
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 1 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations GWU-300/310/320 User Manual (Mobile WIMAX 2.3/2.5/3.5GHz USB Dongle Modem) Document Number: IGIM0904WLSWUMWG005 Version: 0.6 Issued: April 12 st , 2010 GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 2 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations Revision History Revision Date Description Author 0.1 2009.03.30 Original Draft S.K. Park 0.2 2009.07.30 Modified a part of channel configuration and authentication setting S.K. Park 0.3 2009.08.14 Modified miscellaneous things S.K. Park 0.4 2009.09.01 Change for New UI CM. M.Y. Jung 0.5 2009.10.15 Authentication Settings M.Y. Jung 0.6 2010.04.12 Modified to GWU-3XX M.Y. Jung Reproduction or use of editorial or pictorial content in any manner is prohibited without written permission. Specifications and content may change without notice. The IGI Mobile name and logo and other designated names, marks, and phrases are trademarks or registered trademarks of IGI Mobile, Inc. GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 3 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations Table of Contents 1 Introduction ................................................................................................... 4 2 Appearance ................................................................................................... 5 2.1 Top View .................................................................................................. 5 2.2 Side View ................................................................................................. 5 3 Installation .................................................................................................... 6 3.1 GWU-310 CM (Connection Manager) Install ......................................................... 6 3.1.1 Language Select .................................................................................... 6 3.1.2 Welcome ............................................................................................. 6 3.1.3 Connect USB Modem .............................................................................. 7 3.1.4 Select Destination Folder .......................................................................... 7 3.1.5 Install Confirm ....................................................................................... 8 3.1.6 CM Installation ...................................................................................... 8 3.1.7 Device Driver Installation .......................................................................... 9 3.1.8 Install Finished ...................................................................................... 9 4 How to Use CM (Connection Manager) ............................................................... 10 4.1 Run Connection Manager Program .................................................................. 10 4.2 Channel Configuration ................................................................................. 11 4.3 Authentication Setting .................................................................................. 13 4.3.1 EAP-AKA ........................................................................................... 13 4.3.2 EAP-TLS , EAP-TTLS ............................................................................ 15 4.4 Connectting .............................................................................................. 17 4.5 Device Change .......................................................................................... 18 5 Internet Test ................................................................................................ 19 5.1 Internet Explorer ........................................................................................ 19 GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 4 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations 1 Introduction This document let you know how to use and install device for mobile WIMAX USB dongle modem. This device is USB dongle type modem for high speed mobile internet access through mobile WIMAX network. - Model : GWU-300/GWU-310/GWU-320 - Standard : Mobile WiMAX Wave2/MIMO, IEEE 802.16e - Frequency : 2.3/2.5/3.5GHz - Interface : USB 2.0 - Antenna : 2 internal diversity antenna - Data Throughput : Downlink 33 Mbps, Uplink 16 Mbps - O/S : Windows 2000, XP, VISTA, WIN7, MAC OS - Dimension : 29 x 66 x 8 mm - Weight : 14 g GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 5 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations 2 Appearance 2.1 Top View External drawing of GWU-310 and components description COMPONENT DESCRIPTION USB CONNECTOR USB Connect STATUS LED Status Display LED 2.2 Side View External drawing of GWU-310 and components description COMPONENT DESCRIPTION USB CONNECTOR HINGE USB Connector hinge STATUS LED GWU-310 RF status display LED USB CONNECTOR HINGE STATUS LED USB CONNECTOR STATUS LED GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 6 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations 3 Installation 3.1 GWU-310 CM (Connection Manager) Install Insert GWU-310 USB WIMAX Modem to your PC. After that, you can see the dialog that is started automatically. 3.1.1 Language Select GWU-310 CM supports English and Korean. Select language option and click “Next”. 3.1.2 Welcome After you selecting language options, you can see a welcome view. Click “Next”. GWU-310 User Manual Version 0.6 Copyright © 2010 IGI Mobile, Inc.. All rights reserved. Page 7 of 19 Confidential and Proprietary Subject to Non-Disclosure Obligations 3.1.3 Connect USB Modem If …
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Sulis Consultants Limited Mead House, Longwater Road, Eversley, Hampshire, RG27 0NW, UK Registered in England & Wales, number 05466247 http://www.sulisconsultants.com 23 rd March 2011 Federal Communications Commission Office of Engineering and Technology Equipment Authorization Division 7345 Oakland Mills Road Columbia, Maryland 21046 Subject: Confidentiality request for FCC ID:PIDMIMAX37 To Whom It May Concern, Pursuant to sections 0.457 and 0.459 and CFR 47, the applicant requests permanent confidential treatment of the following information accompanying this application: Schematics: GWU-200_3G_Circuit Diagram.pdf Parts List: GWU-200_3G_Part List.pdf Block Diagram: GWU-200_3G_Block Diagram.pdf Tune-up procedure GWU-200 WiMAX RCT TEST Procedure March2011.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors. Yours Sincerely Charlie Blackham Director
Sulis Consultants Limited Mead House, Longwater Road, Eversley, Hampshire, RG27 0NW, UK Registered in England & Wales, number 05466247 http://www.sulisconsultants.com 30 th September2011 Federal Communications Commission Office of Engineering and Technology Equipment Authorization Division 7345 Oakland Mills Road Columbia, Maryland 21046 Subject: Confidentiality request for FCC ID:PIDGWU-200 To Whom It May Concern, Pursuant to sections 0.457 and 0.459 and CFR 47, the applicant requests permanent confidential treatment of the following information accompanying this application: Schematics: GWU-200_3G_Circuit Diagram.pdf Parts List: GWU-200_3G_Part List.pdf Block Diagram: GWU-200_3G_Block Diagram.pdf Tune-up procedure GWU-200 WiMAX RCT TEST Procedure March2011.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors. Yours Sincerely Charlie Blackham Director
FCC email 5th Oct - response 28th Oct 2011 1) We note that the tune-up exhibit at page 9 appears to indicate a duty factor different from as used in the RFI-Global lab SAR report, as well as the RFI-Global lab EMC/radio report indicates duty factor different from the SAR report; at minimum for any future filings for similar devices and/or technologies please ensure device setups and descriptions of maximum rated and normal operating capabilities are consistent across all exhibits within an application. [Sulis]Thank you - noted 2) FCC does not consider that SAR testing for 10 MHz channel bandwidth using only 17 sub-channels, then multiplying results by a factor two, is appropriate nor acceptable for FCC Certifcation compliance demonstration purposes where normal WiMAX operations require 35 sub-channels to be active. SAR report needs revision please to instead use full 35 sub-channel device setup. [RFI Test Lab] -Although SAR test was performed using 17 sub-channels(setting of 102)this was then checked against 35 sub-channels (setting of 175) to ensure that the value measured were adequate. The SAR measurement was checked on 16-QAM and the valued measured with 17 sub-channels was found to be approximately half of the level of 35 sub-channels.As indicated in the table below. 17 sub-channels vs35 sub-channels EUT Position Phantom Config Frequency (MHz) 1g Level (W/kg) 17 sub ch 1g Level (W/kg) 35 sub-ch 10g Level (W/kg) 17 sub-ch 10g Level (W/kg) 35 sub-ch Horizontal- Down Flat (SAM)36750.166 1 0.316 2 0.057 1 0.109 2 Horizontal- Down Flat (SAM)36550.170 1 0.302 2 0.060 1 0.111 2 Note: 1.Output power = 18dBm,SAR Power Reference at the end of test = 4.313 V/m 2.Output power = 21dBm, SAR Power Reference at the end of test = 6.341 V/m 3) Especially for purposes of supporting SAR evaluation results and confirming compliance it is important for application filings to identify the device maximum rated output power for the operating modes and modulations. Also it is important for the measured power data and associated descriptions of device setups and specific measurement techniques and instrumentation to be fully explained and described especially when there may be variations in results for whatever reasons. Generally SAR and EMC tests mustshow compliance for the maximum rated output power for which a device will operate in US networks, and the maximum rated power will also be listed on the grant certificate. The following shows a comma-delineated listing for what we see as power levels listed throughout the filing. In the first row, the numbers 5 and 10 are channel bandwidths, loc. means exhibit / place in the filing, and parameter column indicates that the test reports have varied freq. ranges. parameter, loc., QPSK 5, 16QAM 5, QPSK 10, 16QAM 10 - , f-731, 50, 50, 90, 90 3650-3700, emc-SGS, 51, 49, 87, 90 3650-3675, emc-RFI, 59, 59, 110, 110 3650-3700, SAR meas., 93, 89, 85, 71 max rated, SAR pg7, 79, 79, 200, 200 max rated, SAR pg14, 141, 141, 251, 251 Please revise at minimum the SAR report for consistent listing of max. power capability and with device testing using appropriate corresponding power. Where results in EMC/radio reports might differ, please include appropriate explanations and attestations about device maximum outputs and asrepresented by the test results. [Sulis]Response to follow 4) Further also to item 3), due to different max. power ratings shown at pages 7 vs. 14 of SAR report, the results in 7.2 and 7.3 of SAR report at minimum will need revision for whatever is the actual rated power. [Sulis]Response to follow 5) SAR page 7 shows 18/48, means control symbols inactive, AND 15/48 meaning control symbols active; in case testing using control symbols active, that contradicts the descriptions and results in 5.1 and 7.2 - please revise to use appropriate and consistent test setups and descriptions and data reductions. Please also double-check and/or revise all SAR plots and results to ensure that the correct crest factor was applied. [RFI Test Lab]–All test was performed with 15/48 and the crest factor used was 1/(15/48), page 7 of the SAR report has been amended to reflect this and 5.1 and 7.2 no longer contradicts. As the test was perform with the correct crest factor there is no need to revise the SAR plots. [Sulis]Response Formal report in preparation 6) For clarification purposes, when a KDB tracking number is listed we request that also be identified as either inquiry or publication - at SAR page 9 please indicate that 602952 was a KDB inquiry. [RFI Test Lab]–This has now been changed to KDB inquiry number. [Sulis]Response Formal report in preparation 7) The uncertainty value listed for probe calibration in the 8.1 table does not appear to match the probe certificate - please revise (with re-calculate of expanded uncertainty). [RFI Test Lab]–The probe was calibrated for 3.7 GHz was an added frequency to the already calibrated probe. The probe had a general calibration and 2 further calibration to add additional frequencies. The report now included all 3 calibration certificates for the year 2010 which is valid for 1 year. The certificates cover both the extra frequency calibration which includes the axial isotropy, hemispherical isotropy and spatial resolution. Please note that in the original report the probability distribution used for these parameters was k=2 and not k=1 and the divisor used was 2 and not 1. Therefore if the values below are changed to reflect k=1 using the divisor of 1 the expanded uncertainty will remain the same.Please see below. k=2 TypeSource of uncertainty + Value - Value Probability Distribution Divisorc i (10g) Standard Uncertainty i or eff + u (%)- u (%) BProbe calibration13.10013.100 normal (k=2)2.0000 1.0000 6.5506.550 BAxial Isotropy0.5000.500 normal (k=2)2.0000 1.0000 0.2500.250 BHemispherical Isotropy2.6002.600 normal (k=2)2.0000 1.0000 1.3001.300 BLinearity0.6000.600 Rectangular1.7321 1.0000 0.3460.346 K=1 BProbe calibra…
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FCC email 5th Oct - response 15 th Nov2011 1) We note that the tune-up exhibit at page 9 appears to indicate a duty factor different from as used in the RFI-Global lab SAR report, as well as the RFI-Global lab EMC/radio report indicates duty factor different from the SAR report; at minimum for any future filings for similar devices and/or technologies please ensure device setups and descriptions of maximum rated and normal operating capabilities are consistent across all exhibits within an application. [Sulis]Thank you - noted 2) FCC does not consider that SAR testing for 10 MHz channel bandwidth using only 17 sub-channels, then multiplying results by a factor two, is appropriate nor acceptable for FCC Certifcation compliance demonstration purposes where normal WiMAX operations require 35 sub-channels to be active. SAR report needs revision please to instead use full 35 sub-channel device setup. [RFI Test Lab] -Although SAR test was performed using 17 sub-channels(setting of 102)this was then checked against 35 sub-channels (setting of 175) to ensure that the value measured were adequate. The SAR measurement was checked on 16-QAM and the valued measured with 17 sub-channels was found to be approximately half of the level of 35 sub-channels.As indicated in the table below. 17 sub-channels vs 35 sub-channels EUT Position Phantom Config Frequency (MHz) 1g Level (W/kg) 17 sub ch 1g Level (W/kg) 35 sub-ch 10g Level (W/kg) 17 sub-ch 10g Level (W/kg) 35 sub-ch Horizontal- Down Flat (SAM)36750.166 1 0.316 2 0.057 1 0.109 2 Horizontal- Down Flat (SAM)36550.170 1 0.302 2 0.060 1 0.111 2 Note: 1.Output power = 18dBm,SAR Power Reference at the end of test = 4.313 V/m 2.Output power = 21dBm, SAR Power Reference at the end of test = 6.341 V/m 3) Especially for purposes of supporting SAR evaluation results and confirming compliance it is important for application filings to identify the device maximum rated output power for the operating modes and modulations. Also it is important for the measured power data and associated descriptions of device setups and specific measurement techniques and instrumentation to be fully explained and described especially when there may be variations in results for whatever reasons. Generally SAR and EMC tests mustshow compliance for the maximum rated output power for which a device will operate in US networks, and the maximum rated power will also be listed on the grant certificate. The following shows a comma-delineated listing for what we see as power levels listed throughout the filing. In the first row, the numbers 5 and 10 are channel bandwidths, loc. means exhibit / place in the filing, and parameter column indicates that the test reports have varied freq. ranges. parameter, loc., QPSK 5, 16QAM 5, QPSK 10, 16QAM 10 - , f-731, 50, 50, 90, 90 3650-3700, emc-SGS, 51, 49, 87, 90 3650-3675, emc-RFI, 59, 59, 110, 110 3650-3700, SAR meas., 93, 89, 85, 71 max rated, SAR pg7, 79, 79, 200, 200 max rated, SAR pg14, 141, 141, 251, 251 Please revise at minimum the SAR report for consistent listing of max. power capability and with device testing using appropriate corresponding power. Where results in EMC/radio reports might differ, please include appropriate explanations and attestations about device maximum outputs and asrepresented by the test results. [Sulis]Documents have been updated as follows: location Power (dBm) QPSK 516QAM 5QPSK 1016QAM 10 Rated power (conducted)18.018.021.021.0 Rated power (EIRP) – Form 731v222.522.525.525.5 emc-SGS17.116.919.419.5 EMC-RFI (V2) (conducted)17.717.720.420.4 EMC-RFI (V2) (EIRP)22.222.224.924.9 SAR(V4)meas (conducted)19.719.519.318.5 max rated SAR (V4) pg7 (conducted)18.018.021.021.0 max rated SAR (V4)pg14 (conducted)18.018.021.021.0 location Power (mW) QPSK 516QAM 5QPSK 1016QAM 10 Rated power (conducted)63.163.1125.9125.9 Rated power (EIRP) – Form 731v2177.8177.8354.8354.8 emc-SGS51.049.087.090.0 EMC-RFI (V2) (conducted)59.059.0110.0110.0 EMC-RFI (V2) (EIRP)166.0166.0309.0309.0 SAR(V4)meas (conducted)93.089.085.071.0 max rated SAR (V4) pg7 (conducted)63.163.1126.0126.0 max rated SAR (V4)pg14 (conducted)63.163.1126.0126.0 Note: EMC-RFI (V2) is report “RFI-RPT-RP81975JD01A V2.0” uploaded as exhibit15 Nov 2011. This report contains some repeat measurements in section 5.2.5 with emissions masks correctly placed – an error we had spotted in reviewing this data. SAR (V4) is report “Draft RFI-SAR-RP79027JD01A V4.01” – this has been emailed as it is a draft – formal report will be issued if issue is now resolved. 4) Further also to item 3), due to different max. power ratings shown at pages 7 vs. 14 of SAR report, the results in 7.2 and 7.3 of SAR report at minimum will need revision for whatever is the actual rated power. [Sulis]Report “Draft RFI-SAR-RP79027JD01A V4.01” addresses this 5) SAR page 7 shows 18/48, means control symbols inactive, AND 15/48 meaning control symbols active; in case testing using control symbols active, that contradicts the descriptions and results in 5.1 and 7.2 - please revise to use appropriate and consistent test setups and descriptions and data reductions. Please also double-check and/or revise all SAR plots and results to ensure that the correct crest factor was applied. [RFI Test Lab]–All test was performed with 15/48 and the crest factor used was 1/(15/48), page 7 of the SAR report has been amended to reflect this and 5.1 and 7.2 no longer contradicts. As the test was perform with the correct crest factor there is no need to revise the SAR plots. [Sulis]Response Formal report in preparation-Report “Draft RFI-SAR-RP79027JD01A V4.01” 6) For clarification purposes, when a KDB tracking number is listed we request that also be identified as either inquiry or publication - at SAR page 9 please indicate that 602952 was a KDB inquiry. [RFI Test Lab]–This has now been changed to KDB inquiry number. [Sulis]Response Formal report in preparation-Report “Draft RFI-SAR-RP79027JD01A V4.01” 7) The uncertainty value listed …
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FCC ID:PIDGWU-200 Label and location
FCC ID:PIDGWU-200 Label and location
Internal photos of EUT Top view of Main PCB Bottom view of Main PCB Antenna(Rx)Antenna(Tx/Rx)
Sulis Consultants Limited Mead House, Longwater Road, Eversley, Hampshire, RG27 0NW, UK Registered in England & Wales, number 05466247 http://www.sulisconsultants.com Contention Based Protocol– FCC cert Answers to FCC Technical questions in KDB 552295for devices operating in the 3650-3700MHz Band under Part 90Z Item 2 Unrestricted Protocol(for operation on 3650-3700 MHz band) Item 2.1Unrestricted Protocol Description Address the key requirements for operation using unrestricted contention based protocol. Please note that this requires recognizing other systems (both similar to yours and different from yours) that operate on a co-channel. Indicate the strategy for sharing the spectrum in terms of: Does the system use spectrum sensing to determine if the other devices are transmitting and then find ways to share the bandwidth, or Have some other strategy? The base station employs a “listen before transmit” function whose purpose is to detect co-channel transmissions above a configurable detection threshold. The detection circuitry measures power level irrespective of the transmitting system’s air interface type (ie. technology agnostic). Detection is made at the start of each WiMAX frame (typically every 5 or 10ms). Upon detection of a transmission above the configured threshold, the base station creates a “contention allocation slot” that allows other systems access by creating gaps in it’s transmission (both the BS and associated CPEwhich is scheduled by the BS). Note that the number of frames over which transmission is stopped is operator configurable (Netspan “carrier Sense backoff Frames”) from a minimum value of 2 frames and the default value is typically 4-5 frames (20-25ms), but can be much longer. Transmissions continue after the channel is clear (i.e. the other system’s transmissions stop), as the Base Station repeats the detection measurement at regular intervals and adjusts the contention slots accordingly. Item 2.2Threshold Detection to Determine Occupancy 2.2.1 Describe how your system determines if another system is using the spectrum. At what detection level – relative to 0 dBi receive antenna gain (busy channel threshold) does the device determine if another system is operating on the spectrum? The base stations transceiver design includes additional circuitry for performing an in-band interference measurement. This makesmeasurements of the co-channel power within allotted “listen” periods at the start of each frame. The power threshold above which a “contention allocation slot” will be triggered is configurable through SNMP commands to the Base Station. Airspan’s elementmanager software allows the operator to set threshold levels between –65dBm and –96dBm (relative to a 0dBi antenna gain). This is set by the “Carrier Sense Threshold” parameter in the Netspan Management software. Contention Based Protocol - FCC certPage 2 of 4 2.2.2 How long does the system observe to determine if the channel is busy – at the initial time and in between communications? The base station makes a measurement every frame (typically 5 or 10ms). The measurement period is 20us. The Base station creates “Contention slots”. These slots are typically 20-25ms. 2.2.3 What is the bandwidth being monitored versus bandwidth occupied for all modes of operation? The measurement is made over the bandwidth of operation as detection is made after the appropriate channel bandwidth filter. 2.2.4 How much variability is provided to the system operator to adjust busy channel detection threshold? The normal operating receive threshold varies depending upon the modulation and coding scheme that the CPE is using. This will range from approx -96dBm and - 70dBm for low and high order modulations respectively. The operator has no control over the upper level and we therefore regard the maximum operating receive threshold to be around -70dBm. To provide the operator with some margin whilst ensuring that the threshold cannot be set at a level that might prevent the system from operating “fairly”, the maximum level that can be set by the operator is limited by the Netspan Managment software to -65dBm. Hence, the operator can set threshold levels between -65dBm and -96dBm (relative to a 0dBi antenna gain) in steps of 1dB. 2.2.5 What is the operating system threshold (receive threshold) compared to the monitoring threshold (busy channel threshold)? The base station receive threshold for a 10MHz channel is -96dBm. The detection circuitry has a similar dynamic range. 2.2.6 What additional checks does the system perform to determine if the spectrum is being used before initiating a transmission? No additional checks are made. 2.2.7 Does the master and the client perform the threshold detection? If master only perform the detection how does it determine if the client may interfere with the other system (hidden node detection mechanism)? The system uses standard WiMAX compliant client devices. The system is a scheduled air-interface protocol where all client devices require MAP information from the base station in order to schedule uplink transmissions. In the case that the base station ceases transmissions (ie. initials a “contention slot”), the client devices will receive no MAP information, and therefore will not (cannot) transmit any signals. The base station is designed to provide wide area (macro) coverage from a “high-site” base station location. This deployment mode allows the base station to detect the presence of other channel users with negligible risk of hidden node issues. Hidden node problems are generally associated with pico or micro coverage systems (eg. WiFi). Contention Based Protocol - FCC certPage 3 of 4 Item 2.3Action taken when occupancy is determined 2.3.1 What action does your system takewhen it determines Occupancy? Does it vacate the channel or does it have some back-off and retry strategy? What is the impact of traffic on the spectrum sensing or avoidance performance? Upon detection of a transmissio…
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FCC ID: PIDGWU-200Operational Description The GWU-200is a mobile WiMAX CPE (Customer Premise Equipment) designed for connection with WiMAX networks operating in the 3650-3700 MHz band. When plugged into the USB port of a personal computer or laptop, the GWU-200 providesthe user withan “always on” broadband connection via the WiMAX network. The CPE transmit power is controlled via the WiMAX basestation to which it is connected up to the maximum permitted TX power that is set at the factory. Lower transmit levelsare used for CPE close to the basestation to optimise receive signal level at the basestation. The CPEis a transceiver using OFDMwith QPSK and 16-QAM modulations in a TDD duplexing mode. The CPEsupports operation in 5 MHz or 10 MHz channel bandwidths. The device is powered by the 5V USB power supply of its host machine. This supplyvoltage is then down converted to the required voltages supplied to the key component of the RF circuitry as shown in the accompanying exhibit “GWU-200_3G_Circuit Diagram”.
TEST REPORT FROM RFI GLOBAL SERVICES LTD Test of: WiMAX USB Modem GWU-200 To: OET Bulletin 65 Supplement C: (2001-01) Test Report Serial No: RFI/SAR/RP79027JD01A V1.0 This Test Report Is Issued Under The Authority Of Chris Guy, Head of Global Approvals: (APPROVED SIGNATORY) Checked By: Richeleiu Quoi (APPROVED SIGNATORY) Issue Date: 21 March 2011 Test Dates: 10 November 2010 to 19 January 2011 This report is issued in 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/SAR/RP79027JD01A V1.0 Version 1.0 Issue Date: 21 March 2011 Page: 2 of 89 RFI Global Services Ltd. This page has been left intentionally blank. Test Report Serial No: RFI/SAR/RP79027JD01A V1.0 Version 1.0 Issue Date: 21 March 2011 Page: 3 of 89 RFI Global Services Ltd. TABLE OF CONTENTS 1. Customer Information ...................................................................................................... 4 2. Equipment Under Test (EUT) ........................................................................................... 5 3. Test Specification, Methods and Procedures ................................................................ 8 4. Deviations from the Test Specification ........................................................................... 9 5. Operation and Configuration of the EUT during Testing ............................................ 10 6. Summary of Test Results ............................................................................................... 12 7. Measurements, Examinations and Derived Results .................................................... 13 8. Measurement Uncertainty .............................................................................................. 24 Appendix 1. Test Equipment Used .................................................................................... 26 Appendix 2. Measurement Methods .................................................................................. 29 Appendix 3. SAR Distribution Scans ................................................................................ 31 Appendix 4. Photographs .................................................................................................. 68 Appendix 5. Validation of System ...........................................................................…
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Mead House · Eversley · United Kingdom
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 9 | 3.65 GHz - 3.69 GHz | 354.80 mW | 10M0D1D | 1 ppm |

LTE Base Station
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
B42H/B43L/B48
Equipment Class
CBD - Citizens Band Category A and B Devices
LTE Base Station Radio
Equipment Class
CBD - Citizens Band Category A and B Devices
Base station of LTE fixed cellular system
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Base station of LTE fixed cellular system
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter