Test Report UNII 2

FCC ID: K7S-F6D3050

Test Report

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FCCID_514206

FCC ID: K7S-F6D3050




4.5     PEAK POWER SPECTRAL DENSITY MEASUREMENT


4.5.1 LIMITS OF PEAK POWER SPECTRAL DENSITY MEASUREMENT

            Frequency Band                                 Limit
            5.15 ~ 5.25GHz                                 4dBm
            5.25 ~ 5.35GHz                                11dBm
           5.725 ~ 5.825GHz                               17dBm


4.5.2 TEST INSTRUMENTS

 Description & Manufacturer            Model No.         Serial No.        Calibrated Until

    SPECTRUM ANALYZER                   FSEK30             100049            Aug. 12, 2005

NOTE: The calibration interval of the above test instruments is 12 months and the calibrations are
traceable to NML/ROC and NIST/USA.




Report No.: RF931207L04                          56                           Report Format Version 2.0.2


FCC ID: K7S-F6D3050




4.5.3 TEST PROCEDURES

 1. The transmitter output was connected to the spectrum analyzer.
 2. Set RBW=1MHz, VBW=3MHz. The PPSD is the highest level found across the
    emission in any 1MHz band.



4.5.4 DEVIATION FROM TEST STANDARD

 No deviation



4.5.5 TEST SETUP



                  EUT                        SPECTRUM
                                             ANALYZER




4.5.6 EUT OPERATING CONDITIONS
 Same as 5.3.6




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4.5.7 TEST RESULTS
802.11a OFDM modulation

  EUT                     Wireless A/G USB Adapter MODEL            F6D3050

  MODULATION
                          BPSK                      TRANSFER RATE   6Mbps
  TYPE
  INPUT POWER                                       ENVIRONMENTAL   24deg.C, 64%RH,
                          120Vac, 60 Hz             CONDITIONS
  (SYSTEM)                                                          991hPa
  TESTED BY               Leo Hung


                           CHANNEL          RF POWER       MAXIMUM
     CHANNEL              FREQUENCY       LEVEL IN 1MHz     LIMIT         PASS/FAIL
                            (MHz )          BW (dBm)        (dBm)
           1                  5180            -0.64           4              PASS
           4                  5240            -0.19           4              PASS
           5                  5260            -0.39           11             PASS
           8                  5320            -0.15           11             PASS




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CH1




CH4




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CH5




CH8




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802.11a Turbo OFDM modulation

  EUT                     Wireless A/G USB Adapter MODEL                F6D3050

  MODULATION
                          BPSK                      TRANSFER RATE 12Mbps
  TYPE
  INPUT POWER                                       ENVIRONMENTAL       24deg.C, 64%RH,
                          120Vac, 60 Hz             CONDITIONS
  (SYSTEM)                                                              991hPa
  TESTED BY               Leo Hung


                           CHANNEL        RF POWER LEVEL IN   MAXIMUM
     CHANNEL              FREQUENCY           1 MHz BW         LIMIT           PASS/FAIL
                            (MHz )              (dBm)          (dBm)
           1                  5210              -5.68               4              PASS
           2                  5250              -3.57               4              PASS
           3                  5290              -3.34               11             PASS




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CH1




CH2




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CH3




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4.6     FREQUENCY STABILITY

 4.6.1 LIMITS OF FREQUENCY STABILITY MEASUREMENT
The frequency tolerance of the carrier signal shall be maintained within +/- 0.02% of
the operating frequency over a temperature variation of –30 degrees to 50 degrees
C at normal supply voltage, and for a variation in the primary supply voltage from
85% to 115% of the rated supply voltage at a temperature of 20 degrees C.


 4.6.2 TEST INSTRUMENTS

      Description & Manufacturer             Model No.       Serial No.     Calibrated Until

 ANRITSU SPECTRUM ANALYZER                   MS2667C          M10281          Aug. 12, 2005

 WIT STANDARD TEMPERATURE
                                              TH-4S-C        W901030          Aug. 12, 2005
   AND HUMIDITY CHAMBER

NOTE: The calibration interval of the above test instruments is 12 months and the calibrations are
traceable to NML/ROC and NIST/USA.


4.6.3     TEST PROCEDURE

 1. The EUT was placed inside the environmental test chamber and powered by
    nominal DC voltage.
 2. Turn the EUT on and couple its output to a spectrum analyzer.
 3. Turn the EUT off and set the chamber to the highest temperature specified.
 4. Allow sufficient time (approximately 30 min) for the temperature of the chamber
    to stabilize, turn the EUT on and measure the operating frequency after 2, 5,
    and 10 minutes.
 5. Repeat step 2 and 3 with the temperature chamber set to the lowest
    temperature.
 6. The test chamber was allowed to stabilize at +20 degree C for a minimum of 30
    minutes. The supply voltage was then adjusted on the EUT from 85% to 115%
    and the frequency record.


4.6.4 DEVIATION FROM TEST STANDARD

 No deviation


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FCC ID: K7S-F6D3050




4.6.5 TEST SETUP

                             Temperature


        Spectrum Analyzer




                       DC Power Supply




 4.6.6 EUT OPERATING CONDITION
The software provided by client to enable the EUT under transmission condition
continuously at specific channel frequencies individually.




Report No.: RF931207L04                    65                   Report Format Version 2.0.2


Foo in: K7S—Fepaoso                                                                    L[);‘



467    TEST RESULTS

       Operating frequency: S320MHz                              Limit : £0.015%
Temp| COWeT              2 minute                  5 minute                   10 minute
       supply
 CC)    (Vae)        (MH)           C         (Mitz)          C           (Mitz)         C
         12          sorosso!    .oovosserl    sceoortol    oconzosel     soanoosel      o.ccores2
  50     1e          scamortd     oooorisal   sorooroo)      ocomroedl|   somnoosel      occores2
         1e          ssznortd     oooorisal   sorootool       ocomr       seanoonsl      occorre
         12          sormosrel   oovorese)    sornssre!    .ocomrarel      setmosrel   «o ocoreee
  89     wo          somosral    oncosooel    sormssre!    .oooorero!     sornssrel    .oco0reu2
         1e          sormosrel   oovorese)    sormosrel    ooomrearl       sermaseol   «o ocorens
         12          sormosme!   .oovorreel   sormosnel    .ooo0ree0l     serossol     «o ocorens
  30     io          somossel    oocorresl    sormoseal    .oooomesr|      sormssno!   o courens
         1e          sormosnel   oovorezo!    sornosnel    .ooouree0l     serossol     «o ocorens
         12          sormseos)   .oovoreoe!    sornseogl   .ocopmentl     sernsoo!     ~oocorsto
  2      ie          somosool    oocoreil     sormseom     oocomenl       sornseosl    .o co0minl
         1e          sormmsoml   oosomenl     sornseoo!    .ocomrsral      sornsool    «o ocoren
         12          sormseso    oosoesrol    sormsessl    ooomsserl       surmssse!   «oosossso
  10     1e          sormmesml   oosmsinl     sornmess!    oooosice)      sormsssel    «oosossed
         1e          sommmosml   oosmsinl     sormessl     ooomsserl      sormssso!    «osossso
         12          sormseoo!   .ooooorse!    sornseoo!   .ocomarsal      serarsel    «o ocoure
  o      10          sormorel    .oo0naro7|   sornseoo!    .ocomarsal      semareel    «o ocosess
         1e          sormseoo!   .oooeorsel    sormseoo!   .ocomarsal      serareel    «o ocosess
         12|         sormsoeal   ooocrztel     sornseno!   oco0zsel       seronrel     «o ocorssn
  40     i           sormeme!    ooomnesl     soomrel      «oooopeoul     sotmneral    .oo00zase)
         1e          sormseeo!   .oo00asel    sornserel    .oconzarl       serssrel    «o ocorssn
         i2          sormsors    ooonsrol     sorosore!    .ocosral       sermsmtel    «oocorsro
  20     im          sorsore     ocomer       somsmte!     ocorsro!       sorosors!    .ooonsro
         ie          sorssors    ooonsrol     sorosore!    .ocomsral      sermsmtel    «oocorsro
         12          sorsonel    .ooonorsol    sornsonel   .oconousel     serasenl     .o oco0tso
  4      im          sorseosl    ooo0onso!    sormsnsel    «ooconenel      sotonone!   .o oocoree)
         1e          sormmonnl   oooossel     sormseosl    .oco0orso|     sotmsnsel    «o oco0@29




Resorno: resstzons                            se                            Rasor romatVerien 202


FCC ID: K7S-F6D3050



4.7     BAND EDGES MEASUREMENT

4.7.1 TEST INSTRUMENTS

 Description & Manufacturer            Model No.         Serial No.        Calibrated Until

    SPECTRUM ANALYZER                   FSEK30             100049            Aug. 12, 2005

NOTE: The calibration interval of the above test instruments is 12 months and the calibrations are
traceable to NML/ROC and NIST/USA.



4.7.2 TEST PROCEDURE

The transmitter output was connected to the spectrum analyzer via a low lose cable.
Set both RBW and VBW of spectrum analyzer to 1MHz with suitable frequency
span including 100 MHz bandwidth from band edge. The band edges was
measured and recorded.



4.7.3 EUT OPERATING CONDITION

The software provided by client to enable the EUT under transmission condition
continuously at specific channel frequencies individually.


4.7.4 TEST RESULTS

For signals in the restricted bands above and below the 5.15 to 5.35GHz allocated
band a measurement was made of the amplitude of the spurious emissions with
respect to the intentional signals. The relative amplitude, in dBc, was applied to the
average and peak filed strength of the intentional signal made on the OATS to
calculate the field strength of the unintentional signals.


The spectrum plots (Peak RBW=VBW=1MHz; Average RBW=1MHz, VBW=10Hz)
are attached on the following pages.




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FCC ID: K7S-F6D3050



802.11a OFDM modulation
Channel 1 (5180MHz)
The band edge emission plot on the page 70 shows 36.99dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 1 is 110.62dBuV/m (Peak), so the maximum field strength in
restrict band is 110.62-36.99=73.63dBuV/m which is under 74dBuV/m limit.

The band edge emission plot on the page 70 shows 47.65Bc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 1 is 101.24dBuV/m (Average), so the maximum field strength in
restrict band is 101.24-47.65=53.59dBuV/ m which is under 54dBuV/m limit.

Channel 8 (5320MHz)
The band edge emission plot on the page 71 shows 41.71dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 8 is 109.76BuV/m (Peak), so the maximum field strength in restrict
band is 109.76-41.71=68.05dBuV/m which is under 74dBuV/m limit.

Channel 8 (5320MHz)
The band edge emission plot on the page 72 shows 51.16dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 8 is 99.68BuV/m (Average), so the maximum field strength in
restrict band is 99.68-51.16=48.52dBuV/m which is under 54dBuV/m limit.




Report No.: RF931207L04                       68                         Report Format Version 2.0.2


FCC ID: K7S-F6D3050



802.11a Turbo OFDM modulation
Channel 1 (5210MHz)
The band edge emission plot on the page 73 shows 42.81dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 1 is 103.69dBuV/m (Peak), so the maximum field strength in
restrict band is 103.69-42.81=60.88dBuV/m which is under 74dBuV/m limit.


Channel 1 (5210MHz)
The band edge emission plot on the page 73 shows 50.94dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 1 is 94.50dBuV/m (Average), so the maximum field strength in
restrict band is 94.50-50.94=43.56dBuV/ m which is under 54dBuV/m limit.



Channel 3 (5290MHz)
The band edge emission plot on the page 74 shows 42.30dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 3 is 106.85dBuV/m (Peak), so the maximum field strength in
restrict band is 106.85-42.30=64.55dBuV/m which is under 74dBuV/m limit.

Channel 3 (5290MHz)
The band edge emission plot on the page 75 shows 51.16dBc between carrier maximum
power and local maximum emission in restrict band. The emission of carrier strength list in
the test result of channel 3 is 97.25dBuV/m (Average), so the maximum field strength in
restrict band is 97.25-51.16=46.09dBuV/m which is under 54dBuV/m limit.




Report No.: RF931207L04                       69                         Report Format Version 2.0.2


FCC ID: K7S-F6D3050




802.11a OFDM modulation




Report No.: RF931207L04   70   Report Format Version 2.0.2


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FCC ID: K7S-F6D3050


802.11a Turbo OFDM modulation




Report No.: RF931207L04         73   Report Format Version 2.0.2


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FCC ID: K7S-F6D3050



4.8     ANTENNA REQUIREMENT

4.8.1 STANDARD APPLICABLE
For intentional device, according to FCC 47 CFR Section 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.
And according to FCC 47 CFR Section 15.407(a), if transmitting antennas of
directional gain greater than 6dBi are used, the power shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6dBi.


4.8.2 ANTENNA CONNECTED CONSTRUCTION

The antenna used in this product is Printed antenna without antenna connector. The
maximum Gain of the antenna is 2.9dBi.




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FCC ID: K7S-F6D3050


5. PHOTOGRAPHS OF THE TEST CONFIGURATION
                          CONDUCTED EMISSION TEST
                                Test Mode 1




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                          Test Mode 2




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                          RADIATED EMISSION TEST
                                Test Mode 1




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FCC ID: K7S-F6D3050


                          Test Mode 2




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 6. INFORMATION ON THE TESTING LABORATORIES

We, ADT Corp., were founded in 1988 to provide our best service in EMC, Radio,
Telecom and Safety consultation. Our laboratories are accredited and approved
by the following approval agencies according to ISO/IEC 17025:

   USA                    FCC, NVLAP, UL, A2LA
   Germany                TUV Rheinland
   Japan                  VCCI
   Norway                 NEMKO
   Canada                 INDUSTRY CANADA , CSA
   R.O.C.                 CNLA, BSMI, DGT
   Netherlands            Telefication
   Singapore              PSB , GOST-ASIA(MOU)
   Russia                 CERTIS(MOU)

Copies of accreditation certificates of our laboratories obtained from approval
agencies can be downloaded from our web site:
www.adt.com.tw/index.5/phtml. If you have any comments, please feel free to
contact us at the following:

   Linko EMC/RF Lab:                           Hsin Chu EMC/RF Lab:
   Tel: 886-2-26052180                         Tel: 886-3-5935343
   Fax: 886-2-26052943                         Fax: 886-3-5935342

   Hwa Ya EMC/RF/Safety Telecom Lab:           Linko RF Lab.
   Tel: 886-3-3183232                          Tel: 886-3-3270910
   Fax: 886-3-3185050                          Fax: 886-3-3270892

   Web Site: www.adt.com.tw


The address and road map of all our labs can be found in our web site also




Report No.: RF931207L04                   81                        Report Format Version 2.0.2



Document Created: 2005-02-05 01:04:27
Document Modified: 2005-02-05 01:04:27

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