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  3. 2ASW8-SPNTTX2

2ASW8-SPNTTX2GNSS Receiver

Spark Fun Electronics Inc

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Jan 09, 2026
Application Purpose
Original Equipment
Equipment Note
GNSS Receiver
Frequency Range
2402.00000000 - 2480.00000000
Company
Spark Fun Electronics Inc
Country
United States

Documents & Files

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Attestation Statements

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Cover Letter(s)

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ID Label/Location Info

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RF Exposure Info

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Test Report

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Document Text

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

Attestation Statements

SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Federal CommunicaƟons Commission AuthorizaƟon and EvaluaƟon Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 11-12-2025 Ref: AƩestaƟon Statements Part 2.911(d)(5)(i) Filing FCC ID: 2ASW8-SPNTTX2 SparkFun Electronics cerƟfies that the equipment for which authorizaƟon is sought is not “covered” equipment prohibited from receiving an equipment authorizaƟon pursuant to secƟon 2.903 of the FCC rules. SparkFun Electronics cerƟfies that the equipment for which authorizaƟon is sought does not include cybersecurity or anƟ-virus soŌware produced or provided by Kaspersky Lab, Inc. or any of its successors and assignees, including equipment with integrated Kaspersky Lab, Inc. (or any of its successors and assignees) cybersecurity or anƟ-virus soŌware pursuant to DA-24-886 and KDB 986446 D01 Covered Equipment Guidance secƟon B(2a). Device is inherently compliant based on hardware limitaƟons or soŌware controls. or A SoŌware Bill of Materials (SBOM) is provided to the TCB for review, and The end-user or third parƟes cannot install addiƟonal soŌware on this device. Sincerely, Applicant Printed Name: Nathan Seidle Applicant’s Signature: SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Federal CommunicaƟons Commission Authoriza Ɵon and EvaluaƟon Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 11-12-2025 Ref: A Ʃesta Ɵon Statements Part 2.911(d)(5)(ii) Filing FCC ID: 2ASW8-SPNTTX2 SparkFun Electronics cer Ɵfies that, as of the date of the filing of the applicaƟon, the applicant is not iden Ɵfied on the Covered List (as a specifically named enƟty or any of its subsidiaries or affiliates) as an en Ɵty producing “covered” equipment. Sincerely, Applicant Printed Name: Nathan Seidle Applicant’s Signature:

Attestation Statements

SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Federal CommunicaƟons Commission AuthorizaƟon and EvaluaƟon Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 11-12-2025 Ref: AƩestaƟon Statements Part 2.911(d)(7) Filing FCC ID: 2ASW8-SPNTTX2 Applicant FRN: 0028371003 SparkFun Electronics cerƟfies that, as of the date of the filing of the applicaƟon, SparkFun Electronics is our designated U.S. agent for service of process for the above referenced FCC ID. SparkFun Electronics accepts to maintain an agent for no less than one year aŌer the grantee has terminated all markeƟng and importaƟon or the conclusion of any Commission-related proceeding involving the equipment. SparkFun Electronics accepts, as of the date of the filing of the applicaƟon, the obligaƟon of the designated U.S. agent for service of process for the above referenced FCC ID. Designated U.S. Agent InformaƟon: Name: SparkFun Electronics U.S. Agent FRN: 0028371003 Address: SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Contact Person: Nathan Seidle Tel.: (303) 284-0979 Email: [email protected] Sincerely, Applicant Name: SparkFun Electronics U.S. Agent Company Name: SparkFun Electronics Applicant Printed Name: Nathan SeidleU.S. Agent Printed Name: Nathan Seidle Applicant Signature:U.S. Agent Signature:

Attestation Statements

SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: 11-12-2025 SUBJECT: To Whom It May Concern: I, the undersigned, hereby states this equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules, and will apply the Supplier's Declaration of Conformity procedure to the class B computer peripheral portion of this composite device. I understand the following FCC requirements: 1. Devices subject to the SDoC procedure are required to be tested to show compliance with the FCC technical regulations by a recognized accredited testing laboratory. The testing laboratory must be accredited by a Commission approved accreditation body or designated under the terms of a government-to-government Mutual Recognition Agreement (MRA). A listing of those accredited testing laboratories that have been recognized by the Commission is published on the FCC Webpage: https://apps.fcc.gov/oetcf/eas/reports/TestFirmSearch.cfm (Select the "accredited" option to search for FCC recognized accredited test firms.) 2. Pt 2.1077 contains the list of information that must be included in the Supplier's Declaration of Conformity, which must be supplied with each product sold. The SDoC compliance info shall be included in the User’s Manual or as a separate sheet. The info must contain the name, address, and phone number of the responsible party, which must be located within the United States. According to 2.909(b), the responsible party is either the Manufacturer or if the product is imported the Importer. Regards, Applicant Printed Name: Nathan Seidle ------------------------------- (Applicant’s Signature)

Cover Letter(s)

SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Family Model Similarity Declaration Date: 11-12-2025 SUBJECT: Family Model Similarity Declaration Letter To Whom It May Concern: We declare that the family models listed below are electrically identical. Product Information Applicant Name: SparkFun Electronics Product Description: GNSS Receiver Model (s): ES980 Pro, RTK Torch, Torch X2, Torch X2T, Torch X2i, This family of GNSS RTK devices, including models ES980 Pro, RTK Torch, Torch X2, Torch X2T, and Torch X2i, shares identical electrical circuit design, RF characteristics, and antenna systems. The differences between these models are solely related to firmware features and functional enhancements, as described below: ES980 Pro VS RTK Torch: no difference. RTK Torch vs. Torch X2: The primary difference lies in the built-in GNSS positioning algorithms and regional support. The two models utilize different firmware configurations to accommodate varying regional requirements and performance optimizations. Torch X2T: This model builds upon the RTK Torch/Torch X2 platform by adding tilt measurement functionality, enabling accurate positioning even when the device is not perfectly level. Torch X2i: Based on the Torch X2T, this model further incorporates an integrated laser rangefinder, providing additional distance measurement capability. All other hardware and RF components remain consistent across the series. These variations do not affect RF compliance or operating parameters Regards Applicant Printed Name: Nathan Seidle Applicant’s Signature: Company: SparkFun Electronics Job Title: CEO Email: [email protected] Telephone: (303) 284-0979

Cover Letter(s)

SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: 2ASW8-SPNTTX2 Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Exhibit TypeFile Name* SchematicsSchematics.pdf Block DiagramBlock Diagram.pdf Operation descriptionOperation description.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Pursuant to DA04-1705 June 15, 2004 of the Commission’s public notice, we also request temporary confidential treatment of information accompanying this application for 180 days as outlined below: Exhibit TypeFile Name* External PhotosExternal Photos.pdf Internal PhotosInternal Photos.pdf Test Setup PhotosTest Photos.pdf User ManualUser Manual.pdf Sincerely, Applicant Printed Name: Nathan Seidle Applicant Signature:

Cover Letter(s)

SparkFun Electronics 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: 11-12-2025 SUBJECT: FCC Application for 2ASW8-SPNTTX2 To Whom It May Concern: We, the undersigned, hereby authorize Mr. Bob Dai at ITL Co., Ltd on our behalf, to apply to the Federal Communications Commission on our equipment. Any and all acts carried out by Mr. Bob Dai on our behalf shall have the same effect as acts of our own. This is to advise that we are in full compliance with the Anti- Drug Abuse Act. We, the applicant, are not subject to a denial of federal benefits pursuant to Section 5301 of the Anti-Drug Act of 1988, 21 USC853a, and no party to the application is subject to a denial of federal benefits pursuant to that section. Regards, Applicant’s Printed Name: Nathan Seidle Applicant’s Signature:

ID Label/Location Info

Page1of1 LabelLocation

RF Exposure Info

MPEEvaluation Applicant:SparkFunElectronics FCCID: 2ASW8-SPNTTX2 Model: TorchX2,RTKTorch,TorchX2T,TorchX2i,ES980Pro MPEEvaluation RFExposureComplianceRequirement StandardRequirement AccordingtoKDB447498D01GeneralRFExposureGuidancev06andFCC1.1310Radio frequencyradiationexposurelimitsforGeneralPopulation/UncontrolledExposure. EUTRFExposure Pd=PG/4 π R 2 Pd=powerdensityinmW/cm 2 P=outputpowertoantennainmW G=gainofantennainlinearscale π =3.14 R=distancebetweenobservationpointandcenteroftheradiatorincm For2.4GWIFI TheMaxOutputPoweris19.921dBmin802.11b2462MHz; Antennagain:2.78dBi,gainofantennainlinearscale:1.9 R=20cm Pd=PG/(4πR 2 )=0.0371mW/cm 2 <1(limits)mW/cm 2 For2.4GBLE TheMaxOutputPoweris2.413dBminBLE1M2440MHz; Antennagain:2.78dBi,gainofantennainlinearscale:1.9 R=20cm Pd=PG/(4πR 2 )=0.0007mW/cm 2 <1(limits)mW/cm 2 --END--

Test Report

ITL Page 1 of 63 Report No.: 251223014-1 iTEST REPORT Applicant: SparkFun Electronics Address of Applicant: 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Manufacturer: Shanghai Limosa Info Tech Co.Ltd Address of Manufacturer: Bd.1-307,No.99,Lane.215,Road Gaoguang, Qingpu District, Shanghai Product name: GNSS Receiver Model(s): Torch X2, RTK Torch, Torch X2T, Torch X2i, ES980 Pro Rating(s): USB-C 4.5~5.5V, 3A max Trademark: / Standards: 47 CFR PART 15 Subpart C section 15.247 FCC ID: 2ASW 8-SPNTTX2 Data of Receipt: 2025-12-23 Date of Test: 2025-12-23~2026-01-05 Date of Issue: 2026-01-05 Test Result Pass* * In the configuration tested, the test item complied with the standards specified above. Authorized for issue by: Test by: Reviewed by: Jan.05, 2026 Chivas Tsang Jan.05, 2026 Victor Meng Project Engineer Project Manager Date Name/Position Signature Date Name/Position Signature ITL Page 2 of 63 Report No.: 251223014-1 Testing Laboratory information: Testing Laboratory Name ........... : ITL Co., Ltd Address : No. 8, Jinqianling Street 5, Huangjiang Town, Dongguan, Guangdong, China Testing location : Same as above Tel : 0086-769-39001678 Fax : 0086-20-62824387 E-mail : [email protected] Possible test case verdicts: - test case does not apply to the test object . : N/A - test object does meet the requirement ....... : P (Pass) - test object does not meet the requirement . : F (Fail) General remarks: The test results presented in this report relate only to the object tested. The results contained in this report reflect the results for this particular model and serial number. It is the responsibility of the manufacturer to ensure that all production models meet the intent of the requirements detailed within this report. This report would be invalid test report without all the signatures of testing technician and approver. This report shall not be reproduced, except in full, without the written approval of the Issuing testing laboratory. General product information: This family of GNSS RTK devices, including models ES980 Pro, RTK Torch, Torch X2, Torch X2T, and Torch X2i, shares identical electrical circuit design, RF characteristics, and antenna systems. The differences between these models are solely related to firmware features and functional enhancements, as described below: ES980 Pro VS RTK Torch: no difference. RTK Torch vs. Torch X2: The primary difference lies in the built-in GNSS positioning algorithms and regional support. The two models utilize different firmware configurations to accommodate varying regional requirements and performance optimizations. Torch X2T: This model builds upon the RTK Torch/Torch X2 platform by adding tilt measurement functionality, enabling accurate positioning even when the device is not perfectly level. Torch X2i: Based on the Torch X2T, this model further incorporates an integrated laser rangefinder, providing additional distance measurement capability. All other hardware and RF components remain consistent across the series. These variations do not affect RF compliance or operating parameters. All listed variants are therefore electrically and functionally equivalent to the certified model Torch X2. ITL Page 3 of 63 Report No.: 251223014-1 1 Test Summary Test Test Requi rement Test method Result Antenna Requirement FCC PART 15 C section 15.247 (c) and Section 15.203 FCC PART 15 C section 15.247 (c) and Section 15.203 PASS Occupied Bandwidth FCC PART 15 C section 15.247 (a)(2) ANSI C63.10:2020 PASS Maximum Conducted Output Power FCC PART 15 C section 15.247(b)(3) ANSI C63.10:2020 PASS Power Spectral Density FCC PART 15 C section 15.247(e) ANSI C63.10:2020 PASS Conducted Spurious Emission (30MHz to 25GHz) FCC PART 15 C section 15.209&15.247(d) ANSI C63.10:2020 PASS Radiated Spurious Emission (30 MHz to 25 GHz) FCC PART 15 C section 15.209&15.247(d) ANSI C63.10:2020 PASS Radiated Emissions which fall in the restricted bands FCC PART 15 C section 15.209 ANSI C63.10:2020 PASS Band Edges Measurement FCC PART 15 C section 15.209&15.247(d) ANSI C63.10:2020 PASS Conducted Emissions at Mains Terminals FCC PART 15 C section 15.207 ANSI C63.10:2020 PASS ITL Page 4 of 63 Report No.: 251223014-1 2 Contents Page 1 TEST SUMMARY ......................................................................................................................................................... 3 2 CONTENTS ................................................................................................................................................................... 4 3 GENERAL INFORMATION ........................................................................................................................................ 5 3.1 CLIENT INFORMATION .................................................................................................................................................... 5 3.2 GENERAL DESCRIPTION OF E.U.T. ............................................................................................................................... 5 3.3 DETAILS OF E.U.T. ........................................................................................................................................................ 5 3.4 DESCRIPTION OF SUPPORT UNITS ................................................................................................................................ 5 3.5 TEST LOCATION ............................................................................................................................................................. 5 3.6 DEVIATION FROM STANDARDS ...................................................................................................................................... 5 3.7 ABNORMALITIES FROM STANDARD CONDITIONS ......................................................................................................... 6 3.8 OTHER INFORMATION REQUESTED BY THE CUSTOMER ...........................................…

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Test Report

ITL Page 1 of 93 Report No.: 251223014-2 TEST REPORT Applicant: SparkFun Electronics Address of Applicant: 6333 Dry Creek Parkway, Niwot, Colorado 80503, United States Manufacturer: Shanghai Limosa Info Tech Co.Ltd Address of Manufacturer: Bd.1-307,No.99,Lane.215,Road Gaoguang, Qingpu District, Shanghai Product name: GNSS Receiver Model(s): Torch X2, RTK Torch, Torch X2T, Torch X2i, ES980 Pro Rating(s): USB-C 4.5~5.5V, 3A max Trademark: / Standards: 47 CFR PART 15 Subpart C section 15.247 FCC ID: 2ASW 8-SPNTTX2 Data of Receipt: 2025-12-23 Date of Test: 2025-12-23~2026-01-05 Date of Issue: 2026-01-05 Test Result Pass* * In the configuration tested, the test item complied with the standards specified above. Authorized for issue by: Test by: Reviewed by: Jan.05, 2026 Chivas Tsang Jan.05, 2026 Victor Meng Project Engineer Project Manager Date Name/Position Signature Date Name/Position Signature ITL Page 2 of 93 Report No.: 251223014-2 Testing Laboratory information: Testing Laboratory Name ........... : ITL Co., Ltd Address : No. 8 Jinqianling Street 5, Huangjiang Town, Dongguan, Guangdong, 523757 P.R.C. Testing location : Same as above Tel : 0086-769-39001678 Fax : 0086-20-62824387 E-mail : [email protected] Possible test case verdicts: - test case does not apply to the test object . : N/A - test object does meet the requirement ....... : P (Pass) - test object does not meet the requirement . : F (Fail) General remarks: The Test Results presented in this report relate only to the object tested. The results contained in this report reflect the results for this particular model and serial number. It is the responsibility of the manufacturer to ensure that all production models meet the intent of the requirements detailed within this report. This report would be invalid test report without all the signatures of testing technician and approver. This report shall not be reproduced, except in full, without the written approval of the Issuing testing laboratory. General product information: This family of GNSS RTK devices, including models ES980 Pro, RTK Torch, Torch X2, Torch X2T, and Torch X2i, shares identical electrical circuit design, RF characteristics, and antenna systems. The differences between these models are solely related to firmware features and functional enhancements, as described below: ES980 Pro VS RTK Torch: no difference. RTK Torch vs. Torch X2: The primary difference lies in the built-in GNSS positioning algorithms and regional support. The two models utilize different firmware configurations to accommodate varying regional requirements and performance optimizations. Torch X2T: This model builds upon the RTK Torch/Torch X2 platform by adding tilt measurement functionality, enabling accurate positioning even when the device is not perfectly level. Torch X2i: Based on the Torch X2T, this model further incorporates an integrated laser rangefinder, providing additional distance measurement capability. All other hardware and RF components remain consistent across the series. These variations do not affect RF compliance or operating parameters. All listed variants are therefore electrically and functionally equivalent to the certified model Torch X2. ITL Page 3 of 93 Report No.: 251223014-2 1 Test Summary Test Test Requi rement Test method Result Antenna Requirement FCC PART 15 C section 15.247 (c) and Section 15.203 FCC PART 15 C section 15.247 (c) and Section 15.203 PASS Occupied Bandwidth FCC PART 15 C section 15.247 (a)(2) ANSI C63.10:2020 PASS Maximum Conducted Output Power FCC PART 15 C section 15.247(b)(3) ANSI C63.10:2020 PASS Power Spectral Density FCC PART 15 C section 15.247(e) ANSI C63.10:2020 PASS Conducted Spurious Emission (30 MHz to 25GHz) FCC PART 15 C section 15.209 &15.247(d) ANSI C63.10:2020 PASS Radiated Spurious Emission (9 KHz to 25 GHz) FCC PART 15 C section 15.209 &15.247(d) ANSI C63.10:2020 PASS Band Edges FCC PART 15 C section 15.209 &15.247(d) ANSI C63.10:2020 PASS Conducted Emissions at Mains Terminals FCC PART 15 C section 15.207 ANSI C63.10:2020 PASS Radiated Emissions which fall in the restricted bands FCC PART 15 C section 15.209 ANSI C63.10:2020 PASS Duty Cycle FCC PART 15 C section 15.247 ANSI C63.10:2020 PASS ITL Page 4 of 93 Report No.: 251223014-2 2 Contents Page 1 TEST SUMMARY ......................................................................................................................................................... 3 2 CONTENTS ................................................................................................................................................................... 4 3 GENERAL INFORMATION ........................................................................................................................................ 5 3.1 CLIENT INFORMATION .................................................................................................................................................... 5 3.2 GENERAL DESCRIPTION OF E.U.T. ............................................................................................................................... 5 3.3 DETAILS OF E.U.T. ........................................................................................................................................................ 5 3.4 DESCRIPTION OF SUPPORT UNITS ................................................................................................................................ 5 3.5 TEST LOCATION ............................................................................................................................................................. 6 3.6 TEST FACILITY ............................................................................................................................................................... 6 3.7 MEASUREMENT UNCERTAINTY ...................................................................................................................................... 6 4 IN…

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Test Report

ITL Page 51 of 93 Report No.: 251223014-2 Tx. Spurious NVNT n20 2412MHz Ant1 Ref Tx. Spurious NVNT n20 2412MHz Ant1 Emission ITL Page 52 of 93 Report No.: 251223014-2 Tx. Spurious NVNT n20 2437MHz Ant1 Ref Tx. Spurious NVNT n20 2437MHz Ant1 Emission ITL Page 53 of 93 Report No.: 251223014-2 Tx. Spurious NVNT n20 2462MHz Ant1 Ref Tx. Spurious NVNT n20 2462MHz Ant1 Emission ITL Page 54 of 93 Report No.: 251223014-2 Tx. Spurious NVNT n40 2422MHz Ant1 Ref Tx. Spurious NVNT n40 2422MHz Ant1 Emission ITL Page 55 of 93 Report No.: 251223014-2 Tx. Spurious NVNT n40 2437MHz Ant1 Ref Tx. Spurious NVNT n40 2437MHz Ant1 Emission ITL Page 56 of 93 Report No.: 251223014-2 Tx. Spurious NVNT n40 2452MHz Ant1 Ref Tx. Spurious NVNT n40 2452MHz Ant1 Emission Test Result: The unit does meet the FCC requirements. ITL Page 57 of 93 Report No.: 251223014-2 5.7 Radiated Spurious Emissions Test Requirement: FCC Part 15 C section 15.247 (d) In any 100 kHz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating. The radio frequency power that is produced by the intentional radiator shall be at least 20 dB below that in the 100 kHz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, and provided the transmitter demonstrates compliance with the peak conducted power limits. Test Method: ANSI C63.10:2020 Test Status: Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, channels and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as lis ted below. Detector: For PK value: RBW = 1 MHz for f ≥ 1 GHz, 100 kHz for f < 1 GHz VBW ≥ RBW Sweep = auto Detector function = peak Trace = max hold For AV value: RBW = 1 MHz for f ≥ 1 GHz, 100 kHz for f <1 GHz, 9 kHz for <30 MHz VBW =10Hz Sweep = auto Detector function = peak Trace = max hold Limit: 40.0 dBμV/m between 30 MHz & 88MHz 43.5 dBμV/m between 88MHz & 216MHz 46.0 dBμV/m between 216MHz & 960MHz 54.0 dBμV/m above 960MHz ITL Page 58 of 93 Report No.: 251223014-2 5.7.1 Test Configuration 1) 9 kHz to 30 MHz emissions: 2) 30 MHz to 1 GHz emissions: ITL Page 59 of 93 Report No.: 251223014-2 3) 1 GHz to 40 GHz emissions: Test Procedure: (1) The receiver was scanned from 0.009MHz to 25GHz.W hen an emission was found, the table was rotated to produce the maximum signal strength. An initial pre-scan was performed for in peak detection mode using the receiver. The EUT was measured for both the Horizontal and Vertical polarities and performed a pre-test three orthogonal planes. For intentional radiators, measurements of the variation of the input power or the radiated signal level of the fundamental frequency component of the emission, as appropriate, sh all be performed with the supply voltage varied between 85% and 115% of the nominal rated supply voltage. After pre-test, It was found that the worse radiation emission was get at the X position. So the data shown was the X position only. The worst case emissions were reported. (2) Now set the VBW to 10 Hz, while maintaining all of the other instrument settings. This peak level, once corrected, must comply with the limit specified in Section 15.209. If the dwell time per channel of the hopping signal is less than 100 ms, then the reading obtained with the 10 Hz VBW may be further adjusted by a "duty cycle correction factor", deriv ed from 20log(dwell time/100 ms), in an effort to demonstrate compliance with the 15.209 limit. Submit this data. (3) Pre-test under all modes below 1GHz; choose the worst case mode record On the report. ITL Page 60 of 93 Report No.: 251223014-2 5.7.2 Harmonic and other spurious emissions 5.7.3 Test Result (Radiated Spurious Emissions 30 MHz~1 GHz) Worst case mode 802.11b 9 kHz~30 MHz Test Result The Low frequency, which started from 9 kHz to 30 MHz, was pre-scanned and the result which was 20dB lower than the limit line per 15.31(o) was not report. 30 MHz~1 GHz Spurious Emissions .Quasi-Peak Measurement Horizontal: Peak scan Level (dBμV/m) Quasi-peak measurement ITL Page 61 of 93 Report No.: 251223014-2 Vertical: Peak scan Level (dBμV/m) Quasi-peak measurement ITL Page 62 of 93 Report No.: 251223014-2 5.7.4 Test Result (Spurious emissions above 1GHz) Test at Channel 1 (2.412 GHz) in transmitting status Horizontal: Peak scan Level (dBμV/m) Peak and Average measurement Note: The emission above limit is fundamental emission, which is not subject to the limit. ITL Page 63 of 93 Report No.: 251223014-2 Vertical: Peak scan Level (dBμV/m) Peak and Average measurement Note: The emission above limit is fundamental emission, which is not subject to the limit. ITL Page 64 of 93 Report No.: 251223014-2 Test at Channel 6 (2.437 GHz) in transmitting status Horizontal: Peak scan Level (dBμV/m) Peak and Average measurement Note: The emission above limit is fundamental emission, which is not subject to the limit. ITL Page 65 of 93 Report No.: 251223014-2 Vertical: Peak scan Level (dBμV/m) Peak and Average measurement Note: The emission above limit is fundamental emission, which is not subject to the limit. ITL Page 66 of 93 Report No.: 251223014-2 Test at Channel 11 (2.462 GHz) in transmitting status Horizontal: Peak scan Level (dBμV/m) Peak and Average measurement Note: The emission above limit is fundamental emission, which is not subject to the limit. ITL Page 67 of 93 Report No.: 251223014-2 Vertical: Peak scan Level (dBμV/m) Peak and Average measurement Note: The emission above limit is fundamental emission, which is not subject to the limit. ITL Page 68 of 93 Report No.: 251223014-2 The field strength is calculated by adding the Antenna Factor. Cable Factor & Preamplifier. The basic equation with a sample calculation is as follows: Correct= Antenna Factor + Cable Factor –Preamplifier Factor Final Test Level =Receiver Reading + Ante…

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Test Report

AntennaSpecification 1.GNSSAntennaSpecifications: Passiveantennaparameter Frequency GPS L1/L2/L5 BDS B1/B2a/B2b GALILEO E1/E5a/E5b Maxgain L1≥2.0dBi L2≥-1.0dBi L5≥1.5dBi B1≥2.0dBi B2a≥1.5dBi B2b≥0dBi E1≥2.0dBi E5a≥1.5dBi E5b≥0dBi Polarization RHCP Coverageangle 360 o Outputimpedance 50 a OutputVSWR ≤2.0 Axisratio ≤3dB LNAparameter Activegain 35±2dB Noisefigure ≤1.5dB InputVSWR ≤2.0 OutputVSWR ≤2.0 SupplyVoltage 3.3~5.5V WorkingCurrent ≤46mA Antennapicture: Antennasize: GNSSbandVSWR GNSSband1575MHz GNSSband1227MHz GNSSband1176MHz 2.WiFi/BluetoothAntennaSpecification OperatingFrequency2400-2500MHz Gain3dBipeak Impedance50Ω(Ohms) PowerCapacity10W VSWR(VoltageStandingWaveRatio) <1.5 PolarizationLinearPolarization CableTypeRG1.13 Wi-Fi/BluetoothbandSRW Wifi/BTantennagain FrequencyMHzEfficiencydBGaindBiEfficiency 2350-3.321.6746.55 2360-2.862.1751.76 2370-2.512.5856.07 2380-2.382.7957.84 2390-2.293.1159.06 2400-2.382.7857.81 2410-2.662.2854.2 2420-3.121.5548.71 2430-3.841.4541.3 2440-4.271.3737.42 2450-4.511.4335.38 2460-4.551.4535.05 2470-4.431.4536.03 2480-4.411.2836.19 2490-4.560.8234.99 2500-4.620.5234.55 Radiationpattern

Contact Information

Applicant

Nathan Seidle(Owner)
[email protected]Fax: 303-443-0048

Technical Contact

SparkFun ElectronicsNathan Seidle
[email protected]

6333 Dry Creek Parkway · Niwot, Colorado, 80503 · United States

Test Firm

ITL Co., LTDBob Dai
[email protected]Fax: 86-020-62824387

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz98.00 mW
215C2.40 GHz - 2.48 GHz2.00 mW
Confidentiality
Long Term
Grant Notes
Power list is conducted. Device must be operated to provide a separation distance of at least 20cm from all persons and must not transmit simultaneously with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. This device supports 20, 40, and 80 MHz bandwidth modes.