Radiated Emission
Radiated Emission
for
DOT 4459 B41K (KRY 901 502/1) and DOT 4469 B41K (KRY 901 502/2)
(with NR and LTE)
15.109 / 6.2 Radiated Emissions (RE) FCC Part 15 / ANSI C63.4 Pass 3.2
15.107 / 6.1 Conducted Emissions (CE) for AC Power FCC Part 15 / ANSI C63.4 NA NA
27.53(m)(2) Transmitter Spurious Emissions (RE) FCC Part 27 / ANSI C63.26 Pass 3.2
––––––––-––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––
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Radiated Emissions Test Report for 7169010316-TR-EMC-01-01-F15
DOT 4459 B41K (KRY 901 502/1) and DOT 4469 B41K Prepared for: Ericsson Canada
(KRY 901 502/2)
Approvals
Function Name Job title Signature
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Accreditations
The test facilities of TÜV SÜD Canada Inc are accredited by the American Association for Laboratory
Accreditation (A2LA) to ISO/IEC 17025:2017 in accordance with the scope of accreditation outlined at
the website portal.a2la.org/scopepdf/2955-19.pdf.
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.
A2LA Cert. No. 2955.19 ACCREDITATION
Our A2LA Accreditation does not cover opinions and interpretations and any expressed are outside the scope of our
A2LA Accreditation.
The Canadian lab registration number associated with the TÜV SÜD test facilities is 24015.
Customer information
Company name Ericsson Canada
Mailing address 349 Terry Fox Drive, Ottawa, On, K2K 2V6, Canada
Primary contact Denis Lalonde
Title Team Leader RA Verification
Phone 613-790-2901
E-mail Denis.lalonde@ericsson.com
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Table of contents
About this document ................................................................................................................................. 2
1. Executive summary ............................................................................................................................ 9
1.1 Compliance summary ................................................................................................................... 10
2. Details of the equipment under test ................................................................................................ 11
2.1 Assessed hardware ........................................................................................................................ 11
2.2 Product overview .......................................................................................................................... 11
2.3 Product port definition and EUT cable information ..................................................................... 14
2.4 Configurations of the EUT............................................................................................................ 15
2.4.1 Configuration 1: Dot 4469 B41K with IRU 1648 ................................................................ 15
2.4.1.1 Radiated Emissions Single RAT/Single Carrier Configurations (LTE) ...................... 16
2.4.1.2 Radiated Emissions Single RAT / Single Carrier Configurations (NR) ..................... 17
2.4.1.3 Radiated Emissions Single RAT / Multi Carriers Configurations (LTE) ................... 18
2.4.1.4 Radiated Emissions Multi RAT/Multi Carrier Configuration MR (LTE + NR) ......... 19
2.4.2 Configuration 2: Dot 4469 B41K with IRU 1649 ................................................................ 20
2.4.2.1 Radiated Emissions Multi RAT/Multi Carrier Configuration MR (LTE + NR) – Cfg 2
20
2.5 Modifications of the EUT during testing ...................................................................................... 21
2.6 Inventory of the EUT and support equipments ............................................................................. 21
3. Detailed test results of Emissions .................................................................................................... 22
3.1 Measurement instrumentation ....................................................................................................... 22
3.2 Radiated Emissions, E-field .......................................................................................................... 23
3.2.1 Test specification and limits ................................................................................................. 23
3.2.2 Test procedure ....................................................................................................................... 23
3.2.3 Calculation of the compliance margin .................................................................................. 25
3.2.4 Measurement uncertainties ................................................................................................... 25
3.2.5 Test results of RE – (Single RAT/Single Carrier (LTE) – Bottom channel) ........................ 26
3.2.6 Test results of RE – (Single RAT/Single Carrier (LTE) – Middle channel) ........................ 31
3.2.7 Test results of RE – (Single RAT/Single Carrier (LTE) – Top channel) ............................. 37
3.2.8 Test results of RE – (Single RAT/Single Carrier (NR) – Middle channel) .......................... 42
3.2.9 Test results of RE – (Single RAT / Multi Carrier (LTE) – Mid channel) ............................ 48
3.2.10 Test results of RE – (Multi RAT / Multi Carrier – Mid channel) – Cfg 1 ............................ 53
3.2.11 Test results of RE – (Multi RAT / Multi Carrier – Mid channel) – Cfg 2 ............................ 59
3.2.12 Radiated Emissions test setup pictures ................................................................................. 65
3.2.13 Test equipment ...................................................................................................................... 69
3.2.14 Test conclusion ..................................................................................................................... 69
4. References ......................................................................................................................................... 70
4.1 Appendix A: Abbreviations .......................................................................................................... 71
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List of figures
Figure 1: The EUT with four Internal RF ports, Dot 4459 B41K ............................................................ 11
Figure 2: The EUT with four external RF ports, Dot 4469 B41K ............................................................ 12
Figure 3: Test configuration 1 for Emission tests ..................................................................................... 15
Figure 4: Carrier detail – Single RAT /Single carrier (LTE) .................................................................... 16
Figure 5: Tested carrier detail, Single RAT /Single carrier (LTE) – SC 1 ............................................... 16
Figure 6: Carrier detail – Single RAT / Single carrier (NR)..................................................................... 17
Figure 7: Carrier detail – Single RAT / Multi carrier (LTE) .................................................................... 18
Figure 8: Carrier detail – MultiCarrier / Multi RAT Configuration ......................................................... 19
Figure 9: Test configuration 2 for Emission tests ..................................................................................... 20
Figure 10: Carrier detail – MultiCarrier / Multi RAT Configuration ....................................................... 20
Figure 11: Setup of Radiated Emissions ................................................................................................... 24
Figure 12: Plot of RE at 3 m – 30 to1000 MHz (LTE – Bottom channel) ............................................... 27
Figure 13: Plot of RE at 3m from 1 to 3 GHz (LTE – Bottom channel) .................................................. 28
Figure 14: Plot of RE at 3m from 3 to 10 GHz (LTE – Bottom channel) ................................................ 29
Figure 15: Plot of RE at 3m from 10 to 18 GHz (LTE – Bottom channel) .............................................. 30
Figure 16: Plot of RE at 3 m – 30 to1000 MHz (LTE – Middle channel) ................................................ 32
Figure 17: Plot of RE at 3m from 1 to 3 GHz (LTE – Middle channel) ................................................... 33
Figure 18: Plot of RE at 3m from 3 to 10 GHz (LTE – Middle channel) ................................................. 34
Figure 19: Plot of RE at 3m from 10 to 18 GHz (LTE – Middle channel) ............................................... 35
Figure 20: Plot of RE at 1m from 18 to 26.5 GHz (LTE – Middle channel) ............................................ 36
Figure 21: Plot of RE at 1m from 26.5 to 40 GHz (LTE – Middle channel) ............................................ 36
Figure 22: Plot of RE at 3 m – 30 to1000 MHz (LTE – Top channel) ..................................................... 38
Figure 23: Plot of RE at 3m from 1 to 3 GHz (LTE – Top channel) ........................................................ 39
Figure 24: Plot of RE at 3m from 3 to 10 GHz (LTE – Top channel) ...................................................... 40
Figure 25: Plot of RE at 3m from 10 to 18 GHz (LTE – Top channel) .................................................... 41
Figure 26: Plot of RE at 3 m – 30 to1000 MHz (NR – Middle channel).................................................. 43
Figure 27: Plot of RE at 3m from 1 to 3 GHz (NR – Middle channel) .................................................... 44
Figure 28: Plot of RE at 3m from 3 to 10 GHz (NR – Middle channel) .................................................. 45
Figure 29: Plot of RE at 3m from 10 to 18 GHz (NR – Middle channel) ................................................ 46
Figure 30: Plot of RE at 1m from 18 to 26.5 GHz (NR – Middle channel) ............................................. 47
Figure 31: Plot of RE at 1m from 26.5 to 40 GHz (NR – Middle channel) ............................................. 47
Figure 32: Plot of RE at 3 m – 30 to1000 MHz (MC LTE – Mid channel) ............................................. 49
Figure 33: Plot of RE at 3m from 1 to 3 GHz (MC LTE – Mid channel) ................................................ 50
Figure 34: Plot of RE at 3m from 3 to 10 GHz (MC LTE – Mid channel) .............................................. 51
Figure 35: Plot of RE at 3m from 10 to 18 GHz (MC LTE – Mid channel) ............................................ 52
Figure 36: Plot of RE at 3 m from 30 to 1000 MHz (MR (LTE + NR) – Mid channel) .......................... 54
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Figure 37: Plot of RE at 3m from 1 to 3 GHz (MR (LTE + NR) – Mid channel) .................................... 55
Figure 38: Plot of RE at 3m from 3 to 10 GHz (MR (LTE + NR) – Mid channel) .................................. 56
Figure 39: Plot of RE at 3m from 10 to 18 GHz (MR (LTE + NR) – Mid channel) ................................ 57
Figure 40: Plot of RE at 1m from 18 to 26.5 GHz (MR (LTE + NR) – Mid channel) ............................. 58
Figure 41: Plot of RE at 1m from 26.5 to 40 GHz (MR (LTE + NR) – Mid channel) ............................. 58
Figure 42: Plot of RE at 3 m from 30 to 1000 MHz (MR (LTE + NR) – Mid ch) – Cfg 2 ...................... 60
Figure 43: Plot of RE at 3m from 1 to 3 GHz (MR (LTE + NR) – Mid ch) – Cfg 2................................ 61
Figure 44: Plot of RE at 3m from 3 to 10 GHz (MR (LTE + NR) – Mid ch) – Cfg 2.............................. 62
Figure 45: Plot of RE at 3m from 10 to 18 GHz (MR (LTE + NR) – Mid ch) – Cfg 2............................ 63
Figure 46: Plot of RE at 1m from 18 to 26.5 GHz (MR (LTE + NR) – Mid ch) – Cfg 2 ........................ 64
Figure 47: Plot of RE at 1m from 26.5 to 40 GHz (MR (LTE + NR) – Mid ch) – Cfg 2 ........................ 64
Figure 48: Setup for RE tests - Close up (Configuration 1) ..................................................................... 65
Figure 49: Setup for RE tests - Close up (Configuration 2) ..................................................................... 66
Figure 50: Setup for RE tests at 30 MHz to 1 GHz – Configuration 1 ..................................................... 67
Figure 51: Setup for RE tests for above 1 GHz – Configuration 2 ........................................................... 68
List of tables
Table 1: Summary of test results for the USA; FCC Part 15 subpart B ................................................... 10
Table 2: Summary of test results for the USA; FCC Part 27 subpart C ................................................... 10
Table 3: Assessed hardware ...................................................................................................................... 11
Table 4: EUT info ..................................................................................................................................... 13
Table 5: System port definition Dot 4469 B41K ...................................................................................... 14
Table 6: Inventory of the EUT – Configuration 1 .................................................................................... 21
Table 7: Inventory of the EUT – Configuration 2 .................................................................................... 21
Table 8: RE test requirements ................................................................................................................... 23
Table 9: RE limits at 10 m for Class B of FCC ........................................................................................ 23
Table 10: Emission limits for FCC Part 27 ............................................................................................... 23
Table 11: RE test results from 30 to 1000 MHz for FCC Part 15 (LTE – Bottom channel) .................... 27
Table 12: RE test results from 30 to 1000 MHz for FCC Part 27 (LTE – Bottom channel) .................... 27
Table 13: RE test results from 1 to 3 GHz for FCC Part 15 (LTE – Bottom channel) ............................. 28
Table 14: RE test results from 1 to 3 GHz for FCC Part 27 (LTE – Bottom channel) ............................. 28
Table 15: RE test results from 3 to 10 GHz for FCC Part 15 (LTE – Bottom channel) ........................... 29
Table 16: RE test results from 3 to 10 GHz for FCC Part 27 (LTE – Bottom channel) ........................... 29
Table 17: RE test results from 10 to 18 GHz for FCC Part 15 (LTE – Bottom channel) ......................... 30
Table 18: RE test results from 10 to 18 GHz (LTE – Bottom channel) ................................................... 30
Table 19: RE test results from 30 to 1000 MHz for FCC Part 15 (LTE – Middle channel) .................... 32
Table 20: RE test results from 30 to 1000 MHz for FCC Part 27 (LTE – Middle channel) .................... 32
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Table 21: RE test results from 1 to 3 GHz for FCC Part 15 (LTE – Middle channel) ............................. 33
Table 22: RE test results from 1 to 3 GHz for FCC Part 27 (LTE – Middle channel) ............................. 33
Table 23: RE test results from 3 to 10 GHz for FCC Part 15 (LTE – Middle channel) ........................... 34
Table 24: RE test results from 3 to 10 GHz for FCC Part 27 (LTE – Middle channel) ........................... 34
Table 25: RE test results from 10 to 18 GHz for FCC Part 15 (LTE – Middle channel) ......................... 35
Table 26: RE test results from 10 to 18 GHz (LTE – Middle channel) .................................................... 35
Table 27: RE test results from 30 to 1000 MHz for FCC Part 15 (LTE – Top channel).......................... 38
Table 28: RE test results from 30 to 1000 MHz for FCC Part 27 (LTE – Top channel).......................... 38
Table 29: RE test results from 1 to 3 GHz for FCC Part 15 (LTE – Top channel) .................................. 39
Table 30: RE test results from 1 to 3 GHz for FCC Part 27 (LTE – Top channel) .................................. 39
Table 31: RE test results from 3 to 10 GHz for FCC Part 15 (LTE – Top channel) ................................ 40
Table 32: RE test results from 3 to 10 GHz for FCC Part 27 (LTE – Top channel) ................................ 40
Table 33: RE test results from 10 to 18 GHz for FCC Part 15 (LTE – Top channel) .............................. 41
Table 34: RE test results from 10 to 18 GHz (LTE – Top channel) ......................................................... 41
Table 35: RE test results from 30 to 1000 MHz for FCC Part 15 (NR – Middle channel) ...................... 43
Table 36: RE test results from 30 to 1000 MHz for FCC Part 27 (NR – Middle channel) ...................... 43
Table 37: RE test results from 1 to 3 GHz for FCC Part 15 (NR – Middle channel) ............................... 44
Table 38: RE test results from 1 to 3 GHz for FCC Part 27 (NR – Middle channel) ............................... 44
Table 39: RE test results from 3 to 10 GHz for FCC Part 15 (NR – Middle channel) ............................. 45
Table 40: RE test results from 3 to 10 GHz for FCC Part 27 (NR – Middle channel) ............................. 45
Table 41: RE test results from 10 to 18 GHz for FCC Part 15 (NR – Middle channel) ........................... 46
Table 42: RE test results from 10 to 18 GHz (NR – Middle channel)...................................................... 46
Table 43: RE test results from 30 to 1000 MHz for FCC Part 15 (MC LTE – Mid channel) .................. 49
Table 44: RE test results from 30 to 1000 MHz for FCC Part 27 (MC LTE – Mid channel) .................. 49
Table 45: RE test results from 1 to 3 GHz for FCC Part 15 (MC LTE – Mid channel) ........................... 50
Table 46: RE test results from 1 to 3 GHz for FCC Part 27 (MC LTE – Mid channel) ........................... 50
Table 47: RE test results from 3 to 10 GHz for FCC Part 15 (MC LTE – Mid channel) ......................... 51
Table 48: RE test results from 3 to 10 GHz for FCC Part 27 (MC LTE – Mid channel) ......................... 51
Table 49: RE test results from 10 to 18 GHz for FCC Part 15 (MC LTE – Mid channel) ....................... 52
Table 50: RE test results from 10 to 18 GHz (MC LTE – Mid channel) ................................................. 52
Table 51: RE test results from 30 to 1000 MHz for FCC Part 15 (MR (LTE + NR) – Mid channel) ...... 54
Table 52: RE test results from 30 to 1000 MHz for FCC Part 27 (MR (LTE + NR) – Mid channel) ...... 54
Table 53: RE test results from 1 to 3 GHz for FCC Part 15 (MR (LTE + NR) – Mid channel) .............. 55
Table 54: RE test results from 1 to 3 GHz for FCC Part 27 (MR (LTE + NR) – Mid channel) .............. 55
Table 55: RE test results from 3 to 10 GHz for FCC Part 15 (MR (LTE + NR) – Mid channel) ............ 56
Table 56: RE test results from 3 to 10 GHz for FCC Part 27 (MR (LTE + NR) – Mid channel) ............ 56
Table 57: RE test results from 10 to 18 GHz for FCC Part 15 (MR (LTE + NR) – Mid channel) .......... 57
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Table 58: RE test results from 10 to 18 GHz (MR (LTE + NR) – Mid channel) ..................................... 57
Table 59: RE test results from 30 to 1000 MHz for FCC Part 15 (MR (LTE + NR) – Mid ch)- Cfg 2 ... 60
Table 60: RE test results from 30 to 1000 MHz for FCC Part 27 (MR (LTE + NR) – Mid ch) – Cfg 2 . 60
Table 61: RE test results from 1 to 3 GHz for FCC Part 15 (MR (LTE + NR) – Mid ch) – Cfg 2 .......... 61
Table 62: RE test results from 1 to 3 GHz for FCC Part 27 (MR (LTE + NR) – Mid ch) – Cfg 2 .......... 61
Table 63: RE test results from 3 to 10 GHz for FCC Part 15 (MR (LTE + NR) – Mid ch) – Cfg 2 ........ 62
Table 64: RE test results from 3 to 10 GHz for FCC Part 27 (MR (LTE + NR) – Mid ch) – Cfg 2 ........ 62
Table 65: RE test results from 10 to 18 GHz for FCC Part 15 (MR (LTE + NR) – Mid ch) – Cfg 2 ...... 63
Table 66: RE test results from 10 to 18 GHz (MR (LTE + NR) – Mid ch) – Cfg 2................................. 63
Table 67: Test equipment used for RE ..................................................................................................... 69
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1. Executive summary
This document reports the Electromagnetic Compatibility (EMC) testing performed on the product
called DOT 4459 B41K (KRY 901 502/1) and DOT 4469 B41K (KRY 901 502/2) for Ericsson Canada
per project number 7169010316. The objective of the test activities is to evaluate compliance of the
product to following EMC regulatory standards.
The DOT 4459 B41K (KRY 901 502/1) and DOT 4469 B41K (KRY 901 502/2) is verified to comply
with the Class B Emissions requirements of these standards:
• FCC Part 15 Subpart B [5] (Class B)
• FCC Part 27 [7] (Digital Base Stations, Section - 27.53(m)(2))
Information about the test result summary and, the equipment under test (EUT) is in the sections:
• Compliance summary
• Details of the equipment under test
• Detailed test results of Emissions
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FCC Results in
Description Specification/Method Pass or Fail
Section section
15.109 Radiated Emissions (RE) FCC Part 15/ANSI C63.4 Pass 3.2
15.107 Conducted Emissions (CE) for AC Power FCC Part 15/ANSI C63.4 NA NA
Table Notes
Table 2: Summary of test results for the USA; FCC Part 27 subpart C
FCC Results in
Description Specification/Method Pass or Fail
Section section
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DOT 4459 B41K, with internal Antenna port KRY 901 502/1
DOT 4469 B41K, with External Antenna port KRY 901 502/2
Table Notes
1. The 2 units above use the same pcb and hardware. The only difference between the units is the presence
of the internal/external antennas. There fore all EMC tests were done only on the external port variant.
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Figure 2: The EUT with four external RF ports, Dot 4469 B41K
The 2 units above use the same pcb and hardware. The only difference between the units is the presence
of the internal/external antennas. There fore all EMC tests were done only on the external port variant;
configurations of the DOT 4469 B41K (KRY 901 502/2) that was tested is shown in the section
Configurations of the EUT. The EUT was tested in a tabletop setting.
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Port Name Port Description Port Type Interface Detail Plug-Cable Type
RJ45 Digital RDI / DC Power Input Telecom / DC Power ethernet RJ-45, CAT6A
10/25 Gbs, optical
SFP+ Digital RDI, Optical SFP+ Optical SFP SFP+, RDH 102 65/2,
fiber, LC
3A, 3B, 4A,4B RF to antenna B41K Antenna RF SMA, Coax >3m
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Following RAT/carrier configurations were tested during this Radiated Emissions evaluations for
configuration 1.
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Radiated Emissions measurements were compared between above 4 LTE carrier setups. SC1 was found
to have higher emissions than SC2, SC3 and SC4. Single RAT/Single carrier LTE in this report are
therefore measured using SC1 Bottom, Middle and Top channel carrier setup. Tested carrier/frequency
detail in Figure 5: Tested carrier detail, Single RAT /Single carrier (LTE) – SC 1.
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Note: Radiated Emissions measurements were compared between above 8 NR carrier setups. SC5 was
found to have higher emissions than SC6, SC7, SC8, SC9, SC10, SC11, and SC12. All plots with single
NR carrier in this report are therefore measured using SC5 Middle channel carrier setup.
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Note: Radiated Emissions measurements were compared between MC1, MC2 and MC3. MC1 was
found to have higher emissions. All plots with Single RAT/Multi carrier in this report are therefore
measured using MC1 middle carrier setups.
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Note: Radiated Emissions measurements were compared between MR1, and MR2. MR1 was found to
have higher emissions than MR2. All plots with Multi RAT/Multi carrier in this report are therefore
measured using MR1 Middle channel carrier configuration.
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Following RAT/carrier configurations were tested during this Radiated Emissions evaluations for
configuration 2.
2.4.2.1 Radiated Emissions Multi RAT/Multi Carrier Configuration MR (LTE + NR) – Cfg 2
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Product Product
Equipment Role Product Name Product Number
Release Serial#
EUT DOT 4469 KRY 901 502/2 R1C TD3W150452
Product Product
Equipment Role Product Name Product Number
Release Serial#
EUT DOT 4469 KRY 901 502/2 R1C TD3W150452
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(frequency and amplitude). This procedure was repeated for antenna heights of 1 to 4 m, as well as
both polarizations of the receiving antenna.
• For tests above 1 GHz the receive antenna (horn) was placed 3 m away from the EUT. Absorbing
cones were placed on the floor between the antenna and the EUT. An initial scan was performed to
find emissions/frequencies requiring detailed measurement. The pre-scan was performed by rotating
the system 360 degrees while recording all emissions (frequency and amplitude). This procedure was
repeated for antenna heights of 1 to 4 m, as well as both polarizations of the receiving antenna.
• For tests between 18 and 40 GHz the receive horn antenna was placed at a 1 m distance from the
EUT with the absorbing cones placed on the floor. An initial scan was performed to find
emissions/frequencies requiring detail measurement. The pre-scan was performed on all sides of the
EUT, using both polarization of the receive antenna to find any system emissions.
• For all above frequency ranges, the pre-scan peak data was compared to the limits. Peaks with less
than 6 dB of margin were maximized using the proper detector: the EUT was rotated in azimuth over
360 degrees to identify the direction of maximum emission, antenna height was then varied from 1
to 4 m to obtain maximum emission level.
Figure 11: Setup of Radiated Emissions
Rotation
1-4 m
Bilog
EUT
Control Room
Receiver
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50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 11: RE test results from 30 to 1000 MHz for FCC Part 15 (LTE – Bottom channel)
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
52.59054454 15.91 40.00 -24.09 1.23 357.50 Vertical -14.89
66.35709008 15.72 40.00 -24.28 3.89 333.75 Vertical -16.35
66.35692982 13.84 40.00 -26.16 2.36 333.75 Horizontal -16.35
361.4040097 18.64 46.02 -27.38 2.79 341.75 Horizontal -4.85
Table 12: RE test results from 30 to 1000 MHz for FCC Part 27 (LTE – Bottom channel)
Margin to
Frequency Level Limit EIRP Height Azimuth Correction
EIRP Limit Polarization
(MHz) (dBµV) (dBµV) (m) (deg) (dB)
(dB)
52.59054454 15.91 82.2 - 66.29 1.23 357.50 Vertical -14.89
66.35709008 15.72 82.2 - 66.48 3.89 333.75 Vertical -16.35
66.35692982 13.84 82.2 - 68.36 2.36 333.75 Horizontal -16.35
361.4040097 18.64 82.2 - 63.56 2.79 341.75 Horizontal -4.85
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
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70
50
30
10
0
1GHz 3GHz
Frequency
Note: Peak above the limit is leakage of the EUT’s fundamentals from the 50-ohm terminations.
Table 13: RE test results from 1 to 3 GHz for FCC Part 15 (LTE – Bottom channel)
Table 14: RE test results from 1 to 3 GHz for FCC Part 27 (LTE – Bottom channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
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60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 15: RE test results from 3 to 10 GHz for FCC Part 15 (LTE – Bottom channel)
Table 16: RE test results from 3 to 10 GHz for FCC Part 27 (LTE – Bottom channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
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60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 17: RE test results from 10 to 18 GHz for FCC Part 15 (LTE – Bottom channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 19: RE test results from 30 to 1000 MHz for FCC Part 15 (LTE – Middle channel)
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
Table 20: RE test results from 30 to 1000 MHz for FCC Part 27 (LTE – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
70
50
30
10
0
1GHz 3GHz
Frequency
Note: Peak above the limit is leakage of the EUT’s fundamentals from the 50-ohm terminations.
Table 21: RE test results from 1 to 3 GHz for FCC Part 15 (LTE – Middle channel)
Table 22: RE test results from 1 to 3 GHz for FCC Part 27 (LTE – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 23: RE test results from 3 to 10 GHz for FCC Part 15 (LTE – Middle channel)
Table 24: RE test results from 3 to 10 GHz for FCC Part 27 (LTE – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 25: RE test results from 10 to 18 GHz for FCC Part 15 (LTE – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
50
40
30
20
10
0
18GHz 26.5GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
60
50
40
30
20
10
0
26.5GHz 40GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 27: RE test results from 30 to 1000 MHz for FCC Part 15 (LTE – Top channel)
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
Table 28: RE test results from 30 to 1000 MHz for FCC Part 27 (LTE – Top channel)
Margin to
Frequency Level Limit EIRP Height Azimuth Correction
EIRP Limit Polarization
(MHz) (dBµV) (dBµV) (m) (deg) (dB)
(dB)
37.87731377 13.74 82.2 -68.46 3.68 120.00 Vertical -7.06
52.50315992 14.28 82.2 -67.92 2.44 355.00 Horizontal -14.86
66.35696762 14.75 82.2 -67.45 2.25 334.00 Horizontal -16.35
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
70
50
30
10
0
1GHz 3GHz
Frequency
Table 29: RE test results from 1 to 3 GHz for FCC Part 15 (LTE – Top channel)
Table 30: RE test results from 1 to 3 GHz for FCC Part 27 (LTE – Top channel)
Margin to
Frequency Level Limit EIRP Height Azimuth Correction
EIRP Limit Polarization
(MHz) (dBµV) (dBµV) (m) (deg) (dB)
(dB)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 31: RE test results from 3 to 10 GHz for FCC Part 15 (LTE – Top channel)
Table 32: RE test results from 3 to 10 GHz for FCC Part 27 (LTE – Top channel)
Margin to
Frequency Level Limit EIRP Height Azimuth Correction
EIRP Limit Polarization
(MHz) (dBµV) (dBµV) (m) (deg) (dB)
(dB)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 33: RE test results from 10 to 18 GHz for FCC Part 15 (LTE – Top channel)
Margin to
Frequency Level Limit EIRP Height Azimuth Correction
EIRP Limit Polarization
(MHz) (dBµV) (dBµV) (m) (deg) (dB)
(dB)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 35: RE test results from 30 to 1000 MHz for FCC Part 15 (NR – Middle channel)
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
Table 36: RE test results from 30 to 1000 MHz for FCC Part 27 (NR – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
70
50
30
10
0
1GHz 3GHz
Frequency
Note: Peak above the limit is leakage of the EUT’s fundamentals from the 50-ohm terminations.
Table 37: RE test results from 1 to 3 GHz for FCC Part 15 (NR – Middle channel)
Table 38: RE test results from 1 to 3 GHz for FCC Part 27 (NR – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 39: RE test results from 3 to 10 GHz for FCC Part 15 (NR – Middle channel)
Table 40: RE test results from 3 to 10 GHz for FCC Part 27 (NR – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 41: RE test results from 10 to 18 GHz for FCC Part 15 (NR – Middle channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
50
40
30
20
10
0
18GHz 26.5GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
60
50
40
30
20
10
0
26.5GHz 40GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
3.2.9 Test results of RE – (Single RAT / Multi Carrier (LTE) – Mid channel)
Test location: 10-meter Ambient Free Chamber (AFC)
Date tested: 15 - 20 September 2021
Tested by: Steve Mcfarlane
Test configurations are listed as MC LTE in 2.4.1.3 as identified in the section Configurations of the
EUT. For the following test results that have supporting data tables, negative margin values indicate a
pass.
Red trace – Vertical antenna polarity, Blue trace – Horizonatal antenna polarity
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 43: RE test results from 30 to 1000 MHz for FCC Part 15 (MC LTE – Mid channel)
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
Table 44: RE test results from 30 to 1000 MHz for FCC Part 27 (MC LTE – Mid channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
70
50
30
10
0
1GHz 3GHz
Frequency
Note: Peak above the limit is leakage of the EUT’s fundamentals from the 50-ohm terminations.
Table 45: RE test results from 1 to 3 GHz for FCC Part 15 (MC LTE – Mid channel)
Table 46: RE test results from 1 to 3 GHz for FCC Part 27 (MC LTE – Mid channel)
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 47: RE test results from 3 to 10 GHz for FCC Part 15 (MC LTE – Mid channel)
Table 48: RE test results from 3 to 10 GHz for FCC Part 27 (MC LTE – Mid channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 49: RE test results from 10 to 18 GHz for FCC Part 15 (MC LTE – Mid channel)
Table 50: RE test results from 10 to 18 GHz (MC LTE – Mid channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
3.2.10 Test results of RE – (Multi RAT / Multi Carrier – Mid channel) – Cfg 1
Test location: 10-meter Ambient Free Chamber (AFC)
Date tested: 15 - 20 September 2021
Tested by: Steve Mcfarlane
Test configurations are listed as MR (LTE + NR) in 2.4.1.4 as identified in the section Configurations of
the EUT. For the following test results that have supporting data tables, negative margin values indicate
a pass.
Red trace – Vertical antenna polarity, Blue trace – Horizonatal antenna polarity
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 36: Plot of RE at 3 m from 30 to 1000 MHz (MR (LTE + NR) – Mid channel)
60
dBµV/m FCC Part 15 Subpart B B - QPeak/3.0m/
55
50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 51: RE test results from 30 to 1000 MHz for FCC Part 15 (MR (LTE + NR) – Mid channel)
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
Table 52: RE test results from 30 to 1000 MHz for FCC Part 27 (MR (LTE + NR) – Mid channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 37: Plot of RE at 3m from 1 to 3 GHz (MR (LTE + NR) – Mid channel)
90
dBµV/m
70
50
30
10
0
1GHz 3GHz
Frequency
Note: Peak above the limit is leakage of the EUT’s fundamentals from the 50-ohm terminations.
Table 53: RE test results from 1 to 3 GHz for FCC Part 15 (MR (LTE + NR) – Mid channel)
Table 54: RE test results from 1 to 3 GHz for FCC Part 27 (MR (LTE + NR) – Mid channel)
Limit
Frequency Level Margin to Height Azimuth Correction
EIRP Polarization
(MHz) (dBµV) EIRP Limit (dB) (m) (deg) (dB)
(dBµV)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 38: Plot of RE at 3m from 3 to 10 GHz (MR (LTE + NR) – Mid channel)
80
dBµV/m
60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 55: RE test results from 3 to 10 GHz for FCC Part 15 (MR (LTE + NR) – Mid channel)
Table 56: RE test results from 3 to 10 GHz for FCC Part 27 (MR (LTE + NR) – Mid channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 39: Plot of RE at 3m from 10 to 18 GHz (MR (LTE + NR) – Mid channel)
80
dBµV/m
70
60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 57: RE test results from 10 to 18 GHz for FCC Part 15 (MR (LTE + NR) – Mid channel)
Table 58: RE test results from 10 to 18 GHz (MR (LTE + NR) – Mid channel)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 40: Plot of RE at 1m from 18 to 26.5 GHz (MR (LTE + NR) – Mid channel)
80
dBµV/m
70
FCC Part 15 Subpart B B - Average/1.0m/
60
50
40
30
20
10
0
18GHz 26.5GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
Figure 41: Plot of RE at 1m from 26.5 to 40 GHz (MR (LTE + NR) – Mid channel)
80
dBµV/m
70
FCC Part 15 Subpart B B - Average/1.0m/
60
50
40
30
20
10
0
26.5GHz 40GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
3.2.11 Test results of RE – (Multi RAT / Multi Carrier – Mid channel) – Cfg 2
Test location: 10-meter Ambient Free Chamber (AFC)
Date tested: 15 - 20 September 2021
Tested by: Steve Mcfarlane
Test configurations are listed as MR (LTE + NR) in 2.4.2.1 as identified in the section Configurations of
the EUT. For the following test results that have supporting data tables, negative margin values indicate
a pass.
Red trace – Vertical antenna polarity, Blue trace – Horizonatal antenna polarity
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 42: Plot of RE at 3 m from 30 to 1000 MHz (MR (LTE + NR) – Mid ch) – Cfg 2
60
dBµV/m FCC Part 15 Subpart B B - QPeak/3.0m/
55
50
45
40
35
30
25
20
15
10
0
30MHz 100M 1GHz
Frequency
Table 59: RE test results from 30 to 1000 MHz for FCC Part 15 (MR (LTE + NR) – Mid ch)- Cfg 2
Limit Margin to
Frequency Level Height Azimuth Correction
Quasi-peak FCC part 15 Polarization
(MHz) (dBµV) (m) (deg) (dB)
(dBµV) Class B (dB)
66.35676956 22.31 40.00 -17.69 1.56 240.00 Vertical -16.35
434.8243877 25.41 46.02 -20.61 1.14 268.75 Vertical -3.59
958.3718174 24.35 46.02 -21.67 1.65 327.75 Vertical 5.91
34.04935931 15.71 40.00 -24.29 3.27 74.50 Horizontal -5.00
Table 60: RE test results from 30 to 1000 MHz for FCC Part 27 (MR (LTE + NR) – Mid ch) – Cfg 2
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 43: Plot of RE at 3m from 1 to 3 GHz (MR (LTE + NR) – Mid ch) – Cfg 2
90
dBµV/m
70
50
30
10
0
1GHz 3GHz
Frequency
Note: Peak above the limit is leakage of the EUT’s fundamentals from the 50-ohm terminations.
Table 61: RE test results from 1 to 3 GHz for FCC Part 15 (MR (LTE + NR) – Mid ch) – Cfg 2
Table 62: RE test results from 1 to 3 GHz for FCC Part 27 (MR (LTE + NR) – Mid ch) – Cfg 2
Limit
Frequency Level Margin to Height Azimuth Correction
EIRP Polarization
(MHz) (dBµV) EIRP Limit (dB) (m) (deg) (dB)
(dBµV)
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 44: Plot of RE at 3m from 3 to 10 GHz (MR (LTE + NR) – Mid ch) – Cfg 2
80
dBµV/m
60
FCC Part 15 Subpart B B - Average/3.0m/
40
20
0
3GHz 10GHz
Frequency
Table 63: RE test results from 3 to 10 GHz for FCC Part 15 (MR (LTE + NR) – Mid ch) – Cfg 2
Table 64: RE test results from 3 to 10 GHz for FCC Part 27 (MR (LTE + NR) – Mid ch) – Cfg 2
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m, except for the fundamental. For final spurious emissions measurements to FCC Part 27, see antenna
port conducted emissions in applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 45: Plot of RE at 3m from 10 to 18 GHz (MR (LTE + NR) – Mid ch) – Cfg 2
80
dBµV/m
70
60
FCC Part 15 Subpart B B - Average/3.0m/
50
40
30
20
10
0
10GHz 18GHz
Frequency
Table 65: RE test results from 10 to 18 GHz for FCC Part 15 (MR (LTE + NR) – Mid ch) – Cfg 2
Table 66: RE test results from 10 to 18 GHz (MR (LTE + NR) – Mid ch) – Cfg 2
Note: In the table/Plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted
to dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Figure 46: Plot of RE at 1m from 18 to 26.5 GHz (MR (LTE + NR) – Mid ch) – Cfg 2
80
dBµV/m
70
FCC Part 15 Subpart B B - Average/1.0m/
60
50
40
30
20
10
0
18GHz 26.5GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
Figure 47: Plot of RE at 1m from 26.5 to 40 GHz (MR (LTE + NR) – Mid ch) – Cfg 2
80
dBµV/m
70
FCC Part 15 Subpart B B - Average/1.0m/
60
50
40
30
20
10
0
26.5GHz 40GHz
Frequency
Note 1: In the plot above No Emissions exceeds the FCC Part 15 limit.
Note 2: In the plot above, no emissions exceed the Part 27 radiated spurious emissions limit when converted to
dBuV/m. For final spurious emissions measurements to FCC Part 27, see antenna port conducted emissions in
applicable test report.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
EMC Automation Software Nexio V3.18 BAT-EMC F0163649 Not required Not required
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504504
Coaxial Cable Huber & Suhner ST18/Nm/Nm/36 SSG012786 2021-01-05 2022-01-05
Coaxial Cable Huber & Suhner 101 PEA, Sucoflex SSG012290 2020-11-04 2022-11-04
Horn Antenna (18 - 26.5 GHz) Emco 3160-09 SSG012292 2019-08-26 2021-11-26
Horn Antenna (26.5 - 40 GHz) Emco 3160-10 SSG012294 2019-08-26 2021-11-26
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4. References
The documents, regulations, and standards that are referenced throughout this test report are listed
alphabetically as follows.
1. ANSI C63.2-2009, American National Standards Institute for Electromagnetic Noise and Field
Strength Instrumentation, 10 Hz to 40 GHz – Specifications.
2. ANSI C63.4-2014, American National Standards Institute for Methods of Measurement of Radio-
Noise Emission from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to
40 GHz.
3. CISPR 16 Publications (all parts and sections), Specification for Radio Disturbance and Immunity
Measuring Apparatus and Methods - Part 1: Radio Disturbance and Immunity Measuring
Apparatus.
4. CISPR 22 (2008, +IS 1, + IS 2, + IS 3: 2012), Information technology equipment - Radio
disturbance characteristics - Limits and methods of measurement.
5. FCC Rules for Radio Frequency Devices, Title 47 of the Code of Federal Regulations, Part 2, U.S.
Federal Communications Commission.
6. FCC Rules for Radio Frequency Devices, Title 47 of the Code of Federal Regulations, Part 15
Radio Frequency Devices, U.S. Federal Communications Commission.
7. FCC Rules for Radio Frequency Devices, Title 47 of the Code of Federal Regulations, Part 27
Miscellaneous Wireless Communications Services, U.S. Federal Communications Commission.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
© TÜV SÜD Canada Inc This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc.
Term Definition
h/w hardware
IC Industry Canada
ICES Canadian Specification: ICES-003, Issue 3, “Spectrum Management: Interference-causing equipment standard
(Digital Apparatus)
IEC International Electro Technical Association
ISN Impedance Stabilization Network
LISN Line Impedance Stabilization Network
ms millisecond, unless otherwise specified
NA, na not applicable
PA Broadband Power Amplifier
PK Peak Detector
PS Power Supply
QP Quasi-peak Detector
QPA Quasi-peak Adapter (for the Spectrum Analyzer)
R 100-ohm Injection Resistor (Conducted Immunity)
RBW Resolution Bandwidth
RE Radiated Emissions
RF Radio-Frequency
RI Radiated Immunity
RMS Root-mean-square
s/w software
SA Spectrum Analyzer, the CISPR 16, ANSI C63.2 Compliant EMI meter
SG RF Signal Generator
SGen Surge Generator
STP Shielded Twisted Pair
T 50-ohm Coaxial Termination (Conducted Emissions / Immunity)
TL Transient Limiter
UFA Uniform field Area
VBW Video Bandwidth
VCP Vertical Coupling Plane
VDI Voltage Dips and Short Interruptions
VFF Voltage Fluctuations and Flicker
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End of Document
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© TÜV SÜD Canada Inc
This test report shall not be reproduced except in full, without written approval of TÜV SÜD Canada Inc