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SQG-LYRA24SBluetooth v5.3 Module, SIP, LYRA 24S, Integrated Antenna

Laird Connectivity LLC
Bluetooth v5.3 Module, SIP, LYRA 24S, Integrated Antenna - FCC ID SQG-LYRA24S - Laird Connectivity LLC
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Jul 20, 2023
Application Purpose
Original Equipment
Date of Application
Jul 20, 2023
Equipment Note
Bluetooth v5.3 Module, SIP, LYRA 24S, Integrated Antenna
Frequency Range
2402.00000000 - 2480.00000000
Company
Laird Connectivity LLC
Country
United States

Documents & Files

Select a file to view

Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

A Datasheet Lyra 24S Version 1.1 Lyra 24S Datasheet https://www.lairdconnect.com/ 2 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852-2762-4823 REVISION HISTORY Version Date Notes Contributors Approver 1.0 24 May 2023 Initial Release Robert Gosewehr, Raj Khatri, Dave Drogowski Jonathan Kaye 1.1 26 Jun 2023 Added content for section 13.2 Maximum Regulatory Certified RF TX Power per Country Raj Khatri Jonathan Kaye Lyra 24S Datasheet https://www.lairdconnect.com/ 3 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852-2762-4823 CONTENTS 1 Introduction .......................................................................................................................................................................... 5 1.1 Key Features .............................................................................................................................................................. 5 1.2 Hardware Features..................................................................................................................................................... 6 1.3 Firmware Options ....................................................................................................................................................... 7 2 Ordering Information ............................................................................................................................................................ 7 3 System Overview ................................................................................................................................................................. 8 3.1 Block Diagram ............................................................................................................................................................ 8 3.2 EFR32BG24 SoC ....................................................................................................................................................... 9 3.3 Integrated Antenna ..................................................................................................................................................... 9 3.4 External Antenna ........................................................................................................................................................ 9 3.5 Power Supply ........................................................................................................................................................... 10 3.6 General Purpose Input/Output (GPIO) ..................................................................................................................... 10 3.7 Security .................................................................................................................................................................... 10 4 Electrical Specifications ..................................................................................................................................................... 13 4.1 Absolute Maximum Ratings ...................................................................................................................................... 13 4.2 General Operating Conditions .................................................................................................................................. 14 4.3 MCU Current Consumption at 3.0V .......................................................................................................................... 14 4.4 Radio Current Consumption with 3.0 V Supply ........................................................................................................ 16 4.5 RF Transmitter General Characteristics for the 2.4 GHz Band ................................................................................ 16 4.6 RF Receiver General Characteristics for the 2.4 GHz Band .................................................................................... 17 4.7 RF Receiver Characteristics for Bluetooth Low Energy in the 2.4 GHz Band 1 Mbps Data Rate ............................. 17 4.8 RF Receiver Characteristics for Bluetooth Low Energy in the 2.4 GHz Band 2 Mbps Data Rate .............................. 18 4.9 RF Receiver Characteristics for Bluetooth Low Energy in the 2.4 GHz Band 500 kbps Data Rate .......................... 19 4.10 RF Receiver Characteristics for Bluetooth Low Energy in the 2.4 GHz Band 125 kbps Data Rate .......................... 20 4.11 High-Frequency Crystal ............................................................................................................................................ 21 4.12 Low-Frequency Crystal Oscillator ............................................................................................................................ 21 4.13 Precision Low Frequency RC Oscillator (LFRCO) ................................................................................................... 22 4.14 GPIO Pins ................................................................................................................................................................ 22 4.15 Microcontroller Peripherals ....................................................................................................................................... 23 4.16 Antenna Radiation and Efficiency for Lyra 24S Integrated Antenna ......................................................................... 24 5 Reference Diagrams .......................................................................................................................................................... 27 5.1 Network Co-Processor (NCP) Application with UART Host ...................................................................................... 27 5.2 SoC Application ..............................................…

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Attestation Statements

Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 Subject: Laird Connectivity LLC and SQG Attestation Statement Reference: a) FCC CFR section 2.911(d)(5)(i) b) FCC Section 2.911(d)(5)(ii) c) FCC Section 2.911(d)(7) a) [Laird Connectivity LLC] certifies that the equipment [FCC ID: SQG-LYRA24S] for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules; b) [Laird Connectivity LLC] certifies that, as of the date of the filing of the application, the applicant [is not] identified on the Covered List (as a specifically named entity or any of its subsidiaries or affiliates) as an entity producing “covered” equipment; c) [Laird Connectivity LLC] as required by section 2.911(d)(7), will also serve as the agent for service of process for the above referenced FCC Grantee Code. The service of process includes, but is not limited to, delivery of any correspondence, notices, orders, decisions, and requirements of administrative, legal, or judicial process related to Commission proceedings. The applicant acknowledges that they will maintain an agent for service of process in the United States for no less than one year after either the grantee has permanently terminated all marketing and importation of the applicable equipment within the U.S., or the conclusion of any Commission-related administrative or judicial proceeding involving the equipment, whichever is later. The applicant further acknowledges their responsibility to inform the FCC whenever the following agent information changes. Designated Agent Company name: Laird Connectivity LLC Grantee Code: SQG Contact Name: Brian Petted, Technology Leader Street Address: W66 N220 Commerce Court City/Province/Zip: Cedarburg, Wisconsin, 53012 Telephone No: (262)-421-4974 Email: [email protected] FRN: 0022590616 Sincerely yours, Signed by the Applicant Name: Brian Petted Title: Technology Leader Date: July 17, 2023

Cover Letter(s)

Laird Connectivity LLC W66N220 Commerce Court, Cedarburg, Wisconsin 53012, USA Confidentiality Request Letter Date: 2023/7/17 Federal Communications Commission Authorization and Evaluation Division FCC ID:SQG-LYRA24S Permanent Confidentiality Request Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, the Applicant Hereby requests confidential treatment of information accompanying this Application As outlined below: 1. Block Diagram 2. Circuit Diagram 3. Operational Description The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457, disclosure of this Application and all accompanying documentation will not be made before the date of the Grant for this application Sincerely, Brian Petted Technology Leader Laird Connectivity LLC [email protected] Tel: 262-421-4974

Cover Letter(s)

Date: 2023/7/17 Federal Communications Commission 7435 Oakland Mills Rd Columbia MD 21046-1609 Subject: Product Certification Representative Authorization Letter FCC ID: SQG-LYRA24S Product name: Bluetooth v5.3 Module, SIP, LYRA 24S, Integrated Antenna To whom it may concern: We the undersigned, hereby authorize following person to act as our agent in the preparation of an application for equipment authorization of model Lyra 24S to the FCC Rules and Regulations. International Certification Corp. Address : No.3-1, Lane 6, Wen San 3rd St. Kwei Shan Dist., TaoYuan City 333, Taiwan (R.O.C.) Name : Gary Chang Job Title : Manager e-mail : [email protected] Webs We further certifies that neither the applicant nor any party to this application, as defined in 47 CFR Ch. 1.2002(b), is subject to a denial to Federal benefits, that include FCC benefits, pursuant to section 5301 of the Anti-Drug Abuse Act of 1998, 21 U.S.C. 862. This appointment also includes the authority to complete FCC Form 731 on our behalf and sign the application as an authorized agent. Brian Petted Technology Leader Laird Connectivity LLC [email protected] Tel: 262-421-4974

Cover Letter(s)

Modular Approval Request FCC (KDB 996369 D01 & Part 15.212) FCC ID: SQG-LYRA24S Items to be covered by Single modular transmitters. Answer from applicant 1. The modular transmitter must have its own RF shielding. The modular has a shielding Case. Please refer to EUT Photo. 2. 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. The component number is EFR52020 3. The modular transmitter must have its own power supply regulation. The component number is LP3982ILD-ADJ 4. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(b)(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). Antenna Connectors is IPEX MHF4. And no external amplifier will be used with this modular. 5. The modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. This modular is tested under stand-alone configuration. Please refer to Test setup photo. 6. The modular transmitter must be equipped with either a permanently affixed label or must be capable of electronically displaying its FCC identification number in accordance with 15.212 (a)(1)(vi)(A) / (B). The modular transmitter is labeled with its own FCC ID number. Please refer to label sample and label location. 7. The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements. A copy of these instructions must be included in the application for equipment authorization. For example, there are very strict operational and timing requirements that must be met before a transmitter is authorized for operation under Section 15.231. For instance, data transmission is prohibited, except for operation under Section 15.231(e), in which case there are separate field strength level and timing requirements. Compliance with these requirements must be assured. The modular complies with this requirement. Please refer to user manual. 8. The modular transmitter must comply with any applicable RF exposure requirements. For example, FCC Rules in Sections 1.1310, 2.1091, 2.1093, and specific Sections of Part 15, including 15.319(i), 15.407(f), 15.253(f) and 15.255(g), require that Unlicensed PCS, UNII and millimeter wave devices perform routine environmental evaluation for RF Exposure to demonstrate compliance. In addition, spread spectrum transmitters operating under Section 15.247 are required to address RF Exposure compliance. Modular transmitters approved under other Sections of Part 15, when necessary, may also need to address certain RF Exposure concerns, typically by providing specific installation and operating instructions for users, installers and other interested parties to ensure compliance. The device complies with this requirement. Please refer to RF exposure report. Name and surname of applicant (or authorized representative): __________________ Date: ___19 July 2023____ Signature: ___________________________

External Photos

Project No.: EP341803 Page No. : 1 of 10 Photographs of EUT Internal PCB antenna / model: Lyra 24S PCB Trace Antenna Project No.: EP341803 Page No. : 2 of 10 Project No.: EP341803 Page No. : 3 of 10 Project No.: EP341803 Page No. : 4 of 10

ID Label/Location Info

Size of this module is less than 8 mm x 8 mm that is too small to place FCC ID and IC ID on it thus FCC ID and IC ID is placed on user manual and packaging. Model name: Lyra 24S FCC ID: SQG-LYRA24S IC : 3147A-LYRA24S Label Location

Internal Photos

Project No.: EP341803 Page No. : 5 of 10 PCB Dipole antenna / model: FlexPIFA Project No.: EP341803 Page No. : 6 of 10 PIFA antenna / model: mFlexPIFA Project No.: EP341803 Page No. : 7 of 10 PCB Dipole antenna / model: NanoBlue Project No.: EP341803 Page No. : 8 of 10 Project No.: EP341803 Page No. : 9 of 10 Dipole antenna / model: EDA-8709-2G4C1-B27-CY Project No.: EP341803 Page No. : 10 of 10

RF Exposure Info

Report No.: FA341803 Page : 1 of 6 Report Version: Rev. 01 FCC RF Exposure Report FCC ID : SQG-LYRA24S Equipment : Bluetooth v5.3 Module, SIP, LYRA 24S, Integrated Antenna Model No. : Lyra 24S Brand Name : Laird Connectivity Applicant : Laird Connectivity LLC Address : W66N220 Commerce Court, Cedarburg, WI 53012 United States Of America Standard : 47 CFR FCC Part 2.1091 Received Date : Apr. 18, 2023 Tested Date : Apr. 24 ~ May 15, 2023 We, International Certification Corporation, would like to declare that the tested sample has been evaluated and in compliance with the requirement of the above standards. The test results contained in this report refer exclusively to the product. It shall not be reproduced except in full without the written approval of our laboratory. Reviewed by: Approved by: Alex Huang / Supervisor Gary Chang / Manager Report No.: FA341803 Page : 2 of 6 Report Version: Rev. 01 Table of Contents 1 RF EXPOSURE TEST EXEMPTIONS ................................................................................................... 4 1.1 1-mW TEST EXEMPTION ..................................................................................................................... 4 1.2 SAR-BASED EXEMPTION .................................................................................................................... 4 1.3 MPE-BASED EXEMPTION .................................................................................................................... 4 1.4 DEVIATION FROM TEST STANDARD AND MEASUREMENT PROCEDURE ................................... 5 1.5 MEASUREMENT UNCERTAINTY ......................................................................................................... 5 1.6 EXEMPTION CALCULATION ................................................................................................................ 5 2 TEST LABORATORY INFORMATION ................................................................................................. 6 Report No.: FA341803 Page : 3 of 6 Report Version: Rev. 01 Release Record Report No. Version Description Issued Date FA341803 Rev. 01 Initial issue Jul. 11, 2023 Report No.: FA341803 Page : 4 of 6 Report Version: Rev. 01 1 RF Exposure Test Exemptions 1.1 1-mW TEST EXEMPTION Available maximum time-averaged power is no more than 1 mW. 1.2 SAR-BASED EXEMPTION This exemption is applicable to the frequency range between 300 MHz and 6 GHz, with test separation distances between 0.5 cm and 40 cm, and for all RF sources in fixed, mobile, and portable device exposure conditions. The maximum time-averaged power or effective radiated power (ERP), whichever is greater, ≤ Pth Pth (mW) = ERP 20cm (d/20) x d≤20cm Pth (mW) = ERP 20cm 20 cm < d ≤40cm Where = - log 10 Pth (mW) = ERP 20cm (mW) = 2040f 0.3GHz ≤ f < 1.5 GHz Pth (mW) = ERP 20cm (mW) = 3060 1.5GHz ≤ f < 6 GHz Frequency (MHz) Power Thresholds mW dBm 663 1353 31.31 699 1426 31.54 704 1436 31.57 777 1585 32.00 824 1681 32.26 902 1840 32.65 1500 ~ 6000 3060 34.86 1.3 MPE-BASED EXEMPTION For a much wider frequency range, from 300 kHz to 100 GHz, applicable for separation distances greater or equal to λ/2π, where λ is the free-space operating wavelength in meters. Radio Source Frequency Minimum Distance Threshold ERP F L MHz F H MHz λ L / 2π λ H / 2π W 0.3 - 1.34 159 m - 35.6 m 1920 R 2 1.34 - 30 35.6 m - 1.6 m 3450 R 2 /f 2 30 - 300 1.6 m - 159 mm 3.83 R 2 300 - 1500 159 mm - 31.8 mm 0.0128 R 2 f 1500 - 100000 31.8 mm - 0.5 mm 19.2 R 2 Note: R is the antenna-person separation distance. Report No.: FA341803 Page : 5 of 6 Report Version: Rev. 01 1.4 REFERENCE GUIDANCE 447498 D04 Interim General RF Exposure Guidance v01. 1.5 DEVIATION FROM TEST STANDARD AND MEASUREMENT PROCEDURE None 1.6 MEASUREMENT UNCERTAINTY The measurement uncertainties given below are based on a 95% confidence level (based on a coverage factor (k=2)). Parameters Uncertainty Conducted power ±0.808 dB Declaration of Conformity: The test results with all measurement uncertainty excluded are presented in accordance with the regulation limits or requirements declared by manufacturers. Comments and Explanations: The declared of product specification for EUT presented in the report are provided by the manufacturer, and the manufacturer takes all the responsibilities for the accuracy of product specification. 1.7 EXEMPTION CALCULATION Frequency Range (MHz) Maximum Conducted Power (dBm) Maximum Tune Up Limit (dBm) Antenna Gain (dBi) EIRP (dBm) ERP (dBm) ERP (mW) SAR-Based Exemption Thresholds (mW) Pass/ Fail 2402 ~ 2480 10.27 10.5 2 12.5 10.35 10.84 3060 Pass Note: Minimum separation distance = 20 cm. Report No.: FA341803 Page : 6 of 6 Report Version: Rev. 01 2 Test laboratory information Established in 2012, ICC provides foremost EMC & RF Testing and advisory consultation services by our skilled engineers and technicians. Our services employ a wide variety of advanced edge test equipment and one of the widest certification extents in the business. International Certification Corporation (EMC and Wireless Communication Laboratory), it is our definitive objective is to institute long term, trust-based associations with our clients. The expectation we set up with our clients is based on outstanding service, practical expertise and devotion to a certified value structure. Our passion is to grant our clients with best EMC / RF services by oriented knowledgeable and accommodating staff. Our Test sites are located at Linkou District and Kwei Shan District. Location map can be found on our website http://www.icertifi.com.tw. Linkou Kwei Shan Kwei Shan Site II Tel: 886-2-2601-1640 Tel: 886-3-271-8666 Tel: 886-3-271-8640 No.30-2, Ding Fwu Tsuen, Lin Kou District, New Taipei City, Taiwan (R.O.C.) No.3-1, Lane 6, Wen San 3rd St., Kwei Shan Dist., Tao Yuan City 33381, Taiwan (R.O.C.) No.2-1, Lane 6, Wen San 3rd St., Kwei Shan Dist., Tao Yuan City 33381, Taiwan (R.O.C.) No.14-1, Lane 19, Wen San 3rd St., Kwei Shan Dist., Tao Yuan City 33381, Taiwan…

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Test Report

A https://www.lairdconnect.com/ 1 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 The evolution of technology has brought the need to communicate everywhere and at all times without being confined to one space. Our antennas feature wide bandwidth to enhance the performance and application of portable wireless devices based on standards such as 802.11 and Bluetooth®. The antennas are specifically designed to be embedded inside devices for aesthetically pleasing integration with high durability. ▪ Versatile, easy-to-use for 2.4 to 2.5 GHz Bluetooth® and IEEE 802.11 devices ▪ Designed for an easy connection to radio cards ▪ Uses patented PCB Microsphere technology ▪ Has a ground plane incorporated into the resonator structure – no additional ground plane is required to radiate efficiently Operating Frequency (MHz) 2.4 – 2.5 GHz VSWR – Max <2.5:1 Gain (dBi) 2 Nominal Impedance (Ohms) 50 Polarization Linear Dimensions – mm (in.) 44.45 x 12.7 x 0.81 mm (1.75 x 0.5 x 0.032 in.) Weight – g (oz.) 2 g (0.071 oz.) MAF94045 100 mm, Ø 1.13 mm IPEX MHF MAF94102 100 mm, RG178 Flying Lead MAF95096 100 mm, RG178 Right Angle MMCX EBL2400A1-10MH4L 100 mm, Ø 1.13 mm MHF4 EBL2400R1-20MHF4 200 mm, Ø 1.13 mm MHF4 Note: Specifications are based on the 100mm cable length, standard antenna version with MHF1 / U.FL connector. Varying the cable length or type or connector will cause variations in these antenna specifications. https://www.lairdconnect.com/ 2 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Please contact your local Laird Connectivity sales representative or our support team for further assistance: Support Center https://www.lairdconnect.com/resources/support Phone Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Web https://www.lairdconnect.com/internal-antennas Address Laird Connectivity 50 S. Main Street, Suite 1100 Akron, OH 44308 [email protected] [email protected] www.lairdconnect.com © Copyright 2023 Laird Connectivity. All Rights Reserved. Patent pending. Any information furnished by Laird Connectivity and its agents is believed to be accurate and reliable. All specifications are subject to change without notice. Responsibility for the use and application of Laird Connectivity materials or products rests with the end user since Laird Connectivity and its agents cannot be aware of all potential uses. Laird Connectivity makes no warranties as to non-infringement nor as to the fitness, merchantability, or sustainability of any Laird Connectivity materials or products for any specific or general uses. Laird Connectivity or any of its affiliates or agents shall not be liable for incidental or consequential damages of any kind. All Laird Connectivity products are sold pursuant to the Laird Connectivity Terms and Conditions of Sale in effect from time to time, a copy of which will be furnished upon request. Nothing herein provides a license under any Laird Connectivity or any third-party intellectual property right.

Test Report

https://www.lairdconnect.com/ 1 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 ▪ Quick and easy installation ▪ Adhesive holds to surface during humidity exposure and hot/cold cycles ▪ RoHS-compliant ▪ Can be installed in the following ways: – On different non-conductive surfaces and thicknesses – Near metals or the human body – On flat or curved surfaces Frequency (MHz) 2400 - 2480 Peak Gain (dBi) +2.0 Average Gain (dBi) > -1.5 VSWR (MHz) < 2.0:1 Impedance (Ω) 50 Polarization Linear Antenna Type Flexible Planar Inverted F Antenna (FlexPIFA) Dimensions – mm (inches) 40.1 x 11.0 x 2.5 (1.58 x 0.43 x 0.098) Weight – g (oz.) 1.13 (0.040) Color Clear yellow Adhesive 3M 100MP Connector Mating Height (max) – mm MHF1 (U.FL) 2.5 MHF4L 1.4 Operating Temperature – °C (°F) -40 to +85°C (-40 to +185°F) Material Substance Compliance RoHS 001-0014 100 mm MHF1 001-0022 100 mm MHF4L 001-0025 100 mm MHF1 EFB2400A3S-13MHF1 130 mm MHF1 EFB2400A3S-22MHF1 220 mm MHF1 Note: Specifications are based on the 100mm cable length, standard antenna version with MHF1 / U.FL connector. Varying the cable length or type or connector will cause variations in these antenna specifications. https://www.lairdconnect.com/ 2 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 1: FlexPIFA mechanical drawing of 001-0014, 001-0022, and EFB2400A3S-22MHF1 RF Connector https://www.lairdconnect.com/ 3 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 2: FlexPIFA mechanical drawing of 001-0025 RF Connector https://www.lairdconnect.com/ 4 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 3: FlexPIFA mechanical drawing of EFB2400A3S-13MHF1 https://www.lairdconnect.com/ 5 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Antenna measurements such as VSWR were measured with an Agilent E5071C vector network analyzer. Radiation patterns were measured with a CMT Planar 804/1 vector network analyzer in a Howland Company 3100 chamber equivalent. Phase center is nine inches above the Phi positioner. Flat surface measurements were done with the antenna centered on a 1.5 mm-thick plate of polycarbonate. Curved surface measurements were taken by placing the antenna on the inside and outside of different diameter PVC tubing. Figure 4: Antenna chamber Figure 5: Antenna VSWR measured on a 1.5 mm-thick plate of polycarbonate https://www.lairdconnect.com/ 6 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 6: Flat surface setup Z Y X https://www.lairdconnect.com/ 7 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 7: Vertical, horizontal, and total gain patterns – 2400 MHz Figure 8: Vertical, horizontal, and total gain plots – 2400 MHz -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Vertical Polarization at 2400.0 (MHz) Gain Summary (dBi) at 2400.0 (MHz) min: -28.3 (dBi) max: +1.4 (dBi) avg: -5.5 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Horizontal Polarization at 2400.0 (MHz) Gain Summary (dBi) at 2400.0 (MHz) min: -25.9 (dBi) max: -2.7 (dBi) avg: -8.0 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Total at 2400.0 (MHz) Gain Summary (dBi) at 2400.0 (MHz) min: -13.3 (dBi) max: +1.9 (dBi) avg: -1.6 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) https://www.lairdconnect.com/ 8 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 9: Vertical, horizontal, and total gain patterns – 2440 MHz Figure 10: Vertical, horizontal, and total gain plots – 2440 MHz -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Vertical Polarization at 2440.0 (MHz) Gain Summary (dBi) at 2440.0 (MHz) min: -22.5 (dBi) max: +1.3 (dBi) avg: -5.1 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Horizontal Polarization at 2440.0 (MHz) Gain Summary (dBi) at 2440.0 (MHz) min: -29.9 (dBi) max: -2.8 (dBi) avg: -8.0 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Total at 2440.0 (MHz) Gain Summary (dBi) at 2440.0 (MHz) min: -12.1 (dBi) max: +1.9 (dBi) avg: -1.5 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) https://www.lairdconnect.com/ 9 © Copyright 2023 Laird Connectivity All Rights Reserved Americas: +1-800-492-2320 Europe: +44-1628-858-940 Hong Kong: +852 2762 4823 Figure 11: Vertical, horizontal, and total gain patterns – 2480 MHz Figure 12: Vertical, horizontal, and total gain plots – 2480 MHz -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Vertical Polarization at 2480.0 (MHz) Gain Summary (dBi) at 2480.0 (MHz) min: -20.8 (dBi) max: +1.8 (dBi) avg: -4.8 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Horizontal Polarization at 2480.0 (MHz) Gain Summary (dBi) at 2480.0 (MHz) min: -28.5 (dBi) max: -2.4 (dBi) avg: -7.8 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) -30 -20 -10 0 10 30 210 60 240 90 270 120 300 150 330 180 0 Gain - Total at 2480.0 (MHz) Gain Summary (dBi) at 2480.0 (MHz) min: -13.1 (dBi) max: +2.5 (dBi) avg: -1.1 (dBi) 0 15 30 45 60 75 90 105 120 135 150 165 Theta (deg) https://www.lairdconnect.com/ 10 © Copyright…

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Test Report

MAG.LAYERS EDA-8709-2G4C1-B27_V01 Dec. 2012 APPROVAL SHEET (RoHS) CUSTOMER : Laird CUSTOMER’S PART NO. : DESCRIPTION : RF ANTENNA ASSEMBLY PART NO. : EDA-8709-2G4C1-B27-CY DATE : AUTHORIZED BY : Marco Hsu FULLY APPROVED PARTIALLY APPROVED REJECTED…

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Contact Information

Applicant

Brian Petted(Technology Leader)
[email protected]2624214974Fax: 262-375-4248

Test Firm

International Certification Corp.Fu-Cheng Chuang
[email protected]886-3-271-8666Fax: 886-3-318-0155

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz11.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Single Modular Approval. Output power listed is conducted. The antenna(s) used for this transmitter must be installed to provide separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter evaluation procedures. Approved for OEM integration only. The OEM integrators must be provided with installation and operating instructions for satisfying RF exposure requirements and multi-transmitter product guidelines. This module can only be used with a host antenna circuit trace layout design in strict compliance with the OEM instructions provided.

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Equipment Class

DTS - Digital Transmission System
Sona IF513 802.11ax Wi-Fi 6E Module with Bluetooth 5.4 - FCC ID SQG-SONAIF513 - Laird Connectivity LLC
SQG-SONAIF513

Sona IF513 802.11ax Wi-Fi 6E Module with Bluetooth 5.4

Dec 05, 2024

Equipment Class

6XD - 15E 6 GHz Low Power Indoor Client
Wi-Fi 6/BT Transceiver radio - FCC ID SQG-SONANX611M - Laird Connectivity LLC
SQG-SONANX611M

Wi-Fi 6/BT Transceiver radio

Sep 30, 2024

Equipment Class

DTS - Digital Transmission System
WiFi 6 + Bluetooth 5.4 Module - FCC ID SQG-MT3202230 - Laird Connectivity LLC
SQG-MT3202230

WiFi 6 + Bluetooth 5.4 Module

Apr 16, 2024

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter