Test Report (DFS).pdf

FCC ID: H9PMC18N0

Test Report

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FCCID_2353698

                                         DFS TEST REPORT

                                    REPORT NO.: RF140609E04-3
                                      MODEL NO.: MC18N0
                                                FCC ID: H9PMC18N0
                                        RECEIVED: June 09, 2014
                                             TESTED: June 24, 2014
                                              ISSUED: July 29, 2014



                         APPLICANT: Symbol Technologies, Inc.
                                                  One Motorola Plaza, Holtsville, NY
                            ADDRESS:
                                                  11742-1300, USA


                     ISSUED BY: Bureau Veritas Consumer Products Services
                                (H.K.) Ltd., Taoyuan Branch Hsin Chu Laboratory
                  LAB ADDRESS : No. 81-1, Lu Liao Keng, 9th Ling, Wu Lung Tsuen,
                                Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan,
                                R.O.C.




  This report should not be used by the client to claim
  product certification, approval, or endorsement by
  TAF or any government agencies.




This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark,
is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The
results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or
any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results
thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error
or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to
raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the
tests conducted and the correctness of the report contents. Unless specific mention, the uncertainty of measurement has been explicitly taken into
account to declare the compliance or non-compliance to the specification


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                                           Table of Contents
RELEASE CONTROL RECORD .......................................................................................... 3
1.      CERTIFICATION ...................................................................................................... 4
2.      EUT INFORMATION................................................................................................. 5
2.1     OPERATING FREQUENCY BANDS AND MODE OF EUT ..................................... 5
2.2     EUT SOFTWARE AND FIRMWARE VERSION ....................................................... 5
2.3     DESCRIPTION OF AVAILABLE ANTENNAS TO THE EUT ..................................... 5
2.4     EUT MAXIMUM CONDUCTED POWER.................................................................. 6
2.5     EUT MAXIMUM EIRP POWER ................................................................................ 6
2.6     TRANSMIT POWER CONTROL (TPC) .................................................................... 7
2.7     STATEMENT OF MAUNFACTURER ....................................................................... 7
3.      U-NII DFS RULE REQUIREMENTS ........................................................................ 8
3.1     WORKING MODES AND REQUIRED TEST ITEMS ............................................... 8
3.2     TEST LIMITS AND RADAR SIGNAL PARAMETERS .............................................. 9
4.      TEST & SUPPORT EQUIPMENT LIST .................................................................. 12
4.1     TEST INSTRUMENTS ........................................................................................... 12
4.2     DESCRIPTION OF SUPPORT UNITS ................................................................... 12
5.      TEST PROCEDURE .............................................................................................. 13
5.1     BVADT DFS MEASUREMENT SYSTEM: .............................................................. 13
5.2     CALIBRATION OF DFS DETECTION THRESHOLD LEVEL:................................ 14
5.3     DEVIATION FROM TEST STANDARD .................................................................. 15
5.4     CONDUCTED TEST SETUP CONFIGURATION ................................................... 15
5.4.1 CLIENT WITHOUT RADAR DETECTION MODE .................................................. 15
6.      TEST RESULTS ..................................................................................................... 16
6.1     SUMMARY OF TEST RESULTS ............................................................................ 16
6.2     DETAILED TEST RESULTS ................................................................................... 17
6.2.1 TEST MODE: DEVICE OPERATING IN CLIENT WITHOUT RADAR DETECTION
        MODE. .................................................................................................................... 17
6.2.1.1 DFS DETECTION THRESHOLD ........................................................................... 17
6.2.1.2 CHANNEL CLOSING TRANSMISSION AND CHANNEL MOVE TIME.................. 18
6.2.1.3 NON- OCCUPANCY PERIOD ................................................................................ 19
6.2.1.4 NON-ASSOCIATED TEST ..................................................................................... 21
6.2.1.5 NON- CO-CHANNEL TEST .................................................................................... 21
7.      INFORMATION ON THE TESTING LABORATORIES ........................................... 22
8.      APPENDIX-A .......................................................................................................... 23
9.      APPENDIX B - MODIFICATIONS RECORDERS FOR ENGINEERING CHANGES
        TO THE EUT BY THE LAB ..................................................................................... 25




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                            RELEASE CONTROL RECORD
 ISSUE NO.             REASON FOR CHANGE                      DATE ISSUED
 RF140609E04-3         Original release                       July 29, 2014




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1. CERTIFICATION

                PRODUCT: MC18 Personal Shopper — Barcode Scanner
         BRAND NAME : Symbo!
              MODEL NO.: MC18NO0
          TEST SAMPLE: MASS—PRODUCTION
              APPLICANT: Symbol Technologies, Inc.
                   TESTED: June 24, 2014
            STANDARDS: FCC Part 15, Subpart E (Section 15.407)
                             FCC 06—96




The above equipment (Model: MC18N0) has been tested by Bureau Veritas
Consumer Products Services (H.K.) Ltd., Taoyuan Branch, and was in
compliance with the requirement of the above standards. The test record, data
evaluation & Equipment Under Test (EUT) configurations represented herein are
true and accurate accounts of the measurements of the sample‘s EMC
characteristics under the conditions specified in this report.




  PREPARED BY :                 Dh e ons               Wtiziny     DATE:_ July 29, 2014
                            ( Phbenix Huang, Specialist )

 APPROVED BY =:_             _/                                  , DATE: July 29, 2014
                            3 ( Ma%fien, Manager )




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2. EUT INFORMATION

2.1 OPERATING FREQUENCY BANDS AND MODE OF EUT

             TABLE 1: OPERATING FREQUENCY BANDS AND MODE OF EUT
                                               OPERATING FREQUENCY RANGE
                                                                       5470~5725MHz
       OPERATIONAL MODE
                                           5250~5350MHz            (5600~5650MHz will be
                                                                          disable)
Client without radar detection and ad
                                                                               
            hoc function




2.2 EUT SOFTWARE AND FIRMWARE VERSION

                      TABLE 2: THE EUT SOFTWARE/FIRMWARE VERSION
                                                                 SOFTWARE/FIRMWARE
 PLATFORM NO.                PRODUCT           MODEL NO.
                                                                      VERSION
                       MC18 Personal Shopper -               OS Version : 07.00.2824
Windows CE        1                            MC18N0
                       Barcode Scanner                       Fusion Version:2.01.0.0.074R



2.3 DESCRIPTION OF AVAILABLE ANTENNAS TO THE EUT

                                   TABLE 3: ANTENNA LIST
                               Antenna           Frequency           Connecter         Cable
  Ant. No.    Antenna Type
                               Gain(dBi)     range(MHz to MHz)         Type            Length
                                 2.7            2412~2483.5
      1            PIFA                                                  NA              NA
                                  3              5150~5850




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2.4 EUT MAXIMUM CONDUCTED POWER
TABLE 4: THE MEASURED CONDUCTED OUTPUT POWER

IEEE 802.11a

                                    MAX. POWER
                 FREQUENCY
 Ant. No.
                 BAND (MHz)     OUTPUT         OUTPUT
                              POWER(dBm)     POWER(mW)
      1           5250~5350      17.91             61.802
      1           5470~5725      17.87             61.235


IEEE 802.11n HT20

                                     MAX. POWER
                 FREQUENCY
 Ant. No.
                 BAND (MHz)     OUTPUT          OUTPUT
                              POWER(dBm)      POWER(mW)
      1           5250~5350      17.81              60.395
      1           5470~5725      17.93              62.087




2.5   EUT MAXIMUM EIRP POWER
TABLE 5: THE EIRP OUTPUT POWER LIST

IEEE 802.11a

                                    MAX. POWER
                 FREQUENCY
 Ant. No.
                 BAND (MHz)     OUTPUT         OUTPUT
                              POWER(dBm)     POWER(mW)
      1           5250~5350      20.91             123.311
      1           5470~5725      20.87             122.180


IEEE 802.11n HT20

                                     MAX. POWER
                 FREQUENCY
 Ant. No.
                 BAND (MHz)     OUTPUT          OUTPUT
                              POWER(dBm)      POWER(mW)
      1           5250~5350      20.81             120.504
      1           5470~5725      20.93             123.880




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2.6 TRANSMIT POWER CONTROL (TPC)


U-NII devices operating in the 5.25-5.35 GHz band and the 5.47-5.725 GHz band shall
employ a TPC mechanism. The U-NII device is required to have the capability to operate
at least 6 dB below the mean EIRP value of 30 dBm. A TPC mechanism is not required for
systems with an EIRP of less than 500 mW.

Maximum EIRP of this device is 123.880mW which less than 500mW, therefore it’s not
require TPC function.



2.7 STATEMENT OF MAUNFACTURER

This device (Client) is without radar detection, then the manufacturer statement confirming
that information regarding the parameters of the detected Radar Waveforms is not
available to the end user. And the device doesn’t have Ad Hoc mode on DFS
frequency band.




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3. U-NII DFS RULE REQUIREMENTS

3.1 WORKING MODES AND REQUIRED TEST ITEMS
The manufacturer shall state whether the UUT is capable of operating as a Master and/or
a Client. If the UUT is capable of operating in more than one operating mode then each
operating mode shall be tested separately. See tables 6 and 7 for the applicability of DFS
requirements for each of the operational modes.


  TABLE 6: APPLICABILITY OF DFS REQUIREMENTS PRIOR TO USE A CHANNEL
                                                     OPERATIONAL MODE
           REQUIREMENT                               CLIENT WITHOUT         CLIENT WITH
                                      MASTER             RADAR                RADAR
                                                       DETECTION            DETECTION
       Non-Occupancy Period                                                       
      DFS Detection Threshold                         Not required                 
  Channel Availability Check Time                     Not required           Not required
          Uniform Spreading                           Not required           Not required
     U-NII Detection Bandwidth                        Not required                 


TABLE 7: APPLICABILITY OF DFS REQUIREMENTS DURING NORMAL OPERATION
                                                     OPERATIONAL MODE
           REQUIREMENT                               CLIENT WITHOUT         CLIENT WITH
                                      MASTER             RADAR                RADAR
                                                       DETECTION            DETECTION
      DFS Detection Threshold                         Not required                 
Channel Closing Transmission Time                                                 
         Channel Move Time                                                        
     U-NII Detection Bandwidth                        Not required                 




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3.2 TEST LIMITS AND RADAR SIGNAL PARAMETERS

DETECTION THRESHOLD VALUES


   TABLE 8: DFS DETECTION THRESHOLDS FOR MASTER DEVICES AND CLIENT
                     DEVICES WITH RADAR DETECTION

        MAXIMUM TRANSMIT POWER                             VALUE (SEE Note 1 and 2)

                   ≥ 200 milliwatt                                   -64 dBm
                   < 200 milliwatt                                   -62 dBm
Note 1: This is the level at the input of the receiver assuming a 0 dBi receive antenna.
Note 2: Throughout these test procedures an additional 1 dB has been added to the amplitude
of the test transmission waveforms to account for variations in measurement equipment. This
will ensure that the test signal is at or above the detection threshold level to trigger a DFS
response.




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                     TABLE 9: DFS RESPONSE REQUIREMENT VALUES

                   PARAMETER                                          VALUE

Non-occupancy period                             Minimum 30 minutes
Channel Availability Check Time                  60 seconds
Channel Move Time                                10 seconds
                                                 See Note 1.
Channel Closing Transmission Time                200 milliseconds + an aggregate of 60
                                                 milliseconds over remaining 10 second period.
                                                 See Notes 1 and 2.
U-NII Detection Bandwidth                        Minimum 80% of the UNII 99% transmission
                                                 power bandwidth.
                                                 See Note 3.
Note 1: The instant that the Channel Move Time and the Channel Closing Transmission Time
begins is as follows:
• For the Short Pulse Radar Test Signals this instant is the end of the Burst.
• For the Frequency Hopping radar Test Signal, this instant is the end of the last radar
Burst generated.
• For the Long Pulse Radar Test Signal this instant is the end of the 12 second period defining
the Radar Waveform.
Note 2: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at
the beginning of the Channel Move Time plus any additional intermittent control signals
required to facilitate a Channel move (an aggregate of 60 milliseconds) during the remainder of
the 10 second period. The aggregate duration of control signals will not count quiet periods in
between transmissions.
Note 3: During the U-NII Detection Bandwidth detection test, radar type 1 is used and for each
frequency step the minimum percentage of detection is 90 percent. Measurements are
performed with no data traffic.




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PARAMETERS OF DFS TEST SIGNALS
Step intervals of 0.1 microsecond for Pulse Width, 1 microsecond for PRI, 1 MHz for chirp
width and 1 for the number of pulses will be utilized for the random determination of
specific test waveforms.

                     TABLE 10: SHORT PULSE RADAR TEST WAVEFORMS
                                                                       MINIMUM
                       PULSE                                         PERCENTAGE  MINIMUM
                       WIDTH                               NUMBER OF
RADAR TYPE                                PRI (µsec)                      OF    NUMBER OF
                                                            PULSES
                       (µsec)                                        SUCCESSFUL   TRIALS
                                                                      DETECTION
         1                  1                  1428                 18         60%                30
         2              1-5                150-230              23-29          60%                30
         3              6-10               200-500              16-18          60%                30
         4             11-20               200-500              12-16          60%                30
                  Aggregate (Radar Types 1-4)                                  80%               120


                      TABLE 11: LONG PULSE RADAR TEST WAVEFORM

                       CHIRP                                            MINIMUM
             PULSE                       PRI       NUMBER                                     MINIMUM
 RADAR                                                       NUMBER PERCENTAGE OF
             WIDTH     WIDTH                      OF PULSES                                  NUMBER OF
  TYPE                                 (µsec)               OF BURSTS SUCCESSFUL
             (µsec)    (MHz)                      PER BURST                                    TRIALS
                                                                       DETECTION

    5        50-100     5-20          1000-2000         1-3          8-20      80%                 30


              TABLE 12: FREQUENCY HOPPING RADAR TEST WAVEFORM

              PULSE                                   HOPPING HOPPING     MINIMUM
                                                                                              MINIMUM
  RADAR                       PRI       PULSES         RATE   SEQUENCE PERCENTAGE OF
              WIDTH                                                                          NUMBER OF
   TYPE                     (µsec)      PER HOP                LENGTH   SUCCESSFUL
              (µsec)                                   (kHz)                                   TRIALS
                                                               (msec)    DETECTION

     6           1              333        9           0.333             300   70%                 30




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4. TEST & SUPPORT EQUIPMENT LIST

4.1 TEST INSTRUMENTS

                              TABLE 13: TEST INSTRUMENTS LIST.
       DESCRIPTION &                                            CALIBRATED         CALIBRATED
                                 MODEL NO.      SERIAL NO.
       MANUFACTURER                                                DATE              UNTIL
   Spectrum Analyzer R&S            FSW8            101497      Aug.07.2013         Aug 06, 2014

Vector Signal Generator R&S       SMJ100A           101878      Aug 13, 2013        Aug 12, 2014


4.2 DESCRIPTION OF SUPPORT UNITS

                            TABLE 14: SUPPORT UNIT INFORMATION.

 NO.        PRODUCT             BRAND       MODEL NO.              ID                SPEC.
                                                                        The maximum EIRP
                                                                        is 13.6 dBm,
  1    11n Access-Point       MOTOROLA     AP-7131N          UZ7AP7131N
                                                                        Antenna Gain is
                                                                        -3.38dBi
NOTE: This device was functioned as a      Master     Slave device during the DFS test.


                     TABLE 15: SOFTWARE/FIRMWARE INFORMATION.
                                                                     SOFTWARE/FIRMWARE
 NO.             PRODUCT                    MODEL NO.
                                                                          VERSION
  1.    11n Access-Point            AP-7131N                               4.0.0.0-036D




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5. TEST PROCEDURE

5.1 BVADT DFS MEASUREMENT SYSTEM:
A complete BVADT DFS Measurement System consists of two subsystems: (1) the Radar
Signal Generating Subsystem and (2) the Traffic Monitoring Subsystem. The control PC is
necessary for generating the Radar waveforms in Table 10, 11 and 12. The traffic
monitoring subsystem is specified to the type of unit under test (UUT).

CONDUCTED SETUP CONFIGURATION OF ADT DFS MEASUREMENT
SYSTEM


                                                                            Radar Signal Generating
                      Control PC
                                                                                  Subsystem




                      Spectrum
                       Analyzer                                                    Attenuator




                            C/S




        Attenuator                           Attenuator                              C/S



                                   Traffic Monitoring Subsystem

       Support Unit                                                                 Master /
                                                                                   Client with
                                                                                  DFS function



Because MC18N0 can't support streaming video, following NTIA comment listed on TCB workshop
(October 2007), we use WAV file to apply DFS test.
The detail test setup and test result is listed in the test report.


The test transmission will always be from the Master Device to the Client Device. While the Client
device is set up to associate with the Master device and play the Audio file from Master device, the
designated Audio test file and instructions are located at: http://ntiacsd.ntia.doc.gov/dfs/.




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5.2 CALIBRATION OF DFS DETECTION THRESHOLD LEVEL:

The measured channel is 5500 MHz in 20MHz Bandwidth. The radar signal was the same
as transmitted channels, and injected into the antenna port of AP (master) or Client Device
with Radar Detection, measured the channel closing transmission time and channel move
time. The Master antenna gain is -3.38dBi and required detection threshold is -64.38dBm
(= -62 +1 -3.38). The calibrated conducted detection threshold level is set to -64.38 dBm.

CONDUCTED SETUP CONFIGURATION OF CALIBRATION OF DFS
DETECTION THRESHOLD LEVEL



                            Control PC




                            Spectrum                                        Radar Signal Generating
                            Analyzer                                              Subsystem




                                       50Ω Load (Terminator)
                                                                              Attenuator


                                         C/S



   50Ω Load         Attenuator                                 Attenuator         C/S

 (Terminator)




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5.3 DEVIATION FROM TEST STANDARD
No deviation.


5.4 CONDUCTED TEST SETUP CONFIGURATION


5.4.1 CLIENT WITHOUT RADAR DETECTION MODE


                      Control PC




                      Spectrum                                   Radar Signal Generating
                      Analyzer                                         Subsystem




                                                                        Attenuator

                        C/S




       Attenuator                      Attenuator                          C/S        Master




      Client (UUT)
                            Notebook                                                 Notebook




The UUT is a U-NII Device operating in Client mode without radar detection. The radar test
signals are injected into the Master Device.




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6. TEST RESULTS

6.1 SUMMARY OF TEST RESULTS


     CLAUSE                  TEST PARAMETER                 REMARKS            PASS/FAIL


       15.407         DFS Detection Threshold              Not Applicable           NA

       15.407         Channel Availability Check Time      Not Applicable           NA

       15.407         Channel Move Time                     Applicable             Pass

       15.407         Channel Closing Transmission Time     Applicable             Pass

       15.407         Non- Occupancy Period                 Applicable             Pass

       15.407         Uniform Spreading                    Not Applicable           NA

       15.407         U-NII Detection Bandwidth            Not Applicable           NA

       15.407         Non-associated test                   Applicable             Pass

       15.407         Non-Co-Channel test                   Applicable             Pass




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6.2     DETAILED TEST RESULTS


6.2.1 TEST MODE: DEVICE OPERATING IN CLIENT WITHOUT RADAR
      DETECTION MODE.
The radar test signals are injected into the Master Device.

6.2.1.1 DFS DETECTION THRESHOLD

The Required detection threshold is -64.38dBm (= -62 +1 -3.38). The conducted radar
burst level is set to -64.38dBm.




                                                       Radar signal




                                                        Noise Floor




                                        Radar Signal 1




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6.2.1.2 CHANNEL CLOSING TRANSMISSION AND CHANNEL MOVE TIME




                       Radar Signal




                        Traffic Signal
                                                                        Noise Floor




NOTE: T1 denotes the start of Channel Move Time upon the end of the last Radar burst.
T2 denotes the data transmission time of 200ms from T1. T4 denotes the 10 second from
T1 to observe the aggregate duration of transmissions.




                                         Radar Signal




                                                        Noise Floor




NOTE: An expanded plot for the device vacates the channel in the required 500ms.




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6.2.1.3 NON- OCCUPANCY PERIOD

ASSOCIATED TEST

1) Test results demonstrating an associated client link is established with the master on a test
frequency.




EUT (Client ) links with master on 5500MHz


2) The client and DFS-certified master device are associated, and the movie can be streamed as
specified in the DFS Order for a non-occupancy period test.




Client plays a specified files via master.


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3). The device transmits one type of radar as specified in the DFS Order.




Radar 1 is used to test during DFS testing.


4) The test frequency has been monitored to ensure no transmission of any type has occurred for 30
minutes;
Note: If the client moves with the master, the device is considered compliant if nothing appears in
the client non-occupancy period test. For devices that shut down (rather than moving channels), no
beacons should appear;
5)An analyzer plot that contains a single 30-minute sweep on the original test frequency.



                             Injected into Radar




                                                                                    Noise Floor
                            Traffic Signal




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6.2.1.4 NON-ASSOCIATED TEST


Master was off.
During the 30 minutes observation time, The UUT did not make any transmissions in the
DFS band after UUT power up.




                                                                 Noise Floor




6.2.1.5 NON- CO-CHANNEL TEST

The UUT was investigated after radar was detected the channel and made sure no
co-channel operation with radars.




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7. INFORMATION ON THE TESTING LABORATORIES

We, Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch,
were founded in 1988 to provide our best service in EMC, Radio, Telecom and
Safety consultation. Our laboratories are accredited and approved according to
ISO/IEC 17025.

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:
   Tel: 886-3-3183232
   Fax: 886-3-3270892


   Email: service.adt@tw.bureauveritas.com
   Web Site: www.bureauveritas-adt.com


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




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8. APPENDIX-A
Notch band in 5600-5650MHz
Verify that the 5600 – 5650 MHz band is notched.
Test results demonstrating last channel shall not exceed the band edge on 5600~5650MHz.




802.11n (HT20) OFDM MODULATION               802.11n (HT20) OFDM MODULATION
(CH 116: 5580MHz)                            (CH 132: 5660MHz)




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NON BEACON ON DFS BAND

1) Test results demonstrating no any beacon on DFS band after power up.
2) Observation time is 10min after power up.




EUT (Client ) links with master on 11n (HT20) mode



BAND EDGE AT NEARBY DFS BAND

1) Test results demonstrating last channel (20dB BW) shall not exceed the band edge on
5150~5250MHz.




EUT (Client ) links with master on 11n (HT20) mode




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9. APPENDIX B - MODIFICATIONS RECORDERS FOR
   ENGINEERING CHANGES TO THE EUT BY THE LAB


No modifications were made to the EUT by the lab during the test.



--- END ---




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Document Created: 2014-07-29 20:18:25
Document Modified: 2014-07-29 20:18:25

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