
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
GEOMATE POSITIONING PTE. LTD. Covered Equipment Certification Attestation Letter 4/25/2026 Nemko North America, Inc. 303 River Road Ottawa K1V 1H2 Canada ATTN.: Reviewing Engineer FCC ID: 2A7ZC-SG6L GEOMATE POSITIONING PTE. 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. GEOMATE POSITIONING PTE. 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. GEOMATE POSITIONING PTE. 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: KSANA. CHU Title: Engineer Manager Company Name: GEOMATE POSITIONING PTE. LTD. Date: 4/25/2026
April 25, 2026 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 NCT Testing Technology Co., Ltd. Address: A101&2F B2, Fuqiao 6th Area, Xintian Community, Fuhai Street, Baoan District, Shenzhen, China Person: Henry Wang (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 GEOMATE POSITIONING PTE. LTD. Address: 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 ( applicant name and address). Signature: Name KSANA. CHU Company Name GEOMATE POSITIONING PTE. LTD. Address 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 Tel +6589449901 Fax +6589449901 Email [email protected]
GEOMATE POSITIONING PTE. LTD. April 25, 2026 Equipment Autorisation Division Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 FCC ID: 2A7ZC-SG6L 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 KSANA. CHU Company Name GEOMATE POSITIONING PTE. LTD. Address 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 Tel +6589449901 Fax +6589449901 Email [email protected]
GEOMATE POSITIONING PTE. LTD. 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 Date: May 6, 2026 FCC ID: 2A7ZC-SG6L Software Operation Description We, GEOMATE POSITIONING PTE. LTD. hereby declare that requirements of Geodetic GNSS Receiver have been met and shown on the following question. SOFTWARE SECURITY DESCRIPTION General Description 1. Describe how any software/firmware updates for elements than can affect the device’s RF parameters will be obtained, downloaded, validated and installed. For software that is accessed through manufacturer’s website or device’s management system, describe the different levels of security as appropriate. Software/firmware will only be obtained by the factory, downloaded from the ODM website, and installed by the factor. Software is accessed through Web UI when computer is connected. 2. Describe the RF parameters that are modified by any software/firmware without any hardware changes. Are these parameters in some way limited such that any other software/firmware changes will not allow the device to exceed the authorized RF characteristics? The RF parameters cannot be modified by software. All these parameters will not exceed the authorized parameters. The firmware has been complied as binary file. It couldn’t change the setting RF parameter through this binary file. It is read-only without change. 3. Describe in detail the authentication protocols that are in place to ensure that the source of the RF-related software/firmware is valid. Describe in detail how the RF-related software is protected against modification. No any authentication protocol is used. The RF Parameters is put in read-only partition of EUT’s flash and are only installed in the factory. RF parameters including frequency of operation, power setting, modulation type, antenna types or country code setting will be locked in this partition. 4. Describe in detail any encryption methods used to support the use of legitimate RF-related software/firmware. Requires access to engineering mode and encryption controlled by a password that is controlled by the manufacturer and not accessible to the end user. 5. For a device that can be configured as a master and client (with active or passive scanning), explain how the device ensures compliance for each mode? In particular if the device acts as master in some band of operation and client in another; how is compliance ensured in each band of operation? This is a client device without Radar detection. Third-Party Access Control 1. Explain if any third parties have the capability to operate a U.S.-sold device on any other regulatory domain, frequencies, or in any manner that may allow the device to operate in violation of the device’s authorization if activated in the U.S. No any third parties have the capability to operate a US sold device on any other regulatory domain, frequencies, or in any manner that may allow the device to operate in violation of the device’s authorization if activated in the U.S. 2. Describe, if the device permits third-party software or firmware installation, what mechanisms are provided by the manufacturer to permit integration of such functions while ensuring that the RF parameters of the device cannot be operated outside its authorization for operation in the U.S. In the description include what controls and/or agreements are in place with providers of third-party functionality to ensure the devices’ underlying RF parameters are unchanged and how the manufacturer verifies the functionality. The RF Parameters is put in read-only partition of EUT’s flash and are only installed in the factory. RF parameters including frequency of operation, power setting, modulation type, antenna types or country code setting will be locked in this partition. 3. For Certified Transmitter modular devices, describe how the module grantee ensures that host manufacturers fully comply with these software security requirements for U-NII devices. If the module is controlled through driver software loaded in the host, describe how the drivers are controlled and managed such that the modular transmitter RF parameters are not modified outside the grant of authorization. This is not a modular device. SOFTWARE CONFIGURATION DESCRIPTION GUIDE For devices which have “User Interfaces” (UI) to configure the device in a manner that may impact the operational RF parameters, the following questions shall be answered by the applicant and the information included in the operational description. The description must address if the device supports any of the country code configurations or peer-peer mode communications discussed in KDB 594280 Publication D01. SOFTWARE CONFIGURATION DESCRIPTION USER CONFIGURATION GUIDE 1. Describe the user configurations permitted through the UI. If different levels of access are permitted for professional installers, system integrators or end-users, describe the differences. Authorized channel, bandwidth, and modulation can be configured through the UI. Only professional installers and system integrators are granted access and configuration, while end- users cannot access and configured a. What parameters are viewable and configurable by different parties? Professional installers, system integrators and end- users can all be viewed and configured with Authorized channel, bandwidth, and modulation, but it's still within the FCC limits. b. What parameters are accessible or modifiable by the professional installer or system integrators? Authorized channel, bandwidth, and modulation, but it's still within the FCC limits. (1) Are the parameters in some way limited, so that the installers will not enter parameters that exceed those authorized? The RF parameters are stored in a read-only partition of the EUT flash memory and cannot be modified. (2) What controls exist that the user cannot operate the device outside its authorization in the U.S.? The RF Parameters is put in read-only partition of EUT’s flash and are only installed …
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FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L UHF ANT FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L
4.5cm 2.5cm Label Location FCC ID: 2A7ZC-SG6L GEOMATE POSITIONING PTE. LTD. Product name: Geodetic GNSS Receiver Model No.: SG6L
FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L BT ANT WIFI ANT FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L FCCID: 2A7ZC-SG6L
FCC ID: 2A7ZC-SG6L 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: 2A7ZC-SG6L 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 20 5.518 3.5629 0.00020 1 Yes 2.4GWIFI 2437 20 13.83 24.1546 0.00453 1 Yes 5GWIFI BAND1 5210 20 10.039 10.0902 0.00492 1 Yes 5GWIFI BAND4 5775 20 9.736 9.4102 0.00458 1 Yes UHF 469.95 20 30.418 1101.0321 0.08821 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 0.00020 0.00492 0.28155 0.28667 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.
Page 1 of 38 Hotline: 400-8868-419 http://www.ncttesting.cn TEST REPORT FCC ID: 2A7ZC-SG6L Product : Geodetic GNSS Receiver Model Name : SG6L Brand : Report No. : NCT26017784E1-3 Prepared for GEOMATE POSITIONING PTE. LTD. 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 Prepared by Shenzhen NCT Testing Technology Co., Ltd. A101,B2,Fuqiao 6th Area ,xintian Community,Fuhai Street,Baoan District,Shenzhen,China TEL: 400-8868-419 Report No.: NCT26017784E1-3 Page 2 of 38 Hotline: 400-8868-419 http://www.ncttesting.cn 1 TEST RESULT CERTIFICATION Applicant : GEOMATE POSITIONING PTE. LTD. Address : 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 Manufacturer : GEOMATE POSITIONING PTE. LTD. Address : 38 BEACH ROAD #29-11, SOUTH BEACH TOWER, SINGAPORE 189767 Product name : Geodetic GNSS Receiver Model name : SG6L Standards : FCC Rules and Regulations Part 15 Subpart E Test procedure : ANSI C63.10-2020 Date of test : Jan. 20, 2026 to Apr. 10, 2026 Date of Issue : Apr. 10, 2026 This device described above has been tested by NCT, and the test results show that the equipment under test (EUT) is in compliance with the FCC requirements. And it is applicable only to the tested sample identified in the report. This report shall not be reproduced except in full, without the written approval of NCT, this document may be altered or revised by NCT, personal only, and shall be noted in the revision of the document. Prepared by: Shine Wu Reviewer: Keven Wu Approved: Henry Wang Report No.: NCT26017784E1-3 Page 3 of 38 Hotline: 400-8868-419 http://www.ncttesting.cn Contents Page 1 TEST RESULT CERTIFICATION ........................................................................................................................ 2 2 TEST SUMMARY ................................................................................................................................................... 5 3 TEST FACILITY ..................................................................................................................................................... 6 4 GENERAL INFORMATION .................................................................................................................................. 7 4.1 GENERAL DESCRIPTION OF E.U.T............................................................................ 7 4.2 TEST SETUP CONFIGURATION .................................................................................. 9 4.3 TEST MODE ............................................................................................................... 9 5 EQUIPMENT DURING TEST ............................................................................................................................. 10 5.1 EQUIPMENTS LIST ................................................................................................... 10 5.2 MEASUREMENT UNCERTAINTY................................................................................ 12 5.3 DESCRIPTION OF SUPPORT UNITS .......................................................................... 12 6 CONDUCTED EMISSION ................................................................................................................................... 13 6.1 E.U.T. OPERATION ................................................................................................. 13 6.2 EUT SETUP ............................................................................................................. 13 6.3 TEST SET-UP (BLOCK DIAGRAM OF CONFIGURATION) ........................................ 14 6.4 MEASUREMENT PROCEDURE: ................................................................................. 14 6.5 CONDUCTED EMISSION LIMIT .................................................................................. 14 6.6 MEASUREMENT DESCRIPTION ................................................................................ 14 6.7 CONDUCTED EMISSION TEST RESULT .................................................................... 14 7 RADIATED SPURIOUS EMISSIONS ............................................................................................................... 17 7.1 EUT OPERATION ..................................................................................................... 18 7.2 TEST SETUP ............................................................................................................ 19 7.3 SPECTRUM ANALYZER SETUP ................................................................................ 20 7.4 TEST PROCEDURE ................................................................................................... 21 7.5 SUMMARY OF TEST RESULTS ................................................................................. 22 8 POWER SPECTRAL DENSITY TEST ............................................................................................................. 29 8.1 TEST STANDARD AND LIMIT .................................................................................... 29 8.2 TEST SETUP ............................................................................................................ 30 8.3 TEST PROCEDURE ................................................................................................... 30 Report No.: NCT26017784E1-3 Page 4 of 38 Hotline: 400-8868-419 http://www.ncttesting.cn 8.4 TEST DATA .............................................................................................................. 31 9 26DB & 6DB & 99% EMISSION BANDWIDTH TEST ................................................................................... 32 9.1 TEST STANDARD ..................................................................................................... 32 9.2 TEST SETUP ............................................................................................................ 32 9.3 TEST PROCEDURE ................................................................................................... 32 …
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Page 1 of 4 Band Edge Condition Mode Frequency (MHz) Antenna Max Value (dBc) Limit (dBc) Verdict NVNT ac80 5210 Ant1 -31.58 -27 Pass NVNT ac80 5210 Ant1 -37.61 -27 Pass Band Edge NVNT ac80 5210MHz Low Ant1 Band Edge NVNT ac80 5210MHz High Ant1 Page 2 of 4 Duty Cycle Condition Mode Frequency (MHz) Antenna Duty Cycle (%) Correction Factor (dB) NVNT ac80 5210 Ant1 82.14 0.85 Duty Cycle NVNT ac80 5210MHz Ant1 Maximum Conducted Output Power Condition Mode Frequency (MHz) Antenna Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT ac80 5210 Ant1 9.189 0.85 10.039 24 Pass -26dB Bandwidth Condition Mode Frequency (MHz) Antenna -26 dB Bandwidth (MHz) Limit -26 dB Bandwidth (MHz) Verdict NVNT ac80 5210 Ant1 83.88 0.5 Pass -26dB Bandwidth NVNT ac80 5210MHz Ant1 Page 3 of 4 Occupied Channel Bandwidth Condition Mode Frequency (MHz) Antenna 99% OBW (MHz) NVNT ac80 5210 Ant1 74.685 OBW NVNT ac80 5210MHz Ant1 Maximum Power Spectral Density Level Condition Mode Frequency (MHz) Antenna Conduct PSD (dBm) Duty Factor (dB) Total PSD (dBm) Limit (dBm) Verdict Page 4 of 4 NVNT ac80 5210 Ant1 -7.139 0.85 -6.289 11 Pass PSD NVNT ac80 5210MHz Ant1 Conducted RF Spurious Emission Condition Mode Frequency (MHz) Antenna Max Value (dBc) Limit (dBc) Verdict NVNT ac80 5210 Ant1 -37.29 -27 Pass Tx. Spurious NVNT ac80 5210MHz Ant1 Emission
Page 1 of 4 Band Edge Condition Mode Frequency (MHz) Antenna Max Value (dBm) Limit (dBm) Verdict NVNT ac80 5745 Ant1 -31.14 -27 Pass NVNT ac80 5825 Ant1 -30.49 -27 Pass Band Edge NVNT ac80 5745MHz Low Ant1 Band Edge NVNT ac80 5825MHz High Ant1 Page 2 of 4 Duty Cycle Condition Mode Frequency (MHz) Antenna Duty Cycle (%) Correction Factor (dB) NVNT ac80 5775 Ant1 73.02 1.37 Duty Cycle NVNT ac80 5775MHz Ant1 Maximum Conducted Output Power Condition Mode Frequency (MHz) Antenna Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT ac80 5775 Ant1 8.366 1.37 9.736 30 Pass -6dB Bandwidth Condition Mode Frequency (MHz) Antenna -6 dB Bandwidth (MHz) Limit -6 dB Bandwidth (MHz) Verdict NVNT ac80 5775 Ant1 71.4 0.5 Pass -6dB Bandwidth NVNT ac80 5775MHz Ant1 Page 3 of 4 Occupied Channel Bandwidth Condition Mode Frequency (MHz) Antenna 99% OBW (MHz) NVNT ac80 5775 Ant1 74.685 OBW NVNT ac80 5775MHz Ant1 Maximum Power Spectral Density Level Condition Mode Frequency (MHz) Antenna Conduct PSD (dBm) Duty Factor (dB) Total PSD (dBm) Limit (dBm) Verdict Page 4 of 4 NVNT ac80 5775 Ant1 -10.293 1.37 -8.923 30 Pass PSD NVNT ac80 5775MHz Ant1 Conducted RF Spurious Emission Condition Mode Frequency (MHz) Antenna Max Value (dBc) Limit (dBc) Verdict NVNT ac80 5775 Ant1 -30.22 -27 Pass Tx. Spurious NVNT ac80 5775MHz Ant1 Emission
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
FCCID: 2A7ZC-SG6L Radiated Emission FCCID: 2A7ZC-SG6L Conducted emission
1545 South 1100 E STE 1 · Salt Lake City · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15E | 5.21 GHz - 5.21 GHz | 10.09 mW |
| 2 | 15E | 5.78 GHz - 5.78 GHz | 9.41 mW |

Surveying System
Equipment Class
DTS - Digital Transmission System
Geodetic GNSS Receiver
Equipment Class
DTS - Digital Transmission System
Remote Controller
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Geodetic GNSS Receiver
Equipment Class
DTS - Digital Transmission System
Geodetic GNSS Receiver
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter