FCC 47 CFR PART 15 SUBPART C CERTIFICATION TEST REPORT FOR. RF ID Reader MODEL NUMBER: A-405 FCC ID: WFQITCS-A-405 IC: 10717A-ITCSA405
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1 FCC 47 CFR PART 15 SUBPART C CERTIFICATION TEST REPORT FOR RF ID Reader MODEL NUMBER: A-405 REPORT NUMBER: A ISSUE DATE: December 12, 2015 Prepared for RF Controls LLC 1400 S 3 RD Street Suite 200 St Louis, MO Prepared by 333 Pfingsten Rd. Northbrook, IL TEL: (847) NVLAP Lab code:
2 Revision History Rev. Issue Date Revisions Revised By December 2015 Initial Issue BM Page 2 of 80 This report shall not be reproduced except in full, without the written approval of
3 TABLE OF CONTENTS 1. ATTESTATION OF TEST RESULTS TEST METHODOLOGY FACILITIES AND ACCREDITATION CALIBRATION AND UNCERTAINTY MEASURING INSTRUMENT CALIBRATION SAMPLE CALCULATION MEASUREMENT UNCERTAINTY EQUIPMENT UNDER TEST DESCRIPTION OF EUT MAXIMUM OUTPUT POWER DESCRIPTION OF AVAILABLE ANTENNAS SOFTWARE AND FIRMWARE WORST-CASE CONFIGURATION AND MODE DESCRIPTION OF TEST SETUP TEST AND MEASUREMENT EQUIPMENT TEST RESULTS SUBSTITUTION POWER MEASUREMENTS AND ANTENNA GAIN ANTENNA PORT TEST RESULTS ON TIME AND DUTY CYCLE BASIC DATA RATE MODULATION db AND 99% BANDWIDTH HOPPING FREQUENCY SEPARATION NUMBER OF HOPPING CHANNELS AVERAGE TIME OF OCCUPANCY OUTPUT POWER CONDUCTED SPURIOUS EMISSIONS RADIATED TEST RESULTS LIMITS AND PROCEDURE TRANSMITTER ABOVE 1 GHz Circular Polarization Data * 1800 MHz not in restricted band.horizontal Polarization Data RADIATED EMISSIONS BELOW 1 GHz DIGITAL DEVICE BELOW 1 GHz AC POWER LINE CONDUCTED EMISSIONS SETUP PHOTOS Page 3 of 80 This report shall not be reproduced except in full, without the written approval of
4 1. ATTESTATION OF TEST RESULTS COMPANY NAME: EUT DESCRIPTION: RF Controls LLC 1400 S 3 rd Street Suite 200 St. Louis, MO RF ID Reader MODEL: A-405 SERIAL NUMBER: Non serialized DATE TESTED: September 14, 2015 December 8, 2015 APPLICABLE STANDARDS STANDARD CFR 47 Part 15 Subpart C TEST RESULTS Pass tested the above equipment in accordance with the requirements set forth in the above standards. All indications of Pass/Fail in this report are opinions expressed by based on interpretations and/or observations of test results. Measurement Uncertainties were not taken into account and are published for informational purposes only. The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report. Note: The results documented in this report apply only to the tested sample, under the conditions and modes of operation as described herein. This document may not be altered or revised in any way unless done so by and all revisions are duly noted in the revisions section. Any alteration of this document not carried out by will constitute fraud and shall nullify the document. This report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, any agency of the Federal Government, or any agency of any government. Approved & Released For UL Verification Services Inc. By: Tested By: Michael Ferrer EMC Engineer UL Verification Services Inc. Bart Mucha EMC ENGINEER UL Verification Services Inc. Page 4 of 80 This report shall not be reproduced except in full, without the written approval of
5 2. TEST METHODOLOGY The tests documented in this report were performed in accordance with ANSI C , FCC CFR 47 Part 2, FCC CFR 47 Part 15, RSS-GEN Issue 4, and RSS-247 Issue FACILITIES AND ACCREDITATION The test sites and measurement facilities used to collect data are located at 333 Pfingsten Road, Northbrook, IL USA. IC OATS number 2180A-1. UL NBK is accredited by NVLAP, Laboratory Code The full scope of accreditation can be viewed at 4. CALIBRATION AND UNCERTAINTY 4.1. MEASURING INSTRUMENT CALIBRATION The measuring equipment utilized to perform the tests documented in this report has been calibrated in accordance with the manufacturer's recommendations, and is traceable to recognized national standards SAMPLE CALCULATION Sample Calculations Radiated Field Strength and Conducted Emissions data contained within this report is calculated on the following basis: Field Strength (dbuv/m) = Meter Reading (dbuv) + AF (db/m) - Gain (db) + Cable Loss (db) Conducted Voltage (dbuv) = Meter Reading (dbuv) + Cable Loss (db) + LISN IL (db) Conducted Current (dbua) = Meter Reading (dbuv) + Cable Loss (db) - Transducer Factor (dbohms) 4.3. MEASUREMENT UNCERTAINTY Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the apparatus: Test Range Equipment Uncertainty k=2 Radiated Emissions MHz Bicon 10m Horz 4.27dB Radiated Emissions MHz Bicon 10m Vert 4.28dB Radiated Emissions MHz LogP 10m Horz 3.33dB Radiated Emissions MHz LogP 10m Vert 3.39dB Radiated Emissions MHz Bicon 3m Horz 3.30dB Radiated Emissions MHz Bicon 3m Vert 4.84dB Radiated Emissions MHz Bicon 3m Vert 4.94dB Radiated Emissions MHz LogP 3m Horz 3.46dB Radiated Emissions MHz LogP 3m Vert 4.98dB Radiated Emissions 1-6GHz Horn 5.02dB Radiated Emissions 6-18GHz Horn 5.34dB Radiated Emissions 18-26GHz Horn 6.60dB Conducted Ant Port 30MHz-26GHz Spectrum Analyzer 2.94 Uncertainty figures are valid to a confidence level of 95%. Page 5 of 80 This report shall not be reproduced except in full, without the written approval of
6 5. EQUIPMENT UNDER TEST 5.1. DESCRIPTION OF EUT The EUT is a RF ID reader built into antenna assembly. The radio and antenna is manufactured by RF Controls MAXIMUM OUTPUT POWER The transmitter has a maximum peak conducted output power as follows: Frequency Range Mode Output Power Output Power (MHz) (dbm) (mw) MHz Basic DESCRIPTION OF AVAILABLE ANTENNAS The radio is mounted together with an antenna. The maximum linear antenna gain is 10.9dBi SOFTWARE AND FIRMWARE Firmware in EUT was: RF_Reader_4xx0x0b_091113boot.hex rev.: RF_Reader_4xx0x0b_091113boot.hex EUT Driver was: 405_rfc_arcon tar.gz rev.: And :BSA_Ver0x0b_082815boot.hex rev.: 0x0b_ Test Utility was: ETH TO SERIAL CONFIG rev.: Page 6 of 80 This report shall not be reproduced except in full, without the written approval of
7 5.5. WORST-CASE CONFIGURATION AND MODE Device can be mounted in single orientation only (wall mounted). The antenna can be electronically set to either transmit in circular polarization, horizontal polarization and vertical polarization. In addition to different polarization settings the antenna can be steered to +/- 40 from its bore site beam. Based on experimental testing the antenna produces highes EiRP level when steered at 0 (boreside). All emissions were measured with power levels established based on EiRP measurements where there the output power was set that total EiRP would not be more then 36dBm. In addition because the device uses high gain antenna (over 6dBi) it was ensured that the power output was equal to 30dBm (AntGain_dBi 6dB) 5.6. DESCRIPTION OF TEST SETUP SUPPORT EQUIPMENT Support Equipment List Description Manufacturer Model Serial Number FCC ID Laptopt Computer Generic PoE Adapter StarTech POEINJ100 - I/O CABLES Cable No Port 1 Ethernet + PoE # of identical ports I/O Cable List Connector Cable Type Type Cable Length (m) Remarks 1 RJ-45 Cat 5 10m generic cable TEST SETUP The device is stand alone combination of radio and antenna. Device is powered via 48VDC PoE and controller via Ethernet. PoE adapter is not sold with the device. Page 7 of 80 This report shall not be reproduced except in full, without the written approval of
8 SETUP DIAGRAM FOR TESTS EUT PoE Adapter Laptop Ethernet AC AC Mains Page 8 of 80 This report shall not be reproduced except in full, without the written approval of
9 6. TEST AND MEASUREMENT EQUIPMENT The following test and measurement equipment was utilized for the tests documented in this report: Test Equipment List Description Manufacturer Model EMC No. Cal Date Cal Due Radiated Software UL UL EMC Ver 9.5, July 22, 2014 Conducted Software UL UL EMC Ver 9.5, May Radiated and Antenna Port Equipment EMI Test Receiver Rohde & Schwarz ESU EMC EMI Test Receiver Rohde & Schwarz ESCI EMC Bicon Antenna Electro-Metrics EM6912A EMC Log-P Antenna Chase UPA6109 EMC Loop Antenna EMCO 6502/1 EMC Antenna Array UL BOMS EMC Spectrum Analyzer Agilent N9030A (PXA) EMC Line Conducted Emissions Equipment EMI Test Receiver Rohde & Schwarz ESR EMC Apr Apr-16 Transient Limiter Electro-Metrics EM EMC4224 N/A N/A HighPass Filter Solar Electronics N/A N/A Attenuator HP 8494B 2831A00838 N/A N/A LISN - L1 Solar TS-50-N EMC Jan Jan-16 LISN - L2 Solar TS-50-N EMC Jan Jan-16 Page 9 of 80 This report shall not be reproduced except in full, without the written approval of
10 7. TEST RESULTS 7.1. SUBSTITUTION POWER MEASUREMENTS AND ANTENNA GAIN The gain of the antenna was measured using substitution power measurement technique by replacing the EUT with known antenna and signal source. All measurements are based on using linear antenna as the substitution antenna and linear antenna as the receiving antenna. The EUT can operate either in linear mode or circular mode. FCC KDB412172D07 v01r01 was used a partial guidance. Circular Polarization Linear Polarization Vertical Linear Polarization Horizontal Frequency Polarization EUT FS 3m Voltage at antenna dbm Substitution Field Strength dbuv/m EUT vs Substitution FS Delta db Substitution Antenna + Delta dbm Substitution Antenna factor dbi EIRP Level dbm Horizontal Vertical Horizontal Vertical Horizontal Vertical Vertical Vertical Vertical Horizontal Horizontal Horizontal EUT Ant Gain dbi Page 10 of 80 This report shall not be reproduced except in full, without the written approval of
11 7.2. ANTENNA PORT TEST RESULTS LIMITS 7.3. ON TIME AND DUTY CYCLE None; for reporting purposes only. PROCEDURE DA ON TIME AND DUTY CYCLE RESULTS Mode ON Time Period Duty Cycle Duty Duty Cycle 1/B B x Cycle Correction Factor Minimum VBW (msec) (msec) (linear) (%) (db) (khz) Hopping Mode Antenna % 0.00 N/A * No duty cycle correction possible. Page 11 of 80 This report shall not be reproduced except in full, without the written approval of
12 DUTY CYCLE PLOTS Pulse Duration Page 12 of 80 This report shall not be reproduced except in full, without the written approval of
13 LIMIT 7.4. BASIC DATA RATE MODULATION db AND 99% BANDWIDTH None; for reporting purposes only. TEST PROCEDURE DA RSS-Gen The transmitter output is connected to a spectrum analyzer. The RBW is set to 1% of the 20 db bandwidth. The VBW is set to RBW. The sweep time is coupled. RESULTS Operating Mode T25 Channel Frequency 20 db Bandwidth 99% Bandwidth (MHz) (khz) (khz) Low Middle High Operating Mode T12.5 Channel Frequency 20 db Bandwidth 99% Bandwidth (MHz) (khz) (khz) Low Middle High Operating Mode T6.25 Channel Frequency 20 db Bandwidth 99% Bandwidth (MHz) (khz) (khz) Low Middle High Page 13 of 80 This report shall not be reproduced except in full, without the written approval of
14 Operating Mode T25, Low Channel 20dB BW 99%BW Page 14 of 80 This report shall not be reproduced except in full, without the written approval of
15 Operating Mode T25, Middle Channel 20dB BW 99%BW Page 15 of 80 This report shall not be reproduced except in full, without the written approval of
16 Operating Mode T25, High Channel 20dB BW 99%BW Page 16 of 80 This report shall not be reproduced except in full, without the written approval of
17 Operating Mode T12.5, Low Channel 20dB BW 99%BW Page 17 of 80 This report shall not be reproduced except in full, without the written approval of
18 Operating Mode T12.5, Middle Channel 20dB BW 99%BW Page 18 of 80 This report shall not be reproduced except in full, without the written approval of
19 Operating Mode T12.5, High Channel 20dB BW 99%BW Page 19 of 80 This report shall not be reproduced except in full, without the written approval of
20 Operating Mode T6.25, Low Channel 20dB BW 99%BW Page 20 of 80 This report shall not be reproduced except in full, without the written approval of
21 Operating Mode T6.25, Middle Channel 20dB BW 99%BW Page 21 of 80 This report shall not be reproduced except in full, without the written approval of
22 Operating Mode T6.25, High Channel 20dB BW 99%BW Page 22 of 80 This report shall not be reproduced except in full, without the written approval of
23 LIMIT HOPPING FREQUENCY SEPARATION FCC (a) (1) IC RSS (3) Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 25 khz or the 20 db bandwidth of the hoping channel, whichever is greater. TEST PROCEDURE DA The transmitter output is connected to a spectrum analyzer. The RBW is set to 100 khz and the VBW is set to 100 khz. The sweep time is coupled. RESULTS Based on the marker data and the frequency associated with the markers the average channel separation is 500kHz. Page 23 of 80 This report shall not be reproduced except in full, without the written approval of
24 HOPPING FREQUENCY SEPARATION Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Page 24 of 80 This report shall not be reproduced except in full, without the written approval of
25 LIMIT NUMBER OF HOPPING CHANNELS FCC (a) (1) (i) IC RSS (3) For frequency hopping systems operating in the MHz band: if the 20 db bandwidth of the hopping channel is less than 250 khz, the system shall use at least 50 hopping frequencies and the average time of occupancy on any frequency shall not be greater than 0.4 seconds within a 20 second period; if the 20 db bandwidth of the hopping channel is 250 khz or greater, the system shall use at least 25 hopping frequencies and the average time of occupancy on any frequency shall not be greater than 0.4 seconds within a 10 second period. TEST PROCEDURE DA The transmitter output is connected to a spectrum analyzer. The span is set to cover the entire authorized band, in either a single sweep or in multiple contiguous sweeps. The RBW is set to a maximum of 1 % of the span. The analyzer is set to Max Hold. RESULTS The number of channels is 50. All 50 channels are used in all operating modes. Page 25 of 80 This report shall not be reproduced except in full, without the written approval of
26 NUMBER OF HOPPING CHANNELS Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Marker No. Test Frequency (MHz) Page 26 of 80 This report shall not be reproduced except in full, without the written approval of
27 LIMIT AVERAGE TIME OF OCCUPANCY FCC (a) (1) (i) IC RSS (3) For frequency hopping systems operating in the MHz band: if the 20 db bandwidth of the hopping channel is less than 250 khz, the system shall use at least 50 hopping frequencies and the average time of occupancy on any frequency shall not be greater than 0.4 seconds within a 20 second period; if the 20 db bandwidth of the hopping channel is 250 khz or greater, the system shall use at least 25 hopping frequencies and the average time of occupancy on any frequency shall not be greater than 0.4 seconds within a 10 second period. TEST PROCEDURE DA RESULTS DH Packet Pulse Average Time Limit Margin Number of Width of Occupancy Pulses in (msec) (sec) (sec) (sec) 20 seconds Antenna Port Page 27 of 80 This report shall not be reproduced except in full, without the written approval of
28 PULSE WIDTH Page 28 of 80 This report shall not be reproduced except in full, without the written approval of
29 NUMBER OF PULSES in 20 seconds Page 29 of 80 This report shall not be reproduced except in full, without the written approval of
30 LIMIT OUTPUT POWER (b) (2) RSS (1) (2) For frequency hopping systems operating in the MHz band: 1 watt for systems employing at least 50 hopping channels; and, 0.25 watts for systems employing less than 50 hopping channels, but at least 25 hopping channels, as permitted under paragraph (a)(1)(i) of this section. TEST PROCEDURE DA The transmitter output is connected to a spectrum analyzer the analyzer bandwidth is set to a value greater than the 20 db bandwidth of the EUT. The output power was adjusted so the value measured in all cases when antenna gain is added the EiRP will not be more then 36dBm. RESULTS Setting = dbm Channel Frequency Output Power Directional Limit Margin (MHz) (dbm) Gain (dbm) (db) (dbi) T25, Low Channel T25, Middle Channel T25, High Channel T12.5, Low Channel T12.5, Middle Channel T12.5, High Channel T6.25, Low Channel T6.25, Middle Channel T6.25, High Channel Page 30 of 80 This report shall not be reproduced except in full, without the written approval of
31 OUTPUT POWER, T25 Low Channel Middle Channel High Channel Page 31 of 80 This report shall not be reproduced except in full, without the written approval of
32 OUTPUT POWER, T12.5 Low Channel Middle Channel High Channel Page 32 of 80 This report shall not be reproduced except in full, without the written approval of
33 OUTPUT POWER, T6.25 Low Channel Middle Channel High Channel Page 33 of 80 This report shall not be reproduced except in full, without the written approval of
34 LIMITS CONDUCTED SPURIOUS EMISSIONS FCC (d) 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 conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies 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 (a) is not required. In addition, radiated emissions which fall in the restricted bands, as defined in (a), must also comply with the radiated emission limits specified in (a) (see (c)). IC RSS 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 rootmean-square averaging over a time interval, as permitted under Section A8.4 (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 The transmitter output is connected to a spectrum analyzer. The resolution bandwidth is set to 100 khz. The video bandwidth is set to 300 khz. The spectrum from 30 MHz to 10 GHz is investigated with the transmitter set to the lowest, middle, and highest channels. The bandedges at 902 and 928 MHz are investigated with the transmitter set to the normal hopping mode and single channel mode. Page 34 of 80 This report shall not be reproduced except in full, without the written approval of
35 RESULTS SPURIOUS EMISSIONS, 9kHz 1GHz Hopping RF Controls A-405 Hopping 48VDC PoE RED: LoCh MGT: HiCh Trace Markers Test Meter Path Marker Frequency Reading Factor Lev el Spurious Margin No. (MHz) (dbm) Detector db dbm Limit (db) PK PK PK PK PK PK PK PK PK PK - Peak detector Page 35 of 80 This report shall not be reproduced except in full, without the written approval of
36 SPURIOUS EMISSIONS, 1GHz 10GHz Hopping RF Controls A-405 Hopping 48VDC PoE Trace Markers Test Marker Frequency Meter Reading Cable Factor Attenuator Lev el Limit Margin No. (GHz) (dbm) Detector db db dbm dbm (db) PK PK PK PK PK PK PK - Peak detector Page 36 of 80 This report shall not be reproduced except in full, without the written approval of
37 SPURIOUS EMISSIONS, Low and High Channel Bandedge, T6.25 RF Controls A-405 Low and High Channels T VDC PoE Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading dbm (MHz) (db) (db) ============================================================================================================== Low Channel dBm Pk Margin (db) dBm Pk Margin (db) Hich Channel dBm Pk Margin (db) dBm Pk Margin (db) LIMIT 1: Spurious Limit Pk - Peak detector Page 37 of 80 This report shall not be reproduced except in full, without the written approval of
38 SPURIOUS EMISSIONS, Low and High Channel Bandedge, T12.5 RF Controls A-405 Low and High Channels T VDC PoE Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading dbm (MHz) (db) (db) ============================================================================================================== Low Channel dBm Pk Margin (db) dBm Pk Margin (db) High Channel dBm Pk Margin (db) dBm Pk Margin (db) dBm Pk Margin (db) LIMIT 1: Spurious Limit Pk - Peak detector Page 38 of 80 This report shall not be reproduced except in full, without the written approval of
39 SPURIOUS EMISSIONS, Low and High Channel Bandedge, T25 RF Controls A-405 Low and High Channels T25 48VDC PoE Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading dbm (MHz) (db) (db) ============================================================================================================== Low Channel dBm Pk Margin (db) dBm Pk Margin (db) dBm Pk Margin (db) High Channel dBm Pk Margin (db) dBm Pk Margin (db) dBm Pk Margin (db) LIMIT 1: Spurious Limit Pk - Peak detector Page 39 of 80 This report shall not be reproduced except in full, without the written approval of
40 SPURIOUS BANDEDGE EMISSIONS WITH HOPPING ON, T6.25 RF Controls A-405 Low and High Channels T VDC PoE Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading dbm (MHz) (db) (db) ============================================================================================================== Lower Band Edge dBm Pk Margin (db) dBm Pk Margin (db) Upper Band Edge dBm Pk Margin (db) dBm Pk Margin (db) LIMIT 1: Spurious Limit Pk - Peak detector Page 40 of 80 This report shall not be reproduced except in full, without the written approval of
41 SPURIOUS BANDEDGE EMISSIONS WITH HOPPING ON, T12.5 RF Controls A-405 Low and High Channels T VDC PoE Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading dbm (MHz) (db) (db) ============================================================================================================== Lower Band Edge dBm Pk Margin (db) dBm Pk Margin (db) Upper Band Edge dBm Pk Margin (db) dBm Pk Margin (db) dBm Pk Margin (db) LIMIT 1: Spurious Limit Pk - Peak detector Page 41 of 80 This report shall not be reproduced except in full, without the written approval of
42 SPURIOUS BANDEDGE EMISSIONS WITH HOPPING ON, T25 RF Controls A-405 Low and High Channels T25 48VDC PoE Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading dbm (MHz) (db) (db) ============================================================================================================== Lower Band Edge dBm Pk Margin (db) dBm Pk Margin (db) dBm Pk Margin (db) Upper Band Edge dBm Pk Margin (db) dBm Pk Margin (db) dBm Pk Margin (db) LIMIT 1: Spurious Limit Pk - Peak detector Page 42 of 80 This report shall not be reproduced except in full, without the written approval of
43 8. RADIATED TEST RESULTS LIMITS 8.1. LIMITS AND PROCEDURE FCC and IC RSS-GEN Clause 8.9 (Transmitter) IC RSS-GEN Clause (Receiver) Frequency Range Field Strength Limit Field Strength Limit (MHz) (uv/m) at 3 m (dbuv/m) at 3 m Above Page 43 of 80 This report shall not be reproduced except in full, without the written approval of
44 8.2. TRANSMITTER ABOVE 1 GHz Circular Polarization Data Low Channel 0 (Boreside) Prescan Plot Page 44 of 80 This report shall not be reproduced except in full, without the written approval of
45 Low Channel 0 (Boreside) Data RF Controls A-405 TX LoCh MHz 48VDC PoE Red:Horizontal Green:Vertical Trace Markers Marker No. Test Frequency (GHz) Meter Reading (dbuv) Detector Path Factor db Band Reject Filter db Path Factor db Lev el dbuv/m Limit 47 CFR Part 15 PK, Class B dbuv/m Margin (db) Limit 47 CFR Part 15 AV, Class B dbuv/m Margin (db) Azimuth Height Pk H Pk H Pk H Pk H Pk 21.3 N/A H Pk 23.7 N/A H Pk 22.1 N/A H Pk 22.2 N/A H Pk 22.6 N/A H Pk 28.3 N/A H Pk 31.2 N/A H Pk 36.5 N/A H Pk 36.4 N/A H Pk V Pk 21.3 N/A V Pk 23.5 N/A V Pk 28.4 N/A V Pk 30.8 N/A V Pk 36.4 N/A V Pk 36.4 N/A V Pk - Peak detector Radiated Emission Data Test Frequency (GHz) Pk - Peak detector Meter Reading (dbuv) Detector Path Factor db Band Reject Filter db Path Factor db Lev el dbuv/m Limit 47 CFR Part 15 PK, Class B dbuv/m Margin (db) Limit 47 CFR Part 15 AV, Class B dbuv/m Margin (db) [Degs] [cm] Azimuth Height [Degs] Pk H Av H Pk V Av V Av - Av erage detection * 1800 MHz not in restricted band. [cm] Polarity Polarity Page 45 of 80 This report shall not be reproduced except in full, without the written approval of
46 Middle Channel 0 (Boreside) Prescan Plot Page 46 of 80 This report shall not be reproduced except in full, without the written approval of
47 Middle Channel 0 (Boreside) Data A-405 TX LoCh MHz 48VDC PoE Red:Horizontal Green:Vertical Trace Markers Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Marker Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height No. (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 22.2 N/A H Pk 28.4 N/A H Pk 30.5 N/A H Pk 36.3 N/A H Pk 36.4 N/A H Pk V Pk V Pk 22.1 N/A V Pk 28.4 N/A V Pk 30.8 N/A V Pk 36.2 N/A V Pk 36.4 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Band Reject Path Frequency Reading Factor Filter Factor Lev el (GHz) (dbuv) Detector db db db dbuv/m Limit 47 CFR Part 15 PK, Class B Margin Limit 47 CFR Part 15 AV, Class B Margin Azimuth Height dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection * 1800 MHz not in restricted band. Page 47 of 80 This report shall not be reproduced except in full, without the written approval of
48 High Channel 0 (Boreside) Prescan Plot Page 48 of 80 This report shall not be reproduced except in full, without the written approval of
49 High Channel 0 (Boreside) Data RF Controls A-405 TX LoCh MHz 48VDC PoE Red:Horizontal Green:Vertical Trace Markers Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Marker Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height No. (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk 22.2 N/A H Pk 23.6 N/A H Pk 28.4 N/A H Pk 28.9 N/A H Pk 36.2 N/A H Pk 36.4 N/A H Pk V Pk V Pk 22.2 N/A V Pk 23.9 N/A V Pk 28.4 N/A V Pk 28.9 N/A V Pk 36.4 N/A V Pk 36.4 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Frequency Reading Factor (GHz) (dbuv) Detector db Band Reject Filter db Path Factor Lev el db dbuv/m Limit 47 CFR Part 15 PK, Class B Margin Limit 47 CFR Part 15 AV, Class B Margin dbuv/m (db) dbuv/m (db) Azimuth Height [Degs] [cm] Polarity Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection * 1800 MHz not in restricted band. Page 49 of 80 This report shall not be reproduced except in full, without the written approval of
50 Middle Channel -40 Prescan Plot Page 50 of 80 This report shall not be reproduced except in full, without the written approval of
51 Middle Channel -40 Data RF Controls A-405 TX MiCh MHz 48VDC PoE, Steering -40 Degrees Red:Horizontal Green:Vertical Trace Markers Limit 47 Limit 47 CFR CFR Band Part 15 Part 15 Marker No. Test Meter Path Reject Path Frequency Reading Factor Filter Factor Lev el (GHz) (dbuv) Detector db db db dbuv/m PK, AV, Class B Margin Class B Margin dbuv/m (db) dbuv/m (db) Azimuth Height [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 23.4 N/A H Pk 28.4 N/A H Pk 28.9 N/A H Pk 36.4 N/A H Pk V Pk V Pk 22.1 N/A V Pk 23.4 N/A V Pk 28.4 N/A V Pk 30.8 N/A V Pk 36.2 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection * 1800 MHz not in restricted band. Page 51 of 80 This report shall not be reproduced except in full, without the written approval of
52 Middle Channel +40 Prescan Plot Page 52 of 80 This report shall not be reproduced except in full, without the written approval of
53 Middle Channel +40 Data RF Controls A-405 TX MiCh MHz 48VDC PoE, Steering +40 Degrees Red:Horizontal Green:Vertical Trace Markers Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Marker Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height No. (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 23.4 N/A H Pk 28.4 N/A H Pk 29.3 N/A H Pk 36.1 N/A H Pk 36.4 N/A H Pk V Pk V Pk 22.1 N/A V Pk 23.4 N/A V Pk 28.4 N/A V Pk 30.6 N/A V Pk 36.1 N/A V Pk 36.4 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection * 1800 MHz not in restricted band. Page 53 of 80 This report shall not be reproduced except in full, without the written approval of
54 Horizontal Polarization Data Middle Channel -40 Prescan Plot Page 54 of 80 This report shall not be reproduced except in full, without the written approval of
55 Middle Channel -40 Data RF Controls A-405, Linear Polarization - Hoz TX MiCh MHz 48VDC PoE, Steering -40 Degrees Red:Horizontal Green:Vertical Trace Markers Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Marker Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height No. (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 23.4 N/A H Pk 28.4 N/A H Pk 30.7 N/A H Pk 36.1 N/A H Pk 36.4 N/A H Pk V Pk V Pk 22.1 N/A V Pk 23.4 N/A V Pk 28.4 N/A V Pk 31 N/A V Pk 36.2 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Band Reject Path Frequency Reading Factor Filter Factor Lev el (GHz) (dbuv) Detector db db db dbuv/m Limit 47 CFR Part 15 PK, Class B Margin dbuv/m (db) Limit 47 CFR Part 15 AV, Class B Margin Azimuth Height dbuv/m (db) [Degs] [cm] Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection Polarity * 1800 MHz not in restricted band. Page 55 of 80 This report shall not be reproduced except in full, without the written approval of
56 Middle Channel +40 Prescan Plot Page 56 of 80 This report shall not be reproduced except in full, without the written approval of
57 Middle Channel +40 Data RF Controls A-405, Linear Polarization - Hoz TX MiCh MHz 48VDC PoE, Steering +40 Degrees Red:Horizontal Green:Vertical Trace Markers Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Marker Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height No. (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 23.4 N/A H Pk 28.4 N/A H Pk 29.3 N/A H Pk 36.1 N/A H Pk V Pk V Pk 22.1 N/A V Pk 23.4 N/A V Pk 28.4 N/A V Pk 30.8 N/A V Pk 36.1 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Band Reject Path Frequency Reading Factor Filter Factor Lev el (GHz) (dbuv) Detector db db db dbuv/m Limit 47 CFR Part 15 PK, Class B dbuv/m Margin Limit 47 CFR Part 15 AV, Class B Margin Azimuth Height (db) dbuv/m (db) [Degs] [cm] Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection * 1800 MHz not in restricted band. Polarity Page 57 of 80 This report shall not be reproduced except in full, without the written approval of
58 Vertical Polarization Data Middle Channel -40 Prescan Plot Page 58 of 80 This report shall not be reproduced except in full, without the written approval of
59 Middle Channel -40 Data RF Controls A-405, Linear Polarization-Vert TX MiCh MHz 48VDC PoE, Steering -40 Degrees Red:Horizontal Green:Vertical Trace Markers Test Meter Path Band Reject Path Limit 47 CFR Part 15 PK, Limit 47 CFR Part 15 AV, Marker Frequency Reading Factor Filter Factor Lev el Class B Margin Class B Margin Azimuth Height No. (GHz) (dbuv) Detector db db db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 23.4 N/A H Pk 28.4 N/A H Pk 30.5 N/A H Pk 36.4 N/A H Pk 36.1 N/A H Pk V Pk V Pk V Pk 22.1 N/A V Pk 23.4 N/A V Pk 28.3 N/A V Pk 31 N/A V Pk 36.1 N/A V Pk 36.4 N/A V Pk - Peak detector Radiated Emission Data Test Meter Path Frequency Reading Factor (GHz) (dbuv) Detector db Band Reject Path Filter Factor db db Limit 47 CFR Part 15 PK, Lev el Class B Margin dbuv/m dbuv/m (db) Limit 47 CFR Part 15 AV, Class B Margin Azimuth Height dbuv/m (db) [Degs] [cm] Pk H Av H Pk V Av V Pk - Peak detector Av - Av erage detection Polarity * 1800 MHz not in restricted band. Page 59 of 80 This report shall not be reproduced except in full, without the written approval of
60 Middle Channel +40 Prescan Plot Page 60 of 80 This report shall not be reproduced except in full, without the written approval of
61 Middle Channel +40 Data RF Controls A-405, Linear Polarization-Vert TX MiCh MHz 48VDC PoE, Steering +40 Degrees Red:Horizontal Green:Vertical Trace Markers Marker No. Test Frequency (GHz) Meter Reading (dbuv) Detector Path Factor db Band Reject Filter db Path Factor db Lev el dbuv/m Limit 47 CFR Part 15 PK, Class B dbuv/m Margin (db) Limit 47 CFR Part 15 AV, Class B dbuv/m Margin (db) Azimuth [Degs] Pk H Pk H Pk H Pk H Pk 22.1 N/A H Pk 23.4 N/A H Pk 28.4 N/A H Pk 30.9 N/A H Pk 36.1 N/A H Pk V Pk V Pk V Pk 22.1 N/A V Pk 23.4 N/A V Pk 28.4 N/A V Pk 30.7 N/A V Pk 36.4 N/A V Pk - Peak detector Radiated Emission Data Test Frequency (GHz) Pk - Peak detector Meter Reading (dbuv) Detector Path Factor db Band Reject Filter db Path Factor db Lev el dbuv/m Limit 47 CFR Part 15 PK, Class B dbuv/m Margin (db) Limit 47 CFR Part 15 AV, Class B dbuv/m Margin (db) Azimuth [Degs] Height [cm] Height Pk H Av H Pk V Av V Av - Av erage detection * 1800 MHz not in restricted band. [cm] Polarity Polarity Page 61 of 80 This report shall not be reproduced except in full, without the written approval of
62 8.3. RADIATED EMISSIONS BELOW 1 GHz 9kHz 30MHz TX Hopping Mode Scan Page 62 of 80 This report shall not be reproduced except in full, without the written approval of
63 9kHz 30MHz TX Hopping Mode Data RF Controls A-405 TX Hopping Mode 48VDC PoE RED:X, GREEN:Y, CYAN:Z Trace Markers Test Meter Antenna Path Limit FCC Marker Frequency Reading Factor Factor Lev el Margin Azimuth No. (MHz) (dbuv) Detector db/m db dbuv/m dbuv/m (db) [Degs] Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk Pk - Peak detector Page 63 of 80 This report shall not be reproduced except in full, without the written approval of
64 30MHz 1GHz TX Hopping Mode, Scan Page 64 of 80 This report shall not be reproduced except in full, without the written approval of
65 30MHz 1GHz TX Hopping Mode, Data RF Controls A-405 TX Hopping Mode 48VDC PoE RED:Horizontal, GREEN:Vertical Trace Markers Test Meter Antenna Path Marker Frequency Reading Factor Factor No. (MHz) (dbuv) Detector db/m db 10m to 3m Factor db CFR 47 Addiontal Attenuator Lev el Part 15 Class B Margin Azimuth Height db dbuv/m 3m (db) [Degs] [cm] Pk H Pk H Pk H Pk V Pk V Pk V Pk H Pk H Pk H Pk H Pk V Pk V Pk V Pk - Peak detector Radiated Emission Data Test Meter Antenna Path Frequency Reading Factor Factor (MHz) (dbuv) Detector db/m db 10m to 3m Factor db CFR 47 Addiontal Attenuator Lev el Part 15 Class B Margin Azimuth Height db dbuv/m 3m (db) [Degs] [cm] Qp H Qp V Qp H Qp - Quasi-Peak detector Polarity Polarity Page 65 of 80 This report shall not be reproduced except in full, without the written approval of
66 8.4. DIGITAL DEVICE BELOW 1 GHz SPURIOUS EMISSIONS 30 TO 1000 MHz Scan (DIGITAL DEVICE,10Mbps) Page 66 of 80 This report shall not be reproduced except in full, without the written approval of
67 SPURIOUS EMISSIONS 30 TO 1000 MHz Data (DIGITAL DEVICE,10Mbps) RF Controls A-405 Digital Only 10Mbps 48VDC POE RED:Horizontal, GREEN:Vertical Trace Markers Test Meter Antenna Path Limit FCC Part 15 Class A Limit FCC Part 15 Class B Frequency Reading Factor Factor Lev el 10m Margin 10m Margin Azimuth Height Marker No. (MHz) (dbuv) Detector db/m db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk V Pk V Pk V Pk V Pk H Pk H Pk H Pk H Pk V Pk V Pk V Pk - Peak detector Radiated Emission Data Test Meter Antenna Path Limit FCC Part 15 Class A Limit FCC Part 15 Class B Frequency Reading Factor Factor Lev el 10m Margin 10m Margin Azimuth Height (MHz) (dbuv) Detector db/m db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Qp H Qp - Quasi-Peak detector Page 67 of 80 This report shall not be reproduced except in full, without the written approval of
68 SPURIOUS EMISSIONS 30 TO 1000 MHz Scan (DIGITAL DEVICE,100Mbps) Page 68 of 80 This report shall not be reproduced except in full, without the written approval of
69 SPURIOUS EMISSIONS 30 TO 1000 MHz Data (DIGITAL DEVICE,100Mbps) RF Controls A-405 Digital Only 48VDC POE RED:Horizontal, GREEN:Vertical Trace Markers Test Meter Antenna Path Limit FCC Part 15 Class A Limit FCC Part 15 Class B Marker Frequency Reading Factor Factor Lev el 10m Margin 10m Margin Azimuth Height No. (MHz) (dbuv) Detector db/m db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Pk H Pk H Pk H Pk V Pk V Pk V Pk H Pk H Pk H Pk H Pk V Pk V Pk V Pk - Peak detector Radiated Emission Data Test Meter Antenna Path Limit FCC Part 15 Class A Limit FCC Part 15 Class B Frequency Reading Factor Factor Lev el 10m Margin 10m Margin Azimuth Height (MHz) (dbuv) Detector db/m db dbuv/m dbuv/m (db) dbuv/m (db) [Degs] [cm] Polarity Qp H Qp - Quasi-Peak detector Page 69 of 80 This report shall not be reproduced except in full, without the written approval of
70 9. AC POWER LINE CONDUCTED EMISSIONS LIMITS FCC (a) RSS-Gen TEST PROCEDURE The EUT is placed on a non-conducting table 40 cm from the vertical ground plane and 80 cm above the horizontal ground plane. The EUT is configured in accordance with ANSI C The receiver is set to a resolution bandwidth of 9 khz. Peak detection is used unless otherwise noted as quasi-peak or average. Line conducted data is recorded for both NEUTRAL and HOT lines. RESULTS Compliant Page 70 of 80 This report shall not be reproduced except in full, without the written approval of
71 Line Conducted Emissions Scans, 10Mbps Neutral Line Page 71 of 80 This report shall not be reproduced except in full, without the written approval of
72 Line Conducted Emissions Data, 10Mbps RF Controls A Mbps 48VDC PoE QP=Red CaV=Grn Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading (db(uvolts)) (MHz) (db) (db) ============================================================================================================== Line dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) Neutral dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) LIMIT 1: CISPR 22/11 Group 1 Class A QP LIMIT 2: CISPR 22/11 Group 1 Class A AV LIMIT 3: CISPR 22/11 Group 1 Class B QP LIMIT 4: CISPR 22/11 Group 1 Class B AV Qp - Quasi-Peak detector RMS - RMS detection Page 72 of 80 This report shall not be reproduced except in full, without the written approval of
73 Line Conducted Emissions Scans 100Mbps Neutral Line Page 73 of 80 This report shall not be reproduced except in full, without the written approval of
74 Line Conducted Emissions Data, 100Mbps RF Controls A Mbps 48VDC PoE QP=Red CaV=Grn Trace Markers Test Meter Transducer Gain/Loss Corrected Limit: No. Frequency Reading Factor Factor Reading (db(uvolts)) (MHz) (db) (db) ============================================================================================================== Line dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) Neutral dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) dBuV Qp Margin (db) dBuV Ca Margin (db) LIMIT 1: CISPR 22/11 Group 1 Class A QP LIMIT 2: CISPR 22/11 Group 1 Class A AV LIMIT 3: CISPR 22/11 Group 1 Class B QP LIMIT 4: CISPR 22/11 Group 1 Class B AV Qp - Quasi-Peak detector RMS - RMS detection Page 74 of 80 This report shall not be reproduced except in full, without the written approval of
75 10. SETUP PHOTOS Antenna Port Measurements Page 75 of 80 This report shall not be reproduced except in full, without the written approval of
76 Radiated emissions 9kHz 30MHz Page 76 of 80 This report shall not be reproduced except in full, without the written approval of
77 Radiated Emissions below 30MHz - 1GHz Page 77 of 80 This report shall not be reproduced except in full, without the written approval of
78 Antenna Gain Measurements Antenna Gain Substitution Measurements Page 78 of 80 This report shall not be reproduced except in full, without the written approval of
79 Radiated Emissions above 1GHz Page 79 of 80 This report shall not be reproduced except in full, without the written approval of
80 Line Conducted Emissions *Setup shown in the photo is for the EU Telecomuunication Port Conducted Emissions testing. For FCC the ISN was no in the circuit and the blue Ethernet line with the ferrite on was connected directly to the PoE adapter on the table. END OF REPORT Page 80 of 80 This report shall not be reproduced except in full, without the written approval of
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