04LR018FC part1 2updated

FCC ID: NKRCM9

Test Report

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International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -18-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -19-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -20-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -21-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -22-                         FCC ID:NKRCM9


4.3 Peak Power Excursion Measurement [Section 15.407(a)(6) ]

4.3.1 Test Procedure

    1.   The Transmitter output of EUT was connected to the spectrum analyzer.
    2.   Frequency SPAN of Spectrum: 30MHz or 50MHz.
    3.   Trace 1 : RBW: 1MHz, VBW: 3MHz. Using positive detector and Max -hold
    4.   Trace 2 : RBW: 1MHz, VBW: 3MHz. Using Sample detector and Max-hold
    5.   Record the largest difference between Trace 1 and Trace 2.

4.3.2 Test Setup

                                                                     Spectrum
            EUT                                                      Analyzer




4.3.3 Test Data: (Normal Mode)

                                          Peak Power Excursion
                                                 Temp. (deg. C):              25
Test Engr: Mailes Hsieh                              Humidity (%):            50
 Channel    Frequency Peak Power Excursion (dBm)          Limit      Pass/Fail
              (Mhz)                                       dBm

    1          5180               11.98                    13          Pass
    4          5240               11.73                    13          Pass
    5          5260               11.70                    13          Pass
    8          5320               12.05                    13          Pass
    9          5745               12.23                    13          Pass
    12         5805               11.04                    13          Pass




International Standards Laboratory                           Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -23-                         FCC ID:NKRCM9


4.3.4 Test Data: (Turbo Mode)

                                          Peak Power Excursion
                                                 Temp. (deg. C):              25
Test Engr: Mailes Hsieh                              Humidity (%):            50
 Channel    Frequency Peak Power Excursion (dBm)          Limit      Pass/Fail
              (Mhz)                                       dBm

    1         5210                11.98                    13          Pass
    2         5250                11.01                    13          Pass
    3         5290                10.58                    13          Pass
    4         5760                10.63                    13          Pass
    5         5800                11.86                    13          Pass




International Standards Laboratory                           Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -24-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -25-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -26-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -27-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -28-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                              -29-                        FCC ID:NKRCM9




International Standards Laboratory                         Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                                   -30-                           FCC ID:NKRCM9


4.4 Powerline Conducted Emissions
[Section 15.207 & 15.407 (b)(5) ]

4.4.1 EUT Configuration
             The EUT was set up on the non-conductive table that is 1.0 by 1.5 meter, 80cm above ground. The wall
of the shielded room was located 40cm to the rear of the EUT.

           Power to the EUT was provided through the LISN. The impedance vs. frequency characteristic of the
LISN is complied with the limit shown on the figure 1 of ANSI C63.4-2001.

              Both lines (neutral and hot) were connected to the LISN in series at testing. A coaxial-type connector
which provides one 50 ohms terminating impedance was provided for connecting the test instrument. The excess
length of the power cord was folded back and forth at the center of the lead so as to form a bundle not exceeding 40cm
in length.

            Any changes made to the configuration, or modifications made to the EUT, during testing are noted in the
following test record.

            If the EUT is a Personal Computer or a peripheral of personal computer, and the personal computer has an
auxiliary AC outlet which can be used for providing power to an external monitor, then all measurements will be made
with the monitor power from first the computer-mounted AC outlet and then a floor-mounted AC outlet.

4.4.2 Test Procedure

             The system was set up as described above, with the EMI diagnostic software running. The main power
line conducted EMI tests were run on the hot and neutral conductors of the power cord and the results were recorded.
The effect of varying the position of the interface cables has been investigated to find the configuration that produces
maximum emission.

             At the frequencies where the peak values of the emissions were higher than 6dß below the applicable
limits, the emissions were also measured with the quasi-peak detectors. At the frequencies where the quasi-peak
values of the emissions were higher than 6dß below the applicable average limits, the emissions were also measured
with the average detectors.

            The highest emissions were analyzed in details by operating the spectrum analyzer in fixed tuned mode to
determine the nature of the emissions and to provide information which could be useful in reducing their amplitude.

4.4.3 EMI Receiver/Spectrum Analyzer Configuration (for the frequencies tested)

         Frequency Range:                                                     150 KHz--30MHz
         Detector Function:                                                   Quasi-Peak/Average
         Bandwidth (RBW):                                                     9KHz




International Standards Laboratory                                Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                                -31-                      FCC ID:NKRCM9

4.4.4 Test Data:


                                Power Line Conducted Emissions (Hot)
                                                                                   Operator: Mailes Hsieh
                                                                                          Temperature (C): 22
                        09:59:05 AM, Thursday, April 08, 2004                                Humidity (%): 56

Frequency     LISN      Cable      QP Corrct.      QP Limit       QP     AVE Corrct.       AVE       AVE
              Loss      Loss                                    Margin                    Limit     Margin
  MHz         (dB)      (dB)      Amp.(dBuV)       (dBuV)        (dB)    Amp.(dBuV)      (dBuV)      (dB)
 0.1508       0.10       0.02        53.93             65.98    -12.05     36.56         55.98      -19.42
 0.53551      0.12       0.03        33.22             56.00    -22.78     30.90         46.00      -15.10
 0.66915      0.14       0.04        33.12             56.00    -22.88     31.95         46.00      -14.05
 0.73568      0.16       0.05        32.59             56.00    -23.41     29.86         46.00      -16.14
 0.87393      0.18       0.06        32.63             56.00    -23.37     29.75         46.00      -16.25
 13.6684      0.65       0.27        47.11             60.00    -12.89     41.91         50.00       -8.09
 13.8672      0.66       0.27        47.59             60.00    -12.41     42.17         50.00       -7.83
 14.135       0.67       0.28        47.48             60.00    -12.52     42.13         50.00       -7.87
 14.1998      0.67       0.28        47.70             60.00    -12.30     42.30         50.00       -7.70
 14.4688      0.68       0.29        46.39             60.00    -13.61     41.46         50.00       -8.54




International Standards Laboratory                             Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                           -32-                   FCC ID:NKRCM9
                              Power Line Conducted Emissions (Neutral)
                                                                                    Operator: Mailes Hsieh
                                                                                           Temperature (C): 22
                         11:35:45 AM, Wednesday, April 07, 2004                               Humidity (%): 56
Frequency     LISN      Cable      QP Corrct.    QP Limit       QP         AVE Corrct.     AVE         AVE
              Loss      Loss                                  Margin                       Limit      Margin
  MHz         (dB)      (dB)      Amp.(dBuV)       (dBuV)        (dB)     Amp.(dBuV)        (dBuV)        (dB)
 0.21491      0.10      0.02        52.58           64.15       -11.57      32.33            54.15       -21.81
 0.24515       0.10      0.02       48.89           63.28       -14.39      28.78            53.28       -24.50
 0.24625       0.10      0.02       47.46           63.25       -15.79      28.09            53.25       -25.16
 0.26493       0.10      0.02       44.88           62.72       -17.84      33.61            52.72       -19.11
 0.39818       0.10      0.02       38.72           58.91       -20.18      30.20            48.91       -18.70
 17.9458       0.46      0.28       40.33           60.00       -19.67      35.98            50.00       -14.02
 18.4834       0.47      0.27       41.39           60.00       -18.61      37.52            50.00       -12.48
 18.6165       0.47      0.27       41.39           60.00       -18.61      37.48            50.00       -12.52
 18.6831       0.47      0.27       41.38           60.00       -18.62      37.32            50.00       -12.68
 19.1486       0.48      0.27       41.32           60.00       -18.68      36.52            50.00       -13.48
MHz         (dB)       (dB)      Amp.(dBuV)        (dBuV)      (dB)       Amp.(dBuV)        (dBuV)      (dB)
0.21491     0.10       0.02      52.58             64.15       -11.57     32.33             54.15       -21.81




* NOTE:     During the test, the EMI receiver was set to Max. Hold then switch the EUT between Main antenna , Aux
            antenna Channel 1 , 4, 5, 8 ,9,12 of Normal
            Mode and Channel 1, 2, 3,4,5 of Turbo Mode to get the maximum reading of all these channels.
            Margin = Amplitude + Insertion Loss- Limit
            A margin of -8dB means that the emission is 8dB below the limit




International Standards Laboratory                            Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                                   -33-                           FCC ID:NKRCM9


4.5 Radiated Emission Measurement [Section 15.209 & 15.407(b)(5)]

4.5.1 EUT Configuration
          The equipment under test was set up on the 10 meter chamber with measurement distance of 3 meters.
The EUT was placed on a non-conductive table 80cm above ground.

            Any changes made to the configuration, or modifications made to the EUT, during testing are noted in the
following test record.

4.5.2 Test Procedure
            The system was set up as described above, with the EMI diagnostic software running. We
found the maximum readings by varying the height of antenna and then rotating the turntable. Both
polarization of antenna, horizontal and vertical, are measured.

            30M to 1GHz: The highest emissions between 30 MHz to 1000 MHz were also analyzed in
details by operating the spectrum analyzer and/or EMI receiver in quasi-peak mode to determine the
precise amplitude of the emissions. While doing so, the interconnecting cables and major parts of the
system were moved around, the antenna height was varied between one and four meters, its polarization
was varied between vertical and horizontal, and the turntable was slowly rotated, to maximize the
emission.

            1GHz – 40GHz: The highest emissions were als o analyzed in details by operating the spectrum analyzer
and/or EMI receiver in peak mode to determine the precise amplitude of the emission. While doing so, the
interconnecting cables and major parts of the system were moved around, the antenna height was varied between one
and four meters, its polarization was varied between vertical and horizontal, and the turntable was slowly rotated, to
maximize the emission. During test the EMI receiver and spectrum was setup according to para. 6.5.3.

For the test of 2 nd to 10th harmonics frequencies , the equipment setup was also refer to para.6.5.3. The frequencies
were tested using Peak mode first, if the test data is higher than the emissions limit, an additional measurement using
Average mode will be performed and the average reading will be compared to the limit and record in test report.

4.5.3 EMI Receiver/Spectrum Analyzer Configuration
Frequency Range Tested:                               30MHz~1000MHz
Detector Function:                                    Quasi-Peak Mode
Resolution Bandwidth (RBW):                           120KHz
Video Bandwidth (VBW)                                 1MHz
Frequency Range Tested:                               1GHz – 40 GHz
Detector Function:                                    Peak Mode
Resolution Bandwidth (RBW):                           1MHz
Video Bandwidth (VBW)                                 1MHz
Frequency Range Tested:                               30MHz – 40 GHz
Detector Function:                                    Average Mode
Resolution Bandwidth (RBW):                           1MHz
Video Bandwidth (VBW)                                 10 Hz




International Standards Laboratory                               Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                                    -34-                            FCC ID:NKRCM9


4.5.4 Test Data (30MHz – 1GHz) .

30M – 1GHz Open Field Radiated Emissions (Horizontal)
                                   Operator: Mailes Hsieh
                                                                                                      Humidity (%): 46
                                                                                                    Temperature (C): 25
Frequency      Rx_R.      Ant_F.     Cab_L.      PreAmpl      Emission      Limit       Margin     A.Tower T.Table
   MHz         dBuV        dB/m        dB           dB        dBuV/m       dBuV/m        dB          cm          deg
  99.84        22.05      10.27        3.02         0.00        35.33       43.50        -8.17      200.00       200.00
 198.78        25.06       8.86        4.18         0.00        38.10       43.50        -5.40      200.00         7.00
 232.73        27.45       9.33        4.50         0.00        41.28       46.00        -4.72      100.00        65.00
 298.69        21.75      13.57        4.69         0.00        40.02       46.00        -5.98      150.00       219.00
  398.6        21.52      15.95        5.31         0.00        42.79       46.00        -3.21      100.00       303.00
 431.58        19.00      16.25        5.61         0.00        40.86       46.00        -5.14      100.00       237.00
 464.56        15.20      16.78        5.87         0.00        37.85       46.00        -8.15      100.00        65.00
 497.54        18.69      17.64        6.04         0.00        42.36       46.00        -3.64      150.00       254.00
  563.5        13.17      19.05        6.56         0.00        38.78       46.00        -7.22      100.00       161.00
  864.2         7.29      20.54        8.24         0.00        36.07       46.00        -9.93      100.00       181.00


30M – 1GHz Open Field Radiated Emissions (Vertical)
                                   Operator: Mailes Hsieh
                                                                                                      Humidity (%): 46
                                                                                                    Temperature (C): 25
Frequency      Rx_R.      Ant_F.     Cab_L.      PreAmpl      Emission      Limit       Margin     A.Tower T.Table
   MHz         dBuV        dB/m        dB           dB        dBuV/m       dBuV/m        dB          cm          deg
 138.64        18.12      10.54        3.55         0.00        32.21       43.50       -11.29      200.00       330.00
 231.76        21.00       9.21        4.48         0.00        34.70       46.00       -11.30      100.00       298.00
 364.65        14.87      14.80        5.07         0.00        34.73       46.00       -11.27      150.00       223.00
 431.58        13.17      16.25        5.61         0.00        35.03       46.00       -10.97      100.00       260.00
 497.54        13.12      17.64        6.04         0.00        36.80       46.00        -9.20      100.00       346.00
 643.04         8.42      19.07        7.00         0.00        34.50       46.00       -11.50      250.00       280.00
 651.77        14.02      19.10        7.04         0.00        40.16       46.00        -5.84      100.00       266.00
 661.47         9.30      19.08        7.07         0.00        35.45       46.00       -10.55      150.00       297.00
  815.7         8.72      20.19        7.93         0.00        36.83       46.00        -9.17      100.00        96.00
 866.14         6.48      20.54        8.26         0.00        35.28       46.00       -10.72      100.00        41.00

* NOTE:        During the pre -test, the EUT has been tested for Channel 1, 4, 5, 8, 9, 12 of Normal Mode and Channel
                1, 2, 3 ,4, 5 of Turbo mode and transmit from Main and Aux antenna respectively to get all the critical
                emission frequencies. In the final test all the critical emission frequencies has been tested and the test
                data are listed above.
Margin=Corrected Amplitude–Limit
Corrected Amplitude = Radiated Amplitude + Antenna Correctio n Factor + Cable Loss - Pre-Amplifier Gain
A margin of -8dB means that the emission is 8dB below the limit

All frequencies from 30MHz to 1GHz have been tested




International Standards Laboratory                                 Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                                  -35-                       FCC ID:NKRCM9


4.5.5 Test Data ( 1GHz – 40 GHz, Transmitting ) .

1GHz~ 40 GHz (Horizontal), Normal Mode, Channel 1 : 5180 MHz
                       Operator: Mailes Hsieh                                                  RBW: 1 MHz
                                                                                            Humidity (%): 46
                                                                                          Temperature (C): 25
Frequency      Rx_R.      Ant_F.     Cab_L.     PreAmpl   Emission    Limit    Margin    A.Tower T.Table
   MHz         dBuV        dB/m        dB          dB     dBuV/m     dBuV/m     dB         cm          deg
 4074.93       51.13       32.21      1.71       46.18    38.87      54.00     -15.13      102        174
 4592.81       50.88       33.79      1.88       46.68    39.87      54.00     -14.13      102         95
 8171.23       45.11       41.13      2.53       43.31    45.46      54.00      -8.54      100         62
 10025.9       39.27       39.21      2.83       41.12    40.18      54.00     -13.82      101        169
 11744.1       39.47       42.25      3.06       42.15    42.63      54.00     -11.37      100        347
 15537.8       40.66       42.92      5.38       42.66    46.30      54.00      -7.70      101        259


1GHz~ 40 GHz (Vertical), Normal Mode, Channel 1: 5180 MHz
                       Operator: Mailes Hsieh                                                  RBW: 1 MHz
                                                                                            Humidity (%): 46
                                                                                          Temperature (C): 25
Frequency      Rx_R.      Ant_F.     Cab_L.     PreAmpl   Emission    Limit    Margin    A.Tower T.Table
   MHz         dBuV        dB/m        dB          dB     dBuV/m     dBuV/m     dB         cm          deg
 1877.52       59.03       29.70      0.97       46.20    43.49      54.00     -10.51      101         65
 2391.81       54.44       30.54      1.14       46.21    39.92      54.00     -14.08      101         50
 7246.95       45.10       39.70      2.36       46.20    40.97      54.00     -13.03      101         45
 8088.51       45.39       41.16      2.51       43.52    45.55      54.00      -8.45      101        172
 10985.3       39.13       40.47      2.96       40.52    42.04      54.00     -11.96      100        309
 15542.7       42.45       42.94      5.39       42.65    48.13      54.00      -5.87      102        157

Note:     “ * ”: Fundamental Frequency
          “ pk”: peak readin g
          “av”: average reading
          The Spectrum noise level+Correction Factor<Limit-6 dB
          Margin = Corrected Amplitude – Limit
          Corrected Amplitude=Radiated Amplitude+Antenna Correction Factor+Cable Loss-Pre-Amplifier Gain
          A margin of -8dB means that the emission is 8d B below the limit.
The restricted band limit is 54dBuV, the out of band limit is 68.3dBuV. All
test data can meet this both limit.
      1000000 30 P
(E=                µV / m , –27dBm EIRP =68.3 dBuV)
            3

All frequencies from 1GHz to 40 GHz have been tested.




International Standards Laboratory                            Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997


                                                  -36-                       FCC ID:NKRCM9

1GHz~ 40 GHz (Horizontal), Normal Mode, Channel 4: 5240 MHz
                       Operator: Mailes Hsieh                                                  RBW: 1 MHz
                                                                                            Humidity (%): 46
                                                                                          Temperature (C): 25
Frequency      Rx_R.      Ant_F.     Cab_L.     PreAmpl   Emission    Limit    Margin    A.Tower T.Table
   MHz         dBuV        dB/m        dB          dB     dBuV/m     dBuV/m     dB         cm          deg
 3686.51       51.23       31.62      1.58       46.45     37.99     54.00     -16.01      102        181
 4064.14       51.89       32.18      1.70       46.17      39.6     54.00     -14.40      102        100
 4434.57       51.80       33.22      1.83       46.54     40.31     54.00     -13.69      101         45
 8034.57       45.84       41.19      2.51       43.66     45.87     54.00      -8.13      100        205
 11435.7       38.29       42.16      3.02       41.45     42.01     54.00     -11.99      102        184
 15714.0       37.55       43.48      5.64       42.08     44.59     54.00      -9.41      102         71


1GHz~ 40 GHz (Vertical), Normal Mode, Channel 4: 5240 MHz
                       Operator: Mailes Hsieh                                                  RBW: 1 MHz
                                                                                            Humidity (%): 46
                                                                                          Temperature (C): 25
Frequency      Rx_R.      Ant_F.     Cab_L.     PreAmpl   Emission    Limit    Margin    A.Tower T.Table
   MHz         dBuV        dB/m        dB          dB     dBuV/m     dBuV/m     dB         cm         deg
 2122.08       56.65       30.65      1.05       46.20     42.15     54.00     -11.85      103        247
 4118.08       50.95       32.33      1.72       46.23     38.78     54.00     -15.22      102        129
 4574.83       51.23       33.71      1.88       46.67     40.15     54.00     -13.85      102         82
 8146.05       45.77       41.14      2.53       43.38     46.06     54.00      -7.94      101         55
 11690.2       40.12       42.29      3.05       42.03     43.43     54.00     -10.57      102        315
 16707.7       37.23       45.18      6.31       42.12     46.61     54.00      -7.39      102        170

Note:     “ * ”: Fundamental Frequency
          “ pk”: peak reading
          “av”: average reading
          The Spectrum noise level+Correction Factor<Limit-6 dB
          Margin = Corrected Amplitude – Limit
          Corrected Amplitude=Radiated Amplitude+Antenna Correction Factor+Cable Loss-Pre-Amplifier Gain
          A margin of -8dB means that the emission is 8dB below the limit.
The restricted band limit is 54dBuV, the out of band limit is 68.3dBuV. All
test data can meet this both limit.
      1000000 30 P
(E=                µV / m , –27dBm EIRP =68.3 dBuV)
            3

All frequencies from 1GHz to 40 GHz have been tested.




International Standards Laboratory                            Report Number: 04LR018FC
HC LAB :NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178
LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997



Document Created: 2004-06-01 16:02:02
Document Modified: 2004-06-01 16:02:02

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