RF Test Report

FCC ID: MSQG531G

Test Report

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FCCID_4292444

                                                               FCC Test Report

                       Report No.: RF190314C28A

                             FCC ID: MSQG531G

                       Test Model: G531G

                   Series Model: G531GD, G531GT, PX531, GL531GT, G531GU, G531GV, G531GW,
                                 GL531GU, GL531GV, GL531GW, G531, GL531GD, GL531G, G531G_N,
                                 G531GU_N, G531GV_N, G531GW_N
                                            (Refer to section 3.1 for more detail)
                 Received Date: Apr. 24, 2019

                         Test Date: Apr. 29 ~ Apr. 30, 2019

                     Issued Date: May 03, 2019


                         Applicant: ASUSTeK COMPUTER INC.

                           Address: 4F, No. 150, LI-TE Rd., PEITOU, TAIPEI 112, TAIWAN


                        Issued By: Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch

                    Lab Address: No. 47-2, 14th Ling, Chia Pau Vil., Lin Kou Dist., New Taipei City, Taiwan,
                                 R.O.C.
                  Test Location: No. 19, Hwa Ya 2nd Rd., Wen Hwa Vil., Kwei Shan Dist., Taoyuan City
                                 33383, TAIWAN (R.O.C.)
         FCC Registration / 788550 / TW0003
       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
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.
The report must not be used by the client to claim product certification, approval, or endorsement by TAF or any government agencies.

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                                                                   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
    3.2      Description of Test Modes ................................................................................................................... 7
    3.2.1    Test Mode Applicability and Tested Channel Deta .............................................................................. 8
    3.3      Description of Support Units ............................................................................................................... 9
    3.3.1    Configuration of System under Test .................................................................................................... 9
    3.4      General Description of Applied Standards .......................................................................................... 9
4         Test Types and Results ...................................................................................................................... 10
    4.1      Radiated Emission Measurement ..................................................................................................... 10
    4.1.1    Limits of Radiated Emission Measurement ....................................................................................... 10
    4.1.2    Test Instruments ................................................................................................................................. 11
    4.1.3    Test Procedures................................................................................................................................. 12
    4.1.4    Deviation from Test Standard ............................................................................................................ 13
    4.1.5    Test Set Up ........................................................................................................................................ 13
    4.1.6    EUT Operating Conditions................................................................................................................. 13
    4.1.7    Test Results ....................................................................................................................................... 14
    4.2      Conducted Emission Measurement .................................................................................................. 22
    4.2.1    Limits of Conducted Emission Measurement .................................................................................... 22
    4.2.2    Test Instruments ................................................................................................................................ 22
    4.2.3    Test Procedures................................................................................................................................. 23
    4.2.4    Deviation from Test Standard ............................................................................................................ 23
    4.2.5    Test Setup .......................................................................................................................................... 23
    4.2.6    EUT Operating Conditions................................................................................................................. 23
    4.2.7    Test Results ....................................................................................................................................... 24
    4.3      Frequency Stability ............................................................................................................................ 26
    4.3.1    Limits of Frequency Stability Measurement ...................................................................................... 26
    4.3.2    Test Setup .......................................................................................................................................... 26
    4.3.3    Test Instruments ................................................................................................................................ 26
    4.3.4    Test Procedure .................................................................................................................................. 26
    4.3.5    Deviation fromTest Standard ............................................................................................................. 27
    4.3.6    EUT Operating Conditions................................................................................................................. 27
    4.3.7    Test Result ......................................................................................................................................... 27
    4.4      20dB Bandwidth ................................................................................................................................ 28
    4.4.1    Limits of 20dB Bandwidth Measurement ........................................................................................... 28
    4.4.2    Test Setup .......................................................................................................................................... 28
    4.4.3    Test Instruments ................................................................................................................................ 28
    4.4.4    Test Procedures................................................................................................................................. 28
    4.4.5    Deviation from Test Standard ............................................................................................................ 28
    4.4.6    EUT Operating Conditions................................................................................................................. 28
    4.4.7    Test Results ....................................................................................................................................... 29
5         Pictures of Test Arrangements .......................................................................................................... 30
Appendix – Information of the Testing Laboratories ................................................................................. 31




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                                          Release Control Record


Issue No.             Description                                         Date Issued
RF190314C28A          Original release.                                   May 03, 2019




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Reference No.: 190424C14


1    Certificate of Conformity


            Product: Notebook PC

              Brand: ASUS

        Test Model: G531G

      Series Model: G531GD, G531GT, PX531, GL531GT, G531GU, G531GV, G531GW, GL531GU,
                    GL531GV, GL531GW, G531, GL531GD, GL531G, G531G_N, G531GU_N,
                    G531GV_N, G531GW_N
                           (Refer to section 3.1 for more detail)
    Sample Status: Identical Prototype

          Applicant: ASUSTeK COMPUTER INC.

          Test Date: Apr. 29 ~ Apr. 30, 2019

         Standards: 47 CFR FCC Part 15, Subpart C (Section 15.225)
                           47 CFR FCC Part 15, Subpart C (Section 15.215)
                           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 RF characteristics under the conditions specified in this report.




      Prepared by :                                                  , Date:     May 03, 2019
                               Pettie Chen / Senior Specialist




     Approved by :                                                   , Date:     May 03, 2019
                               Bruce Chen / Project Engineer




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2     Summary of Test Results

                           47 CFR FCC Part 15, Subpart C (Section 15.225, 15.215)
       FCC
                               Test Item                    Result                    Remarks
      Clause
                                                                       Meet the requirement of limit.
      15.207      Conducted emission test                    Pass      Minimum passing margin is -13.94dB
                                                                       at 27.12118MHz
                                                                       Meet the requirement of limit.
                  The field strength of any emissions
    15.225 (a)                                               Pass      Minimum passing margin is -76.5dB at
                  within the band 13.553-13.567 MHz
                                                                       13.56MHz.
                  The field strength of any emissions
    15.225 (b)    within the bands 13.410-13.553             Pass      Meet the requirement of limit.
                  MHz and 13.567-13.710 MHz
                  The field strength of any emissions
    15.225 (c)    within the bands 13.110-13.410             Pass      Meet the requirement of limit.
                  MHz and 13.710-14.010 MHz
                  The field strength of any emissions                  Meet the requirement of limit.
    15.225 (d)    appearing outside of the                   Pass      Minimum passing margin is -6.80dB at
                  13.110-14.010 MHz band                               201.00MHz.
    15.225 (e)    The frequency tolerance                    Pass      Meet the requirement of limit.

    15.215 (c)    20dB Bandwidth                             Pass      Meet the requirement of limit.
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:
                                                                                       Expanded Uncertainty
                   Measurement                                   Frequency
                                                                                            (k=2) (±)
        Conducted Emissions at mains ports                 150kHz ~ 30MHz                    2.94 dB
                                                            9kHz ~ 30MHz                     3.04 dB
         Radiated Emissions up to 1 GHz                    30MHz ~ 200MHz                    3.63 dB
                                                          200MHz ~1000MHz                    3.64 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                            Notebook PC
 Brand                              ASUS
 Test Model                         G531G
                                    G531GD, G531GT, PX531, GL531GT, G531GU, G531GV, G531GW,
 Series Model                       GL531GU, GL531GV, GL531GW, G531, GL531GD, GL531G,
                                    G531G_N, G531GU_N, G531GV_N, G531GW_N
 Model Difference                   Refer to Note
 Sample Status                      Identical Prototype
                                    20.0 Vdc (Adapter)
 Nominal Voltage
                                    15.4 Vdc (Li-ion battery)
 Modulation Type                    ASK
 Operating Frequency                13.56MHz
 Data Rate                          26.69 kbit/s
 NFC type                           Type V
 Field Strength                     47.5dBuV/m
 Antenna Type                       PCB antenna
 Antenna Connector                  NA
 Accessory Device                   Battery, Adapter
 Cable Supplied                    NA
Note:
1. All models are listed as below.
      Brand                 Model                         Function                  Difference
                      G531G (Main Model)
                     G531GD (Series Model)
                     G531GT (Series Model)
                      PX531 (Series Model)
                     GL531GT (Series Model)
                     G531GU (Series Model)
                                                      WLAN + BT       All models are electrically identical,
                     G531GV (Series Model)
                                                          or          different model names are for
                     G531GW (Series Model)                            marketing purpose.
                                                    WLAN + BT + NFC
                     GL531GU (Series Model)
      ASUS
                     GL531GV (Series Model)
                    GL531GW (Series Model)
                      G531 (Series Model)
                     GL531GD (Series Model)
                     GL531G (Series Model)
                     G531G_N (Series Model)
                    G531GU_N (Series Model)                           All models are electrically identical,
                                                    WLAN + BT + NFC   different model names are for
                    G531GV_N (Series Model)                           marketing purpose.
                    G531GW_N (Series Model)




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2. The EUT is powered by the following battery.
Battery
Brand                          ASUS
Manufacturer                   DP
Model                          C41N1731-2
Rating                         15.4Vdc/66WH
Capacity                   4335mAh(Typical) / 4210mAh (Rated)
3. The EUT is powered by the following adapter.
Adapter 280W
Brand                          ASUS
Manufacturer                   DELTA
Model                          ADP-280BB B
Input Power                    100-240Vac, 3.2A
Output Power                   20 Vdc , 14 A
                             AC: 1.8m non-shielded power cord
Power Cord
                             DC: 1.2m shielded power cord with 2 cores
4. The above EUT information is declared by manufacturer and for more detailed features description,
   please refer to the manufacturer's specifications or user's manual.


3.2     Description of Test Modes
1 channel is provided to this EUT
                       Channel                                           Freq. (MHz)
                           1                                                 13.56




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3.2.1        Test Mode Applicability and Tested Channel Deta

 EUT Configure                                  Applicable to
                                                                                                            Description
        Mode              RE              PLC               FS                  EB
         -                 √                √                   √                √       -
Where          RE: Radiated Emission                                              PLC: Power Line Conducted Emission
               FS: Frequency Stability                                            EB: 20dB Bandwidth measurement


Note: The antenna had been pre-tested on the positioned of each 3 axis. The worst cases were found when positioned on X-plane.



Radiated Emission Test:
     Pre-Scan has been conducted to determine the worst-case mode from all possible combinations
     between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture).
     Following channel(s) was (were) selected for the final test as listed below.
        EUT Configure Mode                      Available Channel                     Tested Channel                   Modulation Type
                    -                                  1                                     1                              ASK


Power Line Conducted Emission Test:
     Pre-Scan has been conducted to determine the worst-case mode from all possible combinations
     between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture).
     Following channel(s) was (were) selected for the final test as listed below.
        EUT Configure Mode                      Available Channel                     Tested Channel                   Modulation Type
                    -                                  1                                     1                              ASK


Frequency Stability:
     Pre-Scan has been conducted to determine the worst-case mode from all possible combinations
     between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture).
     Following channel(s) was (were) selected for the final test as listed below.
        EUT Configure Mode                      Available Channel                     Tested Channel                   Modulation Type
                    -                                  1                                     1                              ASK


20dB Bandwidth:
     Pre-Scan has been conducted to determine the worst-case mode from all possible combinations
     between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture).
     Following channel(s) was (were) selected for the final test as listed below.
        EUT Configure Mode                      Available Channel                     Tested Channel                   Modulation Type
                    -                                  1                                     1                              ASK


Test Condition:
        Applicable to               Environmental Conditions                          Input Power                         Tested by
               RE                        23 deg. C, 67% RH                            120Vac, 60Hz                       Adair Peng
              PLC                        23 deg. C, 67% RH                            120Vac, 60Hz                       Adair Peng
               FS                        23 deg. C, 67% RH                            120Vac, 60Hz                       Adair Peng
               BW                        23 deg. C, 67% RH                            120Vac, 60Hz                       Adair Peng




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3.3     Description of Support Units
The EUT has been tested as an independent unit together with other necessary accessories or support units.
3.3.1    Configuration of System under Test




                                                                EUT
                   Adapter (EUT)




3.4     General Description of Applied Standards
The EUT is a RF Product. According to the specifications of the manufacturer, it must comply with the
requirements of the following standards:

FCC Part 15, Subpart C (15.225)
FCC Part 15, Subpart C (15.215)
ANSI C63.10-2013

All test items have been performed and recorded as per the above standards.




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4     Test Types and Results
4.1     Radiated Emission Measurement
4.1.1    Limits of Radiated Emission Measurement

The field strength of any emissions within the band 13.553-13.567 MHz shall not exceed 15,848
microvolts/meter at 30 meters.

Within the bands 13.410-13.553 MHz and 13.567-13.710 MHz, the field strength of any emissions shall not
exceed 334 microvolts/meter at 30 meters.

Within the bands 13.110-13.410 MHz and 13.710-14.010 MHz the field strength of any emissions shall not
exceed 106 microvolts/meter at 30 meters.

The field strength of any emissions appearing outside of the 13.110-14.010 MHz band shall not exceed the
general radiated emission limits in § 15.209.


         Frequencies (MHz)           Field Strength (microvolts/meter)   Measurement Distance (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.




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4.1.2   Test Instruments

  Description & Manufacturer        Model No.                  Serial No.        Cal. Date          Cal. Due
Test Receiver
                                      ESIB7                        100187      May 29, 2018      May 28, 2019
ROHDE & SCHWARZ
BILOG Antenna
                                    VULB9168                   9168-171        Nov. 22, 2018 Nov. 21, 2019
SCHWARZBECK
HORN Antenna
                                      9120D                         209        Nov. 25, 2018 Nov. 24, 2019
SCHWARZBECK
HORN Antenna
                                   BBHA 9170                BBHA9170241        Nov. 25, 2018 Nov. 24, 2019
SCHWARZBECK
HORN Antenna
                                   BBHA 9170                BBHA9170241        Nov. 25, 2018 Nov. 24, 2019
SCHWARZBECK
Loop Antenna
                                    HLA 6121                       45745       Jun. 14, 2018     Jun. 13, 2019
TESEQ
Preamplifier
Agilent                               8447D                  2944A10738        Aug. 21, 2018 Aug. 20, 2019
(Below 1GHz)
Preamplifier
Agilent                               8449B                  3008A02465        Mar. 27, 2019     Mar. 26, 2020
(Above 1GHz)
RF signal cable                                             Cable-CH3-03
                                 SUCOFLEX 104                                  Aug. 21, 2018 Aug. 20, 2019
HUBER+SUHNER                                                 (223653/4)
RF signal cable                   SUCOFLEX
                                                            Cable-CH3-03
HUBER+SUHNER&                  104&EMC104-SM-                                  Aug. 21, 2018 Aug. 20, 2019
                                                          (309224+170907)
EMCI                               SM-8000
Software                        ADT_Radiated_
                                                                    NA              NA                 NA
BV ADT                            V7.6.15.9.5
Antenna Tower
                                     MA 4000                       013303           NA                 NA
inn-co GmbH
Antenna Tower Controller
                                      AT100                  AT93021702             NA                 NA
BV ADT
Turn Table
                                      TT100                  TT93021702             NA                 NA
BV ADT
Turn Table Controller
                                      SC100                  SC93021702             NA                 NA
BV ADT
Boresight Antenna Fixture            FBA-01                   FBA-SIP01             NA                 NA

Note: 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 HwaYa Chamber 3.
      3. The horn antenna and preamplifier (model: 8449B) are used only for the measurement of emission
         frequency above 1GHz if tested.




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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 Set Up

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
                EUT&
                                               3m
                                                10m
                Support Units

                                         Turn Table

                   80cm


                                              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. Set the EUT under transmission condition continuously at specific channel frequency.




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4.1.7   Test Results

EUT Test Condition                                       Measurement Detail
Channel                         Channel 1                Frequency Range             13.553 ~ 13.567MHz
Input Power                     120Vac, 60Hz             Detector Function           Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH               Tested By                   Adair Peng

                           Antenna Polarity & Test Distance: Loop Antenna Open At 3m
                     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       *13.56       47.5 QP       124.0 QP     -76.5            1.00       277         25.7           21.8

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)
                  3. The other emission levels were very low against the limit.
                  4. Margin value = Emission level – Limit value.
                  5. Above limits have been translated by the formula

The measured field strength was extrapolated to distance 30 meters, using the formula that the limit of field
strength varies as the inverse distance square (40dB per decade of distance)
Example:
13.56MHz = 15848uV/m                     30m
             = 84dBuV/m                  30m
             = 84+20log(30/3)2           3m
             = 124dBuV/m




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EUT Test Condition                                        Measurement Detail
Channel                       Channel 1                   Frequency Range            13.553 ~ 13.567MHz
Input Power                   120Vac, 60Hz                Detector Function          Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH                Tested By                  Adair Peng

                           Antenna Polarity & Test Distance: Loop Antenna Close At 3m
                     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       *13.56       45.1 QP       124.0 QP      -78.9          1.00        263         23.3           21.8

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)
                  3. The other emission levels were very low against the limit.
                  4. Margin value = Emission level – Limit value.
                  5. Above limits have been translated by the formula

The measured field strength was extrapolated to distance 30 meters, using the formula that the limit of field
strength varies as the inverse distance square (40dB per decade of distance)
Example:
13.56MHz = 15848uV/m                     30m
             = 84dBuV/m                  30m
             = 84+20log(30/3)2           3m
             = 124dBuV/m




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EUT Test Condition                                       Measurement Detail
Channel                      Channel 1                   Frequency Range             13.553 ~ 13.567MHz
Input Power                  120Vac, 60Hz                Detector Function           Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH               Tested By                   Adair Peng

                    Antenna Polarity & Test Distance: Loop Antenna Ground Parallel At 3m
                     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       *13.56       44.0 QP     124.0 QP       -80.0          1.00         177         22.2          21.8

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)
                  3. The other emission levels were very low against the limit.
                  4. Margin value = Emission level – Limit value.
                  5. Above limits have been translated by the formula

The measured field strength was extrapolated to distance 30 meters, using the formula that the limit of field
strength varies as the inverse distance square (40dB per decade of distance)
Example:
13.56MHz = 15848uV/m                     30m
             = 84dBuV/m                  30m
             = 84+20log(30/3)2           3m
             = 124dBuV/m




Report No.: RF190314C28A                       Page No. 16 / 31                        Report Format Version: 6.1.1
Reference No.: 190424C14


EUT Test Condition                                       Measurement Detail
Channel                       Channel 1                  Frequency Range            Below 30MHz
Input Power                   120Vac, 60Hz               Detector Function          Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH               Tested By                  Adair Peng

                           Antenna Polarity & Test Distance: Loop Antenna Open At 3m
                     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       1.69         50.4 QP       63.0 QP      -12.6          1.00        207         30.5           19.9
 2       5.06         35.1 QP       69.5 QP      -34.4          1.00         88         14.5           20.6
 3       9.19         35.1 QP       69.5 QP      -34.4          1.00        237         13.5           21.6
 4       15.15        36.3 QP       69.5 QP      -33.2          1.00        339         14.5           21.8
 5       21.25        35.7 QP       69.5 QP      -33.8          1.00        186         13.8           21.9
 6       27.12        35.3 QP       69.5 QP      -34.2          1.00        116         13.2           22.1


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)
              3. The other emission levels were very low against the limit.
              4. Margin value = Emission Level – Limit value




Report No.: RF190314C28A                       Page No. 17 / 31                        Report Format Version: 6.1.1
Reference No.: 190424C14


EUT Test Condition                                        Measurement Detail
Channel                       Channel 1                   Frequency Range            Below 30MHz
Input Power                   120Vac, 60Hz                Detector Function          Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH                Tested By                  Adair Peng

                           Antenna Polarity & Test Distance: Loop Antenna Close At 3m
                     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       1.69         49.9 QP       63.0 QP       -13.1          1.00        106         30.0           19.9
 2       7.41         35.0 QP       69.5 QP       -34.5          1.00        332         13.9           21.1
 3       12.41        36.0 QP       69.5 QP       -33.5          1.00        236         14.2           21.8
 4       18.42        36.9 QP       69.5 QP       -32.6          1.00        34          15.1           21.8
 5       22.12        34.9 QP       69.5 QP       -34.6          1.00        195         13.0           21.9
 6       27.12        35.1 QP       69.5 QP       -34.4          1.00        51          13.0           22.1


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)
              3. The other emission levels were very low against the limit.
              4. Margin value = Emission Level – Limit value




Report No.: RF190314C28A                        Page No. 18 / 31                        Report Format Version: 6.1.1
Reference No.: 190424C14


EUT Test Condition                                     Measurement Detail
Channel                     Channel 1                  Frequency Range            Below 30MHz
Input Power                 120Vac, 60Hz               Detector Function          Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH             Tested By                  Adair Peng

                    Antenna Polarity & Test Distance: Loop Antenna Ground Paralle At 3m
                     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       1.69         49.9 QP    63.0 QP       -13.1          1.00        106         30.0          19.9
 2       5.54         34.3 QP    69.5 QP       -35.2          1.00        124         13.6          20.7
 3       10.49        35.2 QP    69.5 QP       -34.3          1.00        118         13.4          21.8
 4       17.31        39.4 QP    69.5 QP       -30.1          1.00        300         17.6          21.8
 5       21.25        37.4 QP    69.5 QP       -32.1          1.00        103         15.5          21.9
 6       27.12        35.1 QP    69.5 QP       -34.4          1.00         51         13.0          22.1


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)
              3. The other emission levels were very low against the limit.
              4. Margin value = Emission Level – Limit value




Report No.: RF190314C28A                     Page No. 19 / 31                       Report Format Version: 6.1.1
Reference No.: 190424C14


EUT Test Condition                                         Measurement Detail
Channel                     Channel 1                      Frequency Range            Below 1000MHz
Input Power                 120Vac, 60Hz                   Detector Function          Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH                 Tested By                  Adair Peng

                                Antenna Polarity & Test Distance: Horizontal At 3m
                     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      166.00        31.1 QP         43.5        -12.4         1.51 H         92         40.2           -9.1
 2      201.00        36.7 QP         43.5         -6.8         1.00 H        239         47.8          -11.1
 3      234.05        35.7 QP         46.0        -10.3         1.51 H        286         45.8          -10.1
 4      284.60        28.2 QP         46.0        -17.8         1.00 H        254         35.9           -7.7
 5      360.43        30.3 QP         46.0        -15.7         1.00 H        184         36.7           -6.4
 6      442.09        27.4 QP         46.0        -18.6         1.99 H        118         31.8           -4.4


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. The other emission levels were very low against the limit.
           4. Margin value = Emission Level – Limit value




Report No.: RF190314C28A                        Page No. 20 / 31                        Report Format Version: 6.1.1
Reference No.: 190424C14


EUT Test Condition                                        Measurement Detail
Channel                     Channel 1                     Frequency Range            Below 1000MHz
Input Power                 120Vac, 60Hz                  Detector Function          Quasi-Peak
Environmental Conditions 23 deg. C, 67% RH                Tested By                  Adair Peng

                                Antenna Polarity & Test Distance: Vertical At 3m
                     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      35.73         30.7 QP        40.0         -9.3         1.00 V         9          41.8          -11.1
 2      66.84         29.6 QP        40.0        -10.4         1.00 V         5          40.7          -11.1
 3      113.50        29.8 QP        43.5        -13.7         1.00 V        210         41.9          -12.1
 4      208.77        34.5 QP        43.5         -9.0         1.50 V        359         45.5          -11.0
 5      247.66        32.0 QP        46.0        -14.0         1.99 V         7          41.2           -9.2
 6      591.80        29.8 QP        46.0        -16.2         1.00 V        288         31.2           -1.4


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. The other emission levels were very low against the limit.
           4. Margin value = Emission Level – Limit value




Report No.: RF190314C28A                       Page No. 21 / 31                        Report Format Version: 6.1.1
Reference No.: 190424C14


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 & Manufacturer           Model No.                 Serial No.     Cal. Date          Cal. Due
Test Receiver
                                        ESCS 30                    100288      Jan. 03, 2019     Jan. 02, 2020
ROHDE & SCHWARZ
RF signal cable
                                          5D-FB              Cable-cond1-01    Sep. 05, 2018 Sep. 04, 2019
Woken
LISN
ROHDE & SCHWARZ                          ENV216                    101826      Feb. 21, 2019 Feb. 20, 2020
(EUT)
LISN
ROHDE & SCHWARZ                         ESH3-Z5                    100311      Aug. 19, 2018 Aug. 18, 2019
(Peripheral)
Software                             BV ADT_Cond_
                                                                     NA              NA                NA
ADT                                     V7.3.7.4

Note: 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 HwaYa Shielded Room 1.
      3. The VCCI Site Registration No. is C-12040.




Report No.: RF190314C28A                       Page No. 22 / 31                        Report Format Version: 6.1.1
Reference No.: 190424C14


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


                                  EUT
                     40cm




                                                        80cm
                      LISN



                                                                   Horizontal 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.: RF190314C28A                        Page No. 23 / 31                           Report Format Version: 6.1.1
Reference No.: 190424C14


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      0.18557           9.68        26.69    13.21    36.37    22.89     64.23     54.23    -27.86 -31.34
  2      0.30640           9.68        32.23    23.45    41.91    33.13     60.07     50.07    -18.16 -16.94
  3      0.60418           9.68        25.32     8.71    35.00    18.39     56.00     46.00    -21.00 -27.61
  4      5.83123           9.79        14.86     6.96    24.65    16.75     60.00     50.00    -35.35 -33.25
  5      13.56130          9.89        20.72    20.45    30.61    30.34     60.00     50.00    -29.39 -19.66
  6      27.12118          9.94        25.62    25.33    35.56    35.27     60.00     50.00    -24.44 -14.73

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.: RF190314C28A                          Page No. 24 / 31                       Report Format Version: 6.1.1
Reference No.: 190424C14


                                                                                    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      0.32187            9.65    32.93    22.19    42.58    31.84      59.66     49.66     -17.08 -17.82
  2      0.64702            9.65    27.13    10.74    36.78    20.39      56.00     46.00     -19.22 -25.61
  3      0.96719            9.64    21.37    12.71    31.01    22.35      56.00     46.00     -24.99 -23.65
  4      5.52625            9.75    15.69     7.55    25.44    17.30      60.00     50.00     -34.56 -32.70
  5      13.56130           9.91    25.06    24.67    34.97    34.58      60.00     50.00     -25.03 -15.42
  6      27.12118          10.03    26.41    26.03    36.44    36.06      60.00     50.00     -23.56 -13.94

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.: RF190314C28A                       Page No. 25 / 31                         Report Format Version: 6.1.1
Reference No.: 190424C14


4.3      Frequency Stability
4.3.1      Limits of Frequency Stability Measurement

The frequency tolerance of the carrier signal shall be maintained within +/- 0.01% of the operating frequency
over a temperature variation of –20 degrees to 50 degrees C at normal supply voltage, and for a variation in
the primary supply voltage from 85% to 115% of the rated supply voltage at a temperature of 20 degrees C.


4.3.2      Test Setup

                 Temperature Chamber

      Spectrum Analyzer




                     DC Power Supply




4.3.3      Test Instruments

        Description &
                                       Model No.                  Serial No.       Cal. Date          Cal. Due
        Manufacturer
Spectrum Analyzer
                                        FSP40                         100039     Jun. 11, 2018     Jun. 10, 2019
ROHDE & SCHWARZ
WIT Standard
Temperature And Humidity               TH-4S-C                    W981030        Jun. 04, 2018     Jun. 03, 2019
Chamber
Digital Multimeter
                                         87-III                   70360742       Jun. 29, 2018     Jun. 28, 2019
Fluke
DC Power Supply
                                        6306A                         727263          NA                 NA
Topward


4.3.4      Test Procedure

a.     The EUT was placed inside the environmental test chamber and powered by nominal DC voltage.
b.     Turned the EUT on and coupled its output to a spectrum analyzer.
c.     Turned the EUT off and set the chamber to the highest temperature specified.
d.     Allowed sufficient time (approximately 30 min) for the temperature of the chamber to stabilize then turned
       the EUT on and measured the operating frequency after 2, 5, and 10 minutes.
e.     Repeated step d with the temperature chamber sets to each desired temperature.
f.     The test chamber was allowed to stabilize at +20 degree C for a minimum of 30 minutes. The supply
       voltage was then adjusted on the EUT from 85% to 115% and the frequency record.




Report No.: RF190314C28A                           Page No. 26 / 31                      Report Format Version: 6.1.1
Reference No.: 190424C14


4.3.5   Deviation fromTest Standard

No deviation.

4.3.6   EUT Operating Conditions

Same as Item 4.1.6.

4.3.7   Test Result



                                           Frequency Stability Versus Temp.

                           0 Minute                2 Minute                5 Minute                10 Minute
      Power
TEMP.        Measured Frequency Measured Frequency Measured Frequency Measured Frequency
      Supply
 (℃)         Frequency   Drift  Frequency   Drift  Frequency   Drift  Frequency   Drift
       (Vdc)
                   (MHz)              %       (MHz)           %        (MHz)          %        (MHz)           %

  50      20     13.55997       -0.00022     13.55997    -0.00022     13.55998   -0.00015    13.55997      -0.00022
  40      20     13.56003       0.00022      13.56003     0.00022     13.56002   0.00015     13.56003       0.00022
  30      20     13.56007       0.00052      13.56007     0.00052     13.56007   0.00052     13.56007       0.00052
  20      20     13.55996       -0.00029     13.55996    -0.00029     13.55996   -0.00029    13.55996      -0.00029
  10      20     13.56001       0.00007      13.56001     0.00007     13.56002   0.00015     13.56001       0.00007
   0      20     13.56003       0.00022      13.56003     0.00022     13.56003   0.00022     13.56003       0.00022
  -10     20     13.55993       -0.00052     13.55993    -0.00052     13.55994   -0.00044    13.55994      -0.00044
  -20     20     13.56003       0.00022      13.56003     0.00022     13.56003   0.00022     13.56003       0.00022


                                          Frequency Stability Versus Voltage

                           0 Minute                2 Minute                5 Minute                10 Minute
      Power
TEMP.        Measured Frequency Measured Frequency Measured Frequency Measured Frequency
      Supply
 (℃)         Frequency   Drift  Frequency   Drift  Frequency   Drift  Frequency   Drift
       (Vdc)
                   (MHz)              %       (MHz)           %        (MHz)          %        (MHz)           %
          23     13.55996       -0.00029     13.55996    -0.00029     13.55996   -0.00029    13.55996      -0.00029
  20      20     13.55996       -0.00029     13.55996    -0.00029     13.55996   -0.00029    13.55996      -0.00029
          17     13.55996       -0.00029     13.55996    -0.00029     13.55996   -0.00029    13.55996      -0.00029




Report No.: RF190314C28A                           Page No. 27 / 31                         Report Format Version: 6.1.1
Reference No.: 190424C14


4.4     20dB Bandwidth
4.4.1    Limits of 20dB Bandwidth Measurement

The 20dB bandwidth shall be specified in operating frequency band.

4.4.2    Test Setup

         EUT                                              Spectrum
                                                          Analyzer
                                       Attenuator



4.4.3    Test Instruments

Refer to section 4.1.2 to get information of above instrument.

4.4.4    Test Procedures

The bandwidth of the fundamental frequency was measured by spectrum analyzer with 1kHz RBW and 3kHz
VBW. The 20dB bandwidth is defined as the total spectrum the power of which is higher than peak power
minus 20dB.


4.4.5    Deviation from Test Standard

No deviation.


4.4.6    EUT Operating Conditions

Same as Item 4.1.6.




Report No.: RF190314C28A                       Page No. 28 / 31                Report Format Version: 6.1.1
Reference No.: 190424C14


4.4.7    Test Results


                                                   Operating frequency band
    20dBc point (Low)      20dBc point (High)                                      Pass / Fail
                                                            (MHz)
        13.558557692         13.561185897                   13.553~13.567             Pass

                                     Spectrum Plot Of Value




Report No.: RF190314C28A                 Page No. 29 / 31                     Report Format Version: 6.1.1
Reference No.: 190424C14


5    Pictures of Test Arrangements

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




Report No.: RF190314C28A                       Page No. 30 / 31   Report Format Version: 6.1.1
Reference No.: 190424C14


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 and approved 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.: RF190314C28A                      Page No. 31 / 31                  Report Format Version: 6.1.1
Reference No.: 190424C14



Document Created: 2019-05-24 11:41:59
Document Modified: 2019-05-24 11:41:59

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