CE 1835 C2PC COM.pdf

CE Radio Test Report
Report No. : ER4O2349
Variant CE Radio Test Report
APPLICANT
: Texas Instruments Incorporated
EQUIPMENT
: WiFi and Bluetooth Module
BRAND NAME
: Texas Instruments
MODEL NAME
: WL18MODGB
STANDARD
: ETSI EN 300 328 V1.9.1 (2015-02)
TEST DATE(S)
: Aug. 08, 2015 ~ Sep. 23, 2015
This is a variant report which is only valid together with the original test report.
The measurement shown in this test report is tested in accordance with the
test procedures given in EN 300 328 V1.9.1 (2015-02).
The test results in this report apply exclusively to the tested model / sample.
Without written approval of SPORTON INTERNATIONAL INC., the test report
shall not be reproduced except in full.
Reviewed by: Joseph Lin / Supervisor
Approved by: Jones Tsai / Manager
SPORTON INTERNATIONAL INC.
No. 52, Hwa Ya 1st Rd.,Hwa Ya Technology Park, Kwei-Shan District, Tao Yuan City, Taiwan R.O.C.
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Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Report No. : ER4O2349
TABLE OF CONTENTS
REVISION HISTORY.......................................................................................................................................... 3
SUMMARY OF TEST RESULT ......................................................................................................................... 4
1
2
3
4
GENERAL DESCRIPTION .......................................................................................................................... 5
1.1
Applicant ............................................................................................................................................ 5
1.2
Manufacturer ...................................................................................................................................... 5
1.3
Product Feature of Equipment Under Test ........................................................................................ 5
1.4
Product Specification subjective to this standard .............................................................................. 6
1.5
Modification of EUT ........................................................................................................................... 7
1.6
Testing Facility ................................................................................................................................... 7
1.7
Applied Standards ............................................................................................................................. 8
1.8
Test Condition .................................................................................................................................... 8
TEST CONFIGURATION OF EQUIPMENT UNDER TEST ........................................................................ 9
2.1
Descriptions of Test Mode ................................................................................................................. 9
2.2
Connection Diagram of EUT Test Configurations ........................................................................... 12
2.3
Supported Unit used in test configuration and system .................................................................... 12
2.4
EUT Operation Test Setup .............................................................................................................. 12
TRANSMITTER PARAMETERS ............................................................................................................... 13
3.1
Maximum Transmit Power ............................................................................................................... 13
3.2
Maximum Equivalent Isotropically Radiated Power (E.I.R.P.) Spectral Density ............................. 14
3.3
Occupied Channel Bandwidth ......................................................................................................... 16
3.4
Frequency Hopping Requirements .................................................................................................. 18
3.5
Transmitter unwanted emissions in the out-of-band domain .......................................................... 25
3.6
Transmitter spurious emissions ....................................................................................................... 27
RECEIVER PARAMETERS ....................................................................................................................... 51
4.1
5
Receiver spurious emissions ........................................................................................................... 51
ADAPTIVITY TEST .................................................................................................................................... 59
5.1
Adaptivity and Receiver Blocking .................................................................................................... 59
6
GEO-LOCATION CAPABILITY................................................................................................................. 76
7
PHOTOGRAPHS OF RADIATED EMISSION TEST CONFIGURATION ................................................. 77
8
LIST OF MEASURING EQUIPMENT ........................................................................................................ 78
9
UNCERTAINTY EVALUATION ................................................................................................................. 79
APPENDIX A. TEST RESULT OF CONDUCTED TEST ITEMS
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REVISION HISTORY
REPORT NO. VERSION
DESCRIPTION
ISSUED DATE
This is a variant report by adding 6 new antennas. All the
ER4O2349
Rev. 01
test cases were performed on original report which can be
referred to Sporton Report Number ER3N2752-01. Based
Oct. 15, 2015
on the original report, all tests were verified.
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SUMMARY OF TEST RESULT
CLAUSE
(EN 300 328)
TEST PARAMETER
PASS/FAIL
REMARK
PASS
-
PASS
Only applicable for
modulations
other than FHSS
Occupied Channel Bandwidth
PASS
-
Frequency Hopping Requirements
PASS
Only applicable for FHSS
Transmitter spurious emissions in OOB
PASS
-
Transmitter spurious emissions
PASS
Under limit 13.87 dB
at 11906.250 MHz
PASS
Under limit 7.39 dB
at 11621.250 MHz
Transmitter Parameters
4.3.1.2
4.3.2.2
4.3.2.3
4.3.1.8
4.3.2.7
4.3.1.4
4.3.1.5
4.3.1.9
4.3.2.8
4.3.1.10
4.3.2.9
Maximum Transmit Power
Maximum Equivalent Isotropically Radiated
Power (E.I.R.P.) Spectral Density
Receiver Parameters
4.3.1.11
4.3.2.10
Receiver spurious emissions
Adaptive Test Item
4.3.1.7
4.3.2.6
4.3.1.12
4.3.2.11
Adaptivity
PASS
Only applicable for
adaptive equipment
Receiver Blocking
PASS
Output Power >10dBm
Duty cycle, Tx-Sequence, Tx-gap
Not Required
Only applicable for
non-adaptive equipment
Medium Utilisation (MU) factor
Not Required
Output Power >10dBm
Non-Adaptive Test Item
4.3.1.3
4.3.2.4
4.3.1.6
4.3.2.5
Note:
1.
Bluetooth belongs to adaptive equipment and EIRP > 10dBm.
2.
WiFi belongs to adaptive equipment and EIRP > 10dBm.
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Report No. : ER4O2349
General Description
1.1 Applicant
Texas Instruments Incorporated
12500 TI Boulevard, M/S 8751, Dallas, TX 75243, USA
1.2 Manufacturer
Jorjin Technologies Inc
17F, No. 239, Sec. 1, Datong Rd., Xizhi Dist., New Taipei City 221, Taiwan
1.3 Product Feature of Equipment Under Test
Product Feature
Equipment
Brand Name
WiFi and Bluetooth Module
Texas Instruments
Model Name
WL18MODGB
WLAN 11b/g/n HT20/HT40
Bluetooth v4.0 EDR/LE
EUT supports Radios application
EUT Stage
Identical Prototype
Remark: The above EUT's information was declared by manufacturer. Please refer to the specifications or
user's manual for more detailed description.
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1.4 Product Specification subjective to this standard
Product Specification subjective to this standard
Transmitter / Receiver Frequency Range 2400 MHz ~ 2483.5 MHz
WLAN : 13
Number of Channels
Bluetooth : 79
Bluetooth 4.0 – LE: 40
WLAN : 5 MHz
Channel Spacing
Bluetooth : 1 MHz
Bluetooth 4.0 – LE: 2 MHz
Geo-location capability
Not Supported
<Ant. 1>
802.11b : 19.10 dBm
802.11g : 19.60 dBm
802.11n HT40 : 17.20 dBm
Bluetooth BR (1Mbps) : 15.60 dBm
Maximum EIRP Average Power
Bluetooth 4.0 - LE (1Mbps) : 10.90 dBm
SISO <Ant. 1>
802.11n HT20 : 18.80 dBm
MIMO <Ant. 1+2>
802.11n HT20 : 19.80 dBm
Bluetooth (1Mbps) : GFSK
Bluetooth (2Mbps) :π/4-DQPSK
Bluetooth (3Mbps) : 8-DPSK
Type of Modulation
Bluetooth LE : GFSK
802.11b : DSSS (DBPSK / DQPSK / CCK)
802.11g/n: OFDM (BPSK / QPSK / 16QAM / 64QAM)
Ant. 1
Ant. 2
Bluetooth
V
802.11 b
V
802.11 g
V
Antenna Function for Transmitter
802.11n HT20
V
SISO
802.11n HT20
V
V
MIMO
802.11n HT40
V
Power Supply
from DC power supply
Note: For other wireless features of this EUT, test report will be issued separately.
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Antenna Information
Antenna Type
Brand
2.4GHz~2.5GHz
PCB
Ethertronics
-0.6
Dipole
LSR
2
PCB
Laird
2
Chip
Pulse
3.2
PIFA
LSR
2
Chip
TDK
2.4
1.5 Modification of EUT
No modifications are made to the EUT during all test items.
1.6 Testing Facility
Test Site
SPORTON INTERNATIONAL INC.
Test Site Location
No. 52, Hwa Ya 1st Rd.,Hwa Ya Technology Park, Kwei-Shan District, Tao
Yuan City, Taiwan R.O.C.
TEL: +886-3-327-3456
FAX: +886-3-328-4978
Test Site No.
Sporton Site No. :
TH05-HY; DFS02-HY
Test Site
SPORTON INTERNATIONAL INC.
Test Site Location
No.58, Aly. 75, Ln. 564, Wenhua 3rd Rd. Guishan Dist,
Taoyuan City, Taiwan (R.O.C.)
TEL: +886-3-327-0868
FAX: +886-3-327-0855
Test Site No.
Sporton Site No. :
05CH05-HY
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1.7 Applied Standards
According to the specifications of the manufacturer, the EUT must comply with the requirements of ETSI
EN 300 328 V1.9.1 (2015-02).
Note: All test items were verified and recorded according to the standards and without any deviation
during the test.
1.8 Test Condition
Normal Voltage
DC 5V
Normal Temperature
20℃
Extreme Temperature
-20℃ and 70℃
Note: The test temperature was between -20°C ~ 70°C by manufacturer requested.
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Test Configuration of Equipment under Test
2.1 Descriptions of Test Mode
a.
Preliminary tests were performed in different data rate and recorded the RF power output in the
following tables:
<Ant. 1>
Average Bluetooth RF Output Power (dBm)
Data rate
1Mbps
2Mbps
3Mbps
Avg. Power
11.70
7.40
7.40
Note: Data rate Bluetooth 1Mbps was chosen to be tested due to the highest RF output power.
<Ant. 1>
Average Bluetooth 4.0 - LE RF Output Power (dBm)
Data Rate
CH 00
CH 19
CH 39
Frequency
2402 MHz
2440 MHz
2480 MHz
Avg. Power
6.70
6.40
5.80
2.4GHz 802.11b RF Output Power (dBm)
Channel
CH 01
CH 07
CH 13
Frequency
2412 MHz
2442 MHz
2472 MHz
Avg. Power
15.90
15.80
15.70
2.4GHz 802.11g RF Output Power (dBm)
Channel
CH 01
CH 07
CH 13
Frequency
2412 MHz
2442 MHz
2472 MHz
Avg. Power
11.90
16.40
16.20
2.4GHz 802.11n HT40 RF Output Power (dBm)
Channel
CH 03
CH 07
CH 11
Frequency
2422 MHz
2442 MHz
2462 MHz
Avg. Power
9.60
14.00
13.80
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SISO <Ant. 1>
2.4GHz 802.11n HT20 RF Output Power (dBm)
Channel
CH 01
CH 07
CH 13
Frequency
2412 MHz
2442 MHz
2472 MHz
Avg. Power
12.00
15.60
15.30
MIMO <Ant. 1+2>
2.4GHz 802.11n HT20 RF Output Power (dBm)
Channel
CH 01
CH 07
CH 13
Frequency
2412 MHz
2442 MHz
2472 MHz
Avg. Power
15.60
16.50
16.40
Note: The data rates of WLAN 802.11b/g/n were set in 1Mbps for 802.11b, 6Mbps for 802.11g,
and MCS0 for HT40 for <Ant. 1>; MCS0 for 802.11n HT20 for SISO <Ant. 1>; MCS12 for 802.11n
HT20 for MIMO < Ant. 1+2>due to the highest RF output power.
b.
During radiated spurious emissions testing, the interface cables and equipment positions were
varied according to European Standard EN 300 328 V1.9.1 (2015-02), and the frequency range of
radiation was investigated from 25 MHz to 12750 MHz.
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The following tables for radiated measurement, pre-scanned in three orthogonal panels, X, Y, Z. The
worst cases were recorded in this report.
Test Modes
RF
Tx
Rx
802.11b
802.11g
DSSS
OFDM
802.11b CH01 (2412MHz) for Ant. 1
802.11g CH01 (2412MHz) for Ant. 1
802.11b CH13 (2472MHz) for Ant. 1
802.11g CH13 (2472MHz) for Ant. 1
802.11b CH13 (2472MHz) for Ant. 1
802.11g CH01 (2412MHz) for Ant. 1
Test Modes
RF
802.11n HT20
802.11n HT40
OFDM
OFDM
802.11n HT20 CH13 (2472MHz) for SISO Ant. 1
Tx
802.11n HT20 CH01 (2412MHz) for MIMO Ant. 1+2
802.11n HT20 CH13 (2472MHz) for MIMO Ant. 1+2
802.11n HT40 CH03 (2422MHz) for Ant. 1
802.11n HT40 CH11 (2462MHz) for Ant. 1
Test Modes
RF
Tx
Rx
Bluetooth (1Mbps)
Bluetooth 4.0 - LE
GFSK
GFSK
Bluetooth (1Mbps) CH00 (2402MHz) for Ant. 1
Bluetooth 4.0 - LE CH00 (2402MHz) for Ant. 1
Bluetooth (1Mbps) CH78 (2480MHz) for Ant. 1
Bluetooth 4.0 - LE CH39 (2480MHz) for Ant. 1
Bluetooth (1Mbps) CH78 (2480MHz) for Ant. 1
Bluetooth 4.0 - LE CH39 (2480MHz) for Ant. 1
Remark: All test modes of the Transmitter Radiated Spurious Emission (RSE) and Receiver Radiated Spurious
Emission (RSE) were tested; only the test worse data in bold of these modes were reported.
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2.2 Connection Diagram of EUT Test Configurations
Adapter
230 Vac / 50 Hz
Notebook
EUT
Evaluation board
Fixture
EUT
2.3 Supported Unit used in test configuration and system
Item Equipment
Trade Name Model Name FCC ID
Data Cable Power Cord
AC I/P:
Unshielded, 1.2 m
DC O/P:
Shielded, 1.8 m
1.
Notebook
Lenovo
TP00034A
FCC DoC/
Contains FCC
N/A
ID:QDS-BRCM1058
2.
Fixture
N/A
N/A
N/A
N/A
N/A
3.
Evaluation board
N/A
WG1300BE00 N/A
N/A
N/A
2.4 EUT Operation Test Setup
For Bluetooth and Bluetooth 4.0 – LE function, programmed RF utility, “HCItest” installed in the notebook
make the EUT provide functions like channel selection and power level for continuous transmitting and
receiving signals.
For WLAN function, programmed RF utility, “RTTT” installed in the notebook make the EUT provide
functions like channel selection and power level for continuous transmitting and receiving signals.
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Transmitter Parameters
3.1 Maximum Transmit Power
3.1.1 Limit of Effective Isotropic Radiated Power
SUBCLAUSE 4.3.1.2.3 and 4.3.2.2.3
TEST CONDITION
Normal and Extreme Temperature Conditions
LIMIT
20dBm (e.i.r.p)
3.1.2 Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.1.3 Test Procedure
1. The measurement procedure follows the clause 5.3.2.2.1 of the ETSI EN 300 328 V1.9.1 (2015-02).
2. Placing the EUT in thermal chamber.
3. The EUT is connected to external power supply.
4. Setting thermal chamber temperature and power supply voltage at suitable values.
5. The EIRP = A+G+Y, where A is the power measured, G is the assembly gain of the individual antenna
of the EUT in dBi and Y is the additional beamforming gain of the EUT in dB if applicable, here, Y=0.
6. The measurement duration is at least 1 second to ensure a minimum number of bursts (at least 10) are
captured.
3.1.4 Test Setup
Power Cable connect to
dummy battery
EUT
Power Meter
DC Power supply
Thermal Chamber
3.1.5 Test Results
Refer to Appendix A of this test report.
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3.2 Maximum Equivalent Isotropically Radiated Power (E.I.R.P.) Spectral
Density
3.2.1 Limit of Maximum Power Spectral Density
SUBCLAUSE 4.3.2.3.3
TEST CONDITION
Normal and Extreme Temperature Conditions
LIMIT
10dBm / MHz
Remark: Maximum spectral power density is not applicable to FHSS system device.
3.2.2 Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.2.3 Test Procedure
1.
The measurement procedure follows the clause 5.3.3.2.1 of the ETSI EN 300 328 V1.9.1 (2015-02).
2.
These measurements shall only be performed at normal test conditions.
3.
The measurement shall be repeated for the equipment being configured to operate at the lowest, the
middle, and the highest frequency of the stated frequency range.
4.
The test procedure shall be as follows:
Step 1:
Connect the EUT to the spectrum analyzer and use the following settings:
Start Frequency
2400MHz
Stop Frequency
2483.5MHz
Resolution BW
10kHz
Video BW
30kHz
Sweep Points
8350
Detector
RMS
Trace Mode
Max Hold
Sweep time
10 sec
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Step 2:
Add up the values for amplitude (power) for all the samples in the file.
Step 3:
Normalize the individual values for amplitude so that the sum is equal to the RF Output Power (e.i.r.p.)
measured.
Step 4:
Starting from the first sample in the file (lowest frequency), add up the power of the following samples
representing a 1 MHz segment and record the results for power and position (i.e. sample #1 to #100).
This is the Power Spectral Density (e.i.r.p.) for the first 1 MHz segment which shall be recorded.
Step 5:
Shift the start point of the samples added up in step 4 by 1 sample and repeat the procedure in step 4
(i.e. sample #2 to #101).
Step 6:
Repeat step 5 until the end of the data set and record the radiated Power Spectral Density values for
each of the 1 MHz segments.
From all the recorded results, the highest value is the maximum Power Spectral Density for the EUT.
This value shall be recorded in the test report.
3.2.4 Test Setup
3.2.5 Test Results
Refer to Appendix A of this test report.
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3.3 Occupied Channel Bandwidth
3.3.1 Limit of Occupied Channel Bandwidth
Occupied Channel Bandwidth fall completely within 2.4 GHz – 2.4835 GHz
3.3.2 Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.3.3 Test Procedure
1.
The measurement procedure follows the clause 5.3.8.2.1 of the ETSI EN 300 328 V1.9.1
(2015-02).
2.
The measurement shall be performed only on the lowest and the highest frequency within the
stated frequency range.
3.
The test procedure shall be as follows:
Step 1:
Connect the EUT to the spectrum analyzer and use the following settings:
Center Frequency
Channel under test
Resolution BW
1 % of the span
Video BW
3 × RBW
Frequency hopping equipment:
Lowest frequency separation that is
Frequency Span
used within the hopping sequence.
Other equipment:
2 × Occupied Channel Bandwidth
(e.g. 40 MHz for a 20 MHz channel)
Detector
RMS
Trace Mode
Max Hold
Sweep Time
1s
Step 2:
Wait until the trace is completed.
Find the peak value of the trace and place the analyzer marker on this peak.
Step 3:
Use the 99 % bandwidth function of the spectrum analyzer to measure the Occupied Channel
Bandwidth of the EUT.
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3.3.4 Test Setup
3.3.5 Test Results
Refer to Appendix A of this test report.
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3.4 Frequency Hopping Requirements
3.4.1 Dwell Time and Minimum Frequency Occupation Time
3.4.1.1
Limit of Dwell Time
SUBCLAUSE 4.3.1.4.3
TEST CONDITION
LIMIT
Non-Adaptive Frequency Hopping Systems
15 ms within 15ms * hopping frequencies (N)
Adaptive Frequency Hopping Systems
0.4s within 0.4s * hopping frequencies (N)
Limit of Minimum Frequency Occupation Time
SUBCLAUSE 4.3.1.4.3
TEST CONDITION
LIMIT
Option1: The Minimum Frequency Occupation
Time shall be equal to one dwell time within a
Normal Condition
period not exceeding four times the product of
the dwell time per hop and the number of
hopping frequencies in use.
Remark: This test item is not applicable to DSSS/OFDM device.
3.4.1.2
Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
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3.4.1.3
Report No. : ER4O2349
Test Procedures
1.
The measurement shall be performed on a minimum of 2 hopping frequencies chosen
arbitrary from the actual hopping sequence. The results as well as the frequencies on which
the test was performed shall be recorded in the test report.
2.
The measurement procedure follows the clause 5.3.4.2.1 of the ETSI EN 300 328 V1.9.1
(2015-02).
3.
The analyzer shall be set as follows:
Center Frequency
Channel under test
Frequency Span
0 Hz
Resolution BW
300kHz
Video BW
300kHz
Detector
RMS
Equal to the Dwell Time
Sweep time
× Minimum number of
hopping frequencies (N)
4.
Number of sweep points
30000
Trace Mode
Clear / Write
Trigger
Free Run
For accuracy measurement, the sweep time would be zoomed in and verify the dwell time
which is from the dwell time per hop across the total number of hopping channel. Then record
test result.
5.
Make the following changes on the analyzer to get Minimum Frequency Occupation Time
Sweep time: Equal to 4 × Dwell Time × Actual number of hopping frequencies in use
3.4.1.4
Test Setup
3.4.1.5
Test Results
Refer to Appendix A of this test report.
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Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
3.4.1.6
Report No. : ER4O2349
Test Plots
Dwell Time - Channel 00 DH1
Frequency Occupation Time - Channel 00 DH1
Dwell Time - Channel 00 DH3
Frequency Occupation Time - Channel 00 DH3
Dwell Time - Channel 00 DH5
Frequency Occupation Time - Channel 00 DH5
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CE Radio Test Report
Report No. : ER4O2349
Dwell Time - Channel 78 DH1
Frequency Occupation Time - Channel 78 DH1
Dwell Time - Channel 78 DH3
Frequency Occupation Time - Channel 78 DH3
Dwell Time - Channel 78 DH5
Frequency Occupation Time - Channel 78 DH5
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CE Radio Test Report
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3.4.2 Hopping Sequence
3.4.2.1
Limit of Hopping Sequence
SUBCLAUSE 4.3.1.4.3
TEST CONDITION
LIMIT
Non-Adaptive Frequency Hopping Systems
N
Adaptive Frequency Hopping Systems
N Ch 70% of band
N= 15 or 15 divided by the minimum Hopping Frequency Separation in MHz, whichever is the greater.
Remark: Hopping Sequence is not applicable to DSSS/OFDM device.
3.4.2.2
Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.4.2.3
Test Procedures
The measurement procedure follows the clause 5.3.4.2.1 of the ETSI EN 300 328 V1.9.1 (2015-02).
3.4.2.4
Test Setup
3.4.2.5
Test Results
Refer to Appendix A of this test report.
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CE Radio Test Report
3.4.2.6
Report No. : ER4O2349
Test Plots
Total Number of Hopping Channel Plot on Channel 00 - 78
Ref
20
20 dBm
Offset
* Att
20 dB
* RBW
1 MHz
* VBW
1 MHz
* SWT
1 s
23.4 dB
A
10
1 RM *
MAXH
0
LVL
-10
-20
-30
3DB
-40
-50
-60
-70
-80
Start 2.4 GHz
Date: 12.AUG.2015
Ref
20
4.1 MHz/
03:52:04
20 dBm
Offset
Stop 2.441 GHz
* Att
20 dB
* RBW
1 MHz
* VBW
1 MHz
* SWT
1 s
23.4 dB
A
10
1 RM *
MAXH
0
LVL
-10
-20
-30
3DB
-40
-50
-60
-70
-80
Start 2.441 GHz
Date: 12.AUG.2015
4.25 MHz/
Stop 2.4835 GHz
04:58:53
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3.4.3 Hopping Frequency Separation
3.4.3.1
Limit of Hopping Frequency Separation
SUBCLAUSE 4.3.1.5.3.
TEST CONDITION
LIMIT
Non-Adaptive Frequency Hopping Systems
MAX [ OBW, 100kHz ]
Adaptive Frequency Hopping Systems
100kHz
Remark: Hopping Frequency Separation is not applicable to DSSS/OFDM device.
3.4.3.2
Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.4.3.3
Test Procedures
1. These measurements shall only be performed at normal test conditions.
2. The measurement shall be performed on 2 adjacent hopping frequencies.
3. The frequencies on which the test was performed shall be recorded.
4. The measurement procedure follows the clause 5.3.5.2.1.2 Option 2 of the ETSI EN 300 328
V1.9.1 (2015-02).
3.4.3.4
Test Setup
3.4.3.5
Test Results
Refer to Appendix A of this test report.
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CE Radio Test Report
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3.5 Transmitter unwanted emissions in the out-of-band domain
3.5.1 Transmitter unwanted emissions in the out-of-band domain limit
out-of-band domain limit
3.5.2 Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.5.3 Test Procedures
1. The measurement procedure follows the clause 5.3.9.2.1 of the ETSI EN 300 328 V1.9.1 (2015-02).
2. These measurements shall only be performed at normal test conditions.
3. For conducted measurements on devices with multiple transmit chains using the results for each of the
transmit chains for the corresponding 1 MHz segments shall be added and compared with the transmit
mask limit.
3.5.4 Test Setup
3.5.5 Test Results
Refer to Appendix A of this test report.
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WLAN OOB worse case
Low channel
High channel
Bluetooth Normal mode and Bluetooth 4.0 – LE OOB worse case
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CE Radio Test Report
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3.6 Transmitter spurious emissions
3.6.1 Limit of Transmitter spurious emissions
Spurious emission limits for transmitter:
FREQUENCY RANGE
30 MHz to 47 MHz
47 MHz to 74 MHz
74 MHz to 87,5 MHz
87,5 MHz to 118 MHz
118 MHz to 174 MHz
174 MHz to 230 MHz
230 MHz to 470 MHz
470 MHz to 862 MHz
862 MHz to 1 GHz
1 GHz to 12,75 GHz
SUBCLAUSE 4.3.1.10.3 and 4.3.2.9.3
MAXIMUM POWER
E.R.P.
-36 dBm
-54 dBm
-36 dBm
-54 dBm
-36 dBm
-54 dBm
-36 dBm
-54 dBm
-36 dBm
-30 dBm
BANDWIDTH
100 kHz
100 kHz
100 kHz
100 kHz
100 kHz
100 kHz
100 kHz
100 kHz
100 kHz
1 MHz
3.6.2 Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
3.6.3 Test Procedures
1. The measurement procedure follows the clause 5.3.10.2.2 of the ETSI EN 300 328 V1.9.1 (2015-02).
2. The EUT was placed on a turntable with 1.5m height.
3. The test distance between the receiving antenna and the EUT is 3meter below 1GHz frequency range,
and 3 meter which is in far field test condition for measured frequency above 1GHz, while the
receiving (test) antenna is kept at 1.5 meter height.
4. Set EUT in continuous transmitting with maximum output power.
5. The table was rotated from 0 to 360 degree to search the highest radiated emission.
6. Repeating step 3 and 4 for each polarization and channel to find the worst emission level.
7. The results obtained are compared to the limits in order to prove compliance with the requirement.
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3.6.4 Test Setup
Conducted Setup:
Radiated Test Setup:
<Below 1GHz>
<Above 1GHz>
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3.6.5 Test Results for Conducted Setup
Number of TX = 1, Ant. 1 (Measured)
Test Mode :
802.11b CH01 (2412MHz) for Ant. 1
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
SPORTON INTERNATIONAL INC.
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11g CH13 (2472MHz) for Ant. 1
Test Engineer : Kenny Chen
Report No. : ER4O2349
Temperature :
22~24℃
Relative Humidity : 52~54%
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: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
802.11n HT20 CH13 (2472MHz) for SISO <Ant. 1> Temperature :
Test Engineer : Kenny Chen
22~24℃
Relative Humidity : 52~54%
SPORTON INTERNATIONAL INC.
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11n HT40 CH11 (2462MHz) for Ant. 1
Test Engineer : Kenny Chen
Report No. : ER4O2349
Temperature :
22~24℃
Relative Humidity : 52~54%
SPORTON INTERNATIONAL INC.
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: 32 of 79
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: Oct. 15, 2015
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: Rev. 01
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CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth (1Mbps) CH00 (2402MHz) for Ant. 1
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
SPORTON INTERNATIONAL INC.
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: 33 of 79
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: Oct. 15, 2015
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: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth 4.0 - LE CH00 (2402MHz) for Ant. 1
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
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: Oct. 15, 2015
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: Rev. 01
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CE Radio Test Report
Report No. : ER4O2349
Number of TX = 2, Ant. 1 (Measured)
Test Mode :
802.11n HT20 CH01 (2412MHz) for MIMO
<Ant. 1+2(1)>
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
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: 35 of 79
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Report Issued Date
: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11n HT20 CH13 (2472MHz) for MIMO
<Ant. 1+2(1)>
Test Engineer : Kenny Chen
Report No. : ER4O2349
Temperature :
22~24℃
Relative Humidity : 52~54%
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: Rev. 01
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CE Radio Test Report
Report No. : ER4O2349
Number of TX = 2, Ant. 2 (Measured)
Test Mode :
802.11n HT20 CH01 (2412MHz) for MIMO
<Ant. 1+2(2)>
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
SPORTON INTERNATIONAL INC.
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: 37 of 79
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Report Issued Date
: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11n HT20 CH13 (2472MHz) for MIMO
<Ant. 1+2(2)>
Test Engineer : Kenny Chen
Report No. : ER4O2349
Temperature :
22~24℃
Relative Humidity : 52~54%
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3.6.6 Test Results for Radiated Setup (Cabinet Radiation)
Test Mode :
802.11b CH13 (2472MHz) for Ant. 1
Test Engineer : Elvis Chen
Temperature :
23~24℃
Relative Humidity : 43~44%
Polarization :
Horizontal
SPORTON INTERNATIONAL INC.
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: 39 of 79
TEL : 886-3-327-3456
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11b CH13 (2472MHz) for Ant. 1
Test Engineer : Elvis Chen
Report No. : ER4O2349
Temperature :
23~24℃
Relative Humidity : 43~44%
Polarization :
Vertical
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11g CH01 (2412MHz) for Ant. 1
Test Engineer : Elvis Chen
Report No. : ER4O2349
Temperature :
23~24℃
Relative Humidity : 43~44%
Polarization :
Horizontal
SPORTON INTERNATIONAL INC.
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: 41 of 79
TEL : 886-3-327-3456
Report Issued Date
: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11g CH01 (2412MHz) for Ant. 1
Test Engineer : Elvis Chen
Report No. : ER4O2349
Temperature :
23~24℃
Relative Humidity : 43~44%
Polarization :
Vertical
SPORTON INTERNATIONAL INC.
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: 42 of 79
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Report Issued Date
: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11n HT20 CH13 (2472MHz) for
MIMO Ant. 1+2
Test Engineer : Elvis Chen
Report No. : ER4O2349
Temperature :
23~24℃
Relative Humidity : 43~44%
Polarization :
Horizontal
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
802.11n HT20 CH13 (2472MHz) for
Temperature :
MIMO Ant. 1+2
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Vertical
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
802.11n HT40 CH11 (2462MHz) for Ant. 1 Temperature :
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Horizontal
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: 45 of 79
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
802.11n HT40 CH11 (2462MHz) for Ant. 1 Temperature :
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Vertical
SPORTON INTERNATIONAL INC.
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth (1Mbps) CH78 (2480MHz) for
Temperature :
Ant. 1
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Horizontal
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth (1Mbps) CH78 (2480MHz) for
Temperature :
Ant. 1
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Vertical
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth 4.0 - LE CH39 (2480MHz) for
Temperature :
Ant. 1
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Horizontal
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: Oct. 15, 2015
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Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth 4.0 - LE CH39 (2480MHz) for
Temperature :
Ant. 1
Test Engineer : Elvis Chen
23~24℃
Relative Humidity : 43~44%
Polarization :
Vertical
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CE Radio Test Report
4
Report No. : ER4O2349
Receiver Parameters
4.1 Receiver spurious emissions
4.1.1 Limit of Receiver spurious emissions
FHSS spurious emission limits for receivers:
SUBCLAUSE 4.3.1.11.3
FREQUENCY RANGE
MAXIMUM POWER, E.R.P.
MEASUREMENT
BANDWIDTH
30 MHz to 1 GHz
-57 dBm
100kHz
1 GHz to 12,75 GHz
-47 dBm
1MHz
WLAN spurious emission limits for receivers
SUBCLAUSE 4.3.2.10.3
FREQUENCY RANGE
MAXIMUM POWER, E.R.P.
MEASUREMENT
BANDWIDTH
30 MHz to 1 GHz
-57 dBm
100kHz
1 GHz to 12,75 GHz
-47 dBm
1MHz
4.1.2 Measuring Instruments
The measuring equipment is listed in the section 8 of this test report.
4.1.3 Test Procedures
1. The measurement procedure follows the clause 5.3.11.2.2 of the ETSI EN 300 328 V1.9.1 (2015-02).
2. The EUT was placed on a turntable with 1.5m height.
3. The test distance between the receiving antenna and the EUT is 3meter below 1GHz frequency range,
and 3 meter which is in far field test condition for measured frequency above 1GHz, while the
receiving (test) antenna is kept at 1.5 meter height.
4. Set EUT in receiving mode.
5. The table was rotated from 0 to 360 degree to search the highest radiated emission.
6. Repeating step 3 and 4 for each polarization and channel to find the worst emission level.
7. The results obtained are compared to the limits in order to prove compliance with the requirement.
SPORTON INTERNATIONAL INC.
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: Oct. 15, 2015
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: Rev. 01
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CE Radio Test Report
Report No. : ER4O2349
4.1.4 Test Setup
Conducted Setup:
Radiated Test Setup:
<Below 1GHz>
<Above 1GHz>
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: Rev. 01
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CE Radio Test Report
Report No. : ER4O2349
4.1.5 Test Results for Conducted Setup
Number of TX = 1, Ant. 1 (Measured)
Test Mode :
802.11b CH01 (2472MHz) for Ant. 1
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity :
52~54%
Polarization :
Horizontal
SPORTON INTERNATIONAL INC.
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: 53 of 79
TEL : 886-3-327-3456
Report Issued Date
: Oct. 15, 2015
FAX : 886-3-328-4978
Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
802.11g CH13 (2472MHz) for Ant. 1
Test Engineer : Kenny Chen
Report No. : ER4O2349
Temperature :
22~24℃
Relative Humidity :
52~54%
Polarization :
Vertical
SPORTON INTERNATIONAL INC.
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: 54 of 79
TEL : 886-3-327-3456
Report Issued Date
: Oct. 15, 2015
FAX : 886-3-328-4978
Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth (1Mbps) CH00 (2402MHz) for Ant. 1
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
SPORTON INTERNATIONAL INC.
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: 55 of 79
TEL : 886-3-327-3456
Report Issued Date
: Oct. 15, 2015
FAX : 886-3-328-4978
Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth (1Mbps) CH00 (2402MHz) for Ant. 1
Test Engineer : Kenny Chen
Temperature :
22~24℃
Relative Humidity : 52~54%
No significant emission found.
SPORTON INTERNATIONAL INC.
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: Oct. 15, 2015
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Report Version
: Rev. 01
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CE Radio Test Report
Report No. : ER4O2349
4.1.6 Test Results for Radiated Setup (Cabinet Radiation)
Test Mode :
Bluetooth (1Mbps) CH78 (2480MHz) for
Temperature :
Ant. 1
Test Engineer : Elvis Chen
23~24℃
Relative Humidity :
43~44%
Polarization :
Horizontal
SPORTON INTERNATIONAL INC.
Page Number
: 57 of 79
TEL : 886-3-327-3456
Report Issued Date
: Oct. 15, 2015
FAX : 886-3-328-4978
Report Version
: Rev. 01
Report Template No.: BU5-ER328191 Version 1.0
CE Radio Test Report
Test Mode :
Report No. : ER4O2349
Bluetooth (1Mbps) CH78 (2480MHz) for
Temperature :
Ant. 1
Test Engineer : Elvis Chen
23~24℃
Relative Humidity :
43~44%
Polarization :
Vertical
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Adaptivity Test
5.1 Adaptivity and Receiver Blocking
5.1.1 Limit of Adaptivity and Receiver Blocking
Only for adaptive systems and RF Output Power > 10 dBm
LBT based Detect and Avoid (Load Based Equipment with spectrum sharing mechanism IEEE Std.):
LBT based spectrum sharing mechanism may implement in IEEE Std. 802.11-2012 clauses 9, clause 10,
clause 16, clause 17, clause 19 and clause 20, or in IEEE Std. IEEE 802.15.4-2011, clause 4, clause 5
and clause 8.
Short Control Signaling Transmissions shall have a maximum TxOn / (TxOn + TxOff) ratio of 10 % within
an observation period of 50 ms.
5.1.2 Measurement Instruments
The measuring equipment is listed in the section 8 of this test report.
5.1.3 Test Procedures
1. The measurement procedure follows the clause 5.3.7.2.1 of the ETSI EN 300 328 V1.9.1 (2015-02).
2. For conducted measurements on devices with multiple transmit chains and receive chains. The power
splitter/combiner shall be used to combine all the transmit/receive chains (antenna outputs) into a
single test point. The insertion loss of the power splitter/combiner shall be taken into account.
5.1.4 Test Setup
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5.1.5 Support Unit used in test configuration and system
Item
Instrument
Manufacturer
Model No.
Characteristics
1.
WLAN AP
D-LINK
DIR-855
Dual Band AP
2.
Notebook
Lenovo
E335
FTP / LAN
5.1.6 Test Results of Adaptivity and Receiver Blocking
Equipment Information:
Non-Adaptive Equipment
The maximum RF output power (E.I.R.P.) dBm:
The maximum (Corresponding) Duty Cycle : %
Adaptive Equipment without the possibility to switch to a non-adaptive mode:
The equipment has implemented an LBT based DAA mechanism:
The equipment is Frame Based equipment
The equipment is Load Based equipment
The equipment can switch dynamically between Frame Based and Load Based
equipment
The equipment has implemented an non-LBT based DAA mechanism
The equipment can operate in more than one adaptive mode
Adaptive Frequency Hopping using other forms of DAA (non-LBT based)
Adaptive Equipment which can also operate in non-adaptive mode
Data Rate
Nominal
(single)
Bandwidth
802.11b
11Mbit/s
20MHz
802.11g
54Mbit/s
20MHz
65Mbit/s
20MHz
135 Mbit/s
40MHz
1Mbit/s
1MHz
Modulation
WIFI 2.4GHz
802.11n
HT20
802.11n
HT40
BT Nom
GFSK
Channel
Test
Frequency
Test Result
01
2412 MHz
PASS
13
2472 MHz
PASS
01
2412 MHz
PASS
13
2472 MHz
PASS
01
2412 MHz
PASS
13
2472 MHz
PASS
03
2422 MHz
PASS
11
2462 MHz
PASS
00
2402 MHz
PASS
78
2480 MHz
PASS
Note: The CCA time is declared by the manufacturer.
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5.1.7 Test Plots of Adaptivity Test
802.11b 2412MHz
Maximum Channel Occupancy Time = 1.209ms
Minimum Idle Period = 250.8μs
802.11b 2472MHz
Maximum Channel Occupancy Time = 1.211ms
Minimum Idle Period = 268.8μs
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802.11b 2412MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11b 2472MHz
Detection Level = -66.60 dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11g 2412MHz
Maximum Channel Occupancy Time = 1.209ms
Minimum Idle Period = 100.8μs
802.11g 2472MHz
Maximum Channel Occupancy Time = 246.7μs
Minimum Idle Period = 17.65μs
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802.11g 2412MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11g 2472MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11n HT20 2412MHz
Maximum Channel Occupancy Time = 5.285ms
Minimum Idle Period = 154.5μs
802.11n HT20 2472MHz
Maximum Channel Occupancy Time = 2.690ms
Minimum Idle Period = 226.8μs
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802.11n HT20 2412MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11n HT20 2472MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11n HT40 2422MHz
Maximum Channel Occupancy Time = 3.338ms
Minimum Idle Period = 105.5μs
802.11n HT40 2462MHz
Maximum Channel Occupancy Time = 2.987ms
Minimum Idle Period = 243.7μs
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802.11n HT40 2422MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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802.11n HT40 2462MHz
Detection Level = -66.60dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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BT Nom 2402MHz
Maximum Channel Occupancy Time = 2.868ms
Minimum Idle Period = 80.71ms
BT Nom 2480MHz
Maximum Channel Occupancy Time = 2.896ms
Minimum Idle Period = 16.97ms
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BT Nom 2402MHz
Detection Level = -62.40dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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BT Nom 2480MHz
Detection Level = -62.40dBm/MHz
Interference dwell time = 60 seconds
Transmission abort within Maximum Channel
Occupancy Time after interference added and the
short control signaling is less than 10% duty cycle
AWGN (Interference)
AWGN (Interference) + CW (Blocking Signal)
Note: Detection Level = -70 + 20 – EIRP + Gain for conducted measurement.
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Geo-location Capability
6.1.1 Definition and Requirement
Geo-location capability is a feature of the equipment to determine its geographical location with the
purpose to configure itself according to the regulatory requirements applicable at the geographical location
where it operates.
The geo-location capability may be present in the equipment or in an external device (temporary)
associated with the equipment operating at the same geographical location during the initial power up of
the equipment. The geographical location may also be available in equipment already installed and
operating at the same geographical location.
The geographical location determined by the equipment shall not be accessible to the user.
6.1.2 Description
This device does not support this capability declared by the manufacturer.
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Photographs of Radiated Emission Test Configuration
LF
HF
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List of Measuring Equipment
Instrument
Manufacturer
Model No.
Serial No.
Characteristics
Calibration
Date
Power Sensor
DARE
RadiPower
15I00041SN
O09
10MHz~6GHz
Apr. 30, 2015
Aug. 08, 2015 ~
Apr. 29, 2016
Aug. 31, 2015
Conducted
(TH05-HY)
Power Sensor
DARE
RadiPower
15I00041SN
O10
10MHz~6GHz
Apr. 30, 2015
Aug. 08, 2015 ~
Apr. 29, 2016
Aug. 31, 2015
Conducted
(TH05-HY)
Spectrum
Analyzer
Rohde &
Schwarz
FSP40
100055
9kHz-40GHz
Jun. 18, 2015
Aug. 08, 2015 ~
Jun. 17, 2016
Aug. 31, 2015
Conducted
(TH05-HY)
Temperature
Chamber
ESPEC
SU-241
92003713
-30℃~95℃
Jun. 15, 2015
Aug. 08, 2015 ~
Jun. 14, 2016
Aug. 31, 2015
Conducted
(TH05-HY)
Spectrum
Analyzer
Agilent
N9030A
MY52350276
3Hz~44GHz
Mar. 18, 2015
Aug. 27, 2015 ~
Mar. 17, 2016
Sep. 23, 2015
Conducted
(DFS02-HY)
Signal
Generator
(Interferer)
Rohde &
Schwarz
SMJ100A
101375
9kHz~6GHz
Feb. 12, 2015
Aug. 27, 2015 ~
Feb. 11, 2016
Sep. 23, 2015
Conducted
(DFS02-HY)
Signal
Generator
Agilent
E4438C
Oct. 08, 2014
Aug. 27, 2015 ~
Oct. 07, 2015
Sep. 23, 2015
Conducted
(DFS02-HY)
Bilog Antenna
TESEQ
6111D
Horn Antenna
SCHWARZBE
BBHA 9120 D
CK
MY49070755 250KHz ~ 6GHz
Test Date
Due Date
Remark
35419
30MHz to 1GHz
Mar. 30, 2015
Aug. 14, 2015
Mar. 29, 2016
Radiation
(05CH05-HY)
BBHA 9120
D 1212
1GHz ~ 18GHz
Mar. 11, 2015
Aug. 14, 2015
Mar. 10, 2016
Radiation
(05CH05-HY)
MY53470118
10Hz~44GHz
Mar. 03, 2015
Aug. 14, 2015
Mar. 02, 2016
Radiation
(05CH05-HY)
Jan. 21, 2015
Aug. 14, 2015
Jan. 20, 2016
Radiation
(05CH05-HY)
Spectrum
Analyzer
Agilent
N9010A
Preamplifier
Agilent
8449B
Amplifier
EMCI
EMC001830
980191
10MHz~8GHz
Jan. 20, 2015
Aug. 14, 2015
Jan. 19, 2016
Radiation
(05CH05-HY)
Antenna Mast
ChainTek
MD-200
1308055
1m~4m
N/A
Aug. 14, 2015
N/A
Radiation
(05CH05-HY)
Turn Table
EMEC
TT 2000
N/A
0-360 degre
N/A
Aug. 14, 2015
N/A
Radiation
(05CH05-HY)
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Uncertainty Evaluation
Test Item
Uncertainty
Occupied Channel Bandwidth
± 0.49 %
RF output power, conducted
±0.61 dB
Power density, conducted
±0.60 dB
Radiated emissions
±2.96 dB
Temperature
Humidity
Time
±0.8 °C
±3 %
±0.33 %
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Appendix A. Test Result of Conducted Test Items
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Test Engineer:
Test Date:
Bill Kuo
2015/08/08 ~ 2015/08/12
Temperature:
24~26
°C
Relative Humidity:
46~49
%
A-1 of 7
Report Number : ER4O2349
TEST RESULTS DATA
EIRP Power
Conducted Power (dBm)
Mod.
Data
NTX CH.
Rate
Freq.
(MHz)
Temperature
Nomal
Extreme
Temperature
Low
20 °C
Ant 1
BTNom 1Mbps 1
BTNom 1Mbps 1
BTNom 1Mbps 1
BLE 1Mbps 1
Extreme
Temperature
High
-20 °C
Ant 2
Ant 1
Gain
(dBi)
70 °C
Ant 2
Ant 1
Ant 2
Ant 1
0
2402
11.60
12.40
11.60
3.20
39
2441
11.60
12.00
11.30
3.20
78
2480
11.70
11.90
11.20
3.20
Ant 2
0
2402
6.70
7.70
6.00
3.20
19
2440
6.40
7.10
5.40
3.20
BLE
1Mbps 1
1Mbps 1
39
2480
5.80
6.50
4.80
3.20
11b
1Mbps 1
1
2412
15.90
15.90
15.50
3.20
11b
1Mbps 1
7
2442
15.80
15.60
14.90
3.20
11b
1Mbps 1
6Mbps 1
13
2472
15.70
15.10
14.60
3.20
1
2412
11.90
11.90
10.80
3.20
6Mbps 1
6Mbps 1
7
2442
16.40
16.00
15.20
3.20
13
2472
16.20
15.40
15.00
3.20
HT20 MCS0 1
HT20 MCS0 1
1
2412
12.00
12.00
10.90
3.20
7
2442
15.60
15.20
14.40
3.20
HT20 MCS0 1
13
2472
15.30
14.70
14.20
3.20
HT40 MCS0 1
HT40 MCS0 1
3
2422
9.60
9.80
8.60
3.20
7
2442
14.00
13.50
12.90
3.20
HT40 MCS0 1
HT20 MCS12 2
11
2462
13.80
13.20
12.70
1
2412
15.60
16.30
14.00
3.20
HT20 MCS12 2
HT20 MCS12 2
7
2442
16.50
15.40
15.80
3.20
13
2472
16.40
16.60
15.70
3.20
BLE
11g
11g
11g
3.20
A-2 of 7
EIRP Power (dBm)
Mod.
Data
NTX CH.
Rate
Freq.
(MHz)
Temperature
Nomal
Ant 1
Ant 2
Temperature
Low
Ant 1
Ant 2
Temperature
High
Ant 1
Limit
(dBm)
Pass/Fail
Ant 2
BTNom 1Mbps 1
BTNom 1Mbps 1
0
2402
14.80
15.60
14.80
20
Pass
39
2441
14.80
15.20
14.50
20
Pass
BTNom 1Mbps 1
78
2480
14.90
15.10
14.40
20
Pass
0
2402
9.90
10.90
9.20
20
Pass
19
2440
9.60
10.30
8.60
20
Pass
1Mbps 1
1Mbps 1
39
2480
9.00
9.70
8.00
20
Pass
1
2412
19.10
19.10
18.70
20
Pass
7
2442
19.00
18.80
18.10
20
Pass
11b
1Mbps 1
1Mbps 1
13
2472
18.90
18.30
17.80
20
Pass
11g
6Mbps 1
1
2412
15.10
15.10
14.00
20
Pass
11g
6Mbps 1
6Mbps 1
7
2442
19.60
19.20
18.40
20
Pass
13
2472
19.40
18.60
18.20
20
Pass
HT20 MCS0 1
HT20 MCS0 1
1
2412
15.20
15.20
14.10
20
Pass
7
2442
18.80
18.40
17.60
20
Pass
HT20 MCS0 1
13
2472
18.50
17.90
17.40
20
Pass
HT40 MCS0 1
HT40 MCS0 1
3
2422
12.80
13.00
11.80
20
Pass
7
2442
17.20
16.70
16.10
20
Pass
HT40 MCS0 1
HT20 MCS12 2
11
2462
17.00
20
Pass
1
2412
18.80
19.50
17.20
20
Pass
HT20 MCS12 2
HT20 MCS12 2
7
2442
19.70
18.60
19.00
20
Pass
13
2472
19.60
19.80
18.90
20
Pass
BLE
BLE
BLE
11b
11b
11g
1Mbps 1
1Mbps 1
16.40
15.90
A-3 of 7
Report Number : ER4O2349
TEST RESULTS DATA
EIRP Power Density
Power Density
Mod.
Data
NTX CH.
Rate
EIRP
Power Density
(dBm/MHz)
Freq.
(MHz)
Ant 1
BLE
Pass/Fail
Ant 2
0
2402
9.95
10
Pass
19
2440
9.55
10
Pass
1Mbps 1
1Mbps 1
39
2480
8.94
10
Pass
1
2412
9.90
10
Pass
1Mbps 1
1Mbps 1
7
2442
9.83
10
Pass
13
2472
9.80
10
Pass
6Mbps 1
6Mbps 1
1
2412
4.82
10
Pass
7
2442
8.98
10
Pass
6Mbps 1
HT20 MCS0 1
13
2472
8.92
10
Pass
1
2412
4.71
10
Pass
HT20 MCS0 1
HT20 MCS0 1
7
2442
8.37
10
Pass
13
2472
7.78
10
Pass
HT40 MCS0 1
HT40 MCS0 1
3
2422
-0.72
10
Pass
7
2442
3.62
10
Pass
HT40 MCS0 1
HT20 MCS12 2
11
2462
3.39
10
Pass
1
2412
8.25
10
Pass
HT20 MCS12 2
HT20 MCS12 2
7
2442
8.94
10
Pass
13
2472
8.81
10
Pass
BLE
BLE
11b
11b
11b
11g
11g
1Mbps 1
1Mbps 1
Limit
(dBm
/MHz)
11g
A-4 of 7
Report Number : ER4O2349
TEST RESULTS DATA
99% Occupied Bandwidth
Occupied Bandwidth
Mod.
Data
NTX CH.
Rate
Freq.
(MHz)
99% Occupied BW
(MHz)
Ant 1
BTNom 1Mbps 1
BTNom 1Mbps 1
BTNom 2Mbps 1
BTNom 2Mbps 1
BTNom 3Mbps 1
BTNom 3Mbps 1
BLE
Ant 2
Freq. Low
(MHz)
Ant 1
Ant 2
Freq. High
(MHz)
Ant 1
Limit
(Within
operating
Band)
Pass/Fail
Ant 2
0
2402
0.83
2401.58
2402.41
Pass
78
2480
0.83
2479.58
2480.41
Pass
0
2402
1.17
2401.40
2402.56
Pass
78
2480
1.16
2479.40
2480.56
Pass
0
2402
1.16
2401.42
2402.58
Pass
78
2480
1.16
2479.42
2480.58
Pass
0
2402
1.02
2401.49
2402.51
Pass
BLE
1Mbps 1
1Mbps 1
39
2480
1.02
2479.48
2480.51
Pass
11b
1Mbps 1
1
2412
14.84
2404.60
2419.44
Pass
11b
1Mbps 1
6Mbps 1
13
2472
14.84
2464.56
2479.40
Pass
1
2412
16.80
2403.60
2420.40
Pass
11g 6Mbps 1
HT20 MCS0 1
HT20 MCS0 1
13
2472
17.60
2463.16
2480.76
Pass
1
2412
17.80
2403.08
2420.88
Pass
13
2472
18.28
2462.84
2481.12
Pass
HT40 MCS0 1
HT40 MCS0 1
3
2422
35.92
2404.00
2439.92
Pass
11
2462
36.08
2443.92
2480.00
Pass
1
2412
17.80
2403.08
2420.88
Pass
13
2472
18.04
2462.96
2481.00
Pass
11g
HT20 MCS12 2
HT20 MCS12 2
A-5 of 7
Report Number : ER4O2349
TEST RESULTS DATA
OOB Emission Level
Mod.
Data
NTX CH.
Rate
Freq.
(MHz)
OOB Emission Worst Level (dBm/MHz)
Ant 1
BTNom 1Mbps 1
BTNom 2Mbps 1
BTNom 3Mbps 1
BLE 1Mbps 1
Limit
(dBm
/MHz)
Pass/Fail
Ant 2
hopping
-26.71
-10,-20
Pass
hopping
-27.95
-10,-20
Pass
hopping
-28.80
-10,-20
Pass
0
2402
-20.19
-10,-20
Pass
1Mbps 1
1Mbps 1
39
2480
-34.64
-10,-20
Pass
1
2412
-30.57
-10,-20
Pass
1Mbps 1
6Mbps 1
13
2472
-31.46
-10,-20
Pass
1
2412
-25.91
-10,-20
Pass
6Mbps 1
HT20 MCS0 1
13
2472
-10.34
-10,-20
Pass
1
2412
-24.66
-10,-20
Pass
HT20 MCS0 1
13
2472
-10.78
-10,-20
Pass
HT40 MCS0 1
HT40 MCS0 1
3
2422
-32.28
-10,-20
Pass
11
2462
-17.01
-10,-20
Pass
HT20 MCS12 2
HT20 MCS12 2
1
2412
-22.36
-10,-20
Pass
13
2472
-13.68
-10,-20
Pass
BLE
11b
11b
11g
11g
A-6 of 7
Report Number : ER4O2349
TEST RESULTS DATA
Bluetooth Test Items
Dwell Time of each Frequency Measurement
BT
(Hopping
Mode)
Frequency
Dwell Time
Occupation
Max. Limit
Time
(ms)
Hop#
(ms)
Frequency
Occupation
Time min.
Limit (ms)
Pass
/Fail
0.81
0.40
Pass
1
0.40
0.40
Pass
400
4
6.68
1.67
Pass
281.24
400
3
5.01
1.67
Pass
2.92
278.08
400
3
8.76
2.92
Pass
2.92
304.41
400
2
5.84
2.92
Pass
Dwell Time
per
hop(ms)
Dwell
Time(ms)
2402 MHz
0.40
128.88
400
2
2480 MHz
0.40
128.47
400
2402 MHz
1.67
277.03
2480 MHz
1.67
2402 MHz
2480 MHz
DH1
DH3
DH5
Hopping Sequence Measurement
Total Number of
Hopping Frequency
Limit of operating
minimum channel
(at least 70% of
band)
79
59
Minimum Number of
Limit of hopping
Adaptive Frequency
frequencies at all times
Hopping
20
15
Hopping Channel Separation Measurement
BT
Separation(MHz)
Limit(MHz)
Pass
/Fail
CH 00
1.002
>0.1
Pass
CH 39
0.987
>0.1
Pass
CH 78
1.008
>0.1
Pass
A-7 of 7
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