
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
LRS400S Data Transceiver Manual LUM0025AA Rev A Version 1.0 i FreeWave Technologies LRS400S Data Transceiver Version 1.0 FreeWave Technologies, Inc. 1880 South Flatiron Court Boulder, CO 80301 (303) 444-9200 (303) 786-9948 Fax www.FreeWave.com LRS400S Data Transceiver Users Manual LUM0025AA Rev A Version 1.0 ii LICENSED BAND WIRELESS DATA TRANSCEIVER USER MANUAL Copyright © 1995-2010 by FreeWave Technologies, Inc. All rights reserved. Published 2010. W ARRANTY FreeWave Technologies warrants your FreeWave® Wireless Data Transceiver against defects in materials and manufacturing for a period of two years from the date of shipment. In the event of a Product failure due to materials or workmanship, FreeWave will, at its option, repair or replace the Product. The Product must be returned to FreeWave upon receiving a Return Material Authorization (RMA) for evaluation of Warranty Coverage. In no event will FreeWave Technologies Inc., its suppliers, and its licensors be liable for any damages arising from the use of or inability to use this Product. This includes business interruption, loss of business information, or other loss which may arise from the use of this Product. Please be advised that OEM customer’s warranty periods may vary. Warranty Policy may not apply: 1. If Product repair, adjustments or parts replacements is required due to accident, neglect, unusual physical, electrical or electromagnetic stress. 2. If Product is used outside of FreeWave specifications. 3. If Product has been modified, repaired or altered by Customer unless FreeWave specifically authorized such alterations in each instance in writing. This includes the addition of conformal coating. Special Rate Replacement Option A special rate replacement option is offered to non-warranty returns or upgrades. The option to purchase the replacement unit at this special rate is only valid for that RMA. The special replacement rate option expires if not exercised within 30 days of final disposition of RMA. R ESTRICTED RIGHTS Any product names mentioned in this manual may be trademarks, or registered trademarks of their respective companies and are hereby acknowledged. Information in this manual is subject to change without notice and is proprietary and confidential to FreeWave Technologies, Inc. This manual is for use by purchasers and other authorized users of the FreeWave® Wireless Data Transceiver only. No part of this manual may be reproduced or transmitted in any form or by any means, electronic or mechanical, or for any purpose without the express written permission of FreeWave Technologies, Inc. FreeWave’s Wireless Data Transceivers are designed and manufactured in the United States of America. Printed in the United States of America. LRS400S Data Transceiver Users Manual LUM0025AA Rev A Version 1.0 iii CAUTION: The LRS400S series transceiver have maximum transmitted output power of 2W. It is recommended that the transmit antenna be kept at least 71 cm away from nearby persons to satisfy FCC RF exposure requirements. LRS400S Data Transceiver Users Manual LUM0025AA Rev A Version 1.0 iv Table of Contents ABOUT FREEWAVE TRANSCEIVERS.................................................................................................................6 CHOOSING A LOCATION FOR THE TRANSCEIVERS ....................................................................................6 CHOOSING POINT-TO-POINT OR POINT-TO-MULTIPOINT OPERATION........................................................................7 QUICK START ON A POINT-TO-MULTIPOINT NETWORK ..........................................................................8 POINT-TO-MULTIPOINT OPERATION LEDS. ...............................................................................................................8 QUICK START ON A POINT-TO-POINT NETWORK........................................................................................9 POINT-TO-POINT OPERATION LEDS...........................................................................................................................9 SETTING UP A TRANSCEIVER ...........................................................................................................................10 OPERATION MODE....................................................................................................................................................10 BAUD RATE..............................................................................................................................................................12 CALL BOOK..............................................................................................................................................................15 RADIO TRANSMISSION CHARACTERISTICS...............................................................................................................16 EDIT RADIO TRANSMISSION CHARACTERISTICS.......................................................................................................16 Setting Xmit and Rcv Frequencies .......................................................................................................................16 (1) and (2) Max Packet Size and Min Packet Size ...............................................................................................17 (3) Xmit Rate........................................................................................................................................................18 (4) RF Data Rate .................................................................................................................................................18 (5)RF Xmit Power................................................................................................................................................18 (6) Slave Security .................................................................................................................................................19 (7) RTS t…
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October 22, 2010 To: Elite Electronic Engineering, Inc. 1516 Centre Circle Downers Grove, IL 60515 From: FreeWave Technologies, Inc. 1880 S Flatiron Ct. Suite F Boulder, CO 80301 FCC ID: KNY- 1293514195135 Request for Confidentiality In accordance with 47 C.F.R. Section 0.459, we, FreeWave Technologies Inc., hereby request confidentiality for the block diagram, schematic, bill of materials, theory of operation, and product description presented for certification. In support of the Request for Confidentiality, the following is stated: Enclosed within this application is technical information which we deem to be trade secrets and proprietary. If made public, the information might be used to our disadvantage. To assist in assuring that we receive the full value of our product and protect its competitive posture, we respectfully request this grant of confidentiality. Thank you. Regards, Rich Arment Regulatory Compliance Leader FreeWave Technologies Inc. COMMUNICATION WITHOUT BARRIERS 1880 South Flatiron Court Suite F Boulder Colorado 80301 303.381.9200 www.freewave.com
December 1, 2010 To: Elite Electronic Engineering, Inc. 1516 Centre Circle Downers Grove, IL 60515 From: FreeWave Technologies, Inc. 1880 S Flatiron Ct. Suite F Boulder, CO 80301 FCC ID: KNY- 1293514195135 Request for Confidentiality In accordance with 47 C.F.R. Section 0.459, we, FreeWave Technologies Inc., hereby request confidentiality for the block diagram, schematic, bill of materials, theory of operation, product description and tune up procedure presented for certification. In support of the Request for Confidentiality, the following is stated: Enclosed within this application is technical information which we deem to be trade secrets and proprietary. If made public, the information might be used to our disadvantage. To assist in assuring that we receive the full value of our product and protect its competitive posture, we respectfully request this grant of confidentiality. Thank you. Regards, Rich Arment Regulatory Compliance Leader FreeWave Technologies Inc. COMMUNICATION WITHOUT BARRIERS 1880 South Flatiron Court Suite F Boulder Colorado 80301 303.381.9200 www.freewave.com
October 22, 2010 FCC ID: KNY-1293514195135 Maximum Permissible Exposure calculations To whom it may concern, FreeWave Technologies is submitting a low power output 406-430 MHz frequency Licensed Band transceiver (FCC ID: KNY-1293514195135). The MPE distance will be calculated for the worst case of a 100% transmitter duty cycle. For an isotropic radiator the surface area of a sphere can be used to determine the area over which the transceiver energy is radiated. Surface area of a sphere = 4 * π * radius 2 In the case where there is an antenna gain, the worst case energy density is increased by the antenna gain. In this case, the exposure level for a controlled environment can be calculated as follows: MPE distance =((output power*duty cycle*10*(antenna gain/10))/(4* π*Exposure Limit [mW/cm 2 ])) 1/2 In the case of 7 dBi antenna MPE distance = ((2000 mW * 1 * 5.01) /( 4 * 3.14 * 0.6)) 1/2 = 36.45 cm Sincerely, Rich Arment Engineer
E 1 5 D T F a w lite Electronic E 516 Centre Circ Downers Grove, el : (630) 495-9 7 ax: (630) 495-97 www.elitetest.c Engineering, In cle IL 60515 770 785 com F P D T T T R A nc. Meas For P.O. Number Date Tested Test Personne Test Specifica Test Report By Requested By Approved By: urement LRS40 Free W 1800 S Boulde 3339 3 Octob el Richa ation FCC " Part 1 RSS- 1 y: Richa EMC E y: Rich A Free W Raym Regis t Engine Engineer t of RF E 00S-C Tr Wave Techno S. Flatiron Cr er, CO 8030 3 ber 27, 2010 t rd King "Code of Fede 5, Subpart B 119 Issue 10 rd King Engineer Arment Wave Techno ond J. Klouda tered Profess eer of Illinois ing Test Re p Emission ransceiv ologies rt. 1 through Nove eral Regulatio and Part 90, April 2010 ologies a sional - 44894 port No. 100 ns from a ver mber 3, 2010 ons” Title 47 Subpart I 2880-01 an 0 Engineering Test Report No. 1002880-01 TABLE OF CONTENTS PARAGRAPH DESCRIPTION OF CONTENTS PAGE NO. THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED. Page 2 of 104 1. Introduction ................................................................................................................................................... 5 1.1. Scope of Tests ..................................................................................................................................... 5 1.2. Purpose ............................................................................................................................................... 5 1.3. Deviations, Additions and Exclusions .................................................................................................. 5 1.4. EMC Laboratory Identification ............................................................................................................. 5 1.5. Laboratory Conditions.......................................................................................................................... 5 2. Applicable Documents .................................................................................................................................. 5 3. EUT Setup and Operation ............................................................................................................................ 6 3.1. General Description ............................................................................................................................. 6 3.1.1. Power Input ................................................................................................................................. 6 3.1.2. Peripheral Equipment ................................................................................................................. 6 3.1.3. Signal Input/Output Leads .......................................................................................................... 6 3.1.4. Grounding ................................................................................................................................... 6 3.2. Operational Mode ................................................................................................................................ 6 3.3. EUT Modifications ................................................................................................................................ 6 4. Test Facility and Test Instrumentation ......................................................................................................... 6 4.1. Shielded Enclosure .............................................................................................................................. 6 4.2. Test Instrumentation ............................................................................................................................ 6 4.3. Calibration Traceability ........................................................................................................................ 6 4.4. Measurement Uncertainty ................................................................................................................... 7 5. Test Procedures ........................................................................................................................................... 7 5.1. Reciever ............................................................................................................................................... 7 5.1.1. Antenna Conducted Emission Measurements ............................................................................ 7 5.1.1.1. Requirements .............................................................................................................................. 7 5.1.1.2. Procedures .................................................................................................................................. 7 5.1.1.3. Results ........................................................................................................................................ 7 5.1.2. Radiated Measurements ............................................................................................................. 7 5.1.2.1. Requirements .............................................................................................................................. 7 5.1.2.2. Procedures .................................................................................................................................. 8 5.1.2.3. Results ........................................................................................................................................ 8 5.2. Transmitter ........................................................................................................................................... 9 5.2.1. RF Power Output ........................................................................................................................ 9 5.2.1.1. Requirements ..........................................................…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 9 | 410 MHz - 430 MHz | 2 W | 11K8F1D | 2.5 ppm |

LR455C
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
FHSS 902 - 928 MHz ISM band radio
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
435-470 MHz Licensed Band Transceiver,
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Wireless 802.11ac/b/g/n access point
Equipment Class
DTS - Digital Transmission System
MM2
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter