
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Additional documentation is also available on the D-Link website DAP-3711 Quick Installation Guide 5km Long Range 802.11ac Wireless Bridge Contents English 1 Quick Installation Guide 1 ENGLISH Hardware Overview LED Indicators Figure 1: DAP-3711 LEDs #LEDDescription 1Power Power indicator. Green light indicates the power is on. 2LAN Network connection light. A steady green light indicates the LAN port of the PoE power supply is connected to a network device. A flashing green light indicates data is being transmitted. 3WLAN Wireless indicator. Lights up to indicate wireless activation. Flashes when data is being transmitted. 4 Signal Strength Signal strength indicator. A red light indicates a weak signal. Red and yellow together indicates a medium signal. Yellow, red and green together indicates a strong signal. Table 1: LED Descriptions Before You Begin This installation guide provides basic instructions for installing the DAP-3711 on your network. For additional information about how to use the access point, please see the User Manual from the D-Link support website. Package Contents This DAP-3711 should include the following items: • 5km Long Range 802.11ac Wireless Bridge • PoE injector • Power cord • Mounting ties • Quick Start Guide If any of the above items are damaged or missing, please contact your local D-Link reseller. Note: Using a power supply with a different voltage than the one recommended for the device will cause damage and void the warranty for this product. System Requirements • Microsoft Windows®, or a Linux-based operating system • An available Ethernet port • Microsoft Edge, Firefox 60.0, or Chrome 68.0.3440.106 1234 2 Quick Installation Guide ENGLISH Cable Requirements Use a CAT 5 cable with an even sheath. The Ethernet ports on the DAP-3711 access point cannot accept a CAT 5 cable that has an uneven sheath; the RJ-45 connector on the cable will not fit properly into the receptacle on the access point. Configuring the Access Point To set up and manage the DAP-3711, use one of the following methods. Connecting Through a Computer 1. Use an Ethernet cable to connect the DAP-3711 to the management computer. 2. Ensure the computer is configured with a static IP address in the 192.168.0.2/255 subnet. 3. Launch a web browser. Enter 192.168.0.50 in the address field of your browser. 4. Log in to the administration user interface. The default login information is: Username: admin Password: admin Figure 3: Direct Connection Interface Connectors Figure 2: DAP-3711 Interface #FeatureDescription 1 Reset Button Resets the device to its factory settings. 2LAN Port Uses a standard Ethernet cable to connect to devices such as computers and switches. 3PoE Port Uses a standard Ethernet cable to connect the device to a PoE power source such as a PoE switch or PoE injector. Table 2: Interface Descriptions Hardware Installation Powering the Access Point To power the DAP-3711, use a standard Ethernet cable to connect the PoE port on the DAP-3711 to a PoE power source device such as a PoE switch or the included PoE injector. DAP-3711 Computer 1 2 3 Quick Installation Guide 3 ENGLISH Connecting Through a Switch or Router: 1. Use an Ethernet cable to connect the DAP-3711 to the switch or router the management computer is connected to. 2. If the access point did not acquire an IP address from a DHCP server on the network, enter the default IP address of the access point (http://192.168.0.50) in the address field of your browser. If the access point is automatically assigned an IP address by a DHCP server on your network, enter the IP address assigned to the access point into the web browser. 3. Log in to the administration user interface. The default login information is: Username: admin Password: admin Figure 4: Indirect Connection Mounting the Device Installation Recommendations If you plan to install the DAP-3711 on a pole, orient the front of the access point (the side without the LEDs) toward the intended coverage area. The radio antennas transmit through the front of the access point but not through the reverse side (where the bracket is). Be sure to install the device at a height that ensures that the alignment between the devices is visible and there is no obstruction in the middle. Warning: The DAP-3711 is designed to receive PoE power only from an 802.3at compliant source. Connecting an access point to a PoE device that is not approved by D-Link can damage the equipment. Mounting on a Pole 1. Connect an Ethernet cable to the LAN port on the DAP-3711. 2. Place the DAP-3711 against the pole where you want it to be positioned. Figure 5: Mounting the Device 3. Wrap the metal mounting ties around the pole and thread them through the holes on the DAP-3711. Figure 6: Completed Installation DAP-3711 Switch or router Computer 4 Quick Installation Guide ENGLISH RF Frequency Requirements This device is for outdoor use only. High power radars are allocated as primary users of the 5150 ~ 5250 MHz, 5725 ~ 5850 MHz bands. These radar stations can cause interference with and/ or damage PoE Adapter this device. This is fixed point-to-point device. TECHNICAL SUPPORTdlink.com/support FCC Statement This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. FCC Radiation Exposure Statement This device complies with FCC radiation exposure limits set forth for an uncontrolled environment and it also complies with …
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RF_160, Issue 02 Declaration of Authorization We Name: D-Link Corporation Address: 17595 Mt. Herrmann City: Fountain Valley, California Country: United States Declare that: Name Representative of agent: Ms. Riley Wei Agent Company name: BTL Inc. Address: No. 29, Jintang Road, Tangzhen Industry Park Pudong New Area City: Shanghai Country: China is authorized to apply for Certification and signing related documents of the following product(s), including 731 form(s): Product description: 5km Long Range 802.11ac Wireless Bridge Type designation: DAP-3711 Trademark: D-Link FCC ID: KA2AP3711A1 on our behalf. Date: 2020-05-12 City: Fountain Valley, California Notes: (1): Required for FCC application (2): For FCC it must be the Grantee Code “owner” or the authorized agent.
The test data, data evaluation, and equipment configuration contained in our test report(s) above was (were) obtained utilizing the test procedures, test instruments, test sites that has been accredited according to the ISO/IEC 17025 quality assessment standard and technical standard(s). The test data contained in the referenced test report relate only to the EUT sample and item(s) tested. Ryan Wang Authorized Signatory BTL INC. No. 29, Jintang Road, Tangzhen Industry Park, Pudong New Area, Shanghai 201210,China TEL: +86-021-61765666 TECHNICAL COMPLIANCE STATEMENT This is to certify that the product listed in follows was (were) tested in the BTL EMC Laboratory to comply with below FCC official limits. Equipment 5km Long Range 802.11ac Wireless Bridge Brand Name D-Link Corporation Model Name DAP-3711 Applicant D-Link Corporation Address 17595 Mt. Herrmann, Fountain Valley, California United State 92708 Standard(s) FCC Part 15, Subpart B Report(s) BTL-FCCE-1-2004H005
D-link Corporation Ad Hoc Mode Declaration Date: 2020-05-12 We, the undersigned company Company Name: D-Link Corporation Address: 17595 Mt. Herrmann, Fountain Valley, California United States 92708 Declare that: Product description: 5km Long Range 802.11ac Wireless Bridge Type designation: DAP-3711 Brand: D-Link FCC ID: KA2AP3711A1 1. The EUT doesn’t have Ad Hoc Mode function on “non-US frequencies”. 802.11a/n Ad Hoc mode should not be supported even on US DFS frequencies (5.25 ~5.35GHz/5.47 ~5.725GHz). 2. In addition, the frequency selection feature is disabled by firmware for devices marketed to the US. The product meets all other requirements specified in Part 15E Section 15.407 and no configuration controls are provided to change the frequency of operations outside the grant of certification for US operation. 3. Only channels 1~11 will be used in USA. Country code selection is disabled. If you have any questions regarding the authorization, please do not hesitate to contact us, thank you~ Sincerely,
Project No.: 2004H005 Page 1 of 8 ATTACHMENT PHOTOGRAPHS OF EUT Project No.: 2004H005 Page 2 of 8 Project No.: 2004H005 Page 3 of 8
Label Label location
Project No.: 2004H005 Page 3 of 8 Project No.: 2004H005 Page 4 of 8 Project No.: 2004H005 Page 5 of 8 Project No.: 2004H005 Page 6 of 8 Antenna Project No.: 2004H005 Page 7 of 8 Project No.: 2004H005 Page 8 of 8
Report No.: BTL-FCCP-2-2004H005 Page 1 of 4 FCC RF EXPOSURE REPORT FCC ID: KA2AP3711A1 Project No. : 2004H005 Equipment : 5km Long Range 802.11ac Wireless Bridge Brand Name : D-Link Corporation Test Model : DAP-3711 Series Model : N/A Applicant : D-Link Corporation Address : 17595 Mt. Herrmann, Fountain Valley, California United State 92708 Manufacturer : D-Link Corporation Address : No.289, SinHu 3rd Rd.,Neihi District Taiper City 114, Taiwan, R.O.C Date of Receipt : Apr. 17, 2020 Date of Test : May 04, 2020 ~ May 14, 2020 Issued Date : Jul. 21, 2020 Report Version : R01 Test Sample : Engineering Sample No.: SH202004176/SH202004177/SH2020041715 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 : Krain Wu Approved by : Ryan Wang Add: No. 29, Jintang Road, Tangzhen Industry Park, Pudong New Area, Shanghai 201210,China TEL: +86-021-61765666 Web: www.newbtl.com Report No.: BTL-FCCP-2-2004H005 Page 2 of 4 REPORT ISSUED HISTORY Report Version Description Issued Date R00 Original Issue Jun. 15, 2020 R01 Update the power of Band 1 and information description of antenna. Jul. 21, 2020 Report No.: BTL-FCCP-2-2004H005 Page 3 of 4 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 Ant. Brand Model Name Antenna Type Connector Gain (dBi) 1 N/A N/A PCB N/A 15 2 N/A N/A PCB N/A 15 Note: (1) Antenna Gain=15 dBi. Transmit signals of this EUT are uncorrelated with each other, so Directional gain = G Ant. , that is Directional gain=15; So, the UNII-1,UNII-3 output power limit is 30-15+6=21. The UNII-1 power spectral density limit is 17-15+6=8, the UNII-3 power spectral density limit is 30-15+6=21. Report No.: BTL-FCCP-2-2004H005 Page 4 of 4 2. TEST RESULTS Antenna Gain (dBi) Antenna 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 15 31.62280 18 63.0957 0.39690 1 Complies Note: The calculated distance is 20 cm. Output power including tune up tolerance. End of Test Report
Report No.: BTL-FCCP-1-2004H005 Page 1 of 193 FCC Radio Test Report FCC ID: KA2AP3711A1 This report concerns: Original Grant Project No. Equipment Brand Name Test Model Series Model Applicant Address Manufacturer Address Date of Receipt Date of Test Issued Date Report Version Test Sample Standard(s) : 2004H005 : 5km Long Range 802.11ac Wireless Bridge : D-Link Corporation : DAP-3711 : N/A : D-Link Corporation : 17595 Mt. Herrmann, Fountain Valley, California United State 92708 : D-Link Corporation : No.289, SinHu 3rd Rd.,Neihi District Taiper City 114, Taiwan, R.O.C : Apr. 17, 2020 : May 04, 2020 ~ May 14, 2020 : Aug. 07, 2020 : R03 : Engineering Sample No.: SH202004176/SH202004177/SH2020041715 : FCC Part15, Subpart E(15.407) ANSI C63.10-2013 FCC KDB 789033 D02 General UNII Test Procedures New Rules v02r01 FCC KDB 662911 D01 Multiple Transmitter Output v02r01 The above equipment has been tested and found compliance with the requirement of the relative standards by BTL Inc. Prepared by : Krain Wu Approved by : Ryan Wang Add: No. 29, Jintang Road, Tangzhen Industry Park, Pudong New Area, Shanghai 201210,China TEL: +86-021-61765666 Web: www.newbtl.com Report No.: BTL-FCCP-1-2004H005 Page 2 of 193 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 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-1-2004H005 Page 3 of 193 Table of Contents Page REPORT ISSUED HISTORY 5 1 . SUMMARY OF TEST RESULTS 6 1.1 TEST FACILITY 7 1.2 MEASUREMENT UNCERTAINTY 7 1.3 TEST ENVIRONMENT CONDITIONS 7 2 . GENERAL INFORMATION 8 2.1 GENERAL DESCRIPTION OF EUT 8 2.2 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 16 2.6 SUPPORT UNITS 16 3 . AC POWER LINE CONDUCTED EMISSIONS TEST 17 3.1 LIMIT 17 3.2 TEST PROCEDURE 17 3.3 DEVIATION FROM TEST STANDARD 17 3.4 TEST SETUP 18 3.5 EUT OPERATION CONDITIONS 18 3.6 TEST RESULTS 18 4 . RADIATED EMISSIONS TEST 19 4.1 LIMIT 19 4.2 TEST PROCEDURE 20 4.3 DEVIATION FROM TEST STANDARD 20 4.4 TEST SETUP 21 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 TEST PROCEDURE 24 5.4 TEST SETUP 25 Report No.: BTL-FCCP-1-2004H005 Page 4 of 193 Table of Contents Page 5.5 EUT OPERATION CONDITIONS 25 5.6 TEST RESULTS 25 6 . MAXIMUM OUTPUT POWER TEST 26 6.1 LIMIT 26 6.2 TEST PROCEDURE 26 6.3 DEVIATION FROM STANDARD 26 6.4 TEST SETUP 26 6.5 EUT OPERATION CONDITIONS 26 6.6 TEST RESULTS 26 7 . POWER SPECTRAL DENSITY TEST 27 7.1 LIMIT 27 7.2 TEST PROCEDURE 27 7.3 DEVIATION FROM STANDARD 27 7.4 TEST SETUP 28 7.5 EUT OPERATION CONDITIONS 28 7.6 TEST RESULTS 28 8 . MEASUREMENT INSTRUMENTS LIST 29 9 . EUT TEST PHOTOS 31 APPENDIX A - AC POWER LINE CONDUCTED EMISSIONS 34 APPENDIX B - RADIATED EMISSION - 9 KHZ TO 30 MHZ 37 APPENDIX C - RADIATED EMISSION - 30 MHZ TO 1 GHZ 38 APPENDIX D - RADIATED EMISSION - ABOVE 1000 MHZ 41 APPENDIX E - BANDWIDTH 154 APPENDIX F - CONDUCTED OUTPUT POWER 165 APPENDIX G - POWER SPECTRAL DENSITY 181 Report No.: BTL-FCCP-1-2004H005 Page 5 of 193 REPORT ISSUED HISTORY Report Version Description Issued Date R00 Original Issue. Jun. 15, 2020 R01 Correct the limit of output power & power spectral density. Jun. 29, 2020 R02 Update the data of Band 1. Jul. 21, 2020 R03 Revised report to address TCB’s comments. Aug. 07, 2020 Report No.: BTL-FCCP-1-2004H005 Page 6 of 193 1. SUMMARY OF TEST RESULTS Test procedures according to the technical standard(s): FCC Part15, Subpart E(15.407) Standard(s) Section Test Item Test Result Judgement Remark 15.207 15.407(b) AC Power Line Conducted Emissions APPENDIX A PASS ------ 15.407(b) 15.205(a) 15.209(a) Radiated Emissions APPENDIX B APPENDIX C APPENDIX D PASS ------ 15.407(a) 15.407(e) Spectrum Bandwidth APPENDIX E PASS ------ 15.407(a) Maximum Output Power APPENDIX F PASS ------ 15.407(a) Power Spectral Density APPENDIX G PASS ------ 15.407(g) Frequency Stability APPENDIX H PASS ------ 15.203 Antenna Requirements ------ PASS NOTE (3) 15.407(c) Automatically Discontinue Transmission ------ PASS NOT…
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Report No.: BTL-FCCP-1-2004H005 Page 101 of 193 Orthogonal Axis X Test Mode UNII-3_TX N (HT40) Mode 5755 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 102 of 193 Orthogonal Axis X Test Mode UNII-3_TX N (HT40) Mode 5795 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 103 of 193 Orthogonal Axis X Test Mode UNII-3_TX N (HT40) Mode 5795 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 104 of 193 Orthogonal Axis X Test Mode UNII-3_TX N (HT40) Mode 5795 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 105 of 193 Orthogonal Axis X Test Mode UNII-3_TX N (HT40) Mode 5795 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 106 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5180 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 107 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5180 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 108 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5180 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 109 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5180 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 110 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5200 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 111 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5200 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 112 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5200 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 113 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5200 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 114 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5240 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 115 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5240 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 116 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5240 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 117 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT20) Mode 5240 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 118 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5190 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 119 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5190 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 120 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5190 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 121 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5190 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 122 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5230 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 123 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5230 MHz Vertical REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 124 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5230 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 125 of 193 Orthogonal Axis X Test Mode UNII-1_TX AC (VHT40) Mode 5230 MHz Horizontal REMARKS: (1) Measurement Value = Reading Level + Correct Factor. (2) Margin Level = Measurement Value - Limit Value. Report No.: BTL-FCCP-1-2004H005 Page 126 of 193 Orthogonal …
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Report No.: BTL-FCCP-1-2004H005 Page 31 of 190 9. EUT TEST PHOTOS Conducted Emissions Test Photos Report No.: BTL-FCCP-1-2004H005 Page 32 of 190 Radiated Emissions Test Photos 30 MHz to 1 GHz Report No.: BTL-FCCP-1-2004H005 Page 33 of 190 Radiated Emissions Test Photos Above 1 GHz
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15E | 5.75 GHz - 5.83 GHz | 62.50 mW |

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