSP395.3 KBNoneNonedocumentsNone1294251870549734854420/docs/zh/fact-sheet/MAG3110FS.pdf395303/docs/zh/fact-sheet/MAG3110FS.pdfMAG3110FSdocumentsNN2016-10-31MAG3110 Freescale Magnetometer - Fact Sheet/docs/zh/fact-sheet/MAG3110FS.pdf/docs/zh/fact-sheet/MAG3110FS.pdfFact SheetN7366754741633153142022-12-07pdfNzh736675474163315314Fact SheetNMAG3110恩智浦磁力计 - 简介选型指南Selector Guide11113EnglishFor 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支持信息Supporting Information1121EnglishApplications Collateral for the MAG3110 to Aid Customer Questions.1294267649904709054304PSP121.0 KBNoneNonedocumentsNone1294267649904709054304/docs/en/supporting-information/MAG3110FAQS.pdf120961/docs/en/supporting-information/MAG3110FAQS.pdfMAG3110FAQSdocumentsNN2016-10-31MAG3110 Frequently Asked Questions - Supporting Information/docs/en/supporting-information/MAG3110FAQS.pdf/docs/en/supporting-information/MAG3110FAQS.pdfSupporting InformationN3712828305309686662022-12-07pdfNenMay 6, 2012371282830530968666Supporting InformationYNMAG3110 Frequently Asked Questions - Supporting Information白皮书White Paper3132EnglishLow power sensors with the integrated capability to reduce power consumption play
an important role in extending the battery life in portable systems. NXP has extensive
capabilities in sensors, microcontrollers, power management, and RF technologies.
1365095391795722334999PSP381.7 KBNoneNonedocumentsNone1365095391795722334999/docs/en/white-paper/LOWPOWERSENSWP.pdf381651/docs/en/white-paper/LOWPOWERSENSWP.pdfLOWPOWERSENSWPdocumentsNN2016-10-31Low Power Sensing/docs/en/white-paper/LOWPOWERSENSWP.pdf/docs/en/white-paper/LOWPOWERSENSWP.pdfWhite PaperN9186330855417409382025-02-25pdfNenMay 20, 2015918633085541740938White PaperYNLow Power Sensing141EnglishThe age of sensor technology is upon us. These days, it’s unusual to experience
an electronic consumer product that doesn’t use sensors to create new experiences
for its users. Sensors are experiencing a renaissance of sorts as micro-electromechanical
systems (MEMS) technology becomes less expensive and further miniaturized, in turn
fueling penetration of sensors into new applications and creating new potential for
the sensor market.
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1Chinese1363970116444726555210zhPSP3.6 MBNoneNonedocumentsNone1363970116444726555210/docs/zh/white-paper/SENFEIOTLFWP.pdf3621913/docs/zh/white-paper/SENFEIOTLFWP.pdfSENFEIOTLFWPdocumentsNN2016-10-31The Role of Sensor Fusion and Remote Emotive Computing (REC) in the Internet of Things
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/docs/zh/white-paper/SENFEIOTLFWP.pdf/docs/zh/white-paper/SENFEIOTLFWP.pdfWhite PaperN9186330855417409382025-02-24pdfNzhJul 9, 2013918633085541740938White PaperYN白皮书:传感器融合和远程情感计算(REC)在物联网(IoT)中的作用150EnglishMicrosoft’s Windows Sensor and Location platform for the Windows 8 operating
system provides a standardized approach to implementing sensor technology that users
have come to expect in tablets, slates, laptops, and other mobile devices.
1365198568416712526634PSP709.4 KBNoneNonedocumentsNone1365198568416712526634/docs/en/white-paper/WINDOWS8WP.pdf709360/docs/en/white-paper/WINDOWS8WP.pdfWINDOWS8WPdocumentsNN2016-10-31Taking Advantage of a Certified Platform for Microsoft’s Windows® 8 Sensor Interface
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from accelerometer and magnetometer sensors and the resulting errors in the roll,
pitch and yaw angles computed by a tilt-compensated eCompass or 3D Pointer application.
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electronic compass (eCompass) for hard- and soft- iron effects. The mathematical framework
is that which is developed in AN4248 “Implementing a Tilt-Compensated eCompass
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for engineers implementing a tilt-compensated electronic compass (eCompass). The eCompass
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the components of the earth's gravity and the magnetometer measures the components
of earth's magnetic field.
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consumption in low data rate applications for two NXP magnetometers (FXOS8700 6-Axis
E-Compass and MAG3110 Digital Magnetometer): the one-shot measurement method and the
power cycling measurement method.
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device can be used in conjunction with a 3-axis accelerometer to realize an orientation
independent electronic compass that can provide accurate heading information. It features
a standard I2C serial interface output and smart embedded functions.
None/docs/en/data-sheet/MAG3110.pdfEnglishdocuments475912None9800009962129933402022-12-07N/docs/en/data-sheet/MAG3110.pdfFreescale MAG3110 Three-Axis, Digital Magnetometer - Data Sheet/docs/en/data-sheet/MAG3110.pdfdocuments980000996212993340Data SheetNenNoneYpdf9.2NNFreescale MAG3110 Three-Axis, Digital Magnetometer - Data Sheet475.9 KBMAG3110N1294413760914707434442用户指南2/docs/en/user-guide/eCOMPASSSTUG.pdf2016-10-311344298646122726388188PSP7Apr 22, 2013User GuideThis User’s Guide describes the operation of the NXP Sensor Toolbox e-compass
and magnetic calibration software which supports MAG3110, MMA8451 and FXOS8700CQ.
None/docs/en/user-guide/eCOMPASSSTUG.pdfEnglishdocuments978919None1323395378371986602023-06-19N/docs/en/user-guide/eCOMPASSSTUG.pdfE-Compass Sensor Toolbox User’s Guide/docs/en/user-guide/eCOMPASSSTUG.pdfdocuments132339537837198660User GuideNenNoneYpdf2NNE-Compass Sensor Toolbox User’s Guide978.9 KBECOMPASSSTUGN1344298646122726388188/docs/en/user-guide/MAG3110UG.pdf2016-10-311305319850557715929217PSP8Aug 19, 2011User GuideThe RD4247MAG3110 sensor toolbox tilt-compensated eCompass kit provides hardware and
software for demonstrating the capability of the MAG3110 3-axis digital magnetometer
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The RD4247MAG3110 sensor toolbox tilt-compensated eCompass kit provides hardware and software for demonstrating the capability of the MAG3110 3-axis digital magnetometer in an eCompass application with hard- and soft-iron calibration.
The RD4247MAG3110 sensor toolbox tilt-compensated eCompass kit provides hardware and software for demonstrating the capability of the MAG3110 3-axis digital magnetometer in an eCompass application with hard- and soft-iron calibration.