
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Quick Start Guide Wi-Fi 6 MESH AP AX6600 2 Overview Thank you for choosing our product. Please read this manual before use. If you need to change InternetAccess method,i.e.from router to bridge mode,or add a new MeshAPtoyour Meshnetwork,or need other information,please scan the QR code below or visit https://azoresnetworks.com/pages/download-center in the browser to view the corresponding electronic user manual for instructions. Scan QR code to download electronic user manual 3 01Product Hardware Description Product Backside Description Button Description ButtonFunction WPSSet the WPS process. Reset Short press (1 second) for reset the router; Long press (5 seconds or longer) for reset to factory defaultsettings. ON/OFFPower on and off the router. LED Description LED BehaviorScenario DarkNo Power Steady RedPowering up Blinking RedNo network cable connected Blinking GreenNetwork connection in progress 需要替换AX6600两口的图片批注[A1]: 4 Steady Green Function normally and can access the Internet Blinking Blue WPS or Mesh pairing in progress Steady Blue Pairing successful 02Product Manual Single Router For single router: Connect the provided network cable from theAX6600 Router toyour home Broadband Gateway (i.e. cable/DSL modem, PON gateway). Please refer toSINGLE ROUTER SETUP STEPSfor network setup. 5 For mesh router set: MainAPhas the QR codeon the backside,is used as the main router, which is to be connected, via provided network cable, to your home Broadband Gateway (i.e.cable/DSLmodem, PONgateway); SatelliteAPis usedfor Wi-Fi network expansion. Please refer toONE ROUTER SETUP STEPS(for MainAP) &MESH SETUP STEPS (for SatelliteAP) for network setup. When Single Router and Main AP in Mesh Router Set have the sameoperation steps, they are collectively referred to asAzores Router hereinafter. 03ONE ROUTER SETUP STEPS 图片设备体上和扫码提示文字Master与Slave需 要替换为Main和Satellite 批注[A2]: 6 TheAzores Router can be connected according to the diagram above. Notethe DSL/PON/Cable Gateway must be connected to the WAN port ofAzores Router. When it is connected to the Internet , the LEDlight is steady green. If you can, try place theAzores Router in an open area like on a table or a shelf. Wired devices can be connected directly to LAN port for Internet access; wireless devices can use the network name (SSID) & password (see the sticker on the backside ofAzores Router) to connect to Internet. 04MESH SETUP STEPS Place the SatelliteAPat a proper location based on your homelayout.After powering on again, SatelliteAPis all set when the LED is steady green.Tooptimize wireless performance, place the SatelliteAPin a locationthat minimizes the barrier (such as wall, door, and floor) between the MainAPand SatelliteAP.Werecommend one wall/door/floor between the MainAPand SatelliteAP.You can connectthe SatelliteAPto your MainAPvia network cable (preferred method) or wirelessly. *Note:If you know there is a spot in your home, where the Wi-Fisignal is the weakest.Try place the SatelliteAP midway between the MainAPand the weakest spot. *Note:When MainAPandSatelliteAPpairing successfully,the SSID and Password would be same, that is showing on the backside of MainAP. 需要替换AX6600两口图片批注[A3]: 图片设备体上Master与Slave需要替换为Main 和Satellite 批注[A4]: 7 AX6600 05Azores Router APP 01 Connect your Mobile device to Wi-Fi network according to the Wi-Fi SSID and password sticker on the backside ofAzores Router. 02 Download mobileAPPsoftware by scanning the QR code belowor visiting https://azoresnetworks.com/pages/app-download in the browser. Scan QR code to downloadAzores RouterAPP 03 Follow theAPPguidance to log in. 04 Enter the “My Wi-Fi” menu to modify WiFi configuration or perform other operations. *Note:If youwanttousethemobiledevicetoperformotheroperationsontherouter,followtheinstructionsonthe mobileAPP. 8 06Frequently Asked Questions Q1 I replaced my old router with Azores Router.After connecting network cable from DSL/PON/Cable gateway to the Azores Router, the LED is keep flashing red.What should I do? Answer:For some cable carriers limit the number of in-home device to one. This problemmay happen if you replace your old router withAzores Router.In this case, you need to power down the cable gateway, leaveitpowereddownfor15secondsandpowerback it up.Afterwards, power down and on theAzores Router.Then you should see the LED turns steady green pretty soon. Q2 How to reset the device? Answer: WhenAzores Router is powered on, pushing the “Reset” hole on the backside of the device with a needle.The LED starts to flash green and hold for 5 more seconds. Release when the LED turns off.The LED will become steady red and will then start to blink green. Wait for about 2 minutes, then the factory default reset is completed. Q3 Mobile phones and other devices are connected to the router but cannot access the Internet. Answer: (1) Check whether theAzores Router's WAN port is connected to your Broadband Gateway.The Azores Router's network port should be connected to your Broadband gateway (i.e. DSL/Cable modem, PON gateway) with a network cable. (2) If PPPoE Internet access is needed, you needto check whether the broadband account andpassword are filled in correctly; otherwise, check whether the Internet status of your Broadband Gateway is normal. (3) Makesure the broadband service is normal and you have paid Internet bill. (4) Whenall above are normal, try reboot the device and then check the network once it powers back on. Q4 How to manage Azores Router network? Answer: Connect your device to the Router using wireless or wired connection. Open an Internet browser andenter http://192.168.0.1(or http://azoresrouter.com). You can modify WAN configuration, router configuration, single SSID for 2.4 and 5G network, guest Wi-Fi network, and retrieve your wireless network status. Q5 Azores Router APP cannot control Azores Router.What should I do? Answer: Please check your phone is connected to Wi-Fi normally,and use the correct login password to login in. Q6 If the way …
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FCC Software Configuration Control Declaration Rev1.1.docx Bowei Technology Co., Ltd FCC Software Configuration Control Declaration Date: 2021-05-26 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Attn: Bowei Technology Co., Ltd Product Name: Wi-Fi 6 MESH AP Model Number(s): AX6600 FCC ID: 2AVWB-AX6600 Regarding FCC Country Code Selection guidelines identified in KDB 594280. “All applications for equipment authorization for transmitters that can have radio parameters, or other technical parameters, reported to the Commission set by software must have an attestation indicating that no third party will have software, or configuration control, to program the device out of compliance of the technical rules under which it has been certified.” We declare that no third party will have software, or configuration control, to program the device out of compliance of the technical rules under which it has been certified. Name: Jiankuai Li Date: 2021-05-26 Title: PM Signature of applicant
Agent Authorization Company: Bowei Technology Co., Ltd Address: 2F, Building No. 6C, 1658, Gumei Rd., Xuhui District, Shanghai, China Product Name: Wi-Fi 6 MESH AP Model Number(s): AX6600 Product Description: Wi-Fi 6 MESH AP We authorize MiCOM Labs Inc., 575 Boulder Court, Pleasanton, California 94566, USA, to act on our behalf on all matters concerning the certification of above named equipment. We declare that MiCOM Labs Inc. is allowed to forward all information related to the approval and certification of equipment to the regulatory agencies as required and to discuss any issues concerning the approval application. Any and all acts carried out by MiCOM Labs on our behalf shall have the same effect as acts of our own. Signature: Date: 2021-05-26 Name: Jiankuai Li Title: PM Company: SHENZHEN STS TEST SERVICES CO.,LTD.
Bowei Technology Co., Ltd Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 2021-05-26 Subject; Request for Confidentiality FCC ID: 2AVWB-AX6600 To Whom It May Concern, Pursuant to the provisions of the Commission’s rules Title 47 Sections §0.457 and §0.459, we are requesting the Commission to withhold the following attachment(s) as confidential documents from public disclosure indefinitely. These documents contain detailed system and equipment descriptions and are considered as proprietary information in operation of the equipment. The public disclosure of these documents might be harmful to our company and would give competitors an unfair advantage in the market. Schematic Diagram Block Diagram Operational Description SOFTWARE SECURITY REQUIREMENTS FOR U-NII DEVICES In additional to above mentioned documents, in order to comply with the marketing regulations in Title 47 CFR §2.803 and the importation rules in Title 47 CFR §2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices, we request Short Term Confidentiality of the following attachment(s); External Photos Test Setup Photos Internal Photos User Manual For 45 days, pursuant to Public Notice DA 04-1705. OR For 180 days pursuant to KDB 726920 D01. It is our understanding that all measurement test reports, FCC ID label format and correspondence during the certification review process cannot be granted as confidential documents and this information will be available for public review once the grant of equipment authorization is issued. Sincerely, Signature: Name:Jiankuai Li Title: PM Company: SHENZHEN STS TEST SERVICES CO.,LTD.
Page 1 of 6 Report No.: STS2104117 APPENDIX-PHOTOGRAPHS OF EUT CONSTRUCTIONAL DETAILS Model: AX6600 Photo 1 Photo 2 Page 2 of 6 Report No.: STS2104117 Photo 3 Photo 4 Page 3 of 6 Report No.: STS2104117 Photo 5 Photo 6 Page 4 of 6 Report No.: STS2104117 Photo 7 Photo 8 Page 5 of 6 Report No.: STS2104117 Photo 9 Photo 10 Page 6 of 6 Report No.: STS2104117 Photo 11
FCC Label Sticker: 3 * 5 cm Wi-Fi 6 MESH AP Model: AX6600 FCC ID: 2AVWB-AX6600
Page 1 of 5 Report No.: STS2104117 APPENDIX-PHOTOGRAPHS OF EUT CONSTRUCTIONAL DETAILS Model: AX6600 Photo 1 Photo 2 2.4G/5.2G WIFI Antenna B 5.8G WIFI Antenna 0 2.4G/5.2G WIFI Antenna A 5.8G WIFI Antenna 1 5.8G WIFI Antenna 2 5.8G WIFI Antenna 3 Page 2 of 5 Report No.: STS2104117 Photo 3 Photo 4 Page 3 of 5 Report No.: STS2104117 Photo 5 Photo 6 Page 4 of 5 Report No.: STS2104117 Photo 7 Photo 8 Page 5 of 5 Report No.: STS2104117 Photo 9 Photo 10
Any reproduction of this document must be done in full. No single part of this document may be reproduced without permission from STS, all test data presented in this report is only applicable to presented test sample. Shenzhen STS Test Services Co., Ltd. A 1/F, Building B, Zhuoke Science Park, No.190 Chongqing Road, HepingShequ, Fuyong Sub-District, Bao’an District, Shenzhen, Guang Dong, China TEL: +86-755 3688 6288 FAX: +86-755 3688 6277 E-mail:[email protected] RADIO TEST REPORT Report No: STS2104117H01 Issued for Bowei Technology Co., Ltd 2F, Building No. 6C, 1658, Gumei Rd., Xuhui District, Shanghai, China Product Name: Wi-Fi 6 MESH AP Brand Name: Model Name: AX6600 Series Model: N/A FCC ID: 2AVWB-AX6600 Test Standard: FCC 47CFR §2.1091 S T L A B S Page 2 of 10 Report No.: STS2104117H01 Test Report Certification Applicant’s Name ................. : Bowei Technology Co., Ltd Address ................................. : 2F, Building No. 6C, 1658, Gumei Rd., Xuhui District, Shanghai, China Manufacturer's Name .......... : TDG Technology Co., Ltd Address ................................. : No.1 Yatai Road, Jiaxing City, Zhejiang Province, P.R.C. Product Description Product Name ........................ : Wi-Fi 6 MESH AP Brand Name ......................... : Model Name .......................... : ... : AX6600 Series Model .......................... : N/A Standards ............................. : FCC 47CFR §2.1091 This report shall not be reproduced except in full, without the written approval of STS, this document only be altered or revised by STS, personal only, and shall be noted in the revision of the document. Date of Test ............................................ : Date of receipt of test item ...................... : 22 Apr. 2021 Date (s) of performance of tests ............. : 22 Apr. 2021 ~ 18 May 2021 Date of Issue ........................................... : 18 May 2021 Test Result ............................................... : Pass Testing Engineer : (Chris Chen) Technical Manager : (Sean she) Authorized Signatory : (Vita Li) Page 3 of 10 Report No.: STS2104117H01 TABLE OF CONTENTS 1. GENERAL INFORMATION 5 1.1 GENERAL DESCRIPTION OF THE EUT 5 1.2 TEST FACTORY 6 2. FCC 47CFR §2.1091 REQUIREMENT 7 2.1 TEST STANDARDS 7 2.2 LIMIT 7 2.3 EUT OPERATION CONDITION 7 2.4 CLASSIFICATION 7 2.4 TEST RESULT 8 Page 4 of 10 Report No.: STS2104117H01 Revision History Rev. Issue Date Report No. Effect Page Contents 00 18 May 2021 STS2104117H01 ALL Initial Issue Page 5 of 10 Report No.: STS2104117H01 1. GENERAL INFORMATION 1.1 GENERAL DESCRIPTION OF THE EUT Product Name Wi-Fi 6 MESH AP Brand Name Model Name AX6600 Series Model N/A Product Description The EUT is Wi-Fi 6 MESH AP Operation Frequency: 802.11b/g/n/ax(20MHz): 2412~2472MHz 802.11n/ax(40MHz):2422~2462MHz IEEE 802.11a/ n(HT20)/ac(VHT20)/ax(VHT20): 5.180GHz-5.240GHz IEEE 802.11n(HT40)/ac(VHT40) /ax(VHT40): 5.190GHz-5.230GHz IEEE 802.11ac(VHT80) /ax(VHT80): 5.210GHz 2.4G WIFI Modulation Type: 802.11b(DSSS):CCK,DQPSK,DBPSK 802.11g(OFDM):BPSK,QPSK,16-QAM,64-QAM 802.11n(OFDM):BPSK,QPSK,16-QAM,64-QAM 5G WIFI Modulation Type: 802.11a(OFDM): BPSK,QPSK,16-QAM,64-QAM 802.11n(OFDM): BPSK,QPSK,16-QAM,64-QAM 802.11ac(OFDM): BPSK,QPSK,16-QAM,64-QAM,256-QAM 802.11ax(OFDM, OFDMA): BPSK,QPSK,16-QAM,64-QAM,256-QAM,1024QAM 2.4G Antenna Gain(dBi): Antenna number: 2 Antenna A gain : 4dBi, Antenna B gain : 4dBi MIMO technology Directional gain=7.01dBi 5.2G Antenna Gain(dBi): Antenna number: 2 Antenna A gain : 4.5dBi, Antenna B gain : 4.5dBi MIMO technology Directional gain=7.51dBi 5.8G Antenna Gain(dBi): Antenna number: 4 Antenna 0 gain : 3.5dBi, Antenna 1 gain : 3.5dBi Antenna 2 gain : 3.5dBi, Antenna 3 gain :3.5dBi MIMO technology Directional gain=9.52dBi Antenna Designation: PIFA Antenna Adapter Model: BY-SKY120200U70L Input: 100-240V AC,50/60Hz,0.7A MAX Output:DC12V 2A Model: RD1202000-C55-154MG Input: 100-240V AC, 50/60Hz,1.0A MAX Output: DC12V 2A Hardware version number V1.0.0 Software version number V1.0.1 Page 6 of 10 Report No.: STS2104117H01 1.2 TEST FACTORY SHENZHEN STS TEST SERVICES CO., LTD Add. : A 1/F, Building B, Zhuoke Science Park, No.190 Chongqing Road, HepingShequ, Fuyong Sub-District, Bao’an District, Shenzhen, Guang Dong, China FCC test Firm Registration Number: 625569 IC test Firm Registration Number: 12108A A2LA Certificate No.: 4338.01 Page 7 of 10 Report No.: STS2104117H01 2. FCC 47CFR §2.1091 REQUIREMENT 2.1 TEST STANDARDS The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 is followed. The gain of the antennas used in the product is extracted from the Antenna data sheets provided and also the maximum total power input to the antenna is measured. Through the Friis transmission formula and the maximum gain of the antenna, we can calculate the distance, away from the product, where the limit of MPE is reached. Although the Friis Transmission formula is far field assumption, the calculated result of that is an over-prediction for near field power density. It is taken as worst case to specify the safety range. 2.2 LIMIT According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environmental impact of the human exposure to radio-frequency (RF) radiation as specified in 1.1307 (b) Limits for Maximum Permissible Exposure (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm²) Limits for Occupational / controlled Exposures 300 - 1500 -- -- F/300 1500 – 100000 -- -- 5.0 Limits for General population / Uncontrolled Exposure 300 - 1500 -- -- F/1500 1500 – 100000 -- -- 1.0 F= Frequency in MHz Friss Formula Friss Transmission Formula: Pd = (Pout * G) / (4*pi*r²) Where Pd = power density in mW/cm² Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = Distance between observation point and the center of radiator in cm If we know the maximum gain of the antenna and the total output power to the …
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Page 1 of 8 Report No.: STS2104117W02 Power Spectrum Density-Ant A WLAN_Band-1 WLAN_Band-1 W52_11a20_Lower_Power Spectrum Density W52_11a20_Middle_Power Spectrum Density W52_11a20_Higher_Power Spectrum Density W52_11n20_Lower_Power Spectrum Density W52_11n20_Middle_Power Spectrum Density W52_11n20_Higher_Power Spectrum Density Page 2 of 8 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11n40_Lower_Power Spectrum Density W52_11n40_Higher_Power Spectrum Density W52_11ac20_Lower_Power Spectrum Density W52_11ac20_Middle_Power Spectrum Density W52_11ac20_Higher_Power Spectrum Density W52_11ac40_Lower_Power Spectrum Density Page 3 of 8 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11ac40_Higher_Power Spectrum Density W52_11ac80_CH42(5210MHz)_Power Spectrum Density W52_11ax20_Lower_Power Spectrum Density W52_11ax20_Middle_Power Spectrum Density W52_11ax20_Higher_Power Spectrum Density W52_11ax40_Lower_Power Spectrum Density Page 4 of 8 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11ax40_Higher_Power Spectrum Density W52_11ax80_CH42(5210MHz)_Power Spectrum Density Page 5 of 8 Report No.: STS2104117W02 Power Spectrum Density-Ant B WLAN_Band-1 WLAN_Band-1 W52_11a20_Lower_Power Spectrum Density W52_11a20_Middle_Power Spectrum Density W52_11a20_Higher_Power Spectrum Density W52_11n20_Lower_Power Spectrum Density W52_11n20_Middle_Power Spectrum Density W52_11n20_Higher_Power Spectrum Density Page 6 of 8 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11n40_Lower_Power Spectrum Density W52_11n40_Higher_Power Spectrum Density W52_11ac20_Lower_Power Spectrum Density W52_11ac20_Middle_Power Spectrum Density W52_11ac20_Higher_Power Spectrum Density W52_11ac40_Lower_Power Spectrum Density Page 7 of 8 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11ac40_Higher_Power Spectrum Density W52_11ac80_CH42(5210MHz)_Power Spectrum Density W52_11ax20_Lower_Power Spectrum Density W52_11ax20_Middle_Power Spectrum Density W52_11ax20_Higher_Power Spectrum Density W52_11ax40_Lower_Power Spectrum Density Page 8 of 8 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11ax40_Higher_Power Spectrum Density W52_11ax80_CH42(5210MHz)_Power Spectrum Density
Page 1 of 4 Report No.: STS2104117W02 26BW and 99% WLAN_Band-1 WLAN_Band-1 W52_11a20_Lower_26BW and 99% W52_11a20_Middle_26BW and 99% W52_11a20_Higher_26BW and 99% W52_11n20_Lower_26BW and 99% W52_11n20_Middle_26BW and 99% W52_11n20_Higher_26BW and 99% Page 2 of 4 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11n40_Lower_26BW and 99% W52_11n40_Higher_26BW and 99% W52_11ac20_Lower_26BW and 99% W52_11ac20_Middle_26BW and 99% W52_11ac20_Higher_26BW and 99% W52_11ac40_Lower_26BW and 99% Page 3 of 4 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11ac40_Higher_26BW and 99% W52_11ac80_CH42(5210MHz)_26BW and 99% W52_11ax20_Lower_26BW and 99% W52_11ax20_Middle_26BW and 99% W52_11ax20_Higher_26BW and 99% W52_11ax40_Lower_26BW and 99% Page 4 of 4 Report No.: STS2104117W02 WLAN_Band-1 WLAN_Band-1 W52_11ax40_Higher_26BW and 99% W52_11ax80_CH42(5210MHz)_26BW and 99%
Any reproduction of this document must be done in full. No single part of this document may be reproduced without permission from STS, all test data presented in this report is only applicable to presented test sample. Shenzhen STS Test Services Co., Ltd. A 1/F, Building B, Zhuoke Science Park, No.190 Chongqing Road, HepingShequ, Fuyong Sub-District, Bao’an District, Shenzhen, Guang Dong, China TEL: +86-755 3688 6288 FAX: +86-755 3688 6277 E-mail:[email protected] RADIO TEST REPORT Report No.:STS2104117W02 Issued for Bowei Technology Co., Ltd 2F, Building No. 6C, 1658, Gumei Rd., Xuhui District, Shanghai, China Product Name: Wi-Fi 6 MESH AP Brand Name: Model Name: AX6600 Series Model: N/A FCC ID: 2AVWB-AX6600 Test Standard: FCC Part 15.407 S T L A B S Page 2 of 50 Report No.: STS2104117W02 TEST RESULT CERTIFICATION Applicant’s Name ................. : Bowei Technology Co., Ltd Address ................................. : 2F, Building No. 6C, 1658, Gumei Rd., Xuhui District, Shanghai, China Manufacturer's Name .......... : TDG Technology Co., Ltd Address ................................. : No.1 Yatai Road, Jiaxing City, Zhejiang Province, P.R.C. Product Description Product Name ........................ : Wi-Fi 6 MESH AP Brand Name ......................... : Model Name .......................... : AX6600 Series Model .......................... : N/A Test Standards ..................... : FCC Part15.407 Test Procedure............................... : ANSI C63.10-2013 This device described above has been tested by STS, 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 STS, this document only be altered or revised by STS, personal only, and shall be noted in the revision of the document. Date of Test ........................................... : Date of receipt of test item ..................... : 22 Apr. 2021 Date (s) of performance of tests ............. : 22 Apr. 2021 ~ 18 May 2021 Date of Issue .......................................... : 18 May 2021 Test Result.............................................. : Pass Testing Engineer : (Chris Chen) Technical Manager : (Sean she) Authorized Signatory : (Vita Li) Page 3 of 50 Report No.: STS2104117W02 Table of Contents Page 1 . SUMMARY OF TEST RESULTS 6 1.1 TEST FACTORY 7 1.2 MEASUREMENT UNCERTAINTY 7 2 . GENERAL INFORMATION 8 2.1 GENERAL DESCRIPTION OF THE EUT 8 2.2 DESCRIPTION OF TEST MODES 11 2.3 TEST SOFTWARE AND POWER LEVEL 12 2.4 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 12 2.5 DESCRIPTION OF NECESSARY ACCESSORIES AND SUPPORT UNITS 13 2.6 EQUIPMENTS LIST FOR ALL TEST ITEMS 14 3 . EMC EMISSION TEST 16 3.1 CONDUCTED EMISSION MEASUREMENT 16 3.2 RADIATED EMISSION AND ( BANDEDGE) MEASUREMENT 20 4. POWER SPECTRAL DENSITY TEST 36 4.1 LIMIT 36 4.2 TEST PROCEDURE 36 4.3 DEVIATION FROM STANDARD 37 4.4 TEST SETUP 37 4.5 EUT OPERATION CONDITIONS 37 4.6 TEST RESULTS 38 5. BANDWIDTH MEASUREMENT 39 5.1 EMISSION BANDWIDTH (EBW) 26 BANDWID PROCEDURES / LIMIT 39 5.2 OCCUPIED BANDWIDTH ( 99%) TEST APPLIED PROCEDURES / LIMIT 41 5.3 MINIMUM EMISSION BANDWIDTH(6 DB) PROCEDURES / LIMIT 43 6. MAXIMUM CONDUCTED OUTPUT POWER 44 6.1 LIMIT 44 6.2 TEST PROCEDURE 44 6.3 DEVIATION FROM STANDARD 44 6.4 TEST SETUP 44 6.5 EUT OPERATION CONDITIONS 44 6.6 TEST RESULTS 45 7. AUTOMATICALLY DISCONTINUE TRANSMISSION 48 7.1 LIMIT OF AUTOMATICALLY DISCONTINUE TRANSMISSION 48 7.2 TEST RESULT OF AUTOMATICALLY DISCONTINUE TRANSMISSION 48 Page 4 of 50 Report No.: STS2104117W02 Table of Contents Page 8. ANTENNA REQUIREMENT 49 8.1 STANDARD REQUIREMENT 49 8.2 EUT ANTENNA 49 APPENDIX - PHOTOS OF TEST SETUP 50 Page 5 of 50 Report No.: STS2104117W02 Revision History Rev. Issue Date Report NO. Effect Page Contents 00 18 May 2021 STS2104117W02 ALL Initial Issue Page 6 of 50 Report No.: STS2104117W02 1. SUMMARY OF TEST RESULTS Test procedures according to the technical standards: § 15.407,KDB 789033 D02 General U-NII Test Procedures New Rules v02r01 FCC Part 15.407 FCC standard Test Item Results 15.207 AC Conducted Emission PASS 15.407 (a) /15.407 (e) 26dB/6dB &99% Bandwidth PASS 15.407(a) Maximum Conducted Output Power PASS 15.407(b)/15.205/15.209 Radiated Emission And (bandedge Emissions) Measurement PASS 15.407(a) Power Spectral Density PASS 15.407(c) Automatically Discontinue Transmission PASS 15.203/15.204 Antenna Requirement PASS NOTE: (1) ‘N/A’ denotes test is not applicable in this Test Report. (2) All tests are according to ANSI C63.10-2013. Page 7 of 50 Report No.: STS2104117W02 1.1 TEST FACTORY SHENZHEN STS TEST SERVICES CO., LTD Add. : A 1/F, Building B, Zhuoke Science Park, No.190 Chongqing Road, HepingShequ, Fuyong Sub-District, Bao’an District, Shenzhen, Guang Dong, China FCC test Firm Registration Number: 625569 IC test Firm Registration Number: 12108A A2LA Certificate No.: 4338.01 1.2 MEASUREMENT UNCERTAINTY The reported uncertainty of measurement y ± U, where expended uncertainty U is based on a standard uncertainty multiplied by a coverage factor of k=2, providing a level of confidence of approximately 95 %. No. Item Uncertainty 1 RF output power, conducted ±0.68dB 2 Unwanted Emissions, conducted ±2.988dB 3 All emissions, radiated 9K-30MHz ±2.84dB 4 All emissions, radiated 30M-1GHz ±4.39dB 5 All emissions, radiated 1G-6GHz ±5.10dB 6 All emissions, radiated>6G ±5.48dB 7 Conducted Emission (9KHz-150KHz) ±2.79dB 8 Conducted Emission (150KHz-30MHz) ±2.80dB Page 8 of 50 Report No.: STS2104117W02 2. GENERAL INFORMATION 2.1 GENERAL DESCRIPTION OF THE EUT Product Name Wi-Fi 6 MESH AP Trade Name Model Name AX6600 Series Model N/A Model Difference N/A Product Description The EUT is a Wi-Fi 6 MESH AP Operation Frequency: IEEE 802.11a/ n(HT20)/ac(VHT20)/ax(VHT20): 5.180GHz-5.240GHz IEEE 802.11n(HT40)/ac(VHT40) /ax(VHT40): 5.190GHz-5.230GHz IEEE 802.11ac(VHT80) /ax(VHT…
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Page 1 of 16 Report No.: STS2104117W03 Power Spectrum Density-ANT 0 WLAN_Band-4 WLAN_Band-4 W58_11a20_Lower_Power Spectrum Density W58_11a20_Middle_Power Spectrum Density W58_11a20_Higher_Power Spectrum Density W58_11n20_Lower_Power Spectrum Density W58_11n20_Middle_Power Spectrum Density W58_11n20_Higher_Power Spectrum Density Page 2 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11n40_Lower_Power Spectrum Density W58_11n40_Higher_Power Spectrum Density W58_11ac20_Lower_Power Spectrum Density W58_11ac20_Middle_Power Spectrum Density W58_11ac20_Higher_Power Spectrum Density W58_11ac40_Lower_Power Spectrum Density Page 3 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ac40_Higher_Power Spectrum Density W58_11ac80_Power Density_5775M W58_11ax20_Lower_Power Spectrum Density W58_11ax20_Middle_Power Spectrum Density W58_11ax20_Higher_Power Spectrum Density W58_11ax40_Lower_Power Spectrum Density Page 4 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ax40_Higher_Power Spectrum Density W58_11ax80_Power Density_5775M Page 5 of 16 Report No.: STS2104117W03 Power Spectrum Density-ANT 1 WLAN_Band-4 WLAN_Band-4 W58_11a20_Lower_Power Spectrum Density W58_11a20_Middle_Power Spectrum Density W58_11a20_Higher_Power Spectrum Density W58_11n20_Lower_Power Spectrum Density W58_11n20_Middle_Power Spectrum Density W58_11n20_Higher_Power Spectrum Density Page 6 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11n40_Lower_Power Spectrum Density W58_11n40_Higher_Power Spectrum Density W58_11ac20_Lower_Power Spectrum Density W58_11ac20_Middle_Power Spectrum Density W58_11ac20_Higher_Power Spectrum Density W58_11ac40_Lower_Power Spectrum Density Page 7 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ac40_Higher_Power Spectrum Density W58_11ac80_Power Density_5775M W58_11ax20_Lower_Power Spectrum Density W58_11ax20_Middle_Power Spectrum Density W58_11ax20_Higher_Power Spectrum Density W58_11ax40_Lower_Power Spectrum Density Page 8 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ax40_Higher_Power Spectrum Density W58_11ax80_Power Density_5775M Page 9 of 16 Report No.: STS2104117W03 Power Spectrum Density-ANT 2 WLAN_Band-4 WLAN_Band-4 W58_11a20_Lower_Power Spectrum Density W58_11a20_Middle_Power Spectrum Density W58_11a20_Higher_Power Spectrum Density W58_11n20_Lower_Power Spectrum Density W58_11n20_Middle_Power Spectrum Density W58_11n20_Higher_Power Spectrum Density Page 10 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11n40_Lower_Power Spectrum Density W58_11n40_Higher_Power Spectrum Density W58_11ac20_Lower_Power Spectrum Density W58_11ac20_Middle_Power Spectrum Density W58_11ac20_Higher_Power Spectrum Density W58_11ac40_Lower_Power Spectrum Density Page 11 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ac40_Higher_Power Spectrum Density W58_11ac80_Power Density_5775M W58_11ax20_Lower_Power Spectrum Density W58_11ax20_Middle_Power Spectrum Density W58_11ax20_Higher_Power Spectrum Density W58_11ax40_Lower_Power Spectrum Density Page 12 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ax40_Higher_Power Spectrum Density W58_11ax80_Power Density_5775M Page 13 of 16 Report No.: STS2104117W03 Power Spectrum Density-ANT 3 WLAN_Band-4 WLAN_Band-4 W58_11a20_Lower_Power Spectrum Density W58_11a20_Middle_Power Spectrum Density W58_11a20_Higher_Power Spectrum Density W58_11n20_Lower_Power Spectrum Density W58_11n20_Middle_Power Spectrum Density W58_11n20_Higher_Power Spectrum Density Page 14 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11n40_Lower_Power Spectrum Density W58_11n40_Higher_Power Spectrum Density W58_11ac20_Lower_Power Spectrum Density W58_11ac20_Middle_Power Spectrum Density W58_11ac20_Higher_Power Spectrum Density W58_11ac40_Lower_Power Spectrum Density Page 15 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ac40_Higher_Power Spectrum Density W58_11ac80_Power Density_5775M W58_11ax20_Lower_Power Spectrum Density W58_11ax20_Middle_Power Spectrum Density W58_11ax20_Higher_Power Spectrum Density W58_11ax40_Lower_Power Spectrum Density Page 16 of 16 Report No.: STS2104117W03 WLAN_Band-4 WLAN_Band-4 W58_11ax40_Higher_Power Spectrum Density W58_11ax80_Power Density_5775M
Page 1 of 4 Report No.: STS2104117W03 26BW and 99% WLAN_Band-4 WLAN_Band-4 W58_11a20_Lower_26BW and 99% W58_11a20_Middle_26BW and 99% W58_11a20_Higher_26BW a…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15E | 5.75 GHz - 5.83 GHz | 106.00 mW |

10G ONT
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Wi-Fi 6 MESH AP
Equipment Class
DTS - Digital Transmission System
Wi-Fi 6 MESH AP
Equipment Class
NII - Unlicensed National Information Infrastructure TX