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2AME8BD1KBond Bridge Pro

olibra llc
Bond Bridge Pro - FCC ID 2AME8BD1K - olibra llc
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Application Details

Equipment Class
DSR - Part 15 Remote Control/Security Device Transceiver
Date of Grant
Mar 01, 2021
Application Purpose
Original Equipment
Date of Application
Mar 01, 2021
Equipment Note
Bond Bridge Pro
Frequency Range
410.50000000 - 505.50000000
Company
olibra llc
Country
United States

Documents & Files

Select a file to view

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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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

Bond Bridge - User manual for Bond Home application Page 1 Setup (Android) Page2 ***Note*** The Bond Home application requires the Android device to be on version 6 or greater. 1. Make sure that you have a stable and working wireless network. 2. Plug the Bond into an outlet. 3. The Bond center ring light will be white while the Bond is in boot up mode. 4. The Bond center ring light will be flashing green when the Bond is ready to be used. If the Bond light ring is not flashing green, try performing a WiFi (Green) reset. 5.Download the Bond application at 6. Open the Bond Home application. 7. If you already have a Bond account, simply log in and continue to the next step. If you do not have a Bond account, press Create Account and enter your name, email, and a password and click Create Account. 8. Once logged in, click the + sign at the bottom (middle) part of your application screen and choose Bond Bridge. 9. Once you are on the setup screen, select Continue. 10. Select your Bond Config WiFi (Bond serial number) shown under nearby devices. If you are unable to connect to the Bond Config WiFi, please follow the procedure in https://olibra.zendesk.com/hc/en-us/articles/360000320952-bond-bridge-Can-t-Connect- to-BOND-WiFi-Web-user-Interface?product=bond-bridge to manually connect the Bond to your account. 11. Select the network you wish to connect to and enter the network password. If you do not see your network, refresh the list by pulling the list down and releasing it. 1. If connecting to a Hidden network. 1. With Bond Bridges having serial numbers starting with A or B 1. Select OTHER in the WiFi network List 2. Enter the name of the WiFi network 3. The MAC address of the router or access point 4. The password 2. With Bond Bridges having serial numbers starting with Z 1. Select OTHER in the WiFi network List 2. Enter the name of the WiFi network 3. The password 12. Once connected to your network, the Bond center ring light will turn blue. Setup (Android) Page 3 *** Important note *** If the Bond is unable to connect to your WiFi network, the Bond center ring light will turn orange. Please try the following: 1. Make sure you are correctly entering your password. 2. Try a WiFi reset and try the setup process again. 3. Try resetting your WiFi router. 4. Unplug your Bond, wait 30 seconds, and plug it back in. 5. If you are still having issues connecting to WiFi, please contact us at [email protected]. back to top Adding a new device (Android) 1. From the Device screen on the bond home application, click the + sign at the bottom (middle) of the application. 2. Choose Remote Control. Setup (Android) Page 4 3. Choose your Bond. 4. Select Ceiling Fan Setup (Android) Page 5 5. Set Device Name & location. 6. Select Continue. 7. Choose the function/button that best represents the function of your remote to be programmed into the bond – i.e. Power On/Off, Speed, Light, etc. Setup (Android) Page 6 *** Important Note*** If your remote is an IR remote, please select “Advanced Settings”, change Signal Type to IR and click Save. 8. Begin the scanning process on the application by following the on-screen instructions and selecting Start. 9. Aim your remote at the Bond and press the button repeatedly until the Bond center ring light turns green. Please have the remote about 2 feet away from the Bond. Setup (Android) Page 7 10. Once the Bond center ring lights turn blue, you will be asked to choose your remote from a list of remotes that matched the signal. Test them and select the best fit. 11. Select “Use this remote”. 12. Select Done. Setup (iOS) Page 8 *** Important note *** If the bond is unable to connect to your WiFi network, the Bond center ring light will turn orange. Please try the following: 1. Make sure you are correctly entering your password. 2. Try a WiFi reset and try the setup process again. 3. Try resetting your WiFi router. 4. Unplug your Bond, wait 30 seconds, and plug it back in. 5. If you are still having issues connecting to WiFi, please contact us at [email protected]. Adding a New device (iOS) 1. From the “My Devices” screen on the bond home app., click the + sign on the upper right corner of the screen and choose Remote Control. Setup (iOS) Page 9 2. Choose your bond under and select a device type. 3. Once you are on the “About your fan” screen, where you can set the device name & location, then select Continue. 4. Choose the function/button that best represents the function of your remote to be programmed into the bond – i.e. Power On/Off, Speed, Light, etc. Setup (iOS) Page 10 *** Important Note*** If your remote is an IR remote, please select “Advanced”, change Signal Type to IR and click Save. Setup (iOS) Page 11 5. Begin the scanning process on the application by following the on-screen instructions and selecting Start. 6. Aim your remote at the Bond and press the button repeatedly until the bond center ring light turns green. Please have the remote about 2 feet away from the Bond. 7. Once the Bond center ring lights turn blue, you will be asked to choose your remote from a list of remotes that matched the signal. Test them and select the best fit. 8. Select “Use this remote”. 9. Select Done. Page 12 *** Important note *** If you were unable to program your remote please try the following: 1. Try changing the remote batteries. 2. Instead of pressing and holding the function, try pressing the function repeatedly. 3. Get closer (1 foot) or further away (4 feet) from the Bond and try again. 4. Try pointing the remote directly at the Bond front or sides when recording. 1. The front part of the Bond unit is opposite the USB port. 5. Go back to step 4 for choosing a command and try recording a different function. 6. If unsuccessful, power cycle the Bond by unplugging it, and plugging it back in after 30 seconds. 7. If you are still unable to program your remote, please contact us at [email protected]. The BOND only can learn the control signals from rem…

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Attestation Statements

Attestation Letter Signature: Typed or Printed Name: zohar shinar Title: ceo FE DERAL COMM UNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakl and Mills Road Columbia, MD 21046 Dear Sir or Madam: The chip SI4461 installed in our product Bond Bridge Pro (model name:BD-1750-PRO, FCC ID: 2AME8BD1K),which supports frequency range 119MHz‐1050MHz and modulation GFSK,4GFSK,GMSK,FSK,4FSK,MSK and OOK. But for the product, it only activates frequency range 285.5MHz‐321.5MHz,336.0MHz‐364.99MHz,365MHz‐399.5MHz, 410.5MHz‐505.5MHz and GFSK,OOK modulation ,the other frequency and modulation are disabled by using the software. Please contact me if there is need for any additional clarification or information. Best Regards, Sincerely Yours, Company: olibra llc Add: 45 legion dr, CRESSKILL, New Jersey, 07626, United States Tel: 917 5191308 Fax: 9175191308 Email: [email protected] Date: 2020-10-21

Cover Letter(s)

FCC Confidential Authorization Date: 2020-10-21 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: 2AME8BD1K To: whom it may concern, In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, olibra llc hereby requests long-term confidential treatment of information accompanying this application as outlined below: Block Diagram Schematics Operation Description The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely Yours, Signature: Typed or Printed Name: zohar shinar Title: ceo Company: olibra llc Add: 45 legion dr, CRESSKILL, New Jersey, 07626, United States Tel: 917 5191308 Fax: 9175191308 Email: [email protected]

External Photos

EXHIBIT A - EUT EXTERNAL PHOTOGRAPHS

ID Label/Location Info

PRO Electrical Safety | E114411 FCC ID: 2AME8BD1K | IC:24134-BD1K contains FCC ID: 2AC7Z-ESP32WROVERE contains IC: 21098-ESPWROVERE Model: BD-1750-PRO | Input: 5VDC, 1.0A Bond ID: ZPXX12345 | PIN: 1234 Wi-Fi MAC: XXXXXXXXXXXX Ether MAC: XXXXXXXXXXXX EXAMPLE S/N: ZPXX12345 www.bondhome.io EXAMPLE

Internal Photos

EXHIBIT B - EUT INTERNAL PHOTOGRAPHS Antenna 1 Antenna 2 Antenna 3 Antenna 4 RF chip/SI4461 Wi-Fi Antenna

Test Report

FCC PART 15.231 TEST REPORT For olibra llc 45 legion dr, CRESSKILL, New Jersey, 07626, United States FCC ID: 2AME8BD1K Report Type: Original Report Product Type: Bond Bridge Pro Project Engineer: CK Huang Report Number: RSHD201021003-00B Report Date: 2021-01-11 Reviewed By: Oscar Ye EMC Mana ger Prepared By: Bay Area Compliance Laboratories Corp. (Kunshan) No.248 Chenghu Road, Kunshan, Jiangsu province, China Tel: +86-0512-86175000 Fax: +86-0512-88934268 www.baclcorp.com.cn Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 2 of 593 TABLE OF CONTENTS GENERAL INFORMATION ....................................................................................................................................... 3 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) ..................................................................................... 3 OBJECTIVE ................................................................................................................................................................... 3 RELATED SUBMITTAL(S)/GRANT(S) ............................................................................................................................. 3 TEST METHODOLOGY .................................................................................................................................................. 3 MEASUREMENT UNCERTAINTY .................................................................................................................................... 4 TEST FACILITY ............................................................................................................................................................. 4 SYSTEM TEST CONFIGURATION .......................................................................................................................... 5 JUSTIFICATION ............................................................................................................................................................. 5 EUT EXERCISE SOFTWARE .......................................................................................................................................... 5 EQUIPMENT MODIFICATIONS ....................................................................................................................................... 6 SUPPORT EQUIPMENT LIST AND DETAILS .................................................................................................................... 6 EXTERNAL I/O CABLE .................................................................................................................................................. 6 BLOCK DIAGRAM OF TEST SETUP ................................................................................................................................ 7 SUMMARY OF TEST RESULTS ............................................................................................................................. 11 TEST EQUIPMENT LIST ......................................................................................................................................... 12 FCC§15.203 - ANTENNA REQUIREMENT ............................................................................................................ 13 APPLICABLE STANDARD ............................................................................................................................................ 13 ANTENNA CONNECTED CONSTRUCTION .................................................................................................................... 13 FCC §15.207 (A) – AC LINE CONDUCTED EMISSIONS .................................................................................... 14 APPLICABLE STANDARD ............................................................................................................................................ 14 EUT SETUP ................................................................................................................................................................ 14 EMI TEST RECEIVER SETUP ....................................................................................................................................... 14 TEST PROCEDURE ...................................................................................................................................................... 15 FACTOR & OVER LIMIT CALCULATION ...................................................................................................................... 15 TEST RESULTS SUMMARY .......................................................................................................................................... 15 TEST DATA ................................................................................................................................................................ 15 FCC §15.205, §15.209, §15.231 (B) - RADIATED EMISSIONS ............................................................................. 48 APPLICABLE STANDARD ............................................................................................................................................ 48 EUT SETUP ................................................................................................................................................................ 49 EMI TEST RECEIVER SETUP ....................................................................................................................................... 50 TEST PROCEDURE ...................................................................................................................................................... 50 CORRECTED AMPLITUDE & MARGIN CALCULATION ................................................................................................. 50 TEST RESULTS SUMMARY ...............................................................................................…

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Test Report

Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 190 of 593 1GHz-4GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 1G2G3G4G Level in dB μ V/ Frequency in Hz Full Spectrum Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 1140.00 36.96 150 V 88 -18.3 54.00 17.04 1520.00 37.29 150 H 1 -16.3 54.00 16.71 1900.00 40.04 150 V 68 -14.8 58.84 18.80 2280.00 40.27 150 H 323 -13.3 54.00 13.73 2660.00 40.63 150 V 312 -11.7 58.84 18.21 3420.00 41.95 150 H 4 -9.0 58.84 16.89 Note 1: Corrected Factor (dB/m) = Antenna factor (RX) (dB/m) + Cable Loss (dB) – Amplifier Factor (dB) Margin (dB) = Limit (dBμV/m) – Corrected Amplitude (dBμV/m) Note 2: Calculate Average value based on Duty Cycle correction factor: The manufacturer declared that the maximum duty cycle is 20%. Duty Cycle Corrected Factor =20*log(20%) = -13.98dB Average value = Peak value + Duty Cycle Corrected Factor Note 3: If the spurious emissions maximized peak measured value complies with the average limit, it is unnecessary to perform an Average measurement. Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 191 of 593 Middle Channel: 380.0MHz (ANT 2) 30MHz-1GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 30M 5060 80 100M200300400 500 8001G Level in dB μ V/ Frequency in Hz Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 52.43 39.82 100 V 296 -18.0 58.84 19.02 99.71 41.04 100 V 345 -15.0 58.84 17.80 165.92 35.28 100 V 163 -13.0 43.50 8.22 232.85 38.37 100 H 241 -13.7 58.84 20.47 380.00 86.37 100 H 43 -9.1 98.84 12.47 760.00 37.95 100 H 55 -2.1 78.84 40.89 Field Strength of Average Emission Frequency (MHz) Peak Measurement@3m (dBμV/m) Height (cm) Polar (H/V) Duty Cycle Corrected Factor (dB) Corrected Ampitude (dBμV/m) FCC Part 15.231(b)/205/209 Limit (dBμV/m) Margin (dB) 380.00 86.37 100 H -13.98 72.39 78.84 6.45 760.00 37.95 100 H -13.98 23.97 58.84 34.87 Fundamental Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 192 of 593 1GHz-4GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 1G2G3G4G Level in dB μ V/ Frequency in Hz Full Spectrum Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 1070.50 32.66 150 H 327 -18.7 54.00 21.34 1140.00 30.73 150 H 144 -18.3 54.00 23.27 1495.30 36.61 150 V 287 -16.4 54.00 17.39 1520.00 32.60 150 H 317 -16.3 54.00 21.40 1596.70 37.60 150 V 287 -16.0 54.00 16.40 1900.00 31.97 150 H 286 -14.8 58.84 26.87 2280.00 35.84 150 V 84 -13.3 54.00 18.16 2924.80 36.49 150 H 6 -10.4 58.84 22.35 3324.10 37.44 150 V 287 -9.3 58.84 21.40 3702.10 38.60 150 H 276 -8.1 54.00 15.40 Note 1: Corrected Factor (dB/m) = Antenna factor (RX) (dB/m) + Cable Loss (dB) – Amplifier Factor (dB) Margin (dB) = Limit (dBμV/m) – Corrected Amplitude (dBμV/m) Note 2: Calculate Average value based on Duty Cycle correction factor: The manufacturer declared that the maximum duty cycle is 20%. Duty Cycle Corrected Factor =20*log(20%) = -13.98dB Average value = Peak value + Duty Cycle Corrected Factor Note 3: If the spurious emissions maximized peak measured value complies with the average limit, it is unnecessary to perform an Average measurement. Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 193 of 593 Middle Channel: 380.0MHz (ANT 3) 30MHz-1GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 30M 5060 80 100M200300400 500 8001G Level in dB μ V/ Frequency in Hz Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 52.06 39.11 100 V 308 -18.0 58.84 19.73 99.11 41.68 100 V 15 -15.2 58.84 17.16 166.28 35.61 100 V 194 -13.0 43.50 7.89 232.85 37.33 100 H 254 -13.7 58.84 21.51 380.00 86.61 100 H 327 -9.1 98.84 12.23 760.00 38.87 100 H 327 -2.1 78.84 39.97 Field Strength of Average Emission Frequency (MHz) Peak Measurement@3m (dBμV/m) Height (cm) Polar (H/V) Duty Cycle Corrected Factor (dB) Corrected Ampitude (dBμV/m) FCC Part 15.231(b)/205/209 Limit (dBμV/m) Margin (dB) 380.00 86.61 100 H -13.98 72.63 78.84 6.21 760.00 38.87 100 H -13.98 24.89 58.84 33.95 Fundamental Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 194 of 593 1GHz-4GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 1G2G3G4G Level in dB μ V/ Frequency in Hz Full Spectrum Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 1140.00 39.40 150 V 89 -18.3 74.00 34.60 1520.00 43.20 150 V 293 -16.3 74.00 30.80 1900.00 46.13 150 H 286 -14.8 78.84 32.71 2280.00 54.20 150 H 72 -13.3 74.00 19.80 2660.00 56.30 150 H 286 -11.7 78.84 22.54 3040.00 44.48 150 H 256 -10.0 78.84 34.36 3420.00 51.90 150 H 349 -9.0 78.84 26.94 Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 195 of 593 Field Strength of Average Emission Frequency (MHz) Peak Measurement@3m (dBμV/m) Height (cm) Polar (H/V) Duty Cycle Corrected Factor (dB) Corrected Ampitude (dBμV/m) FCC Part 15.231(b)/205/209 Limit (dBμV/m) Margin (dB) 1140.00 39.40 150 V -13.98 25.42 54.00 28.58 1520.00 43…

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Test Report

Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 414 of 593 Middle Channel: 380.0MHz (ANT 3) 30MHz-1GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 30M 5060 80 100M200300400 500 8001G Level in dB μ V/ Frequency in Hz Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 39.45 36.54 100 V 164 -10.9 58.84 22.30 92.44 38.19 100 V 64 -17.0 58.84 20.65 232.85 37.86 100 H 266 -13.7 58.84 20.98 380.00 86.95 100 H 333 -9.1 98.84 11.89 700.02 39.47 100 V 112 -3.0 58.84 19.37 760.00 38.54 100 H 339 -2.1 78.84 40.30 Field Strength of Average Emission Frequency (MHz) Peak Measurement@3m (dBμV/m) Height (cm) Polar (H/V) Duty Cycle Corrected Factor (dB) Corrected Ampitude (dBμV/m) FCC Part 15.231(b)/205/209 Limit (dBμV/m) Margin (dB) 380.00 86.95 100 H -13.98 72.97 78.84 5.87 760.00 38.54 100 H -13.98 24.56 58.84 34.28 Fundamental Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 415 of 593 1GHz-4GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 1G2G3G4G Level in dB μ V/ Frequency in Hz Full Spectrum Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 1140.00 38.19 200 V 261 -18.3 74.00 35.81 1520.00 41.89 200 V 272 -16.3 74.00 32.11 1900.00 47.22 200 H 134 -14.8 78.84 31.62 2280.00 52.17 150 H 215 -13.3 74.00 21.83 2660.00 54.59 200 H 6 -11.7 78.84 24.25 3040.00 43.02 150 H 256 -10.0 78.84 35.82 3420.00 51.09 150 H 336 -9.0 78.84 27.75 Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 416 of 593 Field Strength of Average Emission Frequency (MHz) Peak Measurement@3m (dBμV/m) Height (cm) Polar (H/V) Duty Cycle Corrected Factor (dB) Corrected Ampitude (dBμV/m) FCC Part 15.231(b)/205/209 Limit (dBμV/m) Margin (dB) 1140.00 38.19 200 V -13.98 24.21 54.00 29.79 1520.00 41.89 200 V -13.98 27.91 54.00 26.09 1900.00 47.22 200 H -13.98 33.24 58.84 25.60 2280.00 52.17 150 H -13.98 38.19 54.00 15.81 2660.00 54.59 200 H -13.98 40.61 58.84 18.23 3040.00 43.02 150 H -13.98 29.04 58.84 29.80 3420.00 51.09 150 H -13.98 37.11 58.84 21.73 Note 1: Corrected Factor (dB/m) = Antenna factor (RX) (dB/m) + Cable Loss (dB) – Amplifier Factor (dB) Margin (dB) = Limit (dBμV/m) – Corrected Amplitude (dBμV/m) Note 2: Calculate Average value based on Duty Cycle correction factor: The manufacturer declared that the maximum duty cycle is 20%. Duty Cycle Corrected Factor =20*log(20%) = -13.98dB Average value = Peak value + Duty Cycle Corrected Factor Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 417 of 593 Middle Channel: 380.0MHz (ANT 4) 30MHz-1GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 30M 5060 80 100M200300400 500 8001G Level in dB μ V/ Frequency in Hz Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 44.42 37.17 100 V 128 -14.2 58.84 21.67 92.44 38.23 100 V 74 -17.0 58.84 20.61 166.28 34.67 100 V 128 -13.0 43.50 8.83 232.85 37.18 100 H 248 -13.7 58.84 21.66 380.00 87.50 100 H 60 -9.1 98.84 11.34 760.00 40.93 100 H 66 -2.1 78.84 37.91 Field Strength of Average Emission Frequency (MHz) Peak Measurement@3m (dBμV/m) Height (cm) Polar (H/V) Duty Cycle Corrected Factor (dB) Corrected Ampitude (dBμV/m) FCC Part 15.231(b)/205/209 Limit (dBμV/m) Margin (dB) 380.00 87.50 100 H -13.98 73.52 78.84 5.32 760.00 40.93 100 H -13.98 26.95 58.84 31.89 Fundamental Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 418 of 593 1GHz-4GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 1G2G3G4G Level in dB μ V/ Frequency in Hz Full Spectrum Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 1140.00 32.41 150 V 2 -18.4 54.00 21.59 1520.00 35.51 150 H 349 -16.6 54.00 18.49 1777.90 37.11 150 H 0 -15.3 58.84 21.73 1900.00 33.43 150 H 282 -14.7 58.84 25.41 2280.00 35.32 200 V 153 -14.0 54.00 18.68 2660.00 37.13 150 V 277 -11.7 58.84 21.71 3420.00 37.03 150 V 206 -9.0 58.84 21.81 Note 1: Corrected Factor (dB/m) = Antenna factor (RX) (dB/m) + Cable Loss (dB) – Amplifier Factor (dB) Margin (dB) = Limit (dBμV/m) – Corrected Amplitude (dBμV/m) Note 2: Calculate Average value based on Duty Cycle correction factor: The manufacturer declared that the maximum duty cycle is 20%. Duty Cycle Corrected Factor =20*log(20%) = -13.98dB Average value = Peak value + Duty Cycle Corrected Factor Note 3: If the spurious emissions maximized peak measured value complies with the average limit, it is unnecessary to perform an Average measurement. Level in dB μ V/m Bay Area Compliance Laboratories Corp. (Kunshan) Report No.: RSHD201021003-00B FCC Part 15.231 Page 419 of 593 High Channel: 399.5MHz (ANT 1) 30MHz-1GHz (Pre-scan in the X,Y and Z axes of orientation, the worst case Z-axis of orientation was recorded.) 0 20 40 60 80 100 30M 5060 80 100M200300400 500 8001G Level in dB μ V/ Frequency in Hz Frequency (MHz) Corrected Amplitude Rx Antenna Turntable Degree Corrected Factor (dB/m) Limit (dBμV/m) Margin (dB) MaxPeak (dBμV/m) Height (cm) Polar (H/V) 43.70 37.24 100 H 101 -13.8 59.61 22.37 92.20 38.51 100 V 64 -17.0 59.61 21.10 166.28 34.37 100 V 131 -13.0 43.50 9.13 232.36 37.32 100 H 244 -13.7 59.61 22.29 399.50 87.97 100 H 327 -8.6 99.61 11.64 799.00 43.54 100 H 327 -1.4 79.61 3…

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Test Setup Photos

EXHIBIT C - TEST SETUP PHOTOGRAPHS Adapter power supply: Conducted Emissions (Front View) Conducted Emissions (Side View) Radiated Emissions (Below 1GHz) Radiated Emissions (Above 1GHz) PoE power supply: Conducted Emissions (Front View) Conducted Emissions (Side View) Radiated Emissions (Below 1GHz) Radiated Emissions (Above 1GHz)

Contact Information

Applicant

zohar shinar(ceo)
[email protected]917 5191308Fax: 9175191308

Test Firm

Bay Area Compliance Laboratories Corp. (Kunshan)Mr. John Chan
[email protected]+86 0512 86175000

Technical Specifications

#Rule PartsFrequency RangePower Output
415.231410.5 MHz - 505.5 MHz-
Confidentiality
Long Term
Grant Notes
This product contains an approved module (FCC ID: 2AC7Z-ESP32WROVERE) described in this filing.

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Equipment Class

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