TestReport BR_EDR_part2

FCC ID: 2AS7VTWS11

Test Report

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FCCID_4388199

GC                                                                                                                              Report No.: AGC00806190602FEO3
                                                                                                                                                                    Page 46 of 63


                                                   TEST PLOT OF LOW CHANNEL
 BW Agilent Spectrum Analyzer — Swept SA                                                                                                              {—<—|—6~ wl
                    I          soe ac                                 |__sense—tnt]            |    ALIGN AUTO         |04:23:40 PMJul 26, 2019
                                                                  —                         ave Type Legrwr
 Marker 1 A 2.93333 ms
                                               PNO: Fast —»     Trig: Free Run
                                               IFGain:Low       Atten: 20 dB                                                                      Select Marker.




                                           x                      Y                   FUNCTION        FUNCTION WiDTH      FUNCTION VALUE

                  t_________2.933 ms|(A                           Ercromm
        C         t|__________                                  EFEEr—im




                                                                      |__sense—tnT)              |       ALIGN AUTO    04:25:02 PM Jul
                                                                                            Avg Type: Log—Pwr
                                               PNO: Fast —» Trig: Free Run
                                               IFGain:Low       Atten: 20 dB




                                                                                                                                                        CF Step




 Center 2402000000 GHz
 Res BW 1.0 MHz                                      #VBW 3.0 MHz                                        Sweep 7.902 s (30000 pts




                                                  Attestation of Global Compliance(Shenzhen)Co.,Ltd.

                                                 Add: 2/F., Building 2, No.1—4, Chaxi Sanwei Technial Industrial Park, Gushu,
                                                            Xixiang, Bao‘an District, Shenzhen, Guangdong, China
                                                 Tel:       +86—755 2523 4088                        E—mail: agc@ageo—cert.com                     Service Hotline:400 089 2118


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TEST PLOT OF MIDDLE CHANNEL


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TEST PLOT OF HIGH CHANNEL


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13. FREQUENCY SEPARATION
13.1. MEASUREMENT PROCEDURE
The EUT shall have its hopping function enabled. Use the following spectrum analyzer settings:
1. Span: Wide enough to capture the peaks of two adjacent channels.
2. RBW: Start with the RBW set to approximately 30% of the channel spacing; adjust as necessary to best
identify the center of each individual channel.
3. Video (or average) bandwidth (VBW) ≥ RBW.
4. Sweep: Auto. e) Detector function: Peak. f) Trace: Max hold. g) Allow the trace to stabilize.
Use the marker-delta function to determine the separation between the peaks of the adjacent channels.


13.2. TEST SETUP (BLOCK DIAGRAM OF CONFIGURATION)
  Same as described in section 6.2


13.3. MEASUREMENT EQUIPMENT USED
  The same as described in section 6.3


13.4. LIMITS AND MEASUREMENT RESULT

    CHANNEL          CHANNEL SEPARATION (KHz)                     LIMIT (KHz)                 RESULT
   CH01-CH02                      999.87                   >=25 KHz or 2/3 20 dB BW             PASS
                              TEST PLOT FOR FREQUENCY SEPARATION




Note: The π /4-DQPSK modulation is the worst case and recorded in the report.


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14. FCC LINE CONDUCTED EMISSION TEST
14.1. LIMITS OF LINE CONDUCTED EMISSION TEST

                                                               Maximum RF Line Voltage
             Frequency
                                                   Q.P.( dBuV)                         Average( dBuV)
          150kHz~500kHz                                66-56                                56-46
           500kHz~5MHz                                  56                                    46
           5MHz~30MHz                                   60                                    50
Note: 1. The lower limit shall apply at the transition frequency.
      2. The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz.


14.2. BLOCK DIAGRAM OF LINE CONDUCTED EMISSION TEST



                  EUT & Support
                  Units


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14.3. PRELIMINARY PROCEDURE OF LINE CONDUCTED EMISSION TEST
1.   The equipment was set up as per the test configuration to simulate typical actual usage per the user’s
     manual. When the EUT is a tabletop system, a wooden table with a height of 0.8 meters is used and is
     placed on the ground plane as per ANSI C63.10 (see Test Facility for the dimensions of the ground plane
     used). When the EUT is a floor-standing equipment, it is placed on the ground plane which has a 3-12
     mm non-conductive covering to insulate the EUT from the ground plane.
2.   Support equipment, if needed, was placed as per ANSI C63.10.
3.   All I/O cables were positioned to simulate typical actual usage as per ANSI C63.10.
4.   All support equipment received AC120V/60Hz power from a LISN, if any.
5.   The EUT received DC 15V power from adapter which received AC120V/60Hz power from a LISN.
6.   The test program was started. Emissions were measured on each current carrying line of the EUT using a
     spectrum Analyzer / Receiver connected to the LISN powering the EUT. The LISN has two monitoring
     points: Line 1 (Hot Side) and Line 2 (Neutral Side). Two scans were taken: one with Line 1 connected to
     Analyzer / Receiver and Line 2 connected to a 50 ohm load; the second scan had Line 1 connected to a
     50 ohm load and Line 2 connected to the Analyzer / Receiver.
7.   Analyzer / Receiver scanned from 150 kHz to 30MHz for emissions in each of the test modes.
8.   During the above scans, the emissions were maximized by cable manipulation.
9.   The test mode(s) were scanned during the preliminary test.

Then, the EUT configuration and cable configuration of the above highest emission level were recorded for
reference of final testing.


14.4. FINAL PROCEDURE OF LINE CONDUCTED EMISSION TEST
1.   EUT and support equipment was set up on the test bench as per step 2 of the preliminary test.
2.   A scan was taken on both power lines, Line 1 and Line 2, recording at least the six highest emissions.
     Emission frequency and amplitude were recorded into a computer in which correction factors were used
     to calculate the emission level and compare reading to the applicable limit. If EUT emission level was
     less –2dB to the A.V. limit in Peak mode, then the emission signal was re-checked using Q.P and Average
     detector.
3.   The test data of the worst case condition(s) was reported on the Summary Data page.


14.5. TEST RESULT OF LINE CONDUCTED EMISSION TEST
N/A
Note: The EUT can not use the BT function with charging.


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APPENDIX A: PHOTOGRAPHS OF TEST SETUP
 RADIATED EMISSION TEST SETUP BELOW 1GHZ




 RADIATED EMISSION TEST SETUP ABOVE 1GHZ


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CONDUCTED TEST SETUP


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APPENDIX B: PHOTOGRAPHS OF EUT
       TOTAL VIEW OF EUT




        TOP VIEW OF EUT


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BOTTOM VIEW OF EUT




FRONT VIEW OF EUT


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BACK VIEW OF EUT




LEFT VIEW OF EUT


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RIGHT VIEW OF EUT




VIEW OF EUT(PORT)


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      Left
OPEN VIEW OF EUT




VIEW OF BATTERY


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INTERNAL VIEW OF EUT-1




INTERNAL VIEW OF EUT-2




           BT Antenna


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INTERNAL VIEW OF EUT-3




        Right
  OPEN VIEW OF EUT


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   VIEW OF BATTERY




INTERNAL VIEW OF EUT-1




               BT Antenna


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INTERNAL VIEW OF EUT-2




INTERNAL VIEW OF EUT-3


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    Charging Dock
 VIEW OF EUT (PORT)-1




 VIEW OF EUT (PORT)-2




----END OF REPORT----



Document Created: 2019-08-06 18:18:03
Document Modified: 2019-08-06 18:18:03

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