
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User manual NearFi couplers for contactless power and real-time Ethernet data transmission 2026-04-27 Phoenix Contact GmbH & Co. KG • Flachsmarktstraße 8 • 32825 Blomberg • Germany phoenixcontact.com 1 1 0 7 1 8 _ e n _ 0 2 NearFi couplers for contactless power and real-time Ethernet data transmission This user manual is valid for: DesignationItem No. NEARFI2200B1433050 NEARFI2200R1433049 NEARFI200B1433047 NEARFI200R1433046 NEARFI300B1464614 NEARFI300R1509989 NEARFI2000B1433041 NEARFI2000R1433040 User manual UM EN NEARFI, Revision 02 Table of contents 110718_en_02Phoenix Contact3 / 102 Table of contents 1For your safety .............................................................................................................................5 1.1Identification of warning notes...............................................................................5 1.2Qualification of users..............................................................................................5 1.3Field of application of the product..........................................................................6 1.4Safety notes.............................................................................................................6 1.5Protection against tampering..................................................................................7 1.6User documentation................................................................................................8 1.7UL notes...................................................................................................................9 2FCC approval .............................................................................................................................10 2.1Part 15..................................................................................................................10 2.2Part 18..................................................................................................................11 2.3Intended use description for industrial inductive couplers................................11 2.4Installation instructions for applications using Nearfi base units (NEARFI2200B, NEARFI300B, NEARFI200B)...............................................12 2.5Part15, 18............................................................................................................14 3Transport, storage, and unpacking ...........................................................................................15 3.1Transport..............................................................................................................15 3.2Storage..................................................................................................................15 3.3Unpacking.............................................................................................................16 4Product description ...................................................................................................................17 4.1Functional principle..............................................................................................18 4.2Installation examples...........................................................................................19 4.3Compatibility........................................................................................................33 4.4Basic circuit diagram............................................................................................34 4.5Function elements................................................................................................38 4.6DIP switches.........................................................................................................40 4.7Ethernet................................................................................................................43 4.8Switch-on time (operational readiness time)......................................................44 4.9Positioning of the devices....................................................................................45 4.10Obstacles in the air gap........................................................................................49 4.11Foreign objects in the air gap...............................................................................49 4.12Minimum clearances............................................................................................50 4.13Installation in metal.............................................................................................50 NEARFI 4 / 102Phoenix Contact 110718_en_02 4.14Coupling the base and remote couplers..............................................................51 4.15Derating................................................................................................................53 5Installation ................................................................................................................................58 5.1Mounting and removal..........................................................................................58 5.2Connecting cables................................................................................................62 5.3Startup and maintenance.....................................................................................72 6Troubleshooting ........................................................................................................................73 6.1Diagnostic LEDs....................................................................................................73 7Device replacement, device defect and repair .........................................................................80 7.1Device replacement.............................................................................................80 7.2Device defect and repair......................................................................................80 8Maintenance and disposal ......................................…
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NEARFI 76 / 102Phoenix Contact 110718_en_02 LED ring on the remote coupler lights up red Only for the NEARFI200R power coupler Figure6-5Critical error on remote in parallel operation If the remote coupler LED ring lights up red, there is a critical error. Possible reasons: –NEARFI200B not transmitting power to NEARFI200R –Internal temperature too high –Internal error •Check the power supply unit. •Check the connected load on the remote side. •Check the air gap between the devices. •Reduce the distance, the offset, or the angle between the devices if necessary. •Contact PhoenixContact if these measures do not help. 2200 B2200 R 200 B200 R Troubleshooting 110718_en_02Phoenix Contact77 / 102 6.1.3Critical error on the base Only for the NEARFI2200 power and data couplers and the NEARFI200/300 pow- er couplers Figure6-6Critical error If the base coupler LED ring lights up red, there is a critical error. Possible reasons: –Supply voltage outside of the nominal range (19VDC...30VDC) –Internal temperature too high –Internal error To protect the coupler and other devices, the remote coupler switches off. No more power is transmitted. •Check the power supply unit. •Check the connected load on the remote side. •Check the air gap between the devices. •Reduce the distance, the offset, or the angle between the devices if necessary. •Contact PhoenixContact if these measures do not help. a RemoteBase NEARFI 78 / 102Phoenix Contact 110718_en_02 6.1.4Malfunction on the data line Only for the NEARFI2200 power and data couplers and the NEARFI2000 data cou- plers Figure6-7LAN malfunction If a twisted pair segment malfunctions, only the ETH LINK LED of the corresponding port will go out. Fast startup The “Fast startup” function is also referred to as prioritized startup or fast restart. When using network devices with this function, note the following: •Only use routers and switches that support fast startup. •To ensure fast startup of network devices, select “ETH full duplex” operating mode on the NearFi couplers. •Please note that crossover detection is not available in “ETH full duplex” operating mode. The pin assignment of the network connection changes to “Crossover” on the remote coupler. •Select the connecting cable according to the connected device: –Crossover cable with same port assignment –Patch cable with different port assignment a RemoteBase Troubleshooting 110718_en_02Phoenix Contact79 / 102 6.1.5Wireless connection not optimal Only for the NEARFI2000 data couplers Figure6-8Wireless connection not optimal The LED ring on the base and the remote flashes green if the distance or the offset be- tween the couplers is too great. •Check the air gap between the devices. •Reduce the distance, the offset, or the angle between the devices if necessary. a RemoteBase NEARFI 80 / 96Phoenix Contact 110718_en_02 7Device replacement, device defect and repair 7.1Device replacement NOTE:Device damage Only mount and remove devices when the power supply is disconnected. You can replace the device if necessary. •Disconnect the device from the power supply. •Remove all cables. •Remove the device as described in “Mounting and removal” on page58. •Replace the device with an identical device (the same item no.). 7.2Device defect and repair Repairs may only be carried out by PhoenixContact. •Send defective devices back to PhoenixContact for repair or to receive a replace- ment device. •We strongly recommend using the original packaging to return the product. •Include a note in the packaging indicating that the contents are returned goods. •Include an error description with the returned product. •If the original packaging is no longer available, observe the following points: –Observe the humidity specifications and the temperature range specified for transport (see “Ambient conditions” on page91). –Use dehumidifying agents if necessary. –Use suitable ESD packaging to protect components that are sensitive to electro- static discharge. –Make sure that the packaging you select is large enough and sufficiently thick. –Only use plastic bubble wrap sheets as wadding. –Attach warnings to the transport packaging so that they are clearly visible. –Please ensure that the delivery note is placed inside the package if the package is to be shipped domestically. However, if the package is being shipped interna- tionally, the delivery note must be placed inside a delivery note pocket and at- tached to the outside so that it is clearly visible. Device replacement, device defect and repair 110718_en_02Phoenix Contact81 / 96 8Maintenance and disposal 8.1Maintenance The device is maintenance-free. 8.2Disposal The symbol with the crossed-out trash can indicates that this item must be collect- ed and disposed of separately. PhoenixContact or our service partners will take the item back for free disposal. For information on the available disposal options, visit phoenixcontact.com. •Set all DIP switches to “off” before disposal. •Dispose of packaging materials that are no longer needed (cardboard packaging, paper, bubble wrap sheets, etc.) with household waste in accordance with the currently applicable national regulations. NEARFI 82 / 102Phoenix Contact 110718_en_02 9Technical data 9.1Ordering data NEARFITypeItem no.Pcs./Pkt. Power and data coupler, 50W (US), 100Mbps full duplex, M12 push-pull, IP65, optional: 100W (US) in conjunction with NEARFI200 or 2x50W (US+UA) with NEARFI300 Base couplerNEARFI2200B14330501 Remote couplerNEARFI2200R14330491 Power coupler, 50W (UA), M12 push-pull, IP65, optional: 2x50W (US+UA) in conjunction with NEARFI2200/200 Base couplerNEARFI300B14646141 Remote couplerNEARFI300R15099891 Power coupler, 50W (US), M12 push-pull, IP65, optional: 100W (US) in conjunction with NEARFI2200/200 or 2x50W (US+UA) with NEARFI300 Base couplerNEARFI200B14330471 Remote couplerNEARFI200R14330461 Data coupler, 100Mbps full duplex, range up to 10cm, M12 push-pull, IP65 Base couplerNEARFI2000B14330411 Remote couplerNEARFI2000R14330401 …
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Covered Eq u ipment Attestation Letter For Certification Service in the USA Federal Communications Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 To whom it may concern Pursuant to Section 2.911(dX5)(i)-(ii) of the Commission's Rules (47 C.F.R.) we attest as follows for the product listed below: FCC ID Model name YG320008 NEARFI 2OOO B We, Applicant Company Name Address Phoenix Contact GmbH & Co. KG Flachsmarktstr. 8 D-32825 Blomberg Germany Phone: +49 5235 300 certify 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. This includes the cybersecurity and anti-virus software produced or provided by Kaspersky Lab, lnc.. We certify 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. lf you have any questions, please feel free to contact us at the address shown below. Sincerely, ' ,-- I tV Y !)- Signature Phoenlx Gontact GmbH & Co. KG FlachsmarKstraße I D-32825 B¡omberg Printed Name of Signee: Dinger Florian Company: Phoenix Contact GmbH & Co. KG Address: Flachsmarktstraße 8 D-32825 Blomberg Phone: +49 5235 3-43748 Fax: +4952353-4L470 E-Mail: [email protected]: /" s -/2-os Date
Local Representative Letter For Certification Service in the USA Federal Communications Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 To whom it may concern Pursuant to Section 2.911(d)(7), of the Commission's Rules (47 CFR.) we attest as follows for the product listed below FCCID Model name YG32000B NEARFI 2000 B We hereby acknowledge as follows: i. both signees confirm that the point of contact accepts responsibility to act as a US- American Representative on behalf of the applicant ii. the point of contact provides the physical U.S address and email as listed below iii. both parties maintain the requirements of this agreement 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. US-American Point of Contact Applicant/ Approval Holder Signature Company Name: Phoenix Contact USA FRN 0022526594 Contact Name: Thomas Olsen Address 586 Fulling Mill Road, Middletown, PA 17057 Phone: +1 717-571-4966 Email: [email protected] Signature Phoenix Contact GmbH & Co. KG 0019879626 Florian Dinger Flachsmarktstrasse 8 32825 Blomberg Germany i"noonix Contact GmbH & Co. KG FlachsmarktstraBe 8 D-32825 Blomberg +49 5235 3-43748 [email protected]
External EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision:00 Date of issue: 19.04.2024Order Number: 23-111971page 1 of 5 NEARFI 2000 B, 3-D-view 1 External EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision:00 Date of issue: 19.04.2024Order Number: 23-111971page 2 of 5 NEARFI 2000 B, 3-D-view 2 (DIN rail holder removed) External EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision:00 Date of issue: 19.04.2024Order Number: 23-111971page 3 of 5 NEARFI 2000 B, 3-D-view 3 External EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision:00 Date of issue: 19.04.2024Order Number: 23-111971page 4 of 5 NEARFI 2000 B, connector view External EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision:00 Date of issue: 19.04.2024Order Number: 23-111971page 5 of 5 NEARFI 2000 B, type plate view
Art. No.Article Name 1433041 NEARFI 2000 B Label and Label-Location 1 Label 2 Location
Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 1 of 14 NEARFI 2000 B, internal view 1, housing opened Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 2 of 14 NEARFI 2000 B, internal view 2, shielding removed Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 3 of 14 NEARFI 2000 B, internal view 3, RF-PCB removed Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 4 of 14 NEARFI 2000 B, internal view 4, data PCB removed Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 5 of 14 NEARFI 2000 B, internal view 5, dummy PCB removed Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 6 of 14 NEARFI 2000 B, internal view 6, interface PCB removed Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 7 of 14 NEARFI 2000 B, RF-PCB, top view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 8 of 14 NEARFI 2000 B, RF-PCB, bottom view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 9 of 14 NEARFI 2000 B, data PCB, top view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 10 of 14 NEARFI 2000 B, data PCB, bottom view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 11 of 14 NEARFI 2000 B, dummy PCB, top view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 12 of 14 NEARFI 2000 B, dummy PCB, bottom view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 13 of 14 NEARFI 2000 B, interface PCB, top view Internal EUT photos NEARFI 2000 B Examiner:Thomas KÜHNRevision: 00 Date of issue: 19.04.2024Order Number: 23-111971page 14 of 14 NEARFI 2000 B, interface PCB, bottom view
Calculation: RF-Exposure for 57 GHz – 71 GHz transmitter Type identification: NEARFI 2000 B In accordance to theCFR Part 47, §1.1310and RSS-102 Issue 5 S: Limit for power density according to - CFR Part 47, §1.1310:10 W/m 2 - RSS-102 Issue 5, Table 4: 10 W/m 2 P meas : 0.000240 W (average value, refer clause 5.3 of test report F231971E2) P nom : 10 mW (rated max. rf-output power) G: Not applicable, the above-mentioned power it an EIRP value D: 1, the EUT has a 100 % duty cycle. R: Distance in what the limit of S has to be reached: 0.3 m. 푆 푚푒푎푠 = 푃 푚푒푎푠 ⋅퐺 ⋅퐷 4⋅휋⋅푅 2 ⇒ 푆= 0.000240푊 4⋅휋⋅(0.3푚) 2 = 0.000212 푊 푚 2 푆 푛표푚 = 푃 푛표푚 ⋅퐺 ⋅퐷 4⋅휋⋅푅 2 ⇒ 푆= 0.01푊 4⋅휋⋅(0.3푚) 2 = 0.008842 푊 푚 2 The value of the power density is below the limit of CFR Part 47, §1.1310 for the “General population / Uncontrolled Exposure” and below the limit of RSS-102 Issue 5, Table 4 “General Public (uncontrolled environment)”. Base of the above calculations is the average EIRP level of the EUT.
Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 1 of 8 A.1 Operating bandwidth 231971_103.png: Operating bandwidth (-6dB): A.2 99 % bandwidth 231971_101.png: 99 % bandwidth: Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 2 of 8 A.3 Fundamental emission (eirp) 231971_107.png: Peak transmission power / peak power density inside the 57 to 71 GHz band: 231971_106.png: Average power: Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 3 of 8 A.4 Unwanted emissions Spurious emissions from 9 kHz to 30 MHz: Measured in 3 m distance (calculated to the normative distance with 40 dB/decade according to 15.31 (f)(2)) Spurious emissions from 30 MHz to 1 GHz: Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 4 of 8 Spurious emissions from 1 GHz to 12 GHz: Spurious emissions from 12 GHz to 18 GHz: 0 20 40 60 80 100 1 2 3 4 5 6 7 8 9 10 11 12 Level in dBμV/m Frequency in GHz Preview Result 1-P K+§15.209 & RSS-GEN 1-40 GHz P k 3m co nt. §15.209 & RSS-GEN 1-40 GHz AV 3m co nt. §15.209 & RSS-GEN 1-40 GHz P k 3m co nt. §15.209 & RSS-GEN 1-40 GHz A V 3m co nt. 0 10 20 30 40 50 60 70 80 12131415161718 Level in dBμV/m Frequency in GHz Preview Result 1-P K+§15.209 & RSS-GEN 1-40 GHz P k 3m co nt. §15.209 & RSS-GEN 1-40 GHz AV 3m co nt. §15.209 & RSS-GEN 1-40 GHz P k 3m co nt. §15.209 & RSS-GEN 1-40 GHz A V 3m cont. Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 5 of 8 Spurious emissions from 18 GHz to 26.5 GHz: Spurious emissions from 26.5 GHz to 40 GHz: 0 10 20 30 40 50 60 70 80 18192021222324252626.5 Level in dBμV/m Frequency in GHz Preview Result 1-P K+§15.209 & RSS-GEN 1-40 GHz P k 3m co nt. §15.209 & RSS-GEN 1-40 GHz AV 3m co nt. §15.209 & RSS-GEN 1-40 GHz P k 3m c o nt . §15.209 & RSS-GEN 1-40 GHz A V 3m c o nt . 10 20 30 40 50 60 70 80 90 26.528303234363840 Lev el in dBμV/m Frequency in GHz Preview Result 1-P K+ Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 6 of 8 231971_113.png: Spurious emissions from 40 GHz to 50 GHz: 231971_109.png: Spurious emissions from 50 GHz to 75 GHz: Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 7 of 8 231971_110.png: Spurious emissions from 75 GHz to 110 GHz: 231971_111.png: Spurious emissions from 110 GHz to 170 GHz: Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number:23-111971page 8 of 8 231971_112.png: Spurious emissions from 170 GHz to 200 GHz: A.5 Conducted emissions on power supply line Conducted emissions on power supply line: 0 20 40 60 80 150k300 400 500 800 1M2M3M4M 5M 6 8 10M20M30M Level in dBμV Frequency in Hz Preview Result 2-A VGP review Result 1-P K+FCC 15.207 V QP FCC 15.207 V AVFinal_Result QP KFinal_Result A VG
Königswinkel 10 32825 Blomberg, Germany Phone: +49 (0) 52 35 / 95 00-0 Fax: +49 (0) 52 35 / 95 00-10 [email protected] www.phoenix-testlab.de Test Report Report Number: F231971E2 Equipment under Test (EUT): NEARFI 2000 B Applicant: PHOENIX CONTACT Electronics GmbH Manufacturer: PHOENIX CONTACT GmbH & Co.KG Examiner: Thomas KÜHN Report Number: F231971E2 Date of Issue: 19.04.2024 Order Number: 23-111971 Page 2 of 33 References [1] ANSI C63.10-2020, American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices [2] FCC CFR 47 Part 15, Radio Frequency Devices [3] RSS-210 Issue 10 December 2019, Licence-Exempt Radio Apparatus: Category I Equipment [4] RSS-Gen Issue 5 February 2021 Amendment 2, General Requirements for Compliance of Radio Apparatus Test Result The requirements of the tests performed as shown in the overview (clause 4) were fulfilled by the equipment under test. The complete test results are presented in the following. “Passed” indicates that the equipment under test conforms with the relevant limits of the testing standard without taking any measurement uncertainty into account as stated in clause 1.4 of ANSI C63.10 (2020). However, the measurement uncertainty is calculated and shown in this test report. Tested and written by: Signature Reviewed and approved by: Signature T h i s t e s t r e p o r t i s o n l y v a l i d i n i t s o r i g i n a l f o r m. Any reproduction of its contents in extracts without written permission of the accredited test laboratory PHOENIX TESTLAB GmbH is prohibited. The test results herein refer only to the tested sample. PHOENIX TESTLAB GmbH is not responsible for any generalisations or conclusions drawn from these test results concerning further samples. Any modification of the tested samples is prohibited and leads to the invalidity of this test report. Each page necessarily contains the PHOENIX TESTLAB Logo and the TEST REPORT NUMBER. Examiner: Thomas KÜHN Report Number: F231971E2 Date of Issue: 19.04.2024 Order Number: 23-111971 Page 3 of 33 Contents: Page 1.1 Applicant ................................................................................................................................................... 5 1.2 Manufacturer ............................................................................................................................................ 5 1.3 Test Laboratory ........................................................................................................................................ 5 1.4 EUT (Equipment under Test) ................................................................................................................... 6 1.5 Technical Data of Equipment ................................................................................................................... 6 1.6 Dates ........................................................................................................................................................ 7 5.1 Test setups ............................................................................................................................................... 9 5.1.1 Radiated: 9 kHz to 30 MHz .............................................................................................................. 9 5.1.1.1 Preliminary measurement 9 kHz to 30 MHz ........................................................................... 9 5.1.1.2 Final measurement 9 kHz to 30 MHz ................................................................................... 10 5.1.2 Radiated: 30 MHz to 1 GHz ........................................................................................................... 11 5.1.2.1 Preliminary and final measurement 30 MHz to 1 GHz ......................................................... 11 5.1.3 Radiated: 1 GHz to 40 GHz ........................................................................................................... 13 5.1.3.1 Preliminary and final measurement 1 GHz to 40 GHz .......................................................... 13 5.1.4 Radiated: 40 GHz to 200 GHz ....................................................................................................... 15 5.1.4.1 Preliminary and final measurement 40 GHz to 200 GHz ...................................................... 15 5.1.5 Frequency stability ......................................................................................................................... 17 5.1.5.1 Method of measurement (frequency stability)....................................................................... 17 5.1.6 Conducted emission: AC power line ............................................................................................. 18 5.2 Fundamental emissions bandwidth ........................................................................................................ 19 5.2.1 Test setup (Fundamental emission bandwidth) ............................................................................. 19 5.2.2 Test method (-6 dB bandwidth) ..................................................................................................... 19 5.2.3 Test method (99 % bandwidth) ...................................................................................................... 19 5.2.4 Test results (fundamental emission bandwidth) ............................................................................ 20 5.3 Fundamental emission ........................................................................................................................... 21 5.3.1 Test setup (Fundamental emission) .............................................................................................. 21 5.3.2 Test method (peak emission) ........................................................................................................ 21 5.3.3 Test results (fundamental emission).......................................................…
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Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 1 of 12 Test setup semi anechoic chamber (position 1) Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 2 of 12 Test setup semi anechoic chamber (position 2) Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 3 of 12 Test setup semi anechoic chamber (position 3) Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 4 of 12 Test setup semi anechoic chamber <30 MHz Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 5 of 12 Test setup semi anechoic chamber <1 GHz Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 6 of 12 Test setup fully anechoic chamber >1 GHz Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 7 of 12 Test setup fully anechoic chamber <12 GHz Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 8 of 12 Test setup fully anechoic chamber <40 GHz Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 9 of 12 Test setup >40 GHz Annex B Test setup photos Examiner:Thomas KÜHNReport Number: F231971E2 Date of issue: 19.04.2024Order Number: 23-110971page 10 of 12 Test temperature chamber (with isolation) Annex B Test setup photos Examiner:Thomas KÜHNReport…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 57.00 GHz - 71.00 GHz | 2.00 mW |

Ultra Short Range Communication Device (USRD)
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Wireless Power Transfer
Equipment Class
JAB - Part 15 Class B Digital Device
Wireless Power Transfer
Equipment Class
8CC - Part 18 Consumer Device
Wireless Power Transfer
Equipment Class
JAB - Part 15 Class B Digital Device
Wireless Power Transfer
Equipment Class
8CC - Part 18 Consumer Device