test report

FCC ID: YZP-REBEMZ42A

Test Report

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EMC
COMDIIANC@                            resonmosmcrccrons
http://www.eme2000.co.kr




                            FCC TEST REPORT

     Test report No.:                 EMC— FCC— RO243

     FCC ID:                          YZP—REBEMZA2A

     Type of equipment:               Electronic Shelf Label

     Model Name:                      REBE—MZ42A

     Applicant:                       LG Innotek Co., Ltd.

     Max.RF Output Power:             2.06 dBm

     FCC Rule Part(s):                FCC Part 15 Subpart C 15.247

     Frequency Range:                 2 405 Mb ~ 2 480 Mz
     Test result:                     Complied


     The above equipment was tested by EMC compliance Testing Laboratory for compliance
     with the requirements of FCC Rules and Regulations.
     The results oftesting in this report apply to the product/system which was tested only.
     Other similar equipment will not necessarily produce the same results due to production
     tolerance and measurement uncertainties.



     Date of receipt: 2015. 04. 28

     Date of test: 2015. 05. 04 ~ 05. 07                Issued date: 2015. 05. 11


                                                         Approved by: W\
     Tested by: @

                    KIM, TAE YOUNG                                        SON, MIN GI




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             This test report shall not be reproduced except in full, Without the written approval.


                                                                  FCC TEST REPORT
                                                              Report No.: EMC-FCC-R0243
http://www.emc2000.co.kr



                                                                           [ Contents ]

1. Client information ............................................................................................................................................. 3
2. Laboratory information .................................................................................................................................... 4
3. Description of E.U.T. ......................................................................................................................................... 5
    3.1 Basic description........................................................................................................................................... 5
    3.2 General description ....................................................................................................................................... 5
    3.3 Test frequency ............................................................................................................................................... 6
    3.4 Test Voltage................................................................................................................................................... 6
4. Summary of test results..................................................................................................................................... 7
    4.1 Standards & results ....................................................................................................................................... 7
    4.2 Uncertainty ................................................................................................................................................... 7
5. Test results .......................................................................................................................................................... 8
    5.1 Antenna Requirement ................................................................................................................................... 8
    5.2 Maximum Peak Output Power ...................................................................................................................... 9
    5.3 Peak Power Spectral Density ...................................................................................................................... 11
    5.4 6 dB Bandwidth(DTS Channel Bandwidth) ............................................................................................... 15
    5.5 Spurious Emission, Band Edge, and Restricted bands................................................................................ 20
6. Test equipment used for test ........................................................................................................................... 31




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                                        Report No.: EMC-FCC-R0243
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 1. Client information

   Applicant:                     LG Innotek Co., Ltd.
   Address:                       (Jangduk-dong) 26, Hanamsandan 5beon-ro, Gwangsan-gu,
                                  Gwangju, 506-731, Korea
   Telephone number:              +82-62-950-0332
   Facsimile number:              +82-303-5300-0563
   Contact person:                In Chang Jeong / ic.jeong@lginnotek.com




   Manufacturer:                  SUZHOU NIHONE Electronics Technology Co.LTD
   Address:                       No.185 XiaoXiang Road Suzhou High tech Zone




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              This test report shall not be reproduced except in full, Without the written approval.


                                            FCC TEST REPORT
                                        Report No.: EMC-FCC-R0243
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 2. Laboratory information
 Address

 EMC compliance Ltd.
 480-5, Sin-dong, Yeongtong-gu, Suwon-si, Gyeonggi-do, Korea
 Telephone Number: 82-31-336-9919 Facsimile Number: 82-505-299-8311

 Certificate

 KOLAS No.: 231
 FCC Site Designation No: KR0040
 FCC Site Registration No: 687132
 VCCI Site Registration No.: R-3327, G-198, C-3706, T-1849
 IC Site Registration No.:8035A-2

 SITE MAP




            Suwon city




                                            EMC Compliance Ltd.




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 3. Description of E.U.T.
 3.1 Basic description
            Applicant:              LG Innotek Co., Ltd.
                                    (Jangduk-dong) 26, Hanamsandan 5beon-ro, Gwangsan-gu,
      Address of Applicant
                                    Gwangju, 506-731, Korea
          Manufacturer              SUZHOU NIHONE Electronics Technology Co.LTD
    Address of Manufacturer         No.185 XiaoXiang Road Suzhou High tech Zone
        Type of equipment           Electronic Shelf Label
           Basic Model              REBE-MZ42A
          Serial number             N/A


 3.2 General description
        Frequency Range             2 405 ㎒ ~ 2 480 ㎒

       Type of Modulation           O-QPSK
       Number of Channels           16 ch
         Type of Antenna            PCB Pattern Antenna
          Antenna Gain              -1.35 ㏈i
         Transmit Power             2.06 ㏈m
          Power supply              DC 3 V
    Product SW/HW Version           0.1b
     Radio SW/HW Version            N/A
         Test SW Version            SmartRF Studio 7
    RF power setting in TEST
                                    4.5 dBm
              SW




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 3.3 Test frequency
                                               Channel                              Frequency

          Low frequency                           11                                2 405 ㎒

         Middle frequency                         18                                2 440 ㎒

          High frequency                          26                                2 480 ㎒



 3.4 Test Voltage
                    mode                                                  Voltage

             Norminal voltage                                             DC 3 V




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 4. Summary of test results
 4.1 Standards & results
   FCC Rule              IC Rule                                                          Report           Test
                                                          Parameter
   Reference            Reference                                                         Section         Result
  15.203,
                             -             Antenna Requirement                               5.1              C
  15.247(b)(4)
  15.247(b)(3)      RSS-210, A8.4(2)       Maximum Peak Output Power                         5.2              C

  15.247(e)         RSS-210, A8.2(b)       Peak Power Spectral Density                       5.3              C

  15.247(a)(2)      RSS-210, A8.2(a)       6 ㏈ Channel Bandwidth                             5.4              C

  -                 RSS-GEN, 6.6           Occupied Bandwidth                                5.4              C
  15.247(d),
                    RSS-210, A8.5   Spurious Emission,
  15.205(a),                                                                                 5.5              C
                    RSS-GEN, 8.9,10 Band Edge, and Restricted bands
  15.209(a)
  15.207(a)         RSS-GEN, 8.8           Conducted Emissions                               5.6           N/A1)

Note: C = complies
      NC = Not complies
      NT = Not tested
      NA = Not Applicable

N/A1) : This test is not applicable because the EUT uses battery and it’s not to be connected to
        the public utility(AC) power line.


 4.2 Uncertainty
                                                                                    Expanded
 Measurement Item                                                                  Uncertainty
                                                                                 U = KUc (K = 2)
 Conducted RF power                                                                 ± 1.36 ㏈
 Conducted Spurious Emissions                                                        ± 1.52 ㏈
                                                                                              + 4.94 ㏈, - 5.06 ㏈
                                                                 30 ㎒ ~ 300 ㎒:
                                                                                              + 4.93 ㏈, - 5.05 ㏈
 Radiated Spurious Emissions                                                                  + 4.97 ㏈, - 5.08 ㏈
                                                                300 ㎒ ~ 1 000 ㎒:
                                                                                              + 4.84 ㏈, - 4.96 ㏈
                                                                   1 ㎓ ~ 25 ㎓:                + 6.03 ㏈, - 6.05 ㏈
                                                                  9 ㎑ ~ 150 ㎑:                     ± 3.75 ㏈
 Conducted Emissions
                                                                 150 ㎑ ~ 30 ㎒:                     ± 3.36 ㏈



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 5. Test results
 5.1 Antenna Requirement
 5.1.1 Regulation
 According to §15.203, an intentional radiator shall be designed to ensure that no antenna other than that
 furnished by the responsible party shall be used with the device. The use of a permanently attached
 antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered
 sufficient to comply with the provisions of this Section. The manufacturer may design the unit so that
 a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical
 connector is prohibited.

 And according to §15.247(b)(4), the conducted output power limit specified in paragraph (b) of this
  section is based on the use of antennas with directional gains that do not exceed 6 ㏈I. Except as shown
 in paragraph (c) of this section, if transmitting antennas of directional gain greater than 6 ㏈i are used,
 the conducted output power from the intentional radiator shall be reduced below the stated values in
 paragraphs (b)(1), (b)(2), and (b)(3) of this section, as appropriate, by the amount in ㏈ that the
 directional gain of the antenna exceeds 6 ㏈i.


 5.1.2 Result
 -Complied
 The transmitter has a PCB Pattern type of antenna. The directional peak gain of the antenna is -1.35 ㏈i.




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 5.2 Maximum Peak Output Power
 5.2.1 Regulation
 According to §15.247(b)(3), For systems using digital modulation in the 902-928 ㎒,
 2 400-2 483.5 ㎒, and 5 725-5 850 ㎒ bands: 1 Watt. As an alternative to a peak power
 measurement, compliance with the one Watt limit can be based on a measurement of the maximum
 conducted output power. Maximum Conducted Output Power is defined as the total transmit power
 delivered to all antennas and antenna elements averaged across all symbols in the signaling alphabet
 when the transmitter is operating at its maximum power control level. Power must be summed across
 all antennas and antenna elements. The average must not include any time intervals during which the
 transmitter is off or is transmitting at a reduced power level. If multiple modes of operation are possible
 (e.g., alternative modulation methods), the maximum conducted output power is the highest total
 transmit power occurring in any mode.

 According to §15.247(b)(4) The conducted output power limit specified in paragraph (b) of this section
 is based on the use of antennas with directional gains that do not exceed 6 ㏈i. Except as shown in
 paragraph (c) of this section, if transmitting antennas of directional gain greater than 6 ㏈i are used, the
 conducted output power from the intentional radiator shall be reduced below the stated values in
 paragraphs (b)(1), (b)(2), and (b)(3) of this section, as appropriate, by the amount in ㏈ that the
 directional gain of the antenna exceeds 6 ㏈i.

 5.2.2 Measurement Procedure

 These test measurement settings are specified in section 9.0 of 558074 D01 DTS Meas Guidance.

 5.2.2.1 PKPM1 Peak power meter method

 The maximum peak conducted output power may be measured using a broadband peak RF power meter.
 The power meter shall have a video bandwidth that is greater than or equal to the DTS bandwidth and shall utilize
 a fast-responding diode detector.




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 5.2.3 Test Result
 -Complied
                            Frequency                 Result                  Limit                 Margin           Avarage Power
        Channel
                               (㎒)                    (㏈m)                    (㏈m)                   (㏈)                 (㏈m)

        Lowest                 2 405                   2.06                   30.00                  27.94                  1.64
        Middle                 2 440                   1.96                   30.00                  28.04                  1.48
        Highest                2 480                   1.66                   30.00                  28.34                  1.24
      -NOTE:
 1.    Since the directional gain of the PCB antenna declared by the manufacturer (GANT =-1.35 dBi), does not exceed 6.0 dBi ,
       there was no need to reduce the output power.
       We took the insertion loss of the cable loss into consideration within the measuring instrument




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 5.3 Peak Power Spectral Density
 5.3.1 Regulation
 According to §15.247(e), for digitally modulated systems, the power spectral density conducted from
 the intentional radiator to the antenna shall not be greater than 8 ㏈m in any 3 ㎑ band during any time
 interval of continuous transmission. This power spectral density shall be determined in accordance with
 the provisions of paragraph (b) of this section. The same method of determining the conducted output
 power shall be used to determine the power spectral density.

 5.3.2 Measurement Procedure
 These test measurement settings are specified in section 10.0 of 558074 D01 DTS Meas Guidance.

 5.3.2.1 Method PKPSD (peak PSD)

 This procedure shall be used if maximum peak conducted output power was used to demonstrate
 compliance, and is optional if the maximum conducted (average) output power was used to demonstrate
 compliance.

 1) Set analyzer center frequency to DTS channel center frequency.
 2) Set the span to 1.5 times the DTS bandwidth.
 3) Set the RBW to: 3 ㎑ ≤ RBW ≤ 100 ㎑.
 4) Set the VBW ≥ 3 x RBW.
 5) Detector = peak.
 6) Sweep time = auto couple.
 7) Trace mode = max hold.
 8) Allow trace to fully stabilize.
 9) Use the peak marker function to determine the maximum amplitude level within the RBW.
 10) If measured value exceeds limit, reduce RBW (no less than 3 ㎑) and repeat.




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 5.3.3 Test Result

 -Complied
                                                  Result                         Limit                         Margin
               Channel
                                                  [㏈m]                           [㏈m]                          [㏈m]

                Lowest                            -1.51                           8.00                           9.51
                Middle                            -1.77                           8.00                           9.77
                Highest                           -1.89                           8.00                           9.89

      -NOTE:
 1.    Since the directional gain of the Embedded antenna declared by the manufacturer (GANT =-1.35 dBi), does not exceed 6.0 dBi,
       there was no need to reduce the power spectral density.
 2.    We took the insertion loss of the cable loss into consideration within the measuring instrument.




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 5.3.4 Test Plot
 Figure 1. Plot of the Power Density

 Lowest Channel ( 2 405 ㎒)




 Middle Chnnel (2 440 ㎒)




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 Highest Chnnel (2 480 ㎒)




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 5.4 6 dB Bandwidth(DTS Channel Bandwidth)
 5.4.1 Regulation
 According to §15.247(a)(2) Systems using digital modulation techniques may operate in the
 902–928 ㎒, 2 400–2 483.5 ㎒, and 5 725–5 850 ㎒ bands. The minimum 6 ㏈ bandwidth shall
 be at least 500 ㎑.

 5.4.2 Measurement Procedure
 These test measurement settings are specified in section 8.0 of 558074 D01 DTS Meas Guidance.

 5.4.2.1 DTS Channel Bandwidth-Option 1

 1) Set RBW = 100 ㎑.
 2) Set the video bandwidth (VBW) ≥ 3 x RBW.
 3) Detector = Peak.
 4) Trace mode = max hold.
 5) Sweep = auto couple.
 6) Allow the trace to stabilize.
 7) Measure the maximum width of the emission that is constrained by the frequencies associated with
    the two outermost amplitude points (upper and lower frequencies) that are attenuated by 6 ㏈ relative
    to the maximum level measured in the fundamental emission.

 5.4.2.2 DTS Channel Bandwidth Measurement Procedure-Option 2

 The automatic bandwidth measurement capability of an instrument may be employed using the X ㏈
 bandwidth mode with X set to 6 ㏈, if the functionality described above (i.e., RBW = 100 ㎑,
 VBW ≥ 3 x RBW, peak detector with maximum hold) is implemented by the instrumentation function.
 When using this capability, care shall be taken so that the bandwidth measurement is not influenced by
 any intermediate power nulls in the fundamental emission that might be ≥ 6 ㏈.




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 5.4.3 Test Result

 -Complied
                               Frequency               6 ㏈ Bandwidth                 Min. Limit        Occupied Bandwidth
        Channel
                                  (㎒)                       (㎒)                        (㎒)               (99 % BW) (㎒)

          Low                     2 405                       1.62                        0.5                 2.58
         Middle                   2 440                       1.63                        0.5                 2.57
          High                    2 480                       1.61                        0.5                 2.57

 -NOTE:
 1. We took the insertion loss of the cable loss into consideration within the measuring instrument.




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 5.4.4 Test Plot
 Figure 2. Plot of the 6㏈ Bandwidth & Occupied Bandwidth

* 6 ㏈ Bandwidth

 Lowest Channel (2 405 ㎒)




 Middle Channel (2 440 ㎒)




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 Highest Channel (2 480 ㎒)




* Occupied Bandwidth

 Lowest Channel (2 405 ㎒)




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 Middle Channel (2 440 ㎒)




 Highest Channel (2 480 ㎒)




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 5.5 Spurious Emission, Band Edge, and Restricted bands
 5.5.1 Regulation
 According to §15.247(d), in any 100 ㎑ bandwidth outside the frequency band in which the spread
 spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is
 produced by the intentional radiator shall be at least 20 ㏈ below that in the 100 ㎑ bandwidth within
 the band that contains the highest level of the desired power, based on either an RF conducted or a
 radiated measurement, provided the transmitter demonstrates compliance with the peak conducted
 power limits. If the transmitter complies with the conducted power limits based on the use of RMS
 averaging over a time interval, as permitted under paragraph (b)(3) of this section, the attenuation
 required under this paragraph shall be 30 ㏈ instead of 20 ㏈. Attenuation below the general limits
 specified in Section 15.209(a) is not required. In addition, radiated emissions which fall in the restricted
 bands, as defined in Section 15.205(a), must also comply with the radiated emission limits specified in
 Section 15.209(a) (see Section 15.205(c)).

 According to §15.209(a), Except as provided elsewhere in this subpart, the emissions from an intentional
 radiator shall notexceed the field strength levels specified in the following table:

       Frequency (㎒)                   Field strength (㎶/m)                       Measurement distance (m)

        0.009 - 0.490                       2 400/F(㎑)                                         300
        0.490 - 1.705                      24 000/F(㎑)                                          30
          1.705 - 30                             30                                             30
            30 - 88                            100**                                             3
           88 - 216                            150**                                             3
          216 - 960                            200**                                             3
         Above 960                              500                                              3
 **Except as provided in paragraph (g), fundamental emissions from intentional radiators operating under this section shall
   not be located in the frequency bands 54–72 ㎒, 76–88 ㎒, 174–216 ㎒ or 470–806 ㎒. However, operation within these
   frequency bands is permItted under other sections of this part, e.g., §§15.231 and 15.241.




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 According to § 15.205(a) and (b), only spurious emissions are permitted in any of the frequency bands
 listed below:
                 ㎒                         ㎒                         ㎒                        ㎓
            0.009 - 0.110             16.42 - 16.423             399.9 - 410               4.5 - 5.15
            0.495 - 0.505         16.694 75 - 16.695 25           608 - 614               5.35 - 5.46
          2.173 5 - 2.190 5       16.804 25 - 16.804 75          960 – 1 240              7.25 - 7.75
            4.125 - 4.128               25.5 - 25.67            1 300 – 1 427             8.025 - 8.5
         4.177 25 - 4.177 75            37.5 - 38.25           1 435 – 1 626.5              9.0 - 9.2
         4.207 25 - 4.207 75             73 - 74.6            1 645.5 – 1 646.5             9.3 - 9.5
            6.215 - 6.218               74.8 - 75.2             1 660 – 1 710             10.6 - 12.7
         6.267 75 - 6.268 25           108 - 121.94           1 718.8 – 1 722.2           13.25 - 13.4
         6.311 75 - 6.312 25             123 - 138              2 200 – 2 300             14.47 - 14.5
            8.291 - 8.294             149.9 - 150.05            2 310 – 2 390             15.35 - 16.2
            8.362 - 8.366        156.524 75 - 156.525 25       2 483.5 – 2 500            17.7 - 21.4
         8.376 25 - 8.386 75           156.7 - 156.9            2 690 – 2 900            22.01 - 23.12
         8.414 25 - 8.414 75       162.012 5 - 167.17           3 260 – 3 267             23.6 - 24.0
            12.29 - 12.293            167.72 - 173.2            3 332 – 3 339             31.2 - 31.8
        12.519 75 - 12.520 25            240 - 285             3 345.8 – 3 358            36.43 - 36.5
        12.576 75 - 12.577 25           322 - 335.4             3 600 – 4 400             Above 38.6
            13.36 - 13.41

 The field strength of emissions appearing within these frequency bands shall not exceed the limits
 shown in §15.209. At frequencies equal to or less than 1 000 ㎒, compliance with the limits in
 §15.209 shall be demonstrated using measurement instrumentation employing a CISPR quasi-peak
 detector. Above 1 000 ㎒, compliance with the emission limits in §15.209 shall be demonstrated based
 on the average value of the measured emissions. The provisions in §15.35 apply to these measurements.




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 5.5.2 Measurement Procedure
 5.5.2.1 Band-edge Compliance of RF Conducted Emissions

 5.5.2.1.1 Reference Level Measurement

  Establish a reference level by using the following procedure:

  1) Set instrument center frequency to DTS channel center frequency.
  2) Set the span to ≥ 1.5 times the DTS bandwidth.
  3) Set the RBW = 100 ㎑.
  4) Set the VBW ≥ 3 x RBW.
  5) Detector = peak.
  6) Sweep time = auto couple.
  7) Trace mode = max hold.
  8) Allow trace to fully stabilize.
  9) Use the peak marker function to determine the maximum PSD level.

 5.5.2.1.2 Emissions Level Measurement

  1) Set the center frequency and span to encompass frequency range to be measured.
  2) Set the RBW = 100 ㎑.
  3) Set the VBW ≥ 3 x RBW.
  4) Detector = peak.
  5) Ensure that the number of measurement points ≥ span/RBW
  6) Sweep time = auto couple.
  7) Trace mode = max hold.
  8) Allow trace to fully stabilize.
  9) Use the peak marker function to determine the maximum amplitude level.

  Ensure that the amplitude of all unwanted emissions outside of the authorized frequency band (excluding
  restricted frequency bands) are attenuated by at least the minimum requirements specified in 11.1 a) or 11.1 b).
  Report the three highest emissions relative to the limit.




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 5.5.2.2 Conducted Spurious Emissions
  Set the spectrum analyzer as follows:

  1) Span = wide enough to capture the peak level of the in-band emission and all spurious emissions (e.g.,
             harmonics) from the lowest frequency generated in the EUT up through the 10th harmonic.
            Typically, several plots are required to cover this entire span.
  2) RBW = 100 ㎑
  3) VBW  RBW
  4) Sweep = auto
  5) Detector function = peak
  6) Trace = max hold
  7) Allow the trace to stabilize. Set the marker on the peak of any spurious emission recorded.
  8) Each frequency found during preliminary measurements was re-examined and investigated.
     The test-receiver system was set up to average, peak, and quasi-peak detector function with specified
     bandwidth.

 5.5.2.3 Radiated Spurious Emissions
  1) The preliminary and final rdiated measurements were performed to determine the frequency producing the
     maximum emissions in at a 10m anechoic chamber. The EUT was tested at a distance 3 meters.
  2) The EUT was placed on the top of the 0.8-meter height, 1 × 1.5 meter non-metallic table. To find the
     maximum emission levels, the height of a measuring antenna was changed and the turntable was rotated 360˚.
  3) The antenna polarization was also changed from vertical to horizontal. The spectrum was scanned from 9 ㎑ to
      30 ㎒ using the loop antenna, and from 30 to 1 000 ㎒ using the TRILOG broadband antenna, and from 1 000
      ㎒ to 26 500 ㎒ using the horn antenna.
  4) Each frequency found during preliminary measurements was re-examined and investigated. The test-receiver
     system was set up to average, peak, and quasi-peak detector function with specified bandwidth.

 Note
 1. The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 120 ㎑ for Peak detection
     (PK) and Quasi-peak detection (QP) at frequency below 1 ㎓.
 2. The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 1 ㎒ for Peak detection
     and frequency above 1 ㎓.
    The resolution bandwidth of test receiver/spectrum analyzer is 1 ㎒ and the video bandwidth is 1 ㎑(1/T) for
    Average detection (AV) at frequency above 1 ㎓. (where T = pulse width)




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 5.5.3 Test Result

 -Complied
 1. Band-edge & Conducted Spurious Emissions was shown in figure 3.
     Note: We took the insertion loss of the cable into consideration within the measuring instrument.
 2. Measured value of the Field strength of spurious Emissions (Radiated)


 * Below 1 ㎓ data (worst-case: Lowest channel (2 405 ㎒))

 * Lowest channel (2 405 ㎒)
                              Receiver
       Frequency                                Pol.      Reading        Factor         Result           Limit   Margin
                             Bandwidth
          [㎒]                  [㎑]            [V/H]       [㏈(㎶)]          [㏈]        [㏈(㎶/m)] [㏈(㎶/m)]            [㏈]
   Quasi-Peak DATA. Emissions below 30 ㎒ (3 m Distance)
         Below                  Not
                                                 -            -             -              -               -       -
         30.00                Detected
   Quasi-Peak DATA. Emissions below 1 ㎓
         Below                  Not
                                                 -            -             -              -               -       -
        1 000.00              Detected




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 * Above 1 ㎓ data

 Lowest channel (2 405 ㎒)
                   Receiver
    Frequency                Pol.           Reading   Factor     DCCF        Result       Limit       Margin
                  Bandwidth
       [㎒]          [㎑]     [V/H]           [㏈(㎶)]     [㏈]        [㏈]     [㏈(㎶/m)] [㏈(㎶/m)]            [㏈]
  Peak DATA. Emissions above 1 ㎓
    * 2 388.50      1 000        H           42.4       2.8        0          45.2        74.0         28.8
     7 213.13       1 000        H           42.5      15.6        0          58.1        74.0         15.9
      Above          Not
                                 -             -        -          -           -           -            -
     8 000.00      Detected
  Average DATA. Emissions above 1 ㎓
    * 2 388.50      1 000         H       42.4          2.8      -34.0        11.2        54.0         42.8
     7 213.13       1 000         H       42.5         15.6      -34.0        24.1        54.0         29.9
      Above          Not
                                  -        -            -          -           -           -            -
     8 000.00      Detected
   * This Asterisk means restricted band.

 Middle channel (2 440 ㎒)
                   Receiver
    Frequency                Pol.           Reading   Factor     DCCF        Result       Limit       Margin
                  Bandwidth
       [㎒]          [㎑]     [V/H]       [㏈(㎶)]        [㏈]         [㏈]      [㏈(㎶/m)] [㏈(㎶/m)]           [㏈]
  Peak DATA. Emissions above 1 ㎓
    7 321.88        1 000        H           41.4     16.1         0          57.5        74.0         16.5
     Above           Not
                                 -            -         -          -            -           -            -
    8 000.00       Detected
  Average DATA. Emissions above 1 ㎓
    7 321.88        1 000        H           41.4     16.1       -34.0        23.5        54.0         30.5
     Above           Not
                                 -            -         -          -           -            -            -
    8 000.00       Detected

 Highest channel (2 475 ㎒)
                   Receiver
    Frequency                    Pol.       Reading   Factor     DCCF        Result       Limit       Margin
                  Bandwidth
       [㎒]          [㎑]        [V/H]        [㏈(㎶)]     [㏈]        [㏈]     [㏈(㎶/m)] [㏈(㎶/m)]            [㏈]
  Peak DATA. Emissions above 1 ㎓
    * 2 483.50      1 000        H            63.8     3.2         0         67.0         74.0         7.0
      Above          Not
                                  -               -     -          -           -           -            -
     3 000.00      Detected
  Average DATA. Emissions above 1 ㎓
    * 2 483.50      1 000         H           63.8     3.2       -34.0       33.0         54.0         21.0
      Above          Not
                                  -               -     -          -           -           -            -
     3 000.00      Detected
   * This Asterisk means restricted band.




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 5.5.4 Test Plot
 Figure 3. Plot of the Band-edge & Conducted Spurious Emissions

 Lowest Channel (2 405 ㎒)

 Reference




 Bend-edge




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 Conducted Spurious Emissions




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  Middle Channel (2 440 ㎒)

 Reference




 Conducted Spurious Emissions




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  Highest Channel (2 480 ㎒)

 Reference




 Bend-edge




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 Conducted Spurious Emissions




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 6. Test equipment used for test
             Description             Manufacture           Model No.            Serial No.        Next Cal Date.
                                     SONOMA
  ■           Amplifier
                                   INSTRUMENT
                                                               310               293004             15.09.25

  ■          Attenuator                  HP               MY52460424              8491A             15.07.23

  ■         Antenna Mast            Innco Systems         MA4000-EP                  -                  -

  ■          Turn Table             Innco Systems            DT2000                  -

  ■        Bi-Log Antenna         SCHWARZBECK              VULB9163                552              16.06.14

  ■         Loop Antenna                R&S                 HFH2-Z2              100355             15.06.19

  ■         Horn Antenna            ETS.lindgren              3115                62589             15.10.16

  ■         Horn Antenna            ETS.lindgren              3116                86632             15.10.20

  ■    Broadband Preamplifier     SCHWARZBECK               BBV9718                216              15.08.12

  ■    Broadband Preamplifier     SCHWARZBECK               BBV9721                 2               15.05.09

  ■      Spectrum Analyzer              R&S                  FSV40               100989             16.01.26

  ■       SignalI Generator             R&S                SMB 100A              176206             16.03.10

  ■       DC Power Supply            AGILENT                 E3632A           MY40004399            16.01.06

  ■    Wideband Power Sensor            R&S                 NRP-Z81              102398             15.11.27




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Document Created: 2015-05-14 11:32:55
Document Modified: 2015-05-14 11:32:55

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