SMG975U Multi-band GSM/EDGE/CDMA/UMTS/LTE Phone with Bluetooth, WLAN, RFID and ANT+ Test Report UNII OFDMA 7 Samsung Electronics Co Ltd

Samsung Electronics Co Ltd Multi-band GSM/EDGE/CDMA/UMTS/LTE Phone with Bluetooth, WLAN, RFID and ANT+

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Plot 7-535. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
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Plot 7-536. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
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Plot 7-538. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
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Plot 7-540. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
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Plot 7-541. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
106)
Plot 7-542. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
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Plot 7-543. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 52 Tones (UNII Band 2C) – Ch.
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Plot 7-544. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 52 Tones (UNII Band 3) – Ch.
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Plot 7-545. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 52 Tones (UNII Band 3) – Ch.
157)
Plot 7-546. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 52 Tones (UNII Band 3) – Ch.
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Plot 7-547. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 52 Tones (UNII Band 3) – Ch.
151)
Plot 7-548. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 52 Tones (UNII Band 3) – Ch.
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Plot 7-549. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 52 Tones (UNII Band 3) – Ch.
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Plot 7-551. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 106 Tones (UNII Band 1) – Ch.
40)
Plot 7-552. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 106 Tones (UNII Band 1) – Ch.
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Plot 7-553. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 1) – Ch.
38)
Plot 7-554. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 1) – Ch.
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Plot 7-555. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 106 Tones (UNII Band 1) – Ch.
42)
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Plot 7-557. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 106 Tones (UNII Band 2A) –
Ch. 56)
Plot 7-558. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 106 Tones (UNII Band 2A) –
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Plot 7-559. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 2A) –
Ch. 54)
Plot 7-560. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 2A) –
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Plot 7-561. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 106 Tones (UNII Band 2A) –
Ch. 58)
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Plot 7-563. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 106 Tones (UNII Band 2C) –
Ch. 120)
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Plot 7-565. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 2C) –
Ch. 102)
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Plot 7-567. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 2C) –
Ch. 142)
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Plot 7-569. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 106 Tones (UNII Band 2C) –
Ch. 122)
Plot 7-570. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 106 Tones (UNII Band 2C) –
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Plot 7-575. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 106 Tones (UNII Band 3) – Ch.
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Plot 7-577. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 1) – Ch.
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Plot 7-579. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 1) – Ch.
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Plot 7-581. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 242 Tones (UNII Band 1) – Ch.
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Plot 7-583. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 2A) –
Ch. 52)
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Plot 7-585. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 2A) –
Ch. 64)
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Plot 7-587. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 242 Tones (UNII Band 2A) –
Ch. 62)
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Plot 7-589. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 2C) –
Ch. 100)
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Plot 7-591. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 2C) –
Ch. 144)
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Plot 7-593. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 242 Tones (UNII Band 2C) –
Ch. 118)
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Plot 7-595. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 242 Tones (UNII Band 2C) –
Ch. 106)
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Plot 7-597. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 242 Tones (UNII Band 2C) –
Ch. 138)
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Plot 7-599. Power Spectral Density Plot MIMO ANT2 (20MHz BW 802.11ax – 242 Tones (UNII Band 3) – Ch.
157)
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Plot 7-601. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 242 Tones (UNII Band 3) – Ch.
151)
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Plot 7-603. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 242 Tones (UNII Band 3) – Ch.
155)
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Plot 7-605. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 484 Tones (UNII Band 1) – Ch.
46)
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Plot 7-607. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 484 Tones (UNII Band 2A) –
Ch. 54)
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Plot 7-609. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 484 Tones (UNII Band 2A) –
Ch. 58)
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Plot 7-611. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 484 Tones (UNII Band 2C) –
Ch. 118)
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Plot 7-613. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 484 Tones (UNII Band 2C) –
Ch. 106)
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Plot 7-615. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 484 Tones (UNII Band 2C) –
Ch. 138)
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Plot 7-617. Power Spectral Density Plot MIMO ANT2 (40MHz BW 802.11ax – 484 Tones (UNII Band 3) – Ch.
159)
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Plot 7-619. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 996 Tones (UNII Band 1) – Ch.
42)
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Plot 7-621. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 996 Tones (UNII Band 2C) –
Ch. 106)
Plot 7-622. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 996 Tones (UNII Band 2C) –
Ch. 122)
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Plot 7-623. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 996 Tones (UNII Band 2C) –
Ch. 138)
Plot 7-624. Power Spectral Density Plot MIMO ANT2 (80MHz BW 802.11ax – 996 Tones (UNII Band 3) – Ch.
155)
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Note:
Per ANSI C63.10-2013 Section 14.3.2.2 and KDB 662911 v02r01 Section E)2), the power spectral density at
Antenna 1 and Antenna 2 were first measured separately with reduced Antenna 1 and Antenna 2 powers per
manufacture’s tune-up document. The measured values were then summed in linear power units then converted
back to dBm.
Sample Directional Gain Calculation:
Assuming the antenna gain is -8.61 dBi for Antenna-1 and -7.68 dBi for Antenna-2.
Directional gain = 10 log[(10G1/20 + 10G2/20 + … + 10GN/20)2 / NANT] dBi
= 10 log[(10-8.61/20 + 10-7.68/20 / 2] dBi
= (-5.12) dBi
Sample MIMO Calculation:
Assuming the average conducted power spectral density was measured to be 5.88 dBm for Antenna-1 and 6.27
dBm for Antenna-2.
Antenna 1 + Antenna 2 = MIMO
(5.88 dBm + 6.27 dBm) = (3.87 mW + 4.24 mW) = 8.11mW = 9.09 dBm
Sample e.i.r.p Power Spectral Density Calculation:
Assuming the average MIMO power density was calculated to be 9.09 dBm with directional gain of -5.12 dBi.
e.i.r.p. Power Spectral Density(dBm) = Power Spectral Density (dBm) + directional gain (dBi)
9.09 dBm + (-5.12) dBi = 3.97 dBm
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7.6
Radiated Spurious Emission Measurements – Above 1GHz
§15.407(b) §15.205 §15.209; RSS-Gen [8.9]
Test Overview and Limit
All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna
while the EUT is operating at its maximum duty cycle, at its maximum power control level, as defined in ANSI
C63.10-2013 and KDB 789033 D02 v02r01, and at the appropriate frequencies. All channels, modes (e.g.26 Tones,
52 Toens, 106 Tones, 242 Toens, 484 Tones and 996 Toens), and modulations/data rates were investigated among
all UNII bands. Only the radiated emissions of the configuration that produced the worst case emissions are reported
in this section.
For transmitters operating in the 5.15-5.25 GHz and 5.25-5.35 GHz band: All emissions outside of the 5.155.35 GHz band shall not exceed an EIRP of −27 dBm/MHz.
For transmitters operating in the 5.47-5.725 GHz band: All emissions outside of the 5.47-5.725 GHz band
shall not exceed an EIRP of −27 dBm/MHz.
For transmitters operating in the 5.725-5.85 GHz band: All emissions shall be limited to a level of −27
dBm/MHz at 75 MHz or more above or below the band edge increasing linearly to 10 dBm/MHz at 25 MHz
above or below the band edge, and from 25 MHz above or below the band edge increasing linearly to a level
of 15.6 dBm/MHz at 5 MHz above or below the band edge, and from 5 MHz above or below the band edge
increasing linearly to a level of 27 dBm/MHz at the band edge.
All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR
and Table 6 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-30 per Section 15.209 and RSSGen (8.9).
Frequency
Field Strength
[µV/m]
Measured Distance
[Meters]
500
Above 960.0 MHz
Table 7-117. Radiated Limits
Test Procedures Used
ANSI C63.10-2013 – Sections 12.7.7.2, 12.7.6, 12.7.5
KDB 789033 D02 v02r01 – Section G
Test Settings
Average Measurements above 1GHz (Method AD)
1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest
2. RBW = 1MHz
3. VBW = 3MHz
4. Detector = power average (RMS)
5. Number of measurement points = 1001 (Number of points must be > 2 x span/RBW)
6. Averaging type = power (RMS)
7. Sweep time = auto couple
8. Trace was averaged over 100 sweeps
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Peak Measurements above 1GHz
1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest
2. RBW = 1MHz
3. VBW = 3MHz
4. Detector = peak
5. Sweep time = auto couple
6. Trace mode = max hold
7. Trace was allowed to stabilize
Peak Measurements below 1GHz
1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest
2. Span was set greater than 1MHz
3. RBW = 120kHz
4. Detector = CISPR quasi-peak
5. Sweep time = auto couple
6. Trace was allowed to stabilize
Test Setup
The EUT and measurement equipment were set up as shown in the diagram below.
Figure 7-5. Test Instrument & Measurement Setup
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Test Notes
1. All emissions that lie in the restricted bands (denoted by a * next to the frequency) specified in §15.205 and
Section 8.10 of RSS-Gen are below the limit shown in Table 7-30.
2. All spurious emissions lying in restricted bands specified in §15.205 and Section 8.10 of RSS-Gen are
below the limit shown in Table 7-30. All spurious emissions that do not lie in a restricted band are subject
to a peak limit of -27dBm/MHz. At a distance of 3 meters, the field strength limit in dBµV/m can be
determined by adding a “conversion” factor of 95.2dB to the EIRP limit of -27dBm/MHz to obtain the limit
for out of band spurious emissions of 68.2dBµV/m.
3. The antenna is manipulated through typical positions, polarity and length during the tests. The EUT is
manipulated through three orthogonal planes.
4. This unit was tested with its standard battery.
5. The spectrum is measured from 9kHz to the 10th harmonic of the fundamental frequency of the transmitter
using CISPR quasi peak detector below 1GHz. Above 1 GHz, average and peak measurements were taken
using linearly polarized horn antennas. The worst-case emissions are reported however emissions whose
levels were not within 20dB of the respective limits were not reported.
6. Emissions below 18GHz were measured at a 3 meter test distance while emissions above 18GHz were
measured at a 1 meter test distance with the application of a distance correction factor.
7. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose
of emission identification. Any emissions found to be within 20dB of the limit are fully investigated and the
results are shown in this section.
8. The "-" shown in the following RSE tables are used to denote a noise floor measurement.
9. For radiated measurements, emissions were investigated for the fully-loaded RU configuration and for all
of the partially-loaded RU configurations. Among all of the available partially-loaded RU configurations, only
the configuration with the worst case emissions is reported
Sample Calculations
Determining Spurious Emissions Levels
Field Strength Level [dBµV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
Margin [dB] = Field Strength Level [dBµV/m] – Limit [dBµV/m]
Radiated Band Edge Measurement Offset
The amplitude offset shown in the radiated restricted band edge plots in Section 7.8 was calculated
using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) – Preamplifier Gain
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7.6.1
106 Tones
SISO Antenna-1 Radiated Spurious Emission Measurements
Plot 7-625. Radiated Spurious Plot above 1GHz SISO ANT1 (802.11ax – U1 Ch. 40 – 106 Tones )
Plot 7-626. Radiated Spurious Plot above 1GHz SISO ANT1 (802.11ax – U2A Ch. 56 – 106 Tones)
Plot 7-627. Radiated Spurious Plot above 1GHz SISO ANT1 (802.11ax – U2C Ch. 120 – 106 Tones)
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Plot 7-628. Radiated Spurious Plot above 1GHz SISO ANT1 (802.11ax – U3 Ch. 157 – 106 Tones)
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SISO Antenna-1 Radiated Spurious Emissions Measurements (Above 18GHz)
Plot 7-629. Radiated Spurious Plot 18GHz - 26.5GHz SISO ANT1 (802.11ax – 106 Tones)
Plot 7-630. Radiated Spurious Plot 26.5GHz - 40GHz SISO ANT1 (802.11ax – 106 Tones)
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SISO Antenna-1 Radiated Spurious Emission Measurements (106 Tones)
§15.407(b) §15.205 & §15.209; RSS-Gen [8.9]
Worst Case Mode:
Worst Case Transfer Rate:
RU Index:
Distance of Measurements:
Operating Frequency:
Channel:
Frequency
Detector
[MHz]
Ant.
Pol.
[H/V]
802.11ax (20MHz BW)
MCS0
53
1 & 3 Meters
5180MHz
36
Antenna Turntable Analyzer
Height
Azimuth
Level
[cm]
[degree]
[dBm]
AFCL
[dB/m]
Distance
Field
Limit
Correction Strength
[dBμV
Factor
[dBμV
/m]
[dB]
/m]
Margin
[dB]
10360.00
Peak
-71.51
18.75
0.00
54.24
68.20
-13.96
15540.00
Average
-85.10
28.13
0.00
50.03
53.98
-3.95
15540.00
Peak
-73.22
28.13
0.00
61.91
73.98
-12.07
20720.00
Average
-81.60
16.92
-9.54
32.78
53.98
-21.20
20720.00
Peak
-70.12
16.92
-9.54
44.26
73.98
-29.72
25900.00
Peak
-68.31
19.39
-9.54
48.54
68.20
-19.66
Distance
Field
Limit
Correction Strength
[dBμV
Factor
[dBμV
/m]
[dB]
/m]
Margin
[dB]
Table 7-118. Radiated Measurements SISO ANT1 (106 Tones)
Worst Case Mode:
Worst Case Transfer Rate:
RU Index:
Distance of Measurements:
Operating Frequency:
Channel:
Frequency
Detector
[MHz]
Ant.
Pol.
[H/V]
802.11ax (20MHz BW)
MCS0
53
1 & 3 Meters
5200MHz
40
Antenna Turntable Analyzer
Height
Azimuth
Level
[cm]
[degree]
[dBm]
AFCL
[dB/m]
10400.00
Peak
-70.87
19.45
0.00
55.58
68.20
-12.62
15600.00
Average
-85.13
27.65
0.00
49.52
53.98
-4.46
15600.00
Peak
-74.26
27.65
0.00
60.39
73.98
-13.59
20800.00
Average
-81.42
17.39
-9.54
33.42
53.98
-20.55
20800.00
Peak
-70.22
17.39
-9.54
44.62
73.98
-29.35
26000.00
Peak
-68.48
19.98
-9.54
48.95
68.20
-19.25
Table 7-119. Radiated Measurements SISO ANT1 (106 Tones)
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Worst Case Mode:
Worst Case Transfer Rate:
RU Index:
Distance of Measurements:
Operating Frequency:
Channel:
Frequency
Detector
[MHz]
Ant.
Pol.
[H/V]
802.11ax (20MHz BW)
MCS0
53
1 & 3 Meters
5240MHz
48
Antenna Turntable Analyzer
Height
Azimuth
Level
[cm]
[degree]
[dBm]
AFCL
[dB/m]
Distance
Field
Limit
Correction Strength
[dBμV
Factor
[dBμV
/m]
[dB]
/m]
Margin
[dB]
10480.00
Peak
-73.04
19.76
0.00
53.72
68.20
-14.48
15720.00
Average
-84.96
27.55
0.00
49.59
53.98
-4.39
15720.00
Peak
-73.72
27.55
0.00
60.83
73.98
-13.15
20960.00
Average
-80.91
17.29
-9.54
33.84
53.98
-20.14
20960.00
Peak
-69.87
17.29
-9.54
44.88
73.98
-29.10
26200.00
Peak
-68.14
19.80
-9.54
49.12
68.20
-19.08
Distance
Field
Limit
Correction Strength
[dBμV
Factor
[dBμV
/m]
[dB]
/m]
Margin
[dB]
Table 7-120. Radiated Measurements SISO ANT1 (106 Tones)
Worst Case Mode:
Worst Case Transfer Rate:
RU Index:
Distance of Measurements:
Operating Frequency:
Channel:
Frequency
Detector
[MHz]
Ant.
Pol.
[H/V]
802.11ax (20MHz BW)
MCS0
53
1 & 3 Meters
5240MHz
48
Antenna Turntable Analyzer
Height
Azimuth
Level
[cm]
[degree]
[dBm]
AFCL
[dB/m]
10480.00
Peak
-74.39
19.76
0.00
52.37
68.20
-15.83
15720.00
Average
-85.35
27.55
0.00
49.20
53.98
-4.78
15720.00
Peak
-74.02
27.55
0.00
60.53
73.98
-13.45
20960.00
Average
-80.76
17.29
-9.54
33.99
53.98
-19.99
20960.00
Peak
-69.29
17.29
-9.54
45.46
73.98
-28.52
26200.00
Peak
-67.94
19.80
-9.54
49.32
68.20
-18.88
Table 7-121. Radiated Measurements SISO ANT1 (106 Tones)with WCP
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Download: SMG975U Multi-band GSM/EDGE/CDMA/UMTS/LTE Phone with Bluetooth, WLAN, RFID and ANT+ Test Report UNII OFDMA  7 Samsung Electronics Co Ltd
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