DFS Test Report

FCC ID: PD9633ANH

Test Report

Download: PDF
FCCID_1151508

                                                       TEST REPORT

                                            Covering the
                                 DYNAMIC FREQUENCY SELECTION (DFS)
                                           REQUIREMENTS
                                                OF

                                            FCC Part 15 Subpart E (UNII)

                                                      Intel Corporation
                                                     Model: 633ANHMW

                                             COMPANY:             Intel Corporation
                                                                  2111 N.E. 25th Avenue
                                                                  Hillsborough, OR. 97124

                                             TEST SITE:           Elliott Laboratories
                                                                  684 W. Maude Ave
                                                                  Sunnyvale, CA 94085

                                       REPORT DATE:               July 31, 2009

                                  FINAL TEST DATE:                July 31, 2009

                                    TEST ENGINEER:                Riaz Momand


                     AUTHORIZED SIGNATORY:                        ______________________________
                                                                  Mark E. Hill
                                                                  Staff Engineer




                                                      Testing Cert #2016-01
Elliott Laboratories is accredited by the A2LA, certificate number 2016-01, to perform the test(s) listed in this report. This report
shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories


File: R76342                                                                                                Page 1 of 23


Elliott Laboratories -- EMC Department                                               Test Report
                                                                      Report Date: July 31, 2009




                                         REVISION HISTORY
  Revision #                Date                      Comments                Modified By
                        August 4, 2009              Initial Release




File: R76342                                                                        Page 2 of 23


Elliott Laboratories -- EMC Department                                                                                                               Test Report
                                                                                                                                      Report Date: July 31, 2009



                                                                TABLE OF CONTENTS
COVER PAGE.............................................................................................................................................................1
REVISION HISTORY................................................................................................................................................2
TABLE OF CONTENTS ............................................................................................................................................3
LIST OF TABLES.......................................................................................................................................................4
LIST OF FIGURES.....................................................................................................................................................4
SCOPE..........................................................................................................................................................................5
OBJECTIVE ................................................................................................................................................................5
STATEMENT OF COMPLIANCE...........................................................................................................................5
DEVIATIONS FROM THE STANDARD ................................................................................................................5
EQUIPMENT UNDER TEST (EUT) DETAILS......................................................................................................6
  GENERAL................................................................................................................................................................6
  ENCLOSURE...........................................................................................................................................................6
  MODIFICATIONS...................................................................................................................................................6
  SUPPORT EQUIPMENT.........................................................................................................................................7
  EUT OPERATION ...................................................................................................................................................7
RADAR WAVEFORMS.............................................................................................................................................8
TEST RESULTS..........................................................................................................................................................8
  TEST RESULTS SUMMARY – FCC PART 15, CLIENT DEVICE .......................................................................8
  MEASUREMENT UNCERTAINTIES....................................................................................................................8
DFS TEST METHODS ...............................................................................................................................................9
  RADIATED TEST METHOD .................................................................................................................................9
DFS MEASUREMENT INSTRUMENTATION....................................................................................................11
  RADAR GENERATION SYSTEM .......................................................................................................................11
  CHANNEL MONITORING SYSTEM ..................................................................................................................12
DFS MEASUREMENT METHODS .......................................................................................................................13
  DFS – CHANNEL CLOSING TRANSMISSION TIME AND CHANNEL MOVE TIME ..................................13
  DFS – CHANNEL NON-OCCUPANCY AND VERIFICATION OF PASSIVE SCANNING............................13
  DFS CHANNEL AVAILABILITY CHECK TIME...............................................................................................13
  TRANSMIT POWER CONTROL (TPC) ..............................................................................................................13
SAMPLE CALCULATIONS ...................................................................................................................................14
  DETECTION PROBABILITY / SUCCESS RATE ...............................................................................................14
  THRESHOLD LEVEL ...........................................................................................................................................14
APPENDIX A TEST EQUIPMENT CALIBRATION DATA ..............................................................................15
APPENDIX B TEST DATA TABLES AND PLOTS FOR CHANNEL CLOSING ...........................................16
  FCC PART 15 SUBPART E CHANNEL CLOSING MEASUREMENTS .................................................................16
APPENDIX C ANTENNA SPECIFICATION SHEET.........................................................................................21
APPENDIX D TEST CONFIGURATION PHOTOGRAPHS..............................................................................23




File: R76342                                                                                                                                                Page 3 of 23


Elliott Laboratories -- EMC Department                                                                                                        Test Report
                                                                                                                               Report Date: July 31, 2009



                                                                  LIST OF TABLES
Table 1 FCC Short Pulse Radar Test Waveforms......................................................................................... 8
Table 2 FCC Part 15 Subpart E Client Device Test Result Summary .......................................................... 8
Table 3 FCC Part 15 Subpart E Channel Closing Test Results .................................................................. 16


                                                                  LIST OF FIGURES
Figure 1 Test Configuration for radiated Measurement Method .................................................................. 9
Figure 2 Close-Up of Transmissions Occurring More Than 200ms After The End of Radar (20MHz BW)
.................................................................................................................................................................... 16
Figure 3 Channel Closing Time and Channel Move Time – 40 second plot (20MHz BW)....................... 17
Figure 4 Close-Up of Transmissions Occurring More Than 200ms After The End of Radar (40MHz BW)
.................................................................................................................................................................... 18
Figure 5 Channel Closing Time and Channel Move Time – 40 second plot (40MHz BW)....................... 19
Figure 6 Radar Channel Non-Occupancy Plot............................................................................................ 20
Figure 7 Confirmation of Passive Scanning For Client Devices (Non-associated Test) ............................ 20




File: R76342                                                                                                                                         Page 4 of 23


Elliott Laboratories -- EMC Department                                                   Test Report
                                                                          Report Date: July 31, 2009

SCOPE
        The Federal Communications Commission published standards regarding
        ElectroMagnetic Compatibility and Radio spectrum Matters for radio-communications
        devices. Tests have been performed on the Intel Corporation model 633ANHMW in
        accordance with these standards.

        Test data has been taken pursuant to the relevant DFS requirements of the following
        standard:

               •   FCC Part 15 Subpart E Unlicensed National Information Infrastructure (U-NII)
                   Devices
        Tests were performed in accordance with these standards together with the current
        published versions of the basic standards referenced therein as outlined in Elliott
        Laboratories test procedures.

        The test results recorded herein are based on a single type test of the Intel Corporation
        model 633ANHMW and therefore apply only to the tested sample. The sample was
        selected and prepared by Steven Hackett of Intel Corporation.


OBJECTIVE
        The objective of the manufacturer is to comply with the standards identified in the
        previous section. In order to demonstrate compliance, the manufacturer or a contracted
        laboratory makes measurements and takes the necessary steps to ensure that the
        equipment complies with the appropriate technical standards. Compliance with some
        DFS features is covered through a manufacturer statement or through observation of the
        device.


STATEMENT OF COMPLIANCE
        The tested sample of Intel Corporation model 633ANHMW complied with the DFS
        requirements of:

                   FCC Part 15.407(h)(2)

        Maintenance of compliance is the responsibility of the manufacturer. Any modifications
        to the product should be assessed to determine their potential impact on the compliance
        status of the device with respect to the standards detailed in this test report.


DEVIATIONS FROM THE STANDARD
        No deviations were made from the test methods and requirements covered by the scope
        of this report.




File: R76342                                                                            Page 5 of 23


Elliott Laboratories -- EMC Department                                                   Test Report
                                                                          Report Date: July 31, 2009

EQUIPMENT UNDER TEST (EUT) DETAILS
GENERAL
        The Intel Corporation model 633ANHMW is a 3x3 802.11abgn Half-Mini card designed
        for use in laptop or other similar host systems. Testing for the digital device emissions
        was performed with the card installed outside a host laptop with antenna connections.
        The electrical rating of the EUT is 3.3Vdc (via PCI bus).

        The sample was received on July 30, 2009 and tested on July 31, 2009. The EUT
        consisted of the following component(s):

            Manufacturer           Model           Description             MAC Address
          Intel Corporation     633ANHMW 802.11a/b/g/ draft N rev 3 board 0015005A18FC

        The manufacturer declared values for the EUT operational characteristics that affect DFS
        are as follows:

                Operating Modes (5250 – 5350 MHz, 5470 – 5725 MHz)
                                 Client Device (no In Service Monitoring, no Ad-Hoc mode)


                Antenna Gains / EIRP (5250 – 5350 MHz, 5470 – 5725 MHz)
                                                          5250 – 5350 MHz 5470 – 5725 MHz
                          Lowest Antenna Gain (dBi)             2.57            4.77
                          Highest Antenna Gain (dBi)            3.73            4.43
                          Output Power (dBm)                    16.5            16.5

                Channel Protocol
                                 IP Based


ENCLOSURE
        The EUT has no enclosure. It is designed to be installed within the enclosure of a host
        computer.

MODIFICATIONS
        The EUT did not require modifications during testing in order to comply with the
        requirements of the standard referenced in this test report.




File: R76342                                                                            Page 6 of 23


Elliott Laboratories -- EMC Department                                                  Test Report
                                                                         Report Date: July 31, 2009

SUPPORT EQUIPMENT
        The following equipment was used as local support equipment for testing:

        Manufacturer         Model              Description        Serial Number      FCC ID
          Toshiba     PSAG8U-04001W          Laptop PC (Host)       49290792Q          DoC
                       Aironet 1250AG
       Cisco Systems                           Access Point       FTX1209906V LDK102061
                             Series
           Dell          Vostro 1710         Laptop Computer         Prototype          DoC
       The italicized device was the master device.

EUT OPERATION
        The EUT was operating with the following software. The software is secured by binary
        encryption to prevent the user from disabling the DFS function.

                Client Device: 13.0.0.72

        During the channel moving tests the system was configured with a streaming video file
        from the master device (sourced by the PC connected to the master device via an Ethernet
        interface) to the client device.

        The streamed file was the “FCC” test file and the client device was using Windows
        Media Player Classic as required by FCC Part 15 Subpart E




File: R76342                                                                           Page 7 of 23


Elliott Laboratories -- EMC Department                                                              Test Report
                                                                                     Report Date: July 31, 2009

RADAR WAVEFORMS

                               Table 1 FCC Short Pulse Radar Test Waveforms
                 Pulse Width          PRI                         Minimum Detection       Minimum Number
 Radar Type                                     Pulses / burst
                    (µsec)           (µsec)                           Percentage              of Trials
       1              1               1428            18                 N/A                    N/A

Note, Radar Type 1 was used to evaluate the channel closing and move time requirements.


TEST RESULTS
TEST RESULTS SUMMARY – FCC Part 15, CLIENT DEVICE

                     Table 2 FCC Part 15 Subpart E Client Device Test Result Summary
                             Radar         Radar      Measured
       Description                                                  Requirement       Test Data       Status
                             Type        Frequency     Value
 Channel closing
                            Type 1       5280 (n40)     0.92ms         260ms         Appendix B Complies
 transmission time
 Channel move time          Type 1       5280 (n40)     0.453s           10s         Appendix B Complies
 Channel closing
                            Type 1       5500 (n20)     0.96ms         260ms         Appendix B Complies
 transmission time
 Channel move time          Type 1       5500 (n20)     0.419s           10s         Appendix B Complies
 Non-occupancy period
                            Type 1       5320 (n40)    >30min       > 30 minutes     Appendix B Complies
 Associated Test
 Non-occupancy period
                            Type 1       5560 (n40)    >30min       > 30 minutes     Appendix B Complies
 Non-associated Test
        Notes:
        1) Tests were performed using the radiated test method.
        2) Channel availability check, detection threshold and non-occupancy period are not applicable to client
           devices.


MEASUREMENT UNCERTAINTIES
        ISO/IEC 17025 requires that an estimate of the measurement uncertainties associated
        with the emissions test results be included in the report. The measurement uncertainties
        given below are based on a 95% confidence level, with a coverage factor (k=2) and were
        calculated in accordance with UKAS document LAB 34.

                  Measurement                    Measurement Unit        Expanded Uncertainty
        Timing
                                                                          Timing resolution +/-
        (Channel move time, aggregate                      ms
                                                                                0.24%
        transmission time)
        Timing
                                                      seconds                   5 seconds
        (non occupancy period)
        DFS Threshold (radiated)                        dBm                        1.6
        DFS Threshold (conducted)                       dBm                        1.2




File: R76342                                                                                       Page 8 of 23


Elliott Laboratories -- EMC Department                                                       Test Report
                                                                              Report Date: July 31, 2009

DFS TEST METHODS
RADIATED TEST METHOD
        The combination of master and slave devices is located in an anechoic chamber. The
        simulated radar waveform is transmitted from a directional horn antenna (typically an
        EMCO 3115) toward the unit performing the radar detection (radar detection device,
        RDD). Every effort is made to ensure that the main beam of the EUT’s antenna is
        aligned with the radar-generating antenna.

                                              Anechoic Chamber
               Master Device




                                                                                  Radar
                                                    ~3m                         Antenna


                       Monitoring
                        Antenna




                               Traffic Monitoring                       Radar Generation
                                     System                                 System




                      Figure 1 Test Configuration for radiated Measurement Method




File: R76342                                                                                Page 9 of 23


Elliott Laboratories -- EMC Department                                                    Test Report
                                                                           Report Date: July 31, 2009
        The signal level of the simulated waveform is set to a reference level equal to the
        threshold level (plus 1dB if testing against FCC requirements). Lower levels may also be
        applied on request of the manufacturer. The level reported is the level at the RDD
        antenna and so it is not corrected for the RDD’s antenna gain. The RDD is configured
        with the lowest gain antenna assembly intended for use with the device.

        The signal level is verified by measuring the CW signal level from the radar generation
        system using a reference antenna of gain G (dBi). The radar signal level is calculated
        from the measured level, R (dBm), and any cable loss, L (dB), between the reference
        antenna and the measuring instrument:

                Applied level (dBm) = R – GREF + L

        If both master and client devices have radar detection capability then the device not under
        test is positioned with absorbing material between its antenna and the radar generating
        antenna, and the radar level at the non RDD is verified to be at least 20dB below the
        threshold level to ensure that any responses are due to the RDD detecting radar.

        The antenna connected to the channel monitoring subsystem is positioned to allow both
        master and client transmissions to be observed, with the level of the EUT’s transmissions
        between 6 and 10dB higher than those from the other device.




File: R76342                                                                           Page 10 of 23


Elliott Laboratories -- EMC Department                                                     Test Report
                                                                            Report Date: July 31, 2009

DFS MEASUREMENT INSTRUMENTATION
RADAR GENERATION SYSTEM
        An Agilent PSG is used as the radar-generating source. The integral arbitrary waveform
        generators are programmed using Agilent’s “Pulse Building” software and Elliott custom
        software to produce the required waveforms, with the capability to produce both un-
        modulated and modulated (FM Chirp) pulses. Where there are multiple values for a
        specific radar parameter then the software selects a value at random and, for FCC tests,
        the software verifies that the resulting waveform is truly unique.

        With the exception of the hopping waveforms required by the FCC’s rules (see below),
        the radar generator is set to a single frequency within the radar detection bandwidth of
        the EUT. The frequency is varied from trial to trial by stepping in 5MHz steps.

        Frequency hopping radar waveforms are simulated using a time domain model. A
        randomly hopping sequence algorithm (which uses each channel in the hopping radar’s
        range once in a hopping sequence) generates a hop sequence. A segment of the first 100
        elements of the hop sequence are then examined to determine if it contains one or more
        frequencies within the radar detection bandwidth of the EUT. If it does not then the first
        element of the segment is discarded and the next frequency in the sequence is added. The
        process repeats until a valid segment is produced. The radar system is then programmed
        to produce bursts at time slots coincident with the frequencies within the segment that fall
        in the detection bandwidth. The frequency of the generator is stepped in 1 MHz
        increments across the EUT’s detection range.

        The radar signal level is verified during testing using a CW signal with the AGC function
        switched on. Correction factors to account for the fact that pulses are generated with the
        AGC functions switched off are measured annually and an offset is used to account for
        this in the software.

        The generator output is connected to the coupling port of the conducted set-up or to the
        radar-generating antenna.




File: R76342                                                                            Page 11 of 23


Elliott Laboratories -- EMC Department                                                    Test Report
                                                                           Report Date: July 31, 2009

CHANNEL MONITORING SYSTEM
        Channel monitoring is achieved using a spectrum analyzer and digital storage
        oscilloscope. The analyzer is configured in a zero-span mode, center frequency set to the
        radar waveform’s frequency or the center frequency of the EUT’s operating channel.
        The IF output of the analyzer is connected to one input of the oscilloscope.

        A signal generator output is set to send either the modulating signal directly or a pulse
        gate with an output pulse co-incident with each radar pulse. This output is connected to a
        second input on the oscilloscope and the oscilloscope displays both the channel traffic
        (via the if input) and the radar pulses on its display.

        For in service monitoring tests the analyzer sweep time is set to > 20 seconds and the
        oscilloscope is configured with a data record length of 10 seconds for the short duration
        and frequency hopping waveforms, 20 seconds for the long duration waveforms. Both
        instruments are set for a single acquisition sequence. The analyzer is triggered 500ms
        before the start of the waveform and the oscilloscope is triggered directly by the
        modulating pulse train. Timing measurements for aggregate channel transmission time
        and channel move time are made from the oscilloscope data, with the end of the
        waveform clearly identified by the pulse train on one trace. The analyzer trace data is
        used to confirm that the last transmission occurred within the 10-second record of the
        oscilloscope. If necessary the record length of the oscilloscope is expanded to capture
        the last transmission on the channel prior to the channel move.

        Channel availability check time timing plots are made using the analyzer. The analyzer
        is triggered at start of the EUT’s channel availability check and used to verify that the
        EUT does not transmit when radar is applied during the check time.

        The analyzer detector and oscilloscope sampling mode is set to peak detect for all plots.




File: R76342                                                                           Page 12 of 23


Elliott Laboratories -- EMC Department                                                     Test Report
                                                                            Report Date: July 31, 2009

DFS MEASUREMENT METHODS
DFS – CHANNEL CLOSING TRANSMISSION TIME AND CHANNEL MOVE TIME
        Channel clearing and closing times are measured by applying a burst of radar with the
        device configured to change channel and by observing the channel for transmissions.
        The time between the end of the applied radar waveform and the final transmission on the
        channel is the channel move time.

        The aggregate transmission closing time is measured in one of two ways:

                FCC – the total time of all individual transmissions from the EUT that are
                observed starting 200ms at the end of the last radar pulse in the waveform. This
                value is required to be less than 60ms.

DFS – CHANNEL NON-OCCUPANCY AND VERIFICATION OF PASSIVE SCANNING
        The channel that was in use prior to radar detection by the master is additionally
        monitored for 30 minutes to ensure no transmissions on the vacated channel over the
        required non-occupancy period. This is achieved by tuning the spectrum analyzer to the
        vacated channel in zero-span mode and connecting the IF output to an oscilloscope. The
        oscilloscope is triggered by the radar pulse and set to provide a single sweep (in peak
        detect mode) that lasts for at least 30 minutes after the end of the channel move time.

        For devices with a client-mode that are being evaluated against FCC rules the
        manufacturer must supply an attestation letter stating that the client device does not
        employ any active scanning techniques (i.e. does not transmit in the DFS bands without
        authorization from a Master device).

DFS CHANNEL AVAILABILITY CHECK TIME
        It is preferred that the EUT report when it starts the radar channel availability check. If
        the EUT does not report the start of the check time, then the time to start transmitting on
        a channel after switching the device on is measured to approximate the time from power-
        on to the end of the channel availability check. The start of the channel availability
        check is assumed to be 60 seconds prior to the first transmission on the channel.

        To evaluate the channel availability check, a single burst of one radar type is applied
        within the first 2 seconds of the start of the channel availability check and it is verified
        that the device does not use the channel by continuing to monitor the channel for a period
        of at least 60 seconds. The test is repeated by applying a burst of radar in the last 2
        seconds (i.e. between 58 and 60 seconds after the start of CAC when evaluating a 60-
        second CAC) of the channel availability check.

TRANSMIT POWER CONTROL (TPC)
        Compliance with the transmit power control requirements for devices is demonstrated
        through measurements showing multiple power levels and manufacturer statements
        explaining how the power control is implemented.



File: R76342                                                                            Page 13 of 23


Elliott Laboratories -- EMC Department                                                     Test Report
                                                                            Report Date: July 31, 2009

SAMPLE CALCULATIONS
DETECTION PROBABILITY / SUCCESS RATE
        The detection probability, or success rate, for any one radar waveform equals the number
        of successful trials divided by the total number of trials for that waveform.

THRESHOLD LEVEL
        The threshold level is the level of the simulated radar waveform at the EUT’s antenna. If
        the test is performed in a conducted fashion then the level at the rf input equals the level
        at the antenna plus the gain of the antenna assembly, in dBi. The gain of the antenna
        assembly equals the gain of the antenna minus the loss of the cabling between the rf input
        and the antenna. The lowest gain value for all antenna assemblies intended for use with
        the device is used when making this calculation.

        If the test is performed using the radiated method then the threshold level is the level at
        the antenna.




File: R76342                                                                            Page 14 of 23


Elliott Laboratories -- EMC Department                                                    Test Report
                                                                           Report Date: July 31, 2009




                              Appendix A Test Equipment Calibration Data

 Manufacturer            Description                   Model #       Asset #          Cal Due
 Hewlett Packard         Spectrum Analyzer             8595EM         1141          29-Dec-09
 Tektronix               Digital Oscilloscope          TDS 5052B      2118       Verify before use
 Agilent Technologies    PSG Vector Signal Generator   E8267C         1877          15-Feb-10
 EMCO                    1-18GHz Horn Antenna          3115           1561          10-Jun-10
 ETS Lindgren            1-18GHz Horn Antenna          3117           1662          11-Apr-10




File: R76342                                                                           Page 15 of 23


Elliott Laboratories -- EMC Department                                                               Test Report
                                                                                      Report Date: July 31, 2009

                      Appendix B Test Data Tables and Plots for Channel Closing
FCC PART 15 SUBPART E Channel Closing Measurements

                        Table 3 FCC Part 15 Subpart E Channel Closing Test Results
                                           Channel Closing                Channel Move
    Waveform Type                        Transmission Time 1                   Time                  Result
                                         Measured      Limit          Measured      Limit
    Radar Type 1, 20MHz BW                0.96         60 ms           0.419 s      10 s           Complied
    Radar Type 1, 40MHz BW                0.92         60 ms           0.453 s      10 s           Complied

After the final channel closing test the channel was monitored for a further 30 minutes. No
transmissions occurred on the channel.




    Figure 2 Close-Up of Transmissions Occurring More Than 200ms After The End of Radar (20MHz BW)


Short duration signals occurring after the first 200ms immediately following the radar burst, with
a total transmission time of 0.96ms.




1
 Channel closing time for FCC measurements is the aggregate transmission time starting from 200ms after the end
of the radar signal to the completion of the channel move.
File: R76342                                                                                       Page 16 of 23


Elliott Laboratories -- EMC Department                                                    Test Report
                                                                           Report Date: July 31, 2009




          Figure 3 Channel Closing Time and Channel Move Time – 40 second plot (20MHz BW)




File: R76342                                                                           Page 17 of 23


Elliott Laboratories -- EMC Department                                                    Test Report
                                                                           Report Date: July 31, 2009




  Figure 4 Close-Up of Transmissions Occurring More Than 200ms After The End of Radar (40MHz BW)


Short duration signals occurring after the first 200ms immediately following the radar burst, with
a total transmission time of 0.92ms.




File: R76342                                                                           Page 18 of 23


Elliott Laboratories -- EMC Department                                                    Test Report
                                                                           Report Date: July 31, 2009




          Figure 5 Channel Closing Time and Channel Move Time – 40 second plot (40MHz BW)




File: R76342                                                                           Page 19 of 23


Elliott Laboratories -- EMC Department                                                             Test Report
                                                                                    Report Date: July 31, 2009




                                 Figure 6 Radar Channel Non-Occupancy Plot
The non-occupancy plot was made over a 30-minute time period following the channel move
time with the analyzer IF output connected to the scope and tuned to the vacated channel. No
transmissions were observed after the channel move had been completed the channel move
completed at the red cursor).




               Figure 7 Confirmation of Passive Scanning For Client Devices (Non-associated Test)

The plot used to verify passive scanning in the non-associated non-occupancy test was made
over a 30-minute time period with the analyzer IF output connected to the scope and tuned to the
previously occupied channel to confirm that there were no transmissions from the Client device
with the Master device powered off. No transmissions were observed.

File: R76342                                                                                    Page 20 of 23


  Location. RF Chamber       Date: 2007330                   Tins 110236
 Temperatuer ( );— 2200     Humidty (9). os.00               Approved by
Total View
                                         Frequency (WHz)
                                         525000
                                         TRP (Bm)               Peak ERP (Gm)
                                         22                     257
                                         Eficincy (%)           Max. Power (@Bi)
                                         60 1                   257
                                         NHPRP +/ 45 (dBi)      Min. Pover (4Bm)
                                         290                    4524
                                         NHPRP +/ 50 (dBi)      Avs. Power (GBi)
                                         42                     25
                                         Diectviy (48)          Max. / Min. Ratio (€)
                                         470                     1761
                                         Gann 5)                Max./ Arg. Ratio (€)
                                         257                    514
                                         Average Gain (48)      Min. rArg. Ratio (@B)
                                         22                     4267


  Locaton: RF Chamber        Date: 2007330                   Time: 102M
  Tempertuer ( );—   2>an   Humidty (%) oo n0                Anoroved by

Total View
                                         Frequency (WHz)
                                          sssnco
                                         TR® wem)               PeskER® (Gm)
                                          4ns                    ars
                                         Eftcincy (%)           Max. Pover (4Bm)
                                          rase                   ars
                                         NHPRP +/ 45 (dBm)      Min. Power (#Bm)
                                          Ar                     425
                                         NHPRP +/ 20 (dBm)      Ars Pover (GBm)
                                          aor                    as
                                         Diectviy (18)          Max. / Min. Rato (B)
                                          a7s                    15
                                         Gain (8)               Max. / Avg. Rato (B)
                                          ars                    sis
                                         Avetage Gain (42)      Min.{ Arg. Ratio (42)
                                          4ns                    or3


  Location: RF Chamber     Ome:. omraan                    Time: th:
 Temporatuer ( ): 22.00   Humidty (%): os.a0               Approved by
Total View
                                       Frequency (WHz)
                                        sisn oo
                                       TR® wem)               Pesk ERP (JBm)
                                        se                     ar
                                       Eftcincy (%)           Max. Power (Bm)
                                        es se                  ar
                                       NHPRP +/ 45 (dom)      Min. Pover (4B)
                                        43                     o7
                                       NHPRP +/ 20 (dom)      Avs Power (G)
                                        2s0                    aor
                                       Diectviy (18)          Mas. / Min. Rato (8)
                                        s                      ze
                                       Gain (8)               Max / A, Rato (8)
                                        ar                     se
                                       Avetage Gain (42)      Min. / Avg. Rato (B)
                                        se                     en

  Locaton: RF Chamber      Date: 2007330                   Time: 1
 Temporatuer ( ): 22.00   Humidty (%): os.a0               Approved by
Total View
                                       trequency (iz)
                                        srenco
                                       TR® wem)               Pesk ERP (JBm)
                                        106                    aas
                                       Eftcincy (%)           Max. Power (Bm)
                                        7ean                   aas
                                       NHPRP +/ 45 (dom)      Min. Pover (4B)
                                        48e                    1002
                                       NHPRP +/ 20 (dom)      Avs Power (G)
                                        315                    a2
                                       Diectviy (18)          Mas. / Min. Rato (8)
                                        sa0                    1eas
                                       Gain @29               Max. / As, Ratl (2)
                                        a4s                    se«
                                       Avetage Gain (42)      Min. / Avg. Rato (B)
                                        106                    «s1


Elliott Laboratories -- EMC Department                                                   Test Report
                                                                          Report Date: July 31, 2009

                              Appendix D Test Configuration Photographs




File: R76342                                                                          Page 23 of 23



Document Created: 2009-08-04 12:15:33
Document Modified: 2009-08-04 12:15:33

© 2025 FCC.report
This site is not affiliated with or endorsed by the FCC