14_TPS360 TestRpt DSS p2

FCC ID: 2AJ2B-TPS360

Test Report

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FCCID_3924216

            Report No.: AGC01684180501FE03
                                Page 26 of 46



8DPSK-HCH    8DPSK-HCH




8DPSK-HCH


                                                                            Report No.: AGC01684180501FE03
                                                                                                Page 27 of 46


10. RADIATED EMISSION
10.1. MEASUREMENT PROCEDURE
  1. The EUT was placed on the top of the turntable 0.8 or 1.5 meter above ground. The phase center of the
     receiving antenna mounted on the top of a height-variable antenna tower was placed 3 meters far away
     from the turntable.
  2. Power on the EUT and all the supporting units. The turntable was rotated by 360 degrees to determine
     the position of the highest radiation.
  3. The height of the broadband receiving antenna was varied between one meter and four meters above
     ground to find the maximum emissions field strength of both horizontal and vertical polarization.
  4. For each suspected emissions, the antenna tower was scan (from 1 M to 4 M) and then the turntable was
      rotated (from 0 degree to 360 degrees) to find the maximum reading.
  5. Set the test-receiver system to Peak or CISPR quasi-peak Detect Function with specified bandwidth
     under Maximum Hold Mode.
  6. For emissions above 1GHz, use 1MHz VBW and RBW for peak reading. Then 1MHz RBW and 10Hz
     VBW for average reading in spectrum analyzer. Place the measurement antenna away from each area of
     the EUT determined to be a source of emissions at the specified measurement distance, while keeping
     the measurement antenna aimed at the source of emissions at each frequency of significant emissions,
     with polarization oriented for maximum response. The measurement antenna may have to be higher or
     lower than the EUT, depending on the radiation pattern of the emission and staying aimed at the emission
     source for receiving the maximum signal. The final measurement antenna elevation shall be that which
     maximizes the emissions. The measurement antenna elevation for maximum emissions shall be restricted
     to a range of heights of from 1 m to 4 m above the ground or reference ground plane.
  7. When the radiated emissions limits are expressed in terms of the average value of the emissions, and
     pulsed operation is employed, the measurement field strength shall be determined by averaging over one
     complete pulse train, including blanking intervals, as long as the pulse train does not exceed 0.1 seconds.
     As an alternative (provided the transmitter operates for longer than 0.1 seconds) or in cases where the
     pulse train exceeds 0.1 seconds, the measured field strength shall be determined from the average
     absolute voltage during a 0.1 second interval during which the field strength is at its maximum values.
  8.If the emissions level of the EUT in peak mode was 3 dB lower than the average limit specified, then
      testing will be stopped and peak values of EUT will be reported, otherwise, the emissions which do not
      have 3 dB margin will be repeated one by one using the quasi-peak method for below 1GHz.
  9. For testing above 1GHz, the emissions level of the EUT in peak mode was lower than average limit (that
     means the emissions level in peak mode also complies with the limit in average mode), then testing will
     be stopped and peak values of EUT will be reported, otherwise, the emissions will be measured in
     average mode again and reported.
10. In case the emission is lower than 30MHz, loop antenna has to be used for measurement and the
    recorded data should be QP measured by receiver. High - Low scan is not required in this case.


                                                       Report No.: AGC01684180501FE03
                                                                           Page 28 of 46


10.2. TEST SETUP
               RADIATED EMISSION TEST-SETUP FREQUENCY BELOW 30MHZ




                    RADIATED EMISSION TEST SETUP 30MHz-1000MHz




                    RADIATED EMISSION TEST SETUP ABOVE 1000MHz


                                                                   Report No.: AGC01684180501FE03
                                                                                       Page 29 of 46


10.3. LIMITS AND MEASUREMENT RESULT
15.209(a) Limit in the below table has to be followed

           Frequencies                          Field Strength          Measurement Distance
              (MHz)                           (micorvolts/meter)              (meters)
           0.009~0.490                           2400/F(KHz)                     300
           0.490~1.705                          24000/F(KHz)                      30
            1.705~30.0                                  30                        30
              30~88                                     100                       3
              88~216                                    150                       3
             216~960                                    200                       3
            Above 960                                   500                       3


                                                                    Report No.: AGC01684180501FE03
                                                                                        Page 30 of 46


10.4. TEST RESULT
                              RADIATED EMISSION BELOW 30MHZ
          No emission found between lowest internal used/generated frequencies to 30MHz.


                               RADIATED EMISSION BELOW 1GHZ
                    RADIATED EMISSION TEST- (30MHZ-1GHZ) -HORIZONTAL




RESULT: PASS


                                                                         Report No.: AGC01684180501FE03
                                                                                             Page 31 of 46


                          RADIATED EMISSION TEST- (30MHZ-1GHZ) -VERTICAL




RESULT: PASS
Note: 1. Factor=Antenna Factor + Cable loss, Margin=Measurement-Limit.
      2. The “Factor” value can be calculated automatically by software of measurement system.
      3. All test modes for different EUT are pre-tested. The low channel for GFSK mode is the worst case
and recorded in the report.


                                                                             Report No.: AGC01684180501FE03
                                                                                                 Page 32 of 46


RADIATED EMISSION TEST- (ABOVE 1GHZ)
  Frequency            Emission Level             Limits          Margin          Detector
                                                                                                 Comment
    (MHz)                 (dBμV/m)              (dBμV/m)              (dB)         Type
                                          Low Channel (2402 MHz)
    4804                    51.11                   74            -22.89            Pk            Vertical
    4804                    36.22                   54            -17.78            AV            Vertical
    4804                    50.16                   74            -23.84            Pk           Horizontal
    4804                    38.01                   54            -15.99            AV           Horizontal
                                          Mid Channel (2441 MHz)
    4882                    52.64                   74            -21.36            Pk            Vertical
    4882                    38.45                   54            -15.55            AV            Vertical
    4882                    51.01                   74            -22.99            Pk           Horizontal
    4882                    37.69                   54            -16.31            AV           Horizontal
                                          High Channel (2480 MHz)
    4960                    50.12                   74            -23.88            pk            Vertical
    4960                    35.22                   54            -18.78            AV            Vertical
    4960                    50.16                   74            -23.84            pk           Horizontal
    4960                    40.25                   54            -13.75            AV           Horizontal


 RESULT: PASS
 Note:
      1. 1GHz~25GHz:(Scan with GFSK, π/4-DQPSK,8DPSK, the worst case is GFSK Mode, No
            recording in the test report at least have 20dB margin)
      2. Margin = Emission Level - Limit


                                                                          Report No.: AGC01684180501FE03
                                                                                              Page 33 of 46


11. BAND EDGE EMISSION
11.1. MEASUREMENT PROCEDURE
 1. The transmitter output is connected to a spectrum analyzer. The resolution bandwidth is set to
    100kHz.The video bandwidth is set to 300kHz.
 2. Transmitter set to the normal hopping mode at 2.4 and 2.4835 GHz.
11.2. TEST SET-UP
  Radiated same as 10.2

  Conducted set up



                EUT                      Spectrum analyzer
                             cable


                                                                      Report No.: AGC01684180501FE03
                                                                                          Page 34 of 46


11.3. RADIATED TEST RESULT
  Frequency       Emission Level        Limits            Margin         Detector
                                                                                          Comment
    (MHz)           (dBμV/m)           (dBμV/m)               (dB)         Type
                                                   GFSK
    2399.9            50.23              74                  -23.77        peak            Vertical
    2399.9            38.64              54                  -15.36        AVG             Vertical
    2399.9            49.55              74                  -24.45        peak           Horizontal
    2399.9            39.54              54                  -14.46        AVG            Horizontal
    2483.6            51.97              74                  -22.03        peak            Vertical
    2483.6            35.41              54                  -18.59        AVG             Vertical
    2483.6            51.55              74                  -22.45        peak           Horizontal
    2483.6            37.18              54                  -16.82        AVG            Horizontal
                                                 π/4-DQPSK
    2399.9            49.52              74                  -24.48        peak            Vertical
    2399.9            39.46              54                  -14.54        AVG             Vertical
    2399.9            50.28              74                  -23.72        peak           Horizontal
    2399.9            39.51              54                  -14.49        AVG            Horizontal
    2483.6            51.02              74                  -22.98        peak            Vertical
    2483.6            39.11              54                  -14.89        AVG             Vertical
    2483.6            49.58              74                  -24.42        peak           Horizontal
    2483.6            38.42              54                  -15.58        AVG            Horizontal
                                                  8DPSK
    2399.9            50.26              74                  -23.74        peak            Vertical
    2399.9            37.58              54                  -16.42        AVG             Vertical
    2399.9            49.58              74                  -24.42        peak           Horizontal
    2399.9            39.25              54                  -14.75        AVG            Horizontal
    2483.6            49.66              74                  -24.34        peak            Vertical
    2483.6            35.48              54                  -18.52        AVG             Vertical
    2483.6            52.21              74                  -21.79        peak           Horizontal
    2483.6            39.55              54                  -14.45        AVG            Horizontal

RESULT: PASS
Note: The other modes radiation emission have enough 20dB margin.
     Margin = Emission Level – Limit


                                      Report No.: AGC01684180501FE03
                                                          Page 35 of 46


11.4 CONDUCTED TEST RESULT
Test Graph
              GFSK/LCH/No Hop        GFSK/HCH/ No Hop




                GFSK/LCH/Hop          GFSK/HCH/Hop




             π/4DQPSK/LCH/No Hop   π/4DQPSK /HCH/No Hop


                                                                          Report No.: AGC01684180501FE03
                                                                                              Page 36 of 46



                8DPSK/LCH/No Hop                                         8DPSK/HCH/No Hop




Note: All modes were tested, only the worst case record in the report.


                                                                         Report No.: AGC01684180501FE03
                                                                                             Page 37 of 46


12. NUMBER OF HOPPING FREQUENCY
12.1. MEASUREMENT PROCEDURE
1. Place the EUT on the table and set it in transmitting mode.
2. Remove the antenna from the EUT and then connect a low RF cable from the antenna port to the
   spectrum analyzer.
3. Set the spectrum analyzer Start = 2.4GHz Stop = 2.4835GHz
4. Set the Spectrum Analyzer as RBW>=1%span, VBW>=RBW.
12.2. TEST SETUP (BLOCK DIAGRAM OF CONFIGURATION)
   Same as described in section 8.2
12.3. MEASUREMENT EQUIPMENT USED
   The same as described in section 6
12.4. LIMITS AND MEASUREMENT RESULT
        Mode               Channel.               Number of Hopping Channel                   Verdict
        GFSK                 Hop                                79                            PASS


Note: All modes were tested, only the worst case record in the report.
Test Graph
                                                    Graphs




 GFSK/Hop


                               ®
                                              *                  *
  A\G                                § 43— fi *fi ;I)]l]                                                                         Report No.: AGC01684180501FEO3
                                     Attestation of Global Compliance
                                                                                                                                                                   Page 38 of 46


    13. TIME OF OCCUPANCY (DWELL TIME)
    13.1. MEASUREMENT PROCEDURE
    The EUT shall have its hopping function enabled. Use the following spectrum analyzer settings:
    1. Span: Zero span, centered on a hopping channel.
    2. RBW shall be=.channel spacing and where possible RBW should be set >> 1 / T, where T is the expected
    dwell time per channel.
    3. Sweep: As necessary to capture the entire dwell time per hopping channel; where possible use a video
    trigger and trigger delay so that the transmitted signal starts a little to the right of the start of the plot. The
    trigger level might need slight adjustment to prevent triggering when the system hops on an adjacent channel.
    4. Detector function: Peak. Trace: Max hold.
    5. Use the marker—delta function to determine the transmit time per hop.
    6. Using the following equation:

           The dwell time is calculated with the following formula:

           Owell time = tpouse X NMpogs / number of channels x 31.6 5s

           Where:
                      touse is the measured pulse time (pls. refer the plots of the spectrum analyser above) [s],
                      Nhops is the number of hops per second in the actual operating mode of the transmitter [1/s].

                      The hopping rate of the system is 1600 hops per second and the system uses 79 channels. For this reason
                      one time slot has a length of 625 us.

                      With the used hopping mode (DHS) a packet need 5 timeslots for transmitting and the next timeslot for
                      receiving. So the system makes in worst case 266,67 hops per second in transmit mode (Mpps= 266.667
                      1/s)


    13.2. TEST SETUP (BLOCK DIAGRAM OF CONFIGURATION)

       Same as described in section 8.2


    13.3. MEASUREMENT EQUIPMENT USED

       The same as described in section 6




The results ’m6tison|
                  o thisfeaost report refer only to the sample(s) tested unless otherwise stated and the sample(s) are retained for 30 days only. The document
is issued by/A C§€ this docu{& it cannot be reproduced except in full with our prior written permission. The more details and the authenticity of the report will be
confirmed tfittp://www.agc-% t.com.
            o

Attestatic m                   ® )        i                Tel: +86—755 2908 1955            Fax: +86—755 2600 8484             E—mail: agc@age—cert.com             @ 400 089 2118
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                                                                        Report No.: AGC01684180501FE03
                                                                                            Page 39 of 46


13.4. LIMITS AND MEASUREMENT RESULT
                                                                                              Limit
    Channel.          Burst Width [ms/hop/ch]           Dwell Time[ms]            Verdict
                                                                                              (ms)
      LCH                       3.090                       329.6004              PASS         400
      MCH                       3.090                       329.6004              PASS         400
      HCH                       3.080                       328.5337              PASS         400

Note: The DH5 for GFSK modulation is the worst case and recorded in the report.


Test Graph

                    GFSK-LCH                                              GFSK-MCH




                    GFSK-HCH


                                                                                         Page 40 of 46



14. FREQUENCY SEPARATION
14.1. MEASUREMENT PROCEDURE
 1. Place the EUT on the table and set it in transmitting mode
 2. Remove the antenna from the EUT and then connect a low RF cable from the antenna port to the
    spectrum analyzer
 3. Set Span = wide enough to capture the peaks of two adjacent channels Resolution (or IF) Bandwidth
    (RBW)  1% of the span Video (or Average) Bandwidth (VBW)  RBW; Sweep = auto; Detector function =
    peak; Trace = max hold
14.2. TEST SETUP (BLOCK DIAGRAM OF CONFIGURATION)
  Same as described in section 6.2
14.3. MEASUREMENT EQUIPMENT USED
  The same as described in section 6.3
14.4. LIMITS AND MEASUREMENT RESULT
          Mode                Channel.         Carrier Frequency Separation [MHz]        Verdict
          GFSK                  Hop                             0.999                     PASS


Note: All modes were tested, only the worst case record in the report.
Test Graph
                                                    Graphs




GFSK/Hop


                                                                              Report No.: AGC01684180501FE03
                                                                                                  Page 41 of 46


15. FCC LINE CONDUCTED EMISSION TEST
15.1. 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.


15.2. BLOCK DIAGRAM OF LINE CONDUCTED EMISSION TEST



                  EUT & Support
                  Units


                                                                          Report No.: AGC01684180501FE03
                                                                                              Page 42 of 46


15.3. 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 equipments received AC120V/60Hz power from a LISN, if any.
5. The EUT received DC charging voltage by adapter which received 120V/60Hzpower by 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.


15.4. 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.


                                                         Report No.: AGC01684180501FE03
                                                                             Page 43 of 46


15.5. TEST RESULT OF LINE CONDUCTED EMISSION TEST
                          LINE CONDUCTED EMISSION TEST LINE 1-L


                                 Report No.: AGC01684180501FE03
                                                     Page 44 of 46


LINE CONDUCTED EMISSION TEST LINE 2-N


                                     Report No.: AGC01684180501FE03
                                                         Page 45 of 46


APPENDIX A: PHOTOGRAPHS OF TEST SETUP
   LINE CONDUCTED EMISSION TEST SETUP




      RADIATED EMISSION TEST SETUP


                                 Report No.: AGC01684180501FE03
                                                     Page 46 of 46


RADIATED EMISSION ABOVE 1G TEST SETUP




        ----END OF REPORT----



Document Created: 2019-09-08 12:16:37
Document Modified: 2019-09-08 12:16:37

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