ICG100NAR-2 4GR Test Report Zigbee Foxconn International Inc

Foxconn International Inc 4GR

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Compliance Certification Services Inc.
Report No.: T170113D05-RP8
RADIO TEST REPORT
FCC 47 CFR PART 15 SUBPART C
INDUSTRY CANADA RSS-247
Test Standard
FCC Part 15.247 and IC RSS-247 issue 2
FCC ID
SIB-ICG100NAR-2
ISED ID
6719D-ICG100NAR
Product name
ICG
Brand Name
Intwine connect
Model
ICG-100-NA-R, ICG-100-NA-C
Test Result
Pass
The test Result was tested by Compliance Certification Services Inc. The test data, data
evaluation, test procedures, and equipment configurations shown in this report were
given in ANSI C63.10: 2013 and compliance standards.
The test results of this report relate only to the tested sample (EUT) identified in this
report.
The test Report of full or partial shall not copy. Without written approval of CCS. lnc.
The sample selected for test was production
product and was provided by manufacturer.
Approved by:
Tested by:
Sam Chuang
Manager
Ed Chiang
Engineer
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Report No.: T170113D05-RP8
Revision History
Rev.
00
Issue Date
March 30, 2017
Revisions
Initial Issue
Revised By
Doris Chu
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Report No.: T170113D05-RP8
Table of contents
1. GENERAL INFORMATION .................................................................................................. 4
1.1
EUT INFORMATION .................................................................................................. 4
1.2
EUT CHANNEL INFORMATION ................................................................................ 5
1.3
ANTENNA INFORMATION ........................................................................................ 5
1.4
MEASUREMENT UNCERTAINTY.............................................................................. 6
1.5
FACILITIES AND TEST LOCATION .......................................................................... 7
1.6
INSTRUMENT CALIBRATION ................................................................................... 7
1.7
SUPPORT AND EUT ACCESSORIES EQUIPMENT ................................................. 8
1.9
TABLE OF ACCREDITATIONS AND LISTINGS ....................................................... 8
2. TEST SUMMERY ................................................................................................................. 9
3. DESCRIPTION OF TEST MODES ..................................................................................... 10
3.1
THE WORST MODE OF OPERATING CONDITION ................................................ 10
3.2
THE WORST MODE OF MEASUREMENT .............................................................. 11
3.3
EUT DUTY CYCLE ................................................................................................... 12
4. TEST RESULT ................................................................................................................... 13
4.1
AC POWER LINE CONDUCTED EMISSION ........................................................... 13
4.2
6DB BANDWIDTH AND OCCUPIED BANDWIDTH(99%) ....................................... 16
4.3
OUTPUT POWER MEASUREMENT ........................................................................ 19
4.4
POWER SPECTRAL DENSITY ................................................................................ 21
4.5
CONDUCTED BANDEDGE AND SPURIOUS EMISSION........................................ 24
4.6
RADIATION BANDEDGE AND SPURIOUS EMISSION .......................................... 28
APPENDIX 1 - PHOTOGRAPHS OF EUT
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Report No.: T170113D05-RP8
1. GENERAL INFORMATION
1.1 EUT INFORMATION
Applicant
Manufacturer
Foxconn International Inc
NO 2 ZIYOU ST TUCHENG DISTRICT
NEW TAIPEI
236
Foxconn International Inc
NO 2 ZIYOU ST TUCHENG DISTRICT
NEW TAIPEI
236
Equipment
ICG
Model No.
ICG-100-NA-R, ICG-100-NA-C
Model Discrepancy
ICG-100-NA-R: Plastic
ICG-100-NA-C: Metal
Trade Name
Intwine connect
Received Date
January 13, 2017
Date of Test
March 24 ~ 27, 2017
Output Power(W)
Zigbee: 0.0406
Power Operation
VDC from Power Adapter
For ICG-100-NA-R
1. DVE / DSA-18PFM-12FUS
I/P: 100-240Vac, 0.6A, 50-60Hz
O/P: 12Vdc, 1.5A
2. MEAN WELL / GST18U12
I/P: 100-240Vac, 0.5A, 50-60Hz
O/P: 12Vdc, 1.5A
For ICG-100-NA-C
1. DVE / DSA-18PFM-12FUS
I/P: 100-240Vac, 0.6A, 50-60Hz
O/P: 12Vdc, 1.5A
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1.2 EUT CHANNEL INFORMATION
Frequency Range
Zigbee: 2405~2480MHz
Modulation Type
Zigbee: OQPSK (Offset Quadrature Phase Shift Keyed)
Bandwidth
Zigbee: 14 Channels
Remark:
Refer as ANSI 63.10:2013 clause 5.6.1 Table 4 and RSS-GEN Table A1 for test channels
Number of frequencies to be tested
Frequency range in
which device operates
1 MHz or less
Number of
frequencies
Location in frequency
range of operation
Middle
1 MHz to 10 MHz
1 near top and 1 near bottom
More than 10 MHz
1 near top, 1 near middle, and 1 near bottom
1.3 ANTENNA INFORMATION
Antenna Type
Antenna Gain
PIFA
PCB
Dipole
Coils
1) FIT: 5 dBi
2) Luxshare: 5 dBi
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Report No.: T170113D05-RP8
1.4 MEASUREMENT UNCERTAINTY
PARAMETER
UNCERTAINTY
AC Powerline Conducted Emission
+/- 1.2575
Emission bandwidth, 20dB bandwidth
+/- 1.4003
RF output power, conducted
+/- 1.1372
Power density, conducted
+/- 1.4003
3M Semi Anechoic Chamber / 30M~200M
+/- 4.0138
3M Semi Anechoic Chamber / 200M~1000M
+/- 3.9483
3M Semi Anechoic Chamber / 1G~8G
+/- 2.5975
3M Semi Anechoic Chamber / 8G~18G
+/- 2.6112
3M Semi Anechoic Chamber / 18G~26G
+/- 2.7389
3M Semi Anechoic Chamber / 26G~40G
+/- 2.9683
3M Semi Anechoic Chamber / 40G~60G
+/- 1.8509
3M Semi Anechoic Chamber / 60G~75G
+/- 1.9869
3M Semi Anechoic Chamber / 75G~110G
+/- 2.9651
3M Semi Anechoic Chamber / 110G~170G
+/- 2.7807
3M Semi Anechoic Chamber / 170G~220G
+/- 3.6437
3M Semi Anechoic Chamber / 220G~325G
+/- 4.2982
Remark:
1.This uncertainty represents an expanded uncertainty expressed at approximately the 95% confidence
level using a coverage factor of k=2
2. ISO/IEC 17025 requires that an estimate of the measurement uncertainties associated with the
emissions test results be included in the report.
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1.5 FACILITIES AND TEST LOCATION
All measurement facilities used to collect the measurement data are located at
No.11, Wugong 6th Rd., Wugu Dist., New Taipei City 24891, Taiwan. (R.O.C.)
Test site
AC Conduction Room
Radiation
RF Conducted
Remark
Test Engineer
Eric Lee
Ed Chiang
Eric Lee
Remark: The sites are constructed in conformance with the requirements of ANSI C63.7, ANSI C63.4 and
CISPR Publication 22.
1.6 INSTRUMENT CALIBRATION
RF Conducted Test Site
Name of Equipment Manufacturer
Model
Serial Number Calibration Date Calibration Due
Power Meter
Anritsu
ML2495A
1012009
07/04/2016
07/03/2017
Power Sensor
Anritsu
MA2411B
917072
07/04/2016
07/03/2017
Spectrum Analyzer
R&S
FSV 40
101073
10/05/2016
10/04/2017
Wugu 966 Chamber A
Name of Equipment Manufacturer
Sunol
Bilog Antenna
Sciences
Horn Antenna
EMCO
Model
Serial Number Calibration Date Calibration Due
JB3
A030105
07/03/2016
07/02/2017
3117
00055165
02/20/2017
02/19/2018
Pre-Amplifier
EMCI
EMC 012635
980151
06/23/2016
06/22/2017
Pre-Amplifier
EMEC
EM330
060609
06/08/2016
06/07/2017
Spectrum Analyzer
Agilent
E4446A
US42510252
12/05/2016
12/04/2017
Antenna Tower
CCS
CC-A-1F
N/A
N.C.R
N.C.R
Controller
CCS
CC-C-1F
N/A
N.C.R
N.C.R
Turn Table
CCS
CC-T-1F
N/A
N.C.R
N.C.R
Software
EZ-EMC (CCS-3A1RE)
Conducted Emission Room # B
Name of Equipment
Manufacturer
Model
Serial Number Calibration Date Calibration Due
LISN
R&S
ENV216
101054
05/11/2016
05/10/2017
LISN
SCHWARZBECK
NSLK 8127
8127-541
11/22/2016
11/21/2017
Receiver
R&S
ESCI
101073
08/20/2016
Remark: Each piece of equipment is scheduled for calibration once a year.
08/19/2017
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1.7 SUPPORT AND EUT ACCESSORIES EQUIPMENT
EUT Accessories Equipment
No.
Equipment
Brand
Model
Series No.
FCC ID
N/A
Support Equipment
No.
Equipment
Brand
Model
Series No.
FCC ID
Notebook
Acer
Aspire 4320 series
N/A
QDS-BRCM1018
1.8 TEST METHODOLOGY AND APPLIED STANDARDS
The test methodology, setups and results comply with all requirements in accordance
with ANSI C63.10:2013, FCC Part 2, FCC Part 15.247, KDB 558074 D01 v03r05,
RSS-247 Issue 2 and RSS-GEN Issue 4
1.9 TABLE OF ACCREDITATIONS AND LISTINGS
Country Agency Scope of Accreditation
USA
FCC
Logo
3M Semi Anechoic Chamber (FCC MRA: TW1039) to perform
FCC Part 15 measurements
FCC MRA: TW1039
Canada
Industry
Canada
3M Semi Anechoic Chamber (IC 2324G-1 / IC 2324G-2) to
perform
IC 2324G-1
IC 2324G-2
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Report No.: T170113D05-RP8
2. TEST SUMMERY
FCC
ISED
Standard
Standard
Section
Section
15.203
15.207
RSS-GEN 8.8
15.247(a)(2) RSS-247(5.2)(a)
RSS-GEN 6.6
15.247(b)
RSS-247(5.4)(d)
15.247(e)
RSS-247(5.2)(b)
15.247(d)
RSS-247(5.5)
15.247(d)
RSS-247(5.5)
15.247(d)
RSS-247(5.5)
15.247(d)
RSS-247(5.5)
Chapter
Test Item
Result
1.3
4.1
4.2
4.2
4.3
4.4
4.5
4.5
4.6
4.6
Antenna Requirement
AC Conducted Emission
6 dB Bandwidth
Occupied Bandwidth (99%)
Output Power Measurement
Power Spectral Density
Conducted Band Edge
Conducted Emission
Radiation Band Edge
Radiation Spurious Emission
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
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Report No.: T170113D05-RP8
3. DESCRIPTION OF TEST MODES
3.1 THE WORST MODE OF OPERATING CONDITION
Operation mode
Test Channel Frequencies
Zigbee
Zigbee:
1. Lowest Channel : 2405MHz
2. Middle Channel : 2440MHz
3. Highest Channel : 2480MHz
Remark:
1. EUT pre-scanned data rate of output power for each mode, the worst data rate were recorded in this
report.
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3.2 THE WORST MODE OF MEASUREMENT
Zigbee
AC Power Line Conducted Emission
Test Condition
AC Power line conducted emission for line and neutral
Voltage/Hz
120V/60Hz
Test Mode
Worst Mode
Mode 1:EUT power by AC adapter via power cable.
Mode 1
Mode 2
Mode 3
Mode 4
Radiated Emission Measurement Below 1G
Test Condition
Radiated Emission Below 1G
Voltage/Hz
120V/60Hz
Test Mode
Worst Mode
Mode 1:EUT power by AC adapter via power cable.
Mode 1
Mode 2
Mode 3
Mode 4
Radiated Emission Measurement Above 1G
Test Condition
Band edge, Emission for Unwanted and Fundamental
Voltage/Hz
120V/60Hz
Test Mode
Worst Mode
Worst Position
Mode 1:EUT power by AC adapter via power cable.
Mode 1
Mode 2
Mode 3
Mode 4
Placed in fixed position.
Placed in fixed position at X-Plane (E2-Plane)
Placed in fixed position at Y-Plane (E1-Plane)
Placed in fixed position at Z-Plane (H-Plane)
Horizontal
Vertical
Worst Polarity
Remark:
1. The worst mode was record in this test report.
2. EUT pre-scanned in three axis ,X,Y, Z and two polarity, Horizontal and Vertical for
radiated measurement. The worst case(X-Plane and Horizontal) were recorded in this
report
3. For AC power line conducted emission and below 1G radiation emission were
performed the EUT transmit at the highest output power channel as worse case.
4. EUT pre-scanned in ICG-100-NA-Cand ICG-100-NA-R for below 1GHz radiated
measurement. The worst case ICG-100-NA-R were recorded in this report.
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3.3 EUT DUTY CYCLE
Duty Cycle
Configuration
TX ON (ms)
TX ALL (ms)
Duty Cycle (%)
Duty Factor(dB)
Zigbee
100.0000
100.0000
100.00%
0.00
Zigbee
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4. TEST RESULT
4.1 AC POWER LINE CONDUCTED EMISSION
4.1.1 Test Limit
According to §15.207(a)(2) and RSS-GEN section 8.8,
Frequency Range
(MHz)
0.15 to 0.50
0.50 to 5
5 to 30
* Decreases with the logarithm of the frequency.
Limits(dBμV)
Quasi-peak
Average
66 to 56*
56 to 46*
56
46
60
50
4.1.2 Test Procedure
Test method Refer as ANSI 63.10:2013 clause 6.2,
1.
The EUT was placed on a non-conducted table, which is 0.8m above horizontal
ground plane and 0.4m above vertical ground plane.
2.
EUT connected to the line impedance stabilization network (LISN)
3.
Receiver set RBW of 9kHz and Detector Peak, and note as quasi-peak and
average.
4.
Maximum procedure was performed on the six highest emissions to ensure EUT
compliance.
5.
Recorded Line for Neutral and Line.
4.1.3 Test Setup
Vertical reference ground plane
EMI receiver
40c
EUT
80cm
LISN
Horizontal reference ground
plane
4.1.4 Test Result
Pass.
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Test Data
Test Mode:
Test Voltage:
Phase:
Frequency
Mode 1
120Vac / 60Hz
Line
Temp/Hum
Test Date
Test Engineer
24(℃)/ 50%RH
March 29, 2017
Eric Lee
(MHz)
QuasiPeak
reading
(dBuV)
Average
reading
(dBuV)
Correction
factor
(dB)
QuasiPeak
result
(dBuV)
Average
result
(dBuV)
QuasiPeak
limit
(dBuV)
Average
limit
(dBuV)
QuasiPeak
margin
(dB)
Average
margin
(dB)
0.1860
0.2300
0.4660
1.7700
2.8940
19.1620
32.04
27.83
31.48
19.02
20.07
16.07
16.42
14.17
23.76
13.84
14.53
10.84
9.69
9.69
9.68
9.70
9.70
9.85
41.73
37.52
41.16
28.72
29.77
25.92
26.11
23.86
33.44
23.54
24.23
20.69
64.21
62.45
56.58
56.00
56.00
60.00
54.21
52.45
46.58
46.00
46.00
50.00
-22.48
-24.93
-15.42
-27.28
-26.23
-34.08
-28.10
-28.59
-13.14
-22.46
-21.77
-29.31
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Test Mode:
Test Voltage:
Phase:
Frequency
Mode 1
120Vac / 60Hz
Neutral
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 29, 2017
Eric Lee
(MHz)
QuasiPeak
reading
(dBuV)
Average
reading
(dBuV)
Correction
factor
(dB)
QuasiPeak
result
(dBuV)
Average
result
(dBuV)
QuasiPeak
limit
(dBuV)
Average
limit
(dBuV)
QuasiPeak
margin
(dB)
Average
margin
(dB)
0.1620
0.2100
0.4460
0.8740
3.1300
19.1420
34.48
28.33
30.39
17.98
21.11
16.66
20.82
12.96
22.74
11.74
16.01
11.50
9.71
9.70
9.69
9.69
9.71
9.92
44.19
38.03
40.08
27.67
30.82
26.58
30.53
22.66
32.43
21.43
25.72
21.42
65.36
63.21
56.95
56.00
56.00
60.00
55.36
53.21
46.95
46.00
46.00
50.00
-21.17
-25.18
-16.87
-28.33
-25.18
-33.42
-24.83
-30.55
-14.52
-24.57
-20.28
-28.58
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4.2 6DB BANDWIDTH AND OCCUPIED BANDWIDTH(99%)
4.2.1 Test Limit
According to §15.247(a)(2) and RSS-247 section 5.2(a),
6 dB Bandwidth :
Limit
Shall be at least 500kHz
Occupied Bandwidth(99%) : For reporting purposes only.
4.2.2 Test Procedure
Test method Refer as KDB 558074 D01 v03r05, Section 8.1 and ANSI 63.10:2013
clause 11.8.1
1.
The EUT RF output connected to the spectrum analyzer by RF cable.
2.
Setting maximum power transmit of EUT
3.
SA set RBW = 100kHz, VBW = 300kHz and Detector = Peak, to measurement 6 dB
Bandwidth and 99% Bandwidth.
4.
Measure and record the result of 6 dB Bandwidth and 99% Bandwidth in the test
report.
4.2.3 Test Setup
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4.2.4 Test Result
Test mode: Zigbee / 2405-2480 MHz
Channel
Frequency (MHz)
OBW(99%) (MHz)
6dB BW
(MHz)
Low
2405
2.5904
1.6210
Mid
2440
2.5904
1.6060
High
2480
2.5904
1.6210
6dB limit (kHz)
≥500
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Test Data
Zigbee
Low CH
Mid CH
High CH
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4.3 OUTPUT POWER MEASUREMENT
4.3.1 Test Limit
According to §15.247(b) and RSS-247 section 5.4(d),
Peak output power:
For systems using digital modulation in the 2400-2483.5 MHz, and 5725-5850 MHz
bands: 1 Watt(30 dBm), base on the use of antennas with directional gain not exceed 6
dBi If transmitting antennas of directional gain greater than 6dBi are used the peak
output power the conducted output power from the intentional radiator shall be reduced
by the amount in dB that the directional gain of the antenna exceeds 6 dBi. In case of
point-to-point operation, the limit has to be reduced by 1dB for every 3 dB that the
directional gain of the antenna exceeds 6 dBi.
Limit
Antenna not exceed 6 dBi:30dBm
Antenna with DG greater than 6 dBi:
[Limit = 30 – (DG – 6)]
Point-to-point operation:
Average output power:For reporting purposes only.
4.3.2 Test Procedure
Test method Refer as KDB 558074 D01 v03r05, Section 9.1.2.
1.
The EUT RF output connected to the power meter by RF cable.
2.
Setting maximum power transmit of EUT.
3.
The path loss was compensated to the results for each measurement.
4.
Measure and record the result of Peak output power and Average output power in
the test report.
4.3.3 Test Setup
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4.3.4 Test Result
Peak output power:
Channel
Frequency
(MHz)
Output Power
(dBm)
Output Power
(W)
Low
2405
*16.09
0.0406
Mid
2440
15.78
0.0378
High
2480
15.60
0.0363
Limit
(W)
Test Result
PASS
PASS
PASS
Average output power:
Channel
Frequency
(MHz)
Output Power
(dBm)
Output Power
(W)
Low
2405
15.78
0.0378
Mid
2440
15.46
0.0352
High
2480
15.26
0.0336
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4.4 POWER SPECTRAL DENSITY
4.4.1 Test Limit
According to §15.247(e) and RSS-247 section 5.2(b),
For digitally modulated systems, the power spectral density conducted from the
intentional radiator to the antenna shall not be greater than 8 dBm in any 3 kHz band
during any time interval of continuous transmission.
Limit
Antenna not exceed 6 dBi:8dBm
Antenna with DG greater than 6 dBi
[ Limit = 8 – (DG – 6)]
Point-to-point operation:
4.4.2 Test Procedure
Test method Refer as KDB 558074 D01 v03r05, Section 10.2
1.
The EUT RF output connected to the spectrum analyzer by RF cable.
2.
Setting maximum power transmit of EUT
3.
SA set RBW = 3kHz, VBW = 30kHz, Span = 1.5 times DTS Bandwidth (6 dB BW),
Detector = Peak, Sweep Time = Auto and Trace = Max hold.
4.
The path loss and Duty Factor were compensated to the results for each
measurement by SA.
5.
Mark the maximum level.
6.
Measure and record the result of power spectral density. in the test report.
4.4.3 Test Setup
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4.4.4 Test Result
Test mode: Zigbee / 2405-2480 MHz
Channel
Frequency
(MHz)
PPSD
(dBm)
Low
2405
1.94
Mid
2440
1.87
High
2480
2.17
Limit
(dBm)
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Test Data
Zigbee
Low CH
Mid CH
High CH
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4.5 CONDUCTED BANDEDGE AND SPURIOUS EMISSION
4.5.1 Test Limit
According to §15.247(d) and RSS-247 section 5.5,
In any 100 kHz bandwidth outside the authorized frequency band,
Non-restricted bands shall be attenuated at least 20 dB/30 dB relative to the maximum
PSD level in 100 kHz by RF conducted or a radiated measurement which fall in the
restricted bands, as defined in §15.205(a), must also comply with the radiated emission
limits specified in §15.209(a).
4.5.2 Test Procedure
Test method Refer as KDB 558074 D01 v03r05, Section 11.
1. EUT RF output port connected to the SA by RF cable, and the path loss was
compensated to result.
2. SA setting, RBW=100kHz, VBW=300kHz, Detector=Peak, Trace mode = max hold,
SWT = Auto.
3. In any 100 kHz bandwidth outside the authorized frequency band, shall be attenuated
at least 20 dB relative to the maximum in-band peak PSD level in 100 kHz when
conducted power procedure is used. f the transmitter complies with the conducted power
limits based on the use of RMS averaging over a time interval, the attenuation required
under this paragraph shall be 30 dB instead of 20 dB.
4.5.3 Test Setup
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4.5.4 Test Result
Test Data
Zigbee Low CH
Reference Level of PSD in 100kHz
Band Edge
Spurious Emission 30MHz-25GHz
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Zigbee Mid CH
Reference Level of PSD in 100kHz
Spurious Emission 30MHz-25GHz
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Zigbee High CH
Reference Level of PSD in 100kHz
Band Edge
Spurious Emission 30MHz-25GHz
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4.6 RADIATION BANDEDGE AND SPURIOUS EMISSION
4.6.1 Test Limit
FCC according to §15.247(d), §15.209 and §15.205
IC according to RSS-247 section 5.5, RSS-Gen, Section 8.9 and 8.10,
In any 100 kHz bandwidth outside the authorized frequency band, all harmonic and
spurious must be least 20 dB below the highest emission level with the authorized
frequency band. Radiation emission which fall in the restricted bands must also follow the
FCC section 15.209 as below limit in table.
Below 30 MHz
2,400/F (F in kHz)
Magnetic
H-Field
(microamperes/m)
2,400/F (F in kHz)
Measurement
Distance
(metres)
300
490-1,705 kHz
24,000/F (F in kHz)
24,000/F (F in kHz)
30
1.705-30 MHz
30
N/A
30
Frequency
Field Strength
(microvolts/m)
9-490 kHz
Above 30 MHz
Frequency
(MHz)
Field Strength
microvolts/m at 3 metres (watts, e.i.r.p.)
Transmitters
Receivers
30-88
100 (3 nW)
100 (3 nW)
88-216
150 (6.8 nW)
150 (6.8 nW)
216-960
200 (12 nW)
200 (12 nW)
Above 960
500 (75 nW)
500 (75 nW)
Remark:
Although these tests were performed other than open area test site, adequate comparison measurements
were confirmed against 30 m open are test site. Therefore sufficient tests were made to demonstrate that
the alternative site produces results that correlate with the ones of tests made in an open field based on
KDB 937606.
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4.6.2 Test Procedure
Test method Refer as KDB 558074 D01 v03r05, Section 12.1.
1. The EUT is placed on a turntable, Above 1 GHz is 1.5m and below 1 GHz is 0.8m
above ground plane. The EUT Configured un accordance with ANSI C63.10, and the
EUT set in a continuous mode.
2. The turntable shall be rotated for 360 degrees to determine the position of maximum
emission level. And EUT is set 3m away from the receiving antenna, which is scanned
from 1m to 4m above the ground plane to find out the highest emissions. Measurement
are made polarized in both the vertical and the horizontal positions with antenna.
3. Span shall wide enough to full capture the emission measured. The SA from 30MHz to
26.5GHz set to the low, Mid and High channels with the EUT transmit.
5. The SA setting following:
(1) Below 1G:RBW = 100kHz, VBW ≥ 3 RBW, Sweep = Auto, Detector = Peak, Trace
= Max hold.
(2) Above 1G:
(2.1) For Peak measurement:RBW = 1MHz, VBW ≥ 3 RBW, Sweep = Auto,
Detector = Peak, Trace = Max hold.
(2.2) For Average measurement:RBW = 1MHz, VBW
˙If Duty Cycle ≥ 98%, VBW=10Hz.
˙If Duty Cycle < 98%, VBW≥1/T.
Configuration
Duty Cycle (%)
T(ms)
1/T (kHz)
VBW Setting
Zigbee
100.00%
100.0000
10Hz
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4.6.3 Test Setup
9kHz ~ 30MHz
3m
Loop antenna
EUT
Spectrum /
Receiver
Turntable
1m
0.8m
Reference ground plane
30MHz ~ 1GHz
Antenna
tower
Bi-log
antenna
3m
EUT
4m
Spectrum
analyzer
Turntable
0.8m
1m
Reference ground plane
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Above 1 GHz
Antenna
tower
Horn
antenna
3m
EUT
4m
Spectrum
analyzer
Turntable
1.5m
1m
Pre-amp
▲▲▲
▲▲▲
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4.6.4 Test Result
Band Edge Test Data
Test Mode
Test Item
Polarize
Detector
Zigbee Low CH
Band Edge
Horizontal
Peak
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Temp/Hum
Test Date
Test Engineer
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
2315.712
52.84
-3.58
49.26
74.00
-24.74
peak
2404.416
78.05
-3.25
74.80
peak
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Test Mode
Test Item
Polarize
Detector
Zigbee Low CH
Band Edge
Horizontal
Average
Temperature:
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
2389.968
38.51
-3.28
35.23
54.00
-18.77
AVG
2404.976
73.93
-3.25
70.68
AVG
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Test Mode
Test Item
Polarize
Detector
Zigbee High CH
Band Edge
Horizontal
Peak
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
2479.512
73.90
-2.03
71.87
peak
2534.206
53.17
-1.77
51.40
74.00
-22.60
peak
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Test Mode
Test Item
Polarize
Detector
Zigbee High CH
Band Edge
Horizontal
Average
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Temperature:
Test Date
Test Engineer
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
2480.004
71.25
-2.03
69.22
AVG
2516.740
38.76
-1.82
36.94
54.00
-17.06
AVG
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Below 1GHz
Test Mode
Test Item
Polarize
Detector
Mode 1
30MHz-1GHz
Vertical
Peak and Qusi-peak
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 27, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
48.4300
37.19
-2.98
34.21
40.00
-5.79
QP
60.0700
38.05
-1.29
36.76
40.00
-3.24
QP
122.1500
36.57
0.93
37.50
43.50
-6.00
QP
167.7400
33.87
1.22
35.09
43.50
-8.41
peak
396.6600
27.47
7.29
34.76
46.00
-11.24
peak
963.1400
31.07
2.70
33.77
54.00
-20.23
peak
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Test Mode
Test Item
Polarize
Detector
Mode 1
30MHz-1GHz
Horizontal
Peak and Qusi-peak
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 27, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
122.1500
37.67
0.93
38.60
43.50
-4.90
QP
213.3300
31.32
4.98
36.30
43.50
-7.20
peak
305.4800
26.75
6.92
33.67
46.00
-12.33
peak
397.6300
22.92
7.29
30.21
46.00
-15.79
peak
793.3900
33.90
1.34
35.24
46.00
-10.76
peak
865.1700
33.76
1.25
35.01
46.00
-10.99
peak
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Above 1 GHz
Test Mode
Test Item
Polarize
Detector
Zigbee Low CH
Harmonic
Horizontal
Peak and Average
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
4806.000
4806.000
7214.000
7214.000
52.40
41.93
40.51
31.71
5.05
5.05
12.65
12.65
57.45
46.98
53.16
44.36
74.00
54.00
74.00
54.00
-16.55
-7.02
-20.84
-9.64
peak
AVG
peak
AVG
9622.000
35.42
17.60
53.02
74.00
-20.98
peak
9622.000
26.91
17.60
44.51
54.00
-9.49
AVG
Remark:
1. Measuring frequencies from 1 GHz to the 10th harmonic of highest
fundamental frequency.
2. For above 1GHz,the EUT peak value was under average limit, therefore the
Average value compliance with the average limit
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Test Mode
Test Item
Polarize
Detector
Zigbee Low CH
Harmonic
Vertical
Peak and Average
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
4813.000
49.06
5.07
54.13
74.00
-19.87
peak
4813.000
40.29
5.07
45.36
54.00
-8.64
AVG
7214.000
39.54
12.65
52.19
74.00
-21.81
peak
7214.000
29.71
12.65
42.36
54.00
-11.64
AVG
9622.000
36.61
17.60
54.21
74.00
-19.79
peak
9622.000
28.51
17.60
46.11
54.00
-7.89
AVG
Remark:
1. Measuring frequencies from 1 GHz to the 10th harmonic of highest
fundamental frequency.
2. For above 1GHz,the EUT peak value was under average limit, therefore the
Average value compliance with the average limit
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Test Mode
Test Item
Polarize
Detector
Zigbee Mid CH
Harmonic
Horizontal
Peak and Average
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
4876.000
4883.000
7319.000
7319.000
9760.000
39.12
49.62
39.35
29.40
34.53
5.24
5.26
12.96
12.96
17.60
44.36
54.88
52.31
42.36
52.13
54.00
74.00
74.00
54.00
74.00
-9.64
-19.12
-21.69
-11.64
-21.87
AVG
peak
peak
AVG
peak
9760.000
24.57
17.60
42.17
54.00
-11.83
AVG
Remark:
1. Measuring frequencies from 1 GHz to the 10th harmonic of highest
fundamental frequency.
2. For above 1GHz,the EUT peak value was under average limit, therefore the
Average value compliance with the average limit
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Test Mode
Test Item
Polarize
Detector
Zigbee Mid CH
Harmonic
Vertical
Peak and Average
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
4883.000
4883.000
7319.000
7319.000
9760.000
45.45
37.05
38.49
28.37
34.27
5.26
5.26
12.96
12.96
17.60
50.71
42.31
51.45
41.33
51.87
74.00
54.00
74.00
54.00
74.00
-23.29
-11.69
-22.55
-12.67
-22.13
peak
AVG
peak
AVG
peak
9760.000
23.98
17.60
41.58
54.00
-12.42
AVG
Remark:
1. Measuring frequencies from 1 GHz to the 10th harmonic of highest
fundamental frequency.
2. For above 1GHz,the EUT peak value was under average limit, therefore the
Average value compliance with the average limit
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Test Mode
Test Item
Polarize
Detector
Zigbee High CH
Harmonic
Horizontal
Peak and Average
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
4960.000
46.95
5.46
52.41
74.00
-21.59
peak
4960.000
37.86
5.46
43.32
54.00
-10.68
AVG
7438.000
39.14
13.32
52.46
74.00
-21.54
peak
7438.000
29.33
13.32
42.65
54.00
-11.35
AVG
9920.000
33.18
17.60
50.78
74.00
-23.22
peak
9920.000
23.36
17.60
40.96
54.00
-13.04
AVG
Remark:
1. Measuring frequencies from 1 GHz to the 10th harmonic of highest
fundamental frequency.
2. For above 1GHz,the EUT peak value was under average limit, therefore the
Average value compliance with the average limit
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Test Mode
Test Item
Polarize
Detector
Zigbee High CH
Harmonic
Vertical
Peak and Average
Temp/Hum
Test Date
Test Engineer
27(℃)/ 53%RH
March 26, 2017
Ed Chiang
Frequency
(MHz)
Reading
(dBuV)
Correct
Factor(dB/m)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Remark
4960.000
4960.000
7438.000
7438.000
9920.000
9920.000
46.90
39.66
39.80
30.04
33.97
24.76
5.46
5.46
13.32
13.32
17.60
17.60
52.36
45.12
53.12
43.36
51.57
42.36
74.00
54.00
74.00
54.00
74.00
54.00
-21.64
-8.88
-20.88
-10.64
-22.43
-11.64
peak
AVG
peak
AVG
peak
AVG
Remark:
1. Measuring frequencies from 1 GHz to the 10th harmonic of highest
fundamental frequency.
2. For above 1GHz,the EUT peak value was under average limit, therefore the
Average value compliance with the average limit
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Download: ICG100NAR-2 4GR Test Report Zigbee Foxconn International Inc
Mirror Download [FCC.gov]ICG100NAR-2 4GR Test Report Zigbee Foxconn International Inc
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Display FormatAdobe Acrobat PDF - pdf
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Date Submitted2017-06-15 00:00:00
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Creation Date2017-04-27 16:29:34
Producing SoftwareMicrosoft® Word 2010
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Document TitleTest Report Zigbee
Document CreatorMicrosoft® Word 2010
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Instance ID                     : uuid:07638162-7a34-4b72-a21a-2de8b6e32500
Has XFA                         : No
Page Count                      : 43
Language                        : zh-TW
Author                          : Zeus.Chen
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