
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
The device has been evaluated to meet general RF exposure requirement.
Model Difference Declaration To Whom It May Concern, We, Shenzhen Wewo Tech co.,Ltd.(Cotogni P3) Trademark: Model Number: EA08A, EA18A, EA28A, EA38A, EA58A, EA68A, EA78A, EA88A, EA98A ; All model’s the function, software and electric circuit are the same, only with a product color, trade mark and model named different. Test sample model: EA08A. Please contact me if you have any question. Name: Star Liu Date: Jun. 06, 2022 Title: Manager Signature of applicant:
Shenzhen Wewo Tech co.,Ltd. Agent Authorization Company: Shenzhen Wewo Tech co.,Ltd. Address: Unit 608, Building A1, Fuhai Industrial Estate, Fuyong Community, Fuyong Street, Baoan District, Shenzhen, Guangdong, China Product Name: Cotogni P3 Model Number(s): EA08A, EA18A, EA28A, EA38A, EA58A, EA68A, EA78A, EA88A, EA98A Product Description: Cotogni P3 We authorize MiCOM Labs Inc., 575 Boulder Court, Pleasanton, California 94566, USA, to act on our behalf on all matters concerning the certification of above named equipment. We declare that MiCOM Labs Inc. is allowed to forward all information related to the approval and certification of equipment to the regulatory agencies as required and to discuss any issues concerning the approval application. Any and all acts carried out by MiCOM Labs on our behalf shall have the same effect as acts of our own. Signature: Date: Jun. 06, 2022 Name: Star Liu Title: Manager Company: Shenzhen Wewo Tech co.,Ltd.
Shenzhen Wewo Tech co.,Ltd. Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Date: Jun. 06, 2022 Subject; Request for Confidentiality FCC ID: 2AYH6-EA08A To Whom It May Concern, Pursuant to the provisions of the Commission’s rules Title 47 Sections §0.457 and §0.459, we are requesting the Commission to withhold the following attachment(s) as confidential documents from public disclosure indefinitely. These documents contain detailed system and equipment descriptions and are considered as proprietary information in operation of the equipment. The public disclosure of these documents might be harmful to our company and would give competitors an unfair advantage in the market. Schematic Diagram Block Diagram Parts List Operational Description It is our understanding that all measurement test reports, FCC ID label format and correspondence during the certification review process cannot be granted as confidential documents and this information will be available for public review once the grant of equipment authorization is issued. Sincerely, Signature: Name: Star Liu Title: Manager
Annex A External Photos Report No.: HK2205232143-E Page 1 of 4 Report No.: HK2205232143-E Page 2 of 4 Report No.: HK2205232143-E Page 3 of 4 Report No.: HK2205232143-E Page 4 of 4
FCC ID LABEL: Ca. 5mm x 10mm Label Location FCC ID: 2AYH6-EA08A
Annex B Internal Photo Report No.: HK2205232143-E Page 1 of 3 Report No.: HK2205232143-E Page 2 of 3 Antenna Report No.: HK2205232143-E Page 3 of 3
FCC RF Exposure EUT Description: Cotogni P3 Model No.: EA08A FCC ID: 2AYH6-EA08A 1. Limits According to KDB 447498 D04 General RF Exposure Guidance v01 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: Result=P/D*√F F= the RF channel transmit frequency in GHz P=Maximum turn‐up power in mw D=Min. test separation distance in mm 2. Test Result of RF Exposure Evaluation Output power (dBm) Tune Up Power (dBm) Max Tune Up power dBm/mW Min test separati on distance mm ResultLimit SAR Test Exclusion EDR 3.77 3±1(4) 2.51 5 0.7913.0 Pass Note: PK Output power= conducted power. Conducted power see the test report HK2205232143-E, antenna gain=0dBi Per KDB 447498 D04, when the minimum test separation distance is < 5 mm, a distance of 5 mm is applied to determine SAR test exclusion. The test exclusion threshold is 0.791 which is<= 3, SAR testing is not required. Note: Exclusion Thresholds Results=[(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)] ·[√f (GHz)] f(GHz) is the RF channel transmit frequency in GHz Distance=5mm
Page 1 of 52 Report No.: HK2205232143-E TEST REPORT FCC PART 15 SUBPART C 15.247 Test report On Behalf of Shenzhen Wewo Tech co.,Ltd. For Cotogni P3 Model No.: EA08A, EA18A, EA28A, EA38A, EA58A, EA68A, EA78A, EA88A, EA98A FCC ID: 2AYH6-EA08A Prepared For : Shenzhen Wewo Tech co.,Ltd. Unit 608, Building A1, Fuhai Industrial Estate, Fuyong Community, Fuyong Street, Baoan District, Shenzhen, Guangdong, China Prepared By : Shenzhen HUAK Testing Technology Co., Ltd. 1-2/F., Building B2, Junfeng Zhongcheng Zhizao Innovation Park, Heping, Fuhai Street, Bao’an District, Shenzhen, Guangdong, China Date of Test: May. 20, 2022 ~ May. 27, 2022 Date of Report: May. 27, 2022 Report Number: HK2205232143-E Page 2 of 52 Report No.: HK2205232143-E TEST RESULT CERTIFICATION Applicant’s name ....... Shenzhen Wewo Tech co.,Ltd. Address ....................... . Unit 608, Building A1, Fuhai Industrial Estate, Fuyong Community, Fuyong Street, Baoan District, Shenzhen, Guangdong, China Manufacture's Name . . Shenzhen Wewo Tech co.,Ltd. Address ........................ Unit 608, Building A1, Fuhai Industrial Estate, Fuyong Community, Fuyong Street, Baoan District, Shenzhen, Guangdong, China Product description Trade Mark: Product name ................ Cotogni P3 Model and/or type reference ................... . EA08A, EA18A, EA28A, EA38A, EA58A, EA68A, EA78A, EA88A, EA98A Standards ................... . 47 CFR FCC Part 15 Subpart C 15.247 This publication may be reproduced in whole or in part for non-commercial purposes as long as the Shenzhen HUAK Testing Technology Co., Ltd. is acknowledged as copyright owner and source of the material. Shenzhen HUAK Testing Technology Co., Ltd. takes no responsibility for and will not assume liability for damages resulting from the reader's interpretation of the reproduced material due to its placement and context. Date of Test ................................. . Date (s) of performance of tests ... . May. 20, 2022 ~ May. 27, 2022 Date of Issue ................................. May. 27, 2022 Test Result ..................................... Pass Prepared by: Project Engineer Reviewed by: Project Supervisor Approved by: Technical Director Page 3 of 52 Report No.: HK2205232143-E Table of Contents Page 1. SUMMARY............................................................................................................................................................ 5 1.1. TEST STANDARDS ..................................................................................................................................................... 5 1.2. TEST DESCRIPTION ................................................................................................................................................... 5 1.3. INFORMATION OF THE TEST LABORATORY ............................................................................................................. 6 1.4. STATEMENT OF THE MEASUREMENT UNCERTAINTY ............................................................................................... 6 2. GENERAL INFORMATION ....................................................................................................................................... 7 2.1. ENVIRONMENTAL CONDITIONS ............................................................................................................................... 7 2.2. GENERAL DESCRIPTION OF EUT ............................................................................................................................... 7 2.3. DESCRIPTION OF TEST MODES AND TEST FREQUENCY ............................................................................................ 8 2.4. EQUIPMENTS USED DURING THE TEST .................................................................................................................... 9 2.5. RELATED SUBMITTAL(S) / GRANT (S) ........................................................................................................................ 9 2.6. MODIFICATIONS ...................................................................................................................................................... 9 2.7. DESCRIPTION OF TEST SETUP ................................................................................................................................ 10 3. TEST CONDITIONS AND RESULTS ......................................................................................................................... 11 3.1. CONDUCTED EMISSIONS TEST ............................................................................................................................... 11 3.2. RADIATED EMISSIONS AND BAND EDGE ................................................................................................................ 14 3.3. MAXIMUM PEAK CONDUCTED OUTPUT POWER ................................................................................................... 25 3.4. 20DB BANDWIDTH ................................................................................................................................................ 26 3.5. FREQUENCY SEPARATION ...................................................................................................................................... 30 3.6. NUMBER OF HOPPING FREQUENCY ...................................................................................................................... 32 3.7. TIME OF OCCUPANCY (DWELL TIME) ..................................................................................................................... 34 3.8. OUT‐OF‐BAND EMISSIONS ..................................................................................................................................... 38 3.9. PSEUDORANDOM FREQUENCY HOPPING SEQUENCE ........................................................................................... 48 3.10. ANTENNA REQUIREMENT........................................................................…
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Page 31 of 52 Report No.: HK2205232143-E Frequency Separation GFSK π/4DQPSK 8DPSK Page 32 of 52 Report No.: HK2205232143-E 3.6. NUMBER OF HOPPING FREQUENCY Limit Frequency hopping systems in the 2400–2483.5 MHz band shall use at least 15 channels. Test Procedure The transmitter output was connected to the spectrum analyzer through an attenuator. Set spectrum analyzer start 2400MHz to 2483.5MHz. Test Configuration EUT SPECTRUM ANALYZER Test Results Modulation Number of Hopping Channel Limit Result GFSK 79 ≥15 Pass π/4DQPSK 79 8DPSK 79 Test plot as follows: Page 33 of 52 Report No.: HK2205232143-E GFSK Modulation π/4DQPSK Modulation 8DPSK Modulation Page 34 of 52 Report No.: HK2205232143-E 3.7. TIME OF OCCUPANCY (DWELL TIME) Limit The average time of occupancy on any channel shall not be greater than 0.4 seconds within a period of 0.4 seconds multiplied by the number of hopping channels employed. Test Procedure The transmitter output was connected to the spectrum analyzer through an attenuator. Set center frequency of spectrum analyzer=operating frequency with 1MHz RBW and 3MHz VBW, Span 0Hz. Test Configuration EUT SPECTRUM ANALYZER Test Results Modulation Packet Pulse time (ms) Dwell time (second) Limit (second) Result GFSK DH1 0.40 0.128 0.40 PASS DH3 1.66 0.266 DH5 2.91 0.310 π/4DQPSK 2-DH1 0.41 0.131 0.40 PASS 2-DH3 1.67 0.267 2-DH5 2.91 0.310 8DPSK 3-DH1 0.41 0.131 0.40 PASS 3-DH3 1.66 0.266 3-DH5 2.91 0.310 Note: 1. We have tested all mode at high, middle and low channel, and recoreded worst case at middle channel. 2. Dwell time=Pulse time (ms) × (1600 ÷ 2 ÷ 79) ×31.6 Second for DH1, 2-DH1, 3-DH1 Dwell time=Pulse time (ms) × (1600 ÷ 4 ÷ 79) ×31.6 Second for DH3, 2-DH3, 3-DH3 Dwell time=Pulse time (ms) × (1600 ÷ 6 ÷ 79) ×31.6 Second for DH5, 2-DH5, 3-DH5 Test plot as follows: Page 35 of 52 Report No.: HK2205232143-E GFSK Modulation DH1 DH3 DH5 Page 36 of 52 Report No.: HK2205232143-E π/4DQPSK Modulation 2-DH1 2-DH3 2-DH5 Page 37 of 52 Report No.: HK2205232143-E 8DPSK Modulation 3-DH1 3-DH3 3-DH5 Page 38 of 52 Report No.: HK2205232143-E 3.8. OUT-OF-BAND EMISSIONS Limit 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 con-ducted or a radiated measurement, pro-vided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter com-plies with the conducted power limits based on the use of RMS averaging over a time interval, as permitted under paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 30 dB instead of 20 dB. Attenuation below the general limits specified in §15.209(a) is not required. In any 100 kHz bandwidth outside the frequency band in which the spread spectrum or digitally modulated device is operating, the RF power that is produced 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, provided that the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies with the conducted power limits based on the use of root-mean-square averaging over a time interval, as permitted under Section 5.4(4), the attenuation required shall be 30 dB instead of 20 dB. Attenuation below the general field strength limits specified in RSS-Gen is not required. Test Procedure Connect the transmitter output to spectrum analyzer using a low loss RF cable, and set the spectrum analyzer to RBW=100 kHz, VBW= 300 kHz, peak detector , and max hold. Measurements utilizing these setting are made of the in-band reference level, band edge and out-of-band emissions. Test Configuration EUT SPECTRUM ANALYZER Test Results Remark: The measurement frequency range is from 30MHz to the 10th harmonic of the fundamental frequency. The lowest, middle and highest channels are tested to verify the spurious emissions and bandage measurement data. We measured all conditions (DH1, DH3, DH5) and recorded worst case at DH5, 2DH5 and 3DH5. Test plot as follows: Page 39 of 52 Report No.: HK2205232143-E GFSK CH00 CH39 Page 40 of 52 Report No.: HK2205232143-E CH78 Page 41 of 52 Report No.: HK2205232143-E Left Band edge hoping off Right Band edge hoping off Left Band edge hoping on Right Band edge hoping on Page 42 of 52 Report No.: HK2205232143-E π/4DQPSK CH00 CH39 Page 43 of 52 Report No.: HK2205232143-E CH78 Page 44 of 52 Report No.: HK2205232143-E Left Band edge hoping off Right Band edge hoping off Left Band edge hoping on Right Band edge hoping on Page 45 of 52 Report No.: HK2205232143-E 8DPSK CH00 CH39 Page 46 of 52 Report No.: HK2205232143-E CH78 Page 47 of 52 Report No.: HK2205232143-E Left Band edge hoping off Right Band edge hoping off Left Band edge hoping on Right Band edge hoping on Page 48 of 52 Report No.: HK2205232143-E 3.9. PSEUDORANDOM FREQUENCY HOPPING SEQUENCE TEST APPLICABLE For 47 CFR Part 15C section 15.247 (a) (1): Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 25 kHz or the 20 dB bandwidth of the hop-ping channel, whichever is greater. Alternatively, frequency hopping systems operating in the 2400–2483.5 MHz band may have hopping channel carrier frequencies that are separated by 25 kHz or two-thirds of the 20 dB bandwidth of the hopping channel, whichever is greater, provided the systems operate with an output power no greater than 125 mW. The system shall hop to channel frequencies that are selected at the system hopping rate from a pseudo randomly ordered list of hopping frequencies. Each frequency must be used equally on the average by each transmitter. The system receivers shall have input bandwidt…
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Radiated Emissions Conducted Emission
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 2.38 mW |

Wireless Charger X8
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
Air X6
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Air X8
Equipment Class
DTS - Digital Transmission System
Wireless Charger X6
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
Air X2
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter