IVSS001 Black box Test Report _Part II HANHWA HIGHTECH

HANHWA HIGHTECH Black box

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REPORT No.: TRRFCC18—0015
Total 73 pages
4.4.4.5 Test Plot
Test mode : 802.11b / 2 412 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offsat‘ z0; so as ‘a" Rew 100 k
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Test mode : 802.11b / 2 412 MHz_Occupied Bandwidth
Ret Level 10.00 demotfset 10.s0 as ‘a Rew 100 iz
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TRF—R—018(00) Page: 23 /73
Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11b / 2 437 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offset‘10.so ds ‘a" Rew 100
ant Cc eCc omao se es
Eesnt
Fous
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Test mode : 802.11b / 2 437 MHz_Occupied Bandwidth
Ret Level 10.00 cemotfset 10.
S mc
Exsd zoo01 prs Spon a0.0 mz
TRF—R—018(00) Page: 24 / 73
Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11b / 2 462 MHz_6 dB Bandwidth
cce
ant 15 as
Ee EB
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ottser 1050 c
swr . snop
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TRF—R—018(00)
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Copyright © 2018, Lab—T, Inc.
REPORT No.:TRRFCC18—0015
otal 73 pages
Test mode : 802.11g / 2 412 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offsat‘ z0; so as ‘a" Rew 100 k
ant Cc eCc on c ons
C c
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kndlabie vatdcadonn se ihsitaia
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m m 21030020 onz C
Test mode : 802.11g / 2 412 MHz_Occupied Bandwidth
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e s
Goee
oS Spon a0.0 mz
TRF—R—018(00)
Copyright © 2018, Lab—T, Inc.
Page: 26 / 73
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11g / 2 437 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offset‘10.so ds ‘a" Rew 100
ant Cc eCc omao se es
Sot. count 1000/1000 .. To
wik ma
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il i I ¢ A
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m m 10.09 dem
Test mode : 802.11g / 2 437 MHz_Occupied Bandwidth
Ret Level 10.00 demotfset 10.s0 as ‘a Rew 100 l
Cmens e oc
Exsd zoo01 prs Spon a0.0 mz
TRF—R—018(00) Page: 27 / 73
Copyright © 2018, Lab—T, Inc.
REPORT No.:TRRFCC18—0015
Test mode : 802.11g / 2 462 MHz_6 dB Bandwidth
cce
ant 15 as
Etd
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otal 73 pages
Test mode : 802.11g / 2 462 MHz_Occupied Bandwidth
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Spon a0.0 mz
TRF—R—018(00)
Copyright © 2018, Lab—T, Inc.
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REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11n_HT20 / 2 412 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offset‘10.so ds ‘a" Rew 100
ant Cc eCc omao se es
Sot. count 1000/1000 .. To
uks
(Gersecth 10001 prs Uooakts
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m m 21030020 onz 5 dam
Test mode : 802.11n_HT20 / 2 412 MHz_Occupied Bandwidth
Ret Level 10.00 demotfset 10.s0 as ‘a Rew 100 l
SE ecs e oc
oS Spon a0.0 mz
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Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11n_HT20 / 2 437 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offset‘10.so ds ‘a" Rew 100
Ant Cc aece C on
Eesnt
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Test mode : 802.11n_HT20 / 2 437 MHz_Occupied Bandwidth
Ret Level 10.00 demotfset 10.s0 as ‘a Rew 100 l
SE ecs e oc
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Exsd zoo01 prs Spon a0.0 mz
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Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11n_HT20 / 2 462 MHz_6 dB Bandwidth
io e o
Ant Cc aece ons
Sot. count 1000/1000 .. To
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or 2107 one 10001 prs Uooakts
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mnm—mm—-mm Eungion tesut
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Test mode : 802.11n_HT20 / 2 462 MHz_Occupied Bandwidth
Ret Level 10.00 demotfset 10.s0 as ‘a Rew 100 l
SE ecs e oc
oS Spon a0.0 mz
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Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11n_HT40 / 2 422 MHz_6 dB Bandwidth
Eooo
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es
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Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11n_HT40 / 2 437 MHz_6 dB Bandwidth
Raf Level 10.00 dem"offsat z0; so as ‘a" Rew 100 k
ant oo Leoee
Ee EB
Fous
CoeXmaciH zoo01 prs Eoicouktn
Lh
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m m arfene 13.52 dom
Test mode : 802.11n_HT40 / 2 437 MHz_Occupied Bandwidth
Ret Level 10.00 cemotfset 10 S
Eo e e ce
Ee Tok c
Buee
Exsd zoo01 prs EHeooktn
TRF—R—018(00) Page: 33 /73
Copyright © 2018, Lab—T, Inc.
REPORT No.: TRRFCC18—0015
Total 73 pages
Test mode : 802.11n_HT40 / 2 452 MHz_6 dB Bandwidth
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or 2182 one zoo01 prs EHeooktn
TRF—R—018(00) Page: 34 / 73
Copyright © 2018, Lab—T, Inc.
LAB REPORT No.:TRRFCC18—0015
Total 73 pages
4.4.5 Spurious Emission, Band Edge, and Restricted bands
4.4.5.1 Regulation
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. Aftenuation below the general limits specified in Section 15.209(a) is not
required. In addition, radiated emissions which fall in the restricted bands, as defined in Section
15.205(a), must also comply with 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 notexceed the field strength levels specified in the following table:
Frequency(MHz) Field strength(microvolts/meter) Measurement distance(meters)
0.009 — 0.490 2 400/F(kHz) 300
0.490 — 1.705 24 000/F (kHz) 30
1.705 — 30.0 30 30
30 — 88 100+* $
88 — 216 150°* $
216 — 960 200** 3
Above 960 500 3
Except as provided in paragraph (g), fundamental emissions from intentional radiators operaling under this section shallnot
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.9., §§15.231 and 15.241.
TRF—R—018(00) Page: 35 / 73
Copyright © 2018, Lab—T, Inc.
LA3
REPORT No.:TRRFCC18—0015
Total 73 pages
According to §15.205(a) and (b), only spurious emissions are permitted in any of the frequency
bands listed below
MHz MHz MHz GHz
0.009 — 0.110 16.42 —16.423 309.9 — 410 4.5 — 5.15
0.495 — 0.505 16.694 75 — 16.695 25 608 — 614 5.35 — 5.46
2.173 5 — 2190 5 16.804 25 — 16.804 75 960 — 1 240 7.25—7.75
4.125 — 4.128 25.5 — 25.67 1300 — 1 427 8.025 — 8.5
4.177 25 —4.177 75 37.5 — 38.25 1435 — 1 626.5 9.0 — 9.2
4.207 25 — 4.207 75 73 — 74.6 1645.5— 1 646.5 $.5—9.5
6.215 —6.218 74.8 —75.2 1660 — 1 710 10.6 — 12.7
6.267 75 — 6.268 25 108 — 121.94 1718.8 — 1 722.2 13.25—134
6.311 75— 6.312 25 123 — 138 2 200 — 2 300 14.47 —14.5
8.291 — 8.294 149.9 — 150.05 2 310 — 2 390 15.35 — 16.2
8.362 — 8.366 156.524 75 — 156.525 25 2 483.5 — 2 500 17.7 —214
8.376 25 — 8.386 75 156.7 — 156.9 2 690 — 2 900 22.01 — 23.12
8.414 25 — 8.414 75 162.012 5 — 167. 17 3 260 — 3 267 23.6 — 24.0
12.29 — 12293 167.72 — 173.2 3 332 — 3 339 31.2—31.8
12.519 75 — 12.520 25 240 — 285 3 345.8 — 3 358 36.43 — 36.5
12.576 75 — 12.577 25 322 — 335.4 3 600 — 4 400 Above 38.6
13.36 — 13.41
TRF—R—018(00)
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 measurement
4.4.5.2 Measurement Procedure
4.4.5.2.1 Band—edge Compliance of RF Conducted Emissions
4.4.5.2.1.1 Reference Level Measurement
Establish a reference level by using the following procedure:
1) Set instrument center frequency to DTS channel center frequency.
2) Set the span to 2 1.5 times the DTS bandwidth.
3) Set the RBW = 100 kHz.
4) Set the VBW 2z 3 x RBW.
5) Detector = peak.
6) Sweep time = auto couple.
7) Trace mode = max hold.
8) Allow trace to fully stabilize.
9) Use the peak marker function to determine the maximum PSD level.
Page: 36 / 73
Copyright © 2018, Lab—T, Inc.
LAB REPORT No.:TRRFCC18—0015
Total 73 pages
4.4.5.2.1.2 Emissions Level Measurement
1) Set the center frequency and span to encompass frequency range to be measured.
2) Set the RBW = 100 kHz.
3) Set the VBW 2 3 x RBW.
4) Detector = peak.
5) Ensure that the number of measurement points 2 span/RBW
6) Sweep time = auto couple.
7) Trace mode = max hold.
8) Allow trace to fully stabilize.
9) Use the peak marker function to determine the maximum amplitude level.
Ensure that the amplitude of all unwanted emissions outside of the authorized frequency band
(excluding restricted frequency bands) are attenuated by at least the minimum requirements
specified in 11.1 a) or 11.1 b).
Report the three highest emissions relative to the limit.
4.4.5.2.2 Conducted Spurious Emissions
Set the spectrum analyzer as follows:
1) Span = wide enough to capture the peak level of the in—band emission and all spurious
emissions (e.g., harmonics) from the lowest frequency generated in the EUT up through the 10th
harmonic.
Typically, several plots are required to cover this entire span.
2) RBW = 100 kHz
3) VBW 2 3 x RBW
4) Sweep = auto
5) Detector function = peak
6) Trace = max hold
7) Allow the trace to stabilize. Set the marker on the peak of any spurious emission recorded.
8) Each frequency found during preliminary measurements was re—examined and investigated.
The test—receiver system was set up to average, peak, and quasi—peak detector function with
specified bandwidth.
4.4.5.2.3 Radiated Spurious Emissions
1) The preliminary and final rdiated measurements were performed to determine the frequency
producing the maximum emissions in at a 10m anechoic chamber. The EUT was tested at a
distance 3 meters.
2) The EUT was placed on the top of the 0.8 m height or 1.5 m height non—metallic table. To find
the maximum emission levels, the height of a measuring antenna was changed and the turntable:
was rotated 360°.
3) The antenna polarization was also changed from vertical to horizontal. The spectrum was
scanned from 9 kHz to 30 MHz using the loop antenna, and from 30 to 1 000 MHz using the
TRILOG broadband antenna, and from 1 000 MHz to 26 500 MHz using the horn antenna.
4) Each frequency found during preliminary measurements was re—examined and investigated.
The test—receiver system was set up to average, peak, and quasi—peak detector function with
specified bandwidth.
NOTE1 : The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 120 kHz for Peak
detection (PK) and Quasi—peak detection (QP) at frequency below 1 GHz.
NOTEZ : The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 1 MHz for Peak detection
and frequency above 1 GHz.
The resolution bandwidth of test receiver/spectrum analyzer is 1 MHz and the vide bandwidth is 1 kHz(1/T) for
Average detection (AV) at frequency above 1 GHz. (where T= pulse width)
NOTE3 : _ The 0.8 m height is for below 1 GHz testing, and 1.5 m is for above 1 GHz testing
4.4.5.3 Result
Comply (measurement data : refer to the next page)
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REPORT No.:TRRFCC18—0015
Total 73 pages
4.4.5.4 Measurement data_Radiated Spurious Emissions
Test mode : Below 1 GHz ( Worst case : 802.11g / Highest Frequency )
Frequency Detector Pol. Reading Ant Factor Loss Result Limit Margin
(MHz) (ViH) | _ (aBpuv) (dB) (dB) (dBpVim) | (dBpVim) | _ (dB)
36.79 oP V 46.50 11.50 23.70 34.30 40.00 5.70
46.01 oP V 49.00 12.00 23.40 37.60 40.00 2.40
80.93 oP V 49.60 8.20 23.10 34.70 40.00 5.30
184.23 oP V 46.00 10.60 —21.90 34.70 43.50 8.80
258.07 oP H 46.70 12.00 —21.50 37.20 46.00 8.80
324.99 oP H 46.20 14.000 —21.10 39.10 46.00 6.90
454.97 oP H 41.40 17.00 —21.00 37.40 46.00 8.60
796.59 oP H 33.10 22.90 —20.40 35.60 46.00 10.40
910.11 oP H 37.50 23.90 —29.00 42.40 46.00 3.60
Note 1 : Loss : Cable loss — Amp gain
Note 2: Result : Reading + Ant Factor + Loss
Note 3 Below 3OMHz is not detected.
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Copyright © 2018, Lab—T, Inc.
LA3
REPORT No.:TRRFCC18—0015
Total 73 pages
Test mode : 802.11b_ Above 1 GHz / Lowest Frequency
: Ant Dutycycle uo 1
Frequency Pol. | Reading Result Limit Margin
qwre) / | P9999T | (vieh |. (aBuv) Facé‘)" tss 1 Fasy — | (dBuvim) | (aBuvim) | _ (dB)
2 385.98 PK H 48.70 32.10 —25.50 — 55.30 83.54 28.24
2 385.98 PK V 41.90 32.10 —25.50 48.50 83.54 35.04
Above Not . L . . . . .
3 GHz Detected
Note 1 : Loss : Cable loss — Amp gain + site faclor
Note 2 : Peak Result : Reading + Ant Factor + Loss
Note 3 : _ Average Reasult : Reading + Ant Factor + Loss + Dutycycle Factor
Dutycycle Factor : 20log(Dutyoycle) * Refer to 4.4.5.7
Note 4 : Below 1 GHz Measured distance : 3 m, Above 1 GHz Measured distance : 1 m
Above 1 GHz Distance Factor = 20log(1 / 3) = —9.54
Above 1 GHz Limit Peak = 74 — (—9.54) = 83.54
Above 1 GHz Limit Average = 54 — (—9.54) = 63.54
Note 5 : . Average measurement did not take place because the peak data did not exceed Average Limit.
Note 6 Not Detected means that peak data does not exceed the average limit
Test mode : 802.11b_ Above 1 GHz / Middle Frequency
i Ant Dutycycle les o
Frequency Pol. | Reading Fack Result Limit Margin
(wee) / | PCOT | (viep |. (aBpv) Facé‘)" Loss Cgoy" —| (BuVim) | (dBuvim) | — (dB)
Above Not . . . . . . .
1 GHz Detected
Note 1 : Loss : Cable loss — Amp gain + site facior
Note 2 : Peak Result : Reading + Ant Factor + Loss
Note 3 : _ Average Reasult : Reading + Ant Factor + Loss + Dutyeycle Factor
Dutycycle Factor : 20log(Dutycycle) * Refer to 4.4.5.7
Note 4 : _ Below 1 GHz Measured distance : 3 m, Above 1 GHz Measured distance : 1 m
Above 1 GHz Distance Factor = 20log(1 / 3) = —9.54
Above 1 GHz Limit Peak = 74 — (—9.54) = 83.54
Above 1 GHz Limit Average = 54 — (—9.54) = 63.54
Note 5 : . Average measurement did not take place because the peak data did not exceed Average Limit.
Note 6 : . Not Detected means that peak data does not exceed the average limit
Test mode : 802.11b_ Above 1 GHz / Highest Frequency
o Ant Dutycycle ioi s
Frequency Pol. | Reading Result Limit Margin
Fack
ue 0| P9E90T | ynp | (aBuv) Fg,‘g‘)" Loss Clay" — | (dBuVim) | (dBavim) | . (aB)
2 483.91 PK H 41.40 32.20 —25.30 — 48.30 83.54 35.24
2 483.91 PK V 42.90 32.20 —25.30 — 49.80 83.54 33.74
Above Not . . . . . . .
3 GHz Detected
Note 1 : Loss : Cable loss — Amp gain + site facior
Note 2 : Peak Result : Reading + Ant Factor + Loss
Note 3 : _ Average Reasult : Reading + Ant Factor + Loss + Dutycycle Factor
Dutycycle Factor : 20log(Dutycycle) * Refer to 4.4.5.7
Note 4 : _ Below 1 GHz Measured distance : 3 m, Above 1 GHz Measured distance : 1 m
Above 1 GHz Distance Factor = 20log(1 / 3) =—9.54
Above 1 GHz Limit Peak = 74 — (—9.54) = 83.54
Above 1 GHz Limit Average = 54 — (—9.54) = 63.54
Note 5 : Average measurement did not take place because the peak data did not exceed Average Limit
Note 6 Not Detected means that peak data does not exceed the average limit
TRF—R—018(00) Page: 39 / 73
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