Test Report_DSS_Part 2

FCC ID: QISVOG-LX9

Test Report

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FCCID_4179109

                   FCC&ISED
                  RF Test Report
                      Product Name: Smart Phone

                         Model Number: VOG-L04


             Report No.: SYBH(Z-RF)20181218028001-2003
                             FCC ID:QISVOG-L04
                              IC: 6369A-VOGL04


                                  APPROVED                          PREPARED
    Authorized
                                 (Lab Manager)                     (Test Engineer)

       BY

      DATE                         2019-01-28                        2019-01-28




             Reliability Laboratory of Huawei Technologies Co., Ltd.

  (Global Compliance and Testing Center of Huawei Technologies Co., Ltd)


No.2, New City Avenue, Songshan Lake Sci. & Tech. Industry Park, Dongguan, 523808, P.R.C
                Telephone: +86 769 23830808        Fax: +86 769 23837628


          RF Report for VOG-L04                                                                         Public




                                       ※      ※         Notice             ※       ※


    1. The laboratory has passed the accreditation by The American Association for Laboratory Accreditation

    (A2LA). The accreditation number is 2174.01.

    2. The laboratory has been recognized by the US Federal Communications Commission (FCC) to perform

    compliance testing subject to the Commission's Certification rules. The Designation Number is CN1173, and

    the Test Firm Registration Number is 294140.

    3. The laboratory has been recognized by the Innovation, Science and Economic Development

    Canada (ISED) to test to Canadian radio equipment requirements. The CAB identifier is CN0003, and the

    ISED# is 21741.

    4. The laboratory (Reliability Lab of Huawei Technologies Co., Ltd) is also named “Global Compliance and

    Testing Center of Huawei Technologies Co., Ltd”, the both names have coexisted since 2009.

    5. The test report is invalid if not marked with the signatures of the persons responsible for preparing and

    approving the test report.

    6. The test report is invalid if there is any evidence of erasure and/or falsification.

    7. The test report is only valid for the test samples.

    8. Content of the test report, in part or in full, cannot be used for publicity and/or promotional purposes

    without prior written approval from the laboratory.

    9. If any question about this report, please contact the laboratory (PublicGCTC@huawei.com).




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            RF Report for VOG-L04                                                                     Public




                                             MODIFICATION RECORD



   No.    Report No                 Modification Description
   1      SYBH(Z-RF)2018121         First release.
          8028001-2003


                                                     DECLARATION
   Type               Description
   Multiple                The present report applies to single model.
   Models                  The present report applies to several models. The practical measurements are
   Applications            performed with the model.



                           The present report only presents the worst test case of all modes, see relevant test
                           results for detailed.




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             RF Report for VOG-L04                                                                                                                             Public




   1   Table of contents

   1   Table of contents .................................................................................................................................................... 4
   2   General Information ................................................................................................................................................ 5
       2.1         Test standard/s ......................................................................................................................................... 5
       2.2         Test Environment ...................................................................................................................................... 5
       2.3         Test Laboratories ...................................................................................................................................... 6
       2.4         Applicant and Manufacturer ...................................................................................................................... 6
       2.5         Application details ..................................................................................................................................... 6
   3   Test Summary ........................................................................................................................................................ 7
   4   Description of the Equipment under Test (EUT) ..................................................................................................... 8
       4.1         General Description .................................................................................................................................. 8
       4.2         EUT Identity .............................................................................................................................................. 9
       4.3         Technical Description .............................................................................................................................. 10
   5   General Test Conditions / Configurations ............................................................................................................. 11
       5.1         EUT Configurations ................................................................................................................................. 11
       5.2         Antenna requirements ............................................................................................................................. 12
       5.3         Description of tests.................................................................................................................................. 13
       5.4         Test Setups ............................................................................................................................................. 16
       5.5         Test Conditions ....................................................................................................................................... 19
   6   Main Test Instruments .......................................................................................................................................... 21
   7   Measurement Uncertainty..................................................................................................................................... 23
   8   Appendixes ........................................................................................................................................................... 24




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           RF Report for VOG-L04                                                                  Public




   2     General Information



   2.1    Test standard/s


                                   47 CFR FCC Part 2, Subpart J
                                   47 CFR FCC Part 15, Subpart C
   Applied Rules :
                                   ISED RSS-Gen Issue 5
                                   ISED RSS-247 Issue 2
                                   FCC PUBLIC NOTICE DA 00-705 Filing and Measurement Guidelines for
                                   Frequency Hopping Spread Spectrum Systems (Released March 30,
                                   2000)
                                   ANSI C63.4-2014, American National Standard for Methods of
   Test Method :
                                   Measurement of Radio-Noise Emissions from Low-Voltage Electrical and
                                   Electronic Equipment in the Range of 9 kHz to 40 GHz.
                                   ANSI C63.10-2013, American National Standard for Testing Unlicensed
                                   Wireless Devices.


   2.2    Test Environment
   Temperature :                      TN       15 to 30      °C during room temperature tests
   Ambient Relative Humidity:         20 to 85 %
   Atmospheric Pressure:            Not applicable
                                      VL     3.6              V
   Power supply :                     VN     3.82             V    DC by Battery
                                      VH     4.35             V

   NOTE 1: 1) VN= nominal voltage, VL= low extreme test voltage, VH= High extreme test voltage;

            TN= normal temperature, TL= low extreme test temperature, TH= High extreme test temperature.

   NOTE 2: The values used in the test report may be stringent than the declared.




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           RF Report for VOG-L04                                                                Public




   2.3    Test Laboratories


                                    RELIABILITY LABORATORY OF HUAWEI TECHNOLOGIES CO.,
   Test Location 1 :
                                    LTD.
                                    No.2, New City Avenue, Songshan Lake Sci. & Tech. Industry Park,
   Address of Test Location 1 :
                                    Dongguan, 523808, P.R.C



   2.4    Applicant and Manufacturer


   Company Name :                  HUAWEI TECHNOLOGIES CO., LTD
                                   Administration Building, Headquarters of Huawei Technologies Co., Ltd.,
   Address :
                                   Bantian, Longgang District, Shenzhen, 518129, P.R.C


   2.5    Application details


   Date of Receipt Sample:         2019-01-02
   Start of test:                  2019-01-03
   End of test:                    2019-01-28




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           RF Report for VOG-L04                                                                                Public




   3    Test Summary


   Test Item                      FCC Rule No.       ISED Rule No.   Requirements                 Test Result      Verdict
   20dB Emission Bandwidth
                                  15.247(a)(1)       RSS-247, 5.1    No limit.                    Appendix A       Pass
   (EBW)
                                                                     ≥ MAX {25kHz, IIF{output
   Carrier Frequency                                                 power ≤125mW,
                                  15.247(a)(1)       RSS-247, 5.1                                 Appendix B       Pass
   Separation                                                        2/3*20dB EBW, 20dB
                                                                     EBW }}.
                                  15.247(a)(1)
   Number of Hopping Channel                         RSS-247, 5.1    ≥15 channels.                Appendix C       Pass
                                  (iii)
   Time of Occupancy (Dwell       15.247(a)(1)                       < 0.4s within a period of
                                                     RSS-247, 5.1                                 Appendix D       Pass
   Time)                          (iii)                              (0.4s*hopping number).
                                                                     FCC: Conducted < 1 W if
                                                                     using ≥75
                                                                     non-overlapping
                                                                     channels.
   Maximum Peak Output
                                  15.247(b)(1)       RSS-247, 5.4    ISED: Conducted < 1 W if     Appendix E       Pass
   Power
                                                                     using ≥75
                                                                     non-overlapping
                                                                     channels.& EIRP< 36
                                                                     dBm
   Band edge spurious
                                                                                                  Appendix F       Pass
   emission                                                          < -20 dBr/100 kHz if total
                                  15.247(d)          RSS-247, 5.5
   Conducted RF Spurious                                             peak power ≤ power limit.
                                                                                                  Appendix G       Pass
   Emission
                                                     RSS-247, 5.5
                                                     RSS-Gen,        FCC Part 15.209 field
   Radiated Emissions in the      15.247(d)          6.13            strength limit;
                                                                                                  Appendix H       Pass
   Restricted Bands               15.209             RSS-Gen,        RSS-Gen 8.10 field
                                                     8.10            strength limit.


                                                                     FCC Part 15.207
   AC Power Line Conducted                                           conducted limit;
                                  15.207             RSS-Gen, 8.8                                  Appendix I      Pass
   Emissions                                                         RSS-Gen, 8.8conducted
                                                                     limit.
   NOTE: The transmitter has an integral PCB loop antenna that is enclosed within the housing of the EUT and meets the
   requirements of FCC 15.203




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           RF Report for VOG-L04                                                                      Public




   4     Description of the Equipment under Test (EUT)

   4.1    General Description


   VOG-L04 is a subscriber equipment in the GSM/WCDMA/LTE system. The GSM frequency band includes

   GSM850 and GSM900 and DCS1800 and PCS1900.The UMTS frequency band is B1 and B2 and B4 and

   B5 and B6 and B8 and B19. The LTE frequency band is B1 and B2 and B3 and B4 and B5 and B6 and B7

   and B8 and B9 and B12 and B17and B18 and B19 and B20 and B26 and B28 and B34 and B38 and B39

   and B40 and B41 and B66. The Mobile Phone implements such functions as RF signal

   receiving/transmitting, LTE/HSPA/UMTS and GSM/GPRS/EDGE protocol processing, voice, video MMS

   service, GPS, Bluetooth, NFC, Wi-Fi and Wirelessly Charging etc. VOG-L04 provides one USIM card

   interface and one HUAWEI Nano memory card interface. Externally it provides type C USB charging port,

   and the port could be used as the earphone port or data-transfer port.

   BT high power mode detection technique Description

   1) The mobile phone is connected to an external audio device ( eg: BT headset ,BT speaker ) via BT. The

   external audio device refers to a BT device that can play music and make calls;

   2) The external BT audio device sends requests to the mobile phone.

   Note: When the mobile phone is connected to an external audio device and the audio device is far away

   from the mobile phone or they have a shelter, the signal will become weak. If it detects that the signal

   intensity transmitted from the mobile phone is lower than a certain value, it sends out a signal to ask the

   mobile phone to increase power. The specific trigger distance between the mobile phone and the external

   audio device is related to the signal reception capability of the connected device.

   3) Wifi 2.4G and Wifi 5G of the mobile phone are both off, or only one is on.

   Note 1: When WiFi 2.4G and 5G are both working at the same time, the BT high power level A will not be

   triggered. The BT of the DUT will still working at Low power level mode (power level B, maximum duty cycle

   100%) as default mode;

   Note 2: For the DUT (mobile Phone), Wi-Fi 2.4G& Wi-Fi 5G can’t work at same mode, but they can transmit

   simultaneously at different modes (Wi-Fi station/P-to-P) by using different Wi-Fi antennas. Only Wi-Fi 2.4G

   Ant 2 station mode and Wi-Fi 5G Ant1 P-to-P mode or Wi-Fi 2.4G Ant 2 P-to-P mode and Wi-Fi 5G Ant1

   station mode can transmit simultaneously.



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             RF Report for VOG-L04                                                                        Public


   Note: Only Bluetooth test data included in this report.


   4.2     EUT Identity

   NOTE:        Unless otherwise noted in the report, the functional boards installed in the units shall be
                selected from the below list, but not means all the functional boards listed below shall be
                installed in one unit.


   4.2.1     Board


                                                          Board
                Description                          Software Version                     Hardware Version
                Main Board                      9.1.0.42(C792E10R1P4)                      HL2VOGUEM


   4.2.2     Sub- Assembly


                                                        Sub-Assembly
   Sub-Assembly
                          Model                 Manufacturer          Description
   Name
                                            Huawei                Input voltage: 100-240V ~50/60Hz 1.2A
   Adapter            HW-100400A00          Technologies          Output voltage: 5V           2A OR 9V            2A
                                            Co., Ltd.             OR 10V          4A
                                            Huawei                Input voltage: 100-240V ~50/60Hz 1.2A
   Adapter            HW-100400U00          Technologies          Output voltage: 5V           2A OR 9V            2A
                                            Co., Ltd.             OR 10V          4A
                                            Huawei                Input voltage: 100-240V ~50/60Hz 1.2A
   Adapter            HW-100400E00          Technologies          Output voltage: 5V           2A OR 9V            2A
                                            Co., Ltd.             OR 10V          4A
                                            Huawei                Input voltage: 100-240V ~50/60Hz 1.2A
   Adapter            HW-100400B00          Technologies          Output voltage: 5V           2A OR 9V            2A
                                            Co., Ltd.             OR 10V             4A
                                                                  Rated capacity: 4100mAh
                                            Huawei
                                                                  Nominal Voltage:          +3.82V
   Battery            HB486486ECW           Technologies
                                            Co., Ltd.
                                                                  Charging Voltage:         +4.4V




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           RF Report for VOG-L04                                                                 Public




   4.3     Technical Description


   Characteristics        Description
   TX/RX Operating        2400-2483.5     fc = 2402 MHz + N * 1 MHz, where:
   Range                  MHz band        -      fc = “Operating Frequency” in MHz,
                                          -      N = “Channel Number” with the range from 0 to 78.
   Modulation Type        Carrier         Frequency Hopping Spread Spectrum (FHSS)
                          Digital         GFSK, π/4-DQPSK, 8DPSK
   Emission Designator    GFSK: 950KFXD
   for BT Normal power    π/4-DQPSK: 1M32GXD
                          8DPSK: 1M32GXD
   Emission Designator    GFSK: 950KFXD
   for BT High power      π/4-DQPSK: 1M31GXD
                          8DPSK: 1M31GXD
   Bluetooth Power        Class 1
   Class
   Antenna                Description     Isotropic Antenna
                          Type                Integral
                                              External
                                              Dedicated
                          Ports               Ant 1,      Ant 2,    Ant 3
                          Gain            -1.4 dBi (per antenna port, max.)
                          Remark          When the EUT is put into service, the practical maximum antenna
                                          gain should NOT exceed the value as described above.
   Power Supply           Type                External DC mains,

                                              Battery,

                                              AC/DC Adapter,

                                              Powered over Ethernet (PoE).
                                              Other




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           RF Report for VOG-L04                                                                     Public




   5     General Test Conditions / Configurations

   5.1     EUT Configurations

   5.1.1    General Configurations


   Configuration             Description
   Test Antenna Ports        Until otherwise specified,
                             -      All TX tests are performed at all TX antenna ports of the EUT, and
                             -      All RX tests are performed at all RX antenna ports of the EUT.
   Multiple RF Sources       Other than the tested RF source of the EUT, other RF source(s) are disabled or
                             shutdown during measurements.


   5.1.2    Customized Configurations


   # EUT Conf.           Signal Description                                           Operating Frequency
   TM1_DH5_Hop           GFSK modulation, package type DH5, hopping on.               ---
   TM1_DH5_Ch0           GFSK modulation, package type DH5, hopping off.              Ch No. 0 / 2402 MHz
   TM1_DH5_Ch39          GFSK modulation, package type DH5, hopping off.              Ch No. 39 / 2441 MHz
   TM1_DH5_Ch78          GFSK modulation, package type DH5, hopping off.              Ch No. 78 / 2480 MHz
   TM2_2DH5_Hop          π/4-DQPSK modulation, package type 2DH5, hopping on.         ---
   TM2_2DH5_Ch0          π/4-DQPSK modulation, package type 2DH5, hopping off.        Ch No. 0 / 2402 MHz
   TM2_2DH5_Ch39         π/4-DQPSK modulation, package type 2DH5, hopping off.        Ch No. 39 / 2441 MHz
   TM2_2DH5_Ch78         π/4-DQPSK modulation, package type 2DH5, hopping off.        Ch No. 78 / 2480 MHz
   TM3_3DH5_Hop          8DPSK modulation, package type 3DH5, hopping on.             ---
   TM3_3DH5_Ch0          8DPSK modulation, package type 3DH5, hopping off.            Ch No. 0 / 2402 MHz
   TM3_3DH5_Ch39         8DPSK modulation, package type 3DH5, hopping off.            Ch No. 39 / 2441 MHz
   TM3_3DH5_Ch78         8DPSK modulation, package type 3DH5, hopping off.            Ch No. 78 / 2480 MHz




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           RF Report for VOG-L04                                                                     Public




   5.2    Antenna requirements

   Excerpt from §15.203 of the FCC Rules/Regulations:
   “An intentional radiator antenna shall be designed to ensure that no antenna other than that furnished by
   the responsible party can be used with the device. The use of a permanently attached antenna or of an
   antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with
   the provisions of this section.”


   The antennas of the VOG-L04 are permanently attached.
   There are no provisions for connection to an external antenna.


   Conclusion:
   The Smart Phone FCC ID: QISVOG-L04 unit complies with the requirement of §15.203.
   Ch. Frequency (MHz)


                                            Ch.              Frequency (MHz)
                                            00                      2402


                                             .                        .
                                             .                        .


                                            39                      2441
                                             .                        .
                                             .                        .
                                            78                      2480



                                          Frequency/ Channel Operations




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           RF Report for VOG-L04                                                               Public




   5.3     Description of tests

   5.3.1 Bandwidth measurement
   (a) Connect EUT test port to universal communication tester.
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch off frequency hopping
   function, then set the measuring frequency number, finally test the bandwidth with universal
   communication tester.

   5.3.2 Carrier frequency separation measurement
   (a) Connect EUT test port to spectrum analyzer and universal communication tester.
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch off frequency hopping
   function, then set the measured frequency number to two adjacent channels separately and test the
   carrier frequency separation with spectrum analyzer.

   5.3.3 Number of hopping channel
   (a) Connect EUT test port to spectrum analyzer and universal communication tester.
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch on frequency hopping
   function, then set enough count time (larger than 5000 times) to get all the hopping frequency channel
   displayed on the screen of spectrum analyzer.
   (c) Count the quantity of peaks to get the number of hopping channels.

   5.3.4    Time of occupancy

   (a) Connect test port of EUT to spectrum analyzer and universal communication tester.
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch on frequency hopping
   function.
   (c) Set the span of spectrum analyzer to 0 Hz, and set the resolution bandwidth to1 MHz and the vedio
   bandwidth to 1 MHz, then get the time domain measured diagram. and set sweep time to 2 times of
   one burst occupancy time, and measure the time of occupancy of one burst.
   (d) Set the resolution bandwidth to1 MHz and the vedio bandwidth to 3 MHz ,and set the sweep time
   to a period (0.4 seconds multiplied by the number of hopping channels employed), and count the
   number of the bursts.
   (e) Calculate the time of occupancy in a period with time occupancy of a burst and quantity of bursts

   5.3.5 Peak output power
   (a) Connect EUT test port to spectrum analyzer and universal communication tester.
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch off frequency hopping
   function.
   (c) Then set the EUT to transmit at high, middle and low frequency and measure the conducted output
   power separately.




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          RF Report for VOG-L04                                                                   Public


   5.3.6 Band edge spurious emission
   (a) Connect EUT test port to spectrum analyzer and universal communication tester
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch off frequency hopping
   function.
   (c) Then set the EUT to transmit at high, low frequency and measure the conducted band edge
   spurious separately.
   (d) Switch on the frequency hopping function, and repeat above measurement.

   5.3.7 Conducted RF Spurious
   (a) Connect EUT test port to spectrum analyzer and universal communication tester
   (b) Set the EUT to transmit maximum output power at 2.4GHz and switch off frequency hopping
   function.
   (c) Then set the EUT to transmit at high, middle and low frequency and measure the conducted
   spurious separately.
   (d) Switch on the frequency hopping function, and repeat the above measurement.

   5.3.8 Radiated spurious emission & spurious in restricted band
   For frequency below 1GHz, the test site semi-anechoic chamber has met the requirement of NSA
   tolerance 4dB according to the standards: ANSI C63.10 (2013). The EUT was set-up on insulator
   80cm above the Ground Plane. For frequency above 1GHz, the test site full-anechoic chamber has
   met the requirement of ANSI C63.10 (2013). The EUT was set-up on insulator 150cm above the
   Ground Plane.
   The set-up and test methods were according to ANSI C63.10:2013.The Radiated Disturbance
   measurements were made using a Rohde and Schwarz Test Receiver and control software.

   A preliminary scan and a final scan of the emissions were made by using test script of software; the
   emissions were measured using a Quasi-Peak Detector below 1GHz, Peak Detector and AV detector
   above 1GHz. The maximal emission value was acquired by adjusting the antenna height, polarisation
   and turntable azimuth in accordance with the software setup. Normally, the height range of antenna
   was 1m to 4m, and the azimuth range of turntable was 0°to 360°.The receive antenna has two
   polarizations V and H.

   A portable or small unlicensed wireless device shall be placed on a non-metallic test fixture or other
   nonmetallic support during testing. The supporting fixture shall permit orientation of the EUT in each of
   three orthogonal (x, y, z) axis positions such that emissions from the EUT are maximized.

   The EUT communicates with the BTS simulator through Air interface. The EUT transmits maximum
   output power at 2.4GHz and switch off frequency hopping function.

   Measurement bandwidth: 30 MHz - 1000 MHz: 120 kHz
   Measurement bandwidth: 1000 MHz - 10th Carrier Frequency: 1 MHz




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          RF Report for VOG-L04                                                            Public


   5.3.9 Conducted Emission at Power Port
   The Table-top EUT was placed upon a non-metallic table 0.8 m above the horizontal metal reference
   ground plane. EUT was connected to LISN and LISN was connected to reference Ground Plane. EUT
   was 80cm from LISN. The set-up and test methods were according to ANSI C63.10: 2013.

   Conducted Disturbance at AC Port measurements were undertaken on the L and N Lines. The
   emissions were measured using a Quasi-Peak Detector and Average Detector.

   The EUT communicates with the BTS simulator through Air interface, the BTS simulator controls the
   EUT to transmitter the maximum power which defined in specification of product. The EUT operated
   on the typical channel.

   Measurement bandwidth (RBW) for 150kHz to 30 MHz: 9 kHz;




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           RF Report for VOG-L04                                                                              Public




   5.4     Test Setups

   5.4.1    Test Setup 1

   The Bluetooth component’s antenna ports(s) of the EUT are connected to the measurement instrument per an
   appropriate attenuator. The EUT is controlled by Bluetooth System Simulator and/or PC/software to emit the specified
   signals for the purpose of measurements.



                                       Jumper Cable for
                                    connecting to RF Cables
                                         (If applicable)                                          Measurement
                                                                         Attenuator
                                                                                                   Instrument
         EUT
                    Bluetooth                                               RF Cables
                                                              Power
                                                                            for testing
                   Component                                  Splitter

                                              Bluetooth
                                                                                                Bluetooth System
                                             component's
                                             antenna port                                           Simulator


         Power         Control
         Supply         PC


   5.4.2    Test Setup 2

   The semi-anechoic chamber and full-anechoic chamber has met the requirement of ANSI C63.4. The test distance is
   3m.The setup is according to ANSI C63.4 and CAN/CSA-CEI/IEC CISPR 22.


   The maximal emission value is acquired by adjusting the antenna height, polarisation and turntable azimuth. Normally,
   the height range of antenna is 1 m to 4 m, the azimuth range of turntable is 0°to 360°, and the receive antenna has two
   polarizations Vertical (V) and Horizontal (H).




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                                               (Below 1 GHz)




                                               (Above 1 GHz)




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           RF Report for VOG-L04                                                                                            Public




   5.4.3    Test Setup 3

   The mains cable of the EUT (maybe per AC/DC Adapter) must be connected to LISN. The LISN shall be placed 0.8 m
   from the boundary of EUT and bonded to a ground reference plane for LISN mounted on top of the ground reference
   plane. This distance is between the closest points of the LISN and the EUT. All other units of the EUT and associated
   equipment shall be at least 0.8m from the LISN.


   Ground connections, where required for safety purposes, shall be connected to the reference ground point of the LISN
   and, where not otherwise provided or specified by the manufacturer, shall be of same length as the mains cable and
   run parallel to the mains connection at a separation distance of not more than 0.1 m.




                                                           Shielding room



                                                                                                                            0.4m

                                                                                                                    EUT
                                                                                                                    Table
                                                                                       m
                                                                                   0.8




                                                                                                                             0.8m
                                                                                                  m
                                                                                                :1
                                                                                      a   ble
                                                                               e   rc                           m
                                                                           w                               :1
                                                                        Po                              ble
                Receive                                                                             a
                                                                                                 gc
                                                              LISN                         din
                                             Power input                              ou
                                                                                   Gr

                                                                                           D≤10cm                            GRP




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           RF Report for VOG-L04                                                          Public




   5.5     Test Conditions


   Test Case            Test Conditions
                        Configuration       Description
   20dB Emission        Meas. Method        DA 00-705
   Bandwidth (EBW)      Test Env.           TN/VN
                        Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Ch0, TM1_DH5_Ch39, TM1_DH5_Ch78,
                                            TM2_2DH5_Ch0, TM2_2DH5_Ch39, TM2_2DH5_Ch78,
                                            TM3_3DH5_Ch0, TM3_3DH5_Ch39, TM3_3DH5_Ch78.
   Carrier Frequency    Meas. Method        DA 00-705
   Separation           Test Env.           TN/VN
                        Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Hop,
                                            TM2_2DH5_Hop,
                                            TM3_3DH5_Hop.
   Number of Hopping    Meas. Method        DA 00-705
   Channel              Test Env.           TN/VN
                        Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Hop,
                                            TM2_2DH5_Hop,
                                            TM3_3DH5_Hop.
   Time of Occupancy    Meas. Method        DA 00-705
   (Dwell Time)         Test Env.           TN/VN
                        Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Ch39,
                                            TM2_2DH5_Ch39,
                                            TM3_3DH5_Ch39.
   Maximum Peak         Meas. Method        DA 00-705
   Conducted Output     Test Env.           TN/VN
   Power                Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Ch0, TM1_DH5_Ch39, TM1_DH5_Ch78,
                                            TM2_2DH5_Ch0, TM2_2DH5_Ch39, TM2_2DH5_Ch78,
                                            TM3_3DH5_Ch0, TM3_3DH5_Ch39, TM3_3DH5_Ch78.
   Band edge spurious   Meas. Method        DA 00-705
   emission             Test Env.           TN/VN
                        Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Ch0, TM1_DH5_Ch78,
                                            TM2_2DH5_Ch0, TM2_2DH5_Ch78,
                                            TM3_3DH5_Ch0, TM3_3DH5_Ch78.
   Conducted RF         Meas. Method        DA 00-705
   Spurious Emission    Test Env.           TN/VN



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           RF Report for VOG-L04                                                                         Public


   Test Case            Test Conditions
                        Configuration       Description
                        Test Setup          Test Setup 1
                        EUT Conf.           TM1_DH5_Ch0, TM1_DH5_Ch39, TM1_DH5_Ch78,
                                            TM2_2DH5_Ch0, TM2_2DH5_Ch39, TM2_2DH5_Ch78,
                                            TM3_3DH5_Ch0, TM3_3DH5_Ch39, TM3_3DH5_Ch78.
   Radiated Emissions   Meas. Method        DA 00-705, C63.4, C63.10.
   in the Restricted                        (1) 30 MHz to 1 GHz:
   Bands                                    Pre:       RBW = 100 kHz; VBW = 300 kHz; Det. = Peak.
                                            Final:     RBW = 120 kHz; Det. = CISPR Quasi-Peak.
                                            (2) 1 GHz to 26.5 GHz:
                                            Average: RBW = 1 MHz; VBW = 10 Hz; Det. = Peak; Sweep-time = Auto;
                                                       Trace = Single.
                                            Peak:      RBW = 1 MHz; VBW = 3 MHz; Det. = Peak; Sweep-time = Auto;
                                                       Trace ≥ Max Hold * 100.
                        Test Env.           TN/VN
                        Test Setup          Test Setup 2
                        EUT Conf.           30 MHz -1 GHz      TM1_DH5_Ch0 (Worst Conf.).
                                            1-3 GHz            TM1_DH5_Ch0, TM1_DH5_Ch39, TM1_DH5_Ch78,
                                                               TM2_2DH5_Ch0, TM2_2DH5_Ch39,
                                                               TM2_2DH5_Ch78,
                                                               TM3_3DH5_Ch0, TM3_3DH5_Ch39,
                                                               TM3_3DH5_Ch78.
                                            3-18 GHz           TM1_DH5_Ch0 (Worse Conf.),
                                                               TM1_DH5_Ch39 (Worse Conf.),
                                                               TM1_DH5_Ch78 (Worse Conf.).
                                            18-26.5 GHz        TM1_DH5_Ch0 (Worst Conf.).
   AC Power Line        Meas. Method        AC mains conducted.
   Conducted                                Pre:       RBW = 10 kHz; Det. = Peak.
   Emissions                                Final:     RBW = 9 kHz; Det. = CISPR Quasi-Peak & Average.
                        Test Env.           TN/VN
                        Test Setup          Test Setup 3
                        EUT Conf.           TM1_DH5_Ch78.




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            RF Report for VOG-L04                                                                     Public




   6    Main Test Instruments

   This table gives a complete overview of the RF measurement equipment.
   Devices used during the test described are marked


       Main Test Equipment (BT/WIFI test system)

   Marked    Equipment Name           Manufacturer   Model           Serial Number   Cal Date     Cal-Due
             JS1120-3 BT/WIFI test
                                      JS Tonscend    JS0806-2        /               2018/05/30   2019/05/30
             system
             Power Detecting &
                                      R&S            OSP-B157        101429          2018/07/23   2019/07/23
             Samplig Unit
             Power Sensor             R&S            NRP2            103085/106211 2018/05/17     2018/05/17
             DC Power Supply          KEITHLEY       2303            1342889         2018/10/24   2019/10/24
             DC Power Supply          KEITHLEY       2303            000500E         2018/05/21   2019/05/21
             DC Power Supply          KEITHLEY       2303            1288003         2018/12/21   2019/12/21
             DC Power Supply          KEITHLEY       2303            000381E         2018/05/21   2019/05/21
             DC Power Supply          KEITHLEY       2303            000510E         2018/05/21   2019/05/21
             DC Power Supply          KEITHLEY       2303            1342896         2018/10/24   2019/10/24
                                                                     5624600294001 2018/12/13     2019/12/13
             Temperature Chamber WEISS               WKL64
                                                                     0
             Spectrum Analyzer        Agilent        N9030A          MY51380032      2018/07/23   2019/07/23
             Spectrum Analyzer        Agilent        N9030A          MY49431698      2018/07/23   2019/07/23
             Spectrum Analyzer        Keysight       N9040B          MY57212529      2018/06/28   2019/06/28
             Signal Analyzer          R&S            FSQ31           200021          2018/07/23   2019/07/23
             Signal Analyzer          R&S            FSU26           201069          2018/11/2    2019/11/2
             Universal Radio
                                      R&S            CMW500          164699          2018/03/15   2019/03/15
             Communication Tester
             Universal Radio
                                      R&S            CMW500          159302          2018/07/23   2019/07/23
             Communication Tester
             Wireless
                                      Agilent        N4010A          MY49081592      2018/07/23   2019/07/23
             Communication Test set
             Signal generator         Agilent        E8257D          MY51500314      2018/04/27   2019/04/27
             Signal generator         Agilent        E8257D          MY49281095      2018/07/23   2019/07/23
             Vector Signal Generator R&S             SMW200A         103447          2018/05/31   2019/05/31
             Vector Signal Generator R&S             SMU200A         104162          2018/07/23   2019/07/23


       Main Test Equipment( RE test system)
   Marked Equipment Name              Manufacturer Model             Serial Number Cal Date       Cal-Due
             Test receiver            R&S            ESU26           100387          2019/01/15   2020/01/14
             LOOP
             Antennas(9kHz-30M R&S                   HFH2-Z2         100262          2017/04/25   2019/04/25
             Hz)

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          RF Report for VOG-L04                                                                    Public


           LOOP
           Antennas(9kHz-30M R&S                  HFH2-Z2          100263         2017/04/25   2019/04/25
           Hz)
           Trilog Broadband
                                  SCHWARZB
           Antenna                                VULB 9163        9163-357       2017/04/21   2019/04/20
                                  ECK
           (30M~3GHz)
           Trilog Broadband
                                  SCHWARZB
           Antenna                                VULB 9163        9163-520       2017/3/29    2019/3/28
                                  ECK
           (30M~3GHz)
           Trilog Broadband
                                  SCHWARZB
           Antenna                                VULB 9163        9163-491       2017/3/29    2019/3/28
                                  ECK
           (30M~3GHz)
           Trilog Broadband
                                  SCHWARZB
           Antenna                                VULB 9163        9163-356       2018/4/9     2020/4/8
                                  ECK
           (30M~3GHz)
           Double-Ridged
           Waveguide       Horn   R&S             HF907            100305         2017/4/21    2019/4/20
           Antenna (1G~18GHz)
           Double-Ridged
           Waveguide       Horn   R&S             HF906            100684         2017/5/27    2019/5/26
           Antenna (1G~18GHz)
           Double-Ridged
           Waveguide       Horn   R&S             HF906            100683         2017/3/29    2019/3/28
           Antenna (1G~18GHz)
           Pyramidal Horn
                                  ETS-Lindgre
           Antenna(18GHz-26.5                     3160-09          5140299        2017/07/20   2019/07/19
                                  n
           GHz)
           Pyramidal Horn
                                  ETS-Lindgre
           Antenna(18GHz-26.5                     3160-09          00206665       2018/4/21    2020/4/20
                                  n
           GHz)
           Pyramidal Horn
                                  ETS-Lindgre
           Antenna(26.5GHz-40                     3160-10          00205695       2018/04/20   2020/04/19
                                  n
           GHz)
           Pyramidal Horn
                                  ETS-Lindgre
           Antenna(26.5GHz-40                     3160-10          LM5947         2017/07/20   2019/07/19
                                  n
           GHz)
           Measurement                            EMC32
                                  R&S                              /              /            /
           Software                               V9.25.0


      Main Test Equipment ( CE test system)
   Marked Equipment Name          Manufacturer Model               Serial Number Cal Date      Cal-Due
           Test receiver          R&S             ESU26            100387         2019/01/15   2020/01/14
           Test receiver          R&S             ESCI             101163         2019/01/15   2020/01/14


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           RF Report for VOG-L04                                                                           Public


            Artificial Main
                                     R&S            ENV4200          100134           2018/05/08     2019/05/07
            Network
            Line Impedance
                                     R&S            ENV216           100382           2018/05/08     2019/05/07
            Stabilization Network
            Measurement                             EMC32
                                     R&S                             /                /              /
            Software                                V9.25.0



   7    Measurement Uncertainty

   For a 95% confidence level (k = 2), the measurement expanded uncertainties for defined systems, in accordance with
   the recommendations of ISO 17025 as following:


   Test Item                                                             Extended Uncertainty
   Transmit Output Power Data              Power [dBm]                   U = 0.39 dB
   Bandwidth                               Magnitude [%]                 U=7%

   Band Edge Compliance                    Disturbance Power [dBm]       U = 0.9 dB
   Spurious Emissions, Conducted           Disturbance Power [dBm]       20MHz~3.6GHz:U=0.88dB
                                                                         3.6GHz~8.4GHz:U=1.08dB
                                                                         8.4GHz~13.6GHz:U=1.24dB
                                                                         13.6GHz~22GHz:U=1.34dB
                                                                         22GHz~26.5GHz:U=1.36dB
   Field Strength of Spurious              ERP/EIRP [dBm]                For 3 m Chamber:
   Radiation                                                             U = 5.90 dB (30 MHz-1 GHz)
                                                                         U = 4.94 dB (1 GHz-18 GHz)
                                                                         U = 4.24 dB (18 GHz-26.5 GHz)
   Frequency Stability                     Frequency Accuracy [Hz]       U=41.58Hz

   AC Power Line Conducted                 Disturbance                   U=2.3 dB
   Emissions                               Voltage[dBμV]
   Duty Cycle                              Duty Cycle [%]                U=±2.06 %




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          RF Report for VOG-L04                                                                Public




   8   Appendixes


                   Appendix No.                                               Description

       SYBH(Z-RF)20181218028001-2003-A                       Appendix for Bluetooth(Normal power)

       SYBH(Z-RF)20181218028001-2003-B                        Appendix for Bluetooth(High power)




                                                   END




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Document Created: 2019-01-28 17:03:39
Document Modified: 2019-01-28 17:03:39

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