Arduino® Portenta H7 Lite Connected - RS Components

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Arduino® Portenta H7 Lite Connected Product Reference Manual SKU: ABX00046 Description The Portenta H7 Lite Connected is the first member of the Portenta family, dedicated to industrial use cases but with the traditional Arduino openness and ready for the most demanding Pro applications. The Portenta H7 is ready for machine learning and real-time applications thanks to the dual core STM32H747 processor including a Cortex® M7 running at 480 MHz and a Cortex® M4 running at 240 MHz. The two cores communicate via a Remote Procedure Call mechanism that allows calling functions on the other processor seamlessly for real multitasking. By harnessing the computational power of both Portenta H7's cores, machine learning algorithms can run simultaneously alongside low latency sensor/actuator interaction. Arduino's expertise in producing high quality PCB in house has been leveraged to ensure that the Portenta H7 Lite Connected can meet the vibrations and temperatures met in daily industrial, automotive and agriculture applications. The various interfaces give the developers freedom in how they interact with the Portenta H7 and include MKR-compatible pins, USB-C enabled HDMI output and Arduino's open connector (ESLOV). As a pioneer in Open Source electronics, developers will receive the support they need from Arduino to build their solution free from technological lock-in. Portenta H7 Lite Connected offers several customization possibilities that allow tailoring board functionality to specific applications for high volume use cases. 1 Configuration options and ordering codes Available assembly options that can be configured for high volume applications are the following:

Transcript of Arduino® Portenta H7 Lite Connected - RS Components

Arduino®PortentaH7LiteConnected

ProductReferenceManualSKU:ABX00046

Description

ThePortentaH7LiteConnectedisthefirstmemberofthePortentafamily,dedicatedtoindustrialusecasesbut

withthetraditionalArduinoopennessandreadyforthemostdemandingProapplications.ThePortentaH7is

readyformachinelearningandreal-timeapplicationsthankstothedualcoreSTM32H747processorincludinga

Cortex®M7runningat480MHzandaCortex®M4runningat240MHz.ThetwocorescommunicateviaaRemote

ProcedureCallmechanismthatallowscallingfunctionsontheotherprocessorseamlesslyforrealmultitasking.

ByharnessingthecomputationalpowerofbothPortentaH7'scores,machinelearningalgorithmscanrun

simultaneouslyalongsidelowlatencysensor/actuatorinteraction.

Arduino'sexpertiseinproducinghighqualityPCBinhousehasbeenleveragedtoensurethatthePortentaH7

LiteConnectedcanmeetthevibrationsandtemperaturesmetindailyindustrial,automotiveandagriculture

applications.ThevariousinterfacesgivethedevelopersfreedominhowtheyinteractwiththePortentaH7and

includeMKR-compatiblepins,USB-CenabledHDMIoutputandArduino'sopenconnector(ESLOV).Asapioneer

inOpenSourceelectronics,developerswillreceivethesupporttheyneedfromArduinotobuildtheirsolution

freefromtechnologicallock-in.

PortentaH7LiteConnectedoffersseveralcustomizationpossibilitiesthatallowtailoringboardfunctionalityto

specificapplicationsforhighvolumeusecases.

1Configurationoptionsandorderingcodes

Availableassemblyoptionsthatcanbeconfiguredforhighvolumeapplicationsarethefollowing:

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Option Description OptionCodesSDRAM externalSDRAMmemory 0-None1-8MByte2-16MByte3-32MByte4-64MByte

FLASH externalQSPIFlashMemory 0-None1-2MByte(NOR)5-16MByte(NOR)8-128MByte(NAND)

Ethernet 10/100EthernetPHY 0-NoneE-Fitted

HSUSB HighSpeedUSBPHY 0-NoneU-Fitted

Crypto CryptoChip 0-NoneM-ATECC608AN-SE050C2B-Both

Wireless WirelessModule 0-NoneW-Fitted

Antenna Antennaoption 0-NoneA-onboardceramicantennaC-U.FLconnector

Standardconfigurationsare:

ArduinoPortentaH7-0000000(barebonesversion)

ArduinoPortentaH7-15EUCWAD

8MBSDRAM

16MBNORFlash

10/100EthernetPhy

USBHS

WiFi/BTModule

U.FLAntenna

Targetareas

AIapplications,low-latencycontrolsolutions

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FeaturesSTSTM32H747XIProcessor

Dualcore

Arm®Cortex®-M7coreatupto480MHzwithdouble-precisionFPUand16Kdata+16KinstructionL1cache

Arm®32-bitCortex®-M4coreatupto240MHzwithFPU,Adaptivereal-timeaccelerator(ARTAccelerator™)

2MbytesofFlashmemorywithread-while-writesupport+1MbyteofRAM

DualmodeQuad-SPImemoryinterfacerunningupto133MHz

CRCcalculationunit

Security

ROP,PC-ROP,activetamper

3separatepowerdomainswhichcanbeindependentlyclock-gatedorswitchedoff:

D1:high-performancecapabilities

D2:communicationperipheralsandtimers

D3:reset/clockcontrol/powermanagement

VoltagescalinginRunandStopmode(6configurableranges)

2.95μAinStandbymode(BackupSRAMOFF,RTC/LSEON)

4DMAcontrollerstounloadtheCPU

1×high-speedmasterdirectmemoryaccesscontroller(MDMA)withlinkedlistsupport

2×dual-portDMAswithFIFO

1×basicDMAwithrequestroutercapabilities

Upto35communicationperipherals

4×I2CsFM+interfaces(SMBus/PMBus)

4×USARTs/4xUARTs(ISO7816interface,LIN,IrDA,upto12.5Mbit/s)and1xLPUART

6×SPIs,3withmuxedduplexI2SaudioclassaccuracyviainternalaudioPLLorexternalclock,1xI2SinLPdomain(upto150MHz)

4xSAIs(serialaudiointerface)

SPDIFRXinterface

SWPMIsingle-wireprotocolmasterI/F

MDIOSlaveinterface

2×SD/SDIO/MMCinterfaces(upto125MHz)

2×CANcontrollers:2withCANFD,1withtime-triggeredCAN(TT-CAN)

2×USBOTGinterfaces(1FS,1HS/FS)crystal-lesssolutionwithLPMandBCD

EthernetMACinterfacewithDMAcontroller

8-bitcamerainterface(upto80MHz)

11analogperipherals

3×ADCswith16-bitmax.resolution(upto36channels,upto3.6MSPS)

1×temperaturesensor

2×12-bitD/Aconverters(1MHz)

2×ultra-low-powercomparators

2×operationalamplifiers(7.3MHzbandwidth)

1×digitalfiltersforsigmadeltamodulator(DFSDM)with8channels/4filters

Graphics

MIPIDSIhostincludinganMIPID-PHYtointerfacewithlow-pincountlargedisplays

Chrom-ARTgraphicalhardwareAccelerator™(DMA2D)toreduceCPUload

HardwareJPEGCodec

Upto22timersandwatchdogs

1×high-resolutiontimer(2.1nsmaxresolution)

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2×32-bittimerswithupto4IC/OC/PWMorpulsecounterandquadrature(incremental)encoderinput(upto240MHz)

2×16-bitadvancedmotorcontroltimers(upto240MHz)

10×16-bitgeneral-purposetimers(upto240MHz)

5×16-bitlow-powertimers(upto240MHz)

4×watchdogs(independentandwindow)

2×SysTicktimers

RTCwithsub-secondaccuracyandhardwarecalendar

Truerandomnumbergenerators(3oscillatorseach)

96-bituniqueID

ExternalMemories

upto64MByteSDRAM(optional)

upto128MByteQSPIFlash(optional)

USB-C

HighSpeed(optional)/FullSpeedUSB

HostandDeviceoperation

PowerDeliverysupport(optional)

HighDensityconnectors

1x10/100EthernetwithPHY

1xCAN

4xUART(2withflowcontrol)

3xI2C

1xSDCard

1xSPI

1xI2S

1xPDMinput

2laneMIPIDSIoutput

8bitparallelcamerainterface

10xPWMoutputs

7xGPIO

8xADCinputswithseparateVREF

Murata1DXWiFi/BTModule(optional)

WiFi802.11b/g/n65Mbps

Bluetooth5.1BR/EDR/LE

MicrochipATECC608Crypto(optional)

Protectedstorageforupto16Keys,certificatesordata

Hardwaresupportforasymmetricsign,verify,keyagreement–ECDSA:FIPS186-3EllipticCurveDigitalSignature

ECDH:FIPSSP800-56AEllipticCurveDiffie-Hellman

NISTstandardP256ellipticcurvesupport

Hardwaresupportforsymmetricalgorithms

SHA-256&HMAChashincludingoff-chipcontextsave/restore

AES-128:encrypt/decrypt,galoisfieldmultiplyforGCM

Networkingkeymanagementsupport

TurnkeyPRF/HKDFcalculationforTLS1.2&1.3

EphemeralkeygenerationandkeyagreementinSRAM–Smallmessageencryptionwithkeysentirelyprotected

Securebootsupport

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FullECDSAcodesignaturevalidation,optionalstoreddigest/signature–optionalcommunicationkeydisablementpriortosecureboot

Internalhigh-qualityFIPS800-90A/B/CRandomNumberGenerator(RNG)

Twohigh-endurancemonotoniccounters

Guaranteedunique72-bitserialnumber

MKRcompatibleheader

7xPWMchannels

7xADCchannels

1xSPI

1xUART

1xI2C

ESLOVConnector

I2Cportwithautomaticdeviceenumeration

NXPPF1550ProgrammablePMIC

dynamicvoltagescaling

programmableindependent1Avoltageoutputtocarrierboard

programmableI/Ovoltage

integratedLi-Po/Li-IonBatteryCharger

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Contents1Configurationoptionsandorderingcodes

2Theboard

2.1ApplicationExamples

2.2Accessories

2.3Relatedproducts

3Ratings

3.1AbsoluteMaximum

3.2Thermal

3.3RecommendedOperatingConditions

3.4PowerConsumption

4FunctionalOverview

4.1BoardTopology

4.2Processor

4.3WirelessModule

4.4ExternalMemories

4.5CryptoChips

4.6EthernetPhy

4.7HighSpeedUSBPhy

4.8USB-CConnector

4.9PowerTree

5BoardOperation

5.1GettingStarted–IDE

5.2GettingStarted–ArduinoWebEditor(Create)

5.3GettingStarted–ArduinoIoTCloud

5.4SampleSketches

5.5Onlineresources

5.6BoardRecovery

6ConnectorPinouts

6.1USB-C

6.2HighDensityConnector

6.34.3MKRHeaders

6.4BatteryConnector

6.4.1ConnectorPinout

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6.4.2BatteryChargerSpecifications:

7MechanicalInformation

7.1BoardOutline

7.2Mountingholes

7.3ConnectorPositions

8Certifications

8.17.1DeclarationofConformityCE/REDDoC(EU)

8.2DeclarationofConformitytoEURoHS&REACH19111/26/2018

8.3ConflictMineralsDeclaration

98.FCCCaution

10ReferenceDocumentation

11RevisionHistory

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2Theboard

2.1ApplicationExamples

Duetothedualcoreprocessingandthelow-powercapabilities,Portentasupportsawidearrayofapplications.

MachineVision:IncombinationwiththePortentaVisionShielditcanrunmachinevisionapplications.Thisallowstodetectthepresenceormovementofobjectsinavideostream.

AI&MachineLearning:Thankstothepowerofthetwocoresitcansimultaneouslyreaddatafromsensorsorotherdevicesononecorewhiletheothercoreprocessesthedatastreamandusesmachinelearningtomake

senseofthedata.WhenusedwiththePortentaVisionShielditscameramoduleorthetwodirectional

microphonescanbeusedasdatasources.

Connectivity:ThePortentafeatureson-boardBluetoothandWiFicapabilitieswhichmakesittheperfectcandidateforreliableIoTapplications.WhenusedtogetherwiththePortentaVisionShielditenablesLoRa

communicationinplaceswhereitneedstocommunicateefficientlyoveralongdistance.TheVisionShieldalso

featuresanEthernetportthatallowsforwirednetworkingapplications.

2.2Accessories

ThePortentaH7VisionShieldisarapidpathwaytodevelopingapplicationsthatcombinevision,audioand

connectivity.TheultralowpowerHM-01B0CMOSimagesensorisdesignedwithalways-onapplicationsin

mind.The324x324datastreamcanbeusedwitheithertheArduinotoolchainorOpenMVforgestures,ambient

light,proximitysensing,andobjectidentification.Thelargepixelsize(3.6μm)providesahighsignal-to-noise

ratio.Thetwoomnidirectionaldigital-microphones(MP34DB02)allowsconcurrentcaptureofstereosounds

alongsidethevideostreamontheMicroSDCard,aswellasforbeamforminguses.Connectivityisprovidedby

eitherethernetorLoRatechnology.LoRatechnologyenablestheuseofthisplatformaspartofwirelesssensor

networksolutions.

2.3Relatedproducts

H7

H7Lite

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3Ratings

3.1AbsoluteMaximum

Symbol Description Min Typ Max UnitVINMax MaximuminputvoltagefromVINpad -0.3 - 21 V

VUSBMax MaximuminputvoltagefromUSBconnector -0.3 - 21 V

PMax MaximumPowerConsumption - - 5000 mW

3.2Thermal

Symbol Description Min Typ Max UnitTST StorageTemperature -40 85 °C

TOP OperatingTemperature(excludingWirelessmodule) -40 85 °C

TOPw OperatingTemperature(includingWirelessmodule) -10 55 °C

3.3RecommendedOperatingConditions

Symbol Description Min Typ Max UnitVIN InputvoltagefromVINpad 4.5 5 5.5 V

VUSB InputvoltagefromUSBconnector 4.5 5 5.5 V

V3V3 3.3Voutputtouserapplication 3.1 V

I3V3 3.3Voutputcurrentavailableforuserapplication - - 1000 mA

VIH Inputhigh-levelvoltage 2.31 - 3.3 V

VIL Inputlow-levelvoltage 0 - 0.99 V

IOHMax CurrentatVDD-0.4V,outputsethigh 8 mA

IOLMax CurrentatVSS+0.4V,outputsetlow 8 mA

VOH Outputhighvoltage,8mA 2.7 - 3.3 V

VOL Outputlowvoltage,8mA 0 - 0.4 V

3.4PowerConsumption

Symbol Description Min Typ Max UnitPBL Powerconsumptionwithbusyloop TBC mW

PLP Powerconsumptioninlowpowermode TBC mW

PMAX MaximumPowerConsumption TBC mW

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4FunctionalOverview

4.1BoardTopology

Ref. Description Ref. DescriptionU1 STM32H747,Mainprocessor U16 CryptoChip(Microchip)

U2 QSPIFlashMemory JANALOG/JDIGITAL MKRcompatibleheaders

U3 USBHSPHY U16 CryptoChip(Microchip)

U4 SDRAM J1,J2 HighDensityConnectors

U5 EthernetPHY J4 Batteryconnector

U9 WiFi/BTModule J5 ESLOVconnector

U10 PowerManager ANT1 AntennaorU.FLConnector

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4.2Processor

MainprocessorisadualcoreCortexM7runningatupto480MHzandaCortexM4runningatupto240MHz.The

twocorescommunicatewitheachotherviaahardwareassistedmailboxonwhichArduinoimplementsa

RemoteProcedureCallmechanismthatallowscallingfunctionsontheotherprocessorseamlessly.

Bothprocessorscansharealltheperipheralsandresourcesandbothcanrunthefollowingapplications:

Arduinosketchesontopofmbed

Nativembedapplications

Micropython/Javascriptinterpreter

TensorFlowLite

InallcombinationsofapplicationsitispossibletoinvokesynchronousorasynchronousAPIcalls.Forexample

itispossibletoextendPythonlanguagewithfunctionsimplementedasArduinosketchesthatareexecutedin

paralleltootherpythonfunctionsbytheoppositecore.

Processor’svariouspowermodesallowquicklyswitchingbetweenhighperformanceandverylowpower

configurations,optimizingpowerconsumptionwhenevercoresareidle.

Internalmemoryiscomposedof2MBofflashwithreadwhilewritesupportand1MBofRAMpartitionedas

follows:

192KbytesofTightlyCoupledMemoryfortimecriticalroutines

64Kbytesinstruction

128Kbytesofdata

864KbytesofuserSRAM

4KbytesofSRAMinBackupdomain

4.3WirelessModule

TheonboardwirelessmoduleallowssimultaneousmanagementofWiFiandBluetoothconnectivity.TheWiFi

interfacecanbeoperatedasanAccessPoint,asaStationorasadualmodesimultaneousAP/STAandcan

handleupto65Mbpstransferrate.BluetoothinterfacesupportsBluetoothClassicandBLE.

4.4ExternalMemories

OptionallyPortentaH7LiteConnectedisavailablewithadditionalexternalSDRAMandQSPIFlashmemories.

ExternalSDRAMcanprovideupto64MBytedirectlymappedinCPUaddressingspaceandallowscode

execution.

ExternalQSPIflashcanprovideupto128MByteofstorageandcanbeeithermemorymappedforcode

execution(readonly)orusedasaQSPIperipheralfordatastorage.

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4.5CryptoChips

PortentaH7LiteConnectedrunstheclassicATECC608A.

4.6EthernetPhy

Theoptional10/100EthernetphysicalinterfaceisdirectlyconnectedtotheinternalEthernetMACandprovides

fullduplexcommunicationwithautomaticMDIXsupport.TheWakeOnLanfunctionalityallowsreducingpower

consumptionwheninsleepmode.

4.7HighSpeedUSBPhy

TheoptionalHighSpeedUSBPhyisoneofthetwoUSBinterfacesavailableonthehighspeedconnectorsand

isalsoavailableontheUSB-Cconnector.HighSpeedUSBPHYallowstransferratesofupto480Mbpsandcan

beusedbothasahostandasadevice.

WhenusingtheUSB-CconnectoronlyoneUSBportisusableonhighspeedconnectors.

WhentheHighSpeedUSBPhyoptionisnotassembledtheUSB-CportonlyoneFullSpeedportisavailableand

issharedbetweenUSB-CandHighDensityconnectors

4.8USB-CConnector

USB-Cconnectorsupportsmultipleusecasescenariosandprovidesthefollowingfunctions:

ProvideboardpowersupplyinbothDFPandDRPmode

SourcepowertoexternalperipheralswhenboardispoweredthroughVIN

exposeHighSpeed(480Mbps)orFullSpeed(12Mbps)USBHost/Deviceinterface

4.9PowerTree

AllpowerconversiononthePortentaH7LiteConnectedishandledbythePF1550PMIC.Currentisdrawnby

VUSB,VINorVBATTautomaticallyaccordingtorulesspecifiedbythePMIC.TheVCCisdrivenbyabuck

converterconfiguredtoprovide3V3thatisaccessibleonboththeMKRheadersandtheHDRconnector.Two

otherbuckconvertersprovide3V1and2V8outputs.Additionally,threeprecisionLDOprovidelow-ripple

outputsof1V0,1V2and1V8.Voltagerangeandmaxcurrentareprovidedasageneralguidelineonly.Consult

thePF1550datasheetforspecificdetails.

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PortentaH7LiteConnectedPowerTree

5BoardOperation

5.1GettingStarted–IDE

IfyouwanttoprogramyourArduinoPortentaH7whileofflineyouneedtoinstalltheArduinoDesktopIDE[1].ToconnecttheArduinoPortentaH7toyourcomputer,you’llneedaUSB-Ccable.Thisalsoprovidespowerto

theboard,asindicatedbytheLED.

5.2GettingStarted–ArduinoWebEditor(Create)

AllArduinoandGenuinoboards,includingthisone,workout-of-the-boxontheArduinoWebEditor[2],byjustinstallingasimpleplugin.

TheArduinoWebEditorishostedonline,thereforeitwillalwaysbeup-to-datewiththelatestfeaturesand

supportforallboards.Follow[3]tostartcodinginthebrowseranduploadyoursketchesontoyourboard.

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5.3GettingStarted–ArduinoIoTCloud

AllArduinoIoTenabledproductsaresupportedonArduinoIoTCloudwhichallowsyoutolog,graphand

analyzesensordata,triggerevents,andautomateyourbusinessoryourpersonalenvironment.

5.4SampleSketches

SamplesketchesfortheArduinoPortentaH7canbefoundeitherinthe“Examples”menuintheArduinoIDEor

inthe“Documentation”sectionoftheArduinoProwebsite[5].

5.5Onlineresources

Nowthatyouhavegonethroughthebasicsofwhatyoucandowiththeboardyoucanexploretheendless

possibilitiesitprovidesbycheckingexcitingprojectsonProjectHub[6],theArduinoLibraryReference[7]andthewebstore[8]whereyouwillbeabletocomplementyourboardwithsensors,actuatorsandmore.

5.6BoardRecovery

AllArduinoboardshaveabuilt-inbootloaderwhichallowsflashingtheboardviaUSB.Incaseasketchlocksup

theprocessorandtheboardisnotreachableanymoreviaUSBitispossibletoenterbootloadermodeby

double-tappingtheresetbuttonrightafterpowerup.

6ConnectorPinouts

6.1USB-C

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6.2HighDensityConnector

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6.34.3MKRHeaders

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DetailedinformationonthePortentaH7’spinoutsareavailableinaseparatedocument:

https://content.arduino.cc/assets/Pinout-PortentaH7_latest.pdf

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6.4BatteryConnector

ThePortentaH7iscompatiblewithasinglecellLi-PoorLi-Ionbattery(3.7V,700mAhminimum)connectedviaa

3-pinBM03B-ACHSS-GAN-TFconnector.BatterymanagementisperformedbythePF1550IC.

6.4.1ConnectorPinout

6.4.2BatteryChargerSpecifications:

–Supportssingle-cellLithiumIon/LithiumPolymerbatteries

–Linearcharging(10mAto1500mAinputlimit)

–Programmablechargevoltage(3.5Vto4.44V)

–Programmablechargecurrent(100mAto1000mA)

–Programmablechargeterminationcurrent(5.0mAto50mA)

7MechanicalInformation

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7.1BoardOutline

7.2Mountingholes

7.3ConnectorPositions

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8Certifications

8.17.1DeclarationofConformityCE/REDDoC(EU)

Wedeclareunderoursoleresponsibilitythattheproductsaboveareinconformitywiththeessential

requirementsofthefollowingEUDirectivesandthereforequalifyforfreemovementwithinmarketscomprising

theEuropeanUnion(EU)andEuropeanEconomicArea(EEA).

RadioEquipmentDirective(RED)2014/53/EU

Conformsto:EN300328v2.1.1

EN300328v2.1.1

EN300328v2.1.1

ROHSDirective2011/65/EU

Conformsto:EN50581:2012

Directive2014/35/EU.(LVD)

Conformsto:EN60950-1:2006/A11:2009/A1:2010/A12:2011/AC:2011

Directive2004/40/EC&2008/46/EC&2013/35/EU,EMF

Conformsto:EN62311:2008

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TheTechnicalConstructionFilesaremaintainedattheaddressshownabove.

8.2DeclarationofConformitytoEURoHS&REACH19111/26/2018

ArduinoboardsareincompliancewithDirective2011/65/EUoftheEuropeanParliamentandDirective

2015/863/EUoftheCouncilof4June2015ontherestrictionoftheuseofcertainhazardoussubstancesin

electricalandelectronicequipment.

Substance MaximumLimit(ppm)Lead(Pb) 1000

Cadmium(Cd) 100

Mercury(Hg) 1000

HexavalentChromium(Cr6+) 1000

PolyBrominatedBiphenyls(PBB) 1000

PolyBrominatedDiphenylethers(PBDE) 1000

Bis(2-Ethylhexyl}phthalate(DEHP) 1000

Benzylbutylphthalate(BBP) 1000

Dibutylphthalate(DBP) 1000

Diisobutylphthalate(DIBP) 1000

Exemptions:Noexemptionsareclaimed.

ArduinoBoardsarefullycompliantwiththerelatedrequirementsofEuropeanUnionRegulation(EC)1907

/2006concerningtheRegistration,Evaluation,AuthorizationandRestrictionofChemicals(REACH).Wedeclare

noneoftheSVHCs(https://echa.europa.eu/web/guest/candidate-list-table),theCandidateListofSubstances

ofVeryHighConcernforauthorizationcurrentlyreleasedbyECHA,ispresentinallproducts(andalsopackage)

inquantitiestotalinginaconcentrationequalorabove0.1%.Tothebestofourknowledge,wealsodeclare

thatourproductsdonotcontainanyofthesubstanceslistedonthe"AuthorizationList"(AnnexXIVofthe

REACHregulations)andSubstancesofVeryHighConcern(SVHC)inanysignificantamountsasspecifiedbythe

AnnexXVIIofCandidatelistpublishedbyECHA(EuropeanChemicalAgency)1907/2006/EC.

8.3ConflictMineralsDeclaration

Asaglobalsupplierofelectronicandelectricalcomponents,Arduinoisawareofourobligationswithregardsto

lawsandregulationsregardingConflictMinerals,specificallytheDodd-FrankWallStreetReformandConsumer

ProtectionAct,Section1502.ArduinodoesnotdirectlysourceorprocessconflictmineralssuchasTin,

Tantalum,Tungsten,orGold.Conflictmineralsarecontainedinourproductsintheformofsolder,orasa

componentinmetalalloys.AspartofourreasonableduediligenceArduinohascontactedcomponentsuppliers

withinoursupplychaintoverifytheircontinuedcompliancewiththeregulations.Basedontheinformation

receivedthusfarwedeclarethatourproductscontainConflictMineralssourcedfromconflict-freeareas.

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98.FCCCaution

AnyChangesormodificationsnotexpresslyapprovedbythepartyresponsibleforcompliancecouldvoidthe

user’sauthoritytooperatetheequipment.

Thisdevicecomplieswithpart15oftheFCCRules.Operationissubjecttothefollowingtwoconditions:

(1)Thisdevicemaynotcauseharmfulinterference

(2)thisdevicemustacceptanyinterferencereceived,includinginterferencethatmaycauseundesiredoperation.

FCCRFRadiationExposureStatement:

1. ThisTransmittermustnotbeco-locatedoroperatinginconjunctionwithanyotherantennaor

transmitter.

2. ThisequipmentcomplieswithRFradiationexposurelimitssetforthforanuncontrolledenvironment.

3. Thisequipmentshouldbeinstalledandoperatedwithminimumdistance20cmbetweentheradiator

&yourbody.

English:Usermanualsforlicence-exemptradioapparatusshallcontainthefollowingorequivalentnoticeina

conspicuouslocationintheusermanualoralternativelyonthedeviceorboth.Thisdevicecomplieswith

IndustryCanadalicence-exemptRSSstandard(s).Operationissubjecttothefollowingtwoconditions:

(1)thisdevicemaynotcauseinterference

(2)thisdevicemustacceptanyinterference,includinginterferencethatmaycauseundesiredoperationofthedevice.

French:LeprésentappareilestconformeauxCNRd’IndustrieCanadaapplicablesauxappareilsradioexempts

delicence.L’exploitationestautoriséeauxdeuxconditionssuivantes:

(1)l’appareilnedoitpasproduiredebrouillage

(2)l’utilisateurdel’appareildoitacceptertoutbrouillageradioélectriquesubi,mêmesilebrouillageestsusceptibled’encompromettrelefonctionnement.

ICSARWaring:

EnglishThisequipmentshouldbeinstalledandoperatedwithminimumdistance20cmbetweentheradiator

andyourbody.

French:Lorsdel’installationetdel’exploitationdecedispositif,ladistanceentreleradiateuretlecorpsestd

’aumoins20cm.

Arduino®PortentaH7LiteConnected

Arduino®PortentaH7LiteConnected/Rev.01-28/09/202122/22

Important:TheoperatingtemperatureoftheEUTcan’texceed85℃andshouldn’tbelowerthan-40℃.

Hereby,ArduinoS.r.l.declaresthatthisproductisincompliancewithessentialrequirementsandotherrelevant

provisionsofDirective2014/53/EU.ThisproductisallowedtobeusedinallEUmemberstates.

Frequencybands Maximumoutputpower(ERP)TBDMhz TBDdBm

10ReferenceDocumentation

Reference LinkArduinoIDE(Desktop)

https://www.arduino.cc/en/Main/Software

ArduinoIDE(Cloud) https://create.arduino.cc/editor

CloudIDEGettingStarted

https://create.arduino.cc/projecthub/Arduino_Genuino/getting-started-with-arduino-web-editor-4b3e4a

Forum http://forum.arduino.cc/

ArduinoProWebsite

https://www.arduino.cc/pro

ProjectHub https://create.arduino.cc/projecthub?by=part&part_id=11332&sort=trending

LibraryReference https://www.arduino.cc/reference/en/

ArduinoStore https://store.arduino.cc/

11RevisionHistory

Date Revision Changes17/06/2021 1 FirstRelease