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2A3MU-F8LGeodetic GNSS Receiver

Shanghai EFIX Geomatics Co., Ltd
Geodetic GNSS Receiver - FCC ID 2A3MU-F8L - Shanghai EFIX Geomatics Co., Ltd
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Sep 11, 2025
Application Purpose
Original Equipment
Equipment Note
Geodetic GNSS Receiver
Frequency Range
2402.00000000 - 2480.00000000
Company
Shanghai EFIX Geomatics Co., Ltd
Country
China

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Strongersignal,easytofix EFIXF8LGNSS USERGUIDE Survey&Engineering|July2025 EFIXF8LGNSSUSERGUIDE |2025-7Page| 1 TableofContent Preface........................................................................................................................4 Copyright.....................................................................................................................4 Copyright.............................................................................................................4 Trademarks..........................................................................................................4 SafetyWarnings..........................................................................................................4 FCCStatement.............................................................................................................4 CEInterferenceStarement..........................................................................................5 Brazil............................................................................................................................5 1Introduction.............................................................................................................6 1.1SafetyInformation................................................................................................6 1.1.1WarningsandCautions...............................................................................6 1.2RegulationsandSafety..........................................................................................6 1.2.1UseandCare...............................................................................................7 1.3TechnicalSupport..................................................................................................7 1.4Disclaimer..............................................................................................................7 1.5YourComments.....................................................................................................7 2GettingStartedwithF8L...........................................................................................8 2.1AbouttheReceiver...............................................................................................8 2.2PartsoftheReceiver.............................................................................................8 2.2.1FrontPanel.................................................................................................8 2.2.2LowerHousing............................................................................................9 2.2.3ReceiverPorts..........................................................................................10 2.3BatteriesandPower............................................................................................10 2.3.1Built-inbatteries......................................................................................10 2.3.2ChargingtheBattery................................................................................10 2.3.3BatterySafe..............................................................................................11 2.3.4ExternalPowerSupply.............................................................................11 2.4ProductBasicSupplyAccessories.......................................................................12 2.4.1BaseKitBasicSupply................................................................................12 2.4.2RoverKitBasicSupply..............................................................................13 2.5ConnectingtoanOfficeComputer.....................................................................14 2.6ConnectingtoaController..................................................................................14 EFIXF8LGNSSUSERGUIDE |2025-7Page| 2 2.6.1ConnectingviaWi-FiwitheFieldSoftware..............................................14 2.6.2ConnectingviaBluetoothwitheFieldSoftware......................................16 2.7DownloadingLoggedData..................................................................................17 2.7.1FTPDownload..........................................................................................17 2.7.2USBDownload.........................................................................................19 3EquipmentSetupandOperation.............................................................................21 3.1BaseStationSetup..............................................................................................21 3.2RoverStationSetup.............................................................................................22 3.3WorkingwiththeTiltCompensation..................................................................23 3.3.1OperationSteps.......................................................................................23 3.3.2Notesofusingtiltmeasurement.............................................................24 3.4WorkingwiththeVisionCamera........................................................................25 3.4.1VisionStakeoutOperationSteps.............................................................25 3.4.2NotesofusingVisionCamera..................................................................27 3.5LaserSurveyfunction.........................................................................................28 4ConfiguringThroughaWebBrowser.......................................................................30 4.1StatusMenu........................................................................................................32 4.1.1PositionSubmenu....................................................................................32 4.1.2ActivitySubmenu.....................................................................................32 4.1.3GoogleMapSubmenu.............................................................................33 4.2SatellitesMenu..................................…

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Attestation Statements

Shanghai EFIX Geomatics Co., Ltd. * the applicant must designate a contact located in the United States for purposes of acting as the applicant’s agent for service of process, regardless of whether the applicant is a domestic or foreign entity. An applicant located in the United States may designate itself as the agent for service of process. U.S. Agent Designation for Service of Process - Certification Attestation Letter DATE Nemko North America, Inc. 303 River Road Ottawa K1V 1H2 Canada ATTN.: Reviewing Engineer FCC ID: 2A3MU-F8L FRN: 0031615594 Per section 2.911(d)(7) of the FCC rules, Shanghai EFIX Geomatics Co.,Ltd. (“the applicant”) certifies that the equipment for which authorization is sought is designated to the following U.S. agent* for service of process: Company Name: iGage Mapping Corporation FRN: 0013933296 Physical U.S. Company Address: 1545 S 1100 E STE 1, Salt Lake City, UT 84105-2476, United States Agent name: Mark E Silver Agent Email Address: [email protected] The above contact person accepts the obligation for service of process. The applicant accepts to maintain an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission-related proceeding involving the equipment. Applicant Signed: Agent Signed (if different to Applicant): Signed: Printed name: Glenn Chu Title: Certification Manager Company Name: Shanghai EFIX Geomatics Co., Ltd. Date: 7/28/2025 Signed: Printed name: Mark E Silver Title: President Company Name: iGage Mapping Corporation Date: 7/28/2025

Attestation Statements

Shanghai EFIX Geomatics Co., Ltd. Covered Equipment Certification Attestation Letter 8/23/2025 Nemko North America, Inc. 303 River Road Ottawa K1V 1H2 Canada ATTN.: Reviewing Engineer FCC ID: 2A3MU-F8L Shanghai EFIX Geomatics Co., Ltd. (“ the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Note: If the equipment for which the applicant seeks authorization is produced by any of the entities identified on the current Covered List, the applicant should include an explanation on why the equipment is not “covered” equipment. Shanghai EFIX Geomatics Co., Ltd. (“ the applicant”) certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Shanghai EFIX Geomatics Co., Ltd. (“the applicant”) certifies that the equipment for which authorization is sought does not include cybersecurity or anti-virus software produced or provided by Kaspersky Lab, Inc. or any of its successors and assignees, including equipment with integrated Kaspersky Lab, Inc. (or any of its successors and assignees) cybersecurity or anti-virus software pursuant to DA-24-886 and KDB 986446 D01 Covered Equipment Guidance section B(2a). Signed: Printed name: Glenn Chu Title: Certification Manager Company Name: Shanghai EFIX Geomatics Co., Ltd. Date: 8/23/2025

Cover Letter(s)

August 23, 2025 Nemko Canada Inc 303 River Road Ottawa, Ontario, Canada K1V 1H2 Attn: Director of Certification Authority to Act as Agent On our behalf, I appoint Shenzhen Alpha Product Testing Co., Ltd. Address: Building i, No.2, Lixin Road, Fuyong Street, Bao’an District, 518103, Shenzhen, Guangdong, China Person: Mark Zhu (Name and address,person). to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the Federal Communications Commission’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for certification, as specified by Nemko Canada Inc, still resides with Shanghai EFIX Geomatics Co., Ltd. Address: Room 1137, Area D, 11th Floor, Building 1, No. 158, Shuanglian Road, Qingpu District, Shanghai ( applicant name and address). Signature: Name Glenn Chu Company Name Shanghai EFIX Geomatics Co., Ltd. Address Room 1137, Area D, 11th Floor, Building 1, No. 158, Shuanglian Road, Qingpu District, Shanghai Tel +86 755 29766001 Fax +86 755 29766001 Email [email protected]

Cover Letter(s)

Shanghai EFIX Geomatics Co., Ltd. August 23, 2025 Equipment Autorisation Division Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 FCC ID: 2A3MU-F8L Product Name: Geodetic GNSS Receiver Request for Confidentiality Pursuant to Sections 0.457 and 0.459 of the commissions rules, we hereby request that the following documents be held confidential:  Schematics Long-term confidential  Block diagram Long-term confidential  Operation description Long-term confidential  Tune-up Long-term confidential These materials contain trade secrets and proprietary information and are not customarily released to the public. The public disclosure of this information might be harmful to the company and provide unjustified benefits to our competitors. Signature: Name Glenn Chu Company Name Shanghai EFIX Geomatics Co., Ltd. Address Room 1137, Area D, 11th Floor, Building 1, No. 158, Shuanglian Road, Qingpu District, Shanghai Tel +86 755 29766001 Fax +86 755 29766001 Email [email protected]

External Photos

FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L UHF ANT FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L

ID Label/Location Info

4.5cm 2.5cm Label Location FCC ID: 2A3MU-F8L Shanghai EFIX Geomatics Co., Ltd. Product name: Geodetic GNSS Receiver Model No.: F8L This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.

Internal Photos

FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L BT ANT WIFI ANT FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L FCCID: 2A3MU-F8L

RF Exposure Info

FCC ID: 2A3MU-F8L Prediction of MPE at a given distance 1. Limits The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) 2. Test Procedure Equation from page 18 of OET Bulletin 65, Edition 97-01 Where: S = power density P = power input to the antenna G = numeric gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the centre of radiation of the antenna FCC ID: 2A3MU-F8L 3. Result Worse case is as below: Mode Frequency (MHz) Prediction distance (cm) RF output power MPE (mW/cm 2 ) Limit (mW/cm 2 ) MPE Test Exclusion dBm mW EDR 2402 50 3.485 2.2310 0.00008 1 Yes 2.4GWIFI 2437 50 16.5 44.6684 0.00134 1 Yes 5GWIFI BAND1 5210 50 8.617 7.2728 0.00057 1 Yes 5GWIFI BAND4 5775 50 9.457 8.8247 0.00069 1 Yes UHF 469.95 50 29.653 923.2089 0.01183 0.3133 Yes Maximum Simultaneous transmission MPE Ratios for EDR+2.4GWIFI+UHF: Max MPE ratio EDR /Limit Max MPE ratio WIFI /Limit Max MPE ratio UHF /Limit ∑MPE ratios Limit Result 0.00008 0.00134 0.01183 0.01325 1 PASS EDR Antenna Gain: 0.56dBi, 1.14(numeric) 2.4GWIFI Antenna Gain: -0.26dBi, 0.94(numeric) 5GWIFI Antenna Gain: 3.89dBi, 2.45(numeric) UHF Antenna Gain: -3.95dBi, 0.40(numeric) Meet MPE requirements, RF Exposure evaluation is not required.

Test Report

HX-CSX240 A OEM antenna Key Features ●SupportGNSSfivesystemfullband signal ●SupportBT,WiFi(2.4/5.8G) ●Stronganti-interferenceability,can withstandharshworkingenvironment ●Goodelectromagneticcompatibility, smallantennasize,easyproduct integration HX-CSX240Aisa OEMsurveyantennacoveringGPS、GLONASS、BDS、GALILEO、QZSS,andit iscompatiblewithBTand WiFiworkingbandstomeetthecurrentdemandformulti-systemcompatibilityofmeasurementequipment.It canbe widelyusedingeodeticsurveyingandmapping,marinesurveying,channelsurveying,dredgingsurveying,earthquake monitoring,bridgedeformationmonitoring,landslidemonitoring,containeroperationatthedock,etc. Perfectcompatibilitybetweensystems TheGNSSantennaandBT,WiFiantennadocompatibleintegration,easyto RTKmachinemanufacturerstointegratethedesign.Andforeachsystem antennaisolationbetweenthedepthofoptimization,systematicsolution hasbeenplaguedbyRTKreceiverelectromagneticcompatibilityproblems, sothattheRTKmachinedesignworkissimplified,theproductisstableand reliable. High structuralreliability ThecommunicationantennaandGNSSpositioningantennasubstratearemoldedinonepiecebyusingself-researched microwavematerial,withlowerloss,lighterweight,smallerantennasize,highprecision,goodconsistency,andmorestableand reliableelectricalperformance. Stronganti -interferenceperformance AntennaLNAhasexcellentout-of-bandrejectionperformance,whichcansuppressuselesselectromagneticwavesignalsand avoidreceiverinterferencebyotherwirelesscommunicationsystems,effectivelyreducingtheriskofsystemlossoflock,such aselectromagneticwaveinterferencefrompowergrids,communicationbasestations,radiostations,etc. Highlystablephasecenter Theantennapartadoptsmulti-feedpointdesignschemetorealizethe coincidenceofphasecenterandgeometriccenter,whichreducesthe influenceofantennaonmeasurementerrortotheminimum.whichwell solvestheinfluenceofcommunicationantennasonpositioningantennas andensurestheconsistencyofphasecenterofpositioningantennas. ofphasecenterofpositioningantennas.andensurestheconsistency Trackingin complexenvironments Theantennaunithasthecharacteristicsofhighgainandwidedirectionalmapbeamtoensurethattheantennastillhasa strongsignalreceptioneffectatlowelevationangles,ensuringthatitcanquicklylockontothesatelliteandoutputGNSS navigationsignalstablyevenincomplexenvironmentssuchasobscuredtreesandbuildings. HX-CSX240A OEM antenna GNSS Antenna Characteristics Frequency range GPSL1/L2/L5/L-Band BDSB1/B2/B3 GLONASS L1/L2 GALILEO E1/E2/E5a/E5b QZSS:L1/L2/L5/L6 Impedance 50 Ohm Polarization method Right rotation Circular polarization Antenna axis ratio ≤3dB Horizontal plane coverage angle 360° Output VSWR ≤2.0 Maximum Gain GNSS: 5dBi Phase center height ±2mm 2.4G Antenna Performance Frequency2402-2480MHz Maximum Gain0.56 dBi Resonance Frequency 2480±5MHz VSWRResonance Frequency: <2 2.4/5.8G Antenna Performance Frequency2402-2480MHz/5150-5800MHz Maximum Gain Resonance Frequency 2480±5MHz/5450±5MHz VSWRResonance Frequency: <2 LNA Specifications Gain30±2dB Noise Figure≤2dB Output VSWR≤2.0 In-band flatness ±2dB Support Voltage +3.3~+12VDC Operating Current ≤45mA Differential transmission delay ≤5ns Structural characteristics Antenna Size Φ115*H16.7mm Joint form GNSS/WIFI/BT: IPEX1 generation Terminal Working Environment Operating temperature -40°C~+85°C Storage temperature -55°C~+85°C Humidity95% Non-condensing Performance Parameters - 0.26dBi/3.89dBi GNSSantennaperformance GNSS AntennaGain Table Frequency (MHz) Gain @Zenith(dBi) Axial Ratio @Zenith(dB) Gain @20° Elevation(dBi) Axial Ratio @20° Elevation(dBi) Front to back Ratio(dB) 11640.51.9-5.15.110.6 11762.41.7-3.95.210.8 120 74.10.8-2.24.810.2 12274.80.2-1.73.79.8 12465.20.5-1.62.89.5 12585.40.8-1.62.59.4 12 685.31.1-1.62.410.3 12785.11.3-2.03.211.7 15250.10.8-6.84.117.2 15 614.00.9-3.82.318.3 15 755.11.1-2.82.417.5 16 025.80.7-2.22.920.2 GNSSAntennaVSWR GNSSRadiationPattern 1176MHz1206 MHz 1230MHz1242MHz 1254MHz1278MHz 1520MHz1559MHz 1575MHz1590MHz 1607MHz BT antennaperformance BT AntennaGain Frequency(MHz) 24002410242024302440245024602470248024902500 MaximumGain(dBi) -5.11-3.67-1.10-0.240.230.56-0.17-1.30-2.82-5.86-6.18 BluetoothAntennaVSWR WiFi(2.4/5.8G)antenna performance WiFi Antenna Gain Frequency(MHz) 2410 2420 2430 2440 2450 2460 2470 2480 2490 2500 Maximum Gain(dBi) -4.86 -4.20 -2.33 -1.77 -0.26 -1.07 -2.07 -4.97 -5.54 -6.40 Frequency(MHz) 5100 5200 5300 5400 5500 5600 5700 5800 5900 6000 Maximum Gain(dBi) 0.77 2.18 3.89 3.371.86 0.21 -1.37 -2.44 -2.24 -0.90 WiFi Antenna VSWR LNASpecifications LNA Gain LNA NF @LowFrequencyLNA NF @HighFrequency LNAGroupDelayOutputVSWR Threeview(Dimensionaltolerance±0.3mm ) 深圳市华信天线技术有限公司 HarxonCorporation 深圳市南山区粤海街道麻岭社区深南大道9988号大族科技中心501 Address:Room 501, Han's Laser TechnologyCentre,ShennanAve No.9988,NanshanDistrict,Shenzhen,Guangdong Province,China

Test Report

ALPHA's reports is using a digital certificate that is trusted on Adobe's official server. If there is no digital certificate or the digital certificate shows damaged in your report. Please do not accept the report. E-mail: [email protected] Tel: 4008-3008-95 Website: http://www.a-lab.cn FCC TEST REPORT FCC ID: 2A3MU-F8L On Behalf of Shanghai EFIX Geomatics Co., Ltd. Geodetic GNSS Receiver Model No.: F8L Prepared for : Shanghai EFIX Geomatics Co., Ltd. Address : Room 1137, Area D, 11th Floor, Building 1, No. 158, Shuanglian Road, Qingpu District, Shanghai Prepared By : Shenzhen Alpha Product Testing Co., Ltd. Address : Building i, No.2, Lixin Road, Fuyong Street, Bao’an District, 518103, Shenzhen, Guangdong, China Report Number : A2507136-C04-R01 Date of Receipt : July 9, 2025 Date of Test : July 9, 2025 – August 14, 2025 Date of Report : August 14, 2025 Version Number : V0 Test Result : Pass Page 2 of 102 Report No.: A2507136-C04-R01 TABLE OF CONTENTS Description Page 1. Summary of Standards And Results ...................................................................................... 6 1.1. Description of Standards and Results .................................................................... 6 2. General Information .................................................................................................................. 7 2.1. Description of Device (EUT) .................................................................................... 7 2.2. Accessories of Device (EUT) .................................................................................. 8 2.3. Tested Supporting System Details ......................................................................... 8 2.4. Block Diagram of connection between EUT and simulators .............................. 8 2.5. Test Mode Description .............................................................................................. 8 2.6. Test Conditions .......................................................................................................... 9 2.7. Test Facility ................................................................................................................ 9 2.8. Measurement Uncertainty ........................................................................................ 9 2.9. Test Equipment List ................................................................................................ 10 3. Maximum Peak Output power ............................................................................................... 12 3.1. Limit ........................................................................................................................... 12 3.2. Test Procedure ........................................................................................................ 12 3.3. Test Setup ................................................................................................................ 12 3.4. Test Result................................................................................................................ 12 4. Bandwidth ................................................................................................................................ 13 4.1. Limit ........................................................................................................................... 13 4.2. Test Procedure ........................................................................................................ 13 4.3. Test Result................................................................................................................ 13 5. Carrier Frequency Separation ............................................................................................... 24 5.1. Limit ........................................................................................................................... 24 5.2. Test Procedure ........................................................................................................ 24 5.3. Test Result................................................................................................................ 24 6. Number Of Hopping Channel ................................................................................................ 26 6.1. Limit ........................................................................................................................... 26 6.2. Test Procedure ........................................................................................................ 26 6.3. Test Result................................................................................................................ 26 7. Dwell Time ............................................................................................................................... 28 7.1. Test Limit .................................................................................................................. 28 7.2. Test Procedure ........................................................................................................ 28 7.3. Test Result................................................................................................................ 28 8. Radiated emissions ................................................................................................................ 38 8.1. Limit ........................................................................................................................... 38 8.2. Block Diagram of Test Setup ................................................................................. 39 8.3. Test Procedure ........................................................................................................ 40 8.4. Test Result................................................................................................................ 40 9. RF Conducted Spurious Emissions ............................................................................…

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Test Report

Page 58 of 102 Report No.: A2507136-C04-R01 Test Mode: π/4 DQPSK-Low Hopping-off Test Mode: π/4 DQPSK-High Hopping-off Test Mode: π/4 DQPSK-Low Hopping-on Test Mode: π/4 DQPSK-High Hopping-on Note: 1. *:Maximum data; x:Over limit; !:over margin. 2.Measurement=Reading Level+Correct Factor; Correct Factor=Antenna Factor+Cable Loss. Page 59 of 102 Report No.: A2507136-C04-R01 Test Mode: 8DPSKLow Hopping-off Test Mode: 8DPSK-High Hopping-off Test Mode: 8DPSK-Low Hopping-on Test Mode: 8DPSK-High Hopping-on Page 60 of 102 Report No.: A2507136-C04-R01 11. BAND EDGE (CONDUCTED) 11.1.Block Diagram of Test Setup 11.2.Test Limits In any 100 kHz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 20 dB below that in the 100 kHz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies with the conducted power limits based on the use of RMS averaging over a time interval, as permitted under paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 30 dB instead of 20 dB. 11.3.Test Procedure Details see the KDB 558074 D01 15.247 Meas Guidance v05r02 Place the EUT on the table and set it in transmitting mode. 11.3.1. Place the EUT on the table and set it in transmitting mode. 11.3.2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to the spectrum analyzer. 11.3.3. Set the spectrum analyzer as RBW=100KHz, VBW=300KHz, Sweep = auto. 11.3.4. Repeat above procedures until all frequency measured were complete.. Page 61 of 102 Report No.: A2507136-C04-R01 11.4.Test Results Pass Band Edge NVNT 1-DH5 2402MHz Ant1 No-Hopping Ref Band Edge NVNT 1-DH5 2402MHz Ant1 No-Hopping Emission Band Edge NVNT 1-DH5 2480MHz Ant1 No-Hopping Ref Page 62 of 102 Report No.: A2507136-C04-R01 Band Edge NVNT 1-DH5 2480MHz Ant1 No-Hopping Emission Band Edge NVNT 2-DH5 2402MHz Ant1 No-Hopping Ref Page 63 of 102 Report No.: A2507136-C04-R01 Band Edge NVNT 2-DH5 2402MHz Ant1 No-Hopping Emission Band Edge NVNT 2-DH5 2480MHz Ant1 No-Hopping Ref Page 64 of 102 Report No.: A2507136-C04-R01 Band Edge NVNT 2-DH5 2480MHz Ant1 No-Hopping Emission Band Edge NVNT 3-DH5 2402MHz Ant1 No-Hopping Ref Page 65 of 102 Report No.: A2507136-C04-R01 Band Edge NVNT 3-DH5 2402MHz Ant1 No-Hopping Emission Band Edge NVNT 3-DH5 2480MHz Ant1 No-Hopping Ref Page 66 of 102 Report No.: A2507136-C04-R01 Band Edge NVNT 3-DH5 2480MHz Ant1 No-Hopping Emission Page 67 of 102 Report No.: A2507136-C04-R01 Band Edge(Hopping) NVNT 1-DH5 2402MHz Ant1 Hopping Ref Band Edge(Hopping) NVNT 1-DH5 2402MHz Ant1 Hopping Emission Band Edge(Hopping) NVNT 1-DH5 2480MHz Ant1 Hopping Ref Page 68 of 102 Report No.: A2507136-C04-R01 Band Edge(Hopping) NVNT 1-DH5 2480MHz Ant1 Hopping Emission Band Edge(Hopping) NVNT 2-DH5 2402MHz Ant1 Hopping Ref Page 69 of 102 Report No.: A2507136-C04-R01 Band Edge(Hopping) NVNT 2-DH5 2402MHz Ant1 Hopping Emission Band Edge(Hopping) NVNT 2-DH5 2480MHz Ant1 Hopping Ref Page 70 of 102 Report No.: A2507136-C04-R01 Band Edge(Hopping) NVNT 2-DH5 2480MHz Ant1 Hopping Emission Band Edge(Hopping) NVNT 3-DH5 2402MHz Ant1 Hopping Ref Page 71 of 102 Report No.: A2507136-C04-R01 Band Edge(Hopping) NVNT 3-DH5 2402MHz Ant1 Hopping Emission Band Edge(Hopping) NVNT 3-DH5 2480MHz Ant1 Hopping Ref Page 72 of 102 Report No.: A2507136-C04-R01 Band Edge(Hopping) NVNT 3-DH5 2480MHz Ant1 Hopping Emission Page 73 of 102 Report No.: A2507136-C04-R01 12. POWER LINE CONDUCTED EMISSIONS 12.1.Block Diagram of Test Setup 12.2.Limit Frequency Maximum RF Line Voltage Quasi-Peak Level dB(V) Average Level dB(V) 150kHz ~ 500kHz 66 ~ 56* 56 ~ 46* 500kHz ~ 5MHz 56 46 5MHz ~ 30MHz 60 50 Notes: 1. * Decreasing linearly with logarithm of frequency. 2. The lower limit shall apply at the transition frequencies. 12.3.Test Procedure (1) The EUT was placed on a non-metallic table, 80cm above the ground plane. (2) Setup the EUT and simulator as shown in 10.1 (3) The EUT Power connected to the power mains through a power adapter and a line impedance stabilization network (L.I.S.N1). The other peripheral devices power cord connected to the power mains through a line impedance stabilization network (L.I.S.N2), this provided a 50-ohm coupling impedance for the EUT (Please refer to the block diagram of the test setup and photographs). Both sides of power line were checked for maximum conducted interference. In order to find the maximum emission, the relative positions of equipments and all of the interface cables were changed according to ANSI C63.10 :2013on conducted Emission test. (4) The bandwidth of test receiver is set at 10KHz. (5) The frequency range from 150 KHz to 30MHz is checked. 12.4.Test Result PASS. (See below detailed test data) Note: If peak Result comply with AV limit, QP and AV Result is deemed to comply with AV limit EUT LISN LISN PC System 80cm Receiver :50 Terminator 0.8m Page 74 of 102 Report No.: A2507136-C04-R01 Line: Page 75 of 102 Report No.: A2507136-C04-R01 Neutral: Note: All modes and channels have been tested and only the GFSK 2402MHz mode with the worst data is listed. Page 76 of 102 Report No.: A2507136-C04-R01 13. ANTENNA REQUIREMENTS 13.1.Limit For intentional device, accor…

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Contact Information

Applicant

Glenn Chu(Certificate manager)
[email protected]Fax: +86 755 29766001

Test Firm

Shenzhen Alpha Product Testing Co., LTD.Real Yak
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz2.23 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 50 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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