NCOM21 N-Com B901 X Test Report DSS p2 Nolangroup S.p.A.

Nolangroup S.p.A. N-Com B901 X

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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
7. Transmitter Radiated Spurious Emissions and Conducted Spurious
Emission
7.1 Test Setup
Refer to the Test Results.
7.2 Limit
According to §15.247(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 section §15.209(a) is not required. In
addition, radiated emission which in the restricted band, as define in section §15.205(a), must also comply
the radiated emission limits specified in section §15.209(a) (see section §15.205(c))
According to § 15.209(a), except as provided elsewhere in this Subpart, the emissions from an intentional
radiator shall not exceed the field strength levels specified in the following table
Frequency (MHz)
Limit (uV/m)
Measurement Distance (meter)
0.009 ~ 0.490
2400/F (kHz)
300
0.490 ~ 1705
24000/F (kHz)
30
1705 ~ 30.0
30
30
30 ~ 88
100 **
88 ~ 216
150 **
216 ~ 960
200 **
Above 960
500
** Except as provided in 15.209(g), fundamental emissions from intentional radiators operating under this
Section shall not be located in the frequency bands 54 - 72 MHz, 76 - 88 MHz, 174 - 216 MHz or 470 - 806
MHz. However, operation within these frequency bands is permitted under other sections of this Part, e.g.
15.231 and 15.241.
According to § 15.205(a) and (b), only spurious emissions are permitted in any of the frequency bands
listed below :
MHz
MHz
MHz
MHz
GHz
GHz
0.009 ~ 0.110
8.41425 ~ 8.41475
108 ~ 121.94
1300 ~ 1427
4.5 ~ 5.15
14.47 ~ 14.5
0.495 ~ 0.505
12.29 ~ 12.293
123 ~ 138
1435 ~ 1626.5
5.35 ~ 5.46
15.35 ~ 16.2
2.1735 ~ 2.1905
12.51975 ~ 12.52025
149.9 ~ 150.05
1645.5 ~ 1646.5
7.25 ~ 7.75
17.7 ~ 21.4
4.125 ~ 4.128
12.57675 ~ 12.57725
156.52475 ~ 156.52525
1660 ~ 1710
8.025 ~ 8.5
22.01 ~ 23.12
23.6 ~ 24.0
4.17725 ~ 4.17775
13.36 ~ 13.41
156.7 ~ 156.9
1718.8 ~ 1722.2
9.0 ~ 9.2
4.20725 ~ 4.20775
16.42 ~ 16.423
162.0125 ~ 167.17
2200 ~ 2300
9.3 ~ 9.5
31.2 ~ 31.8
6.215 ~ 6.218
16.69475 ~ 16.69525
167.72 ~ 173.2
2310 ~ 2390
10.6 ~ 12.7
36.43 ~ 36.5
6.26775 ~ 6.26825
16.80425 ~ 16.80475
240 ~ 285
2483.5 ~ 2500
13.25 ~ 13.4
Above 38.6
6.31175 ~ 6.31225
25.5 ~ 25.67
322 ~ 335.4
2655 ~ 2900
8.291 ~ 8.294
37.5 ~ 38.25
399.90 ~ 410
3260 ~ 3267
8.362 ~ 8.366
73 ~ 74.6
608 ~ 614
3332 ~ 3339
8.37625 ~ 8.38675
74.8 ~ 75.2
960 ~ 1240
3345.8 ~ 3358
3600 ~ 4400
The field strength of emissions appearing within these frequency bands shall not exceed the limits shown in
§15.209. At frequencies equal to or less than 1000 MHz, compliance with the limits in §15.209 shall be
demonstrated using measurement instrumentation employing a CISPR quasi-peak detector. Above 1000 MHz,
compliance with the emission limits in §15.209 shall be demonstrated based on the average value of the
measured emissions. The provisions in §15.35 apply to these measurements.
TRF-RF-237(05)180118
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
7.3. Test Procedures
7.3.1. Test Procedures for Radiated Spurious Emissions
1. The EUT is placed on a non-conductive table. For emission measurements at or below 1 GHz, the table
height is 80 cm. For emission measurements above 1 GHz, the table height is 1.5 m.
The table was rotated 360 degrees to determine the position of the highest radiation.
2. During performing radiated emission below 1 GHz, the EUT was set 3 meters away from the interference
receiving antenna, which was mounted on the top of a variable-height antenna tower. During performing
radiated emission above 1 GHz, the EUT was set 1 or 3 meter away from the interference-receiving
antenna.
3. For measurements above 1GHz absorbers are placed on the floor between the turn table and the antenna
mast in such a way so as to maximize the reduction of reflections. For measurements below 1 GHz, the
absorbers are removed.
4. The antenna is a broadband antenna, and its height is varied from one meter to four meters above the
ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of
the antenna are set to make the measurement.
5. For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to
heights from 1 meter to 4 meters and the table was turned from 0 degrees to 360 degrees to find the
maximum reading.
6. The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold
Mode.
7. If the emission level of the EUT in peak mode was 10 dB lower than the limit specified, then testing could
be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have
10 dB margin would be re-tested one by one using peak, quasi-peak or average method as specified and
then reported in a data sheet.
Note: The radiated spurious emission was tested with below settings.
1. The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 120 kHz for
Quasi-peak detection (QP) at frequency below 1 GHz.
2. The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 1 MHz for
Peak detection at frequency above 1GHz.
3. The resolution bandwidth of test receiver/spectrum analyzer is 1 MHz and video bandwidth
is [1/(minimum transmitter on time)] for Average detection (AV) at frequency above 1GHz.
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
7.3.2. Test Procedures for Conducted Spurious Emissions
1. The transmitter output was connected to the spectrum analyzer.
2. The reference level of the fundamental frequency was measured with the spectrum analyzer using
RBW = 100 kHz, VBW = 300 kHz.
3. The conducted spurious emission was tested each ranges were set as below.
Frequency range : 9 kHz ~ 30 MHz
RBW = 100 kHz, VBW = 300 kHz, SWEEP TIME = AUTO, DETECTOR = PEAK, TRACE = MAX HOLD, SWEEP POINT : 40001
Frequency range : 30 MHz ~ 10 GHz, 10 GHz ~ 25 GHz
RBW = 1 MHz, VBW = 3 MHz, SWEEP TIME = AUTO, DETECTOR = PEAK, TRACE = MAX HOLD, SWEEP POINT : 40001
LIMIT LINE = 20 dB below of the reference level of above measurement procedure Step 2. (RBW = 100 kHz, VBW = 300 kHz)
If the emission level with above setting was close to the limit (ie, less than 3 dB margin) then zoom scan is
required using RBW = 100 kHz, VBW = 300 kHz, SPAN = 100 MHz and BINS = 2001 to get accurate
emission level within 100 kHz BW.
Also the path loss for conducted measurement setup was used as described on the Appendix I of this test
report.
7.4. Test Results
7.4.1. Radiated Spurious Emissions
-NT
TRF-RF-237(05)180118
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
7.4.2. Conducted Spurious Emissions
Low Band-edge
Lowest Channel & Modulation : GFSK
Low Band-edge
Hopping mode & Modulation : GFSK
TRF-RF-237(05)180118
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Lowest Channel & Modulation : GFSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Lowest Channel & Modulation : GFSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
Reference for limit
Middle Channel & Modulation : GFSK
Conducted Spurious Emissions
Middle Channel & Modulation : GFSK
TRF-RF-237(05)180118
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Middle Channel & Modulation : GFSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
High Band-edge
Highest Channel & Modulation : GFSK
High Band-edge
Hopping mode & Modulation : GFSK
TRF-RF-237(05)180118
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Highest Channel & Modulation : GFSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
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IC: 9455A-NCOM21
Highest Channel & Modulation : GFSK
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FCC ID: Y6MNCOM21
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IC: 9455A-NCOM21
Low Band-edge
Lowest Channel & Modulation : π/4DQPSK
Low Band-edge
Hopping mode & Modulation : π/4DQPSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Lowest Channel & Modulation : π/4DQPSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Lowest Channel & Modulation : π/4DQPSK
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FCC ID: Y6MNCOM21
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IC: 9455A-NCOM21
Reference for limit
Middle Channel & Modulation : π/4DQPSK
Conducted Spurious Emissions
Middle Channel & Modulation : π/4DQPSK
TRF-RF-237(05)180118
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
TRF-RF-237(05)180118
IC: 9455A-NCOM21
Middle Channel & Modulation : π/4DQPSK
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FCC ID: Y6MNCOM21
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High Band-edge
Highest Channel & Modulation : π/4DQPSK
High Band-edge
Hopping mode & Modulation : π/4DQPSK
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FCC ID: Y6MNCOM21
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Conducted Spurious Emissions
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IC: 9455A-NCOM21
Highest Channel & Modulation : π/4DQPSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
Conducted Spurious Emissions
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IC: 9455A-NCOM21
Highest Channel & Modulation : π/4DQPSK
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Low Band-edge
Lowest Channel & Modulation : 8DPSK
Low Band-edge
Hopping mode & Modulation : 8DPSK
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Conducted Spurious Emissions
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IC: 9455A-NCOM21
Lowest Channel & Modulation : 8DPSK
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Conducted Spurious Emissions
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IC: 9455A-NCOM21
Lowest Channel & Modulation : 8DPSK
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Reference for limit
Middle Channel & Modulation : 8DPSK
Conducted Spurious Emissions
Middle Channel & Modulation : 8DPSK
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Conducted Spurious Emissions
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IC: 9455A-NCOM21
Middle Channel & Modulation : 8DPSK
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High Band-edge
Highest Channel & Modulation : 8DPSK
High Band-edge
Hopping mode & Modulation : 8DPSK
TRF-RF-237(05)180118
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Conducted Spurious Emissions
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IC: 9455A-NCOM21
Highest Channel & Modulation : 8DPSK
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Conducted Spurious Emissions
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IC: 9455A-NCOM21
Highest Channel & Modulation : 8DPSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
8. Transmitter AC Power Line Conducted Emission
8.1 Test Setup
See test photographs for the actual connections between EUT and support equipment.
8.2 Limit
According to §15.207(a) for an intentional radiator that is designed to be connected to the public utility (AC)
power line, the radio frequency voltage that is conducted back onto the AC power line on any frequency or
frequencies, within the band 150 kHz to 30 MHz, shall not exceed the limits in the following table, as
measured using a 50 uH/50 ohm line impedance stabilization network (LISN).
Compliance with the provision of this paragraph shall on the measurement of the radio frequency voltage
between each power line and ground at the power terminal. The lower applies at the boundary between the
frequency ranges.
Conducted Limit (dBuV)
Frequency Range (MHz)
Quasi-Peak
Average
0.15 ~ 0.5
66 to 56 *
56 to 46 *
0.5 ~ 5
56
46
5 ~ 30
60
50
* Decreases with the logarithm of the frequency
8.3 Test Procedures
Conducted emissions from the EUT were measured according to the ANSI C63.10.
1. The test procedure is performed in a 6.5 m × 3.5 m × 3.5 m (L × W × H) shielded room. The EUT along with
its peripherals were placed on a 1.0 m (W) × 1.5 m (L) and 0.8 m in height wooden table and the EUT was
adjusted to maintain a 0.4 meter space from a vertical reference plane.
2. The EUT was connected to power mains through a line impedance stabilization network (LISN) which
provides 50 ohm coupling impedance for measuring instrument and the chassis ground was bounded to
the horizontal ground plane of shielded room.
3. All peripherals were connected to the second LISN and the chassis ground also bounded to the horizontal
ground plane of shielded room.
4. The excess power cable between the EUT and the LISN was bundled. The power cables of peripherals
were unbundled. All connecting cables of EUT and peripherals were moved to find the maximum emission.
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8.4 Test Results
AC Line Conducted Emissions (Graph) = Modulation : GFSK
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AC Line Conducted Emissions (List) = Modulation : GFSK
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
9. Antenna Requirement
Describe how the EUT complies with the requirement that either its antenna is permanently attached, or that
it employs a unique antenna connector, for every antenna proposed for use with the EUT.
Conclusion: Comply
The external antenna is connected to the unique connecter. (Refer to Internal Photo file.)
Therefore this E.U.T Complies with the requirement of §15.203
- Minimum Standard :
An intentional radiator shall be designed to ensure that no antenna other than that furnished by the
responsible party shall be used with the device.The use of a permanently attached antenna or of an
antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with
the provisions.
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FCC ID: Y6MNCOM21
Report No.: DRTFCC1811-0258
IC: 9455A-NCOM21
APPENDIX I
Test set up diagrams
▪ Conducted Measurement
Path loss information
Frequency (GHz)
Path Loss
(dB)
Frequency (GHz)
Path Loss
(dB)
0.03
0.04
15
1.09
0.24
20
1.87
2.402 & 2.441 & 2.480
0.38
25
2.72
0.50
10
0.90
Note 1: The path loss from EUT to Spectrum analyzer was measured and used for test.
Path loss (S/A’s correction factor) = Cable A
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