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OJFDMRUDPAM67Corning Everon 6000 DAS - dMRU (medium power modular remote unit) (600 MHz/Lower 700/Upper 700/FirstNet)

Corning Optical Communication LLC
Corning Everon 6000 DAS - dMRU (medium power modular remote unit)  (600 MHz/Lower 700/Upper 700/FirstNet) - FCC ID OJFDMRUDPAM67 - Corning Optical Communication LLC
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Application Details

Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Date of Grant
Mar 11, 2021
Application Purpose
Original Equipment
Date of Application
Mar 11, 2021
Equipment Note
Corning Everon 6000 DAS - dMRU (medium power modular remote unit) (600 MHz/Lower 700/Upper 700/FirstNet)
Frequency Range
728.00000000 - 768.00000000
Company
Corning Optical Communication LLC
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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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

Everon™ 6000 v1.0 User Manual Corning Optical Communications www.corning.com User Manual v1.0 Everon™ 6000 v1.0 User Manual User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 3 of 174 Preface Material About this Manual This manual describes how to install, use, configure and manage Corning’s Everon™ 6000 1.0 platform. It includes a description of the system end-to-end first time and on-going configuration, management and maintenance. Intended Users and Scope This manual is intended for Corning system installers, technicians and users. It is assumed that the user is familiar with the system and its units, and understands the basic functionality of the system. Contacting Technical Support HelpDesk Corning technical support contact information: email: [email protected] Tel: [800] 787 1266 Legal Notice Copyright Copyright © 2021 Corning., All Rights Reserved Disclaimer This document contains proprietary information of Corning and may not be reproduced in any form without the prior written consent of Corning. No part of this document may be reproduced, translated, stored in a retrieval system or transmitted in any form and by any means, electronic, mechanical, photographic, photocopying, recording, or otherwise, without the prior written permission of Corning. Information provided in this document is subject to change without notice and does not represent a commitment on the part of Corning. All products and company names are trademarks or registered trademarks of their respective holders. Software License Terms The software and the system design is the property of Corning. It is supplied to the user to be used solely for its stated purposes. It is strictly forbidden to make copies of the software or transfer it in any way, for any purpose, to any third party. The license to use the software is granted to the user only for the specific system it is installed on by Corning, or its authorized distributors and representatives. User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 4 of 174 The purchaser shall not modify the software in any way. It is strictly forbidden to use this product for any purpose other than originally designated for or stipulated by Corning. Conventions Important information is highlighted in a frame, as explained below: Warning : Actions requiring special attention to avoid serious bodily injury; For example, working with high voltage components Caution: Actions requiring special attention, to avoid possible damage to equipment Note: Hints and recommendations for working efficiently User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 5 of 174 Warranties Hardware Warranty Corning Optical Communications Wireless, Inc. (“Corning”)warrants to the original purchaser (“Customer”) that for the duration of the warranty period, one (1) year, commencing on the date of shipment of the Hardware, unless otherwise agreed in writing by Corning (the “Hardware Warranty Period”), the Hardware furnished by Corning shall be free in all material respects from defects in material and workmanship, and shall conform to the applicable portions of the Specifications, as defined below (the “Hardware Warranty”). If notified by Customer of any such defects in material or workmanship or nonconformity with applicable portions of the Specifications within the Hardware Warranty Period, Corning shall promptly, at its own election and expense, repair or replace any such Hardware proven to be defective under the terms of this Hardware Warranty. Such repair or replacement shall be Customer’s sole remedy and Corning’s sole obligation in the event this Hardware Warranty is invoked. If any components comprising a part of the Hardware are replaced or repaired during the Hardware Warranty Period, the Hardware Warranty Period for such repaired or replaced components shall extend to the longer of (i) the balance of the Hardware Warranty Period or (ii) three (3) months from the date of repair or replacement. For purposes of this Warranty, “Specifications” shall mean the specifications and performance standards of the Products as set forth in documents published by Corning and delivered to Customer which contain technical specifications or performance standards for the Products. If Customer invokes this Hardware Warranty, it shall notify Corning promptly of the claimed defect. Customer will allow Corning to inspect the Hardware at Customer’s location, or to return the Hardware to Corning’s closest repair facility. For Hardware returned to Corning’s repair facility, Customer shall be responsible for payment of all transportation and freight costs (including insurance) to Corning’s repair facility, and Corning shall be responsible for all transportation and freight costs (including insurance) incurred in connection with the shipment of such Hardware to other repair facilities of Corning and/or its return to Customer. Notwithstanding the foregoing, in no event will Corning be liable for damage to Products resulting from improper handling during or after shipment, misuse, neglect, improper installation, operation or repair (other than by authorized Corning personnel), alteration, accident, or for any other cause not attributable to defects in materials or workmanship on the part of Corning. Corning shall not reimburse or make any allowance to Customer for any labor charges incurred by Customer for replacement or repair of any goods unless such charges are authorized in advance in writing by Corning. Software Warranty Corning warrants to the original purchaser (“Customer”) that for the duration of the warranty period, one (1) year, commencing on the date of shipment of the Software, unless otherwise agreed in writing by Corning (the “Software Warranty Period”), the Software shall conform with, and perform the functions set forth in the Specifications, and shall be free from defects in material or workmanship (th…

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Users Manual

User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 91 of 174 x LAN Port: 1 Gb Ethernet connection to the customer's network for remote management. By default, the port is configured to have a static IP address: 192.168.1.1; Subnet Mask: 255.255.0.0. Alternatively, the port can be configured as a DHCP client. IPv4 and IPv6 network protocols can be simultaneously supported. x INTERNAL Ports: Four RJ45, 100 Mb Ethernet ports used for management of connected ACMs. Note: Any one of these ports can also be used for a local connection if required. Default settings: IP: 10.0.0.1; Subnet Mask: 255.0.0.0 3.3 Open a Local Session Below are the instructions for opening a local management session, to perform basic system configurations via the system GUI. ¾ To Open the system GUI 1. Connect a computer (i.e., laptop) to the HCM LOCAL port via an RJ45 Cat 5 Ethernet cable, as shown below: 2. The LOCAL port is set to a static IP Address by default: 172.16.1.1; Subnet Mask: 255.255.0.0. Your laptop/tablet network parameters must be set to match the subnet of the default IP address. Note: The laptop/tablet IP address must be different than the LOCAL port IP address. Set up your laptop/tablet network parameters by following the steps below (the steps may vary slightly depending on the OS version used): Connect the computer to the LOCAL port User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 92 of 174 1. Go to the Control Panel and select Network and Sharing Center 2. Select Change adapter settings (in the left menu) User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 93 of 174 3. Right click Local Area Connection and select Properties 4. Select Internet Protocol Version 4 and click Properties The window below appears: Set the IP address according to the default IP address of the LOCAL port and the subnet mask. An example of a possible IP address is: 172.16.1.5. The IP address can't be 172.16.1.1 as this address is used by the LOCAL port. User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 94 of 174 3. Once the connection is established, open a browser and type-in the LOCAL port default IP address in the address bar: 172.16.1.1. The HCM Controller Log In dialog appears: 4. For first-time authentication use the following default values: x Username: admin x Password: default provided with your system. x Group: leave blank. Note: IMPORTANT! For security reasons it is highly recommended to immediately change the password (via the "Admin" -> "Security" tab) and log in again using the new password. 5. Click the "SIGN IN" button. System GUI main screen appears. User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 95 of 174 3.4 Screen Layout The main menu (located to the left of the window) lists all the available management options. Next to the main menu either the system tree or the corresponding sub-options are displayed. The display changes according to the option selected from the main menu. Parameters Display area System tree / sub- options Main Menu options User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 96 of 174 3.5 Main Menu Options The table below lists the management options provided by the main menu: Table 10: Main Menu Options Icon Enables user to... View the system topology and information about the different system elements. View all system events and generate reports. Perform initial system configurations. This option is only visible to the system administrator. Administrative options to perform system configurations, implement updates, define and monitor user's activity. View the information of the different stacks of the system. Manage the system RF channels. User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 97 of 174 3.6 Remote Management This section describes the configurations required for remote session access using Ethernet connection via the LAN port. At this point the system is ready to be connected to the LAN according to the instructions below. For HCM modules only – using the provided RJ45/RJ45 communication cable, connect the HCM LAN port to the corporate LAN: The LAN port is set to a static IP address by default: 192.168.1.1; Subnet Mask: 255.255.0.0. ¾ To configure the HCM LAN port 1. IMPORTANT: Make sure the HCM LAN port is connected to the corporate LAN. 2. In the main menu bar, click Æ 3. Select the IPv4 LAN Port or IPv6 LAN Port tabs and click the button. 4. The LAN port is set to a static IP address, by default: 192.168.1.1; Subnet Mask: 255.255.0.0. You may change the static IP address, subnet mask and default gateway manually to legal values. Note: make sure the values youenter in the above fields aren't used by other system elements, and are different than the default values. Multiple ACM units may be connected to a single HCM via the INTERNAL ports for management purposes. Only HCM modules should be connected to the corporate LAN. ACM modules are connected via the HCM modules. User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 98 of 174 Make sure the address format matches IPv4 or IPv6, according to the tab being updated. For Dynamic IP Address — set DHCP as Client, then click OK. 5. The HCM restarts after the LAN IP address is updated. 6. To open a remote management session: Open a browser and enter the LAN port IP Address in the address bar. Note: A Ping Tool option is provided to verify access to IP hosts (rather than opening another application). For more information about the ping tool and the IP Settings tab refer to section 5.1.3.6. User Manual v1.0 UM - Everon 6000 DAS - 1-MAR-2021 - clear of comments| March 2021 |Page 99 of 174 4. Initial Commissioning This section describes all the initial configurations that must be done by the system administrator. 4.1 Create new …

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Attestation Statements

FCC Attestation Letter January 21, 2021 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Attestation letter per KDB 935210 D02 Clause 4 paragraph d for FCC ID: OJFDMRUDPAM67 Warning label message will be also shown in online and point-of-sale marketing materials and on the outside packing of device. Thank you Company: Corning Optical Communications Wireless Authorized Signature: Printed Name: Isaac Nisaan Date: January 21, 2021

Cover Letter(s)

Short Term – 180 days a. CONF APPENDIX D-MRU Lower 700 OJFDMRUDPAM67 UserMan.pdf

Cover Letter(s)

January 21, 2021 To: Timco Engineering Inc. To Whom It May Concern We hereby authorize Mr. Ilan Cohen of I.T.L. (Product Testing) Ltd (ITL) to sign Form 731 on our behalf regarding the FCC Certification Process for the following application: FCC ID: OJFDMRUDPAM67 Thank you Company: Corning Optical Communications Wireless Authorized Signature: Printed Name: Isaac Nisaan Date: January 21, 2021

Cover Letter(s)

January 21, 2021 To: Timco Engineering Inc. To Whom It May Concern We hereby authorize Mr. Ilan Cohen of I.T.L. (Product Testing) Ltd (ITL) to act on our behalf regarding the FCC Certification Process for the following application: FCC ID: OJFDMRUDPAM67 Thank you Company: Corning Optical Communications Wireless Authorized Signature: Printed Name: Isaac Nisaan Date: January 21, 2021

ID Label/Location Info

FCC ID AND Booster Warning Labels

ID Label/Location Info

Labels Sample

RF Exposure Info

R.F Exposure/Safety Calculation for FCC ID: OJFDMRUDPAM67 (LTE 700+600) The E.U.T. is rack or wall mounted. The typical distance between the E.U.T. and the general population is >120cm. Calculation of Maximum Permissible Exposure (MPE) Based on Section 1.1310 Requirements (a) FCC limit at 751.5 MHz is: f/1500 = 0.50100 mW/cm 2 (b) FCC limit at 627 MHz is: f/1500 = 0.41800 mW/cm 2 Using table 1 of Section 1.1310 limit for general population/uncontrolled exposures, the above level is an average over 30 minutes. (c)The power density produced by the E.U.T. is P t - Transmitted Peak Power (worst case) G T - Antenna Gain (worst case) , 12.5dBi= 17.8 numeric R- Distance from Transmitter 120 cm (d ) Peak power density at worst case continuous transmission: generation Modulation Pt (dBm) Pt (W) Antenna type G T (dBi) G T numeric R (cm) S AV (mW/cm 2 ) Limit (mW/cm 2 ) 5G 16QAM 34.22 2.642 External 12.5 17.8 120 0.25988 0.50100 64QAM 34.23 2.649 External 12.5 17.8 120 0.26057 0.50100 256QAM 33.98 2.500 External 12.5 17.8 120 0.24591 0.50100 QPSK 34.27 2.673 External 12.5 17.8 120 0.26293 0.50100 4G 16QAM 33.98 2.500 External 12.5 17.8 120 0.24591 0.50100 64QAM 33.94 2.477 External 12.5 17.8 120 0.24365 0.50100 QPSK 33.99 2.506 External 12.5 17.8 120 0.24650 0.50100 LTE 700 generation Modulation Pt (dBm) Pt (W) Antenna type G T (dBi) G T numeric R (cm) S AV (mW/cm 2 ) Spec (mW/cm 2 ) 5G 16QAM 34.34 2.716 External 12.5 17.8 120 0.26716 0.41800 64QAM 34.04 2.535 External 12.5 17.8 120 0.24936 0.41800 256QAM 33.98 2.500 External 12.5 17.8 120 0.24591 0.41800 QPSK 34.31 2.698 External 12.5 17.8 120 0.26539 0.41800 LTE 600 (e) This is below the FCC limit. 2 4 R GP S tt π =

Test Report

Test Report E220863.00 Corning Optical Communication Wireless Page 1 of 159 FCC ACC M Ver 1.1 05Mayl 2000 DATE: 8 March 2021 I.T.L. (PRODUCT TESTING) LTD. FCC Radio Test Report For Corning Optical Communication Wireless Equipment under test: Corning Everon 6000 DAS - dMRU dMRU Medium Power Modular Unit (LTE 600MHZ) Tested by: _____________________________ M. Zohar Approved by: _____________________________ D. Shidlowsky This report must not be reproduced, except in full, without the written permission of I.T.L. (Product Testing) Ltd. This report relates only to items tested. Test Report E220863.00 Corning Optical Communication Wireless Page 2 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Measurement/Technical Report for Corning Optical Communication Wireless Corning Everon 6000 DAS - dMRU dMRU Medium Power Modular Unit (LTE 600MHZ) FCC ID: OJFDMRUDPAM67 This report concerns: Original Grant: X Class II change: Class I change: Equipment type: Part 20 Industrial Booster (CMRS) Limits used: 47CFR Parts 2; 27 Measurement procedure used is KDB 935210 D05 v01r04 April 2020 and ANSI IEEE C63.26-2015 Substitution Method used as in ANSI TIA-603-E-2016 Application for Certification Applicant for this device: prepared by: (different from "prepared by") R. Pinchuck Isaac Nissan ITL (Product Testing) Ltd. Corning Optical Communication Wireless 1 Bat Sheva St. 8253 1 st Avenue Lod 7120101 Vienna, VA 22812 Israel U.S.A. e-mail [email protected] Tel: +1-703 855-1773 e-mail: [email protected] Test Report E220863.00 Corning Optical Communication Wireless Page 3 of 159 FCC ACC M Ver 1.1 05Mayl 2000 TABLE OF CONTENTS 1 GENERAL INFORMATION --------------------------------------------------------------------------- 5 1.1 Administrative Information ........................................................................... 5 1.2 List of Accreditations ................................................................................... 6 1.3 Product Description ..................................................................................... 7 1.4 Test Methodology ........................................................................................ 7 1.5 Test Facility ................................................................................................. 7 1.6 Measurement Uncertainty ........................................................................... 7 2 SYSTEM TEST CONFIGURATION ----------------------------------------------------------------- 8 2.1 Justification .................................................................................................. 8 2.2 EUT Exercise Software ............................................................................... 8 2.3 Special Accessories .................................................................................... 8 2.4 Equipment Modifications ............................................................................. 8 2.5 Configuration of Tested System .................................................................. 9 3 TEST SET-UP PHOTOS ----------------------------------------------------------------------------- 11 4 RF POWER OUTPUT -------------------------------------------------------------------------------- 14 4.1 Test Specification ...................................................................................... 14 4.2 Test Procedure .......................................................................................... 14 4.3 Test Limit ................................................................................................... 14 4.4 Test Results............................................................................................... 14 4.5 Test Equipment Used; RF Power Output .................................................. 35 5 BAND EDGE SPECTRUM -------------------------------------------------------------------------- 36 5.1 Test Specification ...................................................................................... 36 5.2 Test Procedure .......................................................................................... 36 5.3 Test Limit ................................................................................................... 36 5.4 Test Results............................................................................................... 36 5.5 Test Equipment Used; Band Edge Spectrum ........................................... 49 6 PEAK TO AVERAGE POWER RATIO ---------------------------------------------------------- 50 6.1 Test Specification ...................................................................................... 50 6.2 Test Procedure .......................................................................................... 50 6.3 Test Limit ................................................................................................... 50 6.4 Test Results............................................................................................... 50 6.5 Test Equipment Used; 0.1% PAPR ........................................................... 71 7 OCCUPIED BANDWIDTH -------------------------------------------------------------------------- 72 7.1 Test Specification ...................................................................................... 72 7.2 Test Procedure .......................................................................................... 72 7.3 Test Limit ................................................................................................... 72 7.4 Test Results............................................................................................... 72 7.5 Test Equipment Used; Occupied Bandwidth ........................................... 113 8 SPURIOUS EMISSIONS AT ANTENNA TERMINALS ------------------------------------ 114 8.1 Test Specification .................................................................................... 114 8.2 Test Procedure ............................................…

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Test Report

Test Report E220863.00 Corning Optical Communication Wireless Page 126 of 159 FCC ACC M Ver 1.1 05Mayl 2000 I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 622MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Operator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 10MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 634.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 10MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 647MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 10MHz Figure 489: Spurious Emissions at Antenna Terminal 64QAM, 622.0MHz, B.W. 10MHz, Sub Carrier 30kHz Figure 490: Spurious Emissions at Antenna Terminal 64QAM, 634.5MHz, B.W. 10MHz, Sub Carrier 30kHz Figure 491: Spurious Emissions at Antenna Terminal 64QAM, 647.0MHz, B.W. 10MHz, Sub Carrier 30kHz Test Report E220863.00 Corning Optical Communication Wireless Page 127 of 159 FCC ACC M Ver 1.1 05Mayl 2000 I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 624.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Operator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 15MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 634.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 15MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 644.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 15MHz Figure 492: Spurious Emissions at Antenna Terminal 64QAM, 624.5MHz, B.W. 15MHz, Sub Carrier 15kHz Figure 493: Spurious Emissions at Antenna Terminal 64QAM, 634.5MHz, B.W. 15MHz, Sub Carrier 15kHz Figure 494: Spurious Emissions at Antenna Terminal 64QAM, 644.5MHz, B.W. 15MHz, Sub Carrier 15kHz Test Report E220863.00 Corning Optical Communication Wireless Page 128 of 159 FCC ACC M Ver 1.1 05Mayl 2000 I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 624.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Operator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 15MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 634.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 15MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 644.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 15MHz Figure 495: Spurious Emissions at Antenna Terminal 64QAM, 624.5MHz, B.W. 15MHz, Sub Carrier 30kHz Figure 496: Spurious Emissions at Antenna Terminal 64QAM, 634.5MHz, B.W. 15MHz, Sub Carrier 30kHz Figure 497: Spurious Emissions at Antenna Terminal 64QAM, 644.5MHz, B.W. 15MHz, Sub Carrier 30kHz Test Report E220863.00 Corning Optical Communication Wireless Page 129 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Figure 498: Spurious Emissions at Antenna Terminal 64QAM, 627.0MHz, B.W. 20MHz, Sub Carrier 15kHz Figure 499: Spurious Emissions at Antenna Terminal 64QAM, 634.5MHz, B.W. 20MHz, Sub Carrier 15kHz Figure 500: Spurious Emissions at Antenna Terminal 64QAM, 642.0MHz, B.W. 20MHz, Sub Carrier 15kHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 627MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Operator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 20MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 634.5MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 20MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 642MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Company Name: CORNINGOperator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 20MHz Test Report E220863.00 Corning Optical Communication Wireless Page 130 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Figure 501: Spurious Emissions at Antenna Terminal 64QAM, 627.0MHz, B.W. 20MHz, Sub Carrier 30kHz Figure 502: Spurious Emissions at Antenna Terminal 64QAM, 634.5MHz, B.W. 20MHz, Sub Carrier 30kHz Figure 503: Spurious Emissions at Antenna Terminal 64QAM, 642.0MHz, B.W. 20MHz, Sub Carrier 30kHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spurious emissions 627MHz 9.0K100.0K1.0M10.0M100.0M1.0G10.0G Frequency (Hz) -100.0 -80.0 -60.0 -40.0 -20.0 0 20.0 50.0 Amplitude (dBm) Operator: A.Shelly Company name - CORNING Model name - DMRU P/N - Modulation - 64QAM BW - 20MHz I.T.L.-Israel Testing Laboratries FCC Part 27 and Part 2 Spuri…

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Test Report

Test Report E220863.00 Corning Optical Communication Wireless Page 50 of 159 FCC ACC M Ver 1.1 05Mayl 2000 6 Peak to Average Power Ratio 6.1 Test Specification FCC Part 27, Subpart C, Section 50 6.2 Test Procedure (Temperature (20°C)/ Humidity (40%RH)) The method used is detailed in FCC KDB 971168 D03 v01 Measurements was using CCDF function for each modulation. 6.3 Test Limit The peak-to-average power ratio (PAPR) of the transmitter output power must not exceed 13 dB. 6.4 Test Results JUDGEMENT: Passed For additional information see Table 11 to Table 14 and Figure 168 to Figure 263. Test Report E220863.00 Corning Optical Communication Wireless Page 51 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Modulation Bandwidth Sub Carrier Operation Frequency 0.1% PAPR Limit (MHz) (kHz) (MHz) (dB) (dB) 16QAM 5 15 619.5 8.49 13 30 8.48 15 634.5 8.65 30 8.61 15 649.5 8.75 30 8.56 10 15 622.0 8.57 30 8.60 15 634.5 8.59 30 8.64 15 647.0 8.63 30 8.56 15 15 624.5 8.95 30 8.59 15 634.5 8.99 30 8.60 15 644.5 8.99 30 8.56 20 15 627.0 8.58 30 8.37 15 634.5 8.59 30 8.42 15 642.0 8.51 30 8.28 Table 11 Test Results Peak to Average Power Ratio 16 QAM Test Report E220863.00 Corning Optical Communication Wireless Page 52 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Modulation Bandwidth Sub Carrier Operation Frequency 0.1% PAPR Limit (MHz) (kHz) (MHz) (dB) (dB) 64QAM 5 15 619.5 8.30 13 30 8.09 15 634.5 8.47 30 8.19 15 649.5 8.47 30 8.08 10 15 622.0 8.31 30 8.33 15 634.5 8.30 30 8.45 15 647.0 8.19 30 8.57 15 15 624.5 8.17 30 8.40 15 634.5 8.24 30 8.46 15 644.5 8.29 30 8.44 20 15 627.0 8.37 30 8.37 15 634.5 8.39 30 8.40 15 642.0 8.45 30 8.28 Table 12 Test Results Peak to Average Power Ratio 64 QAM Test Report E220863.00 Corning Optical Communication Wireless Page 53 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Modulation Bandwidth Sub Carrier Operation Frequency 0.1% PAPR Limit (MHz) (kHz) (MHz) (dB) (dB) 256QAM 5 15 619.5 8.44 13 30 8.42 15 634.5 8.58 30 8.56 15 649.5 8.56 30 8.64 10 15 622.0 8.53 30 8.39 15 634.5 8.60 30 8.47 15 647.0 8.43 30 8.47 15 15 624.5 8.46 30 8.36 15 634.5 8.53 30 8.46 15 644.5 8.55 30 8.50 20 15 627.0 8.38 30 8.42 15 634.5 8.32 30 8.39 15 642.0 8.35 30 8.36 Table 13 Test Results Peak to Average Power Ratio 256 QAM Test Report E220863.00 Corning Optical Communication Wireless Page 54 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Modulation Bandwidth Sub Carrier Operation Frequency 0.1% PAPR Limit (MHz) (kHz) (MHz) (dB) (dB) QPSK 5 15 619.5 8.18 13 30 8.72 15 634.5 8.27 30 8.88 15 649.5 8.25 30 8.86 10 15 622.0 8.41 30 8.45 15 634.5 8.51 30 8.48 15 647.0 8.48 30 8.43 15 15 624.5 8.47 30 8.47 15 634.5 8.40 30 8.49 15 644.5 8.46 30 8.69 20 15 627.0 8.37 30 8.23 15 634.5 8.45 30 8.34 15 642.0 8.47 30 8.43 Table 14 Test Results Peak to Average Power Ratio QPSK Test Report E220863.00 Corning Optical Communication Wireless Page 55 of 159 FCC ACC M Ver 1.1 05Mayl 2000 Figure 168: 16QAM 5MHz B.W;…

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Contact Information

Applicant

Dana Whitney(Director of Operations and Program)
[email protected]817-431-7894Fax: 817-431-7894

Test Firm

ITL PRODUCT TESTING LTDIlan Cohen
[email protected]972 8 918 6100Fax: +972 8 915 3101

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
127,90S728 MHz - 768 MHz2.3 WW7DAmp
Confidentiality
Long Term
Grant Notes
This device is a 5G In-Building DAS Industrial Booster. Professional installation is required. Power output listed is conducted. This transmitter operates as unit as part of a system along with master unit components as described in this filing. Antenna installation must provide at least 120 cm separation distance from all persons as described in this filling. The antenna(s) used for the transmitter must be fixed-mounted on output permanent structures with maximum permissive gain of external antenna up to 12.5 dBi. RF exposure compliance is addressed at the time of licensing, as required by the responsible FCC bureau(s), including antenna co-location requirement of 1.1307(b)(3).

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