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  3. V7TAC23

V7TAC23AC1200 Dual Band Gigabit WiFi Router

SHENZHEN TENDA TECHNOLOGY CO., LTD.
AC1200 Dual Band Gigabit WiFi Router - FCC ID V7TAC23 - SHENZHEN TENDA TECHNOLOGY CO., LTD.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Mar 09, 2020
Application Purpose
Original Equipment
Date of Application
Mar 09, 2020
Equipment Note
AC1200 Dual Band Gigabit WiFi Router
Frequency Range
2412.00000000 - 2462.00000000
Company
SHENZHEN TENDA TECHNOLOGY CO., LTD.
Country
China

Documents & Files

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Users Manual

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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

Document Text

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

Users Manual

Modem WPS/RST POWER IPTV/3 WAN 2 1 WPS/RST POWER IPTV/3 WAN 2 1 II. Connect your devices to the new router III. Set up the new router for internet access Tenda_XXXXXX I. Connect your router Internet Or Ethernet cable Ethernet cable Ethernet cable WPS/RST POWER IPTV/3 WAN 2 1 Dual Band Gigabit WiFi Router Quick Installation Guide AC19/AC23 (AC23 is used for illustration in this guide) If you want to copy the PPPoE user name and password from your original router, start from Step 1. Otherwise, start from Step 2. Step 1: Import your PPPoE user name and password from your original router. 1. Power on your original and new routers. 2. Connect the WAN port of the original router to a LAN port (port 1, 2, 3, and IPTV/4 for AC19; port 1, 2, IPTV/3 for AC23) of the new router using an Ethernet cable. 3. When the WAN and LAN LED indicators of the new router turn solid on for 3 seconds after blinking fast, the PPPoE user name and password are imported to your new router successfully. 4. Remove the original router. Ethernet cable Power Power New router Original router WAN Step 2: Connect your new router to the internet. Power WAN Ethernet jack 1. Power on the new router. 2. Connect the WAN port of the new router to the LAN port of your modem or the Ethernet jack using an Ethernet cable. The WAN LED indicator lights on. Method 1: Connect your WiFi-enabled device (such as a smart phone) to the new router’s WiFi network using the SSID labeled on the bottom of the router. There is no WiFi password by default. Method 2: Connect your wired device (such as a computer) to a LAN port (port 1, 2, 3, and IPTV/4 for AC19; port 1, 2, PTV/3 for AC23) of the router using an Ethernet cable. The LAN LED Iindicator lights up. 1. Start a web browser on a device that has connected to the router, and visit tendawif i.com. 2. Click Start.3. The router detects your internet connection type automatically. Set required parameters and click Next. • Wireless router * 1 • Power adapter * 1 • Ethernet cable * 1 • Quick installation guide * 1 Package contents For product or function details, please visit www.tendacn.com tendawif i.com 4 . Customize your WiFi name (SSID), WiFi password and the login password as needed, and click Next. Done. If you cannot log in to the web UI of the router, refer to Q1 in FAQ. Tip The WiFi password is used to connect to the WiFi network, and the login password is used to log in to the web UI of the router. Note Tips Quick Setup Wizard Start Tenda Router WiFi Settings Tenda_XXXXXX WiFi password of 8-32 characters Not Required Set the WiFi password as the login password of the admin account. Not Required Login password of 5-32 characters Next Skip Next Please select your connection type. As detected, your connection type may be: PPPoE ISP Password: Connection Type: ISP User Name: Import PPPoE user name and password from the original router. Enter the user name from your ISP . Enter the password from your ISP . PPPoE You’re all set! You can now connect to Tenda_XXXXXX To change settings of other features,click the "More" button below. More Jack, ports and buttons WPS: Press the button of the router for 1 to 3 seconds. Within 2 minutes, enable the WPS function of the other WPS-supported device to establish a WPS connection. Reset: When the SYS LED indicator blinks, hold the button down for about 8 seconds, release it when all the LED indicators blink once. Description Jack/Port/Button Power jack. Used to connect to the included power adapter. POWER WPS/RST WAN 1/2 IPTV/3 Used to start the WPS negotiation process, or to reset the router. Used to connect this router to the internet. They are LAN ports used to connect to the wired devices such as computers or switches. By default, it is a LAN port. If the IPTV function of the router is enabled, it serves only as an IPTV port used to connect to a set-top box. WPS: Press the button of the router for 1 to 3 seconds. Within 2 minutes, enable the WPS function of the other WPS-supported device to establish a WPS connection. Reset: When the SYS LED indicator blinks, hold the button down for about 8 seconds, and release it when all the LED indicators blink once. LED indicators LED indicator SYS StatusDescription Solid on Blinking O WAN LAN WiFi T Solid on Blinking O Solid on Fast blinking for twice O Solid on Fast blinking Slow blinking O The router works properly, but fails to connect to the internet. The system is faulty. The WAN port is connected properly, but no data is being transmitted Data is being transmitted over the WAN port. The WAN port is disconnected or improperly connected. At least one LAN port is connected properly. A new wired device is connected to the router. No device is connected to any LAN port of the router properly. At least the 2.4 GHz or 5 GHz WiFi network is enabled. Data is being transmitted wirelessly. The router is performing WPS negotiation. Both 2.4 GHz and 5 GHz WiFi networks are disabled. This LED is reserved. The router is starting. If the indicator still lights solid on after the router completes startup, it indicates that the router is connecting to the internet successfully. CE Mark Warning This is a Class B product. In a domestic environment, this product may cause radio interference, in which case the user may be required to take adequate measures. Operations in the 5.15-5.25GHz band are restricted to indoor use only. This equipment should be installed and operated with minimum distance 20cm between the device and your body. The mains plug is used as disconnect device, the disconnect device shall remain readily operable. NOTE: (1) The manufacturer is not responsible for any radio or TV interference caused by unauthorized modications to this equipment. (2) To avoid unnecessary radiation interference, it is recommended to use a shielded RJ45 cable. Declaration of Conformity Hereby, SHENZHEN TENDA TECHNOLOGY CO., LTD. declares that the radio equipment type AC23 is in compliance with Directive 2014/53/EU. The full text o…

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Cover Letter(s)

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Cover Letter(s)

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Cover Letter(s)

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External Photos

Project No.: 1912C172 Page 2 of 9 Project No.: 1912C172 Page 3 of 9 Project No.: 1912C172 Page 4 of 9 Project No.: 1912C172 Page 5 of 9

ID Label/Location Info

AC23V1.0英文铜版纸 AC23V1.0 01 10042811 78.3*42.4mm 78.3mm 42.4mm 2.2mm 2.1mm AC2100 Dual Band Gigabit WiFi Router IP Address: 192.168.0.1 Input: 12V 1.5A FCC ID: V7TAC23 www.tendacn.com Made in China Model: AC23 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. 注意:需要通过耐磨试验、耐腐试验要求(包括生产打印区域) 黑色100

Internal Photos

Project No.: 1912C172 Page 6 of 9 2.4G ANT 1 2.4G ANT 2 5G ANT 1 5G ANT 2 5G ANT 3 5G ANT 4 2.4G RX ANT 3 Project No.: 1912C172 Page 7 of 9 Project No.: 1912C172 Page 8 of 9 Project No.: 1912C172 Page 9 of 9

RF Exposure Info

Report No.: BTL-FCCP-3-1912C172 Page 1 of 5 FCC RF EXPOSURE REPORT FCC ID: V7TAC23 Project No. : 1912C172 Equipment : AC2100 Dual Band Gigabit WiFi Router Brand Name : Tenda Test Model : AC23 Series Model : N/A Applicant : SHENZHEN TENDA TECHNOLOGY CO.,LTD Address : 6-8 Floor, Tower E3, No. 1001, Zhongshanyuan Road, Nanshan District, Shenzhen, China. 518052 Manufacturer : SHENZHEN TENDA TECHNOLOGY CO.,LTD Address : 6-8 Floor, Tower E3, No. 1001, Zhongshanyuan Road, Nanshan District, Shenzhen, China. 518052 Date of Receipt : Dec. 25, 2019 Date of Test : Dec. 27, 2019 ~ Feb. 20, 2020 Issued Date : Feb. 28, 2020 Report Version : R00 Test Sample : Engineering Sample No.: DG2019122551 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 : Chay Cai Approved by : Ethan Ma Add: No.3, Jinshagang 1st Road, Shixia, Dalang Town,Dongguan, Guangdong, China. Tel: +86-769-8318-3000 Web: www.newbtl.com Report No.: BTL-FCCP-3-1912C172 Page 2 of 5 REPORT ISSUED HISTORY Report Version Description Issued Date R00 Original Issue Feb. 28, 2020 Report No.: BTL-FCCP-3-1912C172 Page 3 of 5 1. 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 2.4G: Ant. Brand Model Name Antenna Type Connector Gain (dBi) 1 N/A N/A Dipole N/A 5 2 N/A N/A Dipole N/A 5 Note: This EUT supports CDD, and all antennas have the same gain, (1) For Non-Beamforming function, Directional gain = G ANT +Array Gain, where Array Gain is as follows: For power spectral density measurements, N ANT = 2, N SS = 1. So Directional gain = G ANT + Array Gain = G ANT + 10 log (N ANT / N SS ) dB =5+10log(2/1)dBi=8.01. Then, the power density limit is 8-(8.01-6) = 5.99. For power measurements, Array Gain = 0 dB (N ANT ≤ 4), so the Directional gain=5. (2) For Beamforming function, Beamforming Gain: 3 dB So Directional gain = 3+5=8. Then, the output power limit is 30-(8-6) = 28. For 5G: Ant. Brand Model Name Antenna Type Connector Gain (dBi) 1 N/A N/A Dipole N/A 5 2 N/A N/A Dipole N/A 5 3 N/A N/A Dipole N/A 5 4 N/A N/A Dipole N/A 5 Note: This EUT supports CDD, and all antennas have the same gain, (1) For Non-Beamforming function, Directional gain = G ANT +Array Gain, where Array Gain is as follows: For power spectral density measurements, N ANT = 4, N SS = 1. So Directional gain = G ANT + Array Gain = G ANT + 10 log (N ANT / N SS ) dB =5+10log(4/1)dBi =11.02. Then, the UNII-1 power spectral density limit is 17-(11.02-6)=11.98. the UNII-3 power spectral density limit is 30-(11.02-6)=24.98. For power measurements, Array Gain = 0 dB (N ANT ≤ 4), so the Directional gain=5. (2) For Beamforming function, Beamforming Gain: 6.00 dB. So Directional gain = 5+6=11. Then, the UNII-1 and UNII-3 output power limit is 30-(11-6) = 25. Report No.: BTL-FCCP-3-1912C172 Page 4 of 5 The worst case for 3TX as follow: For 2.4G: For Non Beamforming: Operating Mode TX Mode 1TX 2TX IEEE 802.11b V (Ant. 1) - IEEE 802.11g V (Ant. 1) - IEEE 802.11n(HT20) - V (Ant. 1+ Ant. 2) IEEE 802.11n(HT40) - V (Ant. 1+ Ant. 2) For Beamforming: Operating Mode TX Mode 2TX IEEE 802.11n(HT20) V (Ant. 1+ Ant. 2) IEEE 802.11n(HT40) V (Ant. 1+ Ant. 2) For 5G: For Non Beamforming: Operating Mode TX Mode 1TX 4TX IEEE 802.11a V (Ant. 3) - IEEE 802.11n (HT20) - V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11n (HT40) - V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11ac(VHT20) - V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11ac(VHT40) - V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11ac(VHT80) - V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) For Beamforming: Operating Mode TX Mode 4TX IEEE 802.11n (HT20) V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11n (HT40) V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11ac(VHT20) V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11ac(VHT40) V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) IEEE 802.11ac(VHT80) V (Ant. 1+Ant. 2+Ant. 3+Ant. 4) Report No.: BTL-FCCP-3-1912C172 Page 5 of 5 2. TEST RESULTS For 2.4GHz_Non Beamforming: Directional Gain (dBi) Directional Gain (numeric) Max. AVG Output Power (dBm) Max. Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Test Result 5 3.1623 22.52 178.6488 0.11245 1 Complies For 2.4GHz_ Beamforming: Directional Gain (dBi) Directional Gain (numeric) Max. AVG Output Power (dBm) Max. Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Test Result 8 6.3096 18.30 67.6083 0.08491 1 Complies For 5GHz UNII-1_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 5 3.1623 23.95 248.3133 0.15630 1 Complies For 5GHz UNII-1_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 11 12.5893 23.76 237.6840 0.59559 1 Complies For 5GHz UNII-3_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 5 3.1623 25.48 353.1832 0.22231 1 Complies For 5GHz UNII-3_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 11 12.5893 24.80 301.9952 0.75675 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 0.11245 0.75675 0.8692 1 Complies Note: The calculated distanc…

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Test Report

Report No.: BTL-FCCP-1-1912C172 Page 1 of 117 FCC Radio Test Report FCC ID: V7TAC23 This report concerns: Original Grant Project No. : 1912C172 Equipment : AC2100 Dual Band Gigabit WiFi Router Brand Name : Tenda Test Model : AC23 Series Model : N/A Applicant : SHENZHEN TENDA TECHNOLOGY CO.,LTD Address : 6-8 Floor, Tower E3, No. 1001, Zhongshanyuan Road, Nanshan District, Shenzhen, China. 518052 Manufacturer : SHENZHEN TENDA TECHNOLOGY CO.,LTD Address : 6-8 Floor, Tower E3, No. 1001, Zhongshanyuan Road, Nanshan District, Shenzhen, China. 518052 Date of Receipt : Dec. 25, 2019 Date of Test : Dec. 27, 2019 ~ Feb. 20, 2020 Issued Date : Mar. 06, 2020 Report Version : R00 Test Sample : Engineering Sample No.: DG2019122551 for conducted, DG2019122550 for radiated. Standard(s) : FCC Part15, Subpart C (15.247) ANSI C63.10-2013 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 : Chay Cai Approved by : Ethan Ma Add: No.3, Jinshagang 1st Road, Shixia, Dalang Town,Dongguan, Guangdong, China. Tel: +86-769-8318-3000 Web: www.newbtl.com Report No.: BTL-FCCP-1-1912C172 Page 2 of 117 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-1-1912C172 Page 3 of 117 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 8 2 . GENERAL INFORMATION 9 2.1 GENERAL DESCRIPTION OF EUT 9 2.2 DESCRIPTION OF TEST MODES 11 2.3 PARAMETERS OF TEST SOFTWARE 13 2.4 DUTY CYCLE 14 2.5 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 15 2.6 SUPPORT UNITS 15 3 . AC POWER LINE CONDUCTED EMISSIONS TEST 16 3.1 LIMIT 16 3.2 TEST PROCEDURE 16 3.3 DEVIATION FROM TEST STANDARD 16 3.4 TEST SETUP 17 3.5 EUT OPERATION CONDITIONS 17 3.6 TEST RESULTS 17 4 . RADIATED EMISSIONS TEST 18 4.1 LIMIT 18 4.2 TEST PROCEDURE 19 4.3 DEVIATION FROM TEST STANDARD 19 4.4 TEST SETUP 20 4.5 EUT OPERATION CONDITIONS 21 4.6 TEST RESULTS - 9 KHZ TO 30 MHZ 21 4.7 TEST RESULTS - 30 MHZ TO 1000 MHZ 21 4.8 TEST RESULTS - ABOVE 1000 MHZ 21 5 . BANDWIDTH TEST 22 5.1 LIMIT 22 5.2 TEST PROCEDURE 22 5.3 DEVIATION FROM STANDARD 22 5.4 TEST SETUP 22 Report No.: BTL-FCCP-1-1912C172 Page 4 of 117 Table of Contents Page 5.5 EUT OPERATION CONDITIONS 22 5.6 TEST RESULTS 22 6 . MAXIMUM OUTPUT POWER & AVG OUTPUT POWER TEST 23 6.1 LIMIT 23 6.2 TEST PROCEDURE 23 6.3 DEVIATION FROM STANDARD 23 6.4 TEST SETUP 23 6.5 EUT OPERATION CONDITIONS 23 6.6 TEST RESULTS 23 7 . CONDUCTED SPURIOUS EMISSIONS 24 7.1 LIMIT 24 7.2 TEST PROCEDURE 24 7.3 DEVIATION FROM STANDARD 24 7.4 TEST SETUP 24 7.5 EUT OPERATION CONDITIONS 24 7.6 TEST RESULTS 24 8 . POWER SPECTRAL DENSITY TEST 25 8.1 LIMIT 25 8.2 TEST PROCEDURE 25 8.3 DEVIATION FROM STANDARD 25 8.4 TEST SETUP 25 8.5 EUT OPERATION CONDITIONS 25 8.6 TEST RESULTS 25 9 . MEASUREMENT INSTRUMENTS LIST 26 10 . EUT TEST PHOTO 28 APPENDIX A - AC POWER LINE CONDUCTED EMISSIONS 32 APPENDIX B - RADIATED EMISSION - 9 KHZ TO 30 MHZ 37 APPENDIX C - RADIATED EMISSION - 30 MHZ TO 1000 MHZ 42 APPENDIX D - RADIATED EMISSION- ABOVE 1000 MHZ 45 APPENDIX E - BANDWIDTH 96 APPENDIX F - MAXIMUM OUTPUT POWER & 101 AVG OUTPOU POWER 101 Report No.: BTL-FCCP-1-1912C172 Page 5 of 117 Table of Contents Page APPENDIX G - CONDUCTED SPURIOUS EMISSIONS 107 APPENDIX H - POWER SPECTRAL DENSITY 114 Report No.: BTL-FCCP-1-1912C172 Page 6 of 117 REPORT ISSUED HISTORY Report Version Description Issued Date R00 Original Issue. Mar. 06, 2020 Report No.: BTL-FCCP-1-1912C172 Page 7 of 117 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 ------ 15.247(b)(3) Maximum Output Power & AVG output power APPENDIX F PASS ------ 15.247(d) Conducted Spurious Emissions APPENDIX G PASS ---…

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Contact Information

Applicant

Shen Yue(Engineer)
[email protected]86-755-27657098Fax: 866-755-27657178

Test Firm

BTL Inc.Sophia Huang
[email protected]+86-769-83183000

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz986.30 mW
Confidentiality
Long Term
Grant Notes
Output Power listed is peak conducted. This device supports 802.11b, 802.11g and 802.11n with a 20 MHz and 40 MHz bandwidth mode. Device operates with specific antennas in 2x3 MIMO configurations as described in this filing. RF exposure compliance is addressed for 1.1310 and 2.1091 MPE limits. End Users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

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Equipment Class

DTS - Digital Transmission System
3MP Security Pan/Tilt Camera - FCC ID V7TCP3P1 - SHENZHEN TENDA TECHNOLOGY CO., LTD.
V7TCP3P1

3MP Security Pan/Tilt Camera

Jun 30, 2026

Equipment Class

DTS - Digital Transmission System