
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
S1 Electricity measure Smart control Programmable Socket (Instruction Manual) This equipment is used for Smart on-off control, safety protectioncontrol, Programmable control, Internet of Things data transmissionand wireless control, accumulative power, calculation of electricitybill And measure detailed parameters such as current voltage,current, power and frequency. Product type and attributes:Product type nd attributes: Introduction to the operation of function interface switching andmeasurement interface value setting:Introduction to the operation of function interface switching andmeasurement interface value setting: Introduction to the operation of the background setting interface: -1- -2- -3- -4- Setting method and application of safety protection function: Short press the "+" key to go to the security protection page, short press the "M" key, and thevoltage hundred digits of the overvoltage automatic power-off bar will flash, then short pressthe "+" or "-" keys to adjust the value, short press the "M" key again, the voltage tens will flashand can be adjusted. Continue with this method, flashing the value of the over-current powercolumn and can be adjusted, after the adjustment is completed, long press the "M" key to saveor flash to stop the system to automatically save. The set protection threshold value can be increasedby5~10%accordingtoyourapplicationvalue,soastoensurenormaluseandalsohave the power-off protection function (the set protection value will also run in the backgroundof other interfaces). When the input voltage or the power value of the current flow exceeds thethreshold you set, the system will instantly cut off the power and use the horn to prompt, and at the same time display an alarm message on the display for you to check. At this time, if theuser's button signal or infrared remote control signal is not received, the product will continueto power off. Until the user releases the danger and presses any key or remote control key onthe host, the system will return to the protection interface and automatically be in the off state,waiting for the user to reset or restart the power. Security protection settings skills for charging, such as applying smart power off(Category A) to electric vehicles or full power failure of mobile phones:Security protection settings skills for charging, such as applying smart power off(Category A) to electric vehicles or full power failure of mobile phones: Short press the "+" button to go to the smart power-off category A page and select the "on"state, observe and record the charging power value of the charged device once after it is fully charged; Then, add 2~5W on the basis of this value, which is the power value of how manywatts of your full automatic power-off setting is less than the continuous value and turn on the "auto" gear. In this way, when the system detects that the current power value is less than the power value you set and continues for the recharge time you set, the system displays the power-off icon and cuts off the power output, thereby protecting your device(The longer the duration you set, the longer the subsequent charging time is when it is fully charged, so as toensure that the device can be fully charged and at the same time double-monitoring to achieveaccurate and autom tic power-off for safe charging protection).Tips for viewing the progress bar and countdown in the lower right corner of the displayinterface:When the system detects that the measured power value is less than the power value you set,the system starts counting down, and the progress bar is calculated according to the durationratio you set. The progress bar decreases and changes color from yellow to red until the end ofthe power failure. When the power value measured by the system is greater than the powervalue you set at a certain moment, the countdown will be cleared immediately, and theprogress bar will fill up instantly, and then a new round of detection will be performed. setting skills, such as applying smart power off (Class B) to avoid loss of electricity billscaused by people leaving home for a long time and forgetting to turn off the device:setting skills, such as applying smart power off (Class B) to avoid loss of electricity billscaused by people leaving home for a long time and forgetting to turn off the device: Short press the "+" button to go to the smart power-off type B page and select the "on" state.Observe and record the minimum power value of the connected device when it is powered on.Then, subtract 5~25W on the basis of this value. This is how many watts of power should be setfor your connection and turn it on to the "auto" gear. In this way, when the system detects thatthe current power value is greater than the power value you set, it will judge that your devicehas been powered on. At this time, the system starts to count down to the duration value youset, and the system determines that you may have forgotten to turn off the device because youleft home and automatically cut off the power, so as to achieve the purpose of people Setting method, such as applying the timing power supply page to timing chargingdevices such as mobile phones or electric vehicles:Setting method, such as applying the timing power supply page to timing chargingdevices such as mobile phones or electric vehicles: Short press the "+" button to go to the timing power supply page, set the time you are expectedto be fully charged by the charging device, and then press the "+" button to enter the automaticmode. The system is powered on and the countdown reaches the time you set. When the systemautomatically cuts off the power output on time, the speaker emits a beep and the display showsa red cut off interface. This product is available in Bluetooth version, smart WiFi version, and smart WiFicurve version. Please refer to the user manual and purchase for details!This product user manual is applicable to different types of sockets such as CN/USplug/EU pâŠ
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Rev1/26/2023 (ShenZhenEtorchTechnologyManufactoryLimited) FederalCommunicationsCommission AuthorizationandEvaluationDivision 7435OaklandMillsRoad Columbia,MD21046 USA Date:2026-08-21 Ref:AttestationStatementsPart2.911(d)(5)(i)Filing FCCID:2BXSR-S1BWP-TH (âShenZhenEtorchTechnologyManufactoryLimitedâ)certifiesthattheequipmentforwhich authorizationissoughtisnotâcoveredâequipmentprohibitedfromreceivinganequipment authorizationpursuanttosection2.903oftheFCCrules. (âShenZhenEtorchTechnologyManufactoryLimitedâ)certifiesthattheequipmentforwhich authorizationissoughtdoesnotincludecybersecurityoranti-virussoftwareproducedorprovidedby KasperskyLab,Inc.oranyofitssuccessorsandassignees,includingequipmentwithintegratedKaspersky Lab,Inc.(oranyofitssuccessorsandassignees)cybersecurityoranti-virussoftwarepursuanttoDA-24- 886andKDB986446D01CoveredEquipmentGuidancesectionB(2a). Deviceisinherentlycompliantbasedonhardwarelimitationsorsoftwarecontrols. or ASoftwareBillofMaterials(SBOM)isprovidedtotheTCBforreview,and Theend-userorthirdpartiescannotinstalladditionalsoftwareonthisdevice. Sincerely, (Applicantsignature): (Applicantprintedname):allenhu Rev1/26/2023 (ShenZhenEtorchTechnologyManufactoryLimited) FederalCommunicationsCommission AuthorizationandEvaluationDivision 7435OaklandMillsRoad Columbia,MD21046 USA Date:2026-08-21 Ref:AttestationStatementsPart2.911(d)(5)(ii)Filing FCCID:2BXSR-S1BWP-TH (âShenZhenEtorchTechnologyManufactoryLimitedâ)certifiesthat,asofthedateofthefilingofthe application,ShenZhenEtorchTechnologyManufactoryLimitedisnotidentifiedontheCoveredList(asa specificallynamedentityoranyofitssubsidiariesoraffiliates)asanentityproducingâcoveredâ equipment. Sincerely, (Applicantsignature): (Applicantprintedname):allenhu
ShenZhenEtorchTechnologyManufactoryLimited Address:Room301,BuildingA,No.92,FuqianRoad,FuminCommunity,FuchengStreet, LonghuaDistrict,Shenzhen Date:2026-08-21 FederalCommunicationsCommission AuthorizationandEvaluationDivision 7435OaklandMillsRoad Columbia,MD21046 Ref:AttestationStatementsPart2.911(d)(7)Filing SUBJECT:FCCApplicationforFCCID:2BXSR-S1BWP-TH FRN:0038798872 (âShenZhenEtorchTechnologyManufactoryLimitedâ)certifiesthat,asofthedateofthefiling oftheapplication,GOLDENVICTORYINTERNATIONALTRADINGCOLTDisour designatedU.S.agentforserviceofprocessfortheabovereferencedFCCID.(âShenZhen EtorchTechnologyManufactoryLimitedâ)acceptstomaintainanagentfornolessthanone yearafterthegranteehasterminatedallmarketingandimportationortheconclusionofany Commission-relatedproceedinginvolvingtheequipment. GOLDENVICTORYINTERNATIONALTRADINGCOLTDaccepts,asofthedateofthefiling oftheapplication,theobligationofthedesignatedU.S.agentforserviceofprocessforthe abovereferencedFCCID. DesignatedU.S.AgentInformation: Name:GOLDENVICTORYINTERNATIONALTRADINGCOLTD Address:11016THSTREETSUITE1400DENVER,CO80202UnitedStates FRNïŒ0036377570 ContactPerson:LeonHowar Tel.:(337)255-0461 Email:[email protected] Sincerely, SignedonbehalfofïŒShenZhenEtorch TechnologyManufactoryLimitedïŒ SignedonbehalfofGOLDENVICTORY INTERNATIONALTRADINGCOLTD Name:allenhuName:LeonHowar Title:ManagerTitle:Manager Date:2026-08-21Date:2026-08-21
ShenZhenEtorchTechnologyManufactoryLimited Date:August21,2026 ProductModelNumber:S1BWP-T/H,S1-B/W/T/H,GR2P-W/S/L,AT2P- B/W/T/H,AT4P-B/W/T/H,AT24,AT2630,AT3235,BW150,BW600, B10,B50,CW20,CW24,DT550,DL24/P,DT20,D5/P/L,CL24,DL24EW, DL24/P,T3/P/L,XT369P,UD24,CC085,HDC-085C,UC96,UD18,P30, PQ31,ACD15P,A3/B,TU13/P/L,JL24 FCCID:2BXSR-S1BWP-TH Towhomitmayconcern, Re:ProductCertificationRepresentativeAuthorizationLetter WeauthorizeQAILaboratoriesLtd.3980NorthFraserWay,BurnabyB.C. CanadaV5J5K5toactonourbehalfonallmattersconcerningtheabove namedequipment. Thisshallincludethefollowing: ï·Testing ï·Approvalapplicationsandprocedures WedeclarethatQAILaboratoriesLtd.isallowedtoforwardallinformation relatedtotheapprovalprojecttotheappliedcertificationbodyandtothe notificationentitiesandtodiscussanyissuesconcerningtheapproval application.AnyandallactscarriedoutbyQAILaboratoriesLtd.onour behalfshallhavethesameeffectasactsofourown. By: ContactListedonFCCWesbite Title:Manager Email:[email protected] Telephone:15875583798 Onbehalfof:ShenZhenEtorchTechnologyManufactoryLimited
ShenZhenEtorchTechnologyManufactoryLimited OfficeofEngineeringTechnology FederalCommunicationsCommission 7435OaklandMillsRoad Columbia,MD21046 USA Date:August21,2026 Subject;RequestforConfidentiality FCCID:2BXSR-S1BWP-TH ToWhomItMayConcern, PursuanttotheprovisionsoftheCommissionâsrulesTitle47Sections§0.457and§0.459,we arerequestingtheCommissiontowithholdthefollowingattachment(s)asconfidential documentsfrompublicdisclosureindefinitely. Thesedocumentscontaindetailedsystemandequipmentdescriptionsandareconsideredas proprietaryinformationinoperationoftheequipment.Thepublicdisclosureofthese documentsmightbeharmfultoourcompanyandwouldgivecompetitorsanunfairadvantage inthemarket. SchematicDiagram BlockDiagram PartsList OperationalDescription Tune-upProcedure SoftwareSecurityRequirementsforUNIIdevices Inadditionaltoabovementioneddocuments,inordertocomplywiththemarketingregulations inTitle47CFR§2.803andtheimportationrulesinTitle47CFR§2.1204,whileensuringthat businesssensitiveinformationremainsconfidentialuntiltheactualmarketingofnewly authorizeddevices,werequestShortTermConfidentialityofthefollowingattachment(s); ExternalPhotos TestSetupPhotos InternalPhotos UserManual For45days,pursuanttoPublicNoticeDA04-1705. OR For180dayspursuanttoKDB726920D01. Itisourunderstandingthatallmeasurementtestreports,FCCIDlabelformatand correspondenceduringthecertificationreviewprocesscannotbegrantedasconfidential documentsandthisinformationwillbeavailableforpublicreviewoncethegrantofequipment authorizationisissued. Sincerely, Signature: Name:allenhu Title:Manager
ShenZhenEtorchTechnologyManufactoryLimited ModelDifference Date:August21,2026 Productdescription:SmartEnergyMeter Modelname:S1BWP-T/H,S1-B/W/T/H,GR2P-W/S/L,AT2P-B/W/T/H,AT4P-B/W/T/H, AT24,AT2630,AT3235,BW150,BW600,B10,B50,CW20,CW24,DT550,DL24/P, DT20,D5/P/L,CL24,DL24EW,DL24/P,T3/P/L,XT369P,UD24,CC085,HDC-085C, UC96,UD18,P30,PQ31,ACD15P,A3/B,TU13/P/L,JL24 FCCID:2BXSR-S1BWP-TH S1BWP-T/Histhetestmodel,whileothermodelsarederivativemodels.These modelsarethesameonthecircuit,onlywithdifferentmodelnames.Therefore,the testdataofS1BWP-T/Hcanrepresenttheremainingmodels. Clientâssignature: Clientâsname/title:allenhu/Manager Contactinformation/address:Room301,BuildingA,No.92,FuqianRoad,Fumin Community,FuchengStreet,LonghuaDistrict,Shenzhen
FCCID:2BXSR-S1BWP-TH EUTPHOTOSExternalPhotos FCCID:2BXSR-S1BWP-TH FCCID:2BXSR-S1BWP-TH â»â»â»â»â»ENDOFREPORTâ»â»â»â»â»
FCC ID:2BXSR-S1BWP-TH
FCCID:2BXSR-S1BWP-TH EUTPHOTOSInternalPhotos FCCID:2BXSR-S1BWP-TH FCCID:2BXSR-S1BWP-TH FCCID:2BXSR-S1BWP-TH â»â»â»â»â»ENDOFREPORTâ»â»â»â»â» ANT
FCCID:2BXSR-S1BWP-TH RFExposureEvaluation AccordingtoKDB447498D01GeneralRFExposureGuidancev06andpart2.1091,Unless specificallyrequiredbythepublishedRFexposureKDBprocedures,standalone1-gheador bodyand10-gextremitySARevaluationforgeneralpopulationexposureconditions,by measurementornumericalsimulation,isnotrequiredwhenthecorrespondingSARTest ExclusionThresholdcondition(s),listedbelow,is(are)satisfied. Limits Thecriterialistedinthefollowingtableshallbeusedtoevaluatetheenvironmentimpactof humanexposuretoradiofrequency(RF)radiationasspecifiedin1.1307(b) LimitsforMaximumPermissibleExposure(MPE) Frequency range (MHz) Electricfield strength (V/m) Magneticfield strength (A/m) Powerdensity (mW/cm 2 ) Averagingtime (minutes) (A)LimitsforOccupational/ControlledExposures 0.3â3.06141.63*(100)6 3.0â301842/f4.89/f*(900/f 2 )6 30â30061.40.1631.06 300â1500f/3006 1500â100,00056 (B)LimitsforGeneralPopulation/UncontrolledExposure 0.3â1.346141.63*(100)30 1.34â30824/f2.19/f*(180/f 2 )30 30â30027.50.0730.230 300â1500f/150030 1500â100,0001.030 f=frequencyinMHz Friistransmissionformula:Pd=(Pout*G)/(4*pi*r 2 ) Where Pd=powerdensityinmW/cm 2 ,Pout=outputpowertoantennainmW; G=gainofantennainlinearscale,Pi=3.1416; R=distancebetweenobservationpointandcenteroftheradiatorincm PdidthelimitofMPE,1mW/cm 2 .Ifweknowthemaximumgainoftheantennaandthetotal powerinputtotheantenna,throughthecalculation,wewillknowthedistancerwherethe MPElimitisreached. TestProcedure SoftwareprovidedbyclientenabledtheEUTtotransmitandreceivedataatlowest,middle andhighestchannelindividually. TestResultofRFExposureEvaluation Mode Max.Output powerto antenna (dBm) Max.Output powerto antenna (mW) Max.Power Densityat R=20cm (mW/cm2) Limit (mW/cm2) Result 2.4GWIFI9.679.270.00181.0PASS BLE0.511.120.00021.0PASS NoRFExposureEvaluation/SARtestisrequired. Remark:2.4GWIFI&BLEAntennagain=2.2dBi
ProjectNo.:ZHT-260813115W01-1 Page 1 of 86 FCCTESTREPORT FCCID:2BXSR-S1BWP-TH ApplicantName...............:ShenZhenEtorchTechnologyManufactoryLimited Address............................:Room301,BuildingA,No.92,FuqianRoad,FuminCommunity,Fucheng Street,LonghuaDistrict,Shenzhen ManufacturerName.........:ShenZhenEtorchTechnologyManufactoryLimited Address............................:Room301,BuildingA,No.92,FuqianRoad,FuminCommunity,Fucheng Street,LonghuaDistrict,Shenzhen Product............................:SmartEnergyMeter Model(s)...........................:S1BWP-T/H AdditionalModel(s)..........:S1-B/W/T/H,GR2P-W/S/L,AT2P-B/W/T/H,AT4P-B/W/T/H,AT24,AT2630, AT3235,BW150,BW600,B10,B50,CW20,CW24,DT550,DL24/P,DT20, D5/P/L,CL24,DL24EW,DL24/P,T3/P/L,XT369P,UD24,CC085, HDC-085C,UC96,UD18,P30,PQ31,ACD15P,A3/B,TU13/P/L,JL24 Trademark........................:ATORCH ModelDifference..............:S1BWP-T/Histhetestmodel,whileothermodelsarederivativemodels. Thesemodelsarethesameonthecircuit,onlywithdifferentmodel names.Therefore,thetestdataofS1BWP-T/Hcanrepresentthe remainingmodels. Preparedby......................:GuangdongZhonghanTestingTechnologyCo.,Ltd. Address............................:Room104/201,Building1,YibaolaiIndustrialPark,Qiaotou,Fuhai Subdistrict,Bao'anDistrict,Shenzhen,Guangdong,China DateofReceipt................:Aug.13,2026 DateofTest(s)..................:Aug.13,2026toAug.26,2026 DateofIssue....................:Aug.26,2026 TestRequested................:Selecttest(s)asrequestedbytheclient. TestStandard(s)..............:FCCCFRTitle47Part15SubpartCSection15.247 Testprocedure................:KDB558074D0115.247MeasGuidancev05r02 ANSIC63.10-2020+Cor.1-2023+C63.10a-2024+Erratato C63.10a-2024 Intheconfigurationtested,theEUTcompliedwiththestandardsspecifiedabove. Preparedby:Reviewedby:Approvedby: KimiLu/EngineerBaretWu/DirectorLeviLee/Manager Note:Theresultsshowninthistestreportreferonlytothesample(s)testedunlessotherwisestated.Thistest reportshallnotbereproducedexceptinfull,withoutpriorwrittenapprovalofZHT.Thisdocumentmaybe alteredorrevisedbyZHT,personnelonly,andshallbenotedintherevisionofthedocument. ProjectNo.:ZHT-260813115W01-1 Page 2 of 86 TableofContents Page 1.SUMMARYOFTESTRESULTS................................................................................................................4 2.GENERALINFORMATION........................................................................................................................5 2.1GENERALDESCRIPTIONOFEUT..................................................................................................5 2.2DESCRIPTIONOFTESTMODES.....................................................................................................6 2.3BLOCKDIGRAMSHOWINGTHECONFIGURATIONOFSYSTEMTESTED................................7 2.4DESCRIPTIONOFSUPPORTUNITS...............................................................................................7 3.TESTFACILITYANDTESTINSTRUMENTUSED...................................................................................8 3.1TESTFACILITY..................................................................................................................................8 3.2EQUIPMENTSLISTFORALLTESTITEMS....................................................................................8 3.3TESTINGSOFTWARE.......................................................................................................................9 3.4MEASUREMENTUNCERTAINTY...................................................................................................10 4.EMCEMISSIONTEST.............................................................................................................................11 4.1CONDUCTEDEMISSIONMEASUREMENT...................................................................................11 4.1.1POWERLINECONDUCTEDEMISSIONLimits....................................................................11 4.1.2TESTPROCEDURE................................................................................................................11 4.1.3DEVIATIONFROMTESTSTANDARD...................................................................................11 4.1.4TESTSETUP...........................................................................................................................12 4.1.5EUTOPERATINGCONDITIONS............................................................................................12 4.1.6TESTRESULT.........................................................................................................................13 4.2RADIATEDEMISSIONMEASUREMENT.......................................................................................15 4.2.1RADIATEDEMISSIONLIMITS...............................................................................................15 4.2.2TESTPROCEDURE................................................................................................................15 4.2.3DEVIATIONFROMTESTSTANDARD..................................................................................16 4.2.4TESTSETUP...........................................................................................................................16 4.2.5EUTOPERATINGCONDITIONS............................................................................................17 4.2.6TESTRESULTS......................................................................................................................17 5.RADIATEDBANDEMISSIONMEASUREMENT.....................................................................................23 5.1TESTREQUIREMENT:....................................................................................................................23 5.2TESTPROCEDURE.........................................................................................................................23 5.3DEVIATIONFROMTESTSTANDARD........................................................................âŠ
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ProjectNo.:ZHT-260813115W01-2 Page 1 of 50 FCCTESTREPORT FCCID:2BXSR-S1BWP-TH ApplicantName...............:ShenZhenEtorchTechnologyManufactoryLimited Address............................:Room301,BuildingA,No.92,FuqianRoad,FuminCommunity,Fucheng Street,LonghuaDistrict,Shenzhen ManufacturerName.........:ShenZhenEtorchTechnologyManufactoryLimited Address............................:Room301,BuildingA,No.92,FuqianRoad,FuminCommunity,Fucheng Street,LonghuaDistrict,Shenzhen Product............................:SmartEnergyMeter Model(s)...........................:S1BWP-T/H AdditionalModel(s)..........:S1-B/W/T/H,GR2P-W/S/L,AT2P-B/W/T/H,AT4P-B/W/T/H,AT24,AT2630, AT3235,BW150,BW600,B10,B50,CW20,CW24,DT550,DL24/P,DT20, D5/P/L,CL24,DL24EW,DL24/P,T3/P/L,XT369P,UD24,CC085, HDC-085C,UC96,UD18,P30,PQ31,ACD15P,A3/B,TU13/P/L,JL24 Trademark........................:ATORCH ModelDifference..............:S1BWP-T/Histhetestmodel,whileothermodelsarederivativemodels. Thesemodelsarethesameonthecircuit,onlywithdifferentmodel names.Therefore,thetestdataofS1BWP-T/Hcanrepresentthe remainingmodels. Preparedby......................:GuangdongZhonghanTestingTechnologyCo.,Ltd. Address............................:Room104/201,Building1,YibaolaiIndustrialPark,Qiaotou,Fuhai Subdistrict,Bao'anDistrict,Shenzhen,Guangdong,China DateofReceipt................:Aug.13,2026 DateofTest(s)..................:Aug.13,2026toAug.19,2026 DateofIssue....................:Aug.19,2026 TestRequested................:Selecttest(s)asrequestedbytheclient. TestStandard(s)..............:FCCCFRTitle47Part15SubpartCSection15.247 Testprocedure................:KDB558074D0115.247MeasGuidancev05r02 ANSIC63.10-2020+Cor.1-2023+C63.10a-2024+Erratato C63.10a-2024 Intheconfigurationtested,theEUTcompliedwiththestandardsspecifiedabove. Preparedby:Reviewedby:Approvedby: KimiLu/EngineerBaretWu/DirectorLeviLee/Manager Note:Theresultsshowninthistestreportreferonlytothesample(s)testedunlessotherwisestated.Thistest reportshallnotbereproducedexceptinfull,withoutpriorwrittenapprovalofZHT.Thisdocumentmaybe alteredorrevisedbyZHT,personnelonly,andshallbenotedintherevisionofthedocument. ProjectNo.:ZHT-260813115W01-2 Page 2 of 50 TableofContents Page 1.SUMMARYOFTESTRESULTS...............................................................................4 2.GENERALINFORMATION........................................................................................5 2.1GENERALDESCRIPTIONOFEUT.................................................................................5 2.2DESCRIPTIONOFTESTMODES....................................................................................6 2.3TESTSETUPCONFIGURATION......................................................................................7 2.4DESCRIPTIONOFSUPPORTUNITS(CONDUCTEDMODE)........................................7 3.TESTFACILITYANDTESTINSTRUMENTUSED...................................................8 3.1TESTFACILITY.................................................................................................................8 3.2EQUIPMENTSLISTFORALLTESTITEMS...................................................................8 3.3TESTINGSOFTWARE......................................................................................................9 3.4MEASUREMENTUNCERTAINTY..................................................................................10 4.EMCEMISSIONTEST.............................................................................................11 4.1CONDUCTEDEMISSIONMEASUREMENT..................................................................11 4.1.1POWERLINECONDUCTEDEMISSIONLimits...................................................11 4.1.2TESTPROCEDURE................................................................................................11 4.1.3DEVIATIONFROMTESTSTANDARD..................................................................11 4.1.4TESTSETUP...........................................................................................................12 4.1.5EUTOPERATINGCONDITIONS...........................................................................12 4.1.6TESTRESULTS......................................................................................................13 4.2RADIATEDEMISSIONMEASUREMENT......................................................................15 4.2.1RADIATEDEMISSIONLIMITS...............................................................................15 4.2.2TESTPROCEDURE...............................................................................................16 4.2.3DEVIATIONFROMTESTSTANDARD..................................................................16 4.2.4TESTSETUP...........................................................................................................16 4.2.5EUTOPERATINGCONDITIONS...........................................................................17 5.RADIATEDBANDEMISSIONMEASUREMENT....................................................22 5.1TESTREQUIREMENT:..............................................................................................22 5.2TESTPROCEDURE..................................................................................................22 5.3DEVIATIONFROMTESTSTANDARD.....................................................................23 5.4TESTSETUP..............................................................................................................23 5.5EUTOPERATINGCONDITIONS..............................................................................23 5.6TESTRESULT...........................................................................................................24 6.POWERSPECTRALDENSITYTEST.....................................................................25 6.1APPLIEDPROCEDURES/LIMIT.............................................................................25 6.2TESTPROCEDURE..................................................................................................25 âŠ
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AntennaSpecification ManufactureïŒTUYA ProductNameïŒT1-2S-NLAntenna AntennaTypeïŒPCB TestDateïŒ2024.2.22 TestedbyïŒCaoZhenye ApprovedbyïŒLicco Content 1.GeneralDescription.................................................................................1 2.TestConfigurations...................................................................................2 2.1TestEnvironment............................................................................2 2.2TestEquipment...............................................................................2 2.3TestPrinciple...................................................................................2 3.TestResults..............................................................................................3 3.1GainandEfficiency..........................................................................3 3.2RadiationPattern............................................................................4 4.AntennaDimensions................................................................................5 5.EUTPhoto................................................................................................5 6.TestSetupPhoto......................................................................................6 1 1.GeneralDescription ManufacturerHangzhouTuyaInformationTechnologyCo.,Ltd Address Room701,Building3,MoreCenter,No.87GuDunRoad, Hangzhou,Zhejiang,China TestLocation Room106,Building3,LetongSciencePark,No.500, QiuyiRoad,BinjiangDistrict,Hangzhou ProductNameT1-2S-NLAntenna Productmodel T1-2S-NL AntennaType PCBAntenna TestItems Gain;Efficiency;RadiationPattern TestFrequency 2400-2500MHz TestStandard ANSI/IEEEStd149-1979 2 2.TestConfigurations 2.1TestEnvironment Temperature(°C)25 Humidity(%RH)60 AtmosphericPressure(kPa)100.5 2.2TestEquipment TestSystemTEM24Multi-probeMicrowaveChamber TestInstrumentAgilentE5071B 2.3TestPrinciple 3 3.TestResults 3.1GainandEfficiency Frequency(MHz)PeakGain(dBi)Efficiency(%) 2400 2.2 27.61 2410 2.03 29.79 2420 2.06 30.27 2430 2.01 31.48 2440 1.9 36.98 2450 1.82 38.19 2460 1.86 36.9 2470 2 35.89 2480 2.06 37.93 2490 2.12 43.35 2500 1.66 36.73 4 3.2RadiationPattern 2D 2400MHz3D 5 4.AntennaDimensions Unit:mm 5.EUTPhoto Antenna 6 6.TestSetupPhoto
FCCID:2BXSR-S1BWP-TH EUTTESTPHOTOS FCCID:2BXSR-S1BWP-TH â»â»â»â»â»ENDOFREPORTâ»â»â»â»â»
110 16TH STREET SUITE 1400 DENVER, · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 1.10 mW |
| 2 | 15C | 2.41 GHz - 2.46 GHz | 9.30 mW |