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2ALJJJ600MiFi

PCD, LLC
MiFi - FCC ID 2ALJJJ600 - PCD, LLC
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Jan 12, 2020
Application Purpose
Original Equipment
Date of Application
Jan 12, 2020
Equipment Note
MiFi
Frequency Range
826.40000000 - 846.60000000
Company
PCD, LLC
Country
United States

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

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Document Text

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

Users Manual

J600 User Manual Interface key Illustrate Power key Long press over 5 seconds to power on and long press to power off WPS Press to active the WPS Reset The Reset button is on the opposite side of the machine. If you forget Administrator password or Wireless network key, you can press the Reset key to restore factory default settings. LED light color Indication Indicator Color Working Status Power LED Green Solid:booting up the device Amber Blink:Charging Blink: Turn on-0.5s Turn off-0.5s Blue Solid:Battery High(100%-60%) or Charge Completed Amber Solid:Battery Middle(60%-15%) Red Solid: Battery too low nearly shutdown(〈15%) SMS LED Blue Blink:NewSMS Signal LED Blue Solid: Regiester to LTE(not connect) Blink: Connected toLTE network Green Solid: Regiester to 3G(not connect) Blink: Connected to3G network Purple Solid: Regiester to2G(not connect) Blink: Connected to2G network Red Blink:No Service/Device Error WiFi LED Blue Solid:No Client Slow Blink: Client is actived Fast Blink: WPS is actived Blink: Turn on-0.2s Turn off-0.1s Installation Follow the diagram to install the SIM card and SD card Tips: Always switch the device off and disconnect the charger before removing the battery. 1. Remove the back cover and battery; 2. Insert the SIM card and SD card. Ensure that the contact area on the card is facing down and that the beveled corner on the card is facing the beveled corner on the holder. 3. Align the battery contacts with the battery compartment connectors, and insert the battery. Replace the back cover lastly. Charge Your battery has been partially charged at the factory. If the device indicates a low charge, do the following: 1. Connect the charger to an outlet. 2. Connect the USB charger plug to your device’s USB port. 3. When the device indicates a full charge, disconnect the charger from the device, then from the outlet. One:Using charge adapter Two:Using USB port J600 Usage J600 support 4G/3G/2G networks. Insert the SIM card, Wi-Fi devices and the computer can access the Internet through J600, enjoy high-speed network services.Smart phones, tablet computers, game consoles and other Wi-Fi devices can be connected with the J600 Wi-Fi connection for Internet access. Computers & laptops etc. may be connected to the J600 via USB cable for Internet Access. J600 connects computer for the first time via a USB connection, you need to follow the prompts to install the driver Wi-Fi wireless Internet access In order for a WiFi device to establish a connection with the J600 for the first time, you will need to select the J600 SSID (WiFi name) & enter the relevant WiFi password, which you may find in the following ways: Method one: on the nameplate view the default SSID and Wi-Fi passwords Method Two: Login management page view 1. Computer, open your browser, input http://192.168.0.1 and enter. ●The default Account is admin ●The default Password is C1@r0 Enter the Account and Password, login the administration pages 2. Enter the Wi-Fi menu, view the default SSID and Wi-Fi password ●The default SSID is Claro-last 6 MAC address (ex:Claro-127FEB) ●The default Wi-Fi Password is clar0123 ★Recommend that you start using J600 administration pages after setting a convenient landing memorizing SSID and a higher safety factor Wi-Fi passwords. Install the driver and connecting the device USB Connection:Windows 7 for example 1. Keep J600 powering on,Plug the device into your computer,it will shows like the following pictures step by step. 2. Double-click the , wait for the installation to complete. 3. Check the network card is installed correctly,like the following pictures. Establish Wi-Fi connection:you must ensure that the computer equipped with a wireless network card. If the computer showed the presence of Wi-Fi connectivity, the wireless LAN is available. Otherwise, you need to check your wireless network card is working properly. 1. In the Wi-Fi list, select the SSID consistent with J600 Wi-Fi, click Connect 2. Enter the correct Wi-Fi password, click OK 3. Wait a moment, Wi-Fi connection is displayed next to the name, Wi-Fi connection is successful 4. Check the network card is installed correctly,like the following pictures WebUI ●Home First part of the main display settings and network status information, such as IPaddress, SIM card status, type and quality of the network signal, whether it is roaming, with or without a new message, and traffic statistics,and system uptime,and so on. ●Wizard You can quickly change the lan configuration, set the apn , and change the SSID \ password through the wizard function. ●WAN 1. Connection Dialing Mode: Select the Auto Mode, after you turn on J600 without additional operations, the device will automatically connect to the network; select the Manual Mode, you need to manually connect to the network after opening the J600 management page. 2. APN Setting You can customize the network configuration or manually add the new APN and set default APN. 3. 4G/3G/2GModem There are four types of networks can be choose: Auto is 4G/3G/2G, LTE Only is using only 4G, WCDMA Only is using only 3G,GSM Only is using only 2G. 4. PIN Open your PIN, if you reboot the device, you need to login management page,and the page will prompted to enter the correct PIN code, you can use the SIM card. PIN / PUK code supplied with the SIM card provided by your carrier, please consult your carrier. 5. PLMN Into automatic and manual setting options Automatic selection: Select this mode the device automatically selects the best network registration status Manual setting: Select this mode before, if your device is in the state of dial-up Internet, disconnect the network, and then click the query, wait a moment, the device will search for all nearby networks, select a network, click to update, the device registers to the network that you selected. ●LAN 1. LAN We can change IP address in this page. 2. DHCP DHCP Mode: Select the server mode, the device can be done using a DHCP server; choose None, wh…

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Cover Letter(s)

1500 Tradeport Drive Orlando, FL. 32824 | Phone: +1.407.857.3737 | www.pcdlatam.com PCD, LLC Agent Authorization Company: PCD, LLC Address:1500 Tradeport Drive, Suite A Orlando Florida United States Model Number: J600 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. Sincerely, Mauricio Velasco CTO, Latin America [email protected] +1.631.495.7537

Cover Letter(s)

1500 Tradeport Drive Orlando, FL. 32824 | Phone: +1.407.857.3737 | www.pcdlatam.com December 30th, 2019 Equipment Autorisation Division Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 FCC ID: 2ALJJJ600 Product Name: MiFi Request for Confidentiality Pursuant to Sections 0.457 and 0.459 of the commission’s rules, we hereby request that the following documents be held confidential: • Schematics • Block diagram • Operation Description • BOM • Tune up These materials contain trade secrets and proprietary information and are not customarily released to the public. The public disclosure of this information might be harmful to the company and provide unjustified benefits to our competitors. 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); • Internal Photos • User Manual For 45 days, pursuant to Public Notice DA 04-1705. 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, Mauricio Velasco CTO, Latin America [email protected] +1.631.495.7537

External Photos

Photographs of the Sample Front of the sample Rear of the sample Left of the sample Right of the sample attachment

Internal Photos

Internal Photographs of the Sample 3G4G antenne TX WIFI antenne 1 TX WIFI antenne 2 TX

RF Exposure Info

TEST REPORT Report No.: SHE190110011-01SE Date: 2020-01-03 Page 1 of 65 Applicant : PCD., LLC Address of Applicant : 1500 Tradeport Drive, Suite A Orlando Florida 32824 United States Product Name : MIFI Model No. : J600 Sample No. : E19110011–01#03 Standards : FCC 47 CFR § 2.1093 IEEE Std1528-2013 ANSI C95.1-2005 Date of Receipt : 2019-12-23 Date of Test : 2019-12-24 ~ 2019-12-30 Date of Issue : 2020-01-03 Remark: This report details the results of the testing carried out on one sample, the results contained in this report do not relate to other samples of the same product. The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in this report. Prepared by: Reviewed by: Approved by: (Jennifer Zhou) (Jesse) (Authorized signatory: Guoyou Chi) 0 TEST REPORT Report No.: SHE190110011-01SE Date: 2020-01-03 Page 2 of 65 Revision Record Version Date Revisions Revised By 1.0 2020-01-03 Original -- TEST REPORT Report No.: SHE190110011-01SE Date: 2020-01-03 Page 3 of 65 Contents 1 GENERAL INFORMATION ................................................................................................................................................... 5 1.1 TESTING LABORATORY ............................................................................................................................................................... 5 1.2 DETAILS OF APPLICATION .......................................................................................................................................................... 5 1.3 DETAILS OF EUT ........................................................................................................................................................................ 5 1.4 IDENTIFICATION OF AUXILIARY EQUIPMENT ............................................................................................................................... 6 1.5 THE HIGHEST REPORTED SAR VALUES ................................................................................................................................... 6 1.6 TEST METHODOLOGY ................................................................................................................................................................. 7 1.7 SAR LIMITS ................................................................................................................................................................................ 7 2 TEST ENVIRONMENT ........................................................................................................................................................... 9 2.1 ENVIRONMENTAL CONDITIONS ................................................................................................................................................... 9 2.2 EQUIPMENT LIST ........................................................................................................................................................................ 9 2.3 MEASUREMENT UNCERTAINTY................................................................................................................................................. 10 3 SAR MEASUREMENT SYSTEM ........................................................................................................................................ 12 3.1 DASY6 MEASUREMENT SERVER ............................................................................................................................................ 13 3.2 DATA ACQUISITION ELECTRONICS ........................................................................................................................................... 13 3.3 EX3DV4 E-FIELD PROBE ........................................................................................................................................................ 13 3.4 SAM PHANTOM ........................................................................................................................................................................ 14 3.5 DEVICE HOLDER FOR SAM TWIN PHANTOM ........................................................................................................................... 15 4 SAR MEASUREMENT PROCEDURES ............................................................................................................................ 16 4.1 POWER REFERENCE MEASUREMENT ...................................................................................................................................... 16 4.2 AREA SCAN PROCEDURES ....................................................................................................................................................... 16 4.3 ZOOM SCAN PROCEDURES ...................................................................................................................................................... 16 4.4 POWER DRIFT MEASUREMENT .................................................................................................................................................. 17 4.5 POSITION OF THE WIRELESS DEVICE IN RELATION TO THE PHANTOM ...................................................................................... 17 4.6 DEFINITION FOR TOUCH AND TILT ............................................................................................................................................ 18 4.7 DEFINITION FOR BODY-WORN ACCESSORY CONFIGURATIONS .............................................................................................. 20 4.8 DEFINITION FOR WIRELESS ROUTER CONFIGURATIONS ......................................................................................................... 20 4.9 DIELECTRIC PROPERTY MEASUREMENTS ............................................................................................................................... 20 4.10 SAR SYSTEM VERIFICATION ..........................…

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Test Report

Page 1 of 39 Annex A. Peak to Average Ratio 1. WCDMA_Band2 1.1. WCDMA Peak to Average Ratio(NTNV)(Channel:9262) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1852.4 0.1 2.96 13 Pass Page 2 of 39 1.2. WCDMA Peak to Average Ratio(NTNV)(Channel:9400) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1880 0.1 2.94 13 Pass Page 3 of 39 1.3. WCDMA Peak to Average Ratio(NTNV)(Channel:9538) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1907.6 0.1 2.82 13 Pass Page 4 of 39 2. LTE_Band2 2.1. LTE Peak to Average Ratio(NTNV)(Subtest:1, Channel:18700, Bandwidth:20, Modulation:QPSK, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1860 0.1 3.78 13 Pass Page 5 of 39 2.2. LTE Peak to Average Ratio(NTNV)(Subtest:2, Channel:18700, Bandwidth:20, Modulation:QPSK, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1860 0.1 5.14 13 Pass Page 6 of 39 2.3. LTE Peak to Average Ratio(NTNV)(Subtest:3, Channel:18700, Bandwidth:20, Modulation:Q16, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1860 0.1 4.53 13 Pass Page 7 of 39 2.4. LTE Peak to Average Ratio(NTNV)(Subtest:4, Channel:18700, Bandwidth:20, Modulation:Q16, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1860 0.1 6.08 13 Pass Page 8 of 39 2.5. LTE Peak to Average Ratio(NTNV)(Subtest:5, Channel:18900, Bandwidth:20, Modulation:QPSK, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1880 0.1 3.85 13 Pass Page 9 of 39 2.6. LTE Peak to Average Ratio(NTNV)(Subtest:6, Channel:18900, Bandwidth:20, Modulation:QPSK, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1880 0.1 5 13 Pass Page 10 of 39 2.7. LTE Peak to Average Ratio(NTNV)(Subtest:7, Channel:18900, Bandwidth:20, Modulation:Q16, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1880 0.1 4.92 13 Pass Page 11 of 39 2.8. LTE Peak to Average Ratio(NTNV)(Subtest:8, Channel:18900, Bandwidth:20, Modulation:Q16, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1880 0.1 5.91 13 Pass Page 12 of 39 2.9. LTE Peak to Average Ratio(NTNV)(Subtest:9, Channel:19100, Bandwidth:20, Modulation:QPSK, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1900 0.1 4.66 13 Pass Page 13 of 39 2.10. LTE Peak to Average Ratio(NTNV)(Subtest:10, Channel:19100, Bandwidth:20, Modulation:QPSK, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1900 0.1 4.96 13 Pass Page 14 of 39 2.11. LTE Peak to Average Ratio(NTNV)(Subtest:11, Channel:19100, Bandwidth:20, Modulation:Q16, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1900 0.1 5.61 13 Pass Page 15 of 39 2.12. LTE Peak to Average Ratio(NTNV)(Subtest:12, Channel:19100, Bandwidth:20, Modulation:Q16, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1900 0.1 5.99 13 Pass Page 16 of 39 3. LTE_Band4 3.1. LTE Peak to Average Ratio(NTNV)(Subtest:1, Channel:20050, Bandwidth:20, Modulation:QPSK, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1720 0.1 4.47 13 Pass Page 17 of 39 3.2. LTE Peak to Average Ratio(NTNV)(Subtest:2, Channel:20050, Bandwidth:20, Modulation:QPSK, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1720 0.1 5.08 13 Pass Page 18 of 39 3.3. LTE Peak to Average Ratio(NTNV)(Subtest:3, Channel:20050, Bandwidth:20, Modulation:Q16, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1720 0.1 5.2 13 Pass Page 19 of 39 3.4. LTE Peak to Average Ratio(NTNV)(Subtest:4, Channel:20050, Bandwidth:20, Modulation:Q16, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1720 0.1 5.97 13 Pass Page 20 of 39 3.5. LTE Peak to Average Ratio(NTNV)(Subtest:5, Channel:20175, Bandwidth:20, Modulation:QPSK, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1732.5 0.1 4.31 13 Pass Page 21 of 39 3.6. LTE Peak to Average Ratio(NTNV)(Subtest:6, Channel:20175, Bandwidth:20, Modulation:QPSK, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1732.5 0.1 5.2 13 Pass Page 22 of 39 3.7. LTE Peak to Average Ratio(NTNV)(Subtest:7, Channel:20175, Bandwidth:20, Modulation:Q16, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1732.5 0.1 5.27 13 Pass Page 23 of 39 3.8. LTE Peak to Average Ratio(NTNV)(Subtest:8, Channel:20175, Bandwidth:20, Modulation:Q16, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1732.5 0.1 6.08 13 Pass Page 24 of 39 3.9. LTE Peak to Average Ratio(NTNV)(Subtest:9, Channel:20300, Bandwidth:20, Modulation:QPSK, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1745 0.1 4.51 13 Pass Page 25 of 39 3.10. LTE Peak to Average Ratio(NTNV)(Subtest:10, Channel:20300, Bandwidth:20, Modulation:QPSK, RB Number: 100, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1745 0.1 5.21 13 Pass Page 26 of 39 3.11. LTE Peak to Average Ratio(NTNV)(Subtest:11, Channel:20300, Bandwidth:20, Modulation:Q16, RB Number: 1, RB Position:LOW) Center Frequency(MHz) PAR Percent (%) PAR (dB) Upper Limit (dB) Verdict 1745 0.1 5.43 13 Pass Page 27 of 39 3.12. LTE Peak to Average Ratio(NTNV)(Subtest:12, Cha…

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Test Report

Page 1 of 102 Annex B. Occupied Bandwidth 1. WCDMA_Band2 1.1. WCDMA Occupied Bandwidth(NTNV)(Channel:9262) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1852.4 99 26 0.1 Peak 4.12 4.7 5 Pass Page 2 of 102 1.2. WCDMA Occupied Bandwidth(NTNV)(Channel:9400) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1880 99 26 0.1 Peak 4.12 4.7 5 Pass Page 3 of 102 1.3. WCDMA Occupied Bandwidth(NTNV)(Channel:9538) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1907.6 99 26 0.1 Peak 4.13 4.73 5 Pass Page 4 of 102 2. WCDMA_Band5 2.1. WCDMA Occupied Bandwidth(NTNV)(Channel:4132) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 826.4 99 26 0.1 Peak 4.1 4.68 5 Pass Page 5 of 102 2.2. WCDMA Occupied Bandwidth(NTNV)(Channel:4182) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 836.4 99 26 0.1 Peak 4.12 4.71 5 Pass Page 6 of 102 2.3. WCDMA Occupied Bandwidth(NTNV)(Channel:4233) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 846.6 99 26 0.1 Peak 4.12 4.71 5 Pass Page 7 of 102 3. LTE_Band2 3.1. LTE Occupied Bandwidth(NTNV)(Subtest:1, Channel:18607, Bandwidth:1.4, Modulation:QPSK, RB Number: 6, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1850.7 99 26 0.027 Peak 1.09 1.28 1.4 Pass Page 8 of 102 3.2. LTE Occupied Bandwidth(NTNV)(Subtest:2, Channel:18607, Bandwidth:1.4, Modulation:Q16, RB Number: 6, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1850.7 99 26 0.027 Peak 1.09 1.28 1.4 Pass Page 9 of 102 3.3. LTE Occupied Bandwidth(NTNV)(Subtest:3, Channel:18900, Bandwidth:1.4, Modulation:QPSK, RB Number: 6, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1880 99 26 0.027 Peak 1.09 1.29 1.4 Pass Page 10 of 102 3.4. LTE Occupied Bandwidth(NTNV)(Subtest:4, Channel:18900, Bandwidth:1.4, Modulation:Q16, RB Number: 6, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1880 99 26 0.027 Peak 1.09 1.28 1.4 Pass Page 11 of 102 3.5. LTE Occupied Bandwidth(NTNV)(Subtest:5, Channel:19193, Bandwidth:1.4, Modulation:QPSK, RB Number: 6, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1909.3 99 26 0.027 Peak 1.09 1.27 1.4 Pass Page 12 of 102 3.6. LTE Occupied Bandwidth(NTNV)(Subtest:6, Channel:19193, Bandwidth:1.4, Modulation:Q16, RB Number: 6, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1909.3 99 26 0.027 Peak 1.09 1.29 1.4 Pass Page 13 of 102 3.7. LTE Occupied Bandwidth(NTNV)(Subtest:7, Channel:18615, Bandwidth:3, Modulation:QPSK, RB Number: 15, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1851.5 99 26 0.062 Peak 2.7 2.99 3 Pass Page 14 of 102 3.8. LTE Occupied Bandwidth(NTNV)(Subtest:8, Channel:18615, Bandwidth:3, Modulation:Q16, RB Number: 15, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1851.5 99 26 0.062 Peak 2.7 2.98 3 Pass Page 15 of 102 3.9. LTE Occupied Bandwidth(NTNV)(Subtest:9, Channel:18900, Bandwidth:3, Modulation:QPSK, RB Number: 15, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1880 99 26 0.062 Peak 2.71 2.97 3 Pass Page 16 of 102 3.10. LTE Occupied Bandwidth(NTNV)(Subtest:10, Channel:18900, Bandwidth:3, Modulation:Q16, RB Number: 15, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1880 99 26 0.062 Peak 2.7 3 3 Pass Page 17 of 102 3.11. LTE Occupied Bandwidth(NTNV)(Subtest:11, Channel:19185, Bandwidth:3, Modulation:QPSK, RB Number: 15, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1908.5 99 26 0.062 Peak 2.7 2.97 3 Pass Page 18 of 102 3.12. LTE Occupied Bandwidth(NTNV)(Subtest:12, Channel:19185, Bandwidth:3, Modulation:Q16, RB Number: 15, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1908.5 99 26 0.062 Peak 2.7 2.98 3 Pass Page 19 of 102 3.13. LTE Occupied Bandwidth(NTNV)(Subtest:13, Channel:18625, Bandwidth:5, Modulation:QPSK, RB Number: 25, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1852.5 99 26 0.1 Peak 4.52 4.98 5 Pass Page 20 of 102 3.14. LTE Occupied Bandwidth(NTNV)(Subtest:14, Channel:18625, Bandwidth:5, Modulation:Q16, RB Number: 25, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1852.5 99 26 0.1 Peak 4.51 4.96 5 Pass Page 21 of 102 3.15. LTE Occupied Bandwidth(NTNV)(Subtest:15, Channel:18900, Bandwidth:5, Modulation:QPSK, RB Number: 25, RB Position:LOW) Center Frequency (MHz) OBW Power (%) XdB Down (dB) RBW (MHz) Detector OBW (MHz) XdB Bandwidth (MHz) Upper Limit (MHz) Verdict 1880 99 26 0.1 Peak 4.5 5.01 5 Pass Page 22 …

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Test Report

Page 1 of 103 Annex C. Spurious Emission at Antenna Terminals 1. WCDMA_Band2 1.1. WCDMA Spurious Emission at Antenna Terminals(NTNV)(Channel:9262) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 Peak 0.102 -63.92 -13 Pass 601 0.15 30 0.01 Peak 0.15 -56.33 -13 Pass 2985 30 1000 0.1 Peak 937.494 -52.57 -13 Pass 9700 1000 3000 1 Peak 1853.427 22.66 -13 Pass 2000 3000 20000 1 Peak 16983.823 -26.27 -13 Pass 17000 Page 2 of 103 1.2. WCDMA Spurious Emission at Antenna Terminals(NTNV)(Channel:9400) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 Peak 0.123 -65.26 -13 Pass 601 0.15 30 0.01 Peak 0.16 -57.13 -13 Pass 2985 30 1000 0.1 Peak 764.776 -51.77 -13 Pass 9700 1000 3000 1 Peak 1878.439 22.96 -13 Pass 2000 3000 20000 1 Peak 19266.957 -25.9 -13 Pass 17000 Page 3 of 103 1.3. WCDMA Spurious Emission at Antenna Terminals(NTNV)(Channel:9538) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 Peak 0.098 -65.12 -13 Pass 601 0.15 30 0.01 Peak 0.15 -56.32 -13 Pass 2985 30 1000 0.1 Peak 918.292 -51.47 -13 Pass 9700 1000 3000 1 Peak 1906.453 23.17 -13 Pass 2000 3000 20000 1 Peak 16780.811 -25.88 -13 Pass 17000 Page 4 of 103 2. WCDMA_Band5 2.1. WCDMA Spurious Emission at Antenna Terminals(NTNV)(Channel:4132) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 Peak 0.012 -64.14 -13 Pass 601 0.15 30 0.01 Peak 0.16 -58.2 -13 Pass 2985 30 500 0.1 Peak 465.993 -52.87 -13 Pass 4700 500 1000 0.1 Peak 847.169 17.93 -13 Pass 5000 1000 10000 1 Peak 9611.957 -34.86 -13 Pass 9000 Page 5 of 103 2.2. WCDMA Spurious Emission at Antenna Terminals(NTNV)(Channel:4182) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 Peak 0.107 -64.83 -13 Pass 601 0.15 30 0.01 Peak 0.15 -57.17 -13 Pass 2985 30 500 0.1 Peak 434.886 -53.37 -13 Pass 4700 500 1000 0.1 Peak 837.668 16.67 -13 Pass 5000 1000 10000 1 Peak 2444.16 -26.51 -13 Pass 9000 Page 6 of 103 2.3. WCDMA Spurious Emission at Antenna Terminals(NTNV)(Channel:4233) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 Peak 0.112 -64.54 -13 Pass 601 0.15 30 0.01 Peak 0.17 -57.51 -13 Pass 2985 30 500 0.1 Peak 434.386 -53.55 -13 Pass 4700 500 1000 0.1 Peak 846.169 16.53 -13 Pass 5000 1000 10000 1 Peak 9580.953 -35.13 -13 Pass 9000 Page 7 of 103 3. LTE_Band2 3.1. LTE Spurious Emission at Antenna Terminals(NTNV)(Subtest:1, Channel:18607, Bandwidth:1.4, Modulation:QPSK, RB Number: 1, RB Position:LOW) Start Frequency (MHz) Stop Frequency (MHz) RBW (MHz) Detector Frequency (MHz) Power (dBm) Limit (dBm) Verdict Sweep Point 0.009 0.15 0.001 RMS 0.021 -70.67 -13 Pass 601 0.15 30 0.01 RMS 0.15 -64.04 -13 Pass 2985 30 1000 0.1 RMS 934.493 -63.23 -13 Pass 9700 1000 1840 1 RMS 1840 -52.5 -13 Pass 840 1840 1920 1 RMS 1850.267 22.39 60 Pass 601 1920 3000 1 RMS 2447.488 -43.9 -13 Pass 1080 3000 12000 1 RMS 11516.946 -44.38 -13 Pass 9000 12000 20000 1 RMS 19315.914 -36.92 -13 Pass 8000 Page 8 of 103 3.2. LTE Spurious Emission at Antenna Terminals(NTNV)(Subtest:2, Channel:1…

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Contact Information

Applicant

Mauricio Velasco(Chief Technology Officer)
[email protected]+1.631.495.7537Fax: (407) 857-3747

Technical Contact

PCD, LLC
[email protected]

United States

Test Firm

ICAS Testing Technology Service (Shanghai) Co, LtdZhenyang Zhang
[email protected]086 021516829997864

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
822H826.4 MHz - 846.6 MHz190.00 mW4M70F9W19.52 Hz
Confidentiality
Long Term
Grant Notes
Power output is ERP for Part 22 and EIRP for Parts 24/27. Body-worn operations are restricted to belt-clips, holsters or similar accessories that have no metallic component in the assembly and which provide at least 1.0 cm separation between the device and the users body. End users must be informed of the body worn requirements for satisfying RF Exposure compliance. The highest reported SAR values for body-worn accessory, Product Specific (Wireless Router) and simultaneous transmission conditions are 1.37W/kg, 1.37 W/kg and 1.55 W/kg, respectively.

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