
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Portable 2.4G/5G WIFI Extender What’s included? - Wave WIFI Extender Unit - USB Power Cable - Instruction Manual Powering up Wave 1) Plug in the USB Power Cable into Wave (micro-USB port) and plug the USB end into a power source. This could be a USB power adapter, PC/laptop, USB charger or hub, etc. The power source must be able to output atleast 1.0 ampt. Wave will automatically turn on. Connecting your smartphone/tablet/laptop devices Method 1: WPS If your modem/router supports WPS connectivity, you can connect Wave to your network quickly and easily 1) Press on the WPS button on Wave 2) Press on the WPS button on your modem/router. They will securely communicate with each other and connect. Method 2: Connect via Wave Setup Alternatively, you can setup Wave using your device’s web browser. 1) With Wave turned on, connect to Wave’s WIFI signal “Wave by PowerStick” 2) Open up a web browser (Chrome, Safari, Firefox, etc.) 3) In the address bar, type in “setup.wave.net” and press return 4) You will be taken to Wave’s login screen. The default admin password is: “admin” (without the quotations). Note: You can change this password in the Advanced Settings later. If you forget your password you can use a pin to press the reset button (RST) located on the Wave unit. 5) Once you are logged in, tap on 2.4G or 5G, depending on which frequency you would like to extend. 6) Wave will automatically scan for all WIFI networks close by 7) Once you you see the WIFI network that you want to extend, tap Select and your WIFI information will auto-populate the fields. 8) Type in the WIFI password for your WIFI network and tap Apply. 9) Wave will begin extending your WIFi, Do not turn off your device until it is complete. 10) Wave will create a new WIFI name for each band that is being extended. (-2.4G-EXT and -5G-EXT will be added to the end of the main WIFI network) 11) Your WIFI is now being extended! Go to your device’s WIFI settings to connect to the new extended WIFI signals. The password will be the same as your original WIFI network’s password. 12) Enjoy your extended WIFI network! Change Wave Password - you can change the default password to secure your Wave settings Wave Settings - you can change the settings of the extended WIFI network such as passwords and encryption type Firmware Upgrade - we are constantly working on improving Wave and from time-to-time will release upgrades to the firmware - you can find the latest upgrades at https://powerstick.com/main/contact-us/ Restart - if you are having any minor issues you can try restarting the Wave device to see if it helps Reset - if you are setting up another network or giving your Wave to someone else, you can reset Wave and this will remove all the settings and information that you had previously input. 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. Any changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: - Reorient or relocate the receiving antenna. - Increase the separation between the equipment and receiver. - Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. - Consult the dealer or an experienced radio/TV technician for help. To maintain compliance with FCC’s RF Exposure guidelines, This equipment should be installed and operated with minimum distance between 20cm the radiator your body: Use only the supplied antenna. FCC ID: 2AITNWAVE Problem: I forgot my Wave login password. Solution: With Wave powered on, find a small pin and insert it into the Reset hole (RST) located on wave. This will do a factory reset and return all settings to default. Problem: I plugged in Wave but it is not powering on. Solution: Make sure that you have plugged Wave into a power source with atleast 1.0 amp of output. Setting up Wave Advanced Settings FCC Warning Troubleshooting
FCC Software Configuration Control Declaration Rev1.1.docx Powerstick .com Inc FCC Software Configuration Control Declaration Date: February 3, 2021 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Attn: OET Dept. Product/ Model Number: wifi extender / 805600 Regarding FCC Country Code Selection guidelines identified in KDB 594280D01v02r01. “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: John Zhu Date: 2021/02/02 Title: Manager Signature of applicant
Powerstick .com Inc Agent Authorization Company: Powerstick .com Inc Address: 29 Camelot Drive, Ottawa ,Ontario, Canada, K2G 5W6 Product Name: wifi extender Model Number(s): 805600 Product Description: wifi extender 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: 2021/02/02 Name: John Zhu Title: Manager Company: Powerstick .com Inc
Powerstick .com Inc Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 2021/02/02 Subject; Request for Confidentiality FCC ID: 2AITNWAVE 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 FCC_Software_Security_Requirements_for_UNII_devices In additional to above mentioned documents, in order to comply with the marketing regulations in Title 47 CFR §2.803 and the importation rules in Title 47 CFR §2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices, we request Short Term Confidentiality of the following attachment(s); External Photos Test Setup Photos Internal Photos User Manual For 45 days, pursuant to Public Notice DA 04-1705. OR For 180 days 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: John Zhu Title: Manager Email: [email protected]
S21010401002 Model: 805600 ATTACHMENT PHOTOGRAPHS OF EUT Photo 1 Photo 2 S21010401002 Model: 805600 Photo 3 Photo 4 S21010401002 Model: 805600 Photo 5 Photo 6 S21010401002 Model: 805600 Photo 7 Photo 8 S21010401002 Model: 805600 Photo 9 Photo 10 S21010401002 Model: 805600 Photo 11 Photo 12 WIFI 2.4G Ant 1 WIFI 5G Ant 1 S21010401002 Model: 805600 Photo 13 WIFI 2.4G Ant 2 WIFI 5G Ant 2
S21010401002 Model: 805600 Photo 1 Photo 2 S21010401002 Model: 805600 Photo 3 Photo 4 S21010401002 Model: 805600 Photo 5 Photo 6 S21010401002 Model: 805600 Photo 7 Photo 8 S21010401002 Model: 805600 Photo 9 Photo 10
19.5mm 37.5mm 42.6mm 13.5mm 1.75mm corner radius
S21010401002 Model: 805600 Photo 1 Photo 2 WIFI 2.4G Ant 1 WIFI 5G Ant 1 S21010401002 Model: 805600 Photo 3 Photo 4 WIFI 2.4G Ant 2 WIFI 5G Ant 2
FCC ID: 2AITNWAVE Maximum Permissible Exposure (MPE) According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency(RF) Radiation as specified in §1.1307(b) Limits for Maximum Permissible Exposure (MPE) MPE Calculation Method E (V/m) = d GP**30 Power Density: Pd (W/m²) = 377 2 E E = Electric field (V/m) P = Average RF output power (W) G = EUT Antenna numeric gain (numeric) d = Separation distance between radiator and human body (m) The formula can be changed to Pd = 2 *377 **30 D GP From the EUT RF output power, the minimum mobile separation distance, d=0.2m, as well as the gain of the used antenna, the RF power density can be obtained. Measurement Result Operation Frequency: WIFI 802.11b/g/n HT20: 2412-2462MHz, WIFI 802.11n HT40:2422-2452MHz Power density limited: 1mW/ cm 2 Antenna Type: Antenna 1:Rod antenna Antenna 2: PCB Antenna WIFI antenna gain: Antenna 1: 2.5dBi Antenna 2: 2.5dBi R=20cm mW=10^(dBm/10) WLAN2.4G MIMO MODE Antenna Tune- up limit (dBm) Gain (dBi) EIRP (dBm) EIRP (mW) R(c m) S (mW/cm 2 ) MPE Limit (mW/cm 2 ) Conclusion Ant 1 13.33 2.5 15.83 38.282 20 0.0126 1 Pass Ant 2 12.14 2.5 14.64 29.11 20 0.0058 1 WLAN5.2G MIMO MODE Antenna Tune- up limit (dBm) Gain (dBi) EIRP (dBm) EIRP (mW) R(c m) S (mW/cm 2 ) MPE Limit (mW/cm 2 ) Conclusion Ant 1 11.961 2.5 14.461 27.932 20 0.0092 1 Pass Ant 2 9.877 2.5 12.377 17.29 20 0.0034 1 WLAN5.2G MIMO MODE Antenna Tune- up limit (dBm) Gain (dBi) EIRP (dBm) EIRP (mW) R(cm) S (mW/cm2) MPE Limit (mW/cm2) Conclusion Ant 1 8.968 2.5 11.468 14.022 20 0.0046 1 Pass Ant 2 9.951 2.5 12.451 17.58 20 0.0035 1 SIMULTANEOUS TRANSMISSIONS When a number of sources at different frequencies, and/or broadband sources, contribute to the total exposure, it becomes necessary to weigh each contribution relative to the MPE. To comply with the MPE, the fraction of the MPE in terms of E 2 , H 2 (or power density) incurred within each frequency interval should be determined and the sum of all such fractions should not exceed unity. In order to ensure compliance with the MPE for a controlled environment, the sum of the ratios of the power density to the corresponding MPE should not exceed unity. That is WLAN2.4G MIMO MODE Antenna Tune- up limit (dBm) Gain (dBi) EIRP (dBm) EIRP (mW) R(c m) S (mW/cm 2 ) MPE Limit (mW/cm 2 ) Calculation result Conclusion Ant 1 13.33 2.5 15.83 38.282 20 0.0126 1 0.0184 Pass Ant 2 12.14 2.5 14.64 29.11 20 0.0058 1 WLAN5.2G MIMO MODE Antenna Tune- up limit (dBm) Gain (dBi) EIRP (dBm) EIRP (mW) R(c m) S (mW/cm 2 ) MPE Limit (mW/cm 2 ) Calculation result Conclusion Ant 1 11.961 2.5 14.461 27.932 20 0.0092 1 0.0126 Pass Ant 2 9.877 2.5 12.377 17.29 20 0.0034 1 WLAN5.2G MIMO MODE Antenna Tune- up limit (dBm) Gain (dBi) EIRP (dBm) EIRP (mW) R(cm) S (mW/cm2) MPE Limit (mW/cm2) Calculation result Conclusion Ant 1 8.968 2.5 11.468 14.022 20 0.0046 1 0.0081 Pass Ant 2 9.951 2.5 12.451 17.58 20 0.0035 1 Conclusion: For the max result : 0.02510≤ 1.0 for Max Power Density, Compliance the RF Exposure requirement. The 2.4Gwifi module 2 has the maximum Power Density value 0.0184 mW/cm2 in 2.4G MIMO transmitting mode; The 5Gwifi module 2 has the maximum Power Density value 0.0126 mW/cm2 in 5G MIMO transmitting mode; Transmitting Mode R(cm) S (mW/cm2) Total S (mW/cm2) MPE Limit (mW/cm2) Conclusion Wifi 2.4G MIMO Mode 20 0.0184 0.031 1.0 Pass Wifi 5G MIMO Mode 0.0126 Conclusion: For the max result: 0.0031≤ 1.0 for Max Power Density, compliance the RF Exposure. Note: 1. The Output power is the maximum eirp power of this EUT, and the data comes from the RF report for this EUT. 2. The assess distance is 20cm. Signature: Date: 2021-02-03 NAME AND TITLE (Please print or type): alex li/Manager COMPANY (Please print or type): Shenzhen NTEK Testing Technology Co., Ltd./ 1/F, Building E, Fenda Science Park, Sanwei Community, Xixiang Street Bao’an District, Shenzhen P.R. China.
Report: S21010401002002 Page 1 of 212 5.2G Duty Cycle Condition Mode Frequency (MHz) Antenna Duty Cycle (%) Correction Factor (dB) NVNT a 5180 Ant1 100 0 NVNT a 5200 Ant1 100 0 NVNT a 5240 Ant1 100 0 NVNT a 5180 Ant2 100 0 NVNT a 5200 Ant2 100 0 NVNT a 5240 Ant2 100 0 NVNT ac20 5180 Ant1 93.14 0.31 NVNT ac20 5200 Ant1 92.9 0.32 NVNT ac20 5240 Ant1 93.03 0.31 NVNT ac20 5180 Ant2 92.86 0.32 NVNT ac20 5200 Ant2 92.69 0.33 NVNT ac20 5240 Ant2 92.83 0.32 NVNT ac40 5190 Ant1 86.67 0.62 NVNT ac40 5230 Ant1 86.86 0.61 NVNT ac40 5190 Ant2 87.28 0.59 NVNT ac40 5230 Ant2 86.85 0.61 NVNT ac80 5210 Ant1 77.27 1.12 NVNT ac80 5210 Ant2 76.89 1.14 NVNT n20 5180 Ant1 100 0 NVNT n20 5200 Ant1 92.57 0.34 NVNT n20 5240 Ant1 92.49 0.34 NVNT n20 5180 Ant2 100 0 NVNT n20 5200 Ant2 92.77 0.33 NVNT n20 5240 Ant2 92.5 0.34 NVNT n40 5190 Ant1 86.46 0.63 NVNT n40 5230 Ant1 86.5 0.63 NVNT n40 5190 Ant2 86.6 0.62 NVNT n40 5230 Ant2 86.53 0.63 Report: S21010401002002 Page 2 of 212 Duty Cycle NVNT a 5180MHz Ant1 Duty Cycle NVNT a 5200MHz Ant1 Report: S21010401002002 Page 3 of 212 Duty Cycle NVNT a 5240MHz Ant1 Duty Cycle NVNT a 5180MHz Ant2 Report: S21010401002002 Page 4 of 212 Duty Cycle NVNT a 5200MHz Ant2 Duty Cycle NVNT a 5240MHz Ant2 Report: S21010401002002 Page 5 of 212 Duty Cycle NVNT ac20 5180MHz Ant1 Duty Cycle NVNT ac20 5200MHz Ant1 Report: S21010401002002 Page 6 of 212 Duty Cycle NVNT ac20 5240MHz Ant1 Duty Cycle NVNT ac20 5180MHz Ant2 Report: S21010401002002 Page 7 of 212 Duty Cycle NVNT ac20 5200MHz Ant2 Duty Cycle NVNT ac20 5240MHz Ant2 Report: S21010401002002 Page 8 of 212 Duty Cycle NVNT ac40 5190MHz Ant1 Duty Cycle NVNT ac40 5230MHz Ant1 Report: S21010401002002 Page 9 of 212 Duty Cycle NVNT ac40 5190MHz Ant2 Duty Cycle NVNT ac40 5230MHz Ant2 Report: S21010401002002 Page 10 of 212 Duty Cycle NVNT ac80 5210MHz Ant1 Duty Cycle NVNT ac80 5210MHz Ant2 Report: S21010401002002 Page 11 of 212 Duty Cycle NVNT n20 5180MHz Ant1 Duty Cycle NVNT n20 5200MHz Ant1 Report: S21010401002002 Page 12 of 212 Duty Cycle NVNT n20 5240MHz Ant1 Duty Cycle NVNT n20 5180MHz Ant2 Report: S21010401002002 Page 13 of 212 Duty Cycle NVNT n20 5200MHz Ant2 Duty Cycle NVNT n20 5240MHz Ant2 Report: S21010401002002 Page 14 of 212 Duty Cycle NVNT n40 5190MHz Ant1 Duty Cycle NVNT n40 5230MHz Ant1 Report: S21010401002002 Page 15 of 212 Duty Cycle NVNT n40 5190MHz Ant2 Duty Cycle NVNT n40 5230MHz Ant2 Report: S21010401002002 Page 16 of 212 Maximum Conducted Output Power Condition Mode Frequency (MHz) Antenna Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT a 5180 Ant1 10.143 0 10.143 30 Pass NVNT a 5200 Ant1 10.41 0 10.41 30 Pass NVNT a 5240 Ant1 9.915 0 9.915 30 Pass NVNT a 5180 Ant2 9.169 0 9.169 30 Pass NVNT a 5200 Ant2 8.716 0 8.716 30 Pass NVNT a 5240 Ant2 8.688 0 8.688 30 Pass NVNT ac20 5180 Ant1 9.272 0.31 9.582 30 Pass NVNT ac20 5200 Ant1 9.589 0.32 9.909 30 Pass NVNT ac20 5240 Ant1 9.317 0.31 9.627 30 Pass NVNT ac20 5180 Ant2 9.615 0.32 9.935 30 Pass NVNT ac20 5200 Ant2 9.338 0.33 9.668 30 Pass NVNT ac20 5240 Ant2 9.838 0.32 10.158 30 Pass NVNT ac20 5180 MIMO 12.394 0.32 12.714 30 Pass NVNT ac20 5200 MIMO 12.168 0.33 12.498 30 Pass NVNT ac20 5240 MIMO 12.969 0.32 13.289 30 Pass NVNT ac40 5190 Ant1 9.511 0.62 10.131 30 Pass NVNT ac40 5230 Ant1 10.384 0.61 10.994 30 Pass NVNT ac40 5190 Ant2 9.111 0.59 9.701 30 Pass NVNT ac40 5230 Ant2 9.399 0.61 10.009 30 Pass NVNT ac40 5190 MIMO 13.078 0.61 13.688 30 Pass NVNT ac40 5230 MIMO 13.603 0.61 14.213 30 Pass NVNT ac80 5210 Ant1 10.841 1.12 11.961 30 Pass NVNT ac80 5210 Ant2 8.737 1.14 9.877 30 Pass NVNT ac80 5210 MIMO 11.717 1.14 12.857 30 Pass NVNT n20 5180 Ant1 9.51 0 9.51 30 Pass NVNT n20 5200 Ant1 9.317 0.34 9.657 30 Pass NVNT n20 5240 Ant1 9.133 0.34 9.473 30 Pass NVNT n20 5180 Ant2 9.142 0 9.142 30 Pass NVNT n20 5200 Ant2 9.381 0.33 9.711 30 Pass NVNT n20 5240 Ant2 9.801 0.34 10.141 30 Pass NVNT n20 5180 MIMO 13.408 0 13.408 30 Pass NVNT n20 5200 MIMO 13.778 0.34 14.118 30 Pass NVNT n20 5240 MIMO 13.325 0.34 13.665 30 Pass NVNT n40 5190 Ant1 8.93 0.63 9.56 30 Pass NVNT n40 5230 Ant1 9.455 0.63 10.085 30 Pass NVNT n40 5190 Ant2 9.513 0.62 10.133 30 Pass NVNT n40 5230 Ant2 9.856 0.63 10.486 30 Pass NVNT n40 5190 MIMO 13.148 0.63 13.778 30 Pass NVNT n40 5230 MIMO 12.607 0.63 13.237 30 Pass Report: S21010401002002 Page 17 of 212 -26dB Bandwidth Condition Mode Frequency (MHz) Antenna -26 dB Bandwidth (MHz) Verdict NVNT a 5180 Ant1 19.404 Pass NVNT a 5200 Ant1 19.275 Pass NVNT a 5240 Ant1 19.556 Pass NVNT a 5180 Ant2 19.284 Pass NVNT a 5200 Ant2 19.286 Pass NVNT a 5240 Ant2 19.365 Pass NVNT ac20 5180 Ant1 19.734 Pass NVNT ac20 5200 Ant1 19.843 Pass NVNT ac20 5240 Ant1 19.739 Pass NVNT ac20 5180 Ant2 19.839 Pass NVNT ac20 5200 Ant2 19.886 Pass NVNT ac20 5240 Ant2 20.019 Pass NVNT ac40 5190 Ant1 39.856 Pass NVNT ac40 5230 Ant1 39.732 Pass NVNT ac40 5190 Ant2 39.866 Pass NVNT ac40 5230 Ant2 39.835 Pass NVNT ac80 5210 Ant1 80.442 Pass NVNT ac80 5210 Ant2 80.47 Pass NVNT n20 5180 Ant1 19.787 Pass NVNT n20 5200 Ant1 19.917 Pass NVNT n20 5240 Ant1 19.887 Pass NVNT n20 5180 Ant2 20.102 Pass NVNT n20 5200 Ant2 19.711 Pass NVNT n20 5240 Ant2 19.724 Pass NVNT n40 5190 Ant1 39.933 Pass NVNT n40 5230 Ant1 39.952 Pass NVNT n40 5190 Ant2 39.922 Pass NVNT n40 5230 Ant2 39.824 Pass Report: S21010401002002 Page 18 of 212 -26dB Bandwidth NVNT a 5180MHz Ant1 -26dB Bandwidth NVNT a 5200MHz Ant1 Report: S21010401002002 Page 19 of 212 -26dB Bandwidth NVNT a 5240MHz Ant1 -26dB Bandwidth NVNT a 5180MHz Ant2 Report: S21010401002002 Page 20 of 212 -26dB Bandwidth NVNT a 5200MHz Ant2 -26dB Bandwidth NVNT a 5240MHz Ant2 Report: S21010401002002 Page 21 of 212 -26dB Bandwidth NVNT ac20 5180MHz Ant1 -26dB Bandwidth NVNT ac20 5200MHz Ant1 Report: S21010401002002 Page 22 of 212 -26dB Bandwidth NVNT ac20 5240MHz Ant1 -26dB Bandwidth NVNT ac20 5180MHz Ant2 Report: S21010401002002 Page 23 of 212 -26dB Bandwidth NVNT ac20 5200MHz Ant2 -26dB Bandwidth NVNT ac20 5240MHz Ant2 Report: 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Report: S21010401002002 Page 71 of 212 Band Edge NVNT ac20 5180MHz Low Ant1 Band Edge NVNT ac20 5240MHz High Ant1 Report: S21010401002002 Page 72 of 212 Band Edge NVNT ac20 5180MHz Low Ant2 Band Edge NVNT ac20 5240MHz High Ant2 Report: S21010401002002 Page 73 of 212 Band Edge NVNT ac20 5180MHz Low MIMO Band Edge NVNT ac20 5240MHz High MIMO Report: S21010401002002 Page 74 of 212 Band Edge NVNT ac40 5190MHz Low Ant1 Band Edge NVNT ac40 5230MHz High Ant1 Report: S21010401002002 Page 75 of 212 Band Edge NVNT ac40 5190MHz Low Ant2 Band Edge NVNT ac40 5230MHz High Ant2 Report: S21010401002002 Page 76 of 212 Band Edge NVNT ac40 5190MHz Low MIMO Band Edge NVNT ac40 5230MHz High MIMO Report: S21010401002002 Page 77 of 212 Band Edge NVNT ac80 5210MHz High Ant1 Band Edge NVNT ac80 5210MHz Low Ant1 Report: S21010401002002 Page 78 of 212 Band Edge NVNT ac80 5210MHz High Ant2 Band Edge NVNT ac80 5210MHz Low Ant2 Report: S21010401002002 Page 79 of 212 Band Edge NVNT ac80 5210MHz High MIMO Band Edge NVNT ac80 5210MHz Low MIMO Report: S21010401002002 Page 80 of 212 Band Edge NVNT n20 5180MHz Low Ant1 Band Edge NVNT n20 5240MHz High Ant1 Report: S21010401002002 Page 81 of 212 Band Edge NVNT n20 5180MHz Low Ant2 Band Edge NVNT n20 5240MHz High Ant2 Report: S21010401002002 Page 82 of 212 Band Edge NVNT n20 5180MHz Low MIMO Band Edge NVNT n20 5240MHz High MIMO Report: S21010401002002 Page 83 of 212 Band Edge NVNT n40 5190MHz Low Ant1 Band Edge NVNT n40 5230MHz High Ant1 Report: S21010401002002 Page 84 of 212 Band Edge NVNT n40 5190MHz Low Ant2 Band Edge NVNT n40 5230MHz High Ant2 Report: S21010401002002 Page 85 of 212 Band Edge NVNT n40 5190MHz Low MIMO Band Edge NVNT n40 5230MHz High MIMO Report: S21010401002002 Page 86 of 212 Conducted RF Spurious Emission Condition Mode Frequency (MHz) Antenna Max Value (dBc) Limit (dBc) Verdict NVNT a 5180 Ant1 -33.45 -27 Pass NVNT a 5200 Ant1 -33.5 -27 Pass NVNT a 5240 Ant1 -33.7 -27 Pass NVNT a 5180 Ant2 -32.88 -27 Pass NVNT a 5200 Ant2 -32.31 -27 Pass NVNT a 5240 Ant2 -28.47 -27 Pass NVNT ac20 5180 Ant1 -33.99 -27 Pass NVNT ac20 5200 Ant1 -33.35 -27 Pass NVNT ac20 5240 Ant1 -32.91 -27 Pass NVNT ac20 5180 Ant2 -28.21 -27 Pass NVNT ac20 5200 Ant2 -33.3 -27 Pass NVNT ac20 5240 Ant2 -31.73 -27 Pass NVNT ac20 5180 MIMO -33.08 -27 Pass NVNT ac20 5200 MIMO -33.52 -27 Pass NVNT ac20 5240 MIMO -33.14 -27 Pass NVNT ac40 5190 Ant1 -33.4 -27 Pass NVNT ac40 5230 Ant1 -33.28 -27 Pass NVNT ac40 5190 Ant2 -31.58 -27 Pass NVNT ac40 5230 Ant2 -29.11 -27 Pass NVNT ac40 5190 MIMO -33.02 -27 Pass NVNT ac40 5230 MIMO -33.1 -27 Pass NVNT ac80 5210 Ant1 -33.45 -27 Pass NVNT ac80 5210 Ant2 -32.87 -27 Pass NVNT ac80 5210 MIMO -33.23 -27 Pass NVNT n20 5180 Ant1 -34.01 -27 Pass NVNT n20 5200 Ant1 -32.89 -27 Pass NVNT n20 5240 Ant1 -33.55 -27 Pass NVNT n20 5180 Ant2 -27.45 -27 Pass NVNT n20 5200 Ant2 -32.37 -27 Pass NVNT n20 5240 Ant2 -28.17 -27 Pass NVNT n20 5180 MIMO -32.97 -27 Pass NVNT n20 5200 MIMO -32.6 -27 Pass NVNT n20 5240 MIMO -33.26 -27 Pass NVNT n40 5190 Ant1 -33.29 -27 Pass NVNT n40 5230 Ant1 -33.88 -27 Pass NVNT n40 5190 Ant2 -31.3 -27 Pass NVNT n40 5230 Ant2 -32.62 -27 Pass NVNT n40 5190 MIMO -33.4 -27 Pass NVNT n40 5230 MIMO -33.46 -27 Pass Report: S21010401002002 Page 87 of 212 Tx. Spurious NVNT a 5180MHz Ant1 Emission Tx. Spurious NVNT a 5200MHz Ant1 Emission Report: S21010401002002 Page 88 of 212 Tx. Spurious NVNT a 5240MHz Ant1 Emission Tx. Spurious NVNT a 5180MHz Ant2 Emission Report: S21010401002002 Page 89 of 212 Tx. Spurious NVNT a 5200MHz Ant2 Emission Tx. Spurious NVNT a 5240MHz Ant2 Emission Report: S21010401002002 Page 90 of 212 Tx. Spurious NVNT ac20 5180MHz Ant1 Emission Tx. Spurious NVNT ac20 5200MHz Ant1 Emission Report: S21010401002002 Page 91 of 212 Tx. Spurious NVNT ac20 5240MHz Ant1 Emission Tx. Spurious NVNT ac20 5180MHz Ant2 Emission Report: S21010401002002 Page 92 of 212 Tx. Spurious NVNT ac20 5200MHz Ant2 Emission Tx. Spurious NVNT ac20 5240MHz Ant2 Emission Report: S21010401002002 Page 93 of 212 Tx. Spurious NVNT ac20 5180MHz MIMO Emission Tx. Spurious NVNT ac20 5200MHz MIMO Emission Report: S21010401002002 Page 94 of 212 Tx. Spurious NVNT ac20 5240MHz MIMO Emission Tx. Spurious NVNT ac40 5190MHz Ant1 Emission Report: S21010401002002 Page 95 of 212 Tx. Spurious NVNT ac40 5230MHz Ant1 Emission Tx. Spurious NVNT ac40 5190MHz Ant2 Emission Report: S21010401002002 Page 96 of 212 Tx. Spurious NVNT ac40 5230MHz Ant2 Emission Tx. Spurious NVNT ac40 5190MHz MIMO Emission Report: S21010401002002 Page 97 of 212 Tx. Spurious NVNT ac40 5230MHz MIMO Emission Tx. Spurious NVNT ac80 5210MHz Ant1 Emission Report: S21010401002002 Page 98 of 212 Tx. Spurious NVNT ac80 5210MHz Ant2 Emission Tx. Spurious NVNT ac80 5210MHz MIMO Emission Report: S21010401002002 Page 99 of 212 Tx. Spurious NVNT n20 5180MHz Ant1 Emission Tx. Spurious NVNT n20 5200MHz Ant1 Emission Report: S21010401002002 Page 100 of 212 Tx. Spurious NVNT n20 5240MHz Ant1 Emission Tx. Spurious NVNT n20 5180MHz Ant2 Emission Report: S21010401002002 Page 101 of 212 Tx. Spurious NVNT n20 5200MHz Ant2 Emission Tx. Spurious NVNT n20 5240MHz Ant2 Emission Report: S21010401002002 Page 102 of 212 Tx. Spurious NVNT n20 5180MHz MIMO Emission Tx. Spurious NVNT n20 5200MHz MIMO Emission Report: S21010401002002 Page 103 of 212 Tx. Spurious NVNT n20 5240MHz MIMO Emission Tx. Spurious NVNT n40 5190MHz Ant1 Emission Report: S21010401002002 Page 104 of 212 Tx. Spurious NVNT n40 5230MHz Ant1 Emission Tx. Spurious NVNT n40 5190MHz Ant2 Emission Report: S21010401002002 Page 105 of 212 Tx. Spurious NVNT n40 5230MHz Ant2 Emission Tx. Spurious NVNT n40 5190MHz MIMO Emission Report: S21010401002002 Page 106 of 212 Tx. Spurious NVNT n40 5230MHz MIMO Emission Report: S21010401002002 Page 107 of 212 5.8G Duty Cycle Condition Mode Frequency (MHz) Antenna Duty Cycle (%) Correction Factor (dB) NVNT a 5745 Ant1 100 0 NVNT a 5785 Ant1 100 0 NVNT a 5825 Ant1 100 0 NVNT a 5745 Ant2 100 0 NVNT a 5785 Ant2 100 0 NVNT a 5825 Ant2 100 0 NVNT ac20 5745…
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Report: S21010401002002 Page 141 of 212 OBW NVNT a 5785MHz Ant2 OBW NVNT a 5825MHz Ant2 Report: S21010401002002 Page 142 of 212 OBW NVNT ac20 5745MHz Ant1 OBW NVNT ac20 5785MHz Ant1 Report: S21010401002002 Page 143 of 212 OBW NVNT ac20 5825MHz Ant1 OBW NVNT ac20 5745MHz Ant2 Report: S21010401002002 Page 144 of 212 OBW NVNT ac20 5785MHz Ant2 OBW NVNT ac20 5825MHz Ant2 Report: S21010401002002 Page 145 of 212 OBW NVNT ac40 5755MHz Ant1 OBW NVNT ac40 5795MHz Ant1 Report: S21010401002002 Page 146 of 212 OBW NVNT ac40 5755MHz Ant2 OBW NVNT ac40 5795MHz Ant2 Report: S21010401002002 Page 147 of 212 OBW NVNT ac80 5775MHz Ant1 OBW NVNT ac80 5775MHz Ant2 Report: S21010401002002 Page 148 of 212 OBW NVNT n20 5745MHz Ant1 OBW NVNT n20 5785MHz Ant1 Report: S21010401002002 Page 149 of 212 OBW NVNT n20 5825MHz Ant1 OBW NVNT n20 5745MHz Ant2 Report: S21010401002002 Page 150 of 212 OBW NVNT n20 5785MHz Ant2 OBW NVNT n20 5825MHz Ant2 Report: S21010401002002 Page 151 of 212 OBW NVNT n40 5755MHz Ant1 OBW NVNT n40 5795MHz Ant1 Report: S21010401002002 Page 152 of 212 OBW NVNT n40 5755MHz Ant2 OBW NVNT n40 5795MHz Ant2 Report: S21010401002002 Page 153 of 212 Maximum Power Spectral Density Level Condition Mode Frequency (MHz) Antenna Max PSD (dBm) Duty Cycle (%) Total Max PSD (dBm) Limit (dBm) Verdict NVNT a 5745 Ant1 3.474 0 3.474 30 Pass NVNT a 5785 Ant1 2.855 0 2.855 30 Pass NVNT a 5825 Ant1 3.573 0 3.573 30 Pass NVNT a 5745 Ant2 3.634 0 3.634 30 Pass NVNT a 5785 Ant2 3.013 0 3.013 30 Pass NVNT a 5825 Ant2 3.522 0 3.522 30 Pass NVNT ac20 5745 Ant1 1.791 0 1.791 30 Pass NVNT ac20 5785 Ant1 1.783 0 1.783 30 Pass NVNT ac20 5825 Ant1 2.093 0 2.093 30 Pass NVNT ac20 5745 Ant2 2.922 0 2.922 30 Pass NVNT ac20 5785 Ant2 2.467 0 2.467 30 Pass NVNT ac20 5825 Ant2 2.393 0 2.393 30 Pass NVNT ac20 5745 MIMO 5.105 0 5.105 30 Pass NVNT ac20 5785 MIMO 4.188 0 4.188 30 Pass NVNT ac20 5825 MIMO 4.804 0 4.804 30 Pass NVNT ac40 5755 Ant1 -0.861 0 -0.861 30 Pass NVNT ac40 5795 Ant1 -0.842 0 -0.842 30 Pass NVNT ac40 5755 Ant2 -0.258 0 -0.258 30 Pass NVNT ac40 5795 Ant2 -1.216 0 -1.216 30 Pass NVNT ac40 5755 MIMO 2.626 0 2.626 30 Pass NVNT ac40 5795 MIMO 2.135 0 2.135 30 Pass NVNT ac80 5775 Ant1 -10.043 0 -10.043 30 Pass NVNT ac80 5775 Ant2 -10.249 1.13 -9.119 30 Pass NVNT ac80 5775 MIMO -7.331 1.12 -6.211 30 Pass NVNT n20 5745 Ant1 1.42 0 1.42 30 Pass NVNT n20 5785 Ant1 1.953 0 1.953 30 Pass NVNT n20 5825 Ant1 1.568 0 1.568 30 Pass NVNT n20 5745 Ant2 2.375 0 2.375 30 Pass NVNT n20 5785 Ant2 1.809 0 1.809 30 Pass NVNT n20 5825 Ant2 2.184 0 2.184 30 Pass NVNT n20 5745 MIMO 6.369 0 6.369 30 Pass NVNT n20 5785 MIMO 5.665 0 5.665 30 Pass NVNT n20 5825 MIMO 6.034 0 6.034 30 Pass NVNT n40 5755 Ant1 -1.138 0 -1.138 30 Pass NVNT n40 5795 Ant1 0.078 0 0.078 30 Pass NVNT n40 5755 Ant2 -0.222 0 -0.222 30 Pass NVNT n40 5795 Ant2 -0.582 0 -0.582 30 Pass NVNT n40 5755 MIMO 2.65 0 2.65 30 Pass NVNT n40 5795 MIMO 1.95 0 1.95 30 Pass Report: S21010401002002 Page 154 of 212 PSD NVNT a 5745MHz Ant1 PSD NVNT a 5785MHz Ant1 Report: S21010401002002 Page 155 of 212 PSD NVNT a 5825MHz Ant1 PSD NVNT a 5745MHz Ant2 Report: S21010401002002 Page 156 of 212 PSD NVNT a 5785MHz Ant2 PSD NVNT a 5825MHz Ant2 Report: S21010401002002 Page 157 of 212 PSD NVNT ac20 5745MHz Ant1 PSD NVNT ac20 5785MHz Ant1 Report: S21010401002002 Page 158 of 212 PSD NVNT ac20 5825MHz Ant1 PSD NVNT ac20 5745MHz Ant2 Report: S21010401002002 Page 159 of 212 PSD NVNT ac20 5785MHz Ant2 PSD NVNT ac20 5825MHz Ant2 Report: S21010401002002 Page 160 of 212 PSD NVNT ac20 5745MHz MIMO PSD NVNT ac20 5785MHz MIMO Report: S21010401002002 Page 161 of 212 PSD NVNT ac20 5825MHz MIMO PSD NVNT ac40 5755MHz Ant1 Report: S21010401002002 Page 162 of 212 PSD NVNT ac40 5795MHz Ant1 PSD NVNT ac40 5755MHz Ant2 Report: S21010401002002 Page 163 of 212 PSD NVNT ac40 5795MHz Ant2 PSD NVNT ac40 5755MHz MIMO Report: S21010401002002 Page 164 of 212 PSD NVNT ac40 5795MHz MIMO PSD NVNT ac80 5775MHz Ant1 Report: S21010401002002 Page 165 of 212 PSD NVNT ac80 5775MHz Ant2 PSD NVNT ac80 5775MHz MIMO Report: S21010401002002 Page 166 of 212 PSD NVNT n20 5745MHz Ant1 PSD NVNT n20 5785MHz Ant1 Report: S21010401002002 Page 167 of 212 PSD NVNT n20 5825MHz Ant1 PSD NVNT n20 5745MHz Ant2 Report: S21010401002002 Page 168 of 212 PSD NVNT n20 5785MHz Ant2 PSD NVNT n20 5825MHz Ant2 Report: S21010401002002 Page 169 of 212 PSD NVNT n20 5745MHz MIMO PSD NVNT n20 5785MHz MIMO Report: S21010401002002 Page 170 of 212 PSD NVNT n20 5825MHz MIMO PSD NVNT n40 5755MHz Ant1 Report: S21010401002002 Page 171 of 212 PSD NVNT n40 5795MHz Ant1 PSD NVNT n40 5755MHz Ant2 Report: S21010401002002 Page 172 of 212 PSD NVNT n40 5795MHz Ant2 PSD NVNT n40 5755MHz MIMO Report: S21010401002002 Page 173 of 212 PSD NVNT n40 5795MHz MIMO Report: S21010401002002 Pa…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15E | 5.75 GHz - 5.83 GHz | 20.53 mW |

FLYTE
Equipment Class
DTS - Digital Transmission System
Spot
Equipment Class
DTS - Digital Transmission System
Powerstation
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
PowerMag
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzHyperNova
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz