Test Report NII DFS

FCC ID: APYHRO00277

Test Report

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FCCID_4473327

            FCC DFS TEST REPORT                                                       Report No. : FZ990231




                   FCC DFS TEST REPORT
   FCC ID                    : APYHRO00277
   Equipment                 : Smart phone
   Brand Name                : SHARP
   Applicant                 : SHARP CORPORATION
                               2-13-1, Hachihonmatsu-Iida, Higashi-hiroshima-shi,
                               Hiroshima pref. 739-0192, Japan
   Manufacturer              : SHARP CORPORATION
                               1 Takumi-Cho, Sakai-Ku, Sakai-Shi, Osaka 590-8522, Japan
   Standard                  : FCC Part 15 Subpart E

The product was received on Sep. 02, 2019 and testing was started from Sep. 20, 2019 and
completed on Sep. 21, 2019. We, SPORTON INTERNATIONAL INC. EMC & Wireless Communications
Laboratory, would like to declare that the tested sample has been evaluated in accordance with the
procedures given in FCC Part 15 Subpart E and shown compliance with the applicable technical
standards.

The report must not be used by the client to claim product certification, approval, or endorsement by
TAF or any agency of government.

The test results in this report apply exclusively to the tested model / sample. Without written
approval of SPORTON INTERNATIONAL INC. EMC & Wireless Communications Laboratory, the test
report shall not be reproduced except in full.




              Approved by: Louis Wu
   SPORTON INTERNATIONAL INC. EMC & Wireless Communications Laboratory
                     No. 52, Huaya 1st Rd., Guishan Dist., Taoyuan City, Taiwan (R.O.C.)
TEL : 886-3-327-3456                                                       Page Number       : 1 of 19
FAX : 886-3-328-4978                                                       Issued Date       : Oct. 09, 2019
Report Template No.: BU5-FZ15EDFS Version 1.1                              Report Version    : 02


               FCC DFS TEST REPORT                                                                                           Report No. : FZ990231




                                                          Table of Contents
History of this test report ................................................................................................................................. 3
Summary of Test Result................................................................................................................................... 4
1 General Description ................................................................................................................................... 5
    1.1    Feature of Equipment Under Test .................................................................................................... 5
    1.2    Modification of EUT .......................................................................................................................... 5
    1.3    Testing Site ....................................................................................................................................... 5
    1.4    Applied Standards ............................................................................................................................ 5
    1.5    Support Unit used in test configuration and system ......................................................................... 6
2 Requirements and Parameters for DFS Test ........................................................................................... 7
    2.1    Summary of Dynamic Frequency Selection Test ............................................................................. 7
    2.2    Applicability of DFS Requirements ................................................................................................... 8
    2.3    Interference Threshold values, Master or Client incorporating In-Service Monitoring ..................... 9
    2.4    DFS Response requirement values .................................................................................................. 9
    2.5    Short Pulse Radar Test Waveforms ............................................................................................... 10
3 Calibration Setup and DFS Test Results ............................................................................................... 11
    3.1    Calibration of Radar Waveform ...................................................................................................... 11
    3.2    In-Service Monitoring: Channel Move Time, Channel Closing Transmission Time and
           Non-Occupancy Period ................................................................................................................... 13
4 List of Measuring Equipment .................................................................................................................. 19
Appendix A. Setup Photographs




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            FCC DFS TEST REPORT                                                             Report No. : FZ990231




                                    History of this test report

     Report No.         Version                             Description                             Issue Date

     FZ990231               01        Initial issue of report                                     Sep. 27, 2019

     FZ990231               02        Add the description of Sample difference                    Oct. 09, 2019




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            FCC DFS TEST REPORT                                                       Report No. : FZ990231




                                     Summary of Test Result

Report      Ref Std.                                                Result
                                         Test Items                                            Remark
Clause      Clause                                               (PASS/FAIL)


                                   Channel Move Time                Pass                     0.0156 sec


                                                                                            <200ms + 0 ms
   3.2        7.8.3       Channel Closing Transmission time         Pass
                                                                                              (aggregate)

                               Non-Occupancy Period and                                 No transmission or
                                                                    Pass
                                  Client Beacon Test                                    Beacons occurred

Note: Since the product is client without radar detection function, only Channel Move Time, Channel Closing
Transmission Time and Non-Occupancy Period Test are required to be performed.


Declaration of Conformity:
The test results with all measurement uncertainty excluded are presented in accordance with the regulation
limits or requirements declared by manufacturers.
Comments and Explanations:
The declared of product specification for EUT presented in the report are provided by the manufacturer, and
the manufacturer takes all the responsibilities for the accuracy of product specification.


Reviewed by: Wii Chang
Report Producer: Vivian Hsu




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            FCC DFS TEST REPORT                                                           Report No. : FZ990231

1 General Description
1.1 Feature of Equipment Under Test
       GSM/WCDMA/LTE, Bluetooth, Wi-Fi 2.4GHz 802.11b/g/n, Wi-Fi 5GHz 802.11a/n/ac, and GNSS.
                                  Product Specification subjective to this standard
       Sample 1                                 1st vender parts
       Sample 2                                 2nd vender parts
                                                WWAN: ILA & IFA Antenna
                                                WLAN: IFA Antenna
       Antenna Type
                                                Bluetooth: IFA Antenna
                                                GPS / Glonass / BDS / Galileo: ILA Antenna
       Remark:
       1. All test items were performed with Sample 1.
       2. The difference between sample 1 & sample 2 is their suppliers of memory, battery, vibe motor
           components.


1.2 Modification of EUT
       No modifications are made to the EUT during all test items.


1.3 Testing Site
       Test Site          SPORTON INTERNATIONAL INC. EMC & Wireless Communications Laboratory
                          No.52, Huaya 1st Rd., Guishan Dist.,
       Test Site          Taoyuan City, Taiwan (R.O.C.)
       Location           TEL: +886-3-327-3456
                          FAX: +886-3-328-4978
                                                            Sporton Site No.
       Test Site No.
                                                               DFS02-HY


1.4 Applied Standards
      According to the specifications of the manufacturer, the EUT must comply with the requirements of the
      following standards:
        FCC Part 15 Subpart E
        FCC KDB 905462 D02 UNII DFS Compliance Procedures New Rules v02
        FCC KDB 905462 D03 UNII Clients Without Radar Detection New Rules v01r02
      Remark: All test items were verified and recorded according to the standards and without any deviation
      during the test.




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            FCC DFS TEST REPORT                                                          Report No. : FZ990231

1.5 Support Unit used in test configuration and system
Item Equipment Trade Name Model Name            FCC ID         HW / FW Version             Power Cord
                                                               FW:
1.   WLAN AP ASUS               RT-AX88U        MSQ-RTAXHP00                             Unshielded, 1.8 m
                                                               3.0.0.4.384_4730-g8g74d3c
                                                                                         AC I/P:
                                                                                         Unshielded, 1.2 m
2.   Notebook     Lenovo        Edge E335       PPD-AR5B95     N/A
                                                                                         DC O/P:
                                                                                         Shielded, 1.8 m




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            FCC DFS TEST REPORT                                                      Report No. : FZ990231

2 Requirements and Parameters for DFS Test
2.1 Summary of Dynamic Frequency Selection Test
           Bandwidth
                                                    Test Items                               Limit
          and Channel

                                                  80MHz 5530MHz (CH106)

                                                Channel Move Time                           10 sec

             80MHz                                                                     200 ms +
                                                 Channel Closing
            (CH106)                                                              aggregate of 60 ms over
                                                Transmission time
            5530MHz                                                               remaining 10 s period
                                          Non-Occupancy Period and
                                                                                           30 minutes
                                             Client Beacon Test




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            FCC DFS TEST REPORT                                                           Report No. : FZ990231

2.2 Applicability of DFS Requirements
      EUT is client and operates as client without radar detection function.


       Table 1: Applicability of DFS Requirements Prior to Use of a Channel

                                                                       Operational Mode
                       Requirement                                           Client                  Client With
                                                        Master           Without Radar                  Radar
                                                                           Detection                 Detection

                Non-Occupancy Period                      Yes             Not required                   Yes

               DFS Detection Threshold                    Yes             Not required                   Yes

           Channel Availability Check Time                Yes             Not required              Not required

              U-NII Detection Bandwidth                   Yes             Not required                   Yes


       Table 2: Applicability of DFS requirements during normal operation
                                                                       Operational Mode
                                                                            Client                     Client
                       Requirement
                                                        Master          Without Radar                With Radar
                                                                          Detection                  Detection
             DFS Detection Threshold                      Yes            Not required                   Yes
         Channel Closing Transmission Time                Yes                 Yes                       Yes
                Channel Move Time                         Yes                 Yes                       Yes
             U-NII Detection Bandwidth                    Yes            Not required                   Yes
                 Client Beacon Test                       N/A                 Yes                       Yes

                                                                       Operational Mode
         Additional requirements for devices               Master or
                                                                                              Client
           with multiple bandwidth modes                  Client With
                                                                                     Without Radar Detection
                                                        Radar Detection
            U-NII Detection Bandwidth and                All BW modes
                                                                                                Not required
            Statistical Performance Check                must be tested
                                                                                        Test using the widest
           Channel Move Time and Channel              Test using widest BW
                                                                                         BW mode available
             Closing Transmission Time                   mode available
                                                                                             for the link
                      All other tests                 Any single BW mode                    Not required
        Note
        Frequencies selected for statistical performance check (Section 7.8.4) should include
        several frequencies within the radar detection bandwidth and frequencies near the edge of
        the radar detection bandwidth. For 802.11 devices it is suggested to select frequencies in
        each of the bonded 20 MHz channels and the channel center frequency.



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2.3 Interference Threshold values, Master or Client incorporating
    In-Service Monitoring
                     Maximum Transmit Power                               Value (see notes 1 and 2)
                             ≥ 200 milliwatt                                         -64 dBm
                             < 200 milliwatt                                         -62 dBm
        Note 1: This is the level at the input of the receiver assuming a 0 dBi receive antenna.
        Note 2: Throughout these test procedures an additional 1 dB has been added to the amplitude of the
        test transmission waveforms to account for variations in measurement equipment. This will ensure
        that the test signal is at or above the detection threshold level to trigger a DFS response.
       The radar Detection Threshold, lowest antenna gain is the parameter of Interference radar DFS
       detection threshold, The Interference Detection Threshold is the ( -62dBm) + (0) [dBi]+ 1 dB= -61 dBm.


2.4 DFS Response requirement values
                      Parameter                                                 Value
        Non-occupancy period                          Minimum 30 minutes
        Channel Availability Check Time               60 seconds
        Channel Move Time                             10 seconds See Note 1.
        Channel Closing Transmission Time             200 milliseconds + an aggregate of 60 milliseconds over
                                                      remaining 10 second period. See Notes 1 and 2.
        U-NII Detection Bandwidth                     Minimum 100% of the 99% power bandwidth
                                                      See Note 3.
        Note 1: The instant that the Channel Move Time and the Channel Closing Transmission Time begins
        is as follows:
           • For the Short pulse radar Test Signals this instant is the end of the Burst.
           • For the Frequency Hopping radar Test Signal, this instant is the end of the last radar Burst
           generated.
           • For the Long Pulse radar Test Signal this instant is the end of the 12 second period defining the
           radar transmission.
        Note 2: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the
        beginning of the Channel Move Time plus any additional intermittent control signals required to
        facilitate Channel changes (an aggregate of 60 milliseconds) during the remainder of the 10 second
        period. The aggregate duration of control signals will not count quiet periods in between
        transmissions.
        Note 3: During the U-NII Detection Bandwidth detection test, radar type 0 is used and for each
        frequency step the minimum percentage of detection is 90%. Measurements are performed with no
        data traffic.




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            FCC DFS TEST REPORT                                                         Report No. : FZ990231

2.5 Short Pulse Radar Test Waveforms
       As the EUT is a Client Device with no Radar Detection, only one type radar pulse is required for the
       testing. Radar Pulse type 0 was used in the evaluation of the Client device for the purpose of
       measuring the Channel Move Time and the Channel Closing Transmission Time.
                                                                                Minimum
                    Pulse
        Radar                                                                 Percentage of        Minimum
                    Width        PRI (µsec)      Number of Pulses
        Type                                                                   Successful           Trials
                    (µsec)
                                                                                Detection
           0           1            1428                 18                         60%                 30



                                    Test A
           1           1                                                           60%                  30
                                   Test B



           2          1-5         150-230              23-29                        60%                 30
           3          6-10        200-500              16-18                        60%                 30
           4         11-20        200-500              12-16                        60%                 30
        Aggregate (Radar Types 1-4)                                                 80%                 120


       Test A: 15 unique PRI values randomly selected from the list of 23 PRI values in Table 5a
       Test B: 15 unique PRI values randomly selected within the range of 518-3066 μsec, with a minimum
       increment of 1 μsec, excluding PRI values selected in Test A


       A minimum of 30 unique waveforms are required for each of the short pulse radar types 2 through 4.
       For short pulse radar type 1, the same waveform is used a minimum of 30 times. If more than 30
       waveforms are used for short pulse radar types 2 through 4, then each additional waveform must also
       be unique and not repeated from the previous waveforms.


       If more than 30 waveforms are used for Short Pulse Radar Type 1, then each additional waveform is
       generated with Test B and must also be unique and not repeated from the previous waveforms in Tests
       A or B.


       The aggregate is the average of the percentage of successful detections of short pulse radar types 1-4.




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            FCC DFS TEST REPORT                                                       Report No. : FZ990231

3 Calibration Setup and DFS Test Results
3.1 Calibration of Radar Waveform
3.1.1 Radar Waveform Calibration Procedure
        The Interference Radar Detection Threshold Level is (-62dBm) + (0) [dBi]+ 1 dB= -61dBm that had
        been taken into account the output power range and antenna gain. The following equipment setup
        was used to calibrate the radiated Radar Waveform. A vector signal generator was utilized to
        establish the test signal level for radar type 0. During this process there were no transmissions by
        either the Master or Client Device. The spectrum analyzer was switched to the zero span (Time
        Domain) at the frequency of the Radar Waveform generator. Peak detection was used. The spectrum
        analyzer resolution bandwidth (RBW) and video bandwidth (VBW) were set to 3 MHz to measure the
        type 0 radar waveform. The spectrum analyzer had offset to compensate and RF cable loss. The
        vector signal generator amplitude was set so that the power level measured at the spectrum analyzer
        was (-62dBm) + (0) [dBi]+ 1 dB= -61 dBm. Capture the spectrum analyzer plots on short pulse radar
        waveform.


3.1.2 Conducted Setup




3.1.3 Calibration Deviation
        There is no deviation with the original standard.




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            FCC DFS TEST REPORT                                                         Report No. : FZ990231


3.1.4 Radar Waveform Calibration Result
                                                <80MHz / 5530MHz> Radar Type 0
            Radar / DFS detection threshold level and the burst of pulses on the Channel frequency




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            FCC DFS TEST REPORT                                                      Report No. : FZ990231

3.2 In-Service Monitoring: Channel Move Time, Channel Closing
    Transmission Time and Non-Occupancy Period
3.2.1 Limit of In-Service Monitoring
        The EUT has In-Service Monitoring function to continuously monitor the radar signals, If radar is
        detected, it must leave the channel (Shutdown). The Channel Move Time to cease all transmissions
        on the current Channel upon detection of a Radar Waveform above the DFS Detection Threshold
        within 10 sec. The total duration of Channel Closing Transmission Time is comprised of 200
        milliseconds starting at the beginning of the Channel Move Time plus any additional intermittent
        control signals required to facilitate Channel changes (an aggregate of 60 milliseconds) during the
        remainder of the 10 second period. The aggregate duration of control signals will not count quiet
        periods in between transmissions.
        Non-Occupancy Period time is 30 minute during which a Channel will not be utilized after a Radar
        Waveform is detected on that Channel. The non-associated Client Beacon Test is during the 30
        minutes observation time. The EUT should not make any transmissions in the DFS band after EUT
        power up.




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              FCC DFS TEST REPORT                                                        Report No. : FZ990231


3.2.2 Test Procedures
         1.    The radar pulse generator is setup to provide a pulse at frequency that the Master and Client are
               operating. A type 0 radar pulse with a 1us pulse width and a 1428 us PRI is used for the testing.
         2.    The vector signal generator is adjusted to provide the radar burst (18 pulses) at a level of
               approximately -62dBm at the antenna of the Master device.
         3.    A trigger is provided from the pulse generator to the DFS monitoring system in order to capture
               the traffic and the occurrence of the radar pulse.
         4.    A U-NII device operating as a Client Device will associate with the Master at Channel. The
               MPEG file “TestFile.mpg” specified by the FCC is streamed from the “file computer” through the
               Master to the Client Device and played in full motion video using Media Player Classic Ver.
               6.4.8.6 in order to properly load the network for the entire period of the test.
         5.    When a radar Burst with a level equal to the DFS Detection Threshold + 1dB is generated on the
               Operating Channel of the U-NII device. At time T0 the Radar Waveform generator sends a Burst
               of pulse of the radar waveform at Detection Threshold + 1dB.
         6.    Observe the transmissions of the EUT at the end of the radar Burst on the Operating Channel.
               Measure and record the transmissions from the EUT during the observation time (Channel Move
               Time). One 12 seconds plot is reported for the Short Pulse Radar Types 0. The plot for the Short
               Pulse Radar Types start at the end of the radar burst. The Channel Move Time will be calculated
               based on the zoom in 600ms plot of the Short Pulse Radar Type.
         7.    Measurement of the aggregate duration of the Channel Closing Transmission Time method.
               With the spectrum analyzer set to zero span tuned to the center frequency of the EUT operating
               channel at the radar simulated frequency, peak detection, and max hold, the dwell time per bin is
               given by: Dwell (0.4ms)= S (12000ms) / B (30000); where Dwell is the dwell time per spectrum
               analyzer sampling bin, S is the sweep time and B is the number of spectrum analyzer sampling
               bins. An upper bound of the aggregate duration of the intermittent control signals of Channel
               Closing Transmission Time is calculated by: C (ms)= N X Dwell (0.4 ms); where C is the Closing
               Time, N is the number of spectrum analyzer sampling bins (intermittent control signals) showing
               a U-NII transmission and Dwell is the dwell time per bin.
         8.    Measure the EUT for more than 30 minutes following the channel move time to verify that no
               transmissions or beacons occur on this Channel.
         9.    The test frequency , bandwidth and data rate as following table:
                            BW / Channel                                    Test Data Rate
                          80MHz / 5530MHz                                         MCS0




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3.2.3 Test Setup
        Conducted Setup Photo




3.2.4 Test Deviation
         There is no deviation with the original standard.




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 seovc«s. FCC DFS TEST REPORT                                                           Report No. : FZ990231


3.2.5     Result of Channel Move Time, Channel Closing Transmission Time and
Non—Occupancy Period for Client Beacon Test
Test Mode :         Client without radar detection                 Temperature :              23~25C
Test Engineer : |AnAn Wu                                            Relative Humidity :       [45~50%


     BW /                        Test Item                    Test Result                  Limit          Pass/Fail
   Channel

                           Channel Move Time                    0.0156 s                < 10s                   Pass
   BOMHz /
                  Channel Closing Transmission Time          200ms + 0 ms             < 260ms                   Pass
  5530MHz
                         Non—Occupancy Period                     > 30                 > 30 min                 Pass

Note: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the beginning of
the Channel Move Time plus any additional intermittent control signals required to facilitate a Channel move
(an aggregate of 60 milliseconds) during the remainder of the 10 seconds period. The aggregate duration of

control signals will not count quiet periods in between transmissions.




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3.2.6 Channel Move Time, Channel Closing Transmission Time and Non-Occupancy
Period for Client Beacon Test Plots
                                        <80MHz / 5530MHz> In-Service Monitoring
                                                Channel Move Time &
                                       Channel Closing Transmission Time




                                                                          Non-associated test
                Non-Occupancy Period
                                                                      Master was off. (beacon test)




Note:
Dwell (0.4 ms)= Sweep Time (12000 ms) / Sweep Point Bins (30000)
Channel Closing Transmission Time (200 + 0 ms) = 200 + Number (0) X Dwell (0.4 ms) < 260ms




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            FCC DFS TEST REPORT                                                        Report No. : FZ990231


3.2.7 Data Traffic and Noise Floor Plots
                                                EUT data traffic (Client)




                                          Noise Floor (No transmission)




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                FCC DFS TEST REPORT                                                                         Report No. : FZ990231

   4 List of Measuring Equipment
                                                                               Calibration
 Instrument     Manufacturer    Model No.      Serial No.   Characteristics                     Test Date       Due Date       Remark
                                                                                 Date
  Signal          Rohde &                                                                     Sep. 20, 2019 ~                    DFS
                                SMJ100A         101375       9kHz~6GHz        Jan. 28, 2019                   Jan. 27, 2020
 Generator        Schwarz                                                                      Sep. 21,2019                   (DFS02-HY)
  Spectrum        Rohde &                                                                     Sep. 20, 2019 ~                  DFS
                                  FSV40         101397      10Hz~40GHz        Nov. 13, 2018                   Nov. 12, 2019
  Analyzer        Schwarz                                                                      Sep. 21, 2019                (DFS02-HY)
                                2Way SMA                                       Calibration    Sep. 20, 2019 ~ Calibration        DFS
Power Divider       MTJ                        MD10007       0.5G~6GHz
                               Power Divider                                  from System      Sep. 21, 2019 from System      (DFS02-HY)
                                SMA 2Way                                       Calibration    Sep. 20, 2019 ~ Calibration        DFS
Power Divider     Woken                        STI08-0011   2GHz-18GHz
                               Power Divider                                  from System      Sep. 21, 2019 from System      (DFS02-HY)
                                4Way SMA 0120A020560                           Calibration    Sep. 20, 2019 ~ Calibration        DFS
Power Divider     Woken                                      0.5G~6GHz
                               Power Divider 02D-01                           from System      Sep. 21, 2019 from System      (DFS02-HY)
                                4Way SMA 0120A020560                           Calibration    Sep. 20, 2019 ~ Calibration        DFS
Power Divider     Woken                                      0.5G~6GHz
                               Power Divider 02D-02                           from System      Sep. 21, 2019 from System      (DFS02-HY)
                   MTJ         SBF405-105F                                     Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable                                 MTJ-30cm-01 30 kHz~18GHz
                Cooperstion       LEX                                         from System      Sep. 21, 2019 from System      (DFS02-HY)
                   MTJ         SBF405-105F                                     Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable                                 MTJ-30cm-02 30 kHz~18GHz
                Cooperstion       LEX                                         from System      Sep. 21, 2019 from System      (DFS02-HY)
                   MTJ         SBF405-105F                                     Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable                                 MTJ-30cm-03 30 kHz~18GHz
                Cooperstion       LEX                                         from System      Sep. 21, 2019 from System      (DFS02-HY)
                   MTJ         SBF405-105F                                     Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable                                 MTJ-30cm-04 30 kHz~18GHz
                Cooperstion       LEX                                         from System      Sep. 21, 2019 from System      (DFS02-HY)
                                                                               Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable        Woken        S05(100cm)      161202-01    30 kHz~18GHz
                                                                              from System      Sep. 21, 2019 from System      (DFS02-HY)
                                                                               Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable        Woken        S05(100cm)      161202-02    30 kHz~18GHz
                                                                              from System      Sep. 21, 2019 from System      (DFS02-HY)
                                                                               Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable        Woken        S05(100cm)      161202-03    30 kHz~18GHz
                                                                              from System      Sep. 21, 2019 from System      (DFS02-HY)
                                                                               Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable        Woken        S05(100cm)      161202-04    30 kHz~18GHz
                                                                              from System      Sep. 21, 2019 from System      (DFS02-HY)
                                                                               Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable        Woken        S05(100cm)      161202-05    30 kHz~18GHz
                                                                              from System      Sep. 21, 2019 from System      (DFS02-HY)
                                                                               Calibration    Sep. 20, 2019 ~ Calibration        DFS
  RF Cable        Woken        S05(100cm)      161202-06    30 kHz~18GHz
                                                                              from System      Sep. 21, 2019 from System      (DFS02-HY)




   TEL : 886-3-327-3456                                                                        Page Number         : 19 of 19
   FAX : 886-3-328-4978                                                                        Issued Date         : Oct. 09, 2019
   Report Template No.: BU5-FZ15EDFS Version 1.1                                               Report Version      : 02



Document Created: 2019-10-12 03:13:55
Document Modified: 2019-10-12 03:13:55

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