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For questions regarding content in this guide or for any other support related items, contact [email protected] or call 1-800-574-WAITES VERSION 1.1 SM6 SENSOR MOTE USER GUIDE Updated July 2023 MODELS: SM6-1150 SM6-2250 SM6-0864 Confidential and Proprietary Waites Sensor Technologies, Inc. 20 West 11th Street, Suite 200, Covington, Kentucky 41011 Phone 1-800-574-WAITES Email [email protected] The Waites logo is a registered trademark of Waites Sensor Technologies, Inc. Other trademarks found in this document have been used for identification purposes only and may be the trademarks of other companies. The information in this document is subject to change without notice. © 2023 Waites Sensor Technologies, Inc. WAITES SM6 SENSOR MOTE USER GUIDE 1TABLE OF [email protected] | 1-800-574-WAITES TABLE OF CONTENTS 1 SM6 Overview 2 2 Installing and Configuring the SM6 3 Performing Pre-Installation Steps 3 Locating the Sensor Installation Point 4 Preparing the Sensor Installation Point Location 4 Selecting a Mounting Technique 4 Stud Mount 4 Mounting Pad 5 Direct Epoxy 5 Mounting the SM6 5 Using a Stud Mount 6 Using a Mounting Pad 6 Using Direct Epoxy 7 Replacing the Battery in the SM6 7 3 Removing and Reinstalling the SM6 10 4 Troubleshooting the SM6 12 A FCC Compliance Statement 13 WAITES SM6 SENSOR MOTE USER GUIDE 2SM6 [email protected] | 1-800-574-WAITES SM6 Overview The SM6 is a high-frequency, high-G, 3-axis wireless vibration sensor that helps keep your equipment running properly by alerting you before unexpected failures occur. This all-in-one condition monitoring device is made to withstand the harshest conditions. The image below identifies the main parts of a SM6: 1 - SM6 Compression Ring 2 - SM6 Cap 3 - SM6 Base 4 - Battery 1 WAITES SM6 SENSOR MOTE USER GUIDE 3Installing and Configuring the [email protected] | 1-800-574-WAITES Installing and Configuring the SM6 All SM6 models will arrive to your facility in hibernation mode with batteries pre-installed to conserve power. This chapter provides information on how to install and configure the SM6. Note the following: • If a SM6 needs to be replaced, you must replace it with the same model number (for example, SM6-1150) unless otherwise instructed by a Waites support associate. • You should avoid touching the board inside the SM6 as much as possible, and the use of gloves is highly recommended. • If you need to replace a battery in a SM6, you must use the required battery type. See "Replacing the Battery in the SM6" on page 7 for details. • There is no need for you to open the SM6 prior to installation, unless directed by Waites personnel. • You must bring the SM6 out of hibernation mode before installation. See "Performing Pre- Installation Steps" on page 3 for details. Performing Pre-Installation Steps Note: There is no need for you to open a SM6 prior to installation, unless directed by Waites personnel. Once you are ready to install a SM6, you must bring the SM6 out of hibernation mode. To bring a SM6 out of hibernation mode: • Hold a magnet over the top of the SM6 and do not remove it until the indicator light comes on and goes back off (usually takes about 3-5 seconds). If the light stays on longer than 10 seconds with the magnet nearby, then it is already out of hibernation mode and ready to connect. Note: There will be additional flashes after the magnet is removed while the SM6 syncs with the network. The standard boot sequence performs a power-on self-test immediately on start-up and will turn on the LED light with a long flash if the self-test passes and a short flash if the self-test fails. If the self-test fails, try again and contact Waites Support if you need additional help. Next, the device will start searching for a gateway. If a gateway is found, it rapidly flashes the LED light indicating that it is paired with a gateway. 2 WAITES SM6 SENSOR MOTE USER GUIDE 4Installing and Configuring the [email protected] | 1-800-574-WAITES A quick magnet swipe will invoke the standard boot sequence. If you invoke another magnet swipe prior to completing the operation, the SM6 will restart the sequence from the beginning. Hibernation mode cannot be reactivated once the standard boot sequence has been initiated. Locating the Sensor Installation Point After your SM6 has been added in the Waites Self-Service Dashboard, the next step is to determine the physical installation point. Note: The sensor installation point should have enough space for the sensor to sit without touching any other part of the equipment other than the point being monitored. This prevents equipment from picking up additional background vibrations. To determine an installation point for a SM6: • Locate a flat area that is approximately 1 sq. in (6.45 sq. cm) that provides the most metal-to-metal contact between the equipment and the base of the SM6. • Identify the SM6 axes and note that the X-axis is the most sensitive axis. Preparing the Sensor Installation Point Location After you have located a sensor installation point, you must prepare the location. To prepare the sensor installation point location: 1. Clean the location of the sensor installation point by removing all dirt and grease on any exposed surface of the equipment. If the equipment surface is painted, remove the paint as well. 2. If required, grind down the equipment surface to create a flat area for the sensor to be mounted. Optionally, you can use the mill attachment in the Accelerometer Installation Tool Kit to create a flat surface area of 1.25 inches in diameter. Selecting a Mounting Technique After you have prepared the sensor installation point location, you must select a mounting technique: stud mount, mounting pad, or direct epoxy. Stud Mount The stud mount technique is recommended whenever possible, since it provides the most metal surface area contact between the machine and the sensor. This technique involves screwing the sensor directly into a 1/4"-28 stud tap an…
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www.waites.net Waites Sensor Technologies Inc. 20 West 11th Street, Suite 200 Covington, KY 41011 USA 06/19/2023 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Attestation Statements Part 2.911(d)(5)(i) request for 2AUGB-SM6 Waites Sensor Technologies, Inc (“the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Sincerely, Daniel Lamarca Waites Sensor Technologies, Inc www.waites.net Waites Sensor Technologies Inc. 20 West 11th Street, Suite 200 Covington, KY 41011 USA 06/19/2023 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Attestation Statements Part 2.911(d)(5)(ii) request for 2AUGB-SM6 Waites Sensor Technologies, Inc (“the applicant”) certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Sincerely, Daniel Lamarca Waites Sensor Technologies, Inc
www.waites.net Waites Sensor Technologies Inc. 20 West 11th Street, Suite 200 Covington, KY 41011 USA Attestation Statements 06/19/2023 TO: Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046, USA RE: Attestation Statements Part 2.911(d)(7) request for 2AUGB-SM6 Waites Sensor Technologies, Inc, the undersigned, hereby authorize Waites Sensor Technologies, Inc to act as our designated U.S. agent for service of process, Waites Sensor Technologies, Inc accepts to maintain an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission- related proceeding involving the equipment. Waites Sensor Technologies, Inc accepts the responsibility to act as designated U.S. agent for service of process, provides an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission-related proceeding involving the equipment. Applicant Information : Company name: Waites Sensor Technologies, Inc Contact Name: Daniel Lamarca Address: 20 West 11th Street, Suite 200, Covington, KY 41011 Telephone No: 442-235-4330 Email: [email protected] U.S. Agent Information: Company Name: Waites Sensor Technologies, Inc Address: 20 West 11th Street, Suite 200, Covington, KY 41011 Contact Name: Daniel Lamarca Telephone No: 442-235-4330 Email: [email protected] Applicant Signature: Agent Signature: (if the agent is different from the applicant) Applicant printed name: Daniel Lamarca Agent printed name:
www.waites.net Waites Sensor Technologies Inc. 20 West 11th Street, Suite 200 Covington, KY 41011 USA 06/19/2023 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: CONFIDENTIALITY REQUEST FOR SM6 To Whom It May Concern: This letter serves as an official request for confidentiality under sections 0.457 and 0.459 of CFR 47. We have requested that the block diagram, schematics, parts list, and operational description required to be submitted with this application be permanently withheld from public review. These documents contain company proprietary information that if made public would damage our competitive advantage. Please contact me if there is any information you may need. Sincerely, Daniel Lamarca Waites Sensor Technologies, Inc
www.waites.net Waites Sensor Technologies Inc. 20 West 11th Street, Suite 200 Covington, KY 41011 USA 06/19/2023 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Short Term Confidentiality Request For SM6 To Whom It May Concern: In accordance with sections 0.457 and 0.459 of CFR 47, Waites Sensor Technologies, Inc requests short- term Confidentiality of following sections of this application for a period of 45 days after grant is issued. Test setup photos External photos Internal photos User’s manual These documents contain detailed system and equipment descriptions and related information about the product, which Waites Sensor Technologies, Inc considers to be proprietary, confidential, and a custom design and otherwise, would not release to the general public. Since this design is a basis from which future technological products will evolve, Waites Sensor Technologies, Inc feels that this information would be of benefit to its competitors, and that the disclosure of the information in these documents would give our competitors an unfair advantage in the market. Please contact me if there is any information you may need. Sincerely, Daniel Lamarca Waites Sensor Technologies, Inc
www.waites.net Waites Sensor Technologies Inc. 20 West 11th Street, Suite 200 Covington, KY 41011 USA 06/19/2023 Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: LETTER OF AGENT AUTHORIZATION To Whom It May Concern: We, the undersigned, hereby authorize Tram Huynh to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents relating to these matters. We also hereby certify that no party to the application authorized hereunder is subject to the denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.853(a). This agreement expires one year from the current date. Sincerely, Daniel Lamarca Waites Sensor Technologies, Inc
D E F A B C D E F A B C 1 23 4 5678 THE INFORMATION CONTAINED IN THIS DRAWING IS THE SOLE PROPERTY OF WAITES SENSOR TECHNOLOGIES, ING. ANY REPRODUCTION IN PART OR AS A WHOLE WITHOUT THE WRITTEN PERMISSION OF WAITES SENSOR TECHNOLOGIES, ING IS PROHIBITED. A3 1 23 4 5678 Page: Drawn by: Approved by: Date: 1/1 Scale: Title: Format: Material: Finish: Note: Revision: REV 1 Diego Loiza UNLESS OTHERWISE SPECIFIED: DIMENSIONS ARE IN MILLIMETERS TOLERANCES ACCORDING TO ISO 2768 02 Jun, 2023 Daniel Lamarca SM6_Back_Label 24.5 18.2 SM6 SM6 Label location
HEADQUARTERS: 914 WEST PATAPSCO AVENUE • BALTIMORE, MARYLAND 21230 • PHONE (410) 354-3300 • FAX (410) 354-3313 Maryland | California | Texas www.metlabs.com DOC-EMC TEMP-6 (ETS330) 10/05/20 - Rev. 0- Approved by DOC Supervisor 7/14/2023 Waites Sensor Technologies 20 West 11th Street Suite 200 Covington KY 41011 USA Dear Daniel Lamarca, Enclosed is the EMC test report for testing of the Waites Sensor Technologies, SM6 tested to the requirements of FCC Part 2.1091, RSS-102 Issue 5, IEC62311: Ed. 2.0 Thank you for using the services of Eurofins E&E North America. If you have any questions regarding these results or if MET can be of further service to you, please do feel free to contact me. Sincerely, Nancy LaBrecque Documentation Department Eurofins Electrical and Electronic Testing NA, Inc. Reference: WIRA125306_MPE_R2 Certificates and reports shall not be reproduced except in full, without the written permission of Eurofins E&E North America While use of the A2LA logo in this report reflects MET accreditation under these programs, the report must not be used by the client to claim product certification, approval, or endorsement by A2LA or any agency of the Federal Government. This letter of transmittal is not a part of the attached report. Eurofins MET Laboratories Inc. (Eurofins E&E North America) is part of the Eurofins Electrical & Electronics (E&E) global compliance network. Waites Sensor Technologies SM6 RF Exposure / MPE Report Report: WIRA125306_MPE_R2 © 2023, Eurofins E&E North America Page 3 of 15 DOC-EMC TEMP-6 (ETS330) 10/05/20 - Rev. 0 RF Exposure Criteria Test Report Using Maximum Permissible Exposure (MPE) Calculations for the Waites Sensor Technologies SM6 Tested under FCC Part 2.1091, RSS-102 Issue 5, IEC62311: Ed. 2.0 Report: WIRA125306_MPE_R2 7/14/2023 Bryan Taylor, Wireless Team Lead Nancy LaBrecque Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of the FCC Rules Part 15.247 under normal use and maintenance. Matthew Hinojosa EMC Manager, Austin Electromagnetic Compatibility Lab Waites Sensor Technologies SM6 RF Exposure / MPE Report Report: WIRA125306_MPE_R2 © 2023, Eurofins E&E North America Page 4 of 15 DOC-EMC TEMP-6 (ETS330) 10/05/20 - Rev. 0 Report Status Sheet Revision Report Date Reason for Revision 0 4/24/2023 Initial Issue. 1 4/27/2023 Included the variant SKU’s in the list of versions covered by this test report 2 7/14/2023 Added changes requested by TCB reviewer Waites Sensor Technologies SM6 RF Exposure / MPE Report Report: WIRA125306_MPE_R2 © 2023, Eurofins E&E North America Page 5 of 15 DOC-EMC TEMP-6 (ETS330) 10/05/20 - Rev. 0 Table of Contents 1.0 Requirements Summary ...................................................................................................................................... 8 2.0 Equipment Configuration ................................................................................................................................... 9 2.1 Overview.......................................................................................................................................................... 9 2.2 Test Site ......................................................................................................................................................... 10 2.3 References ...................................................................................................................................................... 10 2.4 Description of Test Sample ............................................................................................................................ 11 2.5 Modifications ................................................................................................................................................. 11 2.5.1 Modifications to EUT ................................................................................................................. 11 2.5.2 Modifications to Test Standard ................................................................................................... 11 2.6 Disposition of EUT ........................................................................................................................................ 11 3.0 Transmitter Requirements ................................................................................................................................ 12 Waites Sensor Technologies SM6 RF Exposure / MPE Report Report: WIRA125306_MPE_R2 © 2023, Eurofins E&E North America Page 6 of 15 DOC-EMC TEMP-6 (ETS330) 10/05/20 - Rev. 0 List of Tables Table 1. Summary of Test Results ............................................................................................................................... 8 Table 2. EUT Summary Table ...................................................................................................................................... 9 Table 3. References .................................................................................................................................................... 10 Table 4. Support Equipment ....................................................................................................................................... 11 Waites Sensor Technologies SM6 RF Exposure / MPE Report Report: WIRA125306_MPE_R2 © 2023, Eurofins E&E North America Page 7 of 15 DOC-EMC TEMP-6 (ETS330) 10/05/20 - Rev. 0 List of Terms and Abbreviations AC Alternating Current ACF Antenna Correction Factor…
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HEADQUARTERS: 914 WEST PATAPSCO AVENUE • BALTIMORE, MARYLAND 21230 • PHONE (410) 354-3300 • FAX (410) 354-3313 The Nation’s First Licensed Nationally Recognized Testing Laboratory Maryland | California | Texas www.metlabs.com 7/14/2023 Waites Sensor Technologies 20 West 11th Street Suite 200 Covington KY 41011 USA Dear Daniel Lamarca, Enclosed is the EMC Wireless test report for compliance testing of the Waites Sensor Technologies SM6 as tested to the requirements of FCC Part 15.247, RSS-247 Issue 2 for Intentional Radiators. Thank you for using the services of Eurofins MET Labs. If you have any questions regarding these results or if MET can be of further service to you, please feel free to contact me. Sincerely yours, EUROFINS MET LABS Nancy LaBrecque Documentation Department Reference: WIRA125306_FCC247 RSS247_R2 Certificates and reports shall not be reproduced except in full, without the written permission of Eurofins MET Labs. HP, Inc. Bluetooth Low Energy Test Report SM6 FCC Part 15.247, RSS-247 Issue 2 Report: WIRA125306_FCC247 RSS247_R2 © 2023, Eurofins MET Labs Page 2 of 45 Maryland | California | Texas www.metlabs.com Radio Test Report for the Waites Sensor Technologies SM6 Tested under FCC Part 15.247, RSS-247 Issue 2 For Intentional Radiators Bryan Taylor, Wireless Team Lead Nancy LaBrecque Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of the FCC Rules Part 15.247 under normal use and maintenance. Matthew Hinojosa EMC Manager, Austin Electromagnetic Compatibility Lab HP, Inc. Bluetooth Low Energy Test Report SM6 FCC Part 15.247, RSS-247 Issue 2 Report: WIRA125306_FCC247 RSS247_R2 © 2023, Eurofins MET Labs Page 3 of 45 Maryland | California | Texas www.metlabs.com Report Status Sheet Revision Report Date Reason for Revision 4/24/2023 Initial Issue. 1 4/27/2023 Included the variant SKU’s in the list of versions covered by this test report 2 7/14/2023 Added updates requested by TCB reviewer HP, Inc. Bluetooth Low Energy Test Report SM6 FCC Part 15.247, RSS-247 Issue 2 Report: WIRA125306_FCC247 RSS247_R2 © 2023, Eurofins MET Labs Page 4 of 45 Maryland | California | Texas www.metlabs.com Table of Contents I. Executive Summary .................................................................................................................................................8 A. Purpose of Test ...................................................................................................................................................9 B. Executive Summary ............................................................................................................................................9 II. Equipment Configuration ..................................................................................................................................... 10 A. Overview ........................................................................................................................................................... 11 B. References ......................................................................................................................................................... 12 C. Test Site ............................................................................................................................................................ 13 D. Measurement Uncertainty ................................................................................................................................. 13 E. Description of Test Sample ............................................................................................................................... 13 F. Equipment Configuration .................................................................................................................................. 14 G. Support Equipment ........................................................................................................................................... 14 H. Ports and Cabling Information .......................................................................................................................... 14 I. Mode of Operation ............................................................................................................................................ 15 J. Method of Monitoring EUT Operation ............................................................................................................. 15 K. Modifications .................................................................................................................................................... 15 a) Modifications to EUT .................................................................................................................. 15 b) Modifications to Test Standard.................................................................................................... 15 L. Disposition of EUT ........................................................................................................................................... 15 III. Electromagnetic Compatibility Criteria for Intentional Radiators ................................................................... 16 § 15.203 Antenna Requirement ............................................................................................................................. 17 § 15.207(a) Conducted Emissions Limits .............................................................................................…
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Application Note AN043 Small Size 2.4 GHz PCB antenna By Audun Andersen 1 KEYWORDS • CC25xx • CC24xx • CC2480 • PCB antenna • USB dongle • 2.4 GHz • Inverted F Antenna 2 INTRODUCTION The PCB antenna used on the CC2511 USB dongle reference design is described in this application note. Even if the antenna presented is for a USB dongle design it can be used in all 2.4 GHz designs, especially where small space is required for the antenna. This application note describes the antenna dimensions, the RF performance and considerations for complying with regulatory limits when using this design. The suggested antenna design requires no more than 15.2 x 5.7 mm of space and ensures a VSWR ratio of less than 2 across the 2.4 GHz ISM band when connected to a 50 ohm source. Figure 1: CC2511 USB Dongle SWRA117D Page 1 of 21 Application Note AN043 Table of Contents 1 KEYWORDS...................................................................................................................1 2 INTRODUCTION.............................................................................................................1 3 ABBREVIATIONS...........................................................................................................2 4 ANTENNA DESIGN........................................................................................................3 4.1 DESIGN GOALS..........................................................................................................3 4.2 SIMULATION...............................................................................................................3 4.3 LAYOUT AND IMPLEMENTATION...................................................................................4 5 TEST RESULTS.............................................................................................................5 5.1 REFLECTION..............................................................................................................5 5.2 RADIATION PATTERN..................................................................................................7 5.3 OUTPUT POWER......................................................................................................15 5.4 SPURIOUS EMISSION AND HARMONICS......................................................................17 6 CONCLUSION ..............................................................................................................20 7 GENERAL INFORMATION..........................................................................................21 7.1 DOCUMENT HISTORY................................................................................................21 3 ABBREVIATIONS CAD Computer Aided Design CC24xx CC2400, CC2420, CC2430 and CC2431 CC25xx CC2500, CC2510, CC2511, CC2550 and CC2520 CC2480 Z-Accel ZigBee Processor IFA Inverted F Antenna ISM Industrial, Scientific and Medical LOS Line Of Sight PCB Printed Circuit Board PER Packet Error Rate VSWR Voltage Standing Wave Ratio SWRA117D Page 2 of 21 Application Note AN043 4 ANTENNA DESIGN The PCB antenna on the CC2511 USB dongle reference design is a meandered Inverted F Antenna (IFA). The IFA was designed to match an impedance of 50 ohm at 2.45 GHz. Thus no additional matching components are necessary. 4.1 Design Goals The reflection at the feed point of the antenna determines how much of the applied power is delivered to the antenna. A reflection of less than -10 dB across the 2.4 GHz ISM band, when connected to a 50 ohm source, was a design goal. Reflection of less than -10 dB, or VSWR less than 2, ensures that more than 90% of the available power is delivered to the antenna. Bandwidth is in this document defined as the frequency band where more than 90% of the available power is delivered to the antenna. Another design goal was to fit the size of the PCB antenna on a USB dongle and to obtain good performance also when the dongle is connected to a computer. 4.2 Simulation IE3D from Zeland, which is an electromagnetic simulation tool, was used to design the antenna. The accuracy of the simulation is controlled by the mesh. An increase of the mesh increases the simulation time. Thus, for initial simulations mesh = 1 should be used. When a fairly good result is achieved a higher mesh should be used to obtain more accurate results. Comparison of simulation and measurement results shows that the measured reflection is between the result obtained with mesh = 5 and mesh = 1; see Figure 2 for details. Figure 2: Comparison of Simulation and Measurements Results SWRA117D Page 3 of 21 Application Note AN043 4.3 Layout and Implementation Small changes of the antenna dimensions may have large impact on the performance. Therefore it is strongly recommended to make an exact copy of the reference design to achieve optimum performance. The easiest way to implement the antenna is to import the gerber or DXF file showing the antenna layout. These files are named IFA_USB.spl and IFA_USB.dxf respectively and are included in the CC2511 USB dongle reference design available from http://www.ti.com\lpw. The imported file can be used as a template when drawing the antenna. By using this procedure it should be possible to make an exact copy. If the PCB CAD tool being used does not support import of DXF or gerber files, Figure 3 and Table 1 should be used to ensure correct implementation. It is recommended to generate a gerber file for comparison with IFA_USB.spl when making a manual implementation. Most gerber viewers have the possibility to import several gerber files at the same time. Thus by placing the gerber file, showing the manually implemented antenna, on top of IFA_USB.spl it is easy to verify that the antenna is correctly implemented. It is also recommended to use the same thickness and type of PCB material as used in the reference design. Information about the PCB can be found…
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20 West 11th Street, Suite 200 · Covington · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 72.00 mW |