RF Test Report-Transmit Simultaneously

FCC ID: PY319200447

Test Report

Download: PDF
FCCID_4394315

                     Supplemental “Transmit Simultaneously” Test Report

                       Report No.: RF190516E01-2

                            FCC ID: PY319200447

                       Test Model: CAX80

                 Received Date: May 16, 2019

                         Test Date: July 06 to 12, 2019

                     Issued Date: Aug. 06, 2019


                         Applicant: NETGEAR, Inc.

                          Address: 350 East Plumeria Drive San Jose, CA 95134


                        Issued By: Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch
                                   Hsin Chu Laboratory
                    Lab Address: E-2, No.1, Li Hsin 1st Road, Hsinchu Science Park, Hsinchu City 300,
                                 Taiwan R.O.C.
            Test Location: E-2, No.1, Li Hsin 1st Road, Hsinchu Science Park, Hsinchu City 300,
                           Taiwan R.O.C.
       FCC Registration /
                           723255 / TW2022
      Designation Number:




This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted
only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this
report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product
unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you
provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided,
however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time
shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. Unless specific
mention, the uncertainty of measurement has been explicitly taken into account to declare the compliance or non-compliance to the specification. This report
should not be used by the client to claim product certification, approval, or endorsement by TAF or any government agencies.


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Reference No.: 190218E06


                                                                   Table of Contents
Release Control Record .................................................................................................................................. 3
1         Certificate of Conformity ...................................................................................................................... 4
2         Summary of Test Results ..................................................................................................................... 5
    2.1      Measurement Uncertainty ................................................................................................................... 5
    2.2      Modification Record ............................................................................................................................ 5
3         General Information .............................................................................................................................. 6
    3.1      General Description of EUT ................................................................................................................ 6
    3.1.1    Test Mode Applicability and Tested Channel Detail ............................................................................. 8
    3.2      Description of Support Units ............................................................................................................. 10
    3.2.1    Configuration of System under Test .................................................................................................. 10
4         Test Types and Results ....................................................................................................................... 11
    4.1      Radiated Emission and Bandedge Measurement .............................................................................. 11
    4.1.1    Limits of Radiated Emission and Bandedge Measurement ............................................................... 11
    4.1.2    Test Instruments ................................................................................................................................ 12
    4.1.3    Test Procedures ................................................................................................................................. 13
    4.1.4    Deviation from Test Standard ............................................................................................................ 14
    4.1.5    Test Setup .......................................................................................................................................... 14
    4.1.6    EUT Operating Conditions................................................................................................................. 15
    4.1.7    Test Results ....................................................................................................................................... 16
    4.2      Conducted Emission Measurement .................................................................................................. 19
    4.2.1    Limits of Conducted Emission Measurement .................................................................................... 19
    4.2.2    Test Instruments ................................................................................................................................ 19
    4.2.3    Test Procedures ................................................................................................................................. 20
    4.2.4    Deviation from Test Standard ............................................................................................................ 20
    4.2.5    Test Setup .......................................................................................................................................... 20
    4.2.6    EUT Operating Conditions................................................................................................................. 20
    4.2.7    Test Results ....................................................................................................................................... 21
    4.3      Conducted Out of Band Emission Measurement .............................................................................. 23
    4.3.1    Limits of Conducted Out of Band Emission Measurement................................................................ 23
    4.3.2    Test Setup .......................................................................................................................................... 23
    4.3.3    Test Instruments ................................................................................................................................ 23
    4.3.4    Test Procedures ................................................................................................................................. 23
    4.3.5    Deviation from Test Standard ............................................................................................................ 23
    4.3.6    EUT Operating Conditions................................................................................................................. 23
    4.3.7    Test Results ....................................................................................................................................... 23
5         Pictures of Test Arrangements .......................................................................................................... 25
Appendix – Information of the Testing Laboratories ................................................................................. 26




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Reference No.: 190218E06


                                            Release Control Record


Issue No.                   Description                                     Date Issued
RF190516E01-2               Original release.                               Aug. 06, 2019




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Reference No.: 190218E06


1    Certificate of Conformity


            Product: Nighthawk CAX8 AX6000 WiFi Cable Router

              Brand: NETGEAR

        Test Model: CAX80

    Sample Status: ENGINEERING SAMPLE

          Applicant: NETGEAR, Inc.

          Test Date: July 06 to 12, 2019

         Standards: 47 CFR FCC Part 15, Subpart C (Section 15.247)
                        47 CFR FCC Part 15, Subpart E (Section 15.407)
                        ANSI C63.10: 2013



The above equipment has been tested by Bureau Veritas Consumer Products Services (H.K.) Ltd.,
Taoyuan Branch, and found compliance with the requirement of the above standards. The test record, data
evaluation & Equipment Under Test (EUT) configurations represented herein are true and accurate accounts
of the measurements of the sample’s EMC characteristics under the conditions specified in this report.




      Prepared by :                                             ,   Date:       Aug. 06, 2019
                               Wendy Wu / Specialist




     Approved by :                                              ,   Date:       Aug. 06, 2019
                                 May Chen / Manager




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2      Summary of Test Results


                             47 CFR FCC Part 15, Subpart C, E (SECTION 15.247, 15.407)

           FCC
                                        Test Item                 Result                     Remarks
          Clause
          15.207                                                             Meet the requirement of limit.
           5.20                 AC Power Conducted                PASS       Minimum passing margin is —17.85dB
       15.407(b)(6)                     Emission                             at 0.36094MHz.
    15.205 / 15.209 /
                                 :       feai                                Meet the requirement of limit.
        15.247(d)            Radiated Emissions and Band                       h           .        ma
        15.407(b)                Edge Measurement                 PASS       g/lénéT'\L;lEZpassmg margin is —4.6dB at

      (1/2/3i4(i/ii}/6)
Note:
Determining compliance based on the results of the compliance measurement, not taking into account
measurement instrumentation uncertainty.



2.1      Measurement Uncertainty

Where relevant, the following measurement uncertainty levels have been estimated for tests performed on
the EUT as specified in CISPR 16—4—2:



                          Measurement                                  Frequency              ExpancéESQl)Jrgf? uy

          Conducted Emissions at mains ports                     150kHz ~ 30MHz                       1.8 dB
             Radiated Emissions up to 1 GHz                       30MHz ~ 1GHz                        4.9 dB
                                                                      1GHz ~ 6GHz                     5.1 dB
            Radiated Emissions above 1 GHz                        6GHz ~ 18GHz                        4.9 dB
                                                                  18GHz ~ 40GHz                       5.2 dB



2.2       Modification Record
There were no modifications required for compliance.




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3     General Information
3.1     General Description of EUT
 Product                       Nighthawk CAX8 AX6000 WiFi Cable Router
 Brand                         NETGEAR
 Test Model                    CAX80
 Status of EUT                 ENGINEERING SAMPLE
 Power Supply Rating           19Vdc from power adapter
                               CCK, DQPSK, DBPSK for DSSS
                               64QAM, 16QAM, QPSK, BPSK for OFDM
 Modulation Type               256QAM for OFDM in VHT20/40 mode
                               1024QAM for OFDM in 11ac mode
                               1024QAM for OFDMA in 11ax HE mode
 Modulation Technology         DSSS, OFDM, OFDMA
                               802.11b: up to 11Mbps
                               802.11a/g: up to 54Mbps
 Transfer Rate                 802.11n: up to 600Mbps
                               802.11ac: up to 1733.3Mbps
                               802.11ax: up to 2401.9Mbps
                               2.4GHz: 2.412 ~ 2.462GHz
 Operating Frequency           5GHz: 5.18~ 5.24GHz, 5.745 ~ 5.825GHz
                               2.4GHz:
                               802.11b, 802.11g, 802.11n (HT20), VHT20, 802.11ax (HE20): 11
                               802.11n (HT40), VHT40, 802.11ax (HE40): 7
 Number of Channel             5GHz:
                               802.11a, 802.11n (HT20), 802.11ac (VHT20), 802.11ax (HE20): 9
                               802.11n (HT40), 802.11ac (VHT40), 802.11ax (HE40): 4
                               802.11ac (VHT80), 802.11ax (HE80): 2
 Antenna Type                  Refer to Note
 Antenna Connector             Refer to Note
 Accessory Device              Adapter x 1
 Data Cable Supplied           RJ45 cable x 1 (Shielded, 1.8m)
Note:
1. Simultaneously transmission condition.
      Condition                                          Technology
          1                        WLAN (2.4GHz)                             WLAN 5GHz
Note: The emission of the simultaneous operation has been evaluated and no non-compliance was found.
2. The EUT must be supplied power adapter and following different models could be chosen as following
   table:
No. Brand          Model No.                       P/N          Spec.
                                                                Input: 100-120Vac, 1.7A, 50/60Hz
  1 NETGEAR 2ABS060K 1            NJ          332-11468-01      Output: 19V, 3.16A
                                                                DC Output cable: Unshielded, 1.85m
                                                                Input: 100-120Vac, 1.5A, 50/60Hz
  2 NETGEAR AD2003F10                         332-11480-01      Output: 19V, 3.16A
                                                                DC Output cable: Unshielded, 1.85m
                                                                Input: 100-120Vac, 1.5A, 50/60Hz
                   ADS-65MI-19B 19060EPC-L
  3 NETGEAR                                   332-11066-01      Output: 19V, 3.16A
                   ADS-65MI-19B 19060EPCU-L
                                                                DC Output cable: Unshielded, 1.85m
Note: From the above adapters, the AC Power Conducted Emissions worst case was found in Adapter 3; the
Radiated Emissions worst case was found in Adapter 2. Therefore only the test data of the mode was
recorded in this report.




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3. The antennas provided to the EUT, please refer to the following table:

     Frequt(agiiyz)Range         Dwecuonal(dAé]it)enna s                   Antenna Type          Antenna Connector

        2.4~2.4835                          5.97
         5.15~5.25                          5.91
         5.25~5.35                          6.34                               PIFA                    ipex(MHF)
        5.47~5.725                          6.05
       5.725~5.85                       6.13
 Note: More detailed information, please refer to opearating description.



                            Anlenr}(ajé\li;at 5n            Antenna Type        Connector Type      |Cable Length (mm)
  Fl’equt(agfiiyz)Range

      5.15~5.85                    Le?
                                (RX only)
                                                                  PoB             i—pex(MHE)                  260
4. The EUT incorporates a MIMO function:
                                                          24GHz Band
  MODULATION MODE                                                TX & RX CONFIGURATION
         802.11b                                   4TX                                           4RX
         802110                                    4TX                                           4RX
     802.11n (HT20)                                4TX                                           4RX
     802.11n (HT40)                                4TX                                           4RX
         VHT20                                     4TX                                           4RX
         VHTA4O                                    4TX                                           4RX
    802.11ax (HE20)                                4TX                                           4RX
    802.11ax (HE40)                                4TX                                           4RX
                                                           5GHz Band
  MODULATION MODE                                                TX & RX CONFIGURATION
         802.11a                                   4TX                                           4RX
     802.11n (HT20)                                4TX                                           4RX
     802.11n (HT40)                                4TX                                           4RX
   802. 11ac (VHT20)                               4TX                                           4RX
   802. 11ac (VHT40)                               4TX                                           4RX
   802.11ac (VHT80)                                4TX                                           4RX
    802.11ax (HE20)                                4TX                                           4RX
    802.11ax (HE40)                                4TX                                           4RX
    802.11ax (HE8O)                                4TX                                           4RX
     Receiver Mode                                  —                                            1RX
Note: All of modulation mode support beamforming function except 802.11a/b/g modulation mode.
5. The above EUT information is declared by manufacturer and for more detailed features description,
   please refers to the manufacturer‘s specifications or user‘s manual.




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3.1.1        Test Mode Applicability and Tested Channel Detail

    EUT                                   APPLICABLE TO
 CONFIGURE                                                                                      DESCRIPTION
   MODE                RE1G           RE<1G              PLC             OB

         -                √               √                √               √                            -
              RE1G: Radiated Emission above 1GHz &
Where                                                     RE<1G: Radiated Emission below 1GHz
              Bandedge Measurement
              PLC: Power Line Conducted Emission          OB: Conducted Out-Band Emission Measurement


Radiated Emission Test (Above 1GHz):

   Following channel(s) was (were) selected for the final test as listed below.
                                   AVAILABLE                                     MODULATION
              MODE                                      TESTED CHANNEL                                  MODULATION TYPE
                                    CHANNEL                                      TECHNOLOGY

             802.11g                 1 to 11                     6                   OFDM                    BPSK
                +
                                     36 to 48
        802.11ax (HE20)                                         165                 OFDMA                    BPSK
                                    149 to 165


Radiated Emission Test (Below 1GHz):

   Following channel(s) was (were) selected for the final test as listed below.
                                   AVAILABLE                                     MODULATION
              MODE                                      TESTED CHANNEL                                  MODULATION TYPE
                                    CHANNEL                                      TECHNOLOGY

             802.11g                 1 to 11                     6                   OFDM                    BPSK
                +
                                     36 to 48
        802.11ax (HE20)                                         165                 OFDMA                    BPSK
                                    149 to 165


Power Line Conducted Emission Test:

   Following channel(s) was (were) selected for the final test as listed below.
                                   AVAILABLE                                     MODULATION
              MODE                                      TESTED CHANNEL                                  MODULATION TYPE
                                    CHANNEL                                      TECHNOLOGY

             802.11g                 1 to 11                     6                   OFDM                    BPSK
                +
                                     36 to 48
        802.11ax (HE20)                                         165                 OFDMA                    BPSK
                                    149 to 165


Conducted Out-Band Emission Measurement:

   Following channel(s) was (were) selected for the final test as listed below.
                                   AVAILABLE                                     MODULATION
              MODE                                      TESTED CHANNEL                                  MODULATION TYPE
                                    CHANNEL                                      TECHNOLOGY

             802.11g                 1 to 11                     6                   OFDM                    BPSK
                +
                                     36 to 48
        802.11ax (HE20)                                         165                 OFDMA                    BPSK
                                    149 to 165




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Reference No.: 190218E06


Test Condition:

   APPLICABLE TO            ENVIRONMENTAL CONDITIONS           INPUT POWER             TESTED BY
        RE1G                    22deg. C, 64%RH               120Vac, 60Hz              Ryan Du
       RE<1G                     22deg. C, 66%RH               120Vac, 60Hz           Robert Cheng
         PLC                     25deg. C, 75%RH               120Vac, 60Hz              Andy Ho
         OB                      25deg. C, 60%RH               120Vac, 60Hz           Jyunchun Lin




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3.2      Description of Support Units

The EUT has been tested as an independent unit together with other necessary accessories or support units.
The following support units or accessories were used to form a representative test configuration during the
tests.

 ID          Product              Brand               Model No.                Serial No.          FCC ID              Remarks
 A.          Laptop              Lenovo                 81A4                   YD02YN2A         PD93165NGU         Provided by Lab
 B.          Laptop               DELL                  E5430                  HYV4VY1             FCC DoC         Provided by Lab
 C.         USB Disk         SanDisk(32GB)               NA                       NA                 NA            Provided by Lab
Note:
1. All power cords of the above support units are non-shielded (1.8m).


                                                                    Shielding
 ID          Descriptions                Qty.       Length (m)                      Cores (Qty.)                 Remarks
                                                                    (Yes/No)
 1.            DC Cable                   1            1.85              Yes                0                Supplied by client
 2.          RJ-45 Cable                  1             10               No                 0                 Provided by Lab
 3.          RJ-45 Cable                  1             10               No                 0                 Provided by Lab
 4.          Coaxial Cable                1             10               Yes                0                 Provided by Lab




3.2.1     Configuration of System under Test




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4        Test Types and Results
4.1      Radiated Emission and Bandedge Measurement

4.1.1      Limits of Radiated Emission and Bandedge Measurement

Radiated emissions which fall in the restricted bands must comply with the radiated emission limits
specified as below table.

               Frequencies                             Field Strength                       Measurement Distance
                  (MHz)                               (microvolts/meter)                            (meters)
              0.009 ~ 0.490                             2400/F(kHz)                                      300
              0.490 ~ 1.705                             24000/F (kHz)                                    30

               1.705 ~ 30.0                                   30                                         30
                 30 ~ 88                                     100                                          3
                88 ~216                                      150                                          3
                216 ~ 960                                    200                                          3
               Above 960                                     500                                          3
Note:
1.    The lower limit shall apply at the transition frequencies.
2.       Emission level (dBuV/m) = 20 log Emission level (uV/m).
3.       For frequencies above 1000MHz, the field strength limits are based on average detector, however, the
         peak field strength of any emission shall not exceed the maximum permitted average limits, specified
         above by more than 20dB under any condition of modulation.
Limits of unwanted emission out of the restricted bands
                   Applicable To                                                        Limit

     789033 DO2 General UNII Test Procedure                                     Field Strength at 3m
                 New Rules v02r01                              PK:74 (dBuV/m)                      AV:54 (dBuV/m)
      Frequency Band             Applicable To                     EIRP Limit                peshsiont Féen'qd se
      5150~5250 MHz              15.407(b)(1)
      5250~5350 MHz              15.407(b)(2)                PK:—27 (dBm/MHz)                     PK:68.2(dBuV/im)
      5470~5725 MHz              15.407(b)(3)
                                                            PK: —27 (dBm/MHz);                    PK: 68.2(dBuV/m) 12
                                                 .          PK: 10 (dBm/MHz) *                   PK: 105.2 (dBuV/im)]
      5725~5850 MHz         B      15.407(b)(4)()          PK: 15.6 (dBm/MHz) *                  PK: 110.8(dBuVim)
                                                            PK: 27 (dBm/MHz) "*                  PK: 122.2 (dBuV/im)*
                            C      15.407(b)(4)(ii)                      Emission limits in section 15.247(d)
                                                                   2                         —       —        —
    n                                                                below the band edge increasing linearly to 10
    . beyond 75 MHz or more above of the band edge.                . dBm/MHz at 25 MHz above.
     ° below the band edge increasing linearly to a level          "* from 5 MHz above or below the band edge
       of 15.6 dBm/MHz at 5 MHz above.                                increasing linearly to a level of 27 dBm/MHz at
                                                                       the band edge.
Note:
The following formula is used to convert the equipment isotropic radiated power (eirp) to field strength:


     = w                      uV/m, where P is the eirp (Watts).



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4.1.2 Test Instruments
DESCRIPTION &                                                                   CALIBRATED CALIBRATED
                                  MODEL NO.                  SERIAL NO.
MANUFACTURER                                                                    DATE              UNTIL
Test Receiver
                                 N9038A                      MY50010156         July 12, 2018     July 11, 2019
Agilent
Pre-Amplifier
                                  EMC001340                  980142             Jan. 25, 2019     Jan. 24, 2020
EMCI
Loop Antenna
                                  EM-6879                    269                Sep. 07, 2018     Sep. 06, 2019
Electro-Metrics
RF Cable                          NA                         LOOPCAB-001        Jan. 14, 2019     Jan. 13, 2020
RF Cable                          NA                         LOOPCAB-002        Jan. 14, 2019     Jan. 13, 2020
Pre-Amplifier
                                 ZFL-1000VH2B               AMP-ZFL-01          Oct. 30, 2018     Oct. 29, 2019
Mini-Circuits
Trilog Broadband Antenna
                                  VULB 9168                  9168-406           Nov. 22, 2018     Nov. 21, 2019
SCHWARZBECK
RF Cable                          8D                         966-4-1            Mar. 19, 2019     Mar. 18, 2020
RF Cable                          8D                         966-4-2            Mar. 19, 2019     Mar. 18, 2020
RF Cable                          8D                         966-4-3            Mar. 19, 2019     Mar. 18, 2020
Fixed attenuator
                                  UNAT-5+                    PAD-3m-4-01        Sep. 27, 2018     Sep. 26, 2019
Mini-Circuits
Horn_Antenna
                                  BBHA 9120D                 9120D-783          Nov. 25, 2018     Nov. 24, 2019
SCHWARZBECK
Pre-Amplifier
                                  EMC12630SE                 980385             Aug. 16, 2018     Aug. 15, 2019
EMCI
RF Cable                          EMC104-SM-SM-1200          160923             Jan. 28, 2019     Jan. 27, 2020
RF Cable                          104 RF cable               131215             Jan. 10, 2019     Jan. 09, 2020
RF Cable                          EMC104-SM-SM-6000          180418             May 03, 2019      May 02, 2020
Pre-Amplifier
                                  EMC184045SE                980387             Jan. 28, 2019     Jan. 27, 2020
EMCI
Horn_Antenna
                                  BBHA 9170                  BBHA9170519        Nov. 25, 2018     Nov. 24, 2019
SCHWARZBECK
RF Cable                          EMC102-KM-KM-1200 160924                      Jan. 28, 2019     Jan. 27, 2020
RF Cable                          EMC102-KM-KM-1200 160925                      Jan. 28, 2019     Jan. 27, 2020
Software                          ADT_Radiated_V8.7.08 NA                       NA                NA
Boresight Antenna Tower &
Turn Table                        MF-7802BS                  MF780208530        NA                NA
Max-Full
Fixed Attenuator
                                  MDCS18N-10                 MDCS18N-10-01 Apr. 15, 2019          Apr. 14, 2020
Mini-Circuits
Spectrum Analyzer
                                  FSV40                      100964             June 04, 2019 June 03, 2020
R&S
Power meter
                                  ML2495A                    1014008            May 13, 2019      May 12, 2020
Anritsu
Power sensor
                                  MA2411B                    0917122            May 13, 2019      May 12, 2020
Anritsu

Note: power 7/9, LB 7/6 HB 7/5
1. The calibration interval of the above test instruments is 12 months and the calibrations are
   traceable to NML/ROC and NIST/USA.
2. The test was performed in 966 Chamber No. 4.
3. Tested Date: July 06 2019




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4.1.3      Test Procedures

For Radiated emission below 30MHz
 a. The EUT was placed on the top of a rotating table 0.8 meters above the ground at a 3 meter chamber
        room. The table was rotated 360 degrees to determine the position of the highest radiation.

     b. The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top
        of a variable-height antenna tower.

     c. Parallel, perpendicular, and ground-parallel orientations of the antenna are set to make the
        measurement.

     d. For each suspected emission, the EUT was arranged to its worst case and the rotatable table was turned
        from 0 degrees to 360 degrees to find the maximum reading.

     e. The test-receiver system was set to Quasi-Peak Detect Function and Specified Bandwidth with
        Maximum Hold Mode.
Note:
     1. The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 9kHz at frequency
        below 30MHz.

For Radiated emission above 30MHz
a. The EUT was placed on the top of a rotating table 0.8 meters (for 30MHz ~ 1GHz) / 1.5 meters (for above
    1GHz) above the ground at 3 meter chamber room for test. The table was rotated 360 degrees to
    determine the position of the highest radiation.
b.      The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top
        of a variable-height antenna tower.
c.      The height of antenna is varied from one meter to four meters above the ground to determine the
        maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set to
        make the measurement.
d.      For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned
        to heights from 1 meter to 4 meters and the rotatable table was turned from 0 degrees to 360 degrees to
        find the maximum reading.
e.      The test-receiver system was set to quasi-peak detect function and specified bandwidth with maximum
        hold mode when the test frequency is below 1 GHz.
f.      The test-receiver system was set to peak and average detect function and specified bandwidth with
        maximum hold mode when the test frequency is above 1 GHz. If the peak reading value also meets
        average limit, measurement with the average detector is unnecessary.


Note:
1. The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 120kHz for
    Quasi-peak detection (QP) at frequency below 1GHz.
2.      The resolution bandwidth of test receiver/spectrum analyzer is 1 MHz and the video bandwidth is 3 MHz
        for Peak detection (PK) at frequency above 1GHz.
3.      The resolution bandwidth of test receiver/spectrum analyzer is 1MHz and the video bandwidth is ≥ 1/T
        (Duty cycle < 98%) or 10Hz (Duty cycle ≥ 98%) for Average detection (AV) at frequency above 1GHz.
4.      All modes of operation were investigated and the worst-case emissions are reported.




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4.1.4   Deviation from Test Standard

 No deviation.


4.1.5   Test Setup

 For Radiated emission below 30MHz


                                                                        1m
            EUT&                           3m
            Support Units

                                 Turn Table

               80cm


                                        Ground Plane
                                        Test Receiver




  For Radiated emission 30MHz to 1GHz

                                                           Ant. Tower
                                                                         1-4m
                                                                         Variable
                                              3m
                                               10m
              EUT&
              Support Units

                                       Turn Table

                  80cm


                                          Ground Plane

                                          Test Receiver




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  For Radiated emission above 1GHz



                                                             Ant. Tower            1-4m
                                                                                   Variable
            EUT&                              3m
            Support Units

                                    Turn Table
                                                   Absorber

               150cm


                                           Ground Plane
                                           Test Receiver




 For the actual test configuration, please refer to the attached file (Test Setup Photo).



4.1.6   EUT Operating Conditions

a. Connected the EUT with the Laptop which is placed on remote site.
b. Controlling software (Mtool [v3.1.0.3] has been activated to set the EUT under transmission condition
    continuously at specific channel frequency.




Report No.: RF190516E01-2                       Page No. 15 / 26                            Report Format Version: 6.1.2
Reference No.: 190218E06


4.1.7    Test Results
Above 1GHz Data:

                                                    DETECTOR                 Peak (PK)
FREQUENCY RANGE             1GHz ~ 40GHz
                                                    FUNCTION                 Average (AV)


                   ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL AT 3 M
                   EMISSION                            ANTENNA     TABLE        RAW          CORRECTION
         FREQ.                   LIMIT     MARGIN
NO.                 LEVEL                               HEIGHT     ANGLE       VALUE           FACTOR
         (MHz)                 (dBuV/m)     (dB)
                   (dBuV/m)                               (m)     (Degree)     (dBuV)           (dB/m)
  1      4874.00     55.3 PK     74.0       -18.7        1.88 H     255          52.9              2.4
  2      4874.00     41.2 AV     54.0       -12.8        1.88 H     255          38.8              2.4
  3      7311.00     50.6 PK     74.0       -23.4        1.41 H     329          41.4              9.2
  4      7311.00     36.7 AV     54.0       -17.3        1.41 H     329          27.5              9.2
  5     11650.00     58.0 PK     74.0       -16.0        2.22 H     52           44.1             13.9
  6     11650.00     44.3 AV     54.0        -9.7        2.22 H     52           30.4             13.9
  7     17475.00     59.6 PK     68.2        -8.6        2.22 H     339          40.8             18.8
                    ANTENNA POLARITY & TEST DISTANCE: VERTICAL AT 3 M
                   EMISSION                            ANTENNA     TABLE        RAW          CORRECTION
         FREQ.                   LIMIT     MARGIN
NO.                 LEVEL                               HEIGHT     ANGLE       VALUE           FACTOR
         (MHz)                 (dBuV/m)     (dB)
                   (dBuV/m)                               (m)     (Degree)     (dBuV)           (dB/m)
  1      4874.00     56.4 PK     74.0       -17.6        2.30 V     31           54.0              2.4
  2      4874.00     41.4 AV     54.0       -12.6        2.30 V     31           39.0              2.4
  3      7311.00     49.5 PK     74.0       -24.5        1.72 V     292          40.3              9.2
  4      7311.00     34.8 AV     54.0       -19.2        1.72 V     292          25.6              9.2
  5     11650.00     51.9 PK     74.0       -22.1        1.56 V     273          38.0             13.9
  6     11650.00     40.9 AV     54.0       -13.1        1.56 V     273          27.0             13.9
  7     17475.00     52.3 PK     68.2       -15.9        1.63 V     102          33.5             18.8
REMARKS:
   1. Emission Level(dBuV/m) = Raw Value(dBuV) + Correction Factor(dB/m)
   2. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB)
   3. Margin value = Emission Level – Limit value
   4. The other emission levels were very low against the limit.
   5. " # ": The radiated frequency is out of the restricted band.




Report No.: RF190516E01-2                    Page No. 16 / 26                           Report Format Version: 6.1.2
Reference No.: 190218E06


Below 1GHz Data:
                                                   DETECTOR
FREQUENCY RANGE             9kHz ~ 1GHz                                     Quasi-Peak (QP)
                                                   FUNCTION

                  ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL AT 3 M
                   EMISSION                           ANTENNA     TABLE        RAW         CORRECTION
        FREQ.                    LIMIT    MARGIN
NO.                 LEVEL                              HEIGHT     ANGLE       VALUE          FACTOR
        (MHz)                  (dBuV/m)    (dB)
                   (dBuV/m)                              (m)     (Degree)     (dBuV)          (dB/m)
  1     110.05       29.6 QP     43.5      -13.9        1.24 H     94          40.3            -10.7
  2     164.76       28.5 QP     43.5      -15.0        1.38 H     269         36.7             -8.2
  3     253.10       33.2 QP     46.0      -12.8        1.49 H     70          41.8             -8.6
  4     485.68       32.8 QP     46.0      -13.2        1.77 H     46          34.8             -2.0
  5     729.37       41.1 QP     46.0       -4.9        1.89 H     216         38.2              2.9
  6     766.38       40.0 QP     46.0       -6.0        2.41 H     360         36.2              3.8
REMARKS:
   1. Emission Level(dBuV/m) = Raw Value(dBuV) + Correction Factor(dB/m)
   2. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB)
   3. Margin value = Emission Level – Limit value
   4. The other emission levels were very low against the limit of frequency range 30MHz~1000MHz.
   5. The emission levels were very low against the limit of frequency range 9kHz~30MHz: the amplitude of
      spurious emissions attenuated more than 20 dB below the permissible value to be report.




Report No.: RF190516E01-2                   Page No. 17 / 26                          Report Format Version: 6.1.2
Reference No.: 190218E06


                                                   DETECTOR
FREQUENCY RANGE             9kHz ~ 1GHz                                     Quasi-Peak (QP)
                                                   FUNCTION

                    ANTENNA POLARITY & TEST DISTANCE: VERTICAL AT 3 M
                   EMISSION                           ANTENNA     TABLE        RAW         CORRECTION
        FREQ.                    LIMIT    MARGIN
NO.                 LEVEL                              HEIGHT     ANGLE       VALUE          FACTOR
        (MHz)                  (dBuV/m)    (dB)
                   (dBuV/m)                              (m)     (Degree)     (dBuV)          (dB/m)
  1      36.64       35.4 QP     40.0       -4.6        1.77 V     123         44.3             -8.9
  2      94.82       34.5 QP     43.5       -9.0        1.42 V     307         47.2            -12.7
  3     422.17       33.0 QP     46.0      -13.0        1.33 V     264         36.4             -3.4
  4     730.53       40.8 QP     46.0       -5.2        1.88 V     17          37.8              3.0
  5     763.51       37.3 QP     46.0       -8.7        1.99 V     40          33.6              3.7
  6     933.26       38.7 QP     46.0       -7.3        1.00 V     73          32.1              6.6
REMARKS:
   1. Emission Level(dBuV/m) = Raw Value(dBuV) + Correction Factor(dB/m)
   2. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB)
   3. Margin value = Emission Level – Limit value
   4. The other emission levels were very low against the limit of frequency range 30MHz~1000MHz.
   5. The emission levels were very low against the limit of frequency range 9kHz~30MHz: the amplitude of
      spurious emissions attenuated more than 20 dB below the permissible value to be report.




Report No.: RF190516E01-2                   Page No. 18 / 26                          Report Format Version: 6.1.2
Reference No.: 190218E06


4.2     Conducted Emission Measurement
4.2.1     Limits of Conducted Emission Measurement

                                                            Conducted Limit (dBuV)
        Frequency (MHz)
                                                Quasi-peak                              Average
          0.15 - 0.5                              66 - 56                                56 - 46
          0.50 - 5.0                                 56                                     46
          5.0 - 30.0                                 60                                     50
Note: 1. The lower limit shall apply at the transition frequencies.
      2. The limit decreases in line with the logarithm of the frequency in the range of 0.15 to 0.50MHz.


4.2.2     Test Instruments

      DESCRIPTION &                                                  CALIBRATED          CALIBRATED
                              MODEL NO.           SERIAL NO.
       MANUFACTURER                                                  DATE                UNTIL
      Test Receiver
                              ESCS 30            847124/029          Oct. 24, 2018      Oct. 23, 2019
      R&S
      Line-Impedance
      Stabilization Network
                              ESH3-Z5            848773/004          Oct. 22, 2018      Oct. 21, 2019
      (for EUT)
      R&S
      Line-Impedance
      Stabilization Network
                              ESH3-Z5            835239/001          Mar. 17, 2019      Mar. 16, 2020
      (for Peripheral)
      R&S
      50 ohms Terminator      N/A                3                   Oct. 22, 2018      Oct. 21, 2019
      RF Cable                5D-FB              COCCAB-001          Sep. 28, 2018      Sep. 27, 2019
      Fixed attenuator
                              STI02-2200-10      003                 Mar. 14, 2019      Mar. 13, 2020
      EMCI
      Software                BVADT_Cond_
                                                 NA                  NA                 NA
      BVADT                   V7.3.7.4

Note:
 1. The calibration interval of the above test instruments are 12 months and the calibrations are
    traceable to NML/ROC and NIST/USA.
 2. The test was performed in Conduction 1.
 3 Tested Date: July 12, 2019




Report No.: RF190516E01-2                      Page No. 19 / 26                        Report Format Version: 6.1.2
Reference No.: 190218E06


                                                                                                              uces
                                                                                                              venitas



4.2.3     Test Procedures


  a.    The EUT was placed 0.4 meters from the conducting wall of the shielded room with EUT being
        connected to the power mains through a line impedance stabilization network (LISN). Other support
        units were connected to the power mains through another LISN. The two LISNs provide 50 ohm/ 50uH
        of coupling impedance for the measuring instrument.
  b.    Both lines of the power mains connected to the EUT were checked for maximum conducted
        interference.
  c.    The frequency range from 150kHz to 30MHz was searched. Emission levels under (Limit — 20dB) was
        not recorded.

 Note: The resolution bandwidth and video bandwidth of test receiver is 9kHz for quasi—peak detection (QP)
        and average detection (AV) at frequency 0.15MHz—30MHz.


4.2.4     Deviation from Test Standard

 No deviation.


4.2.5     Test Setup
                                        Vertical Ground
                                        Reference Plane                        /Test Receiver

                        ~<a———m—                                                       L___JI
                                                                                     c o o o
                         40cm           EUT                                         5 a a o




                                                             80cm
                         |LISN
                                   L1               L1                          L
                                                             \           N
                                                                        Horizonta
                                                                                                T
                                                                                l Ground
                                                                        Reference Plane

                          Note: 1.Support units were connected to second LISN.




 For the actual test configuration, please refer to the attached file (Test Setup Photo).


4.2.6     EUT Operating Conditions

 Same as 4.1.6.




Report No.: RF190516E01—2                            Page No. 20 / 26                       Report Format Version: 6.1.2


4.2.7   Test Results

                                                                                 Quasi-Peak (QP) /
Phase                        Line (L)                      Detector Function
                                                                                 Average (AV)

                         Corr.    Reading Value      Emission Level           Limit              Margin
           Freq.
 No                     Factor       [dB (uV)]          [dB (uV)]          [dB (uV)]              (dB)
          [MHz]          (dB)      Q.P.     AV.       Q.P.     AV.       Q.P.       AV.      Q.P.        AV.
  1      0.15000         9.96     29.39    16.77     39.35    26.73     66.00     56.00     -26.65     -29.27
  2      0.21641         9.97     23.62    17.66     33.59    27.63     62.96     52.96     -29.37     -25.33
  3      0.36094         9.99     27.64    16.62     37.63    26.61     58.71     48.71     -21.08     -22.10
  4      0.98984        10.04     17.65    10.15     27.69    20.19     56.00     46.00     -28.31     -25.81
  5      2.25781        10.13     13.02     6.29     23.15    16.42     56.00     46.00     -32.85     -29.58
  6     20.00781        11.36     11.81     5.40     23.17    16.76     60.00     50.00     -36.83     -33.24
Remarks:
       1. Q.P. and AV. are abbreviations of quasi-peak and average individually.
       2. The emission levels of other frequencies were very low against the limit.
       3. Margin value = Emission level – Limit value
       4. Correction factor = Insertion loss + Cable loss
       5. Emission Level = Correction Factor + Reading Value




Report No.: RF190516E01-2                     Page No. 21 / 26                        Report Format Version: 6.1.2
Reference No.: 190218E06


                                                                                 Quasi-Peak (QP) /
Phase                        Neutral (N)                   Detector Function
                                                                                 Average (AV)

                         Corr.   Reading Value       Emission Level           Limit              Margin
           Freq.
 No                     Factor      [dB (uV)]           [dB (uV)]          [dB (uV)]              (dB)
          [MHz]          (dB)     Q.P.     AV.        Q.P.     AV.       Q.P.       AV.      Q.P.        AV.
  1      0.15000         9.94    28.47    16.46      38.41    26.40     66.00     56.00     -27.59     -29.60
  2      0.22031         9.95    25.96    16.87      35.91    26.82     62.81     52.81     -26.90     -25.99
  3      0.36094         9.97    28.71    20.89      38.68    30.86     58.71     48.71     -20.03     -17.85
  4      0.99766        10.02    17.29     9.58      27.31    19.60     56.00     46.00     -28.69     -26.40
  5      2.41797        10.11    13.01     3.86      23.12    13.97     56.00     46.00     -32.88     -32.03
  6     20.39844        11.10    12.74     6.53      23.84    17.63     60.00     50.00     -36.16     -32.37
Remarks:
       1. Q.P. and AV. are abbreviations of quasi-peak and average individually.
       2. The emission levels of other frequencies were very low against the limit.
       3. Margin value = Emission level – Limit value
       4. Correction factor = Insertion loss + Cable loss
       5. Emission Level = Correction Factor + Reading Value




Report No.: RF190516E01-2                     Page No. 22 / 26                        Report Format Version: 6.1.2
Reference No.: 190218E06


4.3     Conducted Out of Band Emission Measurement
4.3.1    Limits of Conducted Out of Band Emission Measurement

Below 30dB of the highest emission level of operating band (in 100kHz Resolution Bandwidth).


4.3.2    Test Setup


                                                                  Spectrum
                EUT
                                         Attenuator               Analyzer



4.3.3    Test Instruments

Refer to section 4.1.2 to get information of above instrument.


4.3.4    Test Procedures

MEASUREMENT PROCEDURE REF
1. Set the RBW = 100 kHz.
2. Set the VBW ≥ 300 kHz.
3. Detector = peak.
4. Sweep time = auto couple.
5. Trace mode = max hold.
6. Allow trace to fully stabilize.
7. Use the peak marker function to determine the maximum power level in any 100 kHz band segment within
   the fundamental EBW.

MEASUREMENT PROCEDURE OOBE
1. Set RBW = 100 kHz.
2. Set VBW ≥ 300 kHz.
3. Detector = peak.
4. Sweep = auto couple.
5. Trace Mode = max hold.
6. Allow trace to fully stabilize.
7. Use the peak marker function to determine the maximum amplitude level.


4.3.5    Deviation from Test Standard

No deviation.


4.3.6    EUT Operating Conditions

The software provided by client to enable the EUT under transmission condition continuously at lowest,
middle and highest channel frequencies individually.

4.3.7    Test Results

The spectrum plots are attached on the following pages. D1 line indicates the highest level, and D2 line
indicates the 30dB offset below D1. It shows compliance with the requirement.




Report No.: RF190516E01-2                      Page No. 23 / 26                       Report Format Version: 6.1.2
Reference No.: 190218E06


  Chain 0                         Chain 1




  Chain 2                         Chain 3




Report No.: RF190516E01-2   Page No. 24 / 26   Report Format Version: 6.1.2
Reference No.: 190218E06


5    Pictures of Test Arrangements


 Please refer to the attached file (Test Setup Photo).




Report No.: RF190516E01-2                      Page No. 25 / 26   Report Format Version: 6.1.2
Reference No.: 190218E06


Appendix – Information of the Testing Laboratories


We, Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch, were founded in 1988 to
provide our best service in EMC, Radio, Telecom and Safety consultation. Our laboratories are FCC
recognized accredited test firms and accredited according to ISO/IEC 17025.

If you have any comments, please feel free to contact us at the following:

Lin Kou EMC/RF Lab                                     Hsin Chu EMC/RF/Telecom Lab
Tel: 886-2-26052180                                    Tel: 886-3-6668565
Fax: 886-2-26051924                                    Fax: 886-3-6668323


Hwa Ya EMC/RF/Safety Lab
Tel: 886-3-3183232
Fax: 886-3-3270892


Email: service.adt@tw.bureauveritas.com
Web Site: www.bureauveritas-adt.com

The address and road map of all our labs can be found in our web site also.



--- END ---




Report No.: RF190516E01-2                      Page No. 26 / 26                  Report Format Version: 6.1.2
Reference No.: 190218E06



Document Created: 2019-08-06 15:11:13
Document Modified: 2019-08-06 15:11:13

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