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S2O-AXIOMModular RF Repeater (Bi-Directional Amplifier)

Advanced RF Technologies, Inc.
Modular RF Repeater (Bi-Directional Amplifier) - FCC ID S2O-AXIOM - Advanced RF Technologies, Inc.
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Nov 04, 2010
Application Purpose
Original Equipment
Date of Application
Nov 04, 2010
Equipment Note
Modular RF Repeater (Bi-Directional Amplifier)
Frequency Range
1710.00000000 - 1755.00000000
Company
Advanced RF Technologies, Inc.
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

Axiom Repeater U SER MANUAL Version 0.3 3116 Van owen St. Burbank, CA 91505 Tel: 818-8 40-8131 Fax: 818-840-8138 www.adrftech.com Axiom Repeater User Manual V0.3 Page | 2 Glossary The following is a list of abbreviations and terms used throughout this document. Abbreviation/Term Definition AGC Automatic Gain Control ALC Automatic Level Control AROMS ADRF’ Repeater Operation and Management System BTS Base Transceiver Station CDMA Code Division Multiple Access CFE Compact Front End CW Continuous Wave (un-modulated signal) DAS Distributed Antenna System DL Downlink Downlink The path covered from the Base Transceiver Station (BTS) to the subscribers service area via the repeater HPA High Power Amplifier HW Hardware IF Intermediate Frequency LNA LTE Low Noise Amplifier Long Term Evolution MS Mobile Station PLL Phased Locked Loop PS Power Supply RF Radio Frequency SQE Signal Quality Estimate SW Software UL Uplink Uplink The path covered from the subscribers service area to the Base Transceiver Station(BTS) via the repeater VSWR Voltage Standing Wave Ratio Axiom Repeater User Manual V0.3 Page | 3 Released version: 0.3 Information in this document is subject to change without notice. Advanced RF Technologies, Inc. 1996-2010. All rights reserved. Please send comments to: E-Mail: [email protected] Phone: (818) 840-8131 (800) 313-9345 Fax: (818) 840-8138 Address: Advanced RF Technologies, Inc. Attention: Technical Publications Department 3116 Vanowen St. Burbank, CA 91505 USA www.adrftech.com Revision History Version Author DescriptionDate 0.1 YH Ko Initial ReleaseDec 29, 2009 0.3 Sun KimFormat and content updatesFeb 9, 2010 Axiom Repeater User Manual V0.3 Page | 4 TABLE OF CONTENTS 1. AXIOM REPEATER ........................................................................................................ 6 1.1 Introduction ............................................................................................................... 6 1.1.1 Highlights ........................................................................................................ 6 1.1.2 Parts List ......................................................................................................... 7 1.1.3 Repeater Quick View ...................................................................................... 8 2. WARNINGS AND HAZARDS ........................................................................................ 9 3. AXIOM OVERVIEW ..................................................................................................... 11 3.1 Switches & Fault Indicators .................................................................................... 11 3.1.1 MCU LEDs ................................................................................................... 11 3.1.2 RFU LEDs .................................................................................................... 12 3.1.3 Alarms ........................................................................................................... 13 3.2 Switches and Ports .................................................................................................. 15 3.2.1 Power Switch ................................................................................................ 15 3.2.2 Back Up Battery Switch & Battery Port ....................................................... 15 3.2.3 External Modem and Ethernet Port ............................................................... 16 3.2.4 RF Ports ........................................................................................................ 16 3.3 Modular concept ...................................................................................................... 17 3.3.1 System modular concept ............................................................................... 17 3.3.2 Band (RFU) modular concept ....................................................................... 17 3.3.3 Combining method of the various optional configuration ............................ 18 3.4 Power supply architecture ....................................................................................... 20 3.5 Installation ............................................................................................................... 20 3.5.1 Procedure ...................................................................................................... 20 3.5.2 Grounding ..................................................................................................... 23 3.5.3 Antenna Separation/Isolation ........................................................................ 24 3.5.4 Line of Sight ................................................................................................. 25 4. AXIOM WEB-GUI SETUP ........................................................................................... 26 4.1 Repeater/PC Connection Using Web-GUI .............................................................. 26 4.2 Status Tab ................................................................................................................ 27 4.2.1 Status: Axiom-xx-700 ................................................................................... 28 4.2.2 Status: Axiom-xx-C ...................................................................................... 29 4.2.3 Status: Axiom-xx-P ....................................................................................... 29 4.2.4 Status: Axiom-xx-A ...................................................................................... 30 4.3 Control Tab .............................................................................................................. 31 4.3.1 Control: Axiom-xx-700 ................................................................................. 35 4.3.2 Control: Axiom-xx-C .................................................................................... 35 4.3.3 Control: Axiom-xx-P ..................…

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External Photos

1 Annex A - EUT Photographs 1.1 EUT - Top View 1.2 EUT - Side View 2 1.3 EUT - Front View 1.4 EUT – Rear View 3 1.5 EUT – Power Supply Front View 1.6 EUT – Power Supply Rear View

ID Label/Location Info

FCC ID Label Requirements FCC Β§ 2.925 Identification of equipment (a) Each equipment covered in an application for equipment authorization shall bear a nameplate or label listing the following: (1) FCC Identifier consisting of the two elements in the exact order specified in Β§2.926. The FCC Identifier shall be preceded by the term FCC ID in capital letters on a single line, and shall be of a type size large enough to be legible without the aid of magnification. Example: FCC ID XXX123. XXXβ€”Grantee Code 123β€”Equipment Product Code FCC ID Label Content FCC Label Location on EUT Label here

Internal Photos

4 1.7 EUT – Cellular Band Module Front View 1.8 EUT – Cellular Band Module Rear View 5 1.9 EUT – Cellular Band Module Side View (1) 1.10 EUT – Cellular Band Module Side View (2) 6 1.11 EUT – Cellular Band Module Case off Top View 1.12 EUT – Cellular Band Module PCB-1 Top View 7 1.13 EUT – Cellular Band Module PCB-1 Bottom View 1.14 EUT – Cellular Band Module PCB-2 Top View 8 1.15 EUT – Cellular Band Module PCB-2 Bottom View 1.16 EUT – Cellular Band Module LED PCB Top View 9 1.17 EUT – Cellular Band Module LED PCB Bottom View 1.18 EUT – Cellular Band Module PCB-3 Top View 10 1.19 EUT – Cellular Band Module PCB-3 Bottom View 1.20 EUT – Cellular Band Module PCB-4 Top View 11 1.21 EUT – Cellular Band Module PCB-5 Top View 1.22 EUT – Cellular Band Module PCB-6 Top View 12 1.23 EUT – PCS Band Module Front View 1.24 EUT – PCS Band Module Rear View 13 1.25 EUT – PCS Band Module Side View (1) 1.26 EUT – PCS Band Module Side View (2) 14 1.27 EUT – PCS Band Module Case off Top View 1.28 EUT – PCS Band Module PCB-1 Top View 15 1.29 EUT – PCS Band Module PCB-1 Bottom View 1.30 EUT – PCS Band Module PCB-2 Top View 16 1.31 EUT – PCS Band Module PCB-2 Bottom View 1.32 EUT – PCS Band Module LED PCB Top View 17 1.33 EUT – PCS Band Module LED PCB Bottom View 1.34 EUT – PCS Band Module PCB-3 Top View 18 1.35 EUT – PCS Band Module PCB-3 Bottom View 1.36 EUT – PCS Band Module PCB-4 Top View 19 1.37 EUT – PCS Band Module PCB-5 Top View 1.38 EUT – PCS Band Module PCB-6 Top View 20 1.39 EUT – PCS Band Module PCB-7 Top View EUT – AWS Band Module Front View

Internal Photos

21 EUT – AWS Band Module Rear View EUT – AWS Band Module Side View (1) 22 EUT – AWS Band Module Side View (2) EUT – AWS Band Module Case off Top View 23 EUT – AWS Band Module PCB-1 Top View EUT – AWS Band Module PCB-1 Bottom View 24 EUT – AWS Band Module PCB-2 Top View EUT – AWS Band Module PCB-2 Bottom View 25 EUT – AWS Band Module LED PCB Top View EUT – AWS Band Module LED PCB Bottom View 26 EUT – AWS Band Module PCB-3 Top View EUT – AWS Band Module PCB-3 Bottom View 27 EUT – AWS Band Module PCB-4 Top View EUT – AWS Band Module PCB-5 Top View 28 EUT – AWS Band Module PCB-6 Top View EUT – AWS Band Module PCB-7 Top View 29 EUT – LTE Band Module Front View EUT – LTE Band Module Rear View 30 EUT – LTE Band Module Side View (1) EUT – LTE Band Module Case off Top View 31 EUT – LTE Band Module PCB-1 Top View EUT – LTE Band Module PCB-1 Bottom View 32 EUT – LTE Band Module PCB-2 Top View EUT – LTE Band Module PCB-2 Bottom View 33 EUT – LTE Band Module LED PCB Top View EUT – LTE Band Module LED PCB Bottom View 34 EUT – LTE Band Module PCB-3 Top View EUT – LTE Band Module PCB-3 Bottom View 35 EUT – LTE Band Module PCB-4 Top View EUT – LTE Band Module PCB-5 Top View 36 EUT – LTE Band Module PCB-6 Top View EUT – LTE Band Module PCB-7 Top View

RF Exposure Info

FCC Β§1.1307(b)(1) & Β§2.1091 - RF EXPOSURE 1.1 Applicable Standard According to Β§1.1310 and Β§2.1091 (Mobile Devices) RF exposure is calculated. Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Averaging Time (minute) Limits for General Population/Uncontrolled Exposure 0.3-1.34 614 1.63 *(100) 30 1.34-30 824/f 2.19/f *(180/f 2 ) 30 30-300 27.5 0.073 0.2 30 300-1500 / / f/1500 30 1500-100,000 / / 1.0 30 Note: f = frequency in MHz * = Plane-wave equivalent power density 1.2 MPE Prediction Predication of MPE limit at a given distance, Equation from OET Bulletin 65, Edition 97-01 S = PG/4Ο€RΒ² Where: S = power density P = power input to antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 850 MHz Cellular Band Uplink: Maximum peak output power at antenna input terminal (dBm):25.05 Maximum peak output power at antenna input terminal (mW):319.88 Prediction distance (cm):50 Prediction frequency (MHz):824.8 Antenna Gain, typical (dBi):2 Maximum Antenna Gain (numeric):1.58 Power density at predication frequency and distance (mW/cm 2 ):0.016 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):0.549 850 MHz Cellular Band Downlink: Maximum peak output power at antenna input terminal (dBm):25.08 Maximum peak output power at antenna input terminal (mW):322.11 Prediction distance (cm):50 Prediction frequency (MHz):881.52 Antenna Gain, typical (dBi):12 Maximum Antenna Gain (numeric):15.85 Power density at predication frequency and distance (mW/cm 2 ):0.163 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):0.588 PCS 1900 MHz Band Uplink: Maximum peak output power at antenna input terminal (dBm):30.02 Maximum peak output power at antenna input terminal (mW):1004.6 Prediction distance (cm):50 Prediction frequency (MHz):1880 Antenna Gain, typical (dBi):2 Maximum Antenna Gain (numeric):1.58 Power density at predication frequency and distance (mW/cm 2 ):0.051 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):1.0 PCS 1900 MHz Band Downlink: Maximum peak output power at antenna input terminal (dBm):30.17 Maximum peak output power at antenna input terminal (mW):1039.92 Prediction distance (cm):50 Prediction frequency (MHz):1960 Antenna Gain, typical (dBi):12 Maximum Antenna Gain (numeric):15.85 Power density at predication frequency and distance (mW/cm 2 ):0.525 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):1.0 DL: 746-757 MHz and 728-740 MHz Maximum peak output power at antenna input terminal (dBm):25.32 Maximum peak output power at antenna input terminal (mW):340.4 Prediction distance (cm):50 Prediction frequency (MHz):749 Antenna Gain, typical (dBi):12 Maximum Antenna Gain (numeric):15.85 Power density at predication frequency and distance (mW/cm 2 ):0.171 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):0.499 UL: 776-787 MHz and 698-710 MHz Maximum peak output power at antenna input terminal (dBm):25.35 Maximum peak output power at antenna input terminal (mW):342.76 Prediction distance (cm):50 Prediction frequency (MHz):782 Antenna Gain, typical (dBi):2 Maximum Antenna Gain (numeric):1.585 Power density at predication frequency and distance (mW/cm 2 ):0.017 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):0.521 DL: 2110-2155 MHz Maximum peak output power at antenna input terminal (dBm):30.15 Maximum peak output power at antenna input terminal (mW):1035.14 Prediction distance (cm):50 Prediction frequency (MHz):2154.6 Antenna Gain, typical (dBi):12 Maximum Antenna Gain (numeric):15.85 Power density at predication frequency and distance (mW/cm 2 ):0.523 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):1.0 UL: 1710-1755 MHz Maximum peak output power at antenna input terminal (dBm):30.91 Maximum peak output power at antenna input terminal (mW):1233.10 Prediction distance (cm):50 Prediction frequency (MHz):1754.6 Antenna Gain, typical (dBi):2 Maximum Antenna Gain (numeric):1.585 Power density at predication frequency and distance (mW/cm 2 ):0.062 MPE limit for uncontrolled exposure at predication frequency (mW/cm 2 ):1.0 Test Result For downlink, the outdoor antenna with 12 dBi gain should have at least 50 cm prediction distance to meet the MPE limit, the highest power density level at 50 cm is 0.525 mW/cmΒ², which is below the uncontrolled exposure limit of 1.0 mW/cmΒ². For uplink, the indoor antenna with 2 dBi gain should have at least 50 cm prediction distance to meet the MPE limit, the highest power density level at 50 cm is 0.062 mW/cmΒ², which is below the uncontrolled exposure limit of 1.0 mW/cmΒ².

Test Report

Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by NVLAP*, NIST, or any agency of the Federal Government. * This report may contain data that are not covered by the NVLAP accreditation and are marked with an asterisk β€œ*” (Rev.2) FCC PART 22H, 24E TEST AND MEASUREMENT REPORT For Advanced RF Technologies, Inc. 3116 W Vanowen St., Burbank, CA 91505, USA FCC ID: S2O-AXIOM Model: AXIOM Report Type: Original Report Product Type: LTE, Cellular, PCS, AWS, Repeater Test Engineer: Dennis Huang Report Number: R1007282-2224 Report Date: 2010-11-01 Reviewed By: Victor Zhang Test Engineer, Lead Prepared By: (84) Bay Area Compliance Laboratories Corp. 1274 Anvilwood Ave Sunnyvale, CA 94089, USA Tel: (408) 732-9162 Fax: (408) 732 9164 Advanced RF Technologies, Inc. FCC ID: S2O-AXIOM Report Number: R1007282-2224 Page 2 of 74 FCC Part 22H/24E Test Report TABLE OF CONTENTS 1 GENERAL INFORMATION ............................................................................................................................... 6 1.1 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT)........................................................................... 6 1.2 MECHANICAL DESCRIPTION.............................................................................................................................. 6 1.3 OBJECTIVE......................................................................................................................................................... 6 1.4 RELATED SUBMITTAL(S)/GRANT(S)................................................................................................................... 6 1.5 TEST METHODOLOGY........................................................................................................................................ 7 1.6 MEASUREMENT UNCERTAINTY.......................................................................................................................... 7 1.7 TEST FACILITY................................................................................................................................................... 7 2 SYSTEM TEST CONFIGURATION .................................................................................................................. 8 2.1 JUSTIFICATION................................................................................................................................................... 8 2.2 EUT EXERCISE SOFTWARE................................................................................................................................8 2.3 EQUIPMENT MODIFICATIONS............................................................................................................................. 8 2.4 LOCAL SUPPORT EQUIPMENT AND SOFTWARE LIST AND DETAILS.................................................................... 8 2.5 INTERNAL CONFIGURATIONS OF EUT................................................................................................................ 9 2.6 INTERFACE PORTS AND CABLES........................................................................................................................ 9 3 SUMMARY OF TEST RESULTS...................................................................................................................... 10 4 FCC Β§2.1046, Β§22.913(A) & Β§24.232 – RF OUTPUT POWER ........................................................................ 11 4.1 APPLICABLE STANDARD.................................................................................................................................. 11 4.2 TEST PROCEDURE............................................................................................................................................ 11 4.3 TEST BLOCK DIAGRAM.................................................................................................................................... 11 4.4 TEST ENVIRONMENTAL CONDITIONS............................................................................................................... 12 4.5 TEST EQUIPMENT LIST AND DETAILS.............................................................................................................. 12 4.6 TEST RESULTS................................................................................................................................................. 12 5 FCC Β§2.1047 - MODULATION CHARACTERISTIC..................................................................................... 13 5.1 APPLICABLE STANDARD.................................................................................................................................. 13 5.2 TEST RESULT................................................................................................................................................... 13 6 FCC Β§2.1049, Β§22.917 & Β§24.238 - OCCUPIED BANDWIDTH...................................................................... 14 6.1 APPLICABLE STANDARD.................................................................................................................................. 14 6.2 TEST PROCEDURE............................................................................................................................................ 14 6.3 TEST ENVIRONMENTAL CONDITIONS............................................................................................................... 14 6.4 TEST EQUIPMENT LIST AND DETAILS.............................................................................................................. 14 6.5 TEST RESULTS................................................................................................................................................. …

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Test Report

Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by NVLAP*, NIST, or any agency of the Federal Government. * This report may contain data that are not covered by the NVLAP accreditation and are marked with an asterisk β€œ*” (Rev.2) FCC PART 27 TEST AND MEASUREMENT REPORT For Advanced RF Technologies, Inc. 3116 W Vanowen St., Burbank, CA 91505, USA FCC ID: S2O-AXIOM Model: AXIOM Report Type: Original Report Product Type: LTE, Cellular, PCS, AWS, Repeater Test Engineer: Dennis Huang Report Number: R1007282-27 Report Date: 2010-11-01 Reviewed By: Victor Zhang Test Engineer, Lead Prepared By: (84) Bay Area Compliance Laboratories Corp. 1274 Anvilwood Ave Sunnyvale, CA 94089, USA Tel: (408) 732-9162 Fax: (408) 732 9164 Advanced RF Technologies, Inc. FCC ID: S2O-AXIOM Report Number: R1007282-27 Page 2 of 238 FCC Part 27 Test Report TABLE OF CONTENTS 1 GENERAL INFORMATION ............................................................................................................................... 6 1.1 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT)........................................................................... 6 1.2 MECHANICAL DESCRIPTION.............................................................................................................................. 6 1.3 OBJECTIVE......................................................................................................................................................... 6 1.4 RELATED SUBMITTAL(S)/GRANT(S)................................................................................................................... 6 1.5 TEST METHODOLOGY........................................................................................................................................ 7 1.6 MEASUREMENT UNCERTAINTY.......................................................................................................................... 7 1.7 TEST FACILITY................................................................................................................................................... 7 2 SYSTEM TEST CONFIGURATION .................................................................................................................. 8 2.1 JUSTIFICATION................................................................................................................................................... 8 2.2 EUT EXERCISE SOFTWARE................................................................................................................................8 2.3 EQUIPMENT MODIFICATIONS............................................................................................................................. 8 2.4 LOCAL SUPPORT EQUIPMENT AND SOFTWARE LIST AND DETAILS.................................................................... 8 2.5 INTERNAL CONFIGURATIONS OF EUT................................................................................................................ 9 2.6 INTERFACE PORTS AND CABLES........................................................................................................................ 9 3 SUMMARY OF TEST RESULTS...................................................................................................................... 10 4 FCC Β§2.1046 & Β§27.50 – RF OUTPUT POWER............................................................................................... 11 4.1 APPLICABLE STANDARD.................................................................................................................................. 11 4.2 TEST PROCEDURE............................................................................................................................................ 11 4.3 TEST ENVIRONMENTAL CONDITIONS............................................................................................................... 11 4.4 TEST EQUIPMENT LIST AND DETAILS.............................................................................................................. 11 4.5 TEST BLOCK DIAGRAM.................................................................................................................................... 12 4.6 SUMMARY OF TEST RESULTS........................................................................................................................... 13 5 FCC Β§2.1047 - MODULATION CHARACTERISTIC..................................................................................... 18 5.1 APPLICABLE STANDARD.................................................................................................................................. 18 5.2 TEST RESULT................................................................................................................................................... 18 6 FCC Β§2.1049 & Β§27.53 - OCCUPIED BANDWIDTH ......................................................................................19 6.1 APPLICABLE STANDARD.................................................................................................................................. 19 6.2 TEST PROCEDURE............................................................................................................................................ 19 6.3 TEST ENVIRONMENTAL CONDITIONS............................................................................................................... 19 6.4 TEST EQUIPMENT LIST AND DETAILS.............................................................................................................. 19 6.5 SUMMARY OF TEST RESULTS........................................................................................................................... 20 7 FCC Β§2.1053 & Β§2…

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Test Setup Photos

Test Setup Photos Radiated Emissions 30 MHz to 1 GHz - Front View Radiated Emissions 30 MHz to 1GHz- Rear View Radiated Emissions above 1 GHz - Front View Radiated Emissions above 1 GHz- Rear View Antenna Port Test View

Contact Information

Applicant

Julie Song(C.E.O)
[email protected]800-313-9345Fax: 323-254-4928

Test Firm

Bay Area Compliance LaboratoryJohn Chan
[email protected]408-732-9162Fax: 408-732-9164

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
18271.71 GHz - 1.75 GHz1 WF9WAmp
Confidentiality
Long Term
Grant Notes
Output power listed is rated conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 50 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Users and installers must be provided with appropriate antenna installation instructions and transmitter operating conditions, including antenna co-location requirements of οΏ½1.1307(b)(3), for satisfying RF exposure compliance. RF exposure compliance may need to be addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of οΏ½1.1307(b)(3)

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