
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
FCC ID:2A5PM-XPHERE IC:28343-XPHERE The device has been evaluated to meet general RF exposure requirement. The device can be used in portable exposure condition without restriction. The device has been evaluated to meet general RF exposure requirement. The device can be used in portable exposure condition without restriction. L’appareil a été évalué pour répondre aux exigences générales d’exposition aux RF. Le dispositif peut être utilisé dans des conditions d’exposition portatives sans restriction.
Rev 1/26/2023 Axil and Associated Brands Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 04‐04‐2023 Ref: Attestation Statements Part 2.911(d)(5)(i) Filing FCC ID: 2A5PM‐XPHERE Axil and Associated Brands 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, Ken Williams /COO Axil and Associated Brands Rev 1/26/2023 Axil and Associated Brands Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 04‐04‐2023 Ref: Attestation Statements Part 2.911(d)(5)(ii) Filing FCC ID: 2A5PM‐XPHERE Axil and Associated Brands 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, Ken Williams /COO Axil and Associated Brands
Rev 1/26/2023 Axil and Associated Brands Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 04‐04‐2023 Ref: Attestation Statements Part 2.911(d)(7) Filing FCC ID or Grantee Code: 2A5PM‐XPHERE Axil and Associated Brands certifies that, as of the date of the filing of the application, we designate ourselves as the U.S. agent for service of process. Designated U.S. Agent Information: FRN: 0032100380 Name: Axil and Associated Brands Address: 120 E 13065 S Suite 203, Draper, UT 84020 Contact Person: Ken Williams Tel.: 801 566 0240 Email: [email protected] Sincerely, Axil and Associated Brands Ken Williams
Axil and Associated Brands Date: 2023-04-04 To: Federal Communications Commission 7435 Oakland Mills Road Columbia, MD FCC ID: 2A5PM-XPHERE To Whom It May Concern: This letter is to ascertain that Axil and Associated Brands EUT : AXIL XPHERE Model Name : AXIL XPHERE We will apply for FCC SDOC. If you have any question or concerns, pls. contact us. Sincerely, Client’s signature : Client’s name / title : Ken Williams /COO Contact information / address: Axil and Associated Brands /13065 South 120 East, Draper UT 84020, USA
(Axil and Associated Brands) Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: 2A5PM-XPHERE 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 Type File Name Block Diagram, Schematics, Operational Description Block Diagram .pdf, Schematics .pdf , Operation 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 as outlined below: Short-term confidentiality requested: 180 days Exhibit Type File Name Internal Photos, Test Setup Photos, Manual, External Photos Internal Photos .pdf, Test Setup Photos .pdf, User Manual .pdf, External Photos.pdf Sincerely, Ken Williams /COO Axil and Associated Brands
(Axil and Associated Brands) Federal Communications Commission Authorization and Evaluation Division 1435 Oakland Mills Road Columbia, MD 21046 Date: April 04, 2023 SUBJECT: FCC Application for FCC ID: 2A5PM-XPHERE To Whom It May Concern: We, the undersigned, hereby authorize Tony Wei at EMTEK(NINGBO) CO., LTD. on our behalf, to apply to the Federal Communications Commission on our equipment. Any and all acts carried out by EMTEK(NINGBO) CO., LTD. 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, Ken Williams /COO Axil and Associated Brands
External photos: ---The End---
Label and Location FCC ID:2A5PM‐XPHERE
Internal photos: Antenna ---The End--- Antenna
FCC ID: 2A5PM-XPHERE Portable device According to §15.247(i) and §1.1307(b)(1), systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission’s guidelines. According to KDB447498 D01 General RF Exposure Guidance V06 The 1-g and 10-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances ≤ 50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] * [√f(GHz)] ≤ 3.0 for 1-g SAR and ≤ 7.5 for 10-g extremity SAR, where f(GHz) is the RF channel transmit frequency in GHz; Power and distance are rounded to the nearest mW and mm before calculation; The result is rounded to one decimal place for comparison; The test exclusions are applicable only when the minimum test separation distance is ≤ 50 mm and for transmission frequencies between 100 MHz and 6 GHz. When the minimum test separation distance is < 5 mm, a distance of 5 mm is applied to determine SAR test exclusion. We use 5mm as separation distance to calculate. Maximum measured transmitter power: Transmit Frequency (GHz) Mode Max Conducted Power (dBm) tune up maximum power(dBm) Result calculation 1-g SAR 2.402 GFSK -1.84 -1 0.25 3 2.441 GFSK -1.29 -1 0.25 3 2.480 GFSK -0.87 0 0.31 3 2.402 PI/4 DQPSK -1.87 -1 0.25 3 2.441 PI/4 DQPSK -1.36 -1 0.25 3 2.480 PI/4 DQPSK -0.95 0 0.31 3 2.402 8DPSK -1.82 -1 0.25 3 2.441 8DPSK -1.08 -1 0.25 3 2.480 8DPSK -0.56 0 0.31 3 Conclusion: For the max result : 0.31≤ 3.0 for 1-g SAR extremity SAR, No SAR is required.
Antenna specification Applica nt: Axil and Associated Brands Address: 13065 South 120 East, Draper UT 84020, USA Manufacturer: Axil and Associated Brands Address: 13065 South 120 East, Draper UT 84020, USA Product: AXIL XPHERE Model: AXIL XPHERE Date: 2023-04-03 Antenna Gain FrequencyGain 2400 MHz 2.1 dBi 2410 MHz 2.3 dBi 2420 MHz 2.2 dBi 2430 MHz 2.8 dBi 2440 MHz 3.0 dBi 2450 MHz 2.4 dBi 2460 MHz 2.1 dBi 2470 MHz 1.9 dBi 2480 MHz 2.7 dBi 2490 MHz 2.9 dBi 2500 MHz 2.4 dBi Electrical Properties Frequency 2.4GHz Impedance 50 0hm Nominal V.S.W.R 1.92 : 1 Max Return Loss -10 dB Max Radiation Omni-directional Gain (Peak) 3dBi Cable Loss 3.2 dB / m Max @ 2450 MHz Polarization Linear, Vertical Admitted Power 1 W Connector ipex Physical Properties Antenna Material FPCB Cable Type O.D. 1.13mm // 120 mm Operating Temp. -40 ~ +85 ̊C Storage Temp. -40 ~ +85 ̊C Cable Color Black 1 S 参数测试 S Parameter Test Agilent E5071C 1 增益测试 Gain Test Antenna Radiation Pattern VS Gain 0 45 90 135 180 225 270 315 -5 -5 -15 -15 -25 -25 -35 -35 -45
Report No. EDG2302150116E00401R Page 1 of 63 Ver.1.0 TEST REPORT $二维码$ Product Name : AXIL XPHERE Model Number : AXIL XPHERE FCC ID : 2A5PM-XPHERE Prepared for : AXIL AND ASSOCIATED BRANDS Address : 13065 South 120 East, Draper UT 84020, USA Prepared by : EMTEK (DONGGUAN) CO., LTD. Address : -1&2F., Building 2, Zone A, Zhongda Marine Biotechnology Research and Development Base, No. 9, Xincheng Avenue, Songshanhu High-technology Industrial Development Zone, Dongguan, Guangdong, China Tel : +86-0769-22807078 Fax: +86-0769-22807079 Report Number : EDG2302150116E00401R Date(s) of Tests : February 15, 2023 to February 28, 2023 Date of issue : March 01, 2023 Report No. EDG2302150116E00401R Page 2 of 63 Ver.1.0 Table of Contents 1 TEST RESULT CERTIFICATION ............................................................................................................ 3 2 EUT TECHNICAL DESCRIPTION .......................................................................................................... 4 3 SUMMARY OF TEST RESULT ............................................................................................................... 5 4 TEST METHODOLOGY .......................................................................................................................... 6 4.1 GENERAL DESCRIPTION OF APPLIED STANDARDS ....................................................................... 6 4.2 MEASUREMENT EQUIPMENT USED .................................................................................................. 6 4.3 DESCRIPTION OF TEST MODES ........................................................................................................ 8 4.4 TEST SOFTWARE ................................................................................................................................ 8 5 FACILITIES AND ACCREDITATIONS ................................................................................................... 9 5.1 FACILITIES ............................................................................................................................................ 9 5.2 LABORATORY ACCREDITATIONS AND LISTINGS ............................................................................. 9 6 TEST SYSTEM UNCERTAINTY ........................................................................................................... 10 7 SETUP OF EQUIPMENT UNDER TEST ............................................................................................... 11 7.1 RADIO FREQUENCY TEST SETUP 1 ................................................................................................ 11 7.2 RADIO FREQUENCY TEST SETUP 2 ................................................................................................ 11 7.3 CONDUCTED EMISSION TEST SETUP ............................................................................................ 12 7.4 SUPPORT EQUIPMENT ..................................................................................................................... 13 8 FREQUENCY HOPPING SYSTEM REQUIREMENTS ......................................................................... 14 8.1 STANDARD APPLICABLE .......................................................................................................................... 14 8.2 EUT PSEUDORANDOM FREQUENCY HOPPING SEQUENCE ........................................................................ 14 8.3 EQUAL HOPPING FREQUENCY USE ......................................................................................................... 15 8.4 FREQUENCY HOPPING SYSTEM .............................................................................................................. 15 9 TEST REQUIREMENTS ........................................................................................................................ 16 9.1 20DB BANDWIDTH ............................................................................................................................. 16 9.2 CARRIER FREQUENCY SEPARATION ............................................................................................. 22 9.3 NUMBER OF HOPPING FREQUENCIES ........................................................................................... 28 9.4 AVERAGE TIME OF OCCUPANCY (DWELL TIME) ............................................................................ 30 9.5 MAXIMUM PEAK CONDUCTED OUTPUT POWER ........................................................................... 33 9.6 CONDUCTED SUPRIOUS EMISSION ............................................................................................... 39 9.7 RADIATED SPURIOUS EMISSION ..................................................................................................... 46 9.8 CONDUCTED EMISSION TEST ......................................................................................................... 59 9.9 ANTENNA APPLICATION ................................................................................................................... 62 Report No. EDG2302150116E00401R Page 3 of 63 Ver.1.0 1 TEST RESULT CERTIFICATION Applicant : AXIL AND ASSOCIATED BRANDS Address : 13065 South 120 East, Draper UT 84020, USA Manufacturer : NINGBO HONGSHUO ELECTRONICS & APPLIANCE CO., LTD Address : ZHANGQI INDUSTRY ZONE, CIXI NINGBO, ZHEJIANG, CHINA EUT : AXIL XPHERE Model Name : AXIL XPHERE Trademark : AXIL Measurement Procedure Used: APPLICABLE STANDARDS STANDARD TEST RESULT FCC 47 CFR Part 2, Subpart J FCC 47 CFR Part 15, Subpart C PASS The above equipment was tested by EMTEK (DONGGUAN) CO., LTD. The test data, data evaluation, test procedures, and equipment configurations shown in this report were made in accordance with the procedures given in ANSI C63.10 (2013) and the energy emitted by the sample EUT tested as described in this report is in compliance with the requirements of FCC Rules Part 2 and Part 15.247. The test results of this report relate only to the tested …
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Report No. EDG2302150116E00401R Page 39 of 63 Ver.1.0 9.6 CONDUCTED SUPRIOUS EMISSION 9.6.1 Applicable Standard According to FCC Part 15.247(d) and 558074 D01 15.247 Meas Guidance V05r02 9.6.2 Conformance Limit According to FCC Part 15.247(d): In any 100 kHz bandwidth outside the frequency band in which the spread spectrum 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, provided the transmitter demonstrates compliance with the peak conducted power limits. 9.6.3 Test Configuration Test according to clause 7.1 radio frequency test setup 1 9.6.4 Test Procedure The transmitter output (antenna port) was connected to the spectrum analyzer Reference level measurement Establish a reference level by using the following procedure: Set instrument center frequency to DSS channel center frequency. Set Span = approximately 5 times the 20 dB bandwidth, centered on a hopping channel. Set the RBW = 100 kHz. Set the VBW ≥ 3 x RBW. Set Detector = peak. Set Sweep time = auto couple. Set Trace mode = max hold. Allow trace to fully stabilize. Use the peak marker function to determine the maximum Maximumconducetedlevel. Note that the channel found to contain the maximum conduceted level can be used to establish the reference level. Band-edge Compliance of RF Conducted Emissions Use the following spectrum analyzer settings: Span = wide enough to capture the peak level of the emission operating on the channel closest to the band-edge, as well as any modulation products which fall outside of the authorized band of operation Set RBW 1% of the span=100kHzSet VBW RBW Set Sweep = autoSetDetector function = peakSetTrace = max hold Allow the trace to stabilize. Set the marker on the emission at the bandedge, or on the highest modulation product outside of the band, if this level is greater than that at the bandedge. Enable the marker-delta function, then use the marker-to-peak function to move the marker to the peak of the in-band emission. The marker-delta value now displayed must comply with the limit specified in this Section. Now, using the same instrument settings, enable the hopping function of the EUT. Allow the trace to stabilize. Follow the same procedure listed above to determine if any spurious emissions caused by the hopping function also comply with the specified limit. ConducetedSpurious RF Conducted Emission Use the following spectrum analyzer settings: Span = wide enough to capture the peak level of the in-band emission and all spurious emissions (e.g., harmonics) from the lowest frequency generated in the EUT up through the 10th harmonic.(30MHz to 25GHz).Set RBW = 100 kHzSetVBW RBW Set Sweep = autoSetDetector function = peakSetTrace = max hold Allow the trace to stabilize. Set the marker on the peak of an y spurious emission recorded. The level displayed must comply with the limit specified in this Section. 9.6.5 Test Results Report No. EDG2302150116E00401R Page 40 of 63 Ver.1.0 Pass. Bluetooth (GFSK, pi/4-DQPSK,8DPSK) mode have been tested, and the worst result(GFSK)was report as below: Test Model Maximum Conduceted Level RBW=100kHz Channel 0: 2402MHz GFSK Test Model ConducetedSpurious RF Conducted Emission(30 MHz-25GHz) Channel 0: 2402MHz GFSK Report No. EDG2302150116E00401R Page 41 of 63 Ver.1.0 Test Model Band-edge Conducted Emissions Channel 0: 2402MHz GFSK Test Model Maximum Conduceted Level RBW=100kHz Channel 39: 2441MHz GFSK Report No. EDG2302150116E00401R Page 42 of 63 Ver.1.0 Test Model ConducetedSpurious RF Conducted Emission(30 MHz-25GHz) Channel 0: 2402MHz GFSK Test Model Maximum Conduceted Level RBW=100kHz Channel 78: 2480MHz GFSK Report No. EDG2302150116E00401R Page 43 of 63 Ver.1.0 Test Model ConducetedSpurious RF Conducted Emission(30 MHz-25 GHz) Channel 78: 2480MHz GFSK Test Model Band-edge Conducted Emissions Channel 78: 2480MHz GFSK Report No. EDG2302150116E00401R Page 44 of 63 Ver.1.0 Test Model Maximum Conduceted Level RBW=100kHz Hopping Mode GFSK Test Model ConducetedSpurious RF Conducted Emission(30 MHz-25GHz) Hopping Mode GFSK Report No. EDG2302150116E00401R Page 45 of 63 Ver.1.0 Test Model Band-edge Conducted Emissions Hopping Mode GFSK Report No. EDG2302150116E00401R Page 46 of 63 Ver.1.0 9.7 RADIATED SPURIOUS EMISSION 9.7.1 Applicable Standard According to FCC Part 15.247(d) and 15.209 and 558074 D01 15.247 Meas Guidance V05r02 9.7.2 Conformance Limit According to FCC Part 15.247(d): radiated emissions which fall in the restricted bands, as defined in §15.205(a), must also comply with the radiated emission limits specified in §15.209(a) (see §15.205(c)). According to FCC Part15.205, Restricted bands MHz MHz MHz GHz 0.090-0.110 16.42-16.423 399.9-410 4.5-5.15 10.495-0.505 16.69475-16.69525 608-614 5.35-5.46 2.1735-2.1905 16.80425-16.80475 960-1240 7.25-7.75 4.125-4.128 25.5-25.67 1300-1427 8.025-8.5 4.17725-4.17775 37.5-38.25 1435-1626.5 9.0-9.2 4.20725-4.20775 73-74.6 1645.5-1646.5 9.3-9.5 6.215-6.218 74.8-75.2 1660-1710 10.6-12.7 6.26775-6.26825 123-138 2200-2300 14.47-14.5 8.291-8.294 149.9-150.05 2310-2390 15.35-16.2 8.362-8.366 156.52475-156.52525 2483.5-2500 17.7-21.4 8.37625-8.38675 156.7-156.9 2690-2900 22.01-23.12 8.41425-8.41475 162.0125-167.17 3260-3267 23.6-24.0 12.29-12.293 167.72-173.2 3332-3339 31.2-31.8 12.51975-12.52025 240-285 3345.8-3358 36.43-36.5 12.57675-12.57725 322-335.4 3600-4400 (2) 13.36-13.41 According to FCC Part15.209,the level of any transmitter spurious emission in Restricted bands shall not exceed the level of the emission specified in the following table Restricted Frequency(MHz) Field Strength ( μV/m) Field Strength (dB μV/m) Measurement Distance 0.009-0.490 2400/F(KHz) 20 log (uV/m) 300 0.490-1.705 24000/F(KHz) 20 log (uV/m) 30 1.705-30 30 29.5 30 30-88 100 40 3 88-216 150 43.5 3 216-960 200 46 3 Above 960 500 54…
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Radiated CONDUCTED EMISSION ---The End---
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 900.00 µW |
HEARING PROTECTION AND ENHANCEMENT
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterELECTRONIC HEADMUFF
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
AXIL XCOR
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Ear plug
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter