Test Report (Part 95) rev.pdf

FCC ID: 2AN3BVS93G001

Test Report

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FCCID_3687571

                                                               FCC Test Report

                       Report No.: RF171129E01

                            FCC ID: 2AN3BVS93G001

                       Test Model: VS-93G001

                 Received Date: Nov. 29, 2017

                         Test Date: Dec. 04 to 07, 2017

                     Issued Date: Dec. 13, 2017


                         Applicant: CUBTEK INC.

                          Address: Rm. 7, 6F., No.38, Taiyuan St., Zhubei City, Hsinchu County 30265, Taiwan
                                   (R.O.C.)



                        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. 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 Detail ............................................................................. 8
    3.3      Description of Support Units ............................................................................................................... 9
    3.3.1    Configuration of System under Test .................................................................................................... 9
    3.4      General Description of Applied Standards ........................................................................................ 10
4         Test Types and Results ....................................................................................................................... 11
    4.1      Radiated Power and Unwanted Emission Measurement .................................................................. 11
    4.1.1    Limits of Radiated Power and Unwanted Emission Measurement .................................................... 11
    4.1.2    Test Instruments ................................................................................................................................ 12
    4.1.3    Test Procedures ................................................................................................................................. 14
    4.1.4    Deviation from Test Standard ............................................................................................................ 16
    4.1.5    Test Setup .......................................................................................................................................... 16
    4.1.6    EUT Operating Conditions................................................................................................................. 17
    4.1.7    Test Results ....................................................................................................................................... 18
    4.2      Occupied Bandwidth Measurement .................................................................................................. 23
    4.2.1    Test Setup .......................................................................................................................................... 23
    4.2.2    Test Instruments ................................................................................................................................ 23
    4.2.3    Test Procedure .................................................................................................................................. 23
    4.2.4    Deviation from Test Standard ............................................................................................................ 23
    4.2.5    EUT Operating Conditions................................................................................................................. 23
    4.2.6    Test Results ....................................................................................................................................... 24
    4.3      Frequency Stability Measurement..................................................................................................... 25
    4.3.1    Limits of Conducted Emission Measurement .................................................................................... 25
    4.3.2    Test Instruments ................................................................................................................................ 25
    4.3.3    Test Procedure .................................................................................................................................. 25
    4.3.4    Test Setup .......................................................................................................................................... 25
    4.3.5    Test Results ....................................................................................................................................... 26
5         Pictures of Test Arrangements .......................................................................................................... 27
Appendix – Information on the Testing Laboratories ................................................................................ 28




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                                              Release Control Record


Issue No.                 Description                                         Date Issued
RF171129E01               Original release.                                   Dec. 13, 2017




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1    Certificate of Conformity


            Product: 77GHz Radar

              Brand: CUBTEK

        Test Model: VS-93G001

    Sample Status: ENGINEERING SAMPLE

          Applicant: CUBTEK INC.

          Test Date: Dec. 04 to 07, 2017

         Standards: 47 CFR FCC Part 95, Subpart M




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:       Dec. 13, 2017
                                 Mary Ko / Specialist




     Approved by :                                              ,   Date:       Dec. 13, 2017
                                 May Chen / Manager




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2     Summary of Test Results


                                          47 CFR FCC Part 95, Subpart M

       FCC
                                 Test Item                   Result                         Remarks
      Clause
      95.3367       Radiated Power Test
                                                              PASS      M       h       i           f limit.
    95.3379(a)      Unwanted Emission Test                                  eet the requirement of limit
    95.3379(b)      Frequency Stability Test                  PASS      Meet the requirement of limit.
         —          Occupied Bandwidth Measurement            PASS      Meet the requirement of limit.



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                 Expand(ESQl)J?f? rtainty
             Radiated Emissions up to 1 GHz                   30MHz ~ 1GHz                          5.32 dB
                                                               1GHz ~ 6GHz                          5.14 dB
             Radiated Emissions above 1 GHz                   6GHz ~ 18GHz                          5.04 dB
                                                              18GHz ~ 40GHz                         5.25 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                      77GHz Radar
 Brand                        CUBTEK
 Test Model                   VS-93G001
 Status of EUT                ENGINEERING SAMPLE
 Power Supply Rating          12Vdc
 Modulation Type              FMCW
 Operating Frequency          76 ~ 77GHz
 Emission designator          F1N
 Antenna Type                 Refer to Note
 Antenna Connector            Refer to Note
 Accessory Device             NA
 Data Cable Supplied          NA
Note:
1.    The antenna provided to the EUT, please refer to the following table:
                                                                                    Frequency range
    Antenna Net Gain (dBi)         Antenna Type                  Connector Type
                                                                                         (GHz)

             13.6                Printed Antenna                     none                 76 ~ 77

2. 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.




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3.2   Description of Test Modes

1 channel is provided for test:
          Channel                 Frequency
              1                   76.47 GHz




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3.2.1    Test Mode Applicability and Tested Channel Detail

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

         -                 √                √                √               √          -
             RE1G: Radiated Emission above 1GHz &       Bandedge RE<1G: Radiated Emission below 1GHz
Where
             Measurement
             FS: Frequency Stability                              OB: Occupied Bandwidth measurement

NOTE: The EUT had been pre-tested on the positioned of each 3 axis. The worst case was found when positioned on Y-plane.




 Radiated Emission Test (Above 1GHz):
    Following channel(s) was (were) selected for the final test as listed below.
          TESTED         MODULATION
         CHANNEL            TYPE
             1              FMCW



 Radiated Emission Test (Below 1GHz):
    Following channel(s) was (were) selected for the final test as listed below.
          TESTED         MODULATION
         CHANNEL            TYPE
             1              FMCW



 Frequency Stability Test:
    Following channel(s) was (were) selected for the final test as listed below.
          TESTED         MODULATION
         CHANNEL            TYPE
             1              FMCW



 Occupied Bandwidth:
    Following channel(s) was (were) selected for the final test as listed below.
          TESTED         MODULATION
         CHANNEL            TYPE
             1              FMCW




 Test Condition:
                                                                        INPUT POWER
        APPLICABLE TO          ENVIRONMENTAL CONDITIONS                                                  TESTED BY
                                                                            (sysem)
                                       23deg. C, 67%RH
             RE1G                                                       120Vac, 60Hz                   Frank Chuang
                                       24deg. C, 69%RH
             RE<1G                     24deg. C, 69%RH                   120Vac, 60Hz                   Frank Chuang
              FS                       25deg. C, 68%RH                   120Vac, 60Hz                     Weiwei Lo
              OB                       25deg. C, 68%RH                   120Vac, 60Hz                     Weiwei Lo




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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.
The following support units or accessories were used to form a representative test configuration during the
tests.
  ID           Product            Brand           Model No.             Serial No.              ECC ID             Remarks
  A.      DC Power Supply        Topward           6603D                   795558                   NA         Projvded by Lab
Note:
1. All   power cords of the above support units are non—shielded (1.8m).
                                                                        Shieldin
  ID            Descriptions               Qty.       Length (m)        (Yes/Nog);   Cores (Qty.)            Remarks

  1.             DC Cable                   1              3.6                No          0              Supplied by client




3.3.1       Configuration of System under Test




                                                                    EUT




                                                                   DC input




                                                                                                             Under Table

                                                                 (A) DC Power
                                                                    Supply




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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 95, Subpart M
ANSI 63.26-2015


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


 NOTE: The EUT has been verified to comply with the requirements of FCC Part 15, Subpart B, Class B
       (DoC). The test report has been issued separately.




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4       Test Types and Results
4.1     Radiated Power and Unwanted Emission Measurement
4.1.1     Limits of Radiated Power and Unwanted Emission Measurement
According to 95.3367 the field strength of emissions from intentional radiators operated under these
frequencies bands shall not exceed the following:

      Fundamental Frequency                      Equivalent Isotropically Radiated Power (EIRP)
                (GHz)
                                                        Peak                         Average
                76 ~ 81                          55 dBm/MHz                        50 dBm/MHz

According to 95.3379 the power density of any emissions outside the 76-81 GHz band shall consist solely of
spurious emissions and shall not exceed the following:
(1) Radiated emissions below 40 GHz shall not exceed the field strength as shown in the following emissions
table.
             Frequencies
                                      Field strength (microvolts/meter) Measurement distance (meters)
                (MHz)

             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 tighter limit applies at the band edges.
      2. The limits are based on the frequency of the unwanted emissions and not the fundamental frequency.
          However, the level of any unwanted emissions shall not exceed the level of the fundamental
          frequency.
      3. The emissions limits are based on measurements employing a CISPR quasi-peak detector except for
          the frequency bands 9.0-90.0 kHz, 110.0-490.0 kHz, and above 1000 MHz. Radiated emissions limits
          in these three bands are based on measurements employing an average detector with a 1 MHz RBW.
(2) The power density of radiated emissions outside the 76-81 GHz band above 40.0 GHz shall not exceed
the following, based on measurements employing an average detector with a 1 MHz RBW:
(i) For radiated emissions outside the 76-81 GHz band between 40 GHz and 200 GHz from field disturbance
                                                                     2
sensors and radar systems operating in the 76-81 GHz band: 600 pW/cm at a distance of 3 meters from the
exterior surface of the radiating structure.
(ii) For radiated emissions above 200 GHz from field disturbance sensors and radar systems operating in the
76-81 GHz band: 1000 pW/cm2 at a distance of 3 meters from the exterior surface of the radiating structure.
(3) For field disturbance sensors and radar systems operating in the 76-81 GHz band, the spectrum shall be
investigated up to 231.0 GHz.




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4.1.2 Test Instruments
 Below 40GHz test:
DESCRIPTION &                                                                 CALIBRATED        CALIBRATED
                                  MODEL NO.                   SERIAL NO.
MANUFACTURER                                                                  DATE              UNTIL
Test Receiver
                                  N9038A                      MY50010156      July 12, 2017     July 11, 2018
Agilent
              (*)
Pre-Amplifier
                                  EMC001340                   980142          Jan. 20, 2016     Jan. 19, 2018
EMCI
                (*)
Loop Antenna
                                  EM-6879                     264             Dec. 16, 2016     Dec. 15, 2018
Electro-Metrics
                                                              LOOPCAB-001
RF Cable                          NA                                          Jan. 17, 2017     Jan. 16, 2018
                                                              LOOPCAB-002
Pre-Amplifier
                                  ZFL-1000VH2B                AMP-ZFL-05      May 06, 2017      May 05, 2018
Mini-Circuits
Trilog Broadband Antenna
                                  VULB 9168                   9168-361        Dec. 29, 2016     Dec. 28, 2017
SCHWARZBECK
                                                              966-3-1
RF Cable                          8D                          966-3-2         Apr. 01, 2017     Mar. 31, 2018
                                                              966-3-3
Fixed attenuator
                                  UNAT-5+                     PAD-3m-3-01     Oct. 03, 2017     Oct. 02, 2018
Mini-Circuits
Horn_Antenna
                                  BBHA9120-D                  9120D-406       Dec. 28, 2016     Dec. 27, 2017
SCHWARZBECK
Pre-Amplifier
                                  EMC12630SE                  980384          Feb. 02, 2017     Feb. 01, 2018
EMCI
                                  EMC104-SM-SM-1200           160922          Feb. 02, 2017     Feb. 01, 2018
RF Cable                          EMC104-SM-SM-2000           150317          Mar. 29, 2017     Mar. 28, 2018
                                  EMC104-SM-SM-5000           150322          Mar. 29, 2017     Mar. 28, 2018
Spectrum Analyzer
                                  N9030A                      MY54490679      July 25, 2017     July 24, 2018
Keysight
Pre-Amplifier
                                  EMC184045SE                 980386          Feb. 02, 2017     Feb. 01, 2018
EMCI
Horn_Antenna
                                  BBHA 9170                   BBHA9170608 Dec. 15, 2016         Dec. 14, 2017
SCHWARZBECK
                                                       36432/2
RF Cable                          SUCOFLEX 102                                Jan. 15, 2017     Jan. 14, 2018
                                                       36433/2
Software                          ADT_Radiated_V8.7.08 NA                     NA                NA
Antenna Tower & Turn Table
                                    MF-7802                   MF780208406 NA                    NA
Max-Full
Boresight Antenna Fixture           FBA-01                    FBA-SIP01       NA                NA
Note: 30M-1G: 12/04, 1G-18G: 12/05 18-40:12/05
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 calibration interval of the above test instruments is 24 months and the calibrations are traceable to
   NML/ROC and NIST/USA.
3. The test was performed in 966 Chamber No. 3.
4. The CANADA Site Registration No. is 20331-1
5. Loop antenna was used for all emissions below 30 MHz.
6. Tested Date: Dec. 04 to 05, 2017




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Above 40GHz test:
DESCRIPTION &                                                               CALIBRATED         CALIBRATED
                                   MODEL NO.          SERIAL NO.
 MANUFACTURER                                                               DATE               UNTIL
 Spectrum Analyzer Agilent          E4446A             MY48250253           Dec. 21, 2016      Dec. 20, 2017
 *Harmonic Mixer (33~55GHz)
                                     M22HWD            110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Horn Antenna (33~55GHz)
                                     M22RH             110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Harmonic Mixer (50~75GHz)
                                     M15RH            110215-1              Oct. 17, 2017      Oct. 16, 2019
 OML
 *Horn Antenna (50~75GHz)
                                     M15HWD           110215-1              Oct. 17, 2017      Oct. 16, 2019
 OML
 *Harmonic Mixer (75~110GHz)
                                     M10HWD            110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Horn Antenna (75~110GHz)
                                     M10RH             110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Harmonic Mixer (110~170GHz)
                                     M06RH             110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Horn Antenna(110~170GHz)
                                     M06HWD            110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Harmonic Mixer (140~220GHz)
                                     M05HWD            110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Horn Antenna (140~220GHz)
                                     M05RH             110215-1             Oct. 17, 2017      Oct. 16, 2019
 OML
 *Harmonic Mixer (220~325GHz)
                                     M03HWA           M03HWA_140505-1 Oct. 17, 2017            Oct. 16, 2019
 OML
 *Horn Antenna (220~325GHz)
                                     M03RH            M03RH_140508-1        Oct. 17, 2017      Oct. 16, 2019
 OML
 *Diplexer EMCI                      DPL26            DPL26_01              Oct. 17, 2017      Oct. 16, 2019
 *Diplexer EMCI                      DPL26            DPL26_02              Oct. 17, 2017      Oct. 16, 2019
*Precision 30dB Attenuator
                                    11708A            MY55260015            Oct. 17, 2017      Oct. 16, 2019
Keysight
*Zero-Bias Detector (50~75GHz)
                                    WR15ZBD           WR15R5 1-30           Oct. 17, 2017      Oct. 16, 2019
Vdi
4CH Infiniivision Oscilloscope
                                    DSOX6004A         MY55190202            Dec. 09, 2016      Dec. 08, 2017
Keysight
*WR15CH Conical Horn
                                    WR15CH            WR15CH-01             Oct. 17, 2017      Oct. 16, 2019
Keysight
*WR10CH Conical Horn
                                    WR10CH            WR10CH-01             Oct. 17, 2017      Oct. 16, 2019
Keysight
*Millimeter-Wave Signal
Generator Frequency Extension E8257DV15               US54250106            Oct. 17, 2017      Oct. 16, 2019
Module (50~75 GHz) Keysight
*Millimeter-Wave Signal
Generator Frequency Extension E8257DV10               US53250009            Oct. 17, 2017      Oct. 16, 2019
Module (75~110 GHz) Keysight
 Antenna Tower & Turn Table
                                     NA                NA                   NA                 NA
 CT
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 calibration interval of the above test instruments is 24 months and the calibrations are traceable to
   NML/ROC and NIST/USA.
3. The test was performed in 966 Chamber No. 3
4. The CANADA Site Registration No. is IC 7450H-2.
5. Test Date: Dec. 06 , 2017


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4.1.3 Test Procedures
For Radiated emission: Below 30 MHz
 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. Both X and Y axes 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: 30 MHz ~ 18 GHz
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 is 1MHz and video bandwidth of test receiver/spectrum analyzer is 3MHz for
        Peak detection (PK) at frequency from 1GHz to 40GHz.
3.      The resolution bandwidth is 1MHz and video bandwidth of test receiver/spectrum analyzer is 3MHz for
        Average detection (AV) at frequency from 1GHz to 40GHz.
4.      All modes of operation were investigated and the worst-case emissions are reported.




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For Radiated emission: Above 18GHz
External harmonic mixers are utilized.

 a. The EUT was placed on the top of a rotating table 1.5 meters above the ground at a 3 meters chamber
    room. The table was rotated 360 degrees to determine the position of the highest radiation.
 b. The distance at which limits are typically specified is 3 meter; however, closer measurement distances
    may be utilized.
 c. Begin handheld measurements with the test antenna (horn) at a distance of 1 meter from the EUT, in a
    horizontally polarized position. Slowly adjust its position, entirely covering the plane 1 meter from the
    EUT.
 d. Repeat (b) with the horn in a vertically polarized position.
 e. If the emission cannot be detected at 1 meter, reduce the RBW in order to increase system sensitivity.
    Note the value. If the emission still cannot be detected, move the horn closer to the EUT, noting the
    distance at which a measurement is made.
     f. Note the maximum level indicated on the Spectrum Analyzer.
 g. Based on the distance at which the measurement was made and the calculated distance to the edge of
    the far field, determine the appropriate distance attenuation factor. Apply this factor to the calculated field
    strength in order to determine the equivalent field strength at the distance at which the regulatory limit is
    specified. Compare to the appropriate limits
 h. Repeat (a) - (f) for every emission that must be measured, up through the required frequency range of
    investigation


NOTE:
1.     The resolution bandwidth is 1MHz and video bandwidth of test receiver/spectrum analyzer is 50MHz for
       Peak and Average detection at frequency above 40GHz.
2.     Shorter measurement distances may be used to improve the measurement system’s noise floor. As ANSI
       C63.26 description is based on the measurement in distance of 3 meters, the data obtained at 1-meter
       distance was extrapolate results to the 3-m distance:
       Test value at 3-meter distance (dBuV)
       = Test value at 1 meter distance (dBuV) - 20log(3/1)(dB)
       = Test value at 1 meter distance (dBuV) - 9.5(dB).


      * Measurements made at 1 meter distance. Test value converted to account for 3-meter measurement
         distance.


Far Field Boundary Calculations
The far-field boundary is given as:
R far field = (2 * L^2) /λ
where: L = Largest Antenna Dimension, including the reflector, in meters
λ = wavelength in meters

                                                                                            R (Far Field)
FREQUENCY (GHz )                   L (m)                    Lambda (m)
                                                                                                 (m)

           76.47                   0.042                       0.00392                            0.9




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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&                     Measurement
                                  3 distance
 Support Units                    m
                           Turn Table
                                         Absorbe
                                         r
   150cm
     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

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




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4.1.7   Test Results
Above 1GHz Data
CHANNEL                       TX Channel 1                                           Peak (PK)
                                                        DETECTOR FUNCTION
FREQUENCY RANGE               1GHz ~ 18GHz                                           Average (AV)


                     ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL AT 3 M
                     EMISSION                                              TABLE
                                    LIMIT                   ANTENNA                   RAW VALUE CORRECTION
NO. FREQ. (MHz)       LEVEL                  MARGIN (dB)                   ANGLE
                                  (dBuV/m)                 HEIGHT (m)                   (dBuV)  FACTOR (dB/m)
                     (dBuV/m)                                             (Degree)
 1      1240.00        50.3 PK      74.0        -23.7            1.47 H     328          55.7            -5.4
 2      1240.00        48.1 AV      54.0         -5.9            1.47 H     328          53.5            -5.4
 3      2159.00        38.7 PK      74.0        -35.3            1.00 H      0           41.1            -2.4
 4      2159.00        34.1 AV      54.0        -19.9            1.00 H      0           36.5            -2.4
                          ANTENNA POLARITY & TEST DISTANCE: VERTICAL AT 3 M
                     EMISSION                                              TABLE
                                    LIMIT                   ANTENNA                   RAW VALUE CORRECTION
NO. FREQ. (MHz)       LEVEL                  MARGIN (dB)                   ANGLE
                                  (dBuV/m)                 HEIGHT (m)                   (dBuV)  FACTOR (dB/m)
                     (dBuV/m)                                             (Degree)
 1      1240.00        53.1 PK      74.0        -20.9            3.07 V     350          58.5            -5.4
 2      1240.00        51.3 AV      54.0         -2.7            3.07 V     350          56.7            -5.4
 3      3599.00        37.5 PK      74.0        -36.5            1.05 V      12          36.7             0.8
 4      3599.00        33.4 AV      54.0        -20.6            1.05 V      12          32.6             0.8
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. The other emission levels were very low against the limit.
   4. Margin value = Emission Level – Limit value




Report No.: RF171129E01                       Page No. 18 / 28                         Report Format Version: 6.1.1


CHANNEL                       TX Channel 1                                            Peak (PK)
                                                         DETECTOR FUNCTION
FREQUENCY RANGE               18GHz ~ 40GHz                                           Average (AV)


                     ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL AT 3 M
                     EMISSION                                               TABLE
                                    LIMIT                    ANTENNA                   RAW VALUE CORRECTION
NO. FREQ. (MHz)       LEVEL                   MARGIN (dB)                   ANGLE
                                  (dBuV/m)                  HEIGHT (m)                   (dBuV)  FACTOR (dB/m)
                     (dBuV/m)                                              (Degree)
 1     25461.36       61.3 PK       74.0         -12.7            1.78 H     360          76.1           -14.8
 2     25461.36       48.6 AV       54.0          -5.4            1.78 H     360          63.4           -14.8
 3     34528.87       44.6 PK       74.0         -29.4            1.50 H     131          54.7           -10.1
 4     34528.87       40.9 AV       54.0         -13.1            1.50 H     131          51.0           -10.1
                          ANTENNA POLARITY & TEST DISTANCE: VERTICAL AT 3 M
                     EMISSION                                               TABLE
                                    LIMIT                    ANTENNA                   RAW VALUE CORRECTION
NO. FREQ. (MHz)       LEVEL                   MARGIN (dB)                   ANGLE
                                  (dBuV/m)                  HEIGHT (m)                   (dBuV)  FACTOR (dB/m)
                     (dBuV/m)                                              (Degree)
 1     25461.36       62.0 PK       74.0         -12.0            1.66 V     22           76.8           -14.8
 2     25461.36       46.5 AV       54.0          -7.5            1.66 V     22           61.3           -14.8
 3     34619.70       40.0 PK       74.0         -34.0            1.50 V     58           50.2           -10.2
 4     34619.70       39.8 AV       54.0         -14.2            1.50 V     58           50.0           -10.2
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.: RF171129E01                        Page No. 19 / 28                         Report Format Version: 6.1.1


CHANNEL                     TX Channel 1                                      Peak (PK)
                                                         DETECTOR FUNCTION
FREQUENCY RANGE             40GHz ~ 100GHz                                    Average (AV)


                        ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL
                                 Raw       Receiver
                                                      EIRP Level  EIRP Limit
     NO.         FREQ. (GHz)    Value    Antenna Gain                                        PASS/FAIL
                                                         (dBm)      (dBm)
                                (dBm)        (dBi)
       1            76.47         -7.6        23.6      38.9 PK       55                         PASS
       2            76.47        -14.6        23.6      31.9 AV       50                         PASS
                          ANTENNA POLARITY & TEST DISTANCE: VERTICAL
                                 Raw       Receiver
                                                      EIRP Level  EIRP Limit
     NO.         FREQ. (GHz)    Value    Antenna Gain                                        PASS/FAIL
                                                         (dBm)      (dBm)
                                (dBm)        (dBi)
       1            76.47         -9.8        23.6      36.7 PK       55                         PASS
       2            76.47        -16.2        23.6      30.3 AV       50                         PASS
REMARKS:
1.The measured power level is converted to EIRP using the Friis equation:
EIRP = PT * GT = (PR / GR ) * (4 * Pi * D/ λ )^ 2
where:
PR is the power of the receive measurement
GR is the gain of the receive measurement antenna
D is the measurement distance
λ   is the wavelength
*Measurements made at 1 meter distance.
EIRP = ((E*D)^2) / 30
Working in dB units, the above equation is equivalent to:
EIRP[dBm] = E[dBμV/m] + 20 log(D[meters]) - 104.8
E = EIRP – 20 * log(D) + 104.8
3. " - ": The emission levels were too low to be detected.
4. Shorter measurement distances may be used to improve the measurement system’s noise floor. As ANSI
C63.10 description is based on the measurement in distance of 3 meters, the data obtained at 0.8-meter
distance was extrapolate results to the 3-m distance:

Test value at 3-meter distance (dBuV)
= Test value at 0.8 meter distance (dBuV) -20log(3/0.8)(dB)
= Test value at 0.8 meter distance (dBuV) -11.5(dB).
*Measurements made at 0.8 meter distance. Test value converted to account for 3-meter measurement
distance.




Report No.: RF171129E01                        Page No. 20 / 28                  Report Format Version: 6.1.1


CHANNEL                        TX Channel 1                                        Peak (PK)
                                                           DETECTOR FUNCTION
FREQUENCY RANGE                100GHz ~ 231GHz                                     Average (AV)


                            ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL
                             Raw      Receiver                        Power         Power
                                                      EIRP Level
NO. FREQ. (GHz)             Value     Antenna                        Density     Density Limit PASS/FAIL
                                                        (dBm)
                            (dBm)     Gain (dBi)                           2
                                                                    (pW/cm )      (pW/cm )
                                                                                          2

    1        152.94         -60.9         23.6             -8.4     127.809 PK        600            PASS
    2        229.41         -56.0         23.6              0.1     904.816 PK       1000            PASS
                             ANTENNA POLARITY & TEST DISTANCE: VERTICAL
                             Raw      Receiver                        Power         Power
                                                      EIRP Level
NO. FREQ. (GHz)             Value     Antenna                        Density     Density Limit PASS/FAIL
                                                        (dBm)
                            (dBm)     Gain (dBi)                           2
                                                                    (pW/cm )      (pW/cm )
                                                                                          2

    1        152.94         -61.3         23.6             -8.8     116.563 PK        600            PASS
    2        229.41         -57.8         23.6             -1.7     597.806 PK       1000            PASS
REMARKS:
1.The measured power level is converted to EIRP using the Friis equation:
EIRP = PT * GT = (PR / GR ) * (4 * Pi * D/ λ )^ 2
where:
PR is the power of the receive measurement
GR is the gain of the receive measurement antenna
D is the measurement distance
λ       is the wavelength
*Measurements made at 1 meter distance.
2. Field strength is then converted to EIRP as follows:
EIRP = ((E*D)^2) / 30
Working in dB units, the above equation is equivalent to:
EIRP[dBm] = E[dBμV/m] + 20 log(D[meters]) - 104.8
E = EIRP – 20 * log(D) + 104.8
3. " - ": The emission levels were too low to be detected.
4. Shorter measurement distances may be used to improve the measurement system’s noise floor. As ANSI
C63.10 description is based on the measurement in distance of 3 meters, the data obtained at 0.8-meter
distance was extrapolate results to the 3-m distance:

Test value at 3-meter distance (dBuV)
= Test value at 0.8 meter distance (dBuV) -20log(3/0.8)(dB)
= Test value at 0.8 meter distance (dBuV) -11.5(dB).
*Measurements made at 0.8 meter distance. Test value converted to account for 3-meter measurement
distance.




Report No.: RF171129E01                          Page No. 21 / 28                    Report Format Version: 6.1.1


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

                     ANTENNA POLARITY & TEST DISTANCE: HORIZONTAL AT 3 M
                     EMISSION                                              TABLE
                                    LIMIT                   ANTENNA                   RAW VALUE CORRECTION
NO. FREQ. (MHz)       LEVEL                  MARGIN (dB)                   ANGLE
                                  (dBuV/m)                 HEIGHT (m)                   (dBuV)  FACTOR (dB/m)
                     (dBuV/m)                                             (Degree)
 1      440.02        41.5 QP       46.0         -4.5            1.00 H     305          45.3            -3.8
 2      592.50        40.4 QP       46.0         -5.6            1.50 H     316          41.4            -1.0
 3      680.00        43.6 QP       46.0         -2.4            1.50 H      26          43.4             0.2
 4      719.98        45.8 QP       46.0         -0.2            1.00 H     326          45.4             0.4
 5      760.00        43.6 QP       46.0         -2.4            1.00 H      28          41.9             1.7
 6      840.00        43.6 QP       46.0         -2.4            1.00 H     360          41.3             2.3
 7      919.97        45.7 QP       46.0         -0.3            1.66 H     360          42.3             3.4
                          ANTENNA POLARITY & TEST DISTANCE: VERTICAL AT 3 M
                     EMISSION                                              TABLE
                                    LIMIT                   ANTENNA                   RAW VALUE CORRECTION
NO. FREQ. (MHz)       LEVEL                  MARGIN (dB)                   ANGLE
                                  (dBuV/m)                 HEIGHT (m)                   (dBuV)  FACTOR (dB/m)
                     (dBuV/m)                                             (Degree)
 1      439.99        44.8 QP       46.0         -1.2            1.00 V     329          48.6            -3.8
 2      480.01        41.0 QP       46.0         -5.0            1.00 V     328          44.4            -3.4
 3      637.49        42.1 QP       46.0         -3.9            1.50 V      2           42.3            -0.2
 4      719.99        44.6 QP       46.0         -1.4            1.00 V      4           44.2             0.4
 5      840.00        43.3 QP       46.0         -2.7            1.50 V      0           41.0             2.3
 6      919.98        45.9 QP       46.0         -0.1            1.50 V     335          42.5             3.4
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.: RF171129E01                       Page No. 22 / 28                         Report Format Version: 6.1.1


4.2     Occupied Bandwidth Measurement
4.2.1    Test Setup



                                                                    SPECTRUM
                 EUT                                                ANALYZER
                                        Attenuator




4.2.2    Test Instruments

 Refer to section 4.1.2 to get information of above instrument.



4.2.3    Test Procedure

 The transmitter output was connected to the spectrum analyzer through an attenuator. The bandwidth of the
 fundamental frequency was measured by spectrum analyzer with resolution bandwidth in the range of 1% to
 5% of the anticipated emission bandwidth, and a video bandwidth at least 3x the resolution bandwidth and
 set the detector to sampling. The width of a frequency band such that, below the lower and above the upper
 frequency limits, the mean powers emitted are each equal to a specified percentage 0.5 %of the total mean
 power of a given emission.



4.2.4    Deviation from Test Standard

 No deviation.



4.2.5    EUT Operating Conditions

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




Report No.: RF171129E01                          Page No. 23 / 28                      Report Format Version: 6.1.1


4.2.6   Test Results
                                                   Occupied Bandwidth
             Channel      Frequency (MHz)
                                                         (MHz)
                 1             76.47                    368.61




Report No.: RF171129E01         Page No. 24 / 28            Report Format Version: 6.1.1


                                                                                                                   Eooert
                                                                                                                    venitas



4.3      Frequency Stability Measurement

4.3.1      Limits of Conducted Emission Measurement

        Fundamental emissions must be contained within the frequency bands specified in this section during all
        conditions of operation.

4.3.2      Test Instruments

 DESCRIPTION &                     MODEL No                SERIAL No             CALIBRATED            CALIBRATED
 MANUFACTURER                                  *                    ‘_|          pate                  UNTIL
Digital
PoMultimeter                       325                     31130711WS            May 29, 2017          May 28. 2018
Temperature & Humidity
Chamber                           MHU—225AU                g11033                Dec. 01, 2017        |Nov. 30, 2018
TERCHY
DC Power Supply
GOOD WiILL INSTRUMENT aPc — 3030D                          7700087               NA                    NA
co., LTtD.
f\gfi;fl“m Analyzer                 E4446A                   MY48250253            Dec. 21, 2016         Dec. 20, 2017

NOTE:         1. The test was performed in Oven room 1.
              2. The calibration interval of the above test instruments is 12 months and the calibrations
                 are traceable to NML/ROC and NIST/USA.
              3. Tested Date: Dec. 07, 2017

4.3.3      Test Procedure

 a. Device is placed at the oven room. The oven room could control the temperatures and humidity. Power
        warm up is at least 15 min and power applied should perform before recording frequency error.

 b. EUT is connected the external power supply to control the DC input power. The test voltage range is from
        minimum to maximum working voltage. Each step shall be record the frequency error rate.

 c. The temperature range step is 10 degrees in this test items. All temperature levels shall be hold the £0.5
        °C during the measurement testing. The each temperature step shall be at least 0.5 hours, consider the
        EUT could be test under the stability condition.


4.3.4      Test Setup



                                                                                 Oven Room
               Spectrum Analyzer

                                                                          —|_—   Antenna




                                                                          External Power Source

                                                                    EUT
                DC Power Supply




Report No.: RF171129E01                            Page No. 25 / 28                              Report Format Version: 6.1.1


                                                                                                                         Eooert
                                                                                                                          venitas



4.3.5    Test Results


                                             Frequency Stability Versus Temp.

                                             Operating Frequency: 76470 MHz

                          0 Minute                    2 Minutes                   5 Minutes                    10 Minutes
TEMP. Power
  2     Supply| Measured                      Measured                     Measured                    Measured
 (C)     (Vae) Frequency|        Pass/Fail    |Frequency|      Pass/Fail   Frequency|      Pass/Fail   |Frequency      Pass/Fail
                   (MHz)                         (MHz)                        (MHz)                       (MHz)
  50      12     |76470.0906|        PASS      76470.038        PASS       |76470.0981      PASS       |76470.0339|       PASS
  40      12     |76470.3258|     PASS         |76470.3539|     PASS       |76470.3208|     PASS        |76470.3383|     PASS
  30      12     |76469.7108|     PASS         |76469.7526]     PASS       |76469.7151      PASS       |76469.7312|       PASS

  20      12     |76469.7038]        PASS      76469.693        PASS       |76469.7118|     PASS       |76469.7296)      PASS
  10      12     76470.244        PASS         |76470.2694|     PASS       |76470.2906)     PASS       |76470.2935|      PASS

  0       12     |76469.6761      PASS         |76469.6972|     PASS       |76469.6389)     PASS        76469.641        PASS

 10       12     |76469.6693]     PASS         |76469.6359]     PASS       |76469.6264|     PASS       |76469.6159)      PASS
 20       12     |76470.0255]     PASS         |76470.0694]     PASS       |76470.0519|     PASS       |76470.0247|      PASS


                                             Frequency Stability Versus Voltage

                                             Operating Frequency: 76470 MHz

                           0 Minute                   2 Minutes                   5 Minutes                   10 Minutes
TEMP.    Power
  .     Supply     Measured                    Measured                     Measured                    Measured
 (C)     (Vdc)    |Frequency|    Pass/Fail     |Frequency|     Pass/Fail   |Frequency|     Pass/Fail   |Frequency|     Pass/Fail
                     (MH2)                        (MH2)                       (MHz)                       (MH2z)
          13.8    |76469.6915)       PASS       |76469.6824)     PASS       |76469.7253l    PASS       |76469.7437]      PASS

  20       12     |76469.7038]        PASS     76469.693         PASS      |76469.7118|     PASS       |76469.7296)       PASS

          10.2    |78469.7171        PASS       |76469.7003|      PASS      76469.709       PASS       |76469.7413|       PASS




Report No.: RF171129E01                                Page No. 26 / 28                                Report Format Version: 6.1.1


5    Pictures of Test Arrangements


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




Report No.: RF171129E01                        Page No. 27 / 28   Report Format Version: 6.1.1


Appendix – Information on 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:

Linkou 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.: RF171129E01                        Page No. 28 / 28                 Report Format Version: 6.1.1



Document Created: 2019-09-02 05:50:30
Document Modified: 2019-09-02 05:50:30

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