
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
70-00058-01-04 Proprietary Redline Communications © 2010 Page 1 of 136 April 19, 2010 AN-100U/UX Single Sector Wireless Access Base Station User Manual User AN-100U/UX Base Station Manual 70-00058-01-04 Proprietary Redline Communications © 2010 Page 2 of 136 April 19, 2010 Copyright Information All rights reserved April 19, 2010. The information in this document is proprietary to Redline Communications Inc. This document may not in whole or in part be copied, reproduced, or reduced to any medium without prior consent, in writing, from Redline Communications Incorporated. Contact Information: Redline Communications Inc. 302 Town Centre Blvd. Suite 100 Markham, ON Canada L3R 0E8 Web Site: http://www.redlinecommunications.com Sales Inquiries: North American: [email protected] Toll-free sales: 1-866-633-6669 International: [email protected] Support: www.redlinecommunications.com/support/support_portal.html Document Control: 70-00058-01-04-RedMAX_BaseStation_AN-100U-UX_UserManual-20100419a.doc Disclaimer The statements, configurations, technical data, and recommendations in this document are believed to be accurate and reliable, but are presented without express or implied warranty. Additionally, Redline makes no representations or warranties, either expressed or implied, regarding the contents of this product. Redline Communications shall not be liable for any misuse regarding this product. The information in this document is subject to change without notice. No part of this document shall be deemed to be part of any warranty or contract unless specifically referenced to be part of such warranty or contract within this document. User AN-100U/UX Base Station Manual 70-00058-01-04 Proprietary Redline Communications © 2010 Page 3 of 136 April 19, 2010 TABLE OF CONTENTS 1 Important Safety & Service Notices .................................................... 11 1.1 Important Warning Symbols ................................................................... 11 1.2 IC RF Exposure Warnings ...................................................................... 11 1.3 Safety Warnings ..................................................................................... 12 1.4 Deployment in the USA -- FCC Notices .................................................. 13 1.4.1 General FCC Notices ......................................................................... 13 1.4.2 Installation and Operation ................................................................... 13 1.4.3 FCC Power Settings ........................................................................... 14 AN-100U Power Settings ................................................................... 14 AN-100UX Power Settings ................................................................. 14 Federal Communications Rules for Operation in USA ........................ 15 1.5 Frequency Selection .............................................................................. 15 1.5.1 General .............................................................................................. 15 1.5.2 R&TTE Directive 1999/5/EC Statements ............................................ 15 1.6 Information For Use In Canada .............................................................. 17 1.7 Important Service Information ................................................................ 17 1.8 WEEE Product Return Process .............................................................. 18 2 RedMAX Base Station Overview ......................................................... 19 2.1 Introduction ............................................................................................ 19 2.2 IEEE 802.16 / WiMAX Compliance......................................................... 20 2.3 PHY Specification .................................................................................. 20 2.4 OFDM (256 FFT) .................................................................................... 20 2.5 Features ................................................................................................. 20 2.5.1 Privacy ............................................................................................... 20 2.5.2 Time Division Duplexing (TDD) .......................................................... 21 2.5.3 Coding Rate ....................................................................................... 21 2.5.4 Modulation.......................................................................................... 21 2.5.5 Reed Solomon Error Correction ......................................................... 21 2.5.6 Time Synchronization ......................................................................... 21 2.6 Deployment Models ............................................................................... 21 2.6.1 PTP Deployment ................................................................................ 22 2.6.2 PMP Deployment ............................................................................... 22 2.6.3 Channelization ................................................................................... 22 2.6.4 Non Line-of-Sight ............................................................................... 22 2.7 Service Flows ......................................................................................... 23 2.7.1 Service Flow Classification ................................................................. 24 2.7.2 Dynamic Service Addition ................................................................... 24 2.7.3 Default Service Flows ......................................................................... 24 2.7.4 Scheduling ......................................................................................... 24 Real-Time Polling Service (rt-PS) ....................................................... 24 Non-Real-Time Polling Service (nrt-PS) ......................................…
Text truncated - open the document above for the full version.
302 Town Centre Blvd., Suite 100, Markham, ON Canada, L3R 0E8 Bus: 905.479.8344 Fax: 905.479.5331 April 13, 2010 Equipment Autorisation Division Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 FCC ID: QC8-AN100UAE Product Name: AN-100U with TB3638F7 Transceiver Request for Confidentiality Pursuant to Sections 0.457 and 0.459 of the commissions’ rules, we hereby request that the following documents be held confidential: Block diagrams Schematic diagrams Parts List System overview These materials contain trade secrets and proprietary information and are not customarily released to the public. The public disclosure of this information might be harmful to the company and provide unjustified benefits to our competitors. If you have any queries, please do not hesitate to contact us by our TOLL FREE numbers: OUR TELEPHONE NO.: 1-866-OFDMNOW Sincerely, Dated this 13 Day of April 2010 By: Rod Cronin Signature Printed Title: Director, Product Management Telephone: 905-479-8344x2377 Applicant: Redline Communications Inc
302 Town Centre Blvd., Suite 100, Markham, ON Canada, L3R 0E8 Bus: 905.479.8344 Fax: 905.479.5331 1 Redline Communications Inc. 302 Town Center Blvd, Suite 100 Markham, Ontario L3R 0E8 Ph: (905) 479-8344 April 13, 2010 FCC ID: QC8-AN100UAE Answers to FCC Technical questions for devices operating in the 3650-3700MHz Band under Part 90Z as per 552295 D01 CBT Guidance for 3650 3700 Band v01r01. The product that we are seeking approval for is already certified for restricted use. 2.1. Unrestricted 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? [RDL] The RedMAX base station has implemented a collision avoidance mechanism which is similar to CSMA/CA (Carrier Sense Multiple Access with Collision Avoidance) used by the IEEE 802.11 standard. This additional functionality is on top of the standards based 802.16-2004 (now 2009) air interface. This “listen before transmit” function is implemented before the start of every downlink transmission frame regardless of the transmitting air interface type. If the signal power level detected is above the configurable threshold setting, the base station will not transmit. The receiver will monitor this level frame by frame be it 5ms or 10ms. Once the channel is clear transmission will begin for that frame. Then the process is restarted for the following frame. 2.2. Threshold 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? [RDL] The base station transceiver design includes additional circuitry for detecting when the channel is busy. The busy channel detection level is configurable between -104 dBm (typical noise floor level) to -65 dBm relative to a unity gain antenna. 302 Town Centre Blvd., Suite 100, Markham, ON Canada, L3R 0E8 Bus: 905.479.8344 Fax: 905.479.5331 2 2.2.2 How long does the system observe to determine if the channel is busy – at the initial time and in between communications? [RDL] The measurement is made every wireless frame (i.e. 5 ms or 10ms) between the uplink and the downlink during the RTG gap which is between 8 and 16 micro-seconds. 2.2.3 What is the bandwidth being monitored versus bandwidth occupied for all modes of operation? [RDL] The bandwidth being monitored is the entire occupied channel, either 3.5 MHz or 7 MHz, as selected by the operator. 2.2.4 How much variability is provided to the system operator to adjust busy channel detection threshold? [RDL] The busy channel detection level is configurable between -104 dBm (typical noise floor level) to - 65 dBm relative to a unity gain antenna. This allows the operator some level of flexibility for deployment while ensuring “sharing” of the band. This enforces the good RF neighbor policy for shared spectrum. 2.2.5 What is the operating system threshold (receive threshold) compared to the monitoring threshold (busy channel threshold)? [RDL] Each modulation level, corresponding to the channel bandwidth, have their own Carrier/Interference requirement which in turns determines the receive threshold. The minimum level for the subscriber station to register is using BPSK at -98 dBm. The busy channel detection threshold has the same dynamic range. 2.2.6 What additional checks does the system perform to determine if the spectrum is being used before initiating a transmission? [RDL] There are no additional checks. 2.2.7 Does the master and the client perform the threshold detection? If master only performs the detection how does it determine if the client may interfere with the other system (hidden node detection mechanism)? [RDL] The RedMAX base station uses standard WiMAX IEEE 802.16-2004 (now 2009) compliant clients (CPE). The air-interface protocol is based on scheduling; therefore every client is provided MAP information in order to transmit in the uplink. When the base station does not transmit, there is no MAP information sent to the client so it will not transmit. Due to the nature of WiMAX deployments (macro as opposed to micro or pico), the base station has the vantage point of listening to the entire coverage area thus mitigating any chance of a hidden node. 2.3 Action taken when occupancy is determined 2.3.1 What action does your system take when 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? 302 Town Centre Blvd., Suite 100, Markham, ON Canada, L3R 0E8 Bus: 905.479.8344 Fax: 905.479.5331 3 [RDL] When the detection threshold is exceeded, the base station will not transmit. It will continue to monitor the channel and will resume the transmission once the RF channel becomes available. There is no impact of the traffic on the spectrum sensing. The mechanism works with 100% uplink and downlink bandwidth utilization. 2.3.2 If you use other means, please describe how the device determines the existence of other systems and what steps it takes to either share the channel or avoid its use. [RDL] Not applicable. 2.3.3 Describe any mechanism that would limit a transmission from a remote station if only the master detects occupancy (hidden node avoidance mechanism). [RDL] When the base station does not transmit, there is no MAP information sent to the client so it will not transmit. Due to the nature of WiMAX deployments (macro as opposed to micro or pico), the base station has the vantage point of listening to the e…
Text truncated - open the document above for the full version.
April 13, 2010 Nemko Canada 303 River Road Ottawa, Ontario K1V 1H2 Canada IC: 4310-AN100UAE Model Number: AN-100U with Transceiver TB3638 RedMAX Base Station (AN-100U) comprises of a common indoor unit and an outdoor unit. In this test case the outdoor unit is the TB3638F7 transceiver. The units are separately labeled. The IC certification number will be placed on the radio modules only as the indoor equipment is common to all radios. Radio Module Label Indoor Unit Label Sincerely yours, Rod Cronin Director, Product Management Redline Communications
Friday, September 03, 2010 302 Town Centre Blvd., Suite 100, Markham, ON Canada. L3R 0E8 Phone: 905.479.8344 To Whom It May Concern This is to certify that our RedMax AN-100U with TB3638F7 Transceiver system does not need any Tune-up procedure over the power range, or at specific operating power levels when operating in the band 3600-3800. If you have any questions, please contact the undersigned. Dated this 03 Day of September 2010 By: Rod Cronin Signature Printed Title: Director, Product Management Telephone: 905-479-8344x2377 Applicant: Redline Communications Inc
Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the 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 Maximum peak output power at device output terminal:23.52(dBm) Cable and Jumper loss0.0(dB) Maximum peak output power at antenna input terminal:23.52(dBm) Maximum peak output power at antenna input terminal:224.9054606(mW) Single Antenna gain(typical):13(dBi) Number of Antennae1 Total Antenna gain(typical):13(dBi) Maximum antenna gain:19.95262315(numeric) Prediction distance:20(cm) Prediction frequency:3660(MHz) MPE limit for uncontrolled exposure at prediction frequency:1(mW/cm²) Power density at prediction frequency:0.892751(mW/cm²) 8.927506(W/m²) Tx On time:100.000000(ms) Tx period time:100.000000(ms) Average Factor:100.000000 Average Power density at prediction frequency:8.927506(W/m²) 0.892751(mW/cm²) Maximum allowable antenna gain:13.49269855(dBi) Margin of Compliance:0.492698554 dB 2 4R PG S π =
Nemko Canada Inc. 303 River Road, Ottawa, Ontario K1V 1H2 T 1 613 737 9680 F 1 613 737 9691TF 1 800 563 6336 Nemko Test Report: 147586-1TRFWL Applicant: Redline Communications 302 Town Center Blvd. Markham, Ontario Canada, L3R 0E8 Apparatus: TB3638F7 Transceiver FCC ID: QC8-AN100UAE In Accordance With: FCC Part 90 Subpart Z Wireless Broadband Services in the 3650–3700 MHz Band Authorized By: Andrey Adelberg, Senior Wireless/EMC Specialist Date: April 14, 2010 Total Number of Pages: 40 Email [email protected] Web www.nemko.com Nemko Canada Inc. Report Number: 147586-1TRFWL Specification: FCC Part 90 Subpart Z TABLE OF CONTENTS Section 1 : Report Summary......................................................................................................................3 Section 2 : Equipment Under Test.............................................................................................................4 2.1 Identification of Equipment Under Test (EUT)..........................................................................................4 2.2 Accessories.................................................................................................................................................4 2.3 EUT Description.........................................................................................................................................4 2.4 Technical Specifications of the EUT..........................................................................................................5 2.5 EUT Setup diagram....................................................................................................................................5 2.6 Operation of the EUT during testing..........................................................................................................6 2.7 Modifications incorporated in the EUT ......................................................................................................6 Section 3 : Test Conditions.........................................................................................................................7 3.1 Specifications.............................................................................................................................................7 3.2 Deviations From Laboratory Test Procedures ............................................................................................7 3.3 Test Environment.......................................................................................................................................7 3.4 Measurement Uncertainty...........................................................................................................................7 3.5 Test Equipment...........................................................................................................................................8 Section 4 : Results Summary.....................................................................................................................9 4.1 FCC Part 90 Subpart I: Test Results...........................................................................................................9 4.2 FCC Part 90 Subpart Z: Test Results..........................................................................................................9 Appendix A : Test Results........................................................................................................................10 Clause 90.205/90.1321 Power and antenna limits...............................................................................................10 Clause 90.209 Occupied Bandwidth....................................................................................................................22 Clause 90.210(n)/90.1323 Emission Limits Spurious emissions at the antenna terminal....................................29 Clause 90.210/90.1323 Field Strength of spurious radiation...............................................................................34 Clause 90.213 Frequency Stability......................................................................................................................38 Appendix B : Setup Photographs............................................................................................................39 Appendix C : Block Diagram of Test Setups..........................................................................................40 Page 2 of 40 SECTION 1 : REPORT SUMMARY Nemko Canada Inc. Report Number: 147586-1TRFWL Specification: FCC Part 90 Subpart Z Section 1 : Report Summary These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with Part 90. Conducted measurements were performed in accordance with ANSI TIA-603-B-2002. Radiated tests were conducted is accordance with ANSI C63.4-2003. The assessment summary is as follows: Apparatus Assessed: TB3638F7 Transceiver Specification: FCC Part 90 Subpart Z Compliance Status: Complies Exclusions: None Non-compliances: None Report Release History: Original Release Test Location: Nemko Canada Inc. 303 River Road Ottawa, Ontario K1V 1H2 Registration Number: 176392 (3 m Semi-Anechoic Chamber) Tests Performed By: Kevin Ma, Wireless/EMC Specialist Test Dates: April 2010 Note that the results contained in this report relate only to the items tested and were obtained in the period between the date of initial receipt of samples and the date of issue of the report. This test report has been completed in accordance with the requirements of ISO/IEC 17025. All results contain in this report are within Nemko Canada’s ISO/IEC 17025 accreditation. Nemko Canada Inc. authorizes the applicant to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Ca…
Text truncated - open the document above for the full version.
Redline Communications Inc. Confidential Page 1 of 9 Re: FCC ID: QC8-AN100UAE Applicant: Redline Communications Inc. The RedMAX base station AN-100U has implemented contention based protocol which is identical to already approved AN-100UX system FCC ID: QC8-AN100UXA. CBP was validated using the same test procedure as above mentioned product. Question 1: Please submit test results that demonstrate threshold parameters. In this test you should use a single tone interference signal in and out of band. Tests may include spectrum analyzer screen captures and tabulated data. Answer 1: Section 1describes the test equipment used, the test set-up and the test results to demonstrate the threshold parameters. 1. Transmitter Unrestricted Contention Based Protocol Test 1.1. Test Equipment Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. Spectrum Analyzer Rhode & Schwarz FSL 6 RLC-1230- 510-00012 March -5-2010 March-5-2011 Signal Generator Rhode & Schwarz SMR 20 RLC-1260- 525-00004 Sept-01-2009 Sept-01-2010 Directional Coupler Pasternak PE 2210-10 – COU COU Fixed Attenuator 20dB Mini-Circuits UNAT-20 – COU COU 50 ohm termination Mini-Circuits MLC ANNE -50 – COU COU Variable Attenuator 0 – 80 dB ARRA Inc. 5955-80 SN: 914 COU COU Circulator JQL B01260267 COU COU *COU-calibrate on use Redline Communications Inc. Confidential Page 2 of 9 1.2. Test Setup BS Directional coupler Spectrum Analyzer CW Generator SS (CPE) circulator 20dB attenuator Variable attenuator 50 ohm termination Redline Communications Inc. Confidential Page 3 of 9 1.3. Test Results The plots below show the EUT turning off when an interferer is applied, then on again when interferer is turned off. Test No. Channel Frequency (MHz) Channel Bandwidth (MHz) Noise Threshold (dBm) Interferer Frequency offset (MHz) Interferer level (dBm) Tx-Off 1 3653.5 7 -65 0 -64 Y -10 dBm -20 dBm -30 dBm -40 dBm -50 dBm -60 dBm -70 dBm -80 dBm -90 dBm D2[1] M1[1] D1[1] - 26.60 dB 196.560000000 ms - 38.84 dBm 126.000000000 ms 25.60 dB 224.000000000 ms CF3.6535 GHz50.0 ms/ * * * RBW VBW SWT 1 MHz 1 MHz 500ms Offs10.0 dB Ref 0.0 dBm *Att0 dB 1Rm Clrw SGL M1 D1 D2 Date: 15.JUN.2010 14:15:19 Redline Communications Inc. Confidential Page 4 of 9 Test No. Channel Frequency (MHz) Channel Bandwidth (MHz) Noise Threshold (dBm) Interferer Frequency Offset(MHz) Interferer level (dBm) Tx-Off 2 3696.5 7 -65 0 -64 Y -10 dBm -20 dBm -30 dBm -40 dBm -50 dBm -60 dBm -70 dBm -80 dBm -90 dBm D2[1] M1[1] D1[1] - 28.57 dB 196.560000000 ms - 36.77 dBm 64.000000000 ms 18.27 dB 221.000000000 ms CF3.6965 GHz50.0 ms/ * * * RBW VBW SWT 1 MHz 1 MHz 500ms Offs10.0 dB Ref 0.0 dBm *Att0 dB 1Rm Clrw SGL M1 D1 D2 Date: 15.JUN.2010 14:19:06 Redline Communications Inc. Confidential Page 5 of 9 Test No. Channel Frequency (MHz) Channel Bandwidth (MHz) Noise Threshold (dBm) Interferer Frequency Offset(MHz) Interferer level (dBm) Tx-Off 3 3651.75 3.5 -65 0 -64 Y -10 dBm -20 dBm -30 dBm -40 dBm -50 dBm -60 dBm -70 dBm -80 dBm -90 dBm M2[1] M1[1] D1[1] - 65.47 dBm 399.560000000 ms - 36.20 dBm 202.000000000 ms 24.89 dB 221.000000000 ms CF3.65175 GHz50.0 ms/ * * * RBW VBW SWT 1 MHz 1 MHz 500ms Offs10.0 dB Ref 0.0 dBm *Att0 dB 1Rm Clrw SGL M1 M2 D1 Date: 15.JUN.2010 14:21:37 Redline Communications Inc. Confidential Page 6 of 9 Test No. Channel Frequency (MHz) Channel Bandwidth (MHz) Noise Threshold (dBm) Interferer Frequency Offset(MHz) Interferer level (dBm) Tx-Off 4 3698.25 3.5 -65 0 -64 Y -10 dBm -20 dBm -30 dBm -40 dBm -50 dBm -60 dBm -70 dBm -80 dBm -90 dBm D2[1] M1[1] D1[1] - 27.97 dB 179.560000000 ms - 36.65 dBm 84.000000000 ms 26.00 dB 221.000000000 ms CF3.69825 GHz50.0 ms/ * * * RBW VBW SWT 1 MHz 1 MHz 500ms Offs10.0 dB Ref 0.0 dBm *Att0 dB 1Rm Clrw SGL M1 D1 D2 Date: 15.JUN.2010 14:24:36 Redline Communications Inc. Confidential Page 7 of 9 Table 1 7-MHz Channel Bandwidth Tests were performed at co-channel, adjacent channel and adjacent half-channel spacing. Test No. Channel Frequency (MHz) Channel Bandwidth (MHz) Noise Threshold (dBm) Interferer Frequency Offset (MHz) Interferer level (dBm) Tx-Off 1 3653.5 7 -65 0 -64 Y 2 3653.5 7 -65 0 -70 N 3 3653.5 7 -65 -7 -65 N 4 3653.5 7 -65 -7 -60 N 5 3653.5 7 -65 +7 -65 N 6 3653.5 7 -65 +7 -60 N 7 3653.5 7 -100 0 -99 Y 8 3653.5 7 -100 0 -101 N 9 3653.5 7 -100 -7 -100 N 10 3653.5 7 -100 -7 -95 N 11 3653.5 7 -100 +7 -100 N 12 3653.5 7 -100 +7 -95 N 13 3653.5 7 -65 -3.5 -64 Y 14 3653.5 7 -65 +3.5 -64 Y 15 3653.5 7 -100 -3.5 -101 N 16 3653.5 7 -100 +3.5 -101 N 17 3696.5 7 -65 0 -64 Y 18 3696.5 7 -65 0 -70 N 19 3696.5 7 -65 -7 -65 N 20 3696.5 7 -65 -7 -60 N 21 3696.5 7 -65 +7 -65 N 22 3696.5 7 -65 +7 -60 N 23 3696.5 7 -100 0 -99 Y 24 3696.5 7 -100 0 -101 N 25 3696.5 7 -100 -7 -100 N 26 3696.5 7 -100 -7 -95 N 27 3696.5 7 -100 +7 -100 N 28 3696.5 7 -100 +7 -95 N 29 3696.5 7 -65 -3.5 -64 Y 30 3696.5 7 -65 +3.5 -64 Y 31 3696.5 7 -100 -3.5 -101 N 32 3696.5 7 -100 +3.5 -101 N Redline Communications Inc. Confidential Page 8 of 9 Table 2 3.5MHz Channel Bandwidth Tests were performed at co-channel, adjacent channel and adjacent half-channel spacing. Test No. Channel Frequency (MHz) Channel Bandwidth (MHz) Noise Threshold (dBm) Interferer Frequency Offset (MHz) Interferer level (dBm) Tx-Off 1 3651.75 3.5 -65 0 -64 Y 2 3651.75 3.5 -65 0 -70 N 3 3651.75 3.5 -65 -3.5 -65 N 4 3651.75 3.5 -65 -3.5 -60 N 5 3651.75 3.5 -65 +3.5 -65 N 6 3651.75 3.5 -65 +3.5 -60 N 7 3651.75 3.5 -100 0 -99 Y 8 3651.75 3.5 -100 0 -101 N 9 3651.75 3.5 -100 -3.5 -100 N 10 3651.75 3.5 -100 -3.5 -95 N 11 3651.75 3.5 -100 +3.5 -100 N 12 3651.75 3.5 -100 +3.5 -95 N 13 3651.75 3.5 -65 -1.75 -64 Y 14 3651.75 3.5 -65 +1.75 -64 Y 15 3651.75 3.5 -100 -1.75 -101 N 16 3651.75 3.5 -100 +1.75 -101 N 17 3698.25 3.5 -65 0 -64 Y 18 3698.25 3.5 -65 0 -70 N 19 3698.25 3.5 -65 -3.5 -65 N 20 3698.25 3.5 -65 -3.5 -60 N 21 3698.25 3.5 -65 +3.5 -65 N 22 3698.25 3.5 -65 +3.5 -60 N 23 3698.25 3.5 -100 0 -99 Y 24 3698.25 3.5 -100 0 -101 N 25 3698.25 3.5 -100 -3.5 -100 N 26 3698.25 3.5 -100 -3.5 -95 N 2…
Text truncated - open the document above for the full version.
302 Town Centre Blvd., Suite 100 · Markham · Canada
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 9 | 3.65 GHz - 3.70 GHz | 4.49 W | 6M28W7D | 0.68 ppm |
Advanced Broadband Wireless Infrastructure Solution
Equipment Class
NII - Unlicensed National Information Infrastructure TXAdvanced Broadband Wireless Infrastructure Solution
Equipment Class
TNB - Licensed Non-Broadcast Station TransmitterBroadband wireless infrastructure product
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
White Space Device with Geo-location - Fixed
Equipment Class
WGF - White Space Device with Geo-location- Fixed
Advanced Broadband Wireless Infrastructure Solution
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter