
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
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Report File #: TR-7169008429MPE-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. Exhibit: RF Exposure – FCC/IC FCC: QJP-PDP1000 IC: 8393A-PDP1000 Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s) RSS 102 Issue 5:2015 Page 2 of 5Report Issued: 4/20/2021Report File #: TR-7169008429MPE-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. RF Exposure – IC/FCC The device is a mobile device intended to generally be used in such a way that a separation distance of at least 20 centimeters is normally maintained between the transmitter's radiating structure and the body of the user or nearby persons. This is accomplished by design as the handheld portion is more than 20 cm from the radiating structure. This device mounts on a cart that is pulled around, where the RF portion is on or near the ground and the handle is well over 20 cm away from tx antenna(s). The intentional RF energy of this device is designed to be directed into the ground. The EUT is a 540 MHz to 3751 MHz Ultra-Wideband (UWB) Ground Penetrating Radar (GPR) transmitter. Although the antenna gain varies through the frequency band of transmit, however for the sake of simplicity a value of 0 dBi is used and is calculated by comparing the 3 meter field strength reading to the power delivered to the antenna, adjusting for the resolution bandwidth in the 3 meter reading. Peak reading at 3 meters was 54.1 dBuV/m / MHz. This is -41.1 dBm / MHz EIRP. 99% bandwidth is 3210.9 MHz. A worst case factor of 10 log (3210.9 MHz / 1 MHz) is 35.1 dB. Applied to peak reading, this results in a worst case peak power of – 6 dBm EIRP for the UWB transmission, this is 250 uW.. RF Exposure Exemption Limits for Routine Evaluation – IC (UWB) As per RSS 102 Section 2.5.2, RF exposure evaluation is not required if the device operating at or above 300 MHz and below 6 GHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than: 1.31 x 10 -2 ƒ 0.6834 W (adjusted for tune-up tolerance), whereƒis in MHz For a 540 MHz transmitter, where the tightest limit applies, this e.i.r.p limit is 0.96 W. The UWB complies with this limit and is 0.26 % of the applicable limit. Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s) RSS 102 Issue 5:2015 Page 3 of 5Report Issued: 4/20/2021Report File #: TR-7169008429MPE-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. RF Exposure Exemption Limits for Routine Evaluation – FCC (UWB) Devices shall be evaluated for RF radiation exposure according to the provisions of FCC §2.1093 and the MPE guidelines identified in FCC §1.1310. As per FCC §1.1310 Table 1(B), the limit for Maximum Permissible Exposure (MPE) to radiofrequency electromagnetic fields for General Population/Uncontrolled Exposure in the frequency range of 300 MHz to 1.5 GHz is f/1500 mW/cm 2 and in the frequency range of 1.5GHz to 100GHz is 1.0 mW/cm 2 . Where f = frequency in MHz. For the purposes of compliance, a worst-case frequency of 540 MHz is used. 540/1500 = 0.36. Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s) RSS 102 Issue 5:2015 Page 4 of 5Report Issued: 4/20/2021Report File #: TR-7169008429MPE-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. The power density formula is given by: P d = (P out *G) / (4*pi*R 2 ) Where, P d = Power density in mW/cm 2 P out = Conducted output power to antenna in mW G = Numeric Antenna Gain Pi = 3.1416 R = Separation distance in cm MPE Calculation: 540 MHz to 3751 MHz UWB GPR transmitter (worst case) Average output power at antenna input terminal: (when transmitting, based on customer provided info) -6.00 (dBm) Average output power at antenna inputterminal: 0.251188643 (mW) Antenna gain(worst case): 0 (dBi) Maximum antenna gain: 1 (numeric) Prediction distance: 20 (cm) Prediction frequency (worst case):540(MHz) FCC MPE limit for uncontrolled exposure at prediction frequency (worst case):0.36(mW/cm^2) Power density at prediction frequency:0.001000(mW/cm^2) FCCMargin of compliance:-25.6(Pass)(dB) This equates to0.01(Pass)W/m^2 RSS-102 Issue 5 limit (worst case)0.965137502W/m^2 Thjs complies and is 0.28 % of the applicable FCC limit. Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s) RSS 102 Issue 5:2015 Page 5 of 5Report Issued: 4/20/2021Report File #: TR-7169008429MPE-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. Combination with Wi-Fi module (FCC ID TFB-TIWI1-01) Maximum peak output power at antenna input terminal:8.00(dBm) Maximum peak output power at antenna input terminal:6.31(mW) Antennagain(typical):4.3(dBi) Maximum antenna gain:2.691534804(numeric) Time Averaging:100(%) Prediction distance:20(cm) Prediction frequency:2400(MHz) MPE limit for uncontrolled exposure at prediction frequency:1(mW/cm^2) Powerdensity at prediction frequency:0.004000(mW/cm^2) Margin of compliance:-24.0(dB) This equates to0.04W/m^2 RSS-102 Issue 5 limit2.674900662W/m^2 For FCC the RF exposure of the Wi-Fi module is 0.4% of the applicable limit For ISED the RF exposure of the Wi-Fi module is 1.5% of the applicable limit. The worst case combination of the 2 RF devices, 0.68% of the applicable limit for FCC and 1.76% of the applicable limit for ISED is less than 100% of the applicable limit and therefor the device complies with maximum permissible exposure requirements.
TÜV SÜD Product Service is a trading name of TUV SUD Ltd 1280 Teron Rd Ottawa, ON K2K 2C1 Canada TUV SUD Ltd is part of the TÜV SÜD Group Company www.tuv-sud.ca page 1 of 46 TÜV SÜD Product Service RESPONSIBLE FORNAMEDATESIGNATURE Authorised Signatory Scott DrysdaleMay 11, 2021 Document ReviewerGlen WestwellMay 11, 2021 Signatures in this approval box have checked this document in line with the requirements of TÜV SÜD Product Service document control rules. EXECUTIVE SUMMARY A sample of this product was tested and found to be compliant with the standards listed above. (See Justifications and deviations section) A2LA Cert. No. 2955.19 DISCLAIMER AND COPYRIGHT This non-binding report has been prepared by TÜV SÜD Canada with all reasonable skill and care. The document is confidential to the potential Client and TÜV SÜD Canada. No part of this document may be reproduced without the prior written approval of TÜV SÜD Canada. © TÜV SÜD. ACCREDITATION Our A2LA Accreditation does not cover opinions and interpretations and any expressed are outside the scope of our A2LA Accreditation. Report on the Testing of thePavement Density Profile (PDP) system In accordance with:RSS 220 Issue 1:2009+A1:2018 & FCC Part 15:2020 Subpart F Prepared for:COMMERCIAL-IN-CONFIDENCE Document Number:TR-7169008429-004 Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009+A1:2018 & FCC Part 15:2020 Subpart F Page2of46Report issue date:5/11/2021TR-7169008429-004 © TUV SUD Canada This test report shall not be reproduced except in full, without written approval of TUV SUD Canada Table of Contents Table of Contents ................................................................................................................... 2 Report Scope .......................................................................................................................... 3 Summary ................................................................................................................................ 4 Test Results Summary ....................................................................................................... 5 Justifications, Descriptions, or Deviations......................................................................... 6 Applicable Standards, Specifications and Methods........................................................... 8 Sample calculation(s)......................................................................................................... 9 Document Revision Status ................................................................................................. 9 Definitions and Acronyms ................................................................................................... 10 Testing Facility .................................................................................................................... 12 Calibrations and Accreditations ....................................................................................... 12 Testing Environmental Conditions and Dates ................................................................. 12 Detailed Test Results Section .............................................................................................. 13 Bandwidth of Ultra Wide Band Transmitters ................................................................. 14 Radiated Emissions .......................................................................................................... 19 Power Line Conducted Emissions ................................................................................... 39 Appendix A – EUT Summary.............................................................................................. 45 Appendix B – EUT and Test Setup Photographs................................................................. 46 Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009+A1:2018 & FCC Part 15:2020 Subpart F Page3of46Report issue date:5/11/2021TR-7169008429-004 © TUV SUD Canada This test report shall not be reproduced except in full, without written approval of TUV SUD Canada Report Scope This report addresses the EMC verification testing and test results of the Pavement Density Profile (PDP) system, herein referred to as EUT (Equipment Under Test) performed at TUV SUD Canada. The EUT was tested for compliance against the following standards: RSS 220 Issue 1:2009+Ammendment 1:2018 and FCC Part 15 Subpart F 15:2020 Test procedures, results, justifications, and engineering considerations, if any, follow later in this report. The results contained in this report relate only to the item(s) tested. This report does not imply product endorsement by A2LA or any other accreditation agency, any government or government agency, or TUV SUD Canada.. Opinions/interpretations expressed in this report, if any, are outside the scope of TUV SUD Canada. accreditation. Any opinions expressed do not necessarily reflect the opinions of TUV SUD Canada., unless otherwise stated. Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009+A1:2018 & FCC Part 15:2020 Subpart F Page4of46Report issue date:5/11/2021TR-7169008429-004 © TUV SUD Canada This test report shall not be reproduced except in full, without written approval of TUV SUD Canada Summary The results contained in this report relate only to the item(s) tested. EUT FCC Certification #, FCC ID:QJQ-PDP1000 EUT Industry Canada Certification #, IC:8393A-PDP1000 EUT Passed all tests performed.Yes (see test results summary) Tests conducted byScott Drysdale Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009+A1:2018 & FCC Part 15:2020 Subpart F Page5of46Report issue date:5/11/2021TR-7169008429-004 © TUV SUD Canada This test report shall not be reproduced except in full, without written approval of TUV SUD Canada Test Results …
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7169008429TSTPHO-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc Exhibit: Test Setup Photos Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009 / FCC Part 15:2020 Subpart F Page 2 of 6Report Issued: 2/8/2021TR-7169008429TSTPHO-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. Figure 1 ‒ Radiated Emissions Setup – Photo 1 Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009 / FCC Part 15:2020 Subpart F Page 3 of 6Report Issued: 2/8/2021TR-7169008429TSTPHO-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. Figure 2 ‒ Radiated Emissions Setup – Photo 2 Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009 / FCC Part 15:2020 Subpart F Page 4 of 6Report Issued: 2/8/2021TR-7169008429TSTPHO-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. Figure 3 ‒ Radiated Emissions Setup – Photo 3 Note: As per guidance in ANSI C63.10 section.10.2.2, the device evaluated above a raised 50 cm bed of dry sand, placed above the ground plane. Due to the use of a semi-anechoic chamber, the 50 cm of dry sand could not feasibly be placed below the ground plane. Sand placed over top of the ground plane will likely result in discontinuities within the medium, reflections from which may adversely impact the compliance measurement. Anechoic material was evaluated as an alternative to a bed of sand, and was evaluated to have similar attenuation with respect to the directly radiated UWB emissions. However, since the EUT met the requirements this was deemed a worst case measurement and suitable for the purposes of compliance. For final measurements, the EUT was placed at a height of 80 cm on a non-conducting support with the emitter directed downwards. As the EUT emissions was expected to have components below 500 MHz, a layer of ferrite tile was placed directly on the floor below the EUT. Pyramidal or wedge-shaped RF absorbers not less than 60 cm in height was placed directly below the EUT. Some sections of absorber were inverted and placed over other absorbers to form a solid block. Care was taken not to place any RF absorber between the device and the EMI receive antenna. The placement of the absorber was positioned such that it was not disturbed when the device was rotated. This arrangement prevents Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009 / FCC Part 15:2020 Subpart F Page 5 of 6Report Issued: 2/8/2021TR-7169008429TSTPHO-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. energy directed downwards from consideration during the measurement. A search in azimuth and elevation for indirect emissions was performed. Figure 4 ‒ Close up Client Sensors & Software Product Pavement Density Profile (PDP) system Standard(s)RSS 220 Issue 1:2009 / FCC Part 15:2020 Subpart F Page 6 of 6Report Issued: 2/8/2021TR-7169008429TSTPHO-000 © TÜV SÜD Canada Inc. This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc. Figure 5 – Power Line conducted emissions
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15F | 540.1 MHz - 1.00 GHz | - |

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