1708RSU00101-FCC-UWB Test Report_7

FCC ID: 2ALS8-NBPLUS

Test Report

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                                       MRT Technology (Suzhou) Co., Ltd         Report No.: 1708RSU00101
                                       Phone: +86-512-66308358                  Report Version:        V01
                                       Web:    www.mrt-cert.com                 Issue Date:     09-23-2017




                           MEASUREMENT REPORT
                                    FCC PART 15.209

FCC ID:                         2ALS8-NBPLUS

APPLICANT:                      Ninebot (Changzhou) Tech Co., Ltd.


Application Type:               Certification

Product:                        Remote Controller

Model No.:                      N4MZ68

Brand Name:                     SEGWAY

FCC Classification: Low Power Communication Transmitter(DXX)

FCC Rule Part(s):               Part 15.209

Test Procedure(s):              ANSI C63.10-2013

Test Date:                      August 02 ~ September 23, 2017




 Reviewed By           :
                             ( Sunny Sun )
 Approved By           :
                            ( Marlin Chen )


The test results relate only to the samples tested.
This equipment has been shown to be capable of compliance with the applicable technical standards as
indicated in the measurement report and was tested in accordance with the measurement procedures specified
in ANCI 63.10-2013. Test results reported herein relate only to the item(s) tested.
The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou)
Co., Ltd.
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                                                                Report No.: 1708RSU00101


                                   Revision History

   Report No.          Version        Description          Issue Date             Note

 1708RSU00101          Rev. 01        Initial Report       08-09-2017            Invalid

 1708RSU00101          Rev. 02   Modify the FCC standard   09-23-2017             Valid




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                                                           CONTENTS
Description                                                                                                                                Page
§2.1033 General Information .......................................................................................................... 4

1.     INTRODUCTION ...................................................................................................................... 5

      1.1.       Scope ........................................................................................................................... 5
      1.2.       MRT Test Location ....................................................................................................... 5

2.     PRODUCT INFORMATION ...................................................................................................... 6

      2.1.       Feature of Equipment under Test ................................................................................. 6
      2.2.       Test Mode .................................................................................................................... 6
      2.3.       Description of Test Software......................................................................................... 6
      2.4.       Test Configuration ........................................................................................................ 6
      2.5.       EMI Suppression Device(s)/Modifications..................................................................... 6
      2.6.       Labeling Requirements................................................................................................. 6

3.     DESCRIPTION of TEST........................................................................................................... 7

      3.1.       Evaluation Procedure ................................................................................................... 7
      3.2.       AC Line Conducted Emissions ..................................................................................... 7
      3.3.       Radiated Emissions ...................................................................................................... 8

4.     ANTENNA REQUIREMENTS................................................................................................... 9

5.     TEST EQUIPMENT CALIBRATION DATE ............................................................................. 10

6.     MEASUREMENT UNCERTAINTY ......................................................................................... 11

7.     TEST RESULT ....................................................................................................................... 12

      7.1.       Summary .................................................................................................................... 12
      7.2.       Occupied Bandwidth Measurement ............................................................................ 13
      7.2.1.        Test Limit ................................................................................................................ 13
      7.2.2.        Test Procedure used............................................................................................... 13
      7.2.3.        Test Setting............................................................................................................. 13
      7.2.4.        Test Setup .............................................................................................................. 13
      7.2.5.        Test Result.............................................................................................................. 14
      7.3.       Radiated Spurious Emission Measurements .............................................................. 15
      7.3.1.        Test Limit ................................................................................................................ 15
      7.3.2.        Test Procedure Used .............................................................................................. 15
      7.3.3.        Test Setting............................................................................................................. 15
      7.3.4.        Test Setup .............................................................................................................. 17
      7.3.5.        Test Result.............................................................................................................. 19

8.     CONCLUSION ....................................................................................................................... 24
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§2.1033 General Information
Applicant:                    Ninebot (Changzhou) Tech Co., Ltd.
Applicant Address:            16F-17F, Block A, Building 3, Changwu Mid Road 18#, Wujin Dist.,
                              Changzhou, Jiangsu, China.
Manufacturer:                 Ninebot (Changzhou) Tech Co., Ltd.
Manufacturer Address:         16F-17F, Block A, Building 3, Changwu Mid Road 18#, Wujin Dist.,
                              Changzhou, Jiangsu, China.
Test Site:                    MRT Technology (Suzhou) Co., Ltd
Test Site Address:            D8 Building, No.2 Tian’edang Rd., Wuzhong Economic
                              Development Zone, Suzhou, China
MRT FCC Registration No.:     893164
FCC Rule Part(s):             FCC CFR 47 Part 15.209
Test Device Serial No.:       N/A             Production      Pre-Production    Engineering


Test Facility / Accreditations
Measurements were performed at MRT Laboratory located in Tian’edang Rd., Suzhou, China.
 MRT facility is a FCC registered (MRT Reg. No. 893164) test facility with the site description
  report on file and has met all the requirements specified in Section 2.948 of the FCC Rules.
 MRT facility is an IC registered (MRT Reg. No. 11384A-1) test laboratory with the site
  description on file at Industry Canada.
 MRT facility is a VCCI registered (R-4179, G-814,
  C-4664, T-2206) test laboratory with the site description
  on file at VCCI Council.
 MRT Lab is accredited to ISO 17025 by the American
  Association for Laboratory Accreditation (A2LA) under
  the American Association for Laboratory Accreditation
  Program (A2LA Cert. No. 3628.01) in EMC,
  Telecommunications and Radio testing for FCC,
  Industry Canada, EU and TELEC Rules.




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1.    INTRODUCTION
1.1. Scope
Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices
including intentional and/or unintentional radiators for compliance with the technical rules and
regulations of the Federal Communications Commission and the Industry Canada Certification and
Engineering Bureau.



1.2. MRT Test Location
The map below shows the location of the MRT LABORATORY, its proximity to the Taihu Lake.
These measurement tests were conducted at the MRT Technology (Suzhou) Co., Ltd. Facility
located at D8 Building, No.2 Tian’edang Rd., Wuzhong Economic Development Zone, Suzhou,
China. The detailed description of the measurement facility was found to be in compliance with the
requirements of § 2.948 according to ANSI C63.4-2009 on September 30, 2013.




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2.    PRODUCT INFORMATION
2.1. Feature of Equipment under Test
Product Name:              Remote Controller
Model No.:                 N4MZ68
Brand Name:                SEGWAY
Operation Frequency:       6489.6 MHz
Antenna Type:              Tag Antenna
Antenna Gain:              6.97dBi
SW Power Setting:          6



2.2. Test Mode
Test Mode                   Mode 1: Transmit at 6489.6MHz



2.3. Description of Test Software
N/A



2.4. Test Configuration
The Remote Controller was tested per the guidance of ANSI C63.10-2013.



2.5. EMI Suppression Device(s)/Modifications
No EMI suppression device(s) were added and/or no modifications were made during testing.



2.6. Labeling Requirements
Per 2.1074 & 15.19; Docket 95-19
The label shall be permanently affixed at a conspicuous location on the device; instruction manual or
pamphlet supplied to the user and be readily visible to the purchaser at the time of purchase.
However, when the device is so small wherein placement of the label with specified statement is not
practical, only the FCC ID must be displayed on the device per Section 15.19(a)(5). Please see
attachment for FCC ID label and label location.




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3.      DESCRIPTION of TEST
3.1. Evaluation Procedure
The measurement procedures described in the American National Standard for Procedures for
measuring ultra-wideband devices (ANSI C63.10-2013).
Deviation from measurement procedure…………………………….....................................None



3.2. AC Line Conducted Emissions
The line-conducted facility is located inside an 8'x4'x4' shielded enclosure. A 1m x 2m wooden table
80cm high is placed 40cm away from the vertical wall and 80cm away from the sidewall of the
shielded room. Two 10kHz-30MHz, 50Ω/50uH Line-Impedance Stabilization Networks (LISNs) are
bonded to the shielded room floor. Power to the LISNs is filtered by external high-current
high-insertion loss power line filters. These filters attenuate ambient signal noise from entering the
measurement lines. These filters are also bonded to the shielded enclosure.
The EUT is powered from one LISN and the support equipment is powered from the second LISN.
All interconnecting cables more than 1 meter were shortened to a 1 meter length by non-inductive
bundling (serpentine fashion) and draped over the back edge of the test table. All cables were at
least 40cm above the horizontal reference ground-plane. Power cables for support equipment were
routed down to the second LISN while ensuring that that cables were not draped over the second
LISN.
Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to
warm up to their normal operating condition. The RF output of the LISN was connected to the
receiver and exploratory measurements were made to determine the frequencies producing the
maximum emission from the EUT. The receiver was scanned from 150kHz to 30MHz. The detector
function was set to peak mode for exploratory measurements while the bandwidth of the analyzer
was set to 9kHz. The EUT, support equipment, and interconnecting cables were arranged and
manipulated to maximize each emission. Each emission was also maximized by varying: power lines,
the mode of operation or data exchange speed, or support equipment whichever determined the
worst-case emission. Once the worst case emissions have been identified, the one EUT cable
configuration/arrangement and mode of operation that produced these emissions were used for final
measurements on the same test site. The analyzer is set to CISPR quasi-peak and average
detectors with a 9kHz resolution bandwidth for final measurements.
An extension cord was used to connect to a single LISN which powered by EUT. The extension cord
was calibrated with LISN, the impedance and insertion loss are compliance with the requirements as
stated in ANSI C63.10-2013.




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3.3. Radiated Emissions
The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final
measurements and exploratory measurements, when necessary. The measurement area is
contained within the semi-anechoic chamber which is shielded from any ambient interference. For
measurements above 1GHz absorbers are arranged on the floor between the turn table and the
antenna mast in such a way so as to maximize the reduction of reflections. For measurements below
1GHz, the absorbers are removed. A MF Model 210SS turntable is used for radiated measurement.
It is a continuously rotatable, remote controlled, metallic turntable and 2 meters (6.56 ft.) in diameter.
The turn table is flush with the raised floor of the chamber in order to maintain its function as a
ground plane. An 80cm high PVC support structure is placed on top of the turntable.
For all measurements, the spectrum was scanned through all EUT azimuths and from 1 to 4 meter
receive antenna height using a broadband antenna from 30MHz up to the upper frequency shown in
15.33(b)(1) depending on the highest frequency generated or used in the device or on which the
device operates or tunes. For frequencies above 1GHz, linearly polarized double ridge horn
antennas were used. For frequencies below 30MHz, a calibrated loop antenna was used. When
exploratory measurements were necessary, they were performed at 1 meter test distance inside the
semi-anechoic chamber using broadband antennas, broadband amplifiers, and spectrum analyzers
to determine the frequencies and modes producing the maximum emissions. Sufficient time for the
EUT, support equipment, and test equipment was allowed in order for them to warm up to their
normal operating condition. The test set-up for frequencies below 1GHz was placed on top of the 0.8
meter high, 1 x 1.5 meter table; and test set-up for frequencies 1-40GHz was placed on top of the
1.5 meter high, 1 x 1.5 meter table. The EUT, support equipment, and interconnecting cables were
arranged and manipulated to maximize each emission. Appropriate precaution was taken to ensure
that all emissions from the EUT were maximized and investigated. The system configuration, clock
speed, mode of operation or video resolution, if applicable, turntable azimuth, and receive antenna
height was noted for each frequency found.
Final measurements were made in the semi-anechoic chamber using calibrated, linearly polarized
broadband and horn antennas. The test setup was configured to the setup that produced the worst
case emissions. The spectrum analyzer was set to investigate all frequencies required for testing to
compare the highest radiated disturbances with respect to the specified limits. The turntable
containing the EUT was rotated through 360 degrees and the height of the receive antenna was
varied 1 to 4 meters and stopped at the azimuth and height producing the maximum emission. Each
emission was maximized by changing the orientation of the EUT through three orthogonal planes
and changing the polarity of the receive antenna, whichever produced the worst-case emissions.
According to 3dB Beam-Width of horn antenna, the horn antenna should be always directed to the
EUT when rising height.




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4.    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 antenna of the Radio Controller is permanently attached.
    There are no provisions for connection to an external antenna.


Conclusion:
The Remote Controller unit complies with the requirement of §15.203.




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5.     TEST EQUIPMENT CALIBRATION DATE
Radiated Disturbance - AC1
Instrument                   Manufacturer Type No.      Asset No.       Cali. Interval Cali. Due Date

MXE EMI Receiver             Agilent        N9038A      MRTSUE06125 1 year              2018/08/03
Loop Antenna                 Schwarzbeck FMZB1519       MRTSUE06025 1 year              2017/12/21
Bilog Period Antenna         Schwarzbeck VULB9162       MRTSUE06022 1 year              2017/10/22
Broad-Band Horn Antenna      Schwarzbeck BBHA9120D      MRTSUE06171 1 year              2017/11/19
Broadband Coaxial Preamplifier Schwarzbeck BBV 9718     MRTSUE06106 1 year              2017/12/10
Broadband Horn Antenna       Schwarzbeck BBHA9170       MRTSUE06024 1 year              2018/04/25
Digitial Thermometer &
                             Minggao        ETH529      MRTSUE06170 1 year              2017/11/30
Hygrometer
Anechoic Chamber             RIKEN          Chamber-AC1 MRTSUE06213 1 year              2018/05/10

Conducted Test Equipment - TR3

Instrument                   Manufacturer Type No.      Asset No.       Cali. Interval Cali. Due Date
Spectrum Analyzer            Agilent        N9020A      MRTSUE06106 1 year              2018/04/25
Temperature/Humidity Meter   Yuhuaze        HTC-2       MRTSUE06184 1 year              2017/12/22


Software                          Version                           Function
e3                                V8.3.5                            EMI Test Software




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6.    MEASUREMENT UNCERTAINTY
Where relevant, the following test uncertainty levels have been estimated for tests performed on the
EUT as specified in CISPR 16-4-2. This uncertainty represents an expanded uncertainty expressed
at approximately the 95% confidence level using a coverage factor of k = 2.


Radiated Emission Measurement - AC1
     Measuring Uncertainty for a Level of Confidence of 95% (U=2Uc(y)):
     9kHz ~ 1GHz: ± 4.18dB
     1GHz ~ 40GHz: ± 4.76dB




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7.    TEST RESULT
7.1. Summary
Product Name:              Remote Controller
FCC ID:                    2ALS8-NBPLUS
FCC Classification:        Low Power Communication Transmitter (DXX)


         FCC              Test Description           Test Limit             Test         Test       Reference
     Section(s)                                                         Condition       Result
FCC Section             Occupied
                                               N/A                    Conducted        Pass        Section 7.2
15.215(c)               Bandwidth
                        Radiated Spurious
FCC Section
                        Emissions              Refer to Section 7.3                    Pass        Section 7.3
15.209
                        below 960 MHz
                                                                      Radiated
                        Radiated Spurious
FCC Section
                        Emissions above        Refer to Section 7.3                    Pass        Section 7.3
15.209
                        960 MHz
FCC Section             Antenna
                                               N/A                    N/A              Complies    Section 4
15.203                  Requirement
FCC Section             Restricted Bands
                                               Refer to Section 7.4   Radiated         Pass        Section 7.4
15.205                  of Operation
Notes:
1)   The analyzer plots shown in this section were all taken with a correction table loaded into the analyzer.
     The correction table was used to account for the losses of the cables and attenuators used as part of the
     system to connect the EUT to the analyzer at all frequencies of interest.
2)   All modes of operation and data rates were investigated. For radiated emission test, every axis (X, Y, Z)
     was also verified and showed the worst axis in the test setup photos. The test results shown in the
     following sections represent the worst case emissions.




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7.2. Occupied Bandwidth Measurement

7.2.1.Test Limit

N/A

7.2.2.Test Procedure used

ANSI C63.10-2013, section 10.1

7.2.3.Test Setting

1. The Spectrum’s automatic bandwidth measurement capability was used to perform the 20dB

   bandwidth measurement. The “X” dB bandwidth parameter was set to X = 20. The bandwidth

   measurement was not influenced by any intermediate power nulls in the fundamental emission.

2. Set RBW = 100 kHz

3. VBW ≥ 3 × RBW

4. Detector = Peak

5. Trace mode = max hold

6. Sweep = auto couple

7. Allow the trace was allowed to stabilize

7.2.4.Test Setup




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7.2.5.Test Result

Product               Remote Controller                 Temperature           25°C
Test Engineer         Lewis Huang                       Relative Humidity     60%
Test Site             TR3                               Test Date             2017/09/23
Test Item             20dB Occupied Bandwidth


            Frequency                     20dB Bandwidth                             Result
             (MHz)                            (MHz)
             6489.6                             821.0                                Pass


                                     20dB Occupied Bandwidth




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7.3. Radiated Spurious Emission Measurements

7.3.1.Test Limit

                            FCC Part 15 Subpart C Paragraph 15.209
          Frequency                       Field Strength                  Measured Distance
            [MHz]                             [uV/m]                           [Meters]
         0.009 - 0.490                     2400/F (kHz)                           300
         0.490 - 1.705                    24000/F (kHz)                           30
          1.705 - 30                            30                                30
            30 - 88                             100                                3
           88 - 216                             150                                3
           216 - 960                            200                                3
          Above 960                             500                                3

Note: For above 1GHz limit, we used the 1m distance, and added the factor - 20*log(3m/1m).

7.3.2.Test Procedure Used

ANSI C63.10-2013, sections 10.2, 10.3

7.3.3.Test Setting

Peak Field Strength Measurements

Analyzer center frequency was set to the frequency of the radiated spurious emission of interest

RBW = as specified in Table 1

VBW = 3MHz

Detector = peak

Sweep time = auto couple

Trace mode = max hold

Trace was allowed to stabilize




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                              Table 1 - RBW as a function of frequency

                    Frequency                                              RBW
                   9 ~ 150 kHz                                        200 ~ 300 Hz
                  0.15 ~ 30 MHz                                         9 ~ 10 kHz
                  30 ~ 1000 MHz                                       100 ~ 120 kHz
                   > 1000 MHz                                             1 MHz


Average Field Strength Measurements

Analyzer center frequency was set to the frequency of the radiated spurious emission of interest

RBW = 1MHz

VBW ≥ 1/T

De As an alternative, the instrument may be set to linear detector mode. Ensure that video filtering is

applied in linear voltage domain (rather than in a log or dB domain). Some instruments require linear

display mode in order to accomplish this. Others have a setting for Average-VBW Type, which can

be set to “Voltage” regardless of the display mode

Detector = Peak

Sweep time = auto

Trace mode = max hold

Allow max hold to run for at least 50 times (1/duty cycle) traces




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7.3.4.Test Setup

9kHz ~ 30MHz Test Setup:




30MHz ~ 1GHz Test Setup:




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1GHz ~ 40GHz Test Setup:




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7.3.5.Test Result

Product             Remote Controller                   Temperature          26°C
Test Engineer       Roy Cheng                           Relative Humidity    56%
Test Site           AC1                                 Test Date            2017/08/06
Remark:             Radiated Emission below 1000MHz Test Result Summary (3m Limit)


  Frequency            Measure Level            Limit            Margin         Polarity      Verdict
    (MHz)                 (dBμV/m)            (dBμv/m)               (dB)
    39.70                  15.85               40.00                -24.15     Horizontal      Pass
    161.92                 19.32               43.50                -24.18     Horizontal      Pass
    242.92                 18.08               46.00                -27.92     Horizontal      Pass
    296.75                 15.47               46.00                -30.53     Horizontal      Pass
    682.33                 23.86               46.00                -22.14     Horizontal      Pass
    845.77                 24.75               46.00                -21.25     Horizontal      Pass
    107.60                 15.98               43.50                -27.52      Vertical       Pass
    161.92                 16.32               43.50                -27.18      Vertical       Pass
    189.08                 23.04               43.50                -20.47      Vertical       Pass
    242.92                 23.07               46.00                -22.93      Vertical       Pass
    296.75                 22.46               46.00                -23.55      Vertical       Pass
    825.89                 24.59               46.00                -21.41      Vertical       Pass
Note 1: The Margin = Equivalent field strength – Limit.
Note 2: The detail test plots have been showed as below.




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Site: AC1                                               Time: 2017/08/06 - 17:08
Limit: FCC_Part15.209_RE(3m)                            Engineer: Will Yan
Probe: VULB 9168_20-2000MHz                             Polarity: Horizontal
EUT: Remote Controller                                  Power: By Battery
Note: Transmit with UWB function




No   Flag   Mark   Frequency    Measure     Reading       Over Limit    Limit       Factor      Type
                   (MHz)        Level       Level         (dB)          (dBuV/m)
                                (dBuV/m)    (dBuV)
1                  39.700       15.849      1.291         -24.151       40.000      14.558      QP
2                  161.920      19.321      4.298         -24.179       43.500      15.023      QP
3                  242.915      18.079      5.292         -27.921       46.000      12.787      QP
4                  296.750      15.470      1.298         -30.530       46.000      14.172      QP
5                  682.325      23.864      2.198         -22.136       46.000      21.666      QP
6           *      845.770      24.752      1.299         -21.248       46.000      23.453      QP
Note 1: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB)
Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m)
Note 2: The test trace is same as the ambient noise and the amplitude of the emissions are attenuated more
than 20dB below the permissible (the test frequency range: 9kHz ~ 30MHz), therefore no data appear in the
report.




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Site: AC1                                               Time: 2017/08/06 - 17:12
Limit: FCC_Part15.209_RE(3m)                            Engineer: Will Yan
Probe: VULB 9168_20-2000MHz                             Polarity: Vertical
EUT: Remote Controller                                  Power: By Battery
Note: Transmit with UWB function




No   Flag   Mark   Frequency    Measure     Reading       Over Limit     Limit       Factor      Type
                   (MHz)        Level       Level         (dB)           (dBuV/m)
                                (dBuV/m)    (dBuV)
1                  107.600      15.981      4.219         -27.519        43.500      11.762      QP
2                  161.920      16.321      1.298         -27.179        43.500      15.023      QP
3           *      189.080      23.035      11.298        -20.465        43.500      11.737      QP
4                  242.915      23.071      10.284        -22.929        46.000      12.787      QP
5                  296.750      22.455      8.283         -23.545        46.000      14.172      QP
6                  825.885      24.586      1.298         -21.414        46.000      23.288      QP
Note 1: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB)
Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m)
Note 2: The test trace is same as the ambient noise and the amplitude of the emissions are attenuated more
than 20dB below the permissible (the test frequency range: 9kHz ~ 30MHz), therefore no data appear in the
report.




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Product           Remote Controller                 Temperature         26°C
Test Engineer     Roy Cheng                         Relative Humidity   56%
Test Site         AC1                               Test Date           2017/08/06
Remark:           Radiated Emission above 1000MHz Test Result Summary (1m Limit)


Frequency (MHz)    Reading      Factor   Measure         Limit     Margin      Detector Polarization
                     Level       (dB)     Level       (dBμV/m)      (dB)
                    (dBμV)               (dBμV/m)
1000MHz ~ 1610MHz
     1344.8            42.9      -7.9      35.0          83.5       -48.5        PK      Horizontal
     1008.1            37.7     -11.2      26.5          63.5       -37.0        AV      Horizontal
     1343.5            43.4      -7.9      35.5          83.5       -48.0        PK       Vertical
     1335.4            32.1      -8.0      24.1          63.5       -39.4        AV       Vertical
1610MHz ~ 1990MHz
     1753.1            41.8      -7.2      34.6          83.5       -48.9        PK      Horizontal
     1964.9            29.0      -5.9      23.1          63.5       -40.4        AV      Horizontal
     1850.2            42.0      -6.6      35.4          83.5       -48.1        PK       Vertical
     1960.0            29.1      -6.0      23.1          63.5       -40.4        AV       Vertical
1990MHz ~ 3100MHz
     2252.0            39.7      -3.4      36.3          83.5       -47.2        PK      Horizontal
     2410.7            29.2      -3.8      25.4          63.5       -38.1        AV      Horizontal
     2227.0            40.6      -3.5      37.1          83.5       -46.4        PK       Vertical
     2227.0            34.3      -3.5      30.8          63.5       -32.7        AV       Vertical
3100MHz ~ 10600MHz
     6647.5            56.2      6.0       62.2          83.5       -21.3        PK      Horizontal
     6565.0            57.4      6.0       63.4          83.5       -20.1        PK       Vertical
10600MHz ~ 18000MHz
    14525.7            43.6      7.9       51.5          83.5       -32.0        PK      Horizontal
    14636.7            33.1      7.9       41.0          63.5       -22.5        AV      Horizontal
    14614.5            45.3      7.9       53.2          83.5       -30.3        PK       Vertical
    14629.3            33.3      7.9       41.2          63.5       -22.3        AV       Vertical




FCC ID: 2ALS8-NBPLUS                                                          Page Number: 22 of 24


                                                                        Report No.: 1708RSU00101


Frequency (MHz)      Reading      Factor    Measure       Limit      Margin   Detector Polarization
                      Level        (dB)      Level      (dBμV/m)      (dB)
                     (dBμV)                (dBμV/m)
 18000MHz ~ 40000MHz
     39989.0           38.4        19.0       57.4         83.5       -26.1       PK    Horizontal
     39989.0           30.7        9.4        40.1         63.5       -23.4       AV    Horizontal
     18176.0           40.3        9.9        50.2         83.5       -33.3       PK      Vertical
     18176.0           30.8        9.4        40.2         63.5       -23.3       AV      Vertical
Note 1: Measure Level (dBμV/m) = Reading Level (dBμV) + Factor (dB)
Factor (dB) = Cable Loss (dB) + Antenna Factor (dB/m) - Pre_Amplifier Gain (dB)
Note 2: The duty cycle is 5.14%, PK measurement level less than average limit, so fundamental
average level is not be recorded. Any measurement level of unwanted emission, exclude harmonic,
are used PK & Average detector showing in the table.




FCC ID: 2ALS8-NBPLUS                                                          Page Number: 23 of 24


                                                                       Report No.: 1708RSU00101



8.   CONCLUSION
The data collected relate only the item(s) tested and show that the Remote Controller FCC ID:

2ALS8-NBPLUS is in compliance with Part 15 of the FCC Rules.




                                            The End

FCC ID: 2ALS8-NBPLUS                                                        Page Number: 24 of 24



Document Created: 2017-09-26 13:50:58
Document Modified: 2017-09-26 13:50:58

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