SLAU330A TI1 | Alldatasheet
Document overview
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Technical content
Datasheet sections
- 1 GettingStarted
- 1.1 MSP-EXP430F5529 ExperimenterBoard Introduction
- 1.2 KitContents
- 2 User ExperienceSoftware
- 2.1 Introduction
- 2.2 Main Menu
- 2.3 Clock
- 2.4 Games
- 2.5 Power Tests
- 2.6 Demo Apps
- 2.7 SD Card Access
- 2.8 SettingsMenu
- 3 SoftwareInstallationand Debugging
- 3.1 Software
- 3.2 Download theRequiredSoftware
- 3.3 WorkingWiththeExample Software
- 4 MSP-EXP430F5529 Hardware
- 4.1 Hardware Overview
- 4.2 Jumper Settingsand Power
- 4.4 MSP-EXP430F5529 Hardware Components
- 5 FrequentlyAsked Questions,References,and Schematics
- 5.1 FrequentlyAsked Questions
- 5.2 References
- 5.3 Schematicsand BOM
MSP-EXP430F5529 ExperimenterBoard User's Guide LiteratureNumber: SLAU330A May 2011–RevisedJune 2011
2 SLAU330A –May 2011–RevisedJune 2011
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4 ListofFigures SLAU330A –May 2011–RevisedJune 2011
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SLAU330A –May 2011–RevisedJune 2011 Read ThisFirst IfYou Need Assistance The primarysourcesofinformationforMSP430 devicesarethedatasheetsand thefamilyuser'sguides. The most up-to-dateversionsofthesedocuments can be foundatwww.ti.com/msp430. InformationspecifictotheMSP-EXP430F5529 ExperimenterBoard can be foundatwww.ti.com/usbexp. Customer supportforMSP430 devicesand theMSP-EXP430F5529 ExperimenterBoard isprovidedby theTexas InstrumentsProductInformationCenter(PIC),as wellas on theTIE2E (Engineer-2-Engineer) Forum atthelinkbelow. ContactinformationforthePIC can be foundon theTIweb siteat:support.ti.com. The MSP430 SpecificE2E forumislocatedat:community.ti.com/forums/12.aspx. RelatedDocumentation from Texas Instruments MSP-EXP430F5529 ExperimenterBoard User'sGuide (SLAU330 ) MSP-EXP430F5529 ExperimenterBoard User ExperienceSoftware MSP-EXP430F5529 ExperimenterBoard QuickStartGuide (SLAU339 ) MSP-EXP430F5529 ExperimenterBoard PCB DesignFiles(SLAR055 ) MSP430F552x Code Examples (SLAC300 ) FCC Warning Thisequipmentisintendedforuse ina laboratorytestenvironmentonly.Itgenerates,uses,and can radiateradiofrequencyenergyand has notbeen testedforcompliancewiththelimitsofcomputing devicespursuanttosubpartJ ofpart15 ofFCC rules,whicharedesignedtoprovidereasonable protectionagainstradiofrequencyinterference.Operationofthisequipmentinotherenvironmentsmay cause interferencewithradiocommunications,inwhichcase theuser,athisown expense,willbe requiredtotakewhatevermeasures may be requiredtocorrectthisinterference. 5SLAU330A –May 2011–RevisedJune 2011 Preface SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
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User's Guide SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard
1 GettingStarted
1.1 MSP-EXP430F5529 ExperimenterBoard Introduction
The MSP-EXP430F5529 ExperimenterBoard isa developmentplatformbased on theMSP430F5529 with integratedUSB. The ExperimenterBoard showcases theabilitiesofthelatestfamilyofMSP430s and is perfectforlearningand developingUSB-based applicationsusingtheMSP430. The featuresincludea 102x64 dot-matrixLCD, microSD memory cardinterface,3-axisaccelerometer,fivecapacitive-touchpads, RF EVM expansionheaders,nineLEDs, an analogthumb-wheel,easy accesstospareF5529 pins, integratedSpy-Bi-Wireflashemulationmodule,and standardfullJTAG pinaccess.The kitis pre-programmedwithan out-of-boxdemo toimmediatelydemonstratethecapabilitiesoftheMSP430 and ExperimenterBoard.Thisdocument detailsthehardware,itsuse,and theexample software. Figure1.MSP-EXP430F5529 ExperimenterBoard The MSP-EXP430F5529 ExperimenterBoard isavailableforpurchasefromtheTIeStore: https://estore.ti.com/MSP-EXP430F5529-MSP430F5529-Experimenter-Board-P2413C43.aspx 7SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
GettingStarted www.ti.com
1.2 KitContents
- MSP-EXP430F5529 ExperimenterBoard
- Two mini-USBcables
- Batteryholder
- 1GB microSD card
- Quickstartguide
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www.ti.com User ExperienceSoftware
2 User ExperienceSoftware
2.1 Introduction
The MSP-EXP430F5529 ExperimenterBoard arriveswitha User Experienceapplicationinstalledto demonstratea few ofthecapabilitiesoftheMSP430F5529. Setthepower switchto"LDO",and connect yourPC tothe"5529USB" connectionas shown inFigure2.A splashscreendisplayingtheTIlogo shouldappearon theLCD. Waitapproximatelythreeseconds,orpresseithertheS1 orS2 button,to displaytheMain Menu. Use thethumb wheeltonavigateup and down themenu itemson theLCD screen.PresstheS1 pushbuttontoentera selection,orpresstheS2 pushbuttontocancel. Figure2.User ExperienceNavigation
2.2 Main Menu
The main menu displaysa listofapplicationsand settingsthatdemonstratekey featuresofthe MSP430F5529. Use thethumb wheelon thebottomrightofthePCB toscrollup and down throughthe menu options.Use thepush-buttonstoenterand exitmenu items.PressS1 toentera menu item.Press S2 toreturntoa previousmenu ortocancelan operation.Each applicationinthemain menu isdescribed inthefollowingsections. 9SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
User ExperienceSoftware www.ti.com
2.3 Clock
Selectthisoptionfromthemain menu tobringup theClocksub-menu.PressS2 toreturntotheprevious menu. NOTE: The User Experiencesoftwareinitializesthereal-timeclockto04:30:00-01/01/2011when powered isappliedtotheMSP430. DigitalClock:Displaysan image ofa digitalwatchwiththecurrenttimeand date. Analog Clock:Displaysan image ofan analogclockwiththecurrenttime. Set Time: Allowstheusertosetthecurrenttime.Use thescrollwheeltochange thevalueofthecurrent selection.Presspush-buttonS1 isused toadvance tothenextfield.The clockchanges takeaffectafter thelastfieldisupdated.
2.4 Games
Selectthisoptionfromthemain menu tobringup theGames sub-menu.PressS2 toreturntothe previousmenu. Defender:The playercontrolsa smallspaceship.The objectofthegame istoflythrougha tunnelwithout hittingthewallsand tosuccessfullynavigatearoundmines scatteredthroughoutthetunnel. PressS1 orS2 tobeginthegame. Use thewheeltomove theshipup and down and pressS1 orS2 to shoota missile.As thegame progresses,thetunnelgetsnarrowerand thegame speeds up.Afterthe player'sshipcrashes,thescoreisdisplayed. Simon: A versionofthefamous memory game. The objectiveofthegame istomatch a randomly generatedsequence ofLEDs displayedon thetouchpads.Afterthesequence isdisplayed,theusermust touchthecorrectpads inthesame sequence. The game beginswitha single-symbolsequence and adds an additionalsymboltothesequence after each successfulresponseby theuser.The game ends when theuserincorrectlyentersa sequence.The number ofturnsobtainedinthesequence isthendisplayed. TiltPuzzle:A versionofthefamous "8-puzzle"game. The game consistsofa 3 by 3 gridwitheight numbers and one empty space.The game utilizestheon-boardaccelerometertoshiftnumbers up-down and left-right.The objectiveofthegame istohave thesum ofthenumbers ineach row and column equal totwelve.PressS1 tobegina new game ifthecurrentgame isunsolvable.The natureofthegame isthat thereisa 50% probabilitythegame isnotsolvable.
2.5 Power Tests
Selectthisoptionfromthemain menu tobringup thePower Testsub-menu.PressS2 toreturntothe previousmenu. The Power Testmenu containstwo demonstrationsthatallowtheusertoexternallymeasure thecurrent consumptionoftheMSP430 inbothactivemode and low-powermode. Currentconsumptioncan be measured usinga multi-meterwithcurrentmeasuringcapabilities(ammeter).Remove thejumperon "430 PWR" (JP6)and connecta multi-meterinserieswiththeMSP430 VCC supply.Thisconnectioncan be made usingthetwo largeviasnearthe"430PWR" texton thePCB. See Section4 formore detailson this connection. ActiveMode: Demo formeasuringactivemode currentoftheMSP430. Instructionsarepresentedon screen.PressS1 tocontinuetotheapplication. PressS2 toreturntothePower Testssub-menu. The ActiveMode menu consistsoftwo columns.The leftcolumn controlsthecorevoltage(VCORE )ofthe MSP430F5529, and therightcolumn controlsMCLK. The rightcolumn displaysonlythoseMCLK frequenciesthatarevalidforthecurrentVCORE setting.The capacitivetouchpads atthebottomofthe boardcontrolwhichcolumn iscurrentlyactive.The wheelscrollsthroughtheoptionsintheactivecolumn.
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www.ti.com User ExperienceSoftware PressS1 toenterMeasurement Mode. Whileinmeasurement mode, measure thecurrentby attachinga multi-meteracrossthe430 PWR holesand removingthe430 PWR jumperJ6.Replacethe430 PWR jumperaftermaking themeasurement,thenpressS1 orS2 toreturntotheActiveMode menu. PressS2 toreturntothePower Testssub-menu Low Power Mode: SelectingLow Power Mode takestheusertoan informationscreenwithdirectionson how tonavigatetheLow Power Mode menu. PressS1 tocontinueon totheapplication. PressS2 toreturntothePower Testssub-menu. IntheLow Power Mode menu, use thewheeltoselecta low-powermode option,thenpressS1 toenter low-powermode. Whileinlow-powermode, measure thecurrentby attachinga multi-meteracrossthe 430 PWR holesand removingthe430 PWR jumper. PressS1 orS2 toreturntotheLow Power Mode menu.
2.6 Demo Apps
Selectthisoptionfromthemain menu tobringup theDemo Apps sub-menu,whichallowsaccessto variousdemo applications.Many ofthem requirea USB connection.Use thewheeltoselectone ofthe optionsand thenpressS1 toentertheapplication.PressS2 toreturntothemain menu. TerminalEcho uses theCDC stacktocommunicatewitha hyperterminalon thePC. USB Mouse uses the HID stacktointerfacewiththePC. TerminalEcho: SelectTerminalEcho todisplayan informationalscreenand connectstothePC. Make suretoconnecta USB cablefromtheUSB portlabeled"5529USB" tothehostPC. Open a hyperterminal window and connecttotheMSP430. Textthatistypedinthehyperterminalwindow isechoed back tothe terminaland isdisplayedon theLCD screenoftheExperimenterBoard. PressS2 toexitand returnDemo Apps sub-menu. USB Mouse: SelectUSB Mouse todisplayan informationalscreenand connectstothePC. Make sureto connecta USB cablefromtheUSB portlabeled"5529USB" tothehostPC. The MSP430 now actsas the mouse forthePC. Tilttheboardtomove themouse aroundthescreen,and pressS1 toclick. PressS2 toexitand returnDemo Apps sub-menu. USB microSD: SelectUSB microSD toconnecttothePC as a mass storagedevice.Make sureto connecta USB cablefromtheUSB portlabeled"5529USB" tothehostPC. The MSP430 shows as an externaldrive(orremovabledrive)forthePC. PressS2 toreturntotheDemo Apps sub-menu. Touch Graph: SelectTouch Graph todisplayan instructionscreenfora veryshorttimeand thenlaunch theapplication.Touch thecapacitorkey pads withvaryingpressurestosee thevaryingcapacitancebeing displayedas barswithvaryingheights.Slidea fingerovermultiplecapacitorkey pads toobservethe change inheightsofbarswithrespecttothecurrentpositionofthefingerand alsotheeffectof capacitancefromneighboringpads. PressS2 toexitand returnDemo Apps sub-menu. Touch Slide:SelectTouch Slidetodisplayan instructionscreenfora veryshorttimeand thenlaunchthe application.Touch thecapacitorkey pads withvaryingpressurestosee thevaryingcapacitancebeing displayedas barswithvaryingheights.Slidea fingerovermultiplecapacitorkey pads toobservethe change inheightsofbarswithrespecttothecurrentpositionofthefingerand alsotheeffectof capacitancefromneighboringpads. PressS2 toexitand returnDemo Apps sub-menu. Demo Cube: SelectDemo Cube tolaunchthedemo cube application.Read theinstructionsand pressS1 tostarttheapplication.Therearetwo modes. Use S1 totogglebetween them. Inthefirstmode, thecube randomlyrotatesby itself.Inthesecond mode, thecube can be rotatedby tiltingtheboard.Thismode uses theaccelerometer. PressS2 toexitand returnDemo Apps sub-menu. 11SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
User ExperienceSoftware www.ti.com
2.7 SD Card Access
SelectSD Card Access toaccessa microSD cardplacedintheSD cardreaderatthetopoftheboard.If no SD cardispresent,a warningscreenisdisplayed.When an SD cardispresent,thescreendisplaysa listofthecontentsofthecard.Directoriesaredenotedby "<d>".Use thewheeltoscrollthroughthelist and selectfilesordirectoriestoopen by pressingS1.When a fileisopen,use thewheeltoscrollfurther throughthefile.PressS2 toclosethecurrentfileordirectory. PressS2 whileintherootdirectorytoreturntothemain menu.
2.8 SettingsMenu
SelectSettingstomodifythedisplaysettingsfortheExperimenterBoard.Use thewheeltoselectthe settingtomodifyand pressS1 toenter. PressS2 toreturntothemain menu. Contrast:ModifythecontrastoftheLCD by turningthewheel.When firstenteringthemenu, thecontrast remainsunchanged fora few secondstoallowtheusertoreadtheinstructionsand thenchanges tothe settingforthecurrentpositionofthewheel. Afterthecontrastissetatthedesiredlevel,pressS2 toreturntotheSettingssub-menu. Backlight:Modifythebrightnessofthebacklightby turningthewheel.Thereare12 brightnesssettings, fromhavingthebacklightturnedoffup tofullbrightness. Afterthebacklightissetatthedesiredlevel,pressS2 toreturntotheSettingssub-menu. CalibrateAccel:Setsthe"default"positionfortheaccelerometer.An instructionscreenisshown first.For bestresults,settheboardon a flatsurface.PressS1 tostartcalibrations.The accelerometerreadingsat thatpointintimearestoredtoflashand aresubtractedfromthesubsequentaccelerometerreadingsof otherapplicationslikeUSB Mouse and USB TiltPuzzle. SW Version:Displaysthecurrentversionofthefirmwareloadedon theExperimenterBoard. LEDs & Logo: LightsalltheLEDs on theboard.Thereareone red,one yellow,one green,and fiveblue LEDs on thecapacitivetouchpads.Thisprovidesa method todeterminewhetherornotalltheLEDs are inworkingcondition. The screenalsodisplaystheTIBug and a USB FlashDrivelogoon thescreen.
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3 SoftwareInstallationand Debugging
3.1 Software
Texas Instruments'Code Composer Studio(CCS) isan MSP430 integrateddevelopmentenvironment (IDE)designedspecificallytodevelopapplicationsand programMSP430 devices.CCS, CCS Core Edition,and IAR Embedded Workbench can allbe used toevaluatetheexample softwareforthe ExperimenterBoard.The compilerlimitationof8KB preventsIAR KickStartfrombeingused forthe evaluationoftheexample software.The example software,titled"UserExperience,"isavailableonlineas MSP-EXP430F5529 ExperimenterBoard User ExperienceSoftware.
3.2 Download theRequired Software
DifferentdevelopmentsoftwaretoolsareavailablefortheMSP-EXP430F5529 ExperimenterBoard developmentboard.IAR Embedded Workbench KickStartand Code Composer Studio(CCS) areboth availableina freelimitedversion.IAR Embedded Workbench KickStartallows8KB ofC-code compilation. CCS islimitedtoa code sizeof16KB. The softwareisavailableatwww.ti.com/msp430. The firmwareislargerthanIAR KickStart's8KB limit,so a fulllicenseofIAR Workbench isrequiredto compiletheapplicationusingIAR.A 30-dayevaluationversionofIAR isalsoavailablefrom http://supp.iar.com/Download/SW/?item=EW430-EVAL.Thisdocument describesworkingwithCode Composer Studio(CCS). Therearemany othercompilersand integrateddevelopmentenvironments(IDEs)forMSP430 thatcan be used withtheMSP-EXP430F5529 ExperimenterBoard,includingRowley Crossworksand MSPGCC. However,theexample projecthas been createdusingCode Composer Studio(CCS) and IAR.Formore informationon thesupportedsoftwareand thelatestcode examplesvisittheonlineproductfolder (http://focus.ti.com/docs/toolsw/folders/print/msp-exp430f5529.html).
3.3 Working With theExample Software
The MSP-EXP430F5529 example softwareiswritteninC and offersAPIs tocontroltheMSP430F5529 chipand externalcomponents on theMSP-EXP430F5529 ExperimenterBoard.New application developmentcan use thislibraryforguidance. The example softwarecan be downloadedfromtheMSP-EXP430F5529 toolspage,MSP-EXP430F5529 ExperimenterBoard User ExperienceSoftware.The zippackage includestheMSP-EXP430F5529 example software.The code isreadyforcompilationand execution. To modify,compile,and debug theexample code thefollowingstepsshouldbe followed: 1. Ifyou have notalreadydone so,downloadthesample code fromtheMSP-EXP430F5529 toolspage. 2. Install5529UE-x.xx-Setup.exeinstallationpackage tothePC. 3. ConnecttheMSP-FET430UIF programmer tothePC. Ifyou have notalreadydone so,installthe driversfortheprogrammer. 4. Connectone end ofthe14-pincabletoJTAG programmer and anotherend totheJTAG headeron the board. 5. Open CCS and selecta workspacedirectory(seeFigure3). 13SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
SoftwareInstallationand Debugging www.ti.com Figure3.Selectinga CCS Workspace
- SelectProject> ImportExistingCCS/CCE EclipseProject.
- Browse totheextractedprojectdirectory.The projectshouldnow show up intheProjectslist(see Figure4).
- Make suretheprojectisselected,and clickFinish. Figure4.Opening ExistingProject The projectisnow open.To build,download,and debug thecode on thedeviceon the MSP-EXP430F5529 ExperimenterBoard,selectTarget> Debug ActiveProjectorclickthegreen'bug' button.
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www.ti.com SoftwareInstallationand Debugging You may be promptedtoupdatethefirmwareon theMSP-FET430UIF programmer.Do notbe concerned; clickthebuttonthatsaysUpdate,and theprogramdownloadshouldcontinueas expected. NOTE: To begindevelopingyourown application,followthesesteps: 1. Download and installa supportedIDE: Code Composer Studio– Free16KB IDE:www.ti.com/ccs IAR Embedded Workbench KickStart– Free8KB IDE:www.ti.com/iar-kickstart 2. ConnecttheMSP-EXP430F5529 ExperimenterBoard "eZ-FET"USB tothePC. 3. Download and debug yourapplication. 15SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
SoftwareInstallationand Debugging www.ti.com
3.3.1 Basic Code Structure
CTS "CapacitiveTouch Sensing" librarywithfunctionsrelatedtothecapacitive touchpads. CCS CCS-specificprojectfiles CCS_Code_Size_Limited CCS-specificprojectfilesfor16kb code sizelimitedversion F5xx_F6xx_Core_Lib Core Libraries FatFs StackfortheFAT filesystemused by SD Card IAR IAR-specificprojectfiles MSP-EXP430F5529_HAL Providesan abstractionlayerforeventslikebuttonpresses,etc. HAL_AppUart FunctionsforcontrollingapplicationUART HAL_Board ExperimenterBoard portinitializationand control HAL_Buttons Driverforthebuttonson theExperimenterBoard HAL_Cma3000 Functionsrequiredtouse on-boardaccelerometer HAL_Dogs102x6 DriverfortheDOGS 102x64 display HAL_Menu Used tocreatethemenus fortheexample softwareand applications HAL_SDCard DriverfortheSD Card module HAL_Wheel Driverforthescroll(thumb)wheel USB USB stackfortheExperimenterBoard UserExperienceDemo Filesrelatedtotheexample softwareprovidedwiththeboard 5xx_ACTIVE_test Runs a RAM test Clock Displaysanalogand digitalclocks.Alsoprovidesa functiontosettimeand date. Demo_Cube Displaysa auto/manualrotatingcube (usesaccelerometer) DemoApps Containsthedemos forcapacitivetouch EchoUsb HyperTerminalapplication LPM Providesoptionsforvariouslow-powermodes MassStorage Use microSD as externalstorageon computer menuGames PlayLaunchPad DefenderorSimon Puzzle PlayTilt-puzzle Mouse Use theExperimenterBoard as a mouse PMM Activelow-powermodes. Choose VCORE and MCLK settings. PowerTest Testthecurrentconsumptionofvariouslow-powermodes Random Random number generator SDCard Access microSD cardcontentson theExperimenter's Board Settings Optionstosetvariousparameterslikecontrast,brightness,etc. UserExperience.c Main MSP-EXP430F5529 ExperimenterBoard file MSP-EXP430F5529 User ExperienceManifest.pdf readme.txt
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www.ti.com MSP-EXP430F5529 Hardware
4 MSP-EXP430F5529 Hardware
4.1 Hardware Overview
Figure5 and Figure6 show thefunctionalblocksand connectionsoftheMSP-EXP430F5529 ExperimenterBoard.The areaofthePCB labeledas "eZ430-FET Emulator"and borderedby a thick brokenlineon thePCB silkscreenisan integratedTIFlashEmulationTool(FET)whichisconnectedto theExperimenterBoard by thejumperson JP16.Thismodule issimilartoany eZ430 emulator,and providesreal-timein-systemSpy-Bi-Wireprogrammingand debuggingviaa USB connectiontoa PC. UsingtheeZ430-FET Emulatormodule eliminatestheneed forusingan externalMSP430 Flash EmulationTool(MSP-FET430UIF ).However,fullspeed 4-wireJTAG communicationisonlypossiblewith a MSP-FET430UIF connectedtothe"5529JTAG" header.Foradditionaldetailson theinstallationand usage oftheFlashEmulationTool,Spy-Bi-Wireand JTAG, see theMSP430 Hardware ToolsUser's Guide (SLAU278 ). Figure5.Simple Hardware Overview 17SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
MSP-EXP430F5529 Hardware www.ti.com Figure6.Hardware Block Details
4.2 Jumper Settingsand Power
Figure7 shows thecommon jumpersettings,dependingon thepower sourcefortheMSP-EXP430F5529 ExperimenterBoard. Figure7.Common Power Jumper Settings
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www.ti.com MSP-EXP430F5529 Hardware Therearealsootherjumpersavailableforcurrentmeasurement,disconnectionofcertainperipherals,and otheradvanced options(seeTable1).The blacklineon theboardbelowthejumpersJP8 (LDO) and JP11 (JTAG) indicatesthedefaultjumperposition. Table1.MSP-EXP430F5529 Jumper Settingsand Functionality FunctionalityWhen JumperHeader FunctionalityWhen Jumper Present Absent JP2 – POT ConnectspinP8.0topotentiometer DisconnectspinP8.0to potentiometer JP3 – LED1 ConnectspinP1.0toLED1 DisconnectspinP1.0toLED1 JP6 – 430 PWR MSP430F5529 isnotpowered.Providespower toMSP430F5529. Alsoused tomeasure current consumptionoftheMSP430F5529. NOTE: The two largeviasnearthe "430 PWR " labelon thePCB areconnectedtoJP6 as well. These viascan be used to easilyconnecta testleadonto thePCB forcurrent consumptionmeasurement. JP7 – SYS PWR Providespower totheentireMSP-EXP430F5529 board.Also MSP-EXP430F5529 Experimenter used tomeasure currentconsumptionoftheentireboard. Board systemdevicesarenot powered. JP8 – LDO No connectiontoMSP430 VCC whenOnlyapplicablewhen poweringvia"5529 USB " connection. powered via"5529 USB ".ALT (Default):ConnectsthealternateLDO (TPS73533)tothe MSP430 VCC. INT:Connectstheinternal'F5529 LDO totheMSP430 VCC . JP11 – JTAG JTAG tooldoes NOT providepowerOnlyapplicablewhen poweringviaJTAG connection. tosystem.EXT (Default):JTAG tooldoes NOT providepower tosystem. INT:JTAG toolwillprovidepower tosystem. JP14 – RF PWR ConnectssystemVCC totheRF headers:J12,J13,and RF2. RF headers:J12,J13,and RF2 do nothave power. JP15 – USB PWR ConnectsUSB 5-V power toMSP430F5529 and AlternateLDO USB 5-V power notconnectedto (TPS73533). system. JP16 – eZ-FET No connectionbetweenDVCC: ConnectsMSP430 VCC toeZ-FET Connection MSP430F5529 and theeZ-FET.TXD /RXD: ConnectsUART between F5529 and eZ-FET. RST /TEST: ConnectsSpy-Bi-WireJTAG between F5529 and eZ-FET. 19SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
MSP-EXP430F5529 Hardware www.ti.com Figure8 shows a visualdiagramofthepower connectionsfortheMSP-EXP430F5529 Experimenter Board.Care shouldbe observedwhen usingmultiplepower sourcessuch as USB and a batteryatthe same time.Thiscouldleadtothebatterybeingchargedifthepower settingsarenotcorrect. Figure8.VisualPower Schematic
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www.ti.com MSP-EXP430F5529 Hardware Figure9 shows a method ofconnectinga multi-metertotheMSP-EXP430F5529 tomeasure thecurrent oftheMSP430F5529. Figure9.MSP430 CurrentMeasurement Connection 4.3 eZ-FET Emulator The connectionbetween theeZ-FET emulatorand theMSP-EXP430F5529 can be opened by removing thejumperson JP16.Thisisnecessaryonlytoensurethereisno interactionbetween thetwo sub-systems.The eZ-FET Emulatorcan programothereZ430 toolssuch as theeZ430-F2013 target boardas well.A six-pinheaderon J17 wouldneed be installedon thePCB forthisfeature. The USB interfaceon theeZ-FET emulatoralsoallowsforUART communicationwitha PC host,in additiontoprovidingpower toExperimenterBoard when thepower switchissetto'eZ'.The USCI module intheMSP430F5529 supportstheUART protocolthatisused tocommunicatewiththeTITUSB3410 deviceon theeZ-FET emulatorfordatatransfertothePC.
4.4 MSP-EXP430F5529 Hardware Components
4.4.1 Dot-MatrixLCD
The EA DOGS102W-6 isa dot-matrixLCD witha resolutionof102x64 pixels.The LCD has a built-in back-lightdriverthatcan be controlledby a PWM signalfromtheMSP430F5529, pinP7.6.The MSP430F5529 communicateswiththeEA DOGS102W-6 viaan SPI-likecommunicationprotocol.To supplementthelimitedsetofinstructionsand functionalitiesprovidedby theon-chipLCD driver,an LCD driverhas been developedfortheMSP430F5529 tosupportadditionalfunctionalitiessuch as fontsetand graphicalutilities.More informationon theLCD can be obtainedfromthemanufacturer'sdatasheet. 21SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
MSP-EXP430F5529 Hardware www.ti.com
4.4.2 Push Buttons,Potentiometer,and LEDs
Table2 describesthepinconnectionsforthepotentiometer,push-buttonswitches,and theon-board LEDs. Table2.Push Buttons,Potentiometer,and LED Connections Peripheral Pin Connection PotentiometerWheel P8.0 Switch1 (S1) P1.7 Switch2 (S2) P2.2 RESET Switch(S3) RST /NMI LED1 P1.0 LED2 P8.1 LED3 P8.3 CapacitiveTouch Pad 1 (Cross) P1.1 CapacitiveTouch Pad 2 (Square) P1.2 CapacitiveTouch Pad 3 (Octagon) P1.3 CapacitiveTouch Pad 4 (Triangle) P1.4 CapacitiveTouch Pad 5 (Circle) P1.5
4.4.3 WirelessEvaluationModule Interface
IncludedinthecommunicationperipheralsaretheheadersthatsupporttheCC-EM boardsfromTI.The transceivermodules connecttotheUSCI oftheMSP430F5529 configuredinSPI mode usingtheUCB0 peripheral.LibrariesthatinterfacetheMSP430 tothesetransceiversareavailableatwww.ti.com/msp430 undertheCode Examples tab.The RF PWR jumpermust be populatedtoprovidepower totheEM daughterboard.The followingradiodaughtercardsarecompatiblewiththeMSP-EXP430F5529 ExperimenterBoard:
- CC1100EMK/CC1101EMK – Sub-1-GHz radio
- CC2500EMK – 2.4-GHzradio
- CC2420EMK/CC2430EMK – 2.4-GHz802.15.4[SoC]radio
- CC2520EMK/CC2530EMK – 2.4-GHz802.15.4[SoC]radio
- CC2520 + CC2591 EM (ifR4 and R8 0-Ω resistorsareconnected) NOTE: Futureevaluationboardsmay alsobe compatiblewiththeheaderconnections. 4.4.4 eZ430-RF2500T Interface The eZ430-RF2500T module can be attachedtotheMSP-EXP430F5529 ExperimenterBoard inone of two ways – throughan 18-pinconnector(J12– eZ RF) ora 6-pinconnector(J13– eZ RF Target).The pinson theeZ430-RF2500T headersaremultiplexedwiththepinson theCC-EM headers,whichallows theEZ430-RF2500T module tobehave identicallytoa CC-EM daughterboard.Power must be providedto theEZ430-RF2500T module by settingthejumperRF PWR (JP14).The eZ430-RF2500T connection shouldalwaysbe made withtheantennafacingoffoftheboard.Formore informationon theconnections totherequiredeZ430-RF2500T,see theeZ430-RF2500 DevelopmentToolUser'sGuide (SLAU227 ), availablethroughwww.ti.com/ez430.
22 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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www.ti.com MSP-EXP430F5529 Hardware
4.4.5 Three-AxisAccelerometer
The MSP-EXP430F5529 ExperimenterBoard includesa VTI digitalthree-axisaccelerometer(partnumber CMA3000-D01). The accelerometersupportsSPI communicationand outputsdataforeach X,Y and Z axis.The accelerometerispowered throughpinP3.6.Thisinterface,especiallyinconjunctionwithother on-boardinterfacessuch as theLCD, enablesseveralpotentialapplicationssuch as USB mouse movement emulationand tiltsensing.The example softwareused theaccelerometerfortheTiltPuzzle, Demo Cube, and USB Mouse. Formore informationon theaccelerometerchip,see themanufacturer's datasheet(http://www.vti.fi).
4.4.6 Pin Access Headers
The MSP-EXP430F5529 ExperimenterBoardsincludesthreeheaders(J4,J5,and J12)thatcan be used as additionalconnectionstoexternalhardwareorforsignalanalysisduringfirmwaredevelopment.Allpins excepttheGND pinareinternallyselectableas eithergeneralpurposeinput/outputpinsoras describedin thedevicedatasheet. Table3.PinningMapping forHeader J4 Pin Description PortPin PortPin Pin Description Vcc VCC P6.6 CB6 /A6 UCA1RXD /UCA1SOMI P4.5 P8.1 GPIO – LED2 UCA1TXD /UCA1SIMO P4.4 P8.2 GPIO – LED3 GPIO P4.6 P8.0 GPIO – POT GPIO P4.7 P4.5 UCA1RXD /UCA1SOMI A9 /VREF- /VeREF- P5.1 P4.4 UCA1TXD /UCA1SIMO GND GND P6.7 CB7 /A7 Table4.Pin Mapping forHeader J5 Pin Description PortPin PortPin Pin Description VCC VCC P7.0 CB8 /A12 UCB1SOMI /UCB1SCL -SD P4.2 P7.1 CB9 /A13 UCB1SIMO /UCB1SDA -LCD/SD P4.1 P7.2 CB10 /A14 UCB1CLK /UCA1STE -LCD/SD P4.3 P7.3 CB11 /A15 UCB1STE /UCA1CLK -RF P4.0 P4.1 UCB1SIMO /UCB1SDA -LCD/SD TB0OUTH /SVMOUT -SD P3.7 P4.2 UCB1SOMI /UCB1SCL -SD GND GND P7.7 TB0CLK /MCLK Table5.Pin Mapping forHeader J12 Pin Description PortPin PortPin Pin Description (RF_STE) P2.6 P3.0 (RF_SIMO) (RF_SOMI) P3.1 P3.2 (RF_SPI_CLK) TA2.0 P2.3 P2.1 TA1.2 TB0.3 P7.5 GND GND GPIO P4.7 P2.4 TA2.1 (RXD) P4.5 P4.6 GPIO (TXD) P4.4 P4.0 UCx1xx (LED1) P1.0 P2.0 TA1.1 GND GND RF_PWR RF_PWR 23SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
FrequentlyAsked Questions,References,and Schematics www.ti.com
5 FrequentlyAsked Questions,References,and Schematics
5.1 FrequentlyAsked Questions
- Which devicescan be programmed withtheExperimenterBoard? The MSP-EXP430F5529 boardisdesignedspecificallytodemonstratetheMSP430F5529. 2. The MSP430F5529 isno longeraccessibleviaJTAG. Issomething wrong withthedevice? Verifythatthejumpersareconfiguredcorrectly.See Section4 forjumperconfiguration. Verifythatthetargetdeviceispowered properly. Ifthetargetispowered locally,verifythatthesuppliedVCC issufficienttopower theboard.Check the devicedatasheetforthespecification. 3. Idideverystepinthepreviousquestionbut stillcould not use or communicate withthedevice. Improperprogrammingofthedevicecouldleadtoa JTAG totallockupcondition.The cause ofthis problemmightbe an incorrectdeviceselectionwhen creatinga new projectinCCS (select MSP430F5529) orprogrammingthedevicewithouta stablepower source(lowbattery,switchingthe Power Selectorwhileprogramming,orabsence oftheMSP430 power jumperJP6 during programming). To solvethis,completelyresetthedevice.Firstunplugallpower sourcesand connections(JTAG and USB cables).SetthePower SelectorSwitchtoFET mode. Use a jumpercabletobrieflyshortone of theGND testpointswiththe430 PWR testpoint.The deviceshouldnow be releasedfromthelockup state. 4. Does theExperimenterboard protectagainstblowing theJTAG fuseofthetargetdevice? No. Fuse blowcapabilityisinherenttoallflash-basedMSP430 devicestoprotectuser'sintellectual property.Care must be takentoavoidtheenablingofthefuseblowoptionduringprogramming, because blowingthefusewouldpreventfurtheraccesstotheMSP430 deviceviaJTAG. 5. Iam measuring system currentintherange of30 mA, isthisnormal? The LCD and theLCD backlightrequirea largeamount ofcurrent(approximately20 mA to25 mA) to operate.Thisresultsina totalsystemcurrentconsumptionintherangeof30 mA. IftheLCD backlight ison,30 mA isconsiderednormal. To ensuretheboardisOK, disabletheLCD and theLCD backlightand measure thecurrentagain. The entireboardcurrentconsumptionshouldnotexceed 10 mA atthisstate.Note thatthecurrent consumptionoftheboardcouldvarygreatlydependingon theoptimizationoftheboardconfigurations and theapplications. The expectedcurrentconsumptionfortheMSP430F5529 instandbymode (LPM3),forexample,is ~2 μA.Operatingat1 MHz, thetotalcurrentconsumptionshouldnotexceed ~280 μA. 6. Ihave troublereadingtheLCD clearly.Why istheLCD contrastsettingso low? The LCD contrastishighlydependenton thevoltageofthesystem.Changingpower sourcefromUSB (3.3V) tobatteries(~3V) coulddrasticallyreducethecontrast.Fortunately,theLCD driversupports adjustablecontrast.The specificinstructioncan be foundintheLCD user'sguide.The MSP-EXP430F5529 softwarealsoprovidesthefunctiontoadjustthecontrastusingthewheel(see Section2.8). 7. When Irun theexample code,nothinghappens on theLCD. Verifythatalljumpersareinstalledcorrectlyand the14-pinJTAG cableareproperlyconnected.
5.2 References
- MSP430x5xx/MSP430x6xx FamilyUser'sGuide (SLAU208 )
- Code Composer Studio(CCStudio)IntegratedDevelopmentEnvironment(IDE) (http://focus.ti.com/docs/toolsw/folders/print/msp-ccstudio.html)
- MSP430 InterfacetoCC1100/2500 Code Library(PDF:SLAA325 )(AssociatedFiles:SLAA325.ZIP)
24 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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5.3 Schematics and BOM
The followingpages show theschematicsand BOM. Inaddition,theoriginalEagleCAD schematicsand Gerberfilesareavailablefordownload(SLAR055 ). Figure10.Schematics (1of7) 25SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
FrequentlyAsked Questions,References,and Schematics www.ti.com Figure11.Schematics (2of7)
26 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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www.ti.com FrequentlyAsked Questions,References,and Schematics Figure12.Schematics (3of7) 27SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
FrequentlyAsked Questions,References,and Schematics www.ti.com Figure13.Schematics (4of7)
28 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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www.ti.com FrequentlyAsked Questions,References,and Schematics Figure14.Schematics (5of7) 29SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
FrequentlyAsked Questions,References,and Schematics www.ti.com Figure15.Schematics (6of7)
30 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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www.ti.com FrequentlyAsked Questions,References,and Schematics Figure16.Schematics (7of7) 31SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
FrequentlyAsked Questions,References,and Schematics www.ti.com Table6.BillofMaterials Part Value Package Type Device C1 47pF 0805 C2 12pF 0805 C3 DNP 0603 C4 12pF 0805 C5 10µF 0805 C6 47pF 0805 C7 100nF 0805 C8 220n 0603 C9 220n 0603 C10 10uF/6,3V 1210 C11 100n 0603 C12 100n 0805 C13 100n 0805 C14 DNP 0603 C15 10uF/6,3V 1210 C16 100n 0805 C17 470n 0805 C18 10µF 0805 C19 100nF 0805 C20 .1u 0603 C21 .1u 0603 C22 1µF 0805 C23 1µF 0805 C24 1µF 0805 C25 1µF 0805 C26 1µF 0805 C27 1µF 0805 C28 4.7uF 0805 C29 10nF 0805 C30 1µF 0805 C31 .1u 0603 C32 4.7u 0805 C33 0.1u 0603 C34 4u7 0603 C35 10p 0603 C36 10p 0603 C37 10n 0402 C38 33p 0402 C39 33p 0402 C40 1u/6.3V 0603 C41 100n 0402 C42 1u/6.3V 0603 C43 100n 0402 C44 1u/6.3V 0603 C45 22p 0402 C46 22p 0402 C47 100n 0402 C48 100n 0402 C49 100n 0402 C50 10uF/6,3V 1210 CON1 8PIN_SM_MA_HEADER HEADER 2x4 MALE .1" SMD CON2 8PIN_SM_MA_HEADER HEADER 2x4 MALE .1" SMD
32 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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www.ti.com FrequentlyAsked Questions,References,and Schematics Table6.BillofMaterials(continued) Part Value Package Type Device CON3 8PIN_SM_MA_HEADER HEADER 2x4 MALE .1" SMD D1 LLSD103A-7 MiniMELF D2 1N4148 MicroMELF SOD110-R J1 103308-2 14-PinMale JTAG Connector JP2 POT_JMP HEADER 1x2 MALE .1" TH JP1E\\SMALL_PIN JP3 LED_JMP HEADER 1x2 MALE .1" TH JP1E\\SMALL_PIN J4 HEADER -F5529 PIN ACCESS HEADER 2x7 MALE .1" TH J5 HEADER -F5529 PIN ACCESS HEADER 2x7 MALE .1" TH JP6 430_PWR HEADER 1x2 MALE .1" TH JP1E JP7 SYS_PWR HEADER 1x2 MALE .1" TH JP1E JP8 LDO_PWR_SEL HEADER 1x3 MALE .1" TH PINHD-1X3/SMALL_PIN J9 22-03-5035 MOLEX 3-PINMALE HEADER 22-03-5035 J10 HEADER -PWR HEADER 1x3 MALE .1" TH PINHD-1X3 JP11 JTAG_PWR_SEN HEADER 1x3 MALE .1" TH PINHD-1X3/SMALL_PIN J12 eZ-RF1 HEADER -RF2500 HEADER 2x9 MALE .1" TH J13 6-PinMale eZ430 Connector 6-PinMale eZ430 Connector SL127L6TH JP14 RF_PWR HEADER 1x2 MALE .1" TH JP1E JP15 USB_PWR HEADER 1x2 MALE .1" TH JP1E JP16 eZ430-FET_JMP HEADER 2x5 MALE .1" TH JP5Q J17 6-PinMale eZ430 Connector 6-PinMale eZ430 Connector SL127L6TH LED1 LEDCHIPLED_0603 0603 LEDCHIPLED_0603 LED2 LEDCHIPLED_0603 0603 LEDCHIPLED_0603 LED3 LEDCHIPLED_0603 0603 LEDCHIPLED_0603 LED4 OSRAM TOPLED SantanaBlueLED 0805 (SurfaceMount Bottom) OSRAM TOPLED SantanaBlueLED LED5 OSRAM TOPLED SantanaBlueLED 0805 (SurfaceMount Bottom) OSRAM TOPLED SantanaBlueLED LED6 OSRAM TOPLED SantanaBlueLED 0805 (SurfaceMount Bottom) OSRAM TOPLED SantanaBlueLED LED7 OSRAM TOPLED SantanaBlueLED 0805 (SurfaceMount Bottom) OSRAM TOPLED SantanaBlueLED LED8 OSRAM TOPLED SantanaBlueLED 0805 (SurfaceMount Bottom) OSRAM TOPLED SantanaBlueLED LED9 LEDCHIPLED_0603 0603 LED_0603D0603 PAD1 CAP_TOUCH_PAD CAP_TOUCH_PAD PROJECT7264_CC430_PAD PAD2 CAP_TOUCH_PAD CAP_TOUCH_PAD PROJECT7264_CC430_PAD PAD3 CAP_TOUCH_PAD CAP_TOUCH_PAD PROJECT7264_CC430_PAD PAD4 CAP_TOUCH_PAD CAP_TOUCH_PAD PROJECT7264_CC430_PAD PAD5 CAP_TOUCH_PAD CAP_TOUCH_PAD PROJECT7264_CC430_PAD POT1 EVL-HFKA05B54 POT EVL-HFKA05B54 Q1 MS3V-T1R 32.768kHzCL ClockCrystal32kHz F20XX_PIR_DEMO_ &_EVAL_CM200T Q2 SMD Oscillator4MHz SMD Oscillator4MHz QUARZ_HC49_4P-1 Q3 SMD Oscillator12MHz SMD Oscillator12MHz XTL_FT7AFT10A R1 47k 0603 R-US_R0603 R2 0R 0603 R-US_R0603 R3 470R 0603 R-US_R0603 R4 470R 0603 R-US_R0603 R5 470R 0603 R-US_R0603 R6 47k 0603 R-US_R0603 R7 680 0805 RES0805 R8 680 0805 RES0805 R9 680 0805 RES0805 R10 680 0805 RES0805 R11 680 0805 RES0805 R12 100K 0603 R-US_R0603 R13 100k 0603 R-US_R0603 33SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
FrequentlyAsked Questions,References,and Schematics www.ti.com Table6.BillofMaterials(continued) Part Value Package Type Device R14 100k 0603 R-US_R0603 R15 100K 0603 R-US_R0603 R16 100k 0603 R-US_R0603 R17 47k 0603 R-US_R0603 R18 47k 0603 R-US_R0603 R19 0 0603 R-US_R0603 R20 100k 0603 R-US_R0603 R21 36k 1% 0603 R-US_R0603 R22 27R 0603 R-US_R0603 R23 27R 0603 R-US_R0603 R24 1M 0603 R-US_R0603 R25 1k4 0603 R-US_R0603 R26 100R 0603 R-US_R0603 R27 33k 0603 R-US_R0603 R28 47k 0402 R_SMDR0402 R29 47k 0402 R_SMDR0402 R30 47k 0402 R_SMDR0402 R31 100R 0402 R_SMDR0402 R32 100R 0402 R_SMDR0402 R33 270 0402 R_SMDR0402 R34 DNP 0402 R_SMDR0402 R35 100R 0402 R_SMDR0402 R36 100R 0402 R_SMDR0402 R37 6k8 0402 R_SMDR0402 R38 3k3 0402 R_SMDR0402 R39 10k 0402 R_SMDR0402 R40 15k 0402 R_SMDR0402 R41 33k 0402 R_SMDR0402 R42 1k5 0402 R_SMDR0402 R43 33R 0402 R_SMDR0402 R44 DNP (47k) 0402 R_SMDR0402 R45 DNP (47k) 0402 R_SMDR0402 R46 33R 0402 R_SMDR0402 R47 100k/1% 0402 R_SMDR0402 R48 33k 0402 R_SMDR0402 R49 3k3 0402 R_SMDR0402 R50 100k/1% 0402 R_SMDR0402 R51 3k3 0402 R_SMDR0402 R52 100R 0402 R_SMDR0402 R53 1k5 0402 R_SMDR0402 R54 1k5 0402 R_SMDR0402 RF1 CCxxxx RF EVM HEADER CCXXXX_20PIN TFM-110-02-SM-D-A-K RF2 CCxxxx RF EVM HEADER CCXXXX_20PIN TFM-110-02-SM-D-A-K S1 USER1 PUSHBUTTON BUTTON EVQ-11L05R S2 USER2 PUSHBUTTON BUTTON EVQ-11L05R S3 F5529 RESET PUSHBUTTON BUTTON EVQ-11L05R S4 F5529 USB BSL PUSHBUTTON BUTTON EVQ-11L05R SW1 POWER SELECT SWITCH DP3T_SWITCH JS203011CQN TP1 F5529 VREF+ TEST POINT TEST_POINT - TP2 F5529 VCORE TEST POINT TEST_POINT - TP3 CC430 EM TEST POINT TEST_POINT -
34 MSP-EXP430F5529 ExperimenterBoard SLAU330A –May 2011–RevisedJune 2011
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www.ti.com FrequentlyAsked Questions,References,and Schematics Table6.BillofMaterials(continued) Part Value Package Type Device TP4 CC430 EM TEST POINT TEST_POINT - TP5 CC430 EM TEST POINT TEST_POINT - TP6 CC430 EM TEST POINT TEST_POINT - TP7 CC430 EM TEST POINT TEST_POINT - TP8 CC430 EM TEST POINT TEST_POINT - TP9 eZ430 F16x TEST POINT (EZ_VBUS) TEST_POINT - TP10 eZ430 F16x TEST POINT (RESET) TEST_POINT - TP11 eZ430 F16x TEST POINT (GND) TEST_POINT - TP12 eZ430 F16x TEST POINT (HTCK) TEST_POINT - TP13 eZ430 F16x TEST POINT (HTMS) TEST_POINT - TP14 eZ430 F16x TEST POINT (HTDI) TEST_POINT - TP15 eZ430 F16x TEST POINT (HTDO) TEST_POINT - U1 F5529 -MSP430F5529 80-LQFP MSP430F5529IPNR U2 3-AXISSPI/I2CACCELEROMETER SMD CMA3000 CMA3000-D01 U3 102x64 LCD DISPLAY EA DOGS102-6 EA DOGS102-6 U3 LED BACKLIGHT EA DOGS102-6 EA LED39x41-W U4 AlternateLDO -TPS73533 SC70-5 TPS73533DRBT U5 LED BacklightCurrentSource-TPS75105 SON-10 TPS75105DSKR U6 F5529 USB ESD Protection-TPD2E001 SOT-5 TPD2E001DRLR U7 eZ430 -MSP430F16x 64-LQFP MSP430F1612IPMR U8 eZ430 LevelTranslator-TXS0104E 14-TSSOP TXS0104EPWR U9 eZ430 LDO -TPS77301 8-MSOP TPS77301DGK U10 eZ430 -TUSB3410 32-LQFP TUSB3410VF U11 eZ430 USB ESD Protection-TPD2E001 SOT-5 TPD2E001DRLR U12 eZ430 EEPROM -CAT24C128YI 8-TSSOP CAT24C128YI USB1 F5529 USB Mini-USBThroughHole 54819-0519 USB2 eZ430 USB Mini-USBThroughHole 54819-0519 X1 microSD Card Holder microSD Card Holder 502702-0891 35SLAU330A –May 2011–RevisedJune 2011 MSP-EXP430F5529 ExperimenterBoard SubmitDocumentationFeedback Copyright© 2011,Texas InstrumentsIncorporated
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