
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
TAG X 2R0 TAG-X Transceiver The TAG X 2R0 Transceiver is an autonomous transceiver that is used primarily for the identification, control and management of assets using RF (radio frequencies). The TAGs may be used in conjunction with active base station receivers. The tag may be affixed to assets in order to perform data collection. Description of the system; The TAG system has been developped with the goal of providing the following services. • Data transfer, logging and Telemetrie • Temperature monitoring • Humidity monitoring • Automated inventory management • Automated fleet management TAG Trancsceiver Installation guidelines; The TAGs must be installed by qualified personnel. The housing must be affixed to a solid surface using materials that will prevent rattles and or (fall-off) . The entire mating surface must be used in order to ensure a solid installation. The housing must be installed on surfaces that will not rust over time. Using the TAG transceiver; PRIOR to initialization ensure that tags are installed according to installation guidelines. Upon initialisation the tags will register on the network and create a secure connection. This is an automated process and requires no interaction. REMOTE (Re-start / Re-initialization); The Re-start function is used primarily as a preventative measure. A clean Re-start is required in order to flush all of the system buffers. The Re-initialization function is used in order to re-name and change a tag ID. USER GUIDE • Reinforced • Completely water tight • Long service life • Highly robust communication protocol • Easy to install WARNINGS; •This equipement may only be used and serviced by authorized personnel •Follow all applicable regulatory and safety guidelines when choosing a location •Do not install the tag on semi-rigid surfaces •Do not install the tag on moving structures •Do not tamper with or modify the tag enclosure under any circumstances. •This equipment must be professionally installed. •The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 22 cm from the radiating element to any nearby persons. •This device and its antenna must not be co-located or operated in conjunction with any other antenna or transmitter.” •The cell in the tag enclosure in not user replaceable and non-rechargeable. IC and FCC warning statements: (EN) Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. (FR) Les changements ou modifications non expressément approuvés par la partie responsable de la conformité pourraient annuler l'autorité de l'utilisateur de faire fonctionner l'équipement. Cet appareil est conforme avec les standards CNR d’industrie Canada (opération exempt de licence. L'opération est soumise aux deux conditions suivantes: (1) cet appareil ne peut pas provoquer d'interférences et (2) cet appareil doit accepter toute interférence, y compris les interférences qui peuvent causer un mauvais fonctionnement de l'appareil. The information contained in this document is subject to change without notice and is prorpietary to Otodata Wireless Networks Inc.
OTODATA Wireless Network Inc. 9280 Boul. de l’Acadie Montréal, Québec H4N 3C5 T: +1 (514) 745-8241 F: +1 (514) 745-8630 Thursday the 21 st of January 2021 Subject: Authorization letter for Mr. Simon Noel As per your request; This letter serves as our written authorization for Mr. Simon Noel to sign documents on behalf of Otodata Wireless Network Inc, and in relation to ICC and SR&ED radio certification for the TAG 2.0 platform. Should you require any further information, please do not hesitate to contact the undersigned. Best regards, Jason M Gallovich – EVP Otodata Wireless Network 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 Fundamental transmit (prediction) frequency:915MHz Maximum measured conducted peak output power:29.87dBm Cable and/or jumper loss:0.0dB Maximum peak power at antenna input terminal:29.87dBm Tx On time:1.000ms Tx period time:1.000ms Average factor:100% Maximum calculated average power at antenna input terminal:970.510mW Single Antenna gain (typical):2.15dBi Number of antennae:1 Total system gain (typical):2.150dBi MPE limit for uncontrolled exposure at prediction frequency:0.61mW/cm 2 6.1W/m 2 Minimum calculated prediction distance for compliance:14cm Typical (declared) distance:22cm Average power density at prediction frequency:0.261785 mW/cm 2 2.61785W/m 2 Margin of Compliance:3.67385dB Maximum allowable antenna gain:5.82385dBi 2 4R PG S = Choose Scandinavian trust
www.nemko.com Nemko Canada Inc., a testing laboratory, is accredited by the Standards Council of Canada. The tests included in this report are within the scope of this accreditation FCC 15.247, RSS-247 Issue 2; Date: April, 2020 SCC Accredited LAB LAB Accrédité CCN TM Choose Scandinavian trust RADIO TEST REPORT – 408485-1TRFWL Type of assessment: Final product testing Applicant: Product: Otodata Wireless Network Inc. Wireless Tracking Device Model: Model variant(s): TAGX2R0 2R0 FCC ID: IC Registration number: 2ADQFTAGL2 12649A-TAGL2 Specifications: FCC 47 CFR Part 15 Subpart C, §15.247 RSS-247, Issue 2, Feb 2017, Section 5 Date of issue: January 20, 2021 Yong Huang, EMC/RF Specialist Tested by Signature Andrey Adelberg, Senior EMC/RF Specialist Reviewed by Signature Report reference ID: 408485-1TRFWL Page 2 of 37 Lab locations Company name Nemko Canada Inc. Facilities Ottawa site: 303 River Road Ottawa, Ontario Canada K1V 1H2 Tel: +1 613 737 9680 Fax: +1 613 737 9691 Montréal site: 292 Labrosse Avenue Pointe-Claire, Québec Canada H9R 5L8 Tel: +1 514 694 2684 Fax: +1 514 694 3528 Cambridge site: 1-130 Saltsman Drive Cambridge, Ontario Canada N3E 0B2 Tel: +1 519 650 4811 Almonte site: 1500 Peter Robinson Road West Carleton, Ontario Canada K0A 1L0 Tel: +1 613 256-9117 Test site registration Organization Recognition numbers and location FCC/ISED FCC: CA2040; IC: 2040A-4 (Ottawa/Almonte); FCC: CA2041; IC: 2040G-5 (Montreal); CA0101 (Cambridge) Website www.nemko.com Limits of responsibility 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 contained in this report are within Nemko Canada’s ISO/IEC 17025 accreditation. Copyright notification 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 Canada Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. © Nemko Canada Inc. Report reference ID: 408485-1TRFWL Page 3 of 37 Table of Contents Table of Contents ......................................................................................................................................................................................................... 3 Report summary ................................................................................................................................................................................. 4 1.1 Test specifications .................................................................................................................................................................................................... 4 1.2 Test methods ............................................................................................................................................................................................................ 4 1.3 Exclusions ................................................................................................................................................................................................................. 4 1.4 Statement of compliance .......................................................................................................................................................................................... 4 1.5 Test report revision history ....................................................................................................................................................................................... 4 Engineering considerations ................................................................................................................................................................. 5 2.1 Modifications incorporated in the EUT for compliance ............................................................................................................................................ 5 2.2 Technical judgment .................................................................................................................................................................................................. 5 2.3 Deviations from laboratory tests procedures ........................................................................................................................................................... 5 Test conditions ................................................................................................................................................................................... 6 3.1 Atmospheric conditions ............................................................................................................................................................................................ 6 3.2 Power supply range .................................................................................................................................................................................................. 6 Measurement uncertainty .................................................................................................................................................................. 7 4.1 Uncertainty of measurement ................................................................................................................................................................................... 7 Information provided by the applicant .....................................................................................................................…
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Page 1 of 3 Section 1. Setup photos 1.1 Radiated Front view Setup photos NEX-408485 Page 2 of 3 1.2 Radiated back view Page 3 of 3 1.3 Conducted view
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 903.28 MHz - 925.36 MHz | 970.00 mW |

Volumetric Meter
Equipment Class
DTS - Digital Transmission SystemRemote telemetry communication unit
Equipment Class
DTS - Digital Transmission System
BLE Tracker
Equipment Class
DTS - Digital Transmission System
Remote Telemetry Communication Unit
Equipment Class
DTS - Digital Transmission System
Remote Telemetry Communication Unit
Equipment Class
DTS - Digital Transmission System