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VK6-IRU600LBDigital Transmission System

Aviat Networks (S) Pte. Ltd
Digital Transmission System - FCC ID VK6-IRU600LB - Aviat Networks (S) Pte. Ltd
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Oct 04, 2010
Application Purpose
Original Equipment
Date of Application
Oct 04, 2010
Equipment Note
Digital Transmission System
Frequency Range
5770.00000000 - 5770.00000000
Company
Aviat Networks (S) Pte. Ltd
Country
Singapore

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

ECLIPSE Rev.001 INSTALLATION MANUAL 5.8 GHz Unlicensed Band 260-668066-003 TM Eclipse Microwave Radio Installation Manual For FCC 5.8 GHz Unlicensed Band August 2010 iiAviat Networks Eclipse Installation Manual This manual is specific to Eclipse with IRU 600 for all-indoor operation on the FCC 5.8 GHz unlicensed band. Compliance and Notices 260-668066-003 Rev 001 August 2010 Copyright © 2010 by Aviat Networks, Inc. All rights reserved. No part of this publication may be reproduced, transmitted, transcribed, stored in a retrieval system, or translated into any language or computer language, in any form or by any means, electronic, magnetic, optical, chemical, manual or otherwise, without the prior written permission of Aviat Networks Inc. To request permission, contact [email protected] . Warranty Aviat Networks makes no representation or warranties with respect to the contents hereof and specifically disclaims any implied warranties or merchantability or fitness for any particular purpose. Further, Aviat Networks reserves the right to revise this publication and to make changes from time to time in the content hereof without obligation of Aviat Networks to notify any person of such revision or changes. Safety Recommendations The following safety recommendations must be considered to avoid injuries to persons and/or damage to the equipment: Installation and Service Personnel: Installation and service must be carried out by authorized personnel who have the technical training and experience necessary to be aware of any hazardous operations during installation and service, and of measures to avoid any danger to themselves, to any other personnel, and to the equipment. Access to the Equipment: Access to the equipment in use must be restricted to service personnel only. Safety Norms: Recommended safety norms are detailed in the Health and Safety sections of this manual. Local safety regulations must be used if mandatory. Safety instructions in this document should be used in addition to the local safety regulations. In the case of conflict between safety instructions stated in this manual and those indicated in local regulations, mandatory local norms will prevail. Should local regulations not be mandatory, then the safety norms in Chapter 2 will prevail. Service Personnel Skill: Service personnel must have received adequate technical training on telecommunications and in particular on the equipment this manual refers to. Trademarks All trademarks are the property of their respective owners. 260-668066-003 Rev 001 August 2010 iii Eclipse Installation Manual Open Source Software The software included in this product contains copyrighted software that is licensed under the GPL. A copy of that license and the complete corresponding source code is included on the CD that is shipped with the product. You may also obtain the complete corresponding source code from us for a period of three years after our last shipment of this product, by contacting us at [email protected]. Product Compliance Notices Eclipse has been tested for and meets EMC Directive 2004/108/EC. The equipment was tested using screened cable; if any other type of cable is used, it may violate compliance. Eclipse is a Class A product. In a domestic environment this product may cause radio interference in which case the user may be required to take adequate measures. This equipment is intended to be used exclusively in telecommunications centers. FCC Notices 1.Eclipse with IRU600, 5.8 GHz, must be professionally installed and maintained. 2. This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential environment is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. 3. Eclipse with IRU600, 5.8 GHz, is compliant with FCC CFR47, Part 15.247. 4. To ensure compliance with the FCC RF exposure requirements, a minimum distance of 20 meters must be maintained between the antenna and any persons whilst the unit is operational. This calculation is based on the maximum conducted power and maximum antenna gain. 5. Eclipse with IRU600, 5.8 GHz, has been tested and certified for use with a parabolic antenna with a maximum gain of 46.8 dBi. 6. The filters provided with this product allow for transmission only in the frequency range 5725 - 5850MHz to ensure compliance with Part 15.247. 7. According to the conducted power limit in FCC CFR 47, Part 15.247, the power for this device has been limited to 1W (30dBm) at the antenna port. WARNING Making adjustments and/or modifications to this equipment that are not in accordance with the provisions of this instruction manual or other supplementary documentation may result in personal injury or damage to the equipment, and may void the equipment warranty. ivAviat Networks International Use of 5.8GHz This system does not employ DFS and, and as such the equipment cannot be deployed within Europe or any country where DFS is a regulatory requirement for protection of radars. NEBS Compliance The Eclipse Node comprising the INU and associated IRU 600 complies with the relevant NEBS requirements under GR-1089-CORE and GR-63-CORE. Such compliance requires installation of the Fan Air Filter option in the INUs, and adherence to the health and safety and equipment installation practices described herein. WEEE Directive In accordance with the WEEE Directive (2002/96/EC), Eclipse is marked with the following symbol: This symbol indicates that this equipment should be colle…

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Cover Letter(s)

Antenna Manufacturer's Name: Andrew Solution Antenna Model No. Antenna Type Low Band Gain–dBi Mid-Band Gain–dBi Top Band Gain–dBi Antenna Diameter–ft Lowest RF Freq– MHz Highest RF Freq– MHz Beam Width–dB Cross Pol Discrimination–dB Front-to-Back Ratio–dB P2F-52 Parabolic 29.4 2 5250 5850 5.4 30 41 P3F-52 Parabolic 33.4 3 5250 5850 3.8 30 42 P4F-52 Parabolic 34.9 4 5250 5850 3.0 30 52 P6F-52 Parabolic 37.6 6 5250 5850 1.8 30 49 PX2F-52 Parabolic 29.4 2 5250 5850 5.4 30 41 PX3F-52 Parabolic 33.4 3 5250 5850 3.8 30 42 PX4F-52 Parabolic 34.9 4 5250 5850 3.0 30 52 PX6F-52 Parabolic 37.6 6 5250 5850 1.8 30 49 HP2F-52 Parabolic 29.0 2 5250 5850 5.4 30 50 HP3F-52 Parabolic 33.0 3 5250 5850 3.8 30 53 HP4F-52 Parabolic 34.5 4 5250 5850 3.0 30 58 HP6F-52 Parabolic 37.2 6 5250 5850 1.8 30 56 HPX2F-52 Parabolic 29.0 2 5250 5850 5.4 30 50 HPX4F-52 Parabolic 34.5 4 5250 5850 3.0 30 58 HPX6F-52 Parabolic 37.2 6 5250 5850 1.8 30 56 P2F-57W Parabolic 29.2 29.3 29.9 2 5725 6425 5.8 30 40 P4F-57W Parabolic 34.5 35.0 35.4 4 5725 6425 2.9 30 40 P6F-57W Parabolic 38.0 38.5 39.0 6 5725 6425 2.0 30 45 P8F-57W Parabolic 40.7 41.2 41.7 8 5725 6425 1.6 30 47 P10F-57W Parabolic 42.5 42.9 43.4 10 5725 6425 1.3 30 50 P2-57W Parabolic 29.2 29.3 29.9 2 5725 6425 5.8 30 40 P4-57W Parabolic 34.5 35.0 35.4 4 5725 6425 2.9 30 40 PL6-57W Parabolic 38.0 38.5 39.0 6 5725 6425 2.0 30 45 PL8-57W Parabolic 40.7 41.2 41.7 8 5725 6425 1.6 30 47 PL10-57W Parabolic 42.5 42.9 43.4 10 5725 6425 1.3 30 50 PL12-57W Parabolic 44.2 44.6 45.0 12 5725 6425 1.0 30 51 HP4F-57W Parabolic 34.6 35.0 35.4 4 5725 6425 2.9 30 52 HP6F-57W Parabolic 38.0 38.5 39.0 6 5725 6425 2.0 30 60 HP8F-57W Parabolic 40.7 41.2 41.7 8 5725 6425 1.6 30 64 HP10F-57W Parabolic 42.5 42.9 43.4 10 5725 6425 1.3 30 65 HP4-57W Parabolic 34.6 35.0 35.4 4 5725 6425 2.9 30 52 HP6-57W Parabolic 38.0 38.5 39.0 6 5725 6425 2.0 30 60 HP8-57W Parabolic 40.7 41.2 41.7 8 5725 6425 1.6 30 64 HP10-57W Parabolic 42.5 42.9 43.4 10 5725 6425 1.3 30 65 Antenna Manufacturer's Name: Andrew Solution Antenna Model No. Antenna Type Estimated Gain at 5.725 to 5.850 GHz Antenna Diameter–ft Lowest RF Freq– MHz Highest RF Freq– MHz Beam Width–dB Cross Pol Discrimination–dB Front-to-Back Ratio–dB HP6-59 Parabolic 37.9 6 5925 6425 1.8 30 62 HP8-59 Parabolic 40.8 8 5925 6425 1.4 30 66 HP10-59 Parabolic 42.3 10 5925 6425 1.1 30 69 HP12-59 Parabolic 44.4 12 5925 6425 0.9 30 71 HP15-59 Parabolic 45.9 15 5925 6425 0.8 30 71 PARX6-59 Parabolic 37.5 6 5725 6425 1.9 30 60 PARX8-59 Parabolic 40.1 8 5725 6425 1.4 30 60 PARX10-59 Parabolic 42.4 10 5925 6425 1.1 30 60 PARX12-59 Parabolic 43.0 12 5925 6425 0.9 30 60 UHX6-59 Parabolic 38.1 6 5925 6425 1.8 33 75 UHX8-59 Parabolic 40.6 8 5925 6425 1.4 33 77 UHX10-59 Parabolic 42.6 10 5925 6425 1.1 34 80 UHX12-59 Parabolic 44.1 12 5925 6425 0.9 35 80 UHX15-59 Parabolic 45.8 15 5925 6425 0.8 34 80 HPX4-59 Parabolic 34.1 4 5925 6425 2.9 30 58 HPX6-59 Parabolic 38.1 6 5925 6425 1.8 30 65 HPX8-59 Parabolic 40.6 8 5925 6425 1.4 30 69 HPX10-59 Parabolic 42.4 10 5925 6425 1.1 30 71 HPX12-59 Parabolic 44.1 12 5925 6425 0.9 30 71 HPX15-59 Parabolic 45.8 15 5925 6425 0.8 30 71 PAR6-59 Parabolic 37.7 6 5725 6425 2.0 30 55 PAR8-59 Parabolic 40.1 8 5725 6425 1.5 30 58 PAR10-59 Parabolic 42.7 10 5925 6425 1.1 30 62 PAR12-59 Parabolic 43.9 12 5925 6425 0.9 30 63

Cover Letter(s)

RFS 5.8 GHz antennas for Aviat Networks RFS Model Description Size ft (mtr) gain dB lowband midband highband 5.8 GHz ** -0528 band (5.15 - 5.35 and 5.725 - 5.875 GHz) MA0528-19AN Flat panel, single polarized, N female input 0.5 19.0 MA0528-23AN Flat panel, single polarized, N female input 1 23.0 MA0528-28AN Flat panel, single polarized, N female input 2 28.0 -52 band (5.25 - 5.85 GHz) SPF2-52BN1S Standard performance, single polarized, N female input 2 (0.6) 27.8 28.5 29.1 SPF3-52BN1S Standard performance, single polarized, N female input 3 (0.9) 31.3 32.0 32.6 SPF4-52CN1S Standard performance, single polarized, N female input 4 (1.2) 33.9 34.4 34.9 SPF6-52CN1S Standard performance, single polarized, N female input 6 (1.8) 37.6 38.1 38.6 SDF3-52CN1S1 High performance, single polarized, N female input 3 (0.9) 31.3 32.0 32.6 SDF4-52CN1S1 High performance, single polarized, N female input 4 (1.2) 33.9 34.4 34.9 SDF6-52CN1S1 High performance, single polarized, N female input 6 (1.8) 37.6 38.1 38.6 -59 band ( 5.925-6.425 GHz) PAD6-59BC1S Standard performance, single polarized, CPR137G input 6 (1.8) 38.4 38.7 39.1 38.0 PAD8-59AC1S Standard performance, single polarized, CPR137G input 8 (2.4) 40.9 41.3 41.6 40.7 PAD10-59AC1S Standard performance, single polarized, CPR137G input 10 (3.0) 42.8 43.2 43.5 42.6 SU6-59BC1S1 SlimLine Ultra high performance,single polarized, CPR137G input 6 (1.8) 38.3 38.8 39.1 38.1 SU4-59BC1S1 SlimLine Ultra high performance,single polarized, CPR137G input 4 (1.2) 34.9 35.3 35.6 34.7 DA6-59BC1S1 High Performance, Single Polarized, CPR137G input 6 (1.8) 38.5 39.0 39.3 38.4 DA8-59AC1S1 High Performance, Single Polarized, CPR137G input 8 (2.4) 41.2 41.6 42.0 40.9 DA10-59AC1S1 High Performance, Single Polarized, CPR137G input 10 (3.0) 43.0 43.4 43.7 42.8 DA12-59AC1S1 High Performance, Single Polarized, CPR137G input 12 (3.7) 44.8 45.1 45.4 44.5 DAX4-59AC1S1 High Performance, Dual Polarized, CPR137G input 4 (1.2) 34.1 34.5 34.8 33.8 DAX6-59BC1S1 High Performance, Dual Polarized, CPR137G input 6 (1.8) 38.3 38.7 39.0 38.0 DAX8-59AC1S1 High Performance, Dual Polarized, CPR137G input 8 (2.4) 40.9 41.3 41.7 40.7 DAX10-59AC1S1 High Performance, Dual Polarized, CPR137G input 10 (3.0) 42.9 43.2 43.5 42.6 UXA6-59BC1S1 Ultra high performance Dual Polarized, CPR137G input 6 (1.8) 38.3 38.7 39.0 38.0 UXA8-59AC1S1 Ultra high performance Dual Polarized, CPR137G input 8 (2.4) 40.9 41.3 41.7 40.6 UXA10-59AC1S1 Ultra high performance Dual Polarized, CPR137G input 10 (3.0) 42.9 43.2 43.5 42.6 UXA12-59AC1S1 Ultra high performance Dual Polarized, CPR137G input 12(3.7) 44.6 44.8 45.2 44.1 Page 1 of 2 RFS 5.8 GHz antennas for Aviat Networks -W57 band (5.725 - 6.875 gHz) PA4-W57BC1S1 Standard performance, single polarized, CPR137G input 4 (1.2) 34.7 35.5 36.3 PA6-W57BC1S1 Standard performance, single polarized, CPR137G input 6 (1.8) 38.2 39.0 39.8 PA8-W57AC1S1 Standard performance, single polarized, CPR137G input 8 (2.4) 40.7 41.5 42.3 PA10-W57AC1S Standard performance, single polarized, CPR137G input 10 (3.0) 42.6 43.5 44.2 PAD6-W57BC1S Standard performance, single polarized, CPR137G input 6 (1.8) 38.1 38.9 39.7 PAD8-W57AC1S Standard performance, single polarized, CPR137G input 8 (2.4) 40.6 41.4 42.2 PAD10-W57AC1S Standard performance, single polarized, CPR137G input 10 (3.0) 42.6 43.5 44.2 PADX6-W57AC1S Standard performance, dual polarized, CPR137G input 6 (1.8) 37.9 38.7 39.5 PADX8-W57AC1S Standard performance, dual polarized, CPR137G input 8 (2.4) 40.4 41.2 42.0 PADX10-W57AC1S Standard performance, dual polarized, CPR137G input 10 (3.0) 42.3 43.2 43.9 DA4-W57BC1S1 High Performance, Single Polarized, CPR137G input 4 (1.2) 34.7 35.5 36.3 DA6-W57BC1S1 High Performance, Single Polarized, CPR137G input 6 (1.8) 38.2 39.0 39.8 DA8-W57AC1S1 High Performance, Single Polarized, CPR137G input 8 (2.4) 40.7 41.5 42.3 ** Calculated Value for use at 5.8GHz Page 2 of 2

Cover Letter(s)

10 September, 2010 Equipment Authorization Division Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Request for Confidentiality for VK6-IRU600LB Aviat Networks requests according to FCC 47 CFR 0.459 that the following items are held permanently confidential and from public view: Block diagrams All schematic diagrams Parts list Operational description These items contain proprietary information that represents considerable investment on the part of Aviat Networks. Public disclosure of this information would be damaging for Aviat Networks due to the competitive nature of our industry. Ruth French Product Compliance Manager

Cover Letter(s)

TCB Questions in black text. Applicant answers in red text. ATCB: The photo of the equipment label appears to state a transmit frequency of 5900 MHz to 6200 MHz. The application is for operation at 5740 MHz and 5770 MHz. Please explain. Aviat: The FCC ID label shows the layout and format of the FCC ID appearing on the device. The label location photo is an example of where our label will appear on one of our devices. At the time of photographing, the exact label and device combination was not available so another device was used as a ‘model’ for indication of label location. ATCB: The label containing the FCC ID must be permanently affixed to the device and not removable. From the photos it looks like the FCC ID label could be paper. Please explain the label and explain how it meets the requirements. Aviat: It is a plasticized label. We never use paper labels. ATCB: The modulation options listed in test report are 32QAM, 64QAM, 128QAM and 256QAM. The user manual references QPSK and 16QAM. Please explain. Aviat: All options currently available in software have been tested. New options will be released at a later date. Another test program is planned for late 2010/early 2011 to address new functionality. ATCB: The antenna documentation states a maximum gain of 45.8 dBi but your application states a maximum of 46.8 dBi. Please explain. Aviat: 46.8 dBi is the absolute maximum gain of the antenna at any frequency. 45.8 dBi is the maximum gain at either of the frequencies we will use. To ensure compliance, we have stated the worst case (highest) gain on our documentation. ATCB: FCC Part 15.247(c)(1)(iii) states that the user manual must inform the installer that the device must not be used in a point‐to‐mulitpoint configuration. Your manual does not contain the statement. Please clarify if a point‐to‐multipoint configuration is possible with this device. Aviat: There is no physical way for IRU600 to be used for point‐to‐multipoint. The architecture only supports point‐to‐point. That could not be changed. FCC KDB inquiry tracking numbers associated with this application: 333022 856524

External Photos

2 September, 2010. FCC application. VK6-IRU600LB External Photographs IRU600 Front 2 September, 2010. FCC application. IRU600 Back 2 September, 2010. FCC application. IRU600 Side 1 2 September, 2010. FCC application. IRU600 Side 2 2 September, 2010. FCC application. IRU600 Top 2 September, 2010. FCC application. IRU600 Bottom

ID Label/Location Info

Label artwork for VK6-IRU600LB: Image/label location:

Internal Photos

16 September, 2010. FCC application. VK6-IRU600LB Internal Photographs IRU600 Unit 16 September, 2010. FCC application. Radio Frequency Unit (lid removed) 16 September, 2010. FCC application. Radio Frequency Unit (IF card removed) 16 September, 2010. FCC application. Radio Frequency Unit (internal, close up) 16 September, 2010. FCC application. IF Card (side 1) 16 September, 2010. FCC application. IF Card (side 2)

RF Exposure Info

Aviat Networks FCC OET 65 Calculation Page 1 of 3 Page 1 of 3 FCC OET 65 MPE Value Calculations The purpose of this report is to document the Maximum Permissible Exposure value for the IRU 600 low band product. Manufacturer: Aviat Networks Equipment Category: Microwave Fixed Link Equipment Name: IRU 600 FCC ID: VK6-IRU600LB Aviat Networks FCC OET 65 Calculation Page 2 of 3 Page 2 of 3 1. Introduction FCC OET Bulletin 65 defines guidelines and limits for Maximum Permissible Exposure (MPE) in terms of electric and magnetic field strength and power density for transmitters operating at frequencies between 300 kHz and 100 GHz. This report documents the MPE value (distance) for the IRU 600 low band system which is spot tuned to either 5440 or 5470MHz. This product has a FCC ID: VK6-IRU600LB 2. References [1] FCC OET Bulletin 65 edition 97-01 3. Formula and limit. From OET 65 [1] the formula for calculating the maximum permissible exposure is: S = PG/4πR 2 (1) MPE limit for uncontrolled exposure at prediction frequency = 1 mW/cm 2 Re-arranging the above formula to calculate R: R = √(PG/4πS) (2) 4. Input values P = power input to antenna = 30dBm or 1000mW G = Antenna gain = 46.8dBi or 47863 numeric S = MPE limit for uncontrolled exposure = 1mW/cm 2 R = Distance to the centre of the antenna (cm) Aviat Networks FCC OET 65 Calculation Page 3 of 3 Page 3 of 3 5. Calculating distance to antenna Using formula (2) from above: R = √((1000x47863)/4π)) R = 1952 cm It should be noted that this distance contains zero margin so the distance cannot be any shorter than this. In order to guarantee some margin a distance of 2000cm is proposed and using formula (1) from above, this gives an exposure level of: S = 1000x47863/4π2000 2 S = 0.95269 mW/cm 2 i.e. a compliance margin of 0.0473 mW/cm 2 6. Conclusion The recommended minimum distance from the centre of the antenna to ensure exposure below the limit specified in OET Bulletin 65 [1] is 2000cm.

Test Report

TEST REPORT FROM RFI GLOBAL SERVICES LTD Test of: Eclipse IRU600, 5.8GHz FCC ID: VK6-IRU600LB To: FCC Part 15.247: 2009 Subpart C Test Report Serial No: RFI-RPT-RP78289JD10A Version 4.0 supersedes all previous versions This Test Report Is Issued Under The Authority Of Scott D’Adamo, Operations Manager Global Approvals: Checked By: Nigel Davison Signature: Date of Issue: 29 September 2010 This report is issued in Adobe Acrobat portable document format (PDF). It is only a valid copy of the report if it is being viewed in PDF format with the following security options not allowed: Changing the document, Selecting text and graphics, Adding or changing notes and form fields. This report may not be reproduced other than in full, except with the prior written approval of RFI Global Services Ltd. The results in this report apply only to the sample(s) tested. TEST REPORT SERIAL NO: RFI-RPT-RP78289JD10A VERSION NO. 4.0 ISSUE DATE: 29 SEPTEMBER 2010 Page 2 of 76 RFI Global Services Ltd This page has been left intentionally blank. TEST REPORT SERIAL NO: RFI-RPT-RP78289JD10A VERSION NO. 4.0 ISSUE DATE: 29 SEPTEMBER 2010 RFI Global Services Ltd Page 3 of 76 Table of Contents 1. Customer Information .................................................................................................................. 1 2. Summary of Testing ..................................................................................................................... 1 2.1. General Information 1 2.2. Summary of Test Results 1 2.3. Methods and Procedures 1 2.4. Deviations from the Test Specification 1 3. Equipment Under Test (EUT) ....................................................................................................... 1 3.1. Identification of Equipment Under Test (EUT) 1 3.2. Description of EUT 1 3.3. Modifications Incorporated in the EUT 1 3.4. Additional Information Related to Testing 1 3.5. Support Equipment 1 4. Operation and Monitoring of the EUT during Testing ............................................................... 1 4.1. Operating Modes 1 4.2. Configuration and Peripherals 1 5. Measurements, Examinations and Derived Results .................................................................. 1 5.1. General Comments 1 5.2. Test Results 1 5.2.1. Transmitter AC Conducted Spurious Emissions 1 5.2.2. Transmitter 6 dB Bandwidth 1 5.2.3. Transmitter 20 dB Bandwidth 1 5.2.4. Transmitter Peak Power Density 1 5.2.5. Transmitter Maximum Average Output Power 1 5.2.6. Transmitter Radiated Emissions 1 5.2.7. Transmitter Band Edge Conducted Emissions 1 5.2.8. Transmitter Band Edge Radiated Emissions 1 6. Measurement Uncertainty ............................................................................................................ 1 Appendix 1. Test Equipment Used ................................................................................................ 76 TEST REPORT SERIAL NO: RFI-RPT-RP78289JD10A VERSION NO. 4.0 ISSUE DATE: 29 SEPTEMBER 2010 Page 4 of 76 RFI Global Services Ltd 1. Customer Information Company Name: Aviat Networks Address: 4 Bell Drive Hamilton International Technology Park Blantyre, Lanarkshire Scotland G72 0FB TEST REPORT SERIAL NO: RFI-RPT-RP78289JD10A VERSION NO. 4.0 ISSUE DATE: 29 SEPTEMBER 2010 RFI Global Services Ltd Page 5 of 76 2. Summary of Testing 2.1. General Information Specification Reference: 47CFR15.247 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2009: Part 15 Subpart C (Intentional Radiators) - Section 15.247 Specification Reference: 47CFR15.107 and 47CFR15.109 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2009: Part 15 Subpart B (Unintentional Radiators) - Sections 15.107 and 15.109 Specification Reference: 47CFR15.207 and 47CFR15.209 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2009: Part 15 Subpart C (Intentional Radiators) - Sections 15.207 and 15.209 Site Registration: FCC: 209735 Location of Testing: RFI Global Services Ltd, Wade Road, Basingstoke, Hampshire, RG24 8AH. Test Dates: 21 July 2010 to 23 September 2010 2.2. Summary of Test Results FCC Reference (47CFR) Measurement Result Part 15.207 Transmitter AC Conducted Emissions Part 15.247(a)(2) Transmitter Minimum 6 dB Bandwidth Part 15.247(a)(1) Transmitter 20 dB Bandwidth Part 15.247(a)(1) Transmitter Peak Power Spectral Density Part 15.247(b)(3) Transmitter Maximum Average Output Power Part 15.247(d) & 15.209(a) Transmitter Radiated Emissions Part 15.247(d) & 15.209(a) Transmitter Band Edge Conducted Emissions Part 15.247(d) & 15.209(a) Transmitter Band Edge Radiated Emissions Key to Results = Complied = Did not comply Notes: 1) The customer declared that there is no idle mode and that the EUT goes into transceive mode as soon as it is powered up. TEST REPORT SERIAL NO: RFI-RPT-RP78289JD10A VERSION NO. 4.0 ISSUE DATE: 29 SEPTEMBER 2010 Page 6 of 76 RFI Global Services Ltd 2.3. Methods and Procedures Reference: ANSI C63.4 (2009) Title: American National Standard for Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz Reference: ANSI C63.10 (2009) Title: American National Standard for Testing Unlicensed Wireless Devices 2.4. Deviations from the Test Specification For the measurements contained within this test report, there were no deviations from, additions to, or exclusions from the test specification identified above. TEST REPORT SERIAL NO: RFI-RPT-RP78289JD10A VERSION NO. 4.0 ISSUE DATE: 29 SEPTEMBER 2010 RFI Global Services Ltd Page 7 of 76 3. Equipment Under Test (EUT) 3.1. Identification of Equipment Under Test (EUT) Brand Name: Aviat Networks Model Name or Number: Eclipse IRU600, 5.8GHz (low band) Serial Number(s): ZLS10040045 Hardware Version Number: Not Supplied Software Version Number: 5.01.44 FCC ID:: VK6-IRU600LB 3.2. Description of EUT The equipment under test was a 5.8GHz microwave radio unit. 3.3. Modifi…

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Contact Information

Applicant

Ruth French(Product Compliance Manager)
[email protected]011447771978599Fax: 011441698717204

Technical Contact

Aviat NetworksRuth French
[email protected]

4 Bell Drive · Blantyre · United Kingdom

Non-Technical Contact

Aviat NetworksRuth French
[email protected]

Test Firm

UL VS LtdDarren Rust
[email protected]+44 1256 31 2119Fax: +44 1256 31 2001

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
815C5.77 GHz - 5.77 GHz851.00 mW30M0D7W
Confidentiality
Long Term
Grant Notes
Power Output listed is conducted. The antenna used for this transmitter must be installed to provide a separation distance of at least 20 meters from all persons and not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. For professional installation only, using the antennas detailed in this filing.

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