
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
QUICK INSTALLATION GUIDE Quick Installation Guide Copyright © 2021 RabbitRun Technologies Inc. Q120 RRT-200-LTE The RRT-200 is an SD-WAN Router for Small Office Home Office (SOHO) communications: •5xGbe (2xWAN, 3xLAN) •802.11a/b/g/n/ac •500 Mbps Internet •Optional 4G LTE Built-in Modem: oMax 150 Mbps Downloads & 50 Mbps Uploads oNorth American Coverage Note: We recommend providing at least 3 inches clearance on each side and the top of the device. RRT-200 Other Package Contents Ethernet Patch Cable (3ft) AC Power Adaptor SIM Adapter Kit 2 x 5GHz Antennas 2 x 4GHz Antennas Dual Link 4GLTE (WAN1 + 4GLTE SIM) Connect ISP1 Modem to WAN1 Port and Insert SIM: Note: Insert and removal may require the provided tool. Use the rounded edge to gently push the SIM in until the mechanism clicks. •Insert SIM (Some devices may be shipped with prepaid SIM) •Gently insert SIM until the SIM slot latch clicks (tool provided) •Connect your ISP Modem to WAN1 (LAN side of Modem to WAN1 port) •Connect the AC Power Adaptor •Device requires portal activation. (consult your reseller) FCCCaution Thisdevicecomplieswithpart15oftheFCCRules.Operationissubjecttothe followingtwoconditions:(1)Thisdevicemaynotcauseharmfulinterference,and(2) thisdevicemustacceptanyinterferencereceived,includinginterferencethatmay causeundesiredoperation. AnyChangesormodificationsnotexpresslyapprovedbythepartyresponsiblefor compliancecouldvoidtheuser'sauthoritytooperatetheequipment. N ote:ThisequipmenthasbeentestedandfoundtocomplywiththelimitsforaClass Bdigitaldevice,pursuanttopart15oftheFCCRules.Theselimitsaredesignedto providereasonableprotectionagainstharmfulinterferenceinaresidentialinstallation. Thisequipmentgeneratesusesandcanradiateradiofrequencyenergyand,ifnot installedandusedinaccordancewiththeinstructions,maycauseharmfulinterference toradiocommunications.However,thereisnoguaranteethatinterferencewillnot occurinaparticularinstallation.Ifthisequipmentdoescauseharmfulinterferenceto radioortelevisionreception,whichcanbedeterminedbyturningtheequipmentoff andon,theuserisencouragedtotrytocorrecttheinterferencebyoneormoreofthe followingmeasures: -Reorientorrelocatethereceivingantenna. -Increasetheseparationbetweentheequipmentandreceiver. -Connecttheequipmentintoanoutletonacircuitdifferentfromthattowhichthe receiverisconnected. -C onsultthedealeroranexperiencedradio/TVtechnicianforhelp. This equipmentcomplieswithFCC radiation exposure limits setforth foran uncontrolledenvironment.This equipment should beinstalledand operatedwith minimumdistance20cm betweentheradiator& your body. The use of the 5180– 5240 MHz band is restricted to indoor use only.
FCC Software Configuration Control Declaration Rev1.1 RabbitRun Technologies USA Inc. FCC Software Configuration Control Declaration Date: 2021/07/22 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Attn: OET Dept. Product/ Model Number: Regarding FCC Country Code Selection guidelines identified in KDB 594280 D01 Software Configuration Control v02r01. “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: Pat Saavedra Date: 2021/07/22 Title: Manager Signatureof applicant:
RabbitRun Technologies USA Inc. Agent Authorization Company: RabbitRun Technologies USA Inc. Address: 1211 1st Avenue North Suite 202, St. Petersburg Florida 33705 Product Name: Wireless router Model Number(s): RRT-200-LTE FCC ID: 2A2OKRRT-200-LTE 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: 2021/07/22 Name: Pat Saavedra Title: Manager Company: RabbitRun Technologies USA Inc.
RabbitRun Technologies USA Inc. Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 2021/07/22 Subject; Request for Confidentiality FCC ID: 2A2OKRRT-200-LTE 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); User Manual For 45 days, pursuant to Public Notice DA 04-1705. OR For 180 days pursuantto 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: Pat Saavedra Title: Manager
Size:40*20mm Label Location Model: RRT-200-LTE FCC ID: 2A2OKRRT-200-LTE Contain FCC ID: XMR201808EC25AF 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.
Internal Photos 2.4g Antenna B 2.4g Antenna A
FCC §15.247 (i), §2.1091 – RF Exposure FCC ID: 2A2OKRRT-200-LTE Applied procedures / limit According to FCC §15.247(i) and §1.1307(b)(1), systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission’s guidelines. Limits for Occupational / Controlled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/ cm 2 ) Averaging Time |E| 2 ,|H| 2 or S (minutes) 0.3-3.0 614 1.63 (100)* 6 3.0-30 1842 / f 4.89 / f (900 / f)* 6 30-300 61.4 0.163 1.0 6 300-1500 F/300 6 1500-100,000 5 6 Note: ƒ is frequency in MHz * = Power density limit is applicable at frequencies greater than 100 MHz Limits for General Population / Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/ cm 2 ) Averaging Time |E| 2 ,|H| 2 or S (minutes) 0.3-1.34 614 1.63 (100)* 30 1.34-30 824/f 2.19/f (180/f)* 30 30-300 27.5 0.073 0.2 30 300-1500 F/1500 30 1500-100,000 1.0 30 Note: f = frequency in MHz * = Plane-wave equivalent power density MPE PREDICTION Predication of MPE limit at a given distance, Equation from OET Bulletin 65, Edition 97-01 Where: S = power density P = power input to 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, R=0.20m = 3.1416 TEST RESULTS LTE MPE Refer to FCC ID: XMR201808EC25AF Report Number: R1806A0301-R1V1, R1806A0301-R2V1, R1806A0301-R3V1, R1806A0301- R4V1 Tune up Produce power Maximu m peak output power (dBm) Output power to antenna (mW) Antenna Gain (numeric) Power Density (S) (mW/ cm2) Limit (mW/ cm2) Result 802.11 n20 19±1 20 100 1.26 0.02507 1 Pass 802.11 U- NII-1 19±1 20 100 1.58 0.03144 1 Pass 802.11 U-NII-3 19±1 20 100 1.58 0.03144 1 Pass Tune up Produce power Maximu m peak output power (dBm) Output power to antenna (mW) Antenna Gain (numeric) Power Density (S) (mW/ cm2) Limit (mW/ cm2) Result WCDMA II 25±1 26 398.11 2.51 0.19882 1 Pass WCDMA IV 25±1 26 398.11 2.51 0.19882 1 Pass WCDMA V 23±1 24 251.19 2.51 0.12545 0.55 Pass LTE Band 2 25±1 26 398.11 2.51 0.19882 1 Pass LTE Band 4 26±1 27 501.19 2.51 0.25030 1 Pass LTE Band 5 23±1 24 251.19 2.51 0.12545 0.55 Pass LTE Band 12 20±1 21 125.89 2.51 0.06287 0.47 Pass LTE Band 13 23±1 24 251.19 2.51 0.12545 0.52 Pass LTE Band 14 23±1 24 251.19 2.51 0.12545 0.53 Pass LTE Band 66 27±1 28 630.96 2.51 0.31510 1 Pass LTE Band 71 22±1 23 199.53 2.51 0.09965 0.45 Pass For the Max simultaneous transmission Note: Simultaneous Transmission RF Exposure Evaluation limit is Take the minimum value of the limit. So After calculation, it can meet the requirements Evaluation mode Power Density/Limit Sum of the MPE rate Limit Result 802.11 b/g/n 0.02507 0.05651 1 Pass 802.11 U-NII-1 0.03144 Evaluation mode Power Density/Limit Sum of the MPE rate Limit Result 802.11 b/g/n 0.02507 0.37161 1 Pass 802.11 U-NII-1 0.03144 LTE Band 66 0.31510
No.:BCTC/RF-EMC-005 Page: 1 of 113 Edition:A.3 TEST REPORT Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC2105136964-2E Applicant: RabbitRun Technologies USA Inc. Product Name: Wireless router Model/Type reference: RRT-200-LTE Tested Date: 2021-06-03 to 2021-06-23 Issued Date: 2021-07-16 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 2 of 113 Edition:A.3 FCC ID: 2A2OKRRT-200-LTE The test report is effective only with both signature and specialized stamp.This result(s) shown in this report refer only to the sample(s) tested. Without written approval of Shenzhen BCTC Testing Co., Ltd, this report can’t be reproduced except in full.The tested sample(s) and the sample information are provided by the client. Product Name: Wireless router Trademark: N/A Model/Type reference: RRT-200-LTE Prepared For: RabbitRun Technologies USA Inc. Address: 1211 1st Avenue North Suite 202, St. Petersburg Florida 33705 Manufacturer: SHENZHEN ZHIBOTONG ELECTRONICS CO., LTD. Address: Floor 4, Bldg. A2, Hedian Industrial Park, NO.9 Shijing Rd, Guanlan, Longhua District, ShenZhen, China Prepared By: Shenzhen BCTC Testing Co., Ltd. Address: 1-2/F., Building B, Pengzhou Industrial Park, No.158, Fuyuan 1st Road, Tangwei, Fuhai Subdistrict, Bao'an District, Shenzhen, Guangdong, China Sample Received Date: 2021-05-24 Sample tested Date: 2021-06-03 to 2021-06-23 Issue Date: 2021-07-16 Report No.: BCTC2105136964-2E Test Standards FCC Part15 15.407 ANSI C63.10-2013 KDB 662911 D01 v02r01 KDB 789033 D02 v02r01 Test Results PASS Tested by: Approved by: Eric Yang/Project Handler Zero Zhou/Reviewer Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 3 of 113 Edition:A.3 TABLE OF CONTENT Test Report Declaration Page 1. VERSION ............................................................ 5 2. TEST SUMMARY ..................................................... 6 3. MEASUREMENT UNCERTAINTY ....................................... 7 4. PRODUCT INFORMATION AND TEST SETUP............................ 8 4.1 Product Information ..................................................... 8 4.2 Test Setup Configuration ................................................ 9 4.3 Support Equipment ..................................................... 9 4.4 Channel List .......................................................... 10 4.5 Test Mode ............................................................ 11 4.6 table of parameters of text software setting ................................ 12 4.7 Antenna .............................................................. 12 5. TEST FACILITY AND TEST INSTRUMENT USED ........................ 13 5.1 Test Facility ........................................................... 13 5.2 Test Instrument Used .................................................. 13 6. CONDUCTED EMISSIONS ............................................ 15 6.1 Block Diagram Of Test Setup ............................................ 15 6.2 Limit ................................................................. 15 6.3 Test procedure ........................................................ 15 6.4 EUT operating Conditions ............................................... 15 6.5 Test Result ........................................................... 16 7. RADIATED EMISSIONS .............................................. 18 7.1 Block Diagram Of Test Setup ............................................ 18 7.2 Limit ................................................................. 19 7.3 Test procedure ........................................................ 20 7.4 EUT operating Conditions ............................................... 21 7.5 Test Result ........................................................... 22 8. POWER SPECTRAL DENSITY TEST ................................... 37 8.1 Block Diagram Of Test Setup ............................................ 37 8.2 Limit ................................................................. 37 8.3 Test procedure ........................................................ 38 8.4 EUT operating Conditions ............................................... 38 8.5 Test Result ........................................................... 39 9. 26DB & 6DB & 99% EMISSION BANDWIDTH ........................... 47 9.1 Block Diagram Of Test Setup ............................................ 47 9.2 Limit ................................................................. 47 9.3 Test procedure ........................................................ 47 9.4 EUT operating Conditions ............................................... 48 9.5 Test Result ........................................................... 48 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 4 of 113 Edition:A.3 10. MAXIMUM CONDUCTED OUTPUT POWER ............................. 69 10.1 Block Diagram Of Test Setup .......................................... 69 10.2 Limit ................................................................ 69 10.3 Test procedure ....................................................... 69 10.4 EUT operating Conditions ............................................. 70 10.5 Test Result .......................................................... 71 11. OUT OF BAND EMISSIONS ........................................... 73 11.1 Block Diagram Of Test Setup .......................................... 73 11.2 Limit ................................................................ 73 11.3 Test procedure ....................................................... 73 11.4 EUT operating Conditions ............................................. 73 11.5 Test Result .......................................................... 73 12. SPURIOUS RF CONDUCTED EMISSIONS .............................. 86 12.1 Block Diagram Of Test Setup .......................................... 86 12.2 Limit ................................................................ 86 12.3 Test procedure ....................................................... 86 12.4 Test Result ........…
Text truncated - open the document above for the full version.
Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 50 of 113 Edition:A.3 Test plot (802.11a) 26dB&99%Bandwidth plot on channel 36 (802.11 n20) 26dB&99%Bandwidth plot on channel 36 (802.11a) 26dB&99%Bandwidth plot on channel 40 (802.11 n20) 26dB&99%Bandwidth plot on channel 40 (802.11a) 26dB&99%Bandwidth plot on channel 48 (802.11 n20) 26dB&99%Bandwidth plot on channel 48 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 51 of 113 Edition:A.3 Test plot (802.11 n40) 26dB&99%Bandwidth plot on channel 38 (802.11 AC20) 26dB&99%Bandwidth plot on channel 36 (802.11 n40) 26dB&99%Bandwidth plot on channel 46 (802.11 AC20) 26dB&99%Bandwidth plot on channel 40 (802.11 AC20) 26dB&99%Bandwidth plot on channel 40 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 52 of 113 Edition:A.3 Test plot (802.11 AC40) 26dB&99%Bandwidth plot on channel 38 (802.11 AC80) 26dB&99%Bandwidth plot on channel 42 (802.11 AC40) 26dB&99%Bandwidth plot on channel 46 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 53 of 113 Edition:A.3 Temperature: 26 °C Relative Humidity: 54% Pressure: 101kPa Test Voltage : AC120V/60Hz Test Mode : TX Frequency U-NII-3(5745-5825MHz) Note: A(B) Represent the value of antenna A and B, The worst data is Antenna A, only shown Antenna A Plot. Mode Channel Frequency (MHz) 99% bandwidth (MHz) 6dB bandwidth (MHz) Limit MHz Result ANT A ANT A 802.11a CH149 5745 16.837 16.33 ≥500 Pass CH157 5785 16.847 16.07 ≥500 Pass CH165 5825 16.842 16.34 ≥500 Pass 802.11 n20 CH149 5745 17.703 15.58 ≥500 Pass CH157 5785 17.689 17.08 ≥500 Pass CH165 5825 17.656 17.01 ≥500 Pass 802.11 n40 CH151 5755 36.222 35.02 ≥500 Pass CH159 5795 36.249 35.12 ≥500 Pass 802.11 ac20 CH149 5745 17.668 15.49 ≥500 Pass CH157 5785 17.665 15.09 ≥500 Pass CH165 5825 17.708 16.39 ≥500 Pass 802.11 ac40 CH151 5755 36.240 35.20 ≥500 Pass CH159 5795 36.269 35.14 ≥500 Pass 802.11 AC80 CH155 5775 75.154 75.23 ≥500 Pass Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 54 of 113 Edition:A.3 Mode Channel Frequency (MHz) 99% bandwidth (MHz) 6dB bandwidth (MHz) Limit MHz Result ANT B ANT B 802.11a CH149 5745 16.754 16.37 ≥500 Pass CH157 5785 16.726 15.72 ≥500 Pass CH165 5825 16.819 16.32 ≥500 Pass 802.11 n20 CH149 5745 17.674 17.59 ≥500 Pass CH157 5785 17.727 17.54 ≥500 Pass CH165 5825 17.702 17.05 ≥500 Pass 802.11 n40 CH151 5755 36.226 35.19 ≥500 Pass CH159 5795 36.208 35.15 ≥500 Pass 802.11 ac20 CH149 5745 17.740 16.50 ≥500 Pass CH157 5785 17.682 15.06 ≥500 Pass CH165 5825 17.735 16.90 ≥500 Pass 802.11 ac40 CH151 5755 36.240 35.15 ≥500 Pass CH159 5795 36.242 35.26 ≥500 Pass 802.11 AC80 CH155 5775 75.090 73.28 ≥500 Pass Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 55 of 113 Edition:A.3 Antenna A: 5725-5850MHz 802.11a 5745MHz 99% bandwidth 802.11a 5785MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 56 of 113 Edition:A.3 802.11a 5825MHz 99% bandwidth 802.11n20 5745MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 57 of 113 Edition:A.3 802.11n20 5785MHz 99% bandwidth 802.11n20 5825MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 58 of 113 Edition:A.3 802.11 n40 5755MHz 99% bandwidth 802.11 n40 5795MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 59 of 113 Edition:A.3 802.11ac20 5745MHz 99% bandwidth 802.11ac20 5785MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 60 of 113 Edition:A.3 802.11ac20 5825MHz 99% bandwidth 802.11 ac40 5755MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 61 of 113 Edition:A.3 802.11 ac40 5795MHz 99% bandwidth 802.11 ac80 5775MHz 99% bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 62 of 113 Edition:A.3 802.11a 5745MHz 6dB bandwidth 802.11a 5785MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 63 of 113 Edition:A.3 802.11a 5825MHz 6dB bandwidth 802.11n20 5745MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 64 of 113 Edition:A.3 802.11n20 5785MHz 6dB bandwidth 802.11n20 5825MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 65 of 113 Edition:A.3 802.11 n40 5755MHz 6dB bandwidth 802.11 n40 5795MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 66 of 113 Edition:A.3 802.11ac20 5745MHz 6dB bandwidth 802.11ac20 5785MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 67 of 113 Edition:A.3 802.11ac20 5825MHz 6dB bandwidth 802.11 ac40 5755MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 68 of 113 Edition:A.3 802.11 ac40 5795MHz 6dB bandwidth 802.11 ac80 5775MHz 6dB bandwidth Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 69 of 113 Edition:A.3 10. MAXIMUM CONDUCTED OUTPUT POWER 10.1 Block Diagram Of Test Setup 10.2 Limit According to FCC §15.407 The maximum conduced output power should not exceed: Frequency Band(MHz) Limit 5150~5250 1W 5725~5850 1W 10.3 Test procedure Maximum conducted output power may be measured using a spectrum analyzer/EMI receiver or an RF power meter. 1. Device Configuration If possible, configure or modify the operation of the EUT so that it transmits continuously at its maximum power control level (see section II.B.). a) The intent is to test at 100 percent duty cycle; however a small reduction in duty cycle (to no lower than 98 percent) is permitted if required by the EUT for amplitude control purposes. Manufacturers are expected to provide software to the test lab to permit such continuous operation. b) If continuous transmission (or at least 98 percent duty cycle) cannot be achieved due to hardware limitations (e.g., overheating), the EUT shall be operated at its maximum power control level with the transmit duration as long as possible and the duty cycle as high as possible. 2. Measurement using a Spectrum Analyzer or EMI Receiver (SA) Measurement of maximum conducted output power using a spectrum analyzer requires integrating the spectrum across a frequ…
Text truncated - open the document above for the full version.
Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 88 of 113 Edition:A.3 5.1G Test Plot 802.11a on channel 36 802.11a on channel 40 802.11a on channel 36 802.11a on channel 40 802.11a on channel 36 802.11a on channel 40 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 89 of 113 Edition:A.3 Test Plot 802.11a on channel 48 802.11n20 on channel 36 802.11a on channel 48 802.11n20 on channel 36 802.11a on channel 48 802.11n20 on channel 36 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 90 of 113 Edition:A.3 Test Plot 802.11n20 on channel 40 802.11n20 on channel 48 802.11n20 on channel 40 802.11n20 on channel 48 802.11n20 on channel 40 802.11n20 on channel 48 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 91 of 113 Edition:A.3 Test Plot 802.11n40 on channel 38 802.11n40 on channel 46 802.11n40 on channel 38 802.11n40 on channel 46 802.11n40 on channel 38 802.11n40 on channel 46 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 92 of 113 Edition:A.3 Test Plot 802.11ac20 on channel 36 802.11ac20 on channel 40 802.11ac20 on channel 36 802.11ac20 on channel 40 802.11ac20 on channel 36 802.11ac20 on channel 40 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 93 of 113 Edition:A.3 Test Plot 802.11ac20 on channel 48 802.11ac40 on channel 38 802.11ac20 on channel 48 802.11ac40 on channel 38 802.11ac20 on channel 48 802.11ac40 on channel 38 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 94 of 113 Edition:A.3 Test Plot 802.11ac40 on channel 46 802.11ac80 on channel 42 802.11 ac40 on channel 46 802.11ac80 on channel 42 802.11 ac40 on channel 46 802.11ac80 on channel 42 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 95 of 113 Edition:A.3 5.8G Test Plot 802.11a on channel 149 802.11a on channel 157 802.11a on channel 149 802.11a on channel 157 802.11a on channel 149 802.11a on channel 157 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 96 of 113 Edition:A.3 Test Plot 802.11a on channel 165 802.11n20 on channel 149 802.11a on channel 165 802.11n20 on channel 149 802.11a on channel 165 802.11n20 on channel 149
Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 97 of 113 Edition:A.3 Test Plot 802.11n20 on channel 157 802.11n20 on channel 165 802.11n20 on channel 157 802.11n20 on channel 165 802.11n20 on channel 157 802.11n20 on channel 165 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 98 of 113 Edition:A.3 Test Plot 802.11n40 on channel 151 802.11n40 on channel 159 802.11n40 on channel 151 802.11n40 on channel 159 802.11n40 on channel 151 802.11n40 on channel 159 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 99 of 113 Edition:A.3 Test Plot 802.11ac20 on channel 149 802.11ac20 on channel 157 802.11ac20 on channel 149 802.11ac20 on channel 157 802.11ac20 on channel 149 802.11ac20 on channel 157 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 100 of 113 Edition:A.3 Test Plot 802.11ac20 on channel 165 802.11ac40 on channel 151 802.11ac20 on channel 165 802.11ac40 on channel 151 802.11ac20 on channel 165 802.11ac40 on channel 151 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 101 of 113 Edition:A.3 Test Plot 802.11ac40 on channel 159 802.11ac80 on channel 155 802.11 ac40 on channel 159 802.11ac80 on channel 155 802.11 ac40 on channel 159 802.11ac80 on channel 155 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 102 of 113 Edition:A.3 13. FREQUENCY STABILITY MEASUREMENT 13.1 LIMIT Manufactures of U-NII devices are responsible for ensuring frequency stability such that an emission is maintained within the band of operation under all conditions of normal operation as specified in the user’s manual. The transmitter center frequency tolerance shall be ± 20 ppm maximum for the 5 GHz band (IEEE802.11n specification). 13.2 TEST PROCEDURES 1. The transmitter output (antenna port) was connected to the spectrum analyzer. 2. EUT have transmitted absence of modulation signal and fixed channelize. 3. Set the spectrum analyzer span to view the entire absence of modulation emissions bandwidth. 4. Set RBW = 10 kHz, VBW = 10 kHz with peak detector and maxhold settings. 5. fc is declaring of channel frequency. Then the frequency error formula is (fc-f)/fc × 106 ppm and the limit is less than ±20ppm (IEEE 802.11nspecification). 6. The test extreme voltage is to change the primary supply voltage from 85 to 115 percent of the nominal value 7. Extreme temperature is -20°C~70°C. 13.3 TEST SETUP LAYOUT 13.4 EUT OPERATION DURING TEST The EUT was programmed to be in continuously un-modulation transmitting mode. 13.5 TEST RESULTS Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 103 of 113 Edition:A.3 Temperature: 26 °C Relative Humidity: 54% Pressure: 101kPa Test Voltage : AC 120V/60Hz Test Mode : TX Frequency U-NII-1 (5180-5240MHz) Voltage vs. Frequency Stability V nom (V)120.005180.0105751800.01062.0398 V max (V)138.005180.0096951800.00971.8713 V min (V)102.005180.0018751800.00190.3607 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5180MHz Limits ±20ppm Result Complies T nom (°C) 20 Temperature vs. Frequency Stability T (°C)-205180.0035251800.00350.6789 T (°C)-105180.0122151800.01222.3578 T (°C)05180.0085551800.00851.6505 T (°C)105180.0072551800.00721.3991 T (°C)205180.0096051800.00961.8538 T (°C)305180.0015251800.00150.2938 T (°C)405180.0099951800.01001.9288 T (°C)505180.0112651800.01132.1736 T (°C)605180.0079551800.00791.5341 T (°C)705180.0087051800.00871.6798 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5180MHz Limits ±20ppm Result Complies V nom (V) 120 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 104 of 113 Edition:A.3 Voltage vs. Frequency Stability V nom (V)120.005200.0123752000.01242.3785 V max (V)138.005200.01254 5200 0.01252.4106 V min (V)102.005200.01184 5200 0.01182.2765 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5200MHz Temperature vs. Frequency Stability T (°C)-205200.0069252000.00691.3304 T (°C)-105200.01089 5200 0.01092.0946 T (°C)05200.00358 5200 0.00360.6888 T (°C)105200.00777 5200 0.00781.4944 T (°C)205200.01188 5200 0.01192.2854 T (°C)305200.00497 5200 0.00500.9557 T (°C)405200.00980 5200 0.00981.8846 T (°C)505200.00974 5200 0.00971.8734 T (°C)605200.00248 5200 0.00250.4766 T (°C)705200.00825 5200 0.00821.5863 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5200MHz Limits ±20ppm Result Complies V nom (V) 120 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 105 of 113 Edition:A.3 Voltage vs. Frequency Stability V nom (V)120.005240.0100952400.01011.9263 V max (V)138.005240.0054652400.00551.0423 V min (V)102.005240.0120952400.01212.3072 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5240MHz Temperature vs. Frequency Stability T (°C)-205240.0060552400.00611.1551 T (°C)-105240.0073252400.00731.3964 T (°C)05240.0005252400.00050.0990 T (°C)105240.0066752400.00671.2721 T (°C)205240.0025952400.00260.4950 T (°C)305240.0096152400.00961.8335 T (°C)405240.0093352400.00931.7809 T (°C)505240.0108752400.01092.0736 T (°C)605240.0020252400.00200.3855 T (°C)705240.0015652400.00160.2971 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5240MHz Limits ±20ppm Result Complies V nom (V) 120 Report No.: BCTC2105136964-2E No.:BCTC/RF-EMC-005 Page: 106 of 113 Edition:A.3 Temperature: 26 °C Relative Humidity: 54% Pressure: 101kPa Test Voltage : AC 120V/60Hz Hzst Mode : TX Frequency(5745-5825MHz) Voltage vs. Frequency Stability V nom (V)120.005745.0006757450.000670.1174 V max (V)138.005745.01067 5745 0.010671.8571 V min (V)102.005745.01051 5745 0.010511.8294 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5745MHz Temperature vs. Frequency Stability T (°C)-205745.0044257450.004420.7688 T (°C)-105745.0001157450.000110.0185 T (°C)05745.0110057450.011001.9148 T (°C)105745.0109857450.010981.9119…
Text truncated - open the document above for the full version.
Conducted Emission Radiated Measurement Photos
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15E | 5.75 GHz - 5.83 GHz | 82.78 mW |