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YG3200BWireless Power Transfer

Phoenix Contact GmbH & Co. KG
Wireless Power Transfer - FCC ID YG3200B - Phoenix Contact GmbH & Co. KG
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Application Details

Equipment Class
8CC - Part 18 Consumer Device
Date of Grant
May 03, 2026
Application Purpose
Original Equipment
Equipment Note
Wireless Power Transfer
Frequency Range
0.11000000 - 0.14800000
Company
Phoenix Contact GmbH & Co. KG
Country
Germany

Documents & Files

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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

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 110718_en_02 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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Users Manual

NEARFI 18 / 102Phoenix Contact 110718_en_02 4.1Functional principle NearFi couplers transmit power and real-time Ethernet data contactless across an air gap of just a few centimeters. For contactless transmission, you will need at least two devices: –One base coupler –One or more remote couplers You can combine as many remote couplers with a base coupler as you like, and vice versa. Power transmission The base coupler transmits the power inductively to the remote coupler. The NearFi couplers transmit 50W without contact. The base coupler tries to connect to the remote coupler by means of active power polling. Power transmission between the base and remote couplers only becomes active once the connection has been estab- lished. The 24-V output voltage is kept at an output current of 2A by an active closed-loop con- trol circuit until the maximum transmission distance is reached. Data transmission Data is transmitted with two 60GHz connections in parallel (one uplink and one down- link). Separate frequency bands are used to enable full duplex mode. NearFi enables con- tactless communication in real time and is completely independent of protocols. Figure4-1Contactless transmission between a controller and a distributed I/O de- vice with Ethernet interface Product description 110718_en_02Phoenix Contact19 / 102 4.2Installation examples 4.2.1Twice the power using parallel connection Communications power and sensor supply, 100W If you connect two device pairs in parallel, you can double the transmitted power from 50 W to 100W. With the automatic current equalization, the NEARFI200R remote cou- pler ensures a regulated output voltage of 24V DC, 4A. Figure4-2Transmission of data and power (US) TRIO DC-UP S Ord. No.2907161 Bat.-Mode Bat.-Charge Alarm P>Pn DC OK 24-28V 1 2 3 5 15 Service PC-Mode Custom (Default 0.5) 10 t max [min] + 2.1 + 2.2 – 2.3 – 2.4 – 2.5 Output DC 24V 10A 3.1 3.2 3.3 3.4 3.5 3.6 3.7 DC OK Alarm Bat.-Mode Ready Remote Bat.-Start SGnd Input AC 100-240V L/+ 1.1 N/– 1.2 1.3 – 4.2 + 4.1 Battery 24V ETH1ETH2 X21X22 PWR INPWR OUT X31X32 X01X02 X03X04 X05X06 X07X08 Power (US) Ethernet Power (US) Table4-1Devices used in Figure4-2 DesignationItem number NEARFI2200B1433050 NEARFI2200R1433049 NEARFI200B1433047 NEARFI200R1433046 NEARFI 20 / 102Phoenix Contact 110718_en_02 Communications power and sensor supply, 50W, and actuator supply, 50W If you connect the NEARFI2200 and NEARFI300 device pairs in parallel, you can trans- mit two electrically isolated voltages of 50W each: –Communications power and sensor supply, US –Actuator supply, UA The NearFi couplers are supplied with power and data from the field. Upstream safety de- vices ensure safe shutdown of the UA voltage. Figure4-3Transmission of data and power (US, UA) ETH1ETH2 X21X22 PWR INPWR OUT X31X32 X01X02 X03X04 X05X06 X07X08 Power (UA) Power (UA) Power (US) Ethernet Power (US) Table4-2Devices used in Figure4-3 DesignationItem number NEARFI2200B1433050 NEARFI2200R1433049 NEARFI300B1464614 NEARFI300R1509989

Users Manual

Product description 110718_en_02Phoenix Contact21 / 102 4.2.21:n transmission You can combine as many remote couplers with a base coupler as you like, and vice versa. Example: tool change The base coupler is typically mounted on the robot arm. Each tool (number n) gets a remote coupler. As soon as a remote coupler comes into the vicinity of the base coupler, the connection is established automatically. Addressing is not required, as only one remote coupler and one base coupler are facing each other at a time. Figure4-4Tool change on an industrial robot

Users Manual

NEARFI 22 / 102Phoenix Contact 110718_en_02 4.2.3Fields of application In automation, power and data are mostly transmitted via connectors. Connectors that have to be frequently unplugged and plugged in again have a limited service life. Their contacts become misshapen and worn. This leads to unplanned and unforeseeable pro- duction stoppages and regular maintenance intervals. Contactless real-time communica- tion systems can provide a solution. Robot tool change In maintenance-intensive applications, such as tool changes on robots, you can easily re- place wear-prone and maintenance-intensive connections with NearFi couplers, thus minimizing downtime costs. Material transport systems Communicate without contact between workpiece carriers and processing stations with NearFi couplers. Replace slip rings on turntables and rotary tables with wear-free cou- plers. Automated guided vehicle systems (AGVS/AGV) Install NearFi couplers quickly and easily on your automated guided vehicle system (AGVS) and transmit Ethernet data between charging stations and AGVs without contact. Rotating applications Use the NearFi couplers as a replacement for slip rings and transmit Ethernet data in real time without the need for contact. Product description 110718_en_02Phoenix Contact23 / 102 4.2.4Operating modes When it comes to supplying external devices, a distinction is made between two voltages: –US: Communications power and sensor supply –UA: Actuator supply To supply other devices, the NearFi couplers forward the voltages. Power supply US The power supply US supplies the communications power of the device electronics as well as the sensors. •Connect this supply voltage to each NearFi base coupler. The device will not work if the voltage is not present. •Install the power supply for the device electronics independently of the voltage sup- ply for the actuators. •Protect the power supplies independently. In this way, the network can continue to run, even if some I/O devices are switched off. Power supply UA The power supply UA supplies the actuators. NEARFI 24 / 102Phoenix Contact 110718_en_02 4.2.5Power and data transmission Stand-alone operation, Ethernet 100Mbps, US 50W In addition to the real-time Ethernet data, the NEARFI2200B base coupler transmits the voltage (US) to the NEARFI2200R remote coupler without contact. 50 W (24V DC/2A) are available at output X1 (power OUT) of the remote coupler. Figure4-5Stand-alone operation, Ethernet 100Mbps, US 50W NOTE:Device damage Never apply voltage to the output X1 (power OUT) of the remote coupler. Ethernet Power US +24 V DC +24 V DC Ethernet NEARFI 2200 BNEARFI 2200 R Base Remote Ethernet Product description 110718_en_02Phoenix Contact25 / 102 Parallel operation, Ethernet 100Mbps, US 100W –In addition to the real-time Ethernet data, the NEARFI2200B base coupler trans- mits voltage1 (US) to the NEARFI2200R remote coupler without contact. –The NEARFI200B base coupler transmits voltage2 (US) to the NEARFI200R remote coupler without contact. –With parallel connection, the following power is available at the NEARFI200R remote coupler, output X1 (power OUT): –100W (24V DC/4A) Figure4-6Parallel operation, Ethernet 100Mbps, US 100W NOTE:Device damage Never apply voltage to the output X1 (power OUT) of the remote coupler. Ethernet Power (US) Ethernet NEARFI 2200 BNEARFI 2200 R Base Remote Ethernet Power (US) NEARFI 200 BNEARFI 200 R US-2AUS-2A US/4A US/4A NEARFI 26 / 102Phoenix Contact 110718_en_02 Parallel operation, US 50W and UA 50W –In addition to the real-time Ethernet data, the NEARFI2200B base coupler trans- mits voltage1 (US) to the NEARFI2200R remote coupler without contact. –The NEARFI300B base coupler transmits voltage2 (UA) to the NEARFI300R remote coupler without contact. –With parallel connection, two electrically isolated voltages are available at the NEARFI300R remote coupler, output X1 (power OUT): –Communications voltage US: 50W (24V DC/2A) –Actuator voltage UA: 50W (24V DC/2A) Figure4-7Parallel operation, US 50W and UA 50W NOTE:Device damage Never apply voltage to the output X1 (power OUT) of the remote coupler. Ethernet Power (US) Ethernet NEARFI 2200 BNEARFI 2200 R Base Remote Ethernet Power (UA) NEARFI 300 BNEARFI 300 R US-2AUS-2A US/UA-2A US/UA-2A Product description 110718_en_02Phoenix Contact27 / 102 Figure4-8Parallel operation, US 50W and UA 50W, detailed view with pin assign- ment NOTE:Device damage Never apply voltage to the output X1 (power OUT) of the remote coupler. Power (UA) Power (UA) Power (US) Ethernet Power (US) 1 3 2 4 F 1 3 2 4 F 1 3 2 4 F NEARFI 28 / 102Phoenix Contact 110718_en_02 4.2.6Power transmission Stand-alone operation, US 50W –The NEARFI200B base coupler transmits the communications and sensor voltage (US) to the NEARFI200R remote coupler without contact. –The following power is available at output X1 (power OUT) of the remote coupler: –50 W (24V DC/2A) Figure4-9Stand-alone operation, US 50W NOTE:Device damage Never apply voltage to the output X1 (power OUT) of the remote coupler. Base Remote NEARFI 200 BNEARFI 200 R Power (US) US/2A US/2A Product description 110718_en_02Phoenix Contact29 / 102 Stand-alone operation, UA 50W –The NEARFI300B base coupler transmits the actuator voltage (UA) to the NEARFI300R remote coupler without contact. –The following power is available at output X1 (power OUT) of the remote coupler: –50 W (24V DC/2A) Figure4-10Stand-alone operation, UA 50W NOTE:Device damage Never apply voltage to the output X1 (power OUT) of the remote coupler. Base Remote NEARFI 300 BNEARFI 300 R Power (UA) UA/2A UA/2A NEARFI 30 / 102Phoenix Contact 110718_en_02 Parallel operation, US 100W –The NEARFI200B base coupler transmits voltage1 (US) to the NEARFI200R remote coupler without contact. –The NEARFI200B base coupler transmits voltage2 (US) to the NEARFI200R remote coupler without contact. –With parallel connection, the following power is available at the NEARFI200R remote coupler, output X1 (power OUT): –100W (24V …

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Attestation Statements

Covered Equipment 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 YG32OOB NEARFI 2OO 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, ,'/.j.o_- Signature Phoenlx Gontaot GmbH & Co. KO FlachsmarktstraĂźe 8 D'32825 Blomberg Printed Name of Signee: Dinger Florian Company: Phoenix Contact GmbH & Co. KG Address: FlachsmarktstraĂźe 8 D-32825 Blomberg Phone: +4952353-43748 Fax: +4952353-4t4t1 E-Mail: [email protected] Zo2S -,rZ -05 Date

Attestation Statements

Local Representative Letter For Certification Service in the USA Federal Communications Commission Equipment Authorization Division, Application Prncessing 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 C.F.R.) we attest as follows for the product listed below: FCCID YG3200B I Model name We hereby acknowledge as follows NEARFI 200 B 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 /~~{7&6 IJ./0~;),!J- Signature Company Name: Phoenix Contact USA FRN: 0022526594 Contact Name: Thomas Olsen Address: 586 Fulling Mill Road, Middletown, PA 17057 Phone: +l 717-571-4966 Email: [email protected] Phoenix Contact GmbH & Co. KG 0019879626 Florian Dinger Flachsmarktstrasse 8 32825 Blomberg Germany Phoenix Contact GmbH & Co. KG Flachsmarktstraf3e 8 D-32825 Blomberg +49 5235 3-43748 [email protected]

Cover Letter(s)

PHOENIX CONTACT GmbH & Co. KG • Flachsmarktstraße 8 • 32825 Blomberg • Germany1/4 Phone: +49-(0) 5235-3-00 • Fax: +49-(0) 5235-3-4 12 00 • www.phoenixcontact.com PHOENIX CONTACT Electronics GmbH Dringenauer Straße 30 31812 Bad Pyrmont, Germany Article variant declaration for: Art. No.Article NameType of CouplerRemark 1433047NEARFI 200 BBasetested 1433046NEARFI 200 RRemote 1464614NEARFI 300 BBaseVariant of NEARFI 200 B 1509989NEARFI 300 RRemoteVariant of NEARFI 200R Declaration of article variants and combining them into systems NEARFI 200 B and NEARFI 200 R The NearFi couplers are transmitting power contact-free over an air gap of a few centimeters. For contactless transmission at least two devices are needed: a base coupler and a remote coupler. The power transmission is a unidirectional transmission from the base coupler (power transmitter) to the remote coupler (power receiver). Devices under Test in a system: Coupler typeModel NameArt.-No. BaseNEARFI 200 B1433047 RemoteNEARFI 200 R1433046 PHOENIX CONTACT GmbH & Co. KG • Flachsmarktstraße 8 • 32825 Blomberg • Germany2/4 Phone: +49-(0) 5235-3-00 • Fax: +49-(0) 5235-3-4 12 00 • www.phoenixcontact.com Variant of NEARFI 200 B: Model NameArt.-No. Device under test NEARFI 200 B1433047 VariantNEARFI 300 B1464614 Difference between Device under Test and Variant The base couplers differ in pinout of X1 of the supply voltage and the voltage which is made available at X2 on the interface PCB (see Block diagram). In one case UA is transmitted, in the other case US is transmitted. The technical specifications of US and UA are identical. The wireless power transmission and all other circuit parts are identical. According to use of radio spectrum in order to avoid harmful interference, the coupler NEARFI 300 B can be regarded as a variant of NEARFI 200 B, and does not need to be measured separately, again. PHOENIX CONTACT GmbH & Co. KG • Flachsmarktstraße 8 • 32825 Blomberg • Germany3/4 Phone: +49-(0) 5235-3-00 • Fax: +49-(0) 5235-3-4 12 00 • www.phoenixcontact.com Variant of NEARFI 200 R: Model NameArt.-No. Device under test NEARFI 200 R1433046 VariantNEARFI 300 R1509989 Difference between Device under Test and Variant The difference of the remote coupler is a balancer circuit in the NEARFI 200 R. With the help of the balancer, it is possible to connect another voltage source to port X2 (US) and thus double the total power output at X1 (US). The maximum power that can be transmitted via the wireless power transfer (WPT) is limited to 50W and this is the same for both couplers NEARFI 200 R and NEARFI 300 R. In the coupler NEARFI 300 R, the balancer circuit is not assembled (same printed circuit board) and the external voltage which is fed to socket X2 (US) is made available directly on separate pins on X1 (US). The transmitted voltage from the wireless power transfer is made available at connector X1 as UA. The two voltages are available on separate pins and are not combined as with the NEARFI 200 R. Due to the reduced circuit in the DC part of the NEARFI 300 R, and the consideration according to use of radio spectrum in order to avoid harmful interference, the coupler NEARFI 300 R can be regarded as a variant of NEARFI 200 B, and does not need to be measured separately, again. PHOENIX CONTACT GmbH & Co. KG • Flachsmarktstraße 8 • 32825 Blomberg • Germany4/4 Phone: +49-(0) 5235-3-00 • Fax: +49-(0) 5235-3-4 12 00 • www.phoenixcontact.com Bad Pyrmont, 18 September 2025 Maik Stemme

Cover Letter(s)

Letter of declaration KD86801-06 requirement Federal Communications Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 Date: 1l--03-2025 FCC lD: YG3200B Model Number: NEARFI 200 B To Whom lt May Concern, We, Phoenix Contact GmbH & Co. KG, hereby declare that our product (as above) meet item 5.2 of KDB 6801"06v03r01 as follow: Requirements of KDB 680106 001 Yes/ NoDescription Power transfer frequency is less than 1 MHz YES l-1"0 kHz - 148 kHz The output power from each transmitting element (e.g., coil) is less than or equal to 15 watts. NO Energy transfer: 50w A client device providing the maximum permitted load is placed in physical contact with the transmitter (i.e., the surfaces of the transmitter and client device enclosures need to be in physical contact) NO Max distance between Tx<>Rx 10mm Only 5 2.1091- Mobile exposure conditions apply (i.e., this provision does not cover 52.1-093-Portable exposure cond itions). Fixt The E-field and H-field strengths, at and beyond 20 cm surrounding the device surface, are demonstrated to be less than 50% of the applicable MPE limit, per KDB 447498, Table 1. These measurements shall be taken along the principal axes of the device, with one axis oriented along the direction of the estimated maximum field strength, and for three points per axis or until a J./d (inverse distance from the emitter structure) field strength decay is observed. Symmetry considerations may be used for test reduction purposes. The device shall be operated in documented worst-case compliance scenarios (i.e., the ones that lead to the maximum field components), and while all the radiating structures (e.g., coils or antennas) that by design can simultaneously transmit are energized at their nominal maximum power. TBD H Filed: t,I3 Alm at lLcm Distance E Field: 0,767V/m at Llcm Distance For systems with more than one radiating structure, the conditions specified in (5) must be met when the system is fully loaded (i.e., clients absorbing maximum power available), and with all the radiating structures operating at maximum power at the same time, as per design One Tx Coil 4l¿ conditions. lf the design allows one or more radiating structures to be powered at a higher level while other radiating structures are not powered, then those cases must be tested as well. For instance, a device may use three RF coils powered at 5 W, or one coil powered at 1-5 W: in this case, both scenarios shall be tested Please do not hesitate to contact us for further explanat¡ons or comments. Sincerely, f- ;VTJ- Signature Phoenlx Gontact GmbH & Co. KG Flachsmarktstraße I D-32825 Blomber0 Printed Name of Signee: Dinger Florian Company: Phoenix Contact GmbH & Co. KG Address: Flachsmarktstraße 8 D-32825 Blomberg Phone: +4952353-43748 Fax: +4952353-4L4tO E-Mail fdinserlAnhoe ct.comEmail Zo2S-,/2-05 Date ¿/¿

External Photos

Art. No.Article Name 1433047NEARFI 200 B Photographs 1 Housing 2 Components parts 3PCBs Balancer PCB Top Balancer PCB Bottom Energy PCB Top Energy PCB Bottom Interface PCB Top Interface PCB Bottom

ID Label/Location Info

Art. No.Article Name 1433047NEARFI 200 B Label and Label-Location 1 Label 2 Location

Internal Photos

Art. No.Article Name 1433047NEARFI 200 B Photographs 1 Housing 2 Components parts 3PCBs Balancer PCB Top Balancer PCB Bottom Energy PCB Top Energy PCB Bottom Interface PCB Top Interface PCB Bottom

RF Exposure Info

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: F231975E5 Equipment under Test (EUT): NEARFI 200 B Applicant: PHOENIX CONTACT Electronics GmbH Manufacturer: PHOENIX CONTACT GmbH & Co.KG Examiner: Thomas KĂśHN Report Number: F231975E5 Date of Issue: 22.11.2024 Order Number: 23-111975 Page 2 of 19 References [1] CFR 47 Rule part 1 Practice and Procedure [2] CFR 47 Rule part 2 Frequency Allocations and Radio Treaty Matters; General Rules and Regulations [3] KDB 447498 D04 Interim General RF Exposure Guidance v01 [4] KDB 680106 D01 Wireless Power Transfer v04 Test Result The requirements of the tests performed as shown in the results (clause 3) 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. However, the measurement uncertainty is calculated and shown in this test report. 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. Tested and written by: Signature Reviewed and approved by: Signature Examiner: Thomas KĂśHN Report Number: F231975E5 Date of Issue: 22.11.2024 Order Number: 23-111975 Page 3 of 19 Contents: Page Identification ................................................................................................................................. 4 1.1 Applicant ................................................................................................................................................... 4 1.2 Manufacturer ............................................................................................................................................ 4 1.3 Test Laboratory ........................................................................................................................................ 4 1.4 EUT (Equipment under Test) ................................................................................................................... 5 1.5 Technical data of equipment .................................................................................................................... 5 1.6 Dates ........................................................................................................................................................ 6 Operational States ........................................................................................................................ 7 Evaluation method ........................................................................................................................ 8 3.1 RF exposure test exemptions for single sources ..................................................................................... 8 3.1.1 General Exemption CFR 47 §1.1307(b)(3)(i)(A) ............................................................................. 8 3.1.2 SAR Based Exemption CFR 47 §1.1307(b)(3)(i)(B) ........................................................................ 8 3.1.3 MPE Based Exemption CFR 47 §1.1307(b)(3)(i)(C) ....................................................................... 8 3.1.4 Stand alone MPE evaluation limits .................................................................................................. 9 3.2 RF exposure test exemptions for simultaneous transmission sources .................................................. 10 3.2.1 1 mW Test Exemption for simultaneous transmission sources ..................................................... 10 3.2.2 Simultaneous transmission SAR based and MPE based test exemptions ................................... 10 3.2.3 Test exemption based on the SAR to Peak Location Separation Ratio ........................................ 11 Results of evaluation ................................................................................................................... 12 4.1 Used evaluation methods ....................................................................................................................... 12 4.2 Evaluation Distance .........................................................…

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Contact Information

Applicant

Dinger Florian(Director Product Compliance)
[email protected]Fax: +495235312999

Test Firm

PHOENIX TESTLAB GmbHHolger Bentje
[email protected]Fax: 49-5235-9500-28

Technical Specifications

#Rule PartsFrequency RangePower Output
1180.11 MHz - 0.148 MHz-
Confidentiality
Long Term
Grant Notes
RF exposure compliance is addressed for 1.1310 and 2.1091 MPE limits. Integrators and end users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

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