
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Quick Installation Guide Wireless Access Point Setup with videos Visit https://www.tp-link.com/support/setup-video/ or scan the QR code to search for the setup video of your product model. Note: For simplicity, we will take EAP660 HD for example throughout the Guide. The image may differ from the actual product. Hardware Overview 1 On: Working normally/Initializing. Off: Working abnormally/Power off/LED is turned off. Flashing: Initialization: The LED flashes twice after initialization is completed. Upgrade: The LED flashes once per second while upgrading. Reset: The LED flashes quickly during the reset. The EAP will then reboot. Locate: When the Locate feature is activated in the Omada controller, the LED flashes quickly to locate and identify the device. The LED will flash for 10 minutes, or you can disable the feature manually to stop it flashing. LED Indicator RESET With the device powered on, press and hold the button for about 5 seconds until the LED flashes quickly . Then release the button. The device will restore to factory default settings. The port is used to connect to a router or a switch to transmit data, or to a PSE (Power Sourcing Equipment), such as a PoE switch, for both data transmission and Power over Ethernet (PoE) through Ethernet cable. The port supports transmission speed of 10/100/1000/2500 Mbps for EAP660 HD and 10/100/1000 Mbps for EAP610 / EAP620 HD. Ethernet Port: 2.5G ETH (PoE) (for EAP660 HD) | ETH (PoE) (for EAP610 / EAP620 HD) Plug one end of the provided power adapter to this port and the other end to a standard electrical wall outlet to power the EAP. Power Port: 12V 2A (for EAP660 HD) | 12V 1A (for EAP610 / EAP620 HD) 2 Insert the plastic wall anchors into the 6 mm diameter holes. 4 Connect the Ethernet cable to the Ethernet port on the EAP. 5 Attach the EAP to the mounting bracket, then rotate the EAP until it locks into place, as shown on the left. M3×20 Self-tapping Screws (Qty.4) M3×28 Plastic Wall Anchors (Qty.4) 1 If your Ethernet cable feeds through the wall, you can position the mounting bracket below the cable hole. Mark four positions for the screw holes and then drill four 6 mm diameter holes at the marked positions. 3 Secure the mounting bracket to the wall by driving the self-tapping screws into the anchors. Make sure that the shoulders of the mounting bracket are on the outside. 1 Remove the ceiling tile. 2 Place the mounting bracket in the center of the ceiling tile. Mark four positions for the screw holes and a position for the Ethernet cable hole. Drill four 4 mm diameter holes for the screws and a 25 mm diameter hole for the Ethernet cable at the marked positions. 3 Secure the mounting bracket to the ceiling tile using four M3x30 pan-head screws, washers and wing nuts, as shown on the left. 4 Feed the Ethernet cable through the hole and set the ceiling tile back into place. 5 Connect the Ethernet cable to the Ethernet port. Attach the EAP to the mounting bracket, then rotate the EAP until it locks into place, as shown on the left. Note: Make sure that the ceiling tile is bigger than the EAP. Wing Nuts (Qty.4)Washers (Qty.4)M3×30 Pan-head Screws (Qty.4) The EAP can be ceiling-mounted or wall-mounted. Choose a mounting method according to your needs. Follow the steps below for the appropriate installation. Hardware Installation 2 Drill Hole for Ethernet cable X4 X4 Front Panel Rear Panel Option 1: Ceiling MountingOption 2: Wall Mounting Option1: Ceiling Mounting Option2: Wall Mounting ©2021 TP-Link 7106509200 REV1.1.1 The products of TP-Link partly contain software code developed by third parties, including software code subject to the GNU General Public License (“GPL”). As applicable, the terms of the GPL and any information on obtaining access to the respective GPL Code used in TP-Link products are available to you in GPL-Code-Centre under (https://www.tp-link.com/en/support/gpl/). The respective programs are distributed WITHOUT ANY WARRANTY and are subject to the copyrights of one or more authors. For details, see the GPL Code and other terms of the GPL. The EAP supports two configuring options: To configure and manage EAPs singly (usually suitable for a small network with a few EAPs), Standalone Mode is recommended. Please refer to Option 1. To configure and manage EAPs in batch, Controller Mode is recommended. Please refer to Option 2. The EAP can be powered via a power adapter or a PSE device (such as a PoE switch). Option1: Standalone Mode Option1: Via PoE Switch (Compliant with 802.3at) Option2: Via Power Adapter A DHCP server (typically a router with DHCP function enabled) is required to assign IP addresses to the EAPs and clients in your local network. Via Omada App 1. Connect wirelessly by using the default SSID (format: TP-Link_2.4GHz/5GHz_XXXXXX) printed on the label at the bottom of the product. 2. Launch a web browser and enter http://tplinkeap.net in the address bar. Use admin for both Username and Password to log in. 3. Set up a new Username and Password for secure management purpose. Modify the wireless parameters and reconnect your wireless devices to the new wireless network. To configure other EAPs, connect your device to the EAP by the coresponding default SSID and repeat the steps listed above. You can configure some basic functions in Standalone Mode. If you want to configure advanced functions, use Controller Mode. 1. Download the TP-Link Omada App on your mobile device. It can be downloaded from App Store or Google Play: 2. Connect your mobile device to the EAP by using the default SSID (format: TP-Link_2.4GHz/5GHz_XXXXXX) printed on the label at the bottom of the product. 3. Open the Omada App, and wait for the EAP to appear on the Standalone APs page. Tap on the EAP you want to configure. The Omada App is designed to help you quickly configure the common settings. If you want to configure advanced settings, log in to the web page of your EAP or the controller. Via a Web Browser Omada Hardware Controller (OC20…
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TP-Link Corporation Limited Authority to Act as Agent Date: 2021-04-26 American Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 To Whom It May Concern: BTL Inc./Rose Liu is authorized to act on our behalf, until otherwise notified, for applications to American Certification Body, Inc. (ACB). We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you, Agency Agreement Expiration Date: 2022-04-15 By: __________________________ _______Abby Liang________ (Signature 1 ) (Print name) Title: Regulatory Compliance Manager On behalf of: TP-Link Corporation Limited (Company Name) Telephone: 00852-37585503 1 - Must be signed by applicant contact given for applicant on the FCC site, or by the authorized agent if an appropriate authorized agent letter has been provided. Letters should be placed on appropriate letterhead.
TP-Link Corporation Limited Request for Confidentiality Date: 2021-04-15 Subject: Confidentiality Request for: 2AXJ4EAP620HDV2 Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section12.4, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term External Photos Short Term Permanent* 1 Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Parts List & Placement/BOM Short Term Permanent Tune-Up Procedure Short Term Permanent Schematics Short Term Test Setup Photos Short Term Permanent* 3 User’s Manual TP-Link Corporation Limited____ has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality: The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of ___(specify number of days not to exceed 180) 2 ___ days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Applicant is also aware that they are responsible to notify ACB in the event information regarding the product or the product is made available to the public. ACB will then release the documents listed above for public disclosure pursuant to FCC Public Notice DA 04-1705. NOTE for Industry Canada Applications: IC currently only distinguishes Permanent Confidentiality exhibits as shown above. Short Term confidentiality is not considered applicable to IC applications. Sincerely, By: Regulatory Compliance Manager _Abby Liang__________ (Signature/Title 3 ) (Print name) 1 - The asterisked items (*) require further information to be provided to ACB before permanent confidentiality will be extended to these exhibits. Please refer to FCC KDB 726920 and the specific Document link for D01 found at: https://apps.fcc.gov/oetcf/kdb/forms/FTSSearchResultPage.cfm?switch=P&id=41731 and review section II, 3) regarding specific information that must accompany these requests. 2 - Please refer to http://acbcert.com/documents/misc-docs/Memo-Short-Term-Vs-Standard-Confidentiality.pdf for complete details. 3 - Must be signed by applicant contact given for applicant on the FCC site, or by the authorized agent if an appropriate authorized agent letter has been provided. Letters should be placed on appropriate letterhead.
Report No.: 2102C267 Page 2 of 11 Report No.: 2102C267 Page 3 of 11 Report No.: 2102C267 Page 4 of 11 Report No.: 2102C267 Page 5 of 11
C B A 12 C 345678 B E D D A 9 料号: 12345 E 6789 EAP620 HD(EU) 2.0_产品规格标贴 A1 80g艾利铜版纸+雾膜 EAP620 HD(EU) 2.0 姚远 2020-12-24 白色 TP底壳灰 白色 白色 注:S/N码由工厂打印至27*5mm空白标贴(7210500214) 空白标贴后黏贴至指定条码框上,MAC码、SSID由工厂直接打印在标贴上。 MAC条码由“XXXXXXXXXXXX”生成, 文本打印为“XX-XX-XX-XX-XX-XX”。 SSID以软件生成工具为准 3mm3mm 3mm 卷装供货: 边距&跳距=3mm 文字方向 文字方向 文字转曲(供应商来料效果)54.5*29.5±0.2mm,3.5R,2C AX1800 Ceiling Mount Wi-Fi 6 Access Point 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. Model: EAP620 HD Power: 12V 1.0A 802.3at PoE: 42.5-57V 0.6A Default Access: http://tplinkeap.net Username: admin Password: admin S/N:XXXXXXXXXXXXX Model:EAP620 HD(EU) Ver:2.0 MAC:XX-XX-XX-XX-XX-XX SSID: TP-Link_2.4GHz_XXXXXX SSID: TP-Link_5GHz_XXXXXX TP-Link Corporation Limited Suite 901, New East Ocean Centre, Tsim Sha Tsui, Hong Kong IC: 26583-EAP620HDV2 HVIN: EAP620 HDV2 FCC ID: 2AXJ4EAP620HDV2
Report No.: 2102C267 Page 6 of 11 2.4G Ant. 1 2.4G Ant. 2 5G Ant. 1 5G Ant. 2 Report No.: 2102C267 Page 7 of 11 2.4G Ant. 2 5G Ant. 2 2.4G Ant. 1 5G Ant. 1 Report No.: 2102C267 Page 8 of 11 Report No.: 2102C267 Page 9 of 11 Report No.: 2102C267 Page 10 of 11 Report No.: 2102C267 Page 11 of 11
Report No.: BTL-FCCP-3-2102C267 Page 1 of 5 FCC RF EXPOSURE REPORT FCC ID: 2AXJ4EAP620HDV2 Project No. : 2102C267 Equipment : AX1800 Ceiling Mount Wi-Fi 6 Access Point Brand Name : tp-link Test Model : EAP620 HD Series Model : N/A HVIN : EAP620 HDV2 Applicant : TP-Link Corporation Limited Address : Room 901, 9/F. , New East Ocean Centre, 9 Science Museum Road, Tsim Sha Tsui, Kowloon, Hong Kong Manufacturer : TP-Link Corporation Limited Address : Room 901, 9/F. , New East Ocean Centre, 9 Science Museum Road, Tsim Sha Tsui, Kowloon, Hong Kong Date of Receipt : Feb. 10, 2021 Date of Test : Feb. 25, 2021 ~ Mar. 24, 2021 Issued Date : Apr. 08, 2021 Report Version : R00 Test Sample : Engineering Sample No.: DG20210225114 Standard(s) : FCC Guidelines for Human Exposure IEEE C95.1 & FCC Part 2.1091 FCC Title 47 Part 2.1091, OET Bulletin 65 Supplement C The above equipment has been tested and found compliance with the requirement of the relative standards by BTL Inc. Prepared by : Chella Zheng Approved by : Ethan Ma Add: No.3, Jinshagang 1st Road, Shixia, Dalang Town,Dongguan, Guangdong, China. Te l : +86-769-8318-3000 Web: www.newbtl.com Report No.: BTL-FCCP-3-2102C267 Page 2 of 5 REPORT ISSUED HISTORY Report Version Description Issued Date R00 Original Issue Apr. 08, 2021 Report No.: BTL-FCCP-3-2102C267 Page 3 of 5 1. TEST FACILITY The test facilities used to collect the test data in this report is at the location of No.3,Jinshagang 1st Road, Shixia, Dalang Town, Dongguan, Guangdong, China. BTL's Test Firm Registration Number for FCC: 357015 BTL's Designation Number for FCC: CN1240 2. MPE CALCULATION METHOD Calculation Method of RF Safety Distance: where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Table for Filed Antenna: For 2.4GHz: Ant. Brand P/N Antenna Type Connector Gain (dBi) 1 tp -link EAP1800(EU)1.0 PIFA I-PEX 3 2 tp -link EAP1800(EU)1.0 PIFA I-PEX 3 Note: 1) This EUT supports CDD, and all antennas have the same gain, Directional gain = G ANT +Array Gain. For power measurements, Array Gain=0dB (N ANT ≤4), so the Directional gain=3. For power spectral density measurements, N ANT =2, N SS = 1. So the Directional gain=G ANT +Array Gain=G ANT +10log(N ANT / N SS )dBi= 3+10log(2/1)dBi=6.01. Then, the power spectral density limit is 8-(6.01-6)=7.99. 2) Beamforming Gain: 3dB. So Directional gain=3+3=6. 3) The antenna gain and beamforming gain are provided by the manufacturer. For Non Beamforming: Operating Mode TX Mode 2TX IEEE 802.11b V (Ant. 1 + Ant. 2) IEEE 802.11g V (Ant. 1 + Ant. 2) IEEE 802.11n(HT20) V (Ant. 1 + Ant. 2) IEEE 802.11n(HT40) V (Ant. 1 + Ant. 2) IEEE 802.11ax(HE20) V (Ant. 1 + Ant. 2) IEEE 802.11ax(HE40) V (Ant. 1 + Ant. 2) For Beamforming: Operating Mode TX Mode 2TX IEEE 802.11ax(HE20) V (Ant. 1 + Ant. 2) IEEE 802.11ax(HE40) V (Ant. 1 + Ant. 2) Report No.: BTL-FCCP-3-2102C267 Page 4 of 5 For 5GHz: Ant. Brand P/N Antenna Type Connector Gain (dBi) 1 tp -link EAP1800(EU)1.0 PIFA I-PEX 3 2 tp -link EAP1800(EU)1.0 PIFA I-PEX 3 Note: 1) This EUT supports CDD, and all antennas have the same gain, Directional gain = G ANT +Array Gain. For power measurements, Array Gain=0dB (N ANT ≤4), so the Directional gain=3. For power spectral density measurements, N ANT =2, N SS = 1. So the Directional gain=G ANT +Array Gain=G ANT +10log(N ANT / N SS )dBi= 3+10log(2/1)dBi=6.01. Then, the UNII-1 power spectral density limit is 17-(6.01-6)=16.99, the UNII-3 power spectral density limit is 30-(6.01-6)=29.99. 2) Beamforming Gain: 3dB. So Directional gain=3+3=6. 3) The antenna gain and beamforming gain are provided by the manufacturer. For Non Beamforming: Operating Mode TX Mode 2TX IEEE 802.11a V (Ant. 1 + Ant. 2) IEEE 802.11n(HT20) V (Ant. 1 + Ant. 2) IEEE 802.11n(HT40) V (Ant. 1 + Ant. 2) IEEE 802.11ac (VHT20) V (Ant. 1 + Ant. 2) IEEE 802.11ac (VHT40) V (Ant. 1 + Ant. 2) IEEE 802.11ac (VHT80) V (Ant. 1 + Ant. 2) IEEE 802.11ax (HE20) V (Ant. 1 + Ant. 2) IEEE 802.11ax (HE40) V (Ant. 1 + Ant. 2) IEEE 802.11ax (HE80) V (Ant. 1 + Ant. 2) For Beamforming: Operating Mode TX Mode 2TX IEEE 802.11ac (VHT20) V (Ant. 1 + Ant. 2) IEEE 802.11ac (VHT40) V (Ant. 1 + Ant. 2) IEEE 802.11ac (VHT80) V (Ant. 1 + Ant. 2) IEEE 802.11ax (HE20) V (Ant. 1 + Ant. 2) IEEE 802.11ax (HE40) V (Ant. 1 + Ant. 2) IEEE 802.11ax (HE80) V (Ant. 1 + Ant. 2) Report No.: BTL-FCCP-3-2102C267 Page 5 of 5 3. TEST RESULTS For 2.4GHz Non Beamforming: Directional Gain (dBi) Directional Gain (numeric) Max. Average Output Power (dBm) Max. Average Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Test Result 3 1.9953 26.58 454.9881 0.18070 1 Complies For 2.4GHz Beamforming: Directional Gain (dBi) Directional Gain (numeric) Max. Average Output Power (dBm) Max. Average Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Test Result 6 3.9811 25.37 344.3499 0.27287 1 Complies For 5GHz Non Beamforming: Directional Gain (dBi) Directional Gain (numeric) Max. Output Power (dBm) Max. Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Test Result 3 1.9953 25.65 367.2823 0.14586 1 Complies For 5GHz Beamforming: Directional Gain (dBi) Directional Gain (numeric) Max. Output Power (dBm) Max. Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Test Result 6 3.9811 24.75 298.5383 0.23656 1 Complies For the max simultaneous transmission MPE: Power Density (S) (mW/cm 2 ) Power Density (S) (mW/cm 2 ) Total Limit of Power Density (S) (mW/cm 2 ) Test Result 2.4GHz 5GHz 0.27287 0.23656 0.50943 1 Complies Note: The calculated distance is 20 cm. Output power including tune up tolerance. End of Test Report
Report No.: BTL-FCCP-1-2102C267 Page 1 of 214 FCC Radio Test Report FCC ID: 2AXJ4EAP620HDV2 This report concerns: Original Grant Project No. : 2102C267 Equipment : AX1800 Ceiling Mount Wi-Fi 6 Access Point Brand Name : tp-link Test Model : EAP620 HD Series Model : N/A Applicant : TP-Link Corporation Limited Address : Room 901, 9/F. , New East Ocean Centre, 9 Science Museum Road, Tsim Sha Tsui, Kowloon, Hong Kong Manufacturer : TP-Link Corporation Limited Address : Room 901, 9/F. , New East Ocean Centre, 9 Science Museum Road, Tsim Sha Tsui, Kowloon, Hong Kong Date of Receipt : Feb. 10, 2021 Date of Test : Feb. 25, 2021 ~ Mar. 24, 2021 May 06, 2021 ~ May 17, 2021 Issued Date : May 18, 2021 Report Version : R01 Test Sample : Engineering Sample No.: DG20210225114 for conducted, DG2021030351 for radiated. Standard(s) : FCC Part15, Subpart C (15.247) ANSI C63.10-2013 FCC KDB 558074 D01 15.247 Meas Guidance v05r02 The above equipment has been tested and found compliance with the requirement of the relative standards by BTL Inc. Prepared by : Chella Zheng Approved by : Ethan Ma Add: No.3, Jinshagang 1st Road, Shixia, Dalang Town,Dongguan, Guangdong, China. Te l : +86-769-8318-3000 Web: www.newbtl.com Report No.: BTL-FCCP-1-2102C267 Page 2 of 214 Declaration BTL represents to the client that testing is done in accordance with standard procedures as applicable and that test instruments used has been calibrated with standards traceable to international standard(s) and/or national standard(s). BTL's reports apply only to the specific samples tested under conditions. It is manufacture’s responsibility to ensure that additional production units of this model are manufactured with the identical electrical and mechanical components. BTL shall have no liability for any declarations, inferences or generalizations drawn by the client or others from BTL issued reports. The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, A2LA, or any agency of the U.S. Government. This report is the confidential property of the client. As a mutual protection to the clients, the public and ourselves, the test report shall not be reproduced, except in full, without our written approval. BTL’s laboratory quality assurance procedures are in compliance with the ISO/IEC 17025 requirements, and accredited by the conformity assessment authorities listed in this test report. BTL is not responsible for the sampling stage, so the results only apply to the sample as received. The information, data and test plan are provided by manufacturer which may affect the validity of results, so it is manufacturer’s responsibility to ensure that the apparatus meets the essential requirements of applied standards and in all the possible configurations as representative of its intended use. Limitation For the use of the authority's logo is limited unless the Test Standard(s)/Scope(s)/Item(s) mentioned in this test report is (are) included in the conformity assessment authorities acceptance respective. Please note that the measurement uncertainty is provided for informational purpose only and are not use in determining the Pass/Fail results. Report No.: BTL-FCCP-1-2102C267 Page 3 of 214 Table of Contents Page REPORT ISSUED HISTORY 6 1 . SUMMARY OF TEST RESULTS 7 1.1 TEST FACILITY 8 1.2 MEASUREMENT UNCERTAINTY 8 1.3 TEST ENVIRONMENT CONDITIONS 9 2 . GENERAL INFORMATION 10 2.1 GENERAL DESCRIPTION OF EUT 10 2.2 DESCRIPTION OF TEST MODES 12 2.3 PARAMETERS OF TEST SOFTWARE 14 2.4 DUTY CYCLE 15 2.5 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 17 2.6 SUPPORT UNITS 17 3 . AC POWER LINE CONDUCTED EMISSIONS TEST 18 3.1 LIMIT 18 3.2 TEST PROCEDURE 18 3.3 DEVIATION FROM TEST STANDARD 18 3.4 TEST SETUP 19 3.5 EUT OPERATION CONDITIONS 19 3.6 TEST RESULTS 19 4 . RADIATED EMISSIONS TEST 20 4.1 LIMIT 20 4.2 TEST PROCEDURE 21 4.3 DEVIATION FROM TEST STANDARD 21 4.4 TEST SETUP 22 4.5 EUT OPERATION CONDITIONS 23 4.6 TEST RESULTS - 9 KHZ TO 30 MHZ 23 4.7 TEST RESULTS - 30 MHZ TO 1000 MHZ 23 4.8 TEST RESULTS - ABOVE 1000 MHZ 23 5 . BANDWIDTH TEST 24 5.1 LIMIT 24 5.2 TEST PROCEDURE 24 5.3 DEVIATION FROM STANDARD 24 5.4 TEST SETUP 24 Report No.: BTL-FCCP-1-2102C267 Page 4 of 214 Table of Contents Page 5.5 EUT OPERATION CONDITIONS 24 5.6 TEST RESULTS 24 6 . MAXIMUM AVERAGE OUTPUT POWER TEST 25 6.1 LIMIT 25 6.2 TEST PROCEDURE 25 6.3 DEVIATION FROM STANDARD 25 6.4 TEST SETUP 25 6.5 EUT OPERATION CONDITIONS 25 6.6 TEST RESULTS 25 7 . CONDUCTED SPURIOUS EMISSIONS 26 7.1 LIMIT 26 7.2 TEST PROCEDURE 26 7.3 DEVIATION FROM STANDARD 26 7.4 TEST SETUP 26 7.5 EUT OPERATION CONDITIONS 26 7.6 TEST RESULTS 26 8 . POWER SPECTRAL DENSITY TEST 27 8.1 LIMIT 27 8.2 TEST PROCEDURE 27 8.3 DEVIATION FROM STANDARD 27 8.4 TEST SETUP 27 8.5 EUT OPERATION CONDITIONS 27 8.6 TEST RESULTS 27 9 . MEASUREMENT INSTRUMENTS LIST 28 10 . EUT TEST PHOTO 30 APPENDIX A - AC POWER LINE CONDUCTED EMISSIONS 35 APPENDIX B - RADIATED EMISSION - 9 KHZ TO 30 MHZ 38 APPENDIX C - RADIATED EMISSION - 30 MHZ TO 1000 MHZ 43 APPENDIX D - RADIATED EMISSION- ABOVE 1000 MHZ 46 APPENDIX E - BANDWIDTH 167 APPENDIX F - MAXIMUM AVERAGE OUTPUT POWER 174 APPENDIX G - CONDUCTED SPURIOUS EMISSIONS 183 Report No.: BTL-FCCP-1-2102C267 Page 5 of 214 Table of Contents Page APPENDIX H - POWER SPECTRAL DENSITY 208 Report No.: BTL-FCCP-1-2102C267 Page 6 of 214 REPORT ISSUED HISTORY Report Version Description Issued Date R00 Original Issue. Apr. 08, 2021 R01 1. Updated the description in section 7.2. 2. Updated the data of Appendix G and Appendix H. May 18, 2021 Report No.: BTL-FCCP-1-2102C267 Page 7 of 214 1. SUMMARY OF TEST RESULTS Test procedures according to the technical standard(s): FCC Part15, Subpart C (15.247) Standard(s) Section Test Item Test Result Judgment Remark 15.207 AC Power Line Conducted Emissions APPENDIX A PASS ------ 15.247(d) 15.205(a) 15.209(a) Radiated Emissions APPENDIX B APPENDIX C APPENDIX D PASS ------ 15.247(a)(2) Bandwidth APPENDIX E PASS …
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Report No.: BTL-FCCP-1-2102C267 Page 169 of 214 Test Mode TX G Mode Channel Frequency (MHz) 6 dB Bandwidth (MHz) 6 dB Bandwidth Min. Limit (kHz) Result 01 2412 16.04 500 Complies 06 2437 15.81 500 Complies 11 2462 16.35 500 Complies CH01 CH06 CH11 Channel Frequency (MHz) 99 % Emission Bandwidth (MHz) Result 01 2412 16.48 Complies 06 2437 16.48 Complies 11 2462 16.48 Complies CH01 CH06 CH11 Report No.: BTL-FCCP-1-2102C267 Page 170 of 214 Test Mode TX N-20M Mode Channel Frequency (MHz) 6 dB Bandwidth (MHz) 6 dB Bandwidth Min. Limit (kHz) Result 01 2412 16.95 500 Complies 06 2437 17.62 500 Complies 11 2462 17.31 500 Complies CH01 CH06 CH11 Channel Frequency (MHz) 99 % Emission Bandwidth (MHz) Result 01 2412 17.68 Complies 06 2437 17.68 Complies 11 2462 17.68 Complies CH01 CH06 CH11 Report No.: BTL-FCCP-1-2102C267 Page 171 of 214 Test Mode TX N-40M Mode Channel Frequency (MHz) 6 dB Bandwidth (MHz) 6 dB Bandwidth Min. Limit (kHz) Result 03 2422 35.80 500 Complies 06 2437 36.40 500 Complies 09 2452 35.52 500 Complies CH03 CH06 CH09 Channel Frequency (MHz) 99 % Emission Bandwidth (MHz) Result 03 2422 36.48 Complies 06 2437 36.32 Complies 09 2452 36.48 Complies CH03 CH06 CH09 Report No.: BTL-FCCP-1-2102C267 Page 172 of 214 Test Mode TX AX-20M Mode Channel Frequency (MHz) 6 dB Bandwidth (MHz) 6 dB Bandwidth Min. Limit (kHz) Result 01 2412 17.96 500 Complies 06 2437 17.64 500 Complies 11 2462 17.35 500 Complies CH01 CH06 CH11 Channel Frequency (MHz) 99 % Emission Bandwidth (MHz) Result 01 2412 19.12 Complies 06 2437 19.04 Complies 11 2462 19.04 Complies CH01 CH06 CH11 Report No.: BTL-FCCP-1-2102C267 Page 173 of 214 Test Mode TX AX-40M Mode Channel Frequency (MHz) 6 dB Bandwidth (MHz) 6 dB Bandwidth Min. Limit (kHz) Result 03 2422 37.88 500 Complies 06 2437 37.52 500 Complies 09 2452 37.83 500 Complies CH03 CH06 CH09 Channel Frequency (MHz) 99 % Emission Bandwidth (MHz) Result 03 2422 38.08 Complies 06 2437 38.08 Complies 09 2452 38.24 Complies CH03 CH06 CH09 Report No.: BTL-FCCP-1-2102C267 Page 174 of 214 APPENDIX F - MAXIMUM AVERAGE OUTPUT POWER Report No.: BTL-FCCP-1-2102C267 Page 175 of 214 Non Beamforming Test Mode TX B Mode_Ant. 1 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 21.59 1.20 22.79 30.00 1.0000 Complies 06 2437 21.77 1.20 22.97 30.00 1.0000 Complies 11 2462 21.95 1.20 23.15 30.00 1.0000 Complies Test Mode TX B Mode_Ant. 2 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 21.87 1.20 23.07 30.00 1.0000 Complies 06 2437 22.08 1.20 23.28 30.00 1.0000 Complies 11 2462 22.38 1.20 23.58 30.00 1.0000 Complies Test Mode TX B Mode_Total Channel Frequency (MHz) Average Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 25.94 30.00 1.0000 Complies 06 2437 26.14 30.00 1.0000 Complies 11 2462 26.38 30.00 1.0000 Complies Report No.: BTL-FCCP-1-2102C267 Page 176 of 214 Test Mode TX G Mode_Ant. 1 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 21.78 0.22 22.00 30.00 1.0000 Complies 06 2437 21.85 0.22 22.07 30.00 1.0000 Complies 11 2462 21.58 0.22 21.80 30.00 1.0000 Complies Test Mode TX G Mode_Ant. 2 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 22.10 0.22 22.32 30.00 1.0000 Complies 06 2437 21.79 0.22 22.01 30.00 1.0000 Complies 11 2462 21.87 0.22 22.09 30.00 1.0000 Complies Test Mode TX G Mode_Total Channel Frequency (MHz) Average Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 25.18 30.00 1.0000 Complies 06 2437 25.05 30.00 1.0000 Complies 11 2462 24.96 30.00 1.0000 Complies Report No.: BTL-FCCP-1-2102C267 Page 177 of 214 Test Mode TX N-20M Mode_Ant. 1 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 21.44 0.18 21.62 30.00 1.0000 Complies 06 2437 21.89 0.18 22.07 30.00 1.0000 Complies 11 2462 21.45 0.18 21.63 30.00 1.0000 Complies Test Mode TX N-20M Mode_Ant. 2 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 22.12 0.18 22.30 30.00 1.0000 Complies 06 2437 22.14 0.18 22.32 30.00 1.0000 Complies 11 2462 21.88 0.18 22.06 30.00 1.0000 Complies Test Mode TX N-20M Mode_Total Channel Frequency (MHz) Average Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 24.98 30.00 1.0000 Complies 06 2437 25.21 30.00 1.0000 Complies 11 2462 24.86 30.00 1.0000 Complies Report No.: BTL-FCCP-1-2102C267 Page 178 of 214 Test Mode TX N-40M Mode_Ant. 1 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 03 2422 18.16 0.25 18.41 30.00 1.0000 Complies 06 2437 20.48 0.25 20.73 30.00 1.0000 Complies 09 2452 16.96 0.25 17.21 30.00 1.0000 Complies Test Mode TX N-40M Mode_Ant. 2 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 03 2422 18.34 0.25 18.59 30.00 1.0000 Complies 06 2437 20.31 0.25 20.56 30.00 1.0000 Complies 09 2452 17.12 0.25 17.37 30.00 1.0000 Complies Test Mode TX N-40M Mode_Total Channel Frequency (MHz) Average Output Power (dBm) Max. Limit (dBm) Max. Limit (W) Result 03 2422 21.51 30.00 1.0000 Complies 06 2437 23.65 30.00 1.0000 Complies 09 2452 20.30 30.00 1.0000 Complies Report No.: BTL-FCCP-1-2102C267 Page 179 of 214 Test Mode TX AX-20M Mode_Ant. 1 Channel Frequency (MHz) Average Output Power (dBm) Duty Factor Average Output Power + Duty Factor (dBm) Max. Limit (dBm) Max. Limit (W) Result 01 2412 21.51 0.24 21.75 30.00 1.0000 Complies 06 2437 21.73 0.24 21.97 30.00 1.0000 Com…
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Report No.: BTL-FCCP-1-2102C267 Page 198 of 214 Test Mode TX N-40M Mode_Ant. 2 Reference Level-CH03 Reference Level-CH06 Reference Level-CH09 Bandedge-CH03 Bandedge-CH09 Report No.: BTL-FCCP-1-2102C267 Page 199 of 214 CH03 – 10th Harmonic of the fundamental frequency CH06 – 10th Harmonic of the fundamental frequency CH09 – 10th Harmonic of the fundamental frequency Report No.: BTL-FCCP-1-2102C267 Page 200 of 214 Test Mode TX AX-20M Mode_Ant. 1 Reference Level-CH01 Reference Level-CH06 Reference Level-CH11 Bandedge-CH01 Bandedge-CH11 Report No.: BTL-FCCP-1-2102C267…
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No.3 Jinshagang 1st Rd, Shixia, Dalang · Dongguan · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 434.50 mW |
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