
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Part Number: LUM0020CD Revision: June-2020 LRS455A Wireless Data Radio LRS455A-C LRS455A-CE LRS455A-T Covering Firmware 1.79 User-Reference Manual •••O FAEEWAVE LRS455A-C, LRS455A-CE, LRS455-T User-Reference Manual LUM0020CD Rev June-2020Page 2 of Copyright © 2019 FreeWave This document is subject to change without notice. This document is the property of FreeWave Technologies, Inc. and contains proprietary information owned by FreeWave. This document cannot be reproduced in whole or in part by any means without written permission from FreeWave Technologies, Inc. Safety Information The products described in this manual can fail in a variety of modes due to misuse, age, or malfunction and is not designed or intended for used in systems requiring fail-safe performance, including life safety systems. Systems with the products must be designed to prevent personal injury and property damage during product operation and in the event of product failure. FreeWave Technologies, Inc. warrants the FreeWave® LRS455 Wireless Data Radio (Product) that you have purchased against defects in materials and manufacturing for a period of three years from the date of shipment, depending on model number. In the event of a Product failure due to materials or workmanship, FreeWave will, at its discretion, repair or replace the Product. For evaluation of Warranty coverage, return the Product to FreeWave upon receiving a Return Material Authorization (RMA). The replacement product will remain under warranty for 90 days or the remainder of the original product warranty period, whichever is longer. IN NO EVENT WILLFREEWAVETECHNOLOGIES, INC.,ITS SUPPLIERS,OR ITS LICENSORS BE LIABLE FOR ANY DAMAGES ARISING FROM THE USE OF OR INABILITY TO USE THISPRODUCT. THIS INCLUDES BUSINESS INTERRUPTION,LOSS OF BUSINESS INFORMATION,INABILITY TO ACCESS OR SEND COMMUNICATION OR DATA,PERSONAL INJURY OR DAMAGE,OR OTHER LOSS WHICH MAY ARISE FROM THE USE OF THISPRODUCT. THEWARRANTY IS EXCLUSIVE AND ALL OTHER WARRANTIES EXPRESS OR IMPLIED,INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR USE ARE EXPRESSLY DISCLAIMED. FreeWave’s Warranty doesnot applyin the following circumstances: 1. If Product repair, adjustments, or parts replacements are required due to accident, neglect, or undue physical, electrical, or electromagnetic stress. 2. If Product is used outside of FreeWave specifications as stated in the Product's data sheet. 3. If Product has been modified, repaired, or altered by Customer unless FreeWave specifically authorized such alterations in each instance in writing. Where applicable, this includes the addition of conformal coating. FreeWave Technologies, Inc. 5395 Pearl Parkway, Boulder, CO 80301 303.381.9200 Toll Free: 1.866.923.6168 Fax: 303.786.9948 Copyright © 2019 by FreeWave Technologies, Inc. All rights reserved. www.freewave.com LUM0020CD Rev June-2020Page 3 of Copyright © 2019 FreeWave This document is subject to change without notice. This document is the property of FreeWave Technologies, Inc. and contains proprietary information owned by FreeWave. This document cannot be reproduced in whole or in part by any means without written permission from FreeWave Technologies, Inc. Table of Contents Preface 7 1. Overview9 1.1. Choosing a Location for the Radios10 1.2. Choosing Point-to-Point or Point-to-MultiPoint Operation10 1.3. Examples of Data Communication Links12 1.3.1. Example 1 - Point-to-Point Link12 1.3.2. Example 2 - Point-to-Point Link with Repeater12 1.3.3. Example 3 - Standard Point-to-Multipoint Network14 2. Equipment15 2.1. Included Equipment15 2.1.1. User-supplied Equipment15 2.2. Finding the Product Serial Number16 3. Installation17 3.1. Power the Radio18 3.2. Radio Setup Mode18 3.2.1. Use Tool Suite to Connect to and Program Radios19 3.2.2. Access the Setup Menu using a Terminal Emulator in Tool Suite21 3.2.3. Troubleshooting Terminal Emulators23 3.3. Configuration Tool Options24 3.3.1. Tool Suite and Terminal Emulators24 3.4. Upgrade the Radios to the Latest Firmware Version25 4. Basic Radio Programming and Setup26 4.1. Define the Network Type and the Radio's Role in that Network27 4.2. Establish Communication with Instrumentation and Computers29 4.2.1. Baud Rate30 4.2.2. Data Parity30 4.2.3. Flow Control31 4.2.4. Modbus RTU32 4.2.5. Serial Interface32 4.2.6. Setup Port33 4.2.7. Turn Off Delay34 4.2.8. Turn On Delay35 4.2.9. Use Break to Access Setup35 4.3. Establishing Communication with Other Radios in the Network36 4.3.1. Golden Settings 36 4.4. Set the Data Transmission Characteristics37 4.4.1. High Noise38 LRS455A-C, LRS455A-CE, LRS455-T User-Reference Manual LUM0020CD Rev June-2020Page 4 of Copyright © 2019 FreeWave This document is subject to change without notice. This document is the property of FreeWave Technologies, Inc. and contains proprietary information owned by FreeWave. This document cannot be reproduced in whole or in part by any means without written permission from FreeWave Technologies, Inc. 4.4.2. Hop Table Size38 4.4.3. Low Power Mode38 Conserve Power40 4.4.4. Max Packet Size and Min Packet Size40 4.4.5. Network ID43 4.4.6. Remote LED43 4.4.7. Retry Timeout44 4.4.8. RF Data Rate45 4.4.9. RTS to CTS46 4.4.10. Rx Frequency46 4.4.11. Slave Security47 4.4.12. Transmit Power48 4.4.13. Transmit Rate49 4.4.14. Tx Frequency50 4.5. Set Radio Passwords51 4.5.1. Set a Password51 4.5.2. Change the Password52 4.5.3. Disable the Password52 4.6. Set the Hop Table Size in the Terminal Interface53 4.7. Set the Radio to a Single Channel in a Terminal Emulator53 4.8. Set the Radio to Hop Channels53 4.9. Edit Frequencies for Multiple Channels54 5. Configure Point-to-MultiPoint Networks55 5.1. Point to MultiPoint Network Characteristics56 5.1.1. Golden Settings56 5.1.2. Master to Slave Communications56 5.1.3. Slave to Master Communications56 5.2. Point-to-MultiPoint Network Quick Start (Terminal Interface)57 5.3. Overlapping MultiPoint Networks58 5.4. Est…
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Page 1 of 1 July 10, 2020 National Technical Systems TCB 41039 Boyce Road Fremont, CA, 94538 FCC ID: KNYLRS455A IC: 2329B-LRS455A To whom it may concern: The enclosed documents constitute a formal submittal and application for a Modular FCC Equipment Authorization and ISED Canada Certification for a modular data transceiver pursuant to the following rules: Part 90 of FCC Rules (CFR 47) RSS-Gen Issue 5, April 2018, “General Requirements for Compliance of Radio Apparatus” RSS-119, Issue 12, May 2015, “ Land Mobile and Fixed Equipment Operating in the Frequency Range 27.41-960 MHz ” National Technical Systems, as duly authorized agent prepared this submittal. A copy of the letter of our appointment as agent is included with the application. If there are any questions or if further information is needed, please contact National Technical Systems for assistance. Sincerely, David W. Bare Chief Engineer
National Technical Systems – Silicon Valley TCB 41039 Boyce Road Fremont, CA. 94538 07/09/2020 Gentlemen: This is your letter of authorization to accept our appointment of National Technical Systems – Silicon Valley as our Agent for 5395 Pearl Parkway, Boulder, CO 80301, to sign applications before National Technical Systems – Silicon Valley TCB and to make representations to you on our behalf. National Technical Systems – Silicon Valley is to receive and exchange data between our company and National Technical Systems – Silicon Valley TCB. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in FCC and Industry Canada’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for Certification, as specified by National Technical Systems – Silicon Valley TCB, still resides with Freewave Technologies. I hereby certify on behalf of Freewave Technologies ("Applicant") that neither Applicant nor any party to the application (officers, directors, and 5% shareholders) is subject to a denial of Federal benefits that includes FCC benefits pursuant to section 5301 of the Anti-Drug Abuse Act of 1988 21 U.S.C. 853a. Sincerely, Mike Drake VP Engineering
Request for Confidentiality 07/09/2020 Subject: Confidentiality Request for: ______ KNYLRS455A / 2329B-LRS455A______ Pursuant to FCC 47 CRF 0.457(d) and 0.459 and/or RSP-100, the applicant requests that a part of the subject FCC and/or ISED application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term External Photos Short Term Permanent* 1 Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Parts List & Placement/BOM Short Term Permanent Tune-Up Procedure Short Term Permanent Schematics Short Term Test Setup Photos Short Term Permanent* User’s Manual *Note: ___________ _____Freewave Technologies______ has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality: The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of ___180___ days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Applicant is also aware that they are responsible to notify FCC in the event information regarding the product or the product is made available to the public. FCC will then release the documents listed above for public disclosure pursuant to FCC KDB 726920 D01. The applicant understands that until such time that Innovation Science and Economic Development Canada distinguishes between Short Term and Permanent Confidentiality, either type of marked exhibit above will simply be marked Confidential when submitted to ISED. Sincerely, By: __________________________________________ __Mike Drake_______________ (Signature/Title 2 ) (Printed name) 1 - The asterisked items (*) require further justification before permanent confidentiality will be allowed. These also currently require review by the FCC under their Permit-But-Ask policy before the grant is issued and can delay completion of an application. Further justification should be added to the note above. One such example for a potted device would be: “The EUT is FULLY potted using a non-removable epoxy based material. Removal of potting material causes irreparable damage to internal circuitry. See photographs exhibits that outline the device before and after potting.”
FreeWave Technologies, Inc. 5395 Pearl Parkway Boulder, CO 80301 303.381.9200 Date: 07/24/2020 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Justification Letter – Extended Frequency Range Dear Sir/Madam, The radio with FCC ID KNYLRS455A was designed to operate in the frequency band 435 MHz to 470 MHz. To aid equipment authorization in other countries which accept the United States FCC Grant for certification, FreeWave Technologies, Inc. is requesting that the FCC lists the frequencies 435-470 MHz, under FCC Rule Parts 90 on the FCC grant. Per the FCC’s KDB634817 guidance, as an alternative to listing the exact frequencies, we acknowledge that it’s a violation of the FCC Rules if this device operates on unauthorized frequencies. For the FCC’s Rule Parts 90 applications, this radio will be used by FCC Licensed users as indicated in the table below. Frequency Range (MHz) FCC Rule part 435-450 90 450-454 90 454-455 90 455-456 90 456-460 90 460-462.5375 90 462.7375-467.5375 90 467.7375-470 90 Mike Drake
Limited Modular Approval is being requested for this device. The following paragraphs detail the requirements for modules and explain how the module meets those requirements. Where requirements are not met a justification for a limited modular approval is presented. FCC §15.212 Requirements for Single Modular Transmitters (includes RSS GEN Section 3.2.2) (a) Single modular transmitters consist of a completely self-contained radiofrequency transmitter device that is typically incorporated into another product, host or device. Split modular transmitters consist of two components: a radio front end with antenna (or radio devices) and a transmitter control element (or specific hardware on which the software that controls the radio operation resides). All single or split modular transmitters are approved with an antenna. All of the following requirements apply, except as provided in paragraph (b) of this section. (1) Single modular transmitters must meet the following requirements to obtain a modular transmitter approval. (i) The radio elements of the modular transmitter must have their own shielding. The physical crystal and tuning capacitors may be located external to the shielded radio elements. The module contains a shield. Cold rolled steel, tin-plated. Located over RF section of PCB. (ii) The modular transmitter must have buffered modulation/data inputs (if such inputs are provided) to ensure that the module will comply with part 15 requirements under conditions of excessive data rates or over-modulation. Data to the modulation circuit is buffered on the module via U10 and U14 (iii) The modular transmitter must have its own power supply regulation. The module contains its own power supply regulation and the rf reference oscillator is contained within the module. Power supply regulation is provided via U12 (iv) The modular transmitter must comply with the antenna and transmission system requirements of §§15.203, 15.204(b) and 15.204(c). The antenna must either be permanently attached or employ a “unique” antenna coupler (at all connections between the module and the antenna, including the cable). The “professional installation” provision of §15.203 is not applicable to modules but can apply to limited modular approvals under paragraph (b) of this section. The module connects to its antenna via MCX or SMA connector. Installation instructions for the module explain that only these antennas may be used with the device and that the end user shall not be able to access the antenna port or change antennas. (v) The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing for compliance with part 15 requirements. Unless the transmitter module will be battery powered, it must comply with the AC line conducted requirements found in §15.207. AC or DC power lines and data input/output lines connected to the module must not contain ferrites, unless they will be marketed with the module (see §15.27(a)). The length of these lines shall be the length typical of actual use or, if that length is unknown, at least 10 centimeters to insure that there is no coupling between the case of the module and supporting equipment. Any accessories, peripherals, or support equipment connected to the module during testing shall be unmodified and commercially available (see §15.31(i)). Test data contained in this application is for the device tested in a stand-alone configuration. Radiated spurious emissions data and AC conducted emissions data demonstrating compliance with the requirements of Part 15 of the FCC rules for intentional radiators and RSS GEN/RSS 210 has been provided. (vi) The modular transmitter must be equipped with either a permanently affixed label or must be capable of electronically displaying its FCC identification number. (A) If using a permanently affixed label, the modular transmitter must be labeled with its own FCC identification number, and, if the FCC identification number is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: XYZMODEL1” or “Contains FCC ID: XYZMODEL1.” Any similar wording that expresses the same meaning may be used. The Grantee may either provide such a label, an example of which must be included in the application for equipment authorization, or, must provide adequate instructions along with the module which explain this requirement. In the latter case, a copy of these instructions must be included in the application for equipment authorization. (B) If the modular transmitter uses an electronic display of the FCC identification number, the information must be readily accessible and visible on the modular transmitter or on the device in which it is installed. If the module is installed inside another device, then the outside of the device into which the module is installed must display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains FCC certified transmitter module(s).” Any similar wording that expresses the same meaning may be used. The user manual must include instructions on how to access the electronic display. A copy of these instructions must be included in the application for equipment authorization. The module is appropriately labeled (refer to the label and label location drawings contained within this application). Instructions to the end user regarding the labeling requirements for host devices are included in this application. (vi i) The modular transmitter must comply with any specific rules or operating requirements that ordinarily apply to a complete transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instruc…
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Corporate Office: 1097 N. Batavia St. Orange, CA 92867Material Specification Sheet 800.429.4321www.labeltronix.com Fax 800.419.1555 LTX 600Thermal Transfer Gloss White Polyester Product Description A general purpose, high performance polyester label film. LTX 600 is UL/CSA approved, when printed with a LABEL TRONIX® 500 Plus™ ribbon under UL# MH26576. This facestock resists tearing, abrasion and heat. The gloss white surface makes label graphics easy to read. Facestock Description A gloss, topcoated, thermal transfer printable, white polyester. Static dissipating properties reduce print voids in thermal transfer printing, which are due to static generated at the printhead. Test Property .....................................................................Typical Values Type ....................................................................................Gloss White Polyester Caliper (mils) .......................................................................2.0 ± 10% Ribbon Compatibility............................................................500 Plus™ Adhesive Description An aggressive, high performance permanent adhesive. This adhesive offers high initial tack, high shear, and high ultimate bond to a wide variety of surfaces. Test Property .....................................................................Typical Values Type ....................................................................................General Purpose Acrylic Application Temperature (Minimum)....................................50 ̊F Service Temperature Range ...............................................-40 ̊F to 302 ̊F Liner Description Test Property .....................................................................Typical Values Type ....................................................................................Bleached Kraft Caliper (mils) .......................................................................3.1 ± 10% Recommendations • One-year shelf life from receipt of material, if properly stored. • Recommended storage conditions are 72°F (22°C) and 50% relative humidity. • Good for use in: UL rating plates and nameplates, material tracking, under the hood labels, parts identification, and asset management labels. As with all pressure-sensitive materials, LABELTRONIX recommends this product be tested thoroughly under end-use conditions to make sure it meets the requirements of the specific application. ∗ ∗∗ ∗Please note that the above data represents expected averages with variances following industry standards. They should not be misinterpreted as minimum or absolute values. This specification sheet was updated and confirmed as of 11/01/01.
EMC Test Data Client: Contact: Standard: Specific Details General Test Configuration No 95 Summary of Results Device complies with Power Density requirements at 20cm separation: If not, required separation distance (in cm): Deviations From The Standard No deviations were made from the requirements of the standard. Test Engineer: David Bare Calculation uses the free space transmission formula: S = (PG)/(4 πd 2 ) Where: S is power density (W/m 2 ), P is output power (W), G is antenna gain relative to isotropic, d is separation distance from the transmitting antenna (m). Maximum Permissible Exposure / SAR Exclusion Objective: Evaluate the RF Exposure requirements per FCC 1.1310, 2.1091, 2.1093 and RSS-102. Date of Test: 6/12/2020 Riaz MomandProject Engineer: David Bare FCC Parts 15 & 90, RSS-119Class: N/A FreeWave Technologies, Inc.PR Number: PR109246 Model: LRS455A T-Log Number: TL109246-RANA Project Manager: Deepa Shetty TL109246-RANA.xlsMPE Calc 12-Jun-20Page 1 of 2 EMC Test Data Client: Contact: Standard: Riaz MomandProject Engineer: David Bare FCC Parts 15 & 90, RSS-119Class: N/A FreeWave Technologies, Inc.PR Number: PR109246 Model: LRS455A T-Log Number: TL109246-RANA Project Manager: Deepa Shetty FCC MPE Calculation Use: General Antenna: Maximum 9.25 dBi Cable Loss AntPower Freq.LossGainat AntEIRP MHzdBmmW*dBdBidBmmW 43533.52238.709.2533.518836.49 45033.52238.709.2533.518836.49 47033.52238.709.2533.518836.49 For the cases where S > the MPE Limit Fre q. MHz 435 450 470 Industry Canada MPE Calculation Use: General Antenna: Maximum 9.25 dBi Cable Loss AntPower Freq.LossGainat AntEIRP MHzdBmmW*dBdBidBmmW 45033.52238.709.2533.518836.49 46033.52238.709.2533.518836.49 47033.52238.709.2533.518836.49 For the cases where S > the MPE Limit Fre q. MHz 450 460 470 0.1660.17393.1 0.1660.17592.4 0.1660.17093.8 at 95 cmat 95 cmS <= MPE Limit mW/cm^2mW/cm^2cm 0.1660.175 Power Density (S)MPE LimitDistance where mW/cm^2mW/cm^2 0.1660.170 0.1660.173 EUTPower Density (S)MPE Limit Power (in. Tolerance)at 95 cmat 95 cm 0.1660.31369.2 0.1660.29071.9 0.1660.30070.7 at 95 cmat 95 cmS <= MPE Limit mW/cm^2mW/cm^2cm 0.1660.313 Power Density (S)MPE LimitDistance where mW/cm^2mW/cm^2 0.1660.290 0.1660.300 EUTPower Density (S)MPE Limit Power (in. Tolerance)at 95 cmat 95 cm TL109246-RANA.xlsMPE Calc 12-Jun-20Page 2 of 2
41039 Boyce Road 510-578-3500 Phone Fremont, CA. 94538 510-440-9525 Fax File: FR-109246.01-NARF Rev 1 Page 1 Radio Test Report FCC Part 90 and RSS-119 (USA: 435 MHz to 470 MHz) (Canada: 450 MHz to 470 MHz) Model(s): LRS455A IC CERTIFICATION #: 2329B-LRS455A FCC ID: KNYLRS455A COMPANY: FreeWave Technologies, Inc. 5395 Pearl Parkway Boulder, CO 80301 TEST SITE(S): National Technical Systems 41039 Boyce Road. Fremont, CA. 94538-2435 PROJECT NUMBER: PR109246 REPORT DATE: July 17, 2020 REISSUE DATE: July 27, 2020 FINAL TEST DATES: June 4, 5 and 8, 2020 TOTAL NUMBER OF PAGES: 49 This report and the information contained herein represent the results of testing of only those articles / products identified in this document and selected by the client. The tests were performed to specifications and/or procedures selected by the client. National Technical Systems (NTS) makes no representations expressed or implied that such testing fully demonstrates efficiency, performance, reliability, or any other characteristic of the articles being tested, or similar products. This report should not be relied upon as an endorsement or certification by NTS of the equipment tested, nor does it present any statement whatsoever as to its merchantability or fitness of the test article or similar products, for a particular purpose. This report shall not be reproduced except in full without written approval from NTS. National Technical Systems Project number PR109246 Report Date: July 17, 2020 Reissue Date: July 27, 2020 Test Report FR-109246.01-NARF Rev 1 Page 2 VALIDATING SIGNATORIES PROGRAM MGR ______________________________ David W. Bare Chief Engineer TECHNICAL REVIEWER: ______________________________ David W. Bare Chief Engineer FINAL REPORT PREPARER: ______________________________ David Guidotti Senior Technical Writer QUALITY ASSURANCE DELEGATE ______________________________ Gary Izard Quality Assurance Representative National Technical Systems Project number PR109246 Report Date: July 17, 2020 Reissue Date: July 27, 2020 Test Report FR-109246.01-NARF Rev 1 Page 3 REVISION HISTORY Rev# Date Comments Modified By - July 17, 2020 First release 1 July 27, 2020 Added details of two models of the device dwb National Technical Systems Project number PR109246 Report Date: July 17, 2020 Reissue Date: July 27, 2020 Test Report FR-109246.01-NARF Rev 1 Page 4 TABLE OF CONTENTS COVER PAGE............................................................................................................................................................. 1 VALIDATING SIGNATORIES ................................................................................................................................ 2 REVISION HISTORY ................................................................................................................................................ 3 TABLE OF CONTENTS ............................................................................................................................................ 4 SCOPE .......................................................................................................................................................................... 5 OBJECTIVE ................................................................................................................................................................ 6 STATEMENT OF COMPLIANCE ........................................................................................................................... 6 DEVIATIONS FROM THE STANDARDS .............................................................................................................. 6 TEST RESULTS .......................................................................................................................................................... 7 FCC PART 90 AND RSS-119 .................................................................................................................................... 7 EXTREME CONDITIONS ...................................................................................................................................... 8 MEASUREMENT UNCERTAINTIES .................................................................................................................... 8 EQUIPMENT UNDER TEST (EUT) DETAILS ...................................................................................................... 9 GENERAL ................................................................................................................................................................ 9 ENCLOSURE ........................................................................................................................................................... 9 MODIFICATIONS ................................................................................................................................................... 9 SUPPORT EQUIPMENT ......................................................................................................................................... 9 EUT INTERFACE PORTS .................................................................................................................................... 10 EUT OPERATION ................................................................................................................................................. 10 TESTING ................................................................................................................................................................... 11 GENERAL INFORMATION ................................................................................................................................. 11 RF PORT MEASUREMENT PROCEDURES ...................................................................................................... 12 OUTPUT POWER .............................................................................................…
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Test Configuration Photographs FreeWave Technologies, Inc. model LRS455A PR109246 Radiated Emissions Test Configuration Photographs FreeWave Technologies, Inc. model LRS455A PR109246 Antenna Conducted Emissions Conducted Emissions - RF Port Test Configuration Photographs FreeWave Technologies, Inc. model LRS455A PR109246 Transient Frequency Behavior
41039 Boyce Road · Fremont, California · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 90.21 | 435 MHz - 470 MHz | 2 W | 8K89F1D | 0.6 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
Wireless 802.11ac/b/g/n access point
Equipment Class
DTS - Digital Transmission System
MM2
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
GXM-T14, GXM-T24
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter