SMT700 Portable Tablet with WLAN, Bluetooth and ANT+ Test Report A3LSMT700 ANT+ Reportm Samsung Electronics Co Ltd

Samsung Electronics Co Ltd Portable Tablet with WLAN, Bluetooth and ANT+

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FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 1 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
Applicant Name: Date of Testing:
Samsung Electronics, Co. Ltd. 4/11 - 5/7/2014
129, Samsung-ro, Maetan dong, Test Site/Location:
Yeongtong-gu, Suwon-si PCTEST Lab. Columbia, MD, USA
Gyeonggi-do 443-742, Korea Test Report Serial No.:
0Y1404110755.A3L
FCC ID: A3LSMT700
APPLICANT: Samsung Electronics, Co. Ltd.
Application Type: Certification
Model(s): SM-T700
EUT Type: Portable Tablet
Frequency Range: 2402 – 2480MHz
FCC Classification: Low Power Communications Device Transmitter (DXX)
FCC Rule Part(s): Part 15 Subpart C (15.249)
Test Procedure(s): ANSI C63.10-2009
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 ANSI C63.10-2009. Test results reported herein relate
only to the item(s) tested.
I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are
correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for
the qualifications of all persons taking them.
PCTEST ENGINEERING LABORATORY, INC.
7185 Oakland Mills Road, Columbia, MD 21046 USA
Tel. 410.290.6652 / Fax 410.290.6654
http://www.pctestlab.com
MEASUREMENT REPORT
FCC PART 15.249 ANT+
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
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TABLE OF CONTENTS
FCC PART 15.249 MEASUREMENT REPORT .................................................................................................. 3
1.0INTRODUCTION ...................................................................................................................................... 4
1.1SCOPE ........................................................................................................................................................... 4
1.2PCTEST TEST LOCATION ............................................................................................................................ 4
2.0PRODUCT INFORMATION ..................................................................................................................... 5
2.1EQUIPMENT DESCRIPTION......................................................................................................................... 5
2.2DEVICE CAPABILITIES ................................................................................................................................. 5
2.3TEST CONFIGURATION ............................................................................................................................... 5
2.4EMI SUPPRESSION DEVICE(S)/MODIFICATIONS ...................................................................................... 5
2.5LABELING REQUIREMENTS ........................................................................................................................ 5
3.0DESCRIPTION OF TEST ........................................................................................................................ 6
3.1EVALUATION PROCEDURE ......................................................................................................................... 6
3.2AC LINE CONDUCTED EMISSIONS ............................................................................................................. 6
3.3RADIATED EMISSIONS ................................................................................................................................ 7
4.0ANTENNA REQUIREMENTS .................................................................................................................. 8
5.0TEST EQUIPMENT CALIBRATION DATA .............................................................................................. 9
6.0TEST RESULTS .................................................................................................................................... 10
6.1SUMMARY ................................................................................................................................................... 10
6.2OCCUPIED BANDWIDTH MEASUREMENT ............................................................................................... 11
6.3DUTY CYCLE CALCULATION..................................................................................................................... 12
6.4FUNDAMENTAL FIELD STRENGTH LEVEL MEASUREMENT .................................................................. 14
6.5RADIATED SPURIOUS EMISSION MEASUREMENTS .............................................................................. 15
6.6RADIATED RESTRICTED BAND EDGE MEASUREMENTS ...................................................................... 18
6.7LINE CONDUCTED MEASUREMENT DATA .............................................................................................. 20
7.0CONCLUSION ....................................................................................................................................... 22
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
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MEASUREMENT REPORT
FCC Part 15.249
§ 2.1033 General Information
APPLICANT: Samsung Electronics, Co. Ltd.
APPLICANT ADDRESS: 129, Samsung-ro, Maetan dong,
Yeongtong-gu, Suwon-si, Gyeonggi-do 443-742, Korea
TEST SITE: PCTEST ENGINEERING LABORATORY, INC.
TEST SITE ADDRESS: 7185 Oakland Mills Road, Columbia, MD 21046 USA
FCC RULE PART(S): Part 15 Subpart C (15.249)
MODEL: SM-T700
FCC ID: A3LSMT700
Test Device Serial No.: 10APR-2, 10APR-3 Production Pre-Production Engineering
FCC CLASSIFICATION: Low Power Communications Device Transmitter (DXX)
DATE(S) OF TEST: 4/11 - 5/7/2014
TEST REPORT S/N: 0Y1404110755.A3L
Test Facility / Accreditations
Measurements were performed at PCTEST Engineering Lab located in Columbia, MD 21046, U.S.A.
PCTEST facility is an FCC registered (PCTEST Reg. No. 159966) test facility with the
site description report on file and has met all the requirements specified in Section 2.948
of the FCC Rules and Industry Canada (2451B-1).
PCTEST Lab is accredited to ISO 17025 by U.S. National Institute of Standards and
Technology (NIST) under the National Voluntary Laboratory Accreditation Program
(NVLAP Lab code: 100431-0) in EMC, FCC and Telecommunications.
PCTEST Lab is accredited to ISO 17025-2005 by the American Association for
Laboratory Accreditation (A2LA) in Specific Absorption Rate (SAR) testing, Hearing Aid
Compatibility (HAC) testing, CTIA Test Plans, and wireless testing for FCC and Industry
Canada Rules.
PCTEST Lab is a recognized U.S. Conformity Assessment Body (CAB) in EMC and
R&TTE (n.b. 0982) under the U.S.-EU Mutual Recognition Agreement (MRA).
PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC
Guide 65 by the American National Standards Institute (ANSI) in all scopes of FCC Rules
and Industry Canada Standards (RSS).
PCTEST facility is an IC registered (2451B-1) test laboratory with the site description on
file at Industry Canada.
PCTEST is a CTIA Authorized Test Laboratory (CATL) for AMPS, CDMA, and EvDO
wireless devices and for Over-the-Air (OTA) Antenna Performance testing for AMPS,
CDMA, GSM, GPRS, EGPRS, UMTS (W-CDMA), CDMA 1xEVDO, and CDMA 1xRTT.
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
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1.0 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 PCTEST Test Location
The map below shows the location of the PCTEST LABORATORY, its proximity to the FCC Laboratory, the
Columbia vicinity, the Baltimore-Washington Internt’l (BWI) airport, the city of Baltimore and the Washington,
DC area. (See Figure 1-1).
These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at
7185 Oakland Mills Road, Columbia, MD 21046. The site coordinates are 39o 10’23” N latitude and 76o 49’50”
W longitude. The facility is 0.4 miles North of the FCC laboratory, and the ambient signal and ambient signal
strength are approximately equal to those of the FCC laboratory. 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
February 15, 2012.
Figure 1-1. Map of the Greater Baltimore and Metropolitan Washington, D.C. area
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
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0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
2.0 PRODUCT INFORMATION
2.1 Equipment Description
The Equipment Under Test (EUT) is the Samsung Portable Tablet FCC ID: A3LSMT700. The test data
contained in this report pertains only to the emissions due to the EUT’s ANT+ transmitter.
2.2 Device Capabilities
This device contains the following capabilities:
802.11a/b/g/n/ac WLAN, 802.11a/n/ac UNII, Bluetooth (1x, EDR, LE), ANT+
Note: This device is capable of operating in hopping and non-hopping mode. The EUT can hop between 79
different channels in the 2400 – 2483.5MHz band.
2.3 Test Configuration
The Samsung Portable Tablet FCC ID: A3LSMT700 was tested per the guidance of ANSI C63.10-2009. See
Sections 3.2, 3.3, and 6.1 of this test report for a description of the AC line conducted emissions, radiated
emissions, and antenna port conducted emissions test setups, respectively.
2.4 EMI Suppression Device(s)/Modifications
No EMI suppression device(s) were added and no modifications were made during testing.
2.5 Labeling Requirements
Per 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 trade name and
FCC ID must be displayed on the device per Section 15.19(a)(5). Please see attachment for FCC ID label and
label location.
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
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3.0 DESCRIPTION OF TEST
3.1 Evaluation Procedure
The measurement procedure described in the American National Standard for Testing Unlicensed Wireless
Devices (ANSI C63.10-2009) was used in the measurement of the Samsung Portable Tablet
FCC ID: A3LSMT700.
Deviation from measurement procedure………………………………………….....................................None
3.2 AC Line Conducted Emissions
The line-conducted facility is located inside a 10'x16'x9' shielded enclosure. The shielded enclosure is
manufactured by ETS Lindgren RF Enclosures. The shielding effectiveness of the shielded room is in
accordance with MIL-Std-285 or NSA 65-5. A 1m x 1.5m 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, 50/50H 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. The external power line filter is an ETS
Lindgren Model LPRX-4X30 (100dB Attenuation, 14kHz-18GHz) and the two EMI/RFI filters are ETS Lindgren
Model LRW-2030-S1 (100dB Minimum Insertion Loss, 14kHz – 10GHz). 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. If the EUT
is a DC-powered device, power will be derived from the source power supply it normally will be powered from
and this supply line(s) will be connected to 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 groundplane. 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 spectrum analyzer and
exploratory measurements were made to determine the frequencies producing the maximum emission from
the EUT. The spectrum was scanned from 150kHz to 30MHz with a spectrum analyzer. The detector function
was set to peak mode for exploratory measurements while the bandwidth of the analyzer was set to 10kHz.
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 resolution,
clock or data exchange speed, scrolling H pattern to the EUT and/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 is 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.
Line conducted emissions test results are shown in Section 6.7. Automated test software was used to perform
the AC line conducted emissions testing. Automated measurement software utilized is Rohde & Schwarz
EMC32, Version 8.51.0.
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
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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. The test site inside the chamber is a 6m x
5.2m elliptical, obstruction-free area in accordance with Clause 5, Figure 5.7 of ANSI C63.4-2009. 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. An ETS Lindgren Model 2188 raised 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. A 78cm high
PVC support structure is placed on top of the turntable. A ¾” (~1.9cm) sheet of high density polyethylene is
used as the table top and is placed on top of the PVC supports to bring the total height of the table to 80cm.
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 was placed on top of the 0.8 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 varying: the mode of operation or
resolution, clock or data rate, scrolling H pattern to the EUT and/or support equipment, and changing the
polarity of the receive antenna, whichever produced the worst-case emissions.
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4.0 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 Samsung Portable Tablet are permanently attached.
There are no provisions for connection to an external antenna.
Conclusion:
The Samsung Portable Tablet FCC ID: A3LSMT700 unit complies with the requirement of §15.203.
Ch. Frequency (MHz)
00 2402
: :
39 2441
: :
78 2480
Table 4-1. Frequency/ Channel Operations
FCC ID: A3LSMT700
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5.0 TEST EQUIPMENT CALIBRATION DATA
Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST).
Manufacturer Model De scription Cal Da te Cal Interva l Cal Due Serial Numbe r
‐ BT2BluetoothCableSet1/27/2014 Annual1/27/2015 N/A
‐ RE1RadiatedEmissionsCableSet(UHF/EHF)3/5/2014 Annual3/5/2015 N/A
Agilent8447DBroadbandAmplifier5/31/2013 Annual5/31/2014 2443A01900
AgilentN9020AMXASignalAnalyzer10/29/2013 Annual10/29/2014 US46470561
AgilentN9030APXASignalAnalyzer(44GHz)1/17/2014 Annual1/17/2015 MY52350166
ComPowerAL1309kHz‐30MHzLoopAntenna6/26/2013 Annual6/26/2014 121034
ETSLindgren3117 118GHzDRGHorn(Medium)7/24/2013 Biennial7/24/2015 125518
ETSLindgren3160091826.5GHzStandardGainHorn5/30/2012 Biennial5/30/2014 135427
MiniCircuitsVHF3100+HighPassFilter1/27/2014 Annual1/27/2015 30841
MiniCircuitsVHF3100+HighPassFilter1/29/2014 Annual1/29/2015 31144
Rohde&SchwarzESU40EMITestReceiver(40GHz)1/24/2014 Annual1/24/2015 100348
Rohde&SchwarzTSPR18118GHzPreAmplifier5/31/2013 Annual5/31/2014 100071
Rohde&SchwarzTSPR261826.5GHzPreAmplifier5/31/2013 Annual5/31/2014 100040
SolarElectronics801250R24BNCLineImpedanceStabilizationNetwork6/20/2013 Biennial6/20/2015 310233
SunolJB5BiLogAntenna(30M‐5GHz)1/28/2014 Biennial1/28/2016 A051107
Table 5-1. Annual Test Equipment Calibration Schedule
FCC ID: A3LSMT700
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6.0 TEST RESULTS
6.1 Summary
Company Name: Samsung Electronics, Co. Ltd.
FCC ID: A3LSMT700
Method/System: Frequency Hopping Spread Spectrum (FHSS)
Number of Channels: 79
FCC Part
Section(s) Test Description Test Limit Test
Condition
Test
Result Reference
T
RANSMITTER MODE (Tx)
2.1049 Occupied Bandwidth N/A CONDUCTED PASS Section 6.2
15.35(c) Duty Cycle Calculation N/A
RADIATED
N/A Section 6.3
15.249(a)(e) Fundamental Field Strength
Level < 50 mV/m PASS Section 6.4
15.249(a)(e) Harmonic Field Strength
Level < 500 V/m PASS Section 6.5
15.205, 15.209,
15.249(d)(e)
General Field Strength Limits
(Restricted Bands and
Radiated Emission Limits)
< 15.209 limits (RSS-210
table 3 limits) or 50dB below
the level of the fundamental
PASS Sections 6.5,
6.6
15.207 AC Conducted Emissions
150kHz – 30MHz
< FCC 15.207 limits or
< RSS-Gen table 2 limits
LINE
CONDUCTED PASS Section 6.7
Table 6-1. Summary of Test Results
Notes:
1) All modes of operation were investigated. The test results shown in the following sections represent the
worst case emissions.
2) All antenna port conducted emissions testing was performed on a test bench with the antenna port of the
EUT connected to the spectrum analyzer through calibrated cables, attenuators, and couplers.
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6.2 Occupied Bandwidth Measurement
§2.1049
The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper
frequency limits, the mean powers radiated are each equal to 0.5 percent of the total mean power radiated by
a given emission shall be measured. The spectrum analyzers’ “occupied bandwidth” measurement function
was used to record the occupied bandwidth.
2441 39 ANT+
(non-hop)
1020.0
Frequenc
y
[MHz]
Channel
No.
Operatin
g
Mode
Measured
Bandwidth
[kHz]
Table 6-2. Occupied Bandwidth Measurement
Figure 6-1. Test Instrument & Measurement Setup
Plot 6-1. Occupied Bandwidth Plot (ANT+ – Ch. 39)
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6.3 Duty Cycle Calculation
§15.35(c)
Per FCC Part 15.35(c), an average radiated field strength can be determined by applying a duty cycle
correction factor to a measured peak radiated field strength level. The duty cycle correction factor is
determined based on the worst case operation over a 100ms time period on any given channel. Two plots are
included below to determine the appropriate duty cycle correction factor.
In Plot 6-2 below, it is shown that the pulse width for one transmission burst of the ANT+ transmitter while
operating in non-hopping mode is 243.4s.
Plot 6-2. Pulse Width Measurement
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Duty Cycle Calculation
§15.35(c)
In Plot 6-3 below, a video trigger is used to determine the maximum number of times the transmitter operates
at maximum power over a 100ms period.
Plot 6-3. Worst Case 100ms Operation
Since it is determined that the transmitter burst appears a maximum of 2 times over a 100ms window with a
pulse width of 243.4s, then the appropriate duty cycle correction factor is determined from the following
formula, based on 15.35(c):
DCCF = 20log10 (number of hits x (worst case 100ms operation / 100ms))
= 20log10 (2 x (0.2434ms/100ms)) = -46.25dB
DCCF = -46.25dB
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6.4 Fundamental Field Strength Level Measurement
§15.249(a)(e)
Measurement is made while the EUT is operating in non-hopping transmission mode. The field strengths
shown below were measured using a spectrum analyzer. Peak field strength measurements are performed in
the analyzers’ swept spectrum mode using a peak detector with RBW = 3MHz and VBW RBW. Average field
strength data is determined by applying the duty cycle correction factor (DCCF) found in Section 6.3 to the
measured peak field strength values.
The maximum permissible average field strength level is 50mV/m (93.98dB
V/m). The maximum
permissible peak field strength level is 500mV/m (113.98 dB
V/m).
2402.00 -50.49 Peak H H 31.94 88.45 -46.25 42.20 93.98 -51.78
2402.00 -50.49 Peak H H 31.94 88.45 0.00 88.45 113.98 -25.53
2441.00 -45.92 Peak H H 32.03 93.11 -46.25 46.86 93.98 -47.12
2441.00 -45.92 Peak H H 32.03 93.11 0.00 93.11 113.98 -20.87
2480.00 -44.55 Peak H H 32.15 94.60 -46.25 48.35 93.98 -45.63
2480.00 -44.55 Peak H H 32.15 94.60 0.00 94.60 113.98 -19.38
EUT
Pol.
[H/H2/V]
A
FCL
[dB]
Field
Strength
[dBμV/m]
Duty Cycle
Correction
[dB]
Corrected
Field
Strength
[
dB
μ
V/m
]
Limit
[dBμV/m]
Margin
[dB]
Frequency
[MHz]
Analyzer
Level
[dBm]
Detector
Ant.
Pol.
[H/V]
Table 6-3. Field Strength Measurements
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6.5 Radiated Spurious Emission Measurements
§15.205 §15.209 §15.249 (d)(e)
Frequency Field Strength
[V/m]
Measured Distance
[Meters]
0.009 – 0.490 MHz 2400/F (kHz) 300
0.490 – 1.705 MHz 24000/F (kHz) 30
1.705 – 30.00 MHz 30 30
30.00 – 88.00 MHz 100 3
88.00 – 216.0 MHz 150 3
216.0 – 960.0 MHz 200 3
Above 960.0 MHz 500 3
Table 6-4. Radiated Limits
Sample Calculation
o Avg. Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m] + Duty Cycle Correction [dB]
o Pk. Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
o AFCL
[dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin
[dB] = Field Strength Level [dBV/m] – Limit [dBV/m]
Test Notes
1. The spectrum is measured from 9kHz to the 10th harmonic and the worst-case emissions are reported.
There were no non-harmonic emissions detected whose levels were within 20dB of the applicable limits so
only harmonic emissions data is shown in this section.
2. All emissions lying in restricted bands specified in §15.205 are below the limit shown in Table 6-4. Per
15.249(d), the radiated emissions limits from 15.209 were used since they were less than the limit of 50dB
of attenuation from the measured fundamental field strength level.
3. Peak measurements > 1GHz using RBW = 1MHz and VBW = 3MHz.
4. The antenna is manipulated through typical positions, polarity and length during the tests. The EUT is
manipulated through three orthogonal planes.
5. The EUT is supplied with nominal AC voltage and/or a new/fully-recharged battery.
6. Since the peak measurements are shown to comply with the average limits, no average spurious
emissions measurements were recorded.
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 16 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
Radiated Spurious Emission Measurements
§15.205 §15.209 §15.249 (d)(e)
Worst Case Mode: ANT+ (non-hopping)
Measurement Distance: 3 Meters
Operating Frequency: 2402MHz
Channel: 0
4804.00 -108.27 Peak H H -46.25 41.76 -5.76 53.98 -59.74
4804.00 -108.27 Peak H H 0.00 41.76 40.49 73.98 -33.49
12010.00 -106.26 Peak H H -46.25 51.53 6.02 53.98 -47.96
12010.00 -106.26 Peak H H 0.00 51.53 52.27 73.98 -21.71
Detector
Ant.
Pol.
[H/V]
A
FCL
[dB]
Field
Strength
[dBμV/m]
Analyzer
Level
[dBm]
EUT
Pol.
[H/H2/V]
Limit
[dBμV/m]
Margin
[dB]
Dut
y
C
y
cle
Correction
[dB]
Frequency
[MHz]
Table 6-5. Radiated Measurements
Worst Case Mode: ANT+ (non-hopping)
Measurement Distance: 3 Meters
Operating Frequency: 2441MHz
Channel: 39
4882.00 -107.57 Peak H H -46.25 42.38 -4.44 53.98 -58.42
4882.00 -107.57 Peak H H 0.00 42.38 41.81 73.98 -32.17
7323.00 -107.94 Peak H H -46.25 43.88 -3.31 53.98 -57.29
7323.00 -107.94 Peak H H 0.00 43.88 42.94 73.98 -31.04
12205.00 -105.95 Peak H H -46.25 52.60 7.41 53.98 -46.57
12205.00 -105.95 Peak H H 0.00 52.60 53.66 73.98 -20.32
Ant.
Pol.
[H/V]
Limit
[dBμV/m]
A
FCL
[dB]
EUT
Pol.
[H/H2/V]
Margin
[dB]
Field
Strength
[dBμV/m]
Dut
y
C
y
cle
Correction
[dB]
Frequency
[MHz]
Analyzer
Level
[dBm]
Detector
Table 6-6. Radiated Measurements
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 17 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
Radiated Spurious Emission Measurements
§15.205 §15.209 §15.249 (d)(e)
Worst Case Mode: ANT+ (non-hopping)
Measurement Distance: 3 Meters
Operating Frequency: 2480MHz
Channel: 78
4960.00 -107.07 Peak H H -46.25 42.05 -4.28 53.98 -58.26
4960.00 -107.07 Peak H H 0.00 42.05 41.97 73.98 -32.01
7440.00 -107.62 Peak H H -46.25 43.96 -2.91 53.98 -56.89
7440.00 -107.62 Peak H H 0.00 43.96 43.34 73.98 -30.64
12400.00 -105.92 Peak H H -46.25 54.69 9.52 53.98 -44.46
12400.00 -105.92 Peak H H 0.00 54.69 55.77 73.98 -18.21
EUT
Pol.
[H/H2/V]
Margin
[dB]
Field
Strength
[dBμV/m]
A
FCL
[dB]
Dut
y
C
y
cle
Correction
[dB]
Limit
[dBμV/m]
Frequency
[MHz]
Analyzer
Level
[dBm]
Detector
Ant.
Pol.
[H/V]
Table 6-7. Radiated Measurements
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 18 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
6.6 Radiated Restricted Band Edge Measurements
§15.205 §15.209 §15.249 (d)
The radiated restricted band edge measurements are measured with an EMI test receiver connected to the
receive antenna while the EUT is transmitting. Two different amplitude offsets were used depending on
whether peak or average measurements were measured. The average measurements use a duty cycle
correction factor (DCCF).
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss) – Preamplifier Gain + DCCF
Worst Case Mode: ANT+ (non-hopping)
Measurement Distance: 3 Meters
Operating Frequency: 2480MHz
Back Cover Standard
Channel: 78
Att 0 dB
*
A
PS
3DB
RBW 1 MHz
AC
*
1 PK
MAXH
*
VBW 10 kHz
SWT 5 msRef 74.3 dBµV
Offset -32.7 dB
LVL
Center 2.4835 GHz Span 25 MHz2.5 MHz/
-20
-10
0
10
20
30
40
50
60
70
SWP 100 of 100
1
Marker 1 [T1 ]
5.75 dBµV
2.483500000 GHz
D1 53.979 dBµV
Date: 28.APR.2014 20:15:45
Plot 6-4. Radiated Restricted Upper Band Edge Measurement (Average)
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 19 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
Radiated Restricted Band Edge Measurements
§15.205 §15.209 §15.249 (d)
The amplitude offset shown in the following plots for peak measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss) – Preamplifier Gain
Ref 117.7 dBµV Att 0 dB
*
*
Offset 10.7 dB
A
LVL
P
S
3DB
RBW 1 MHz
VBW 3 MHz
SWT 2.5 ms
AC
*
Center 2.4835 GHz Span 25 MHz2.5 MHz/
1
P
K
MAX
H
20
30
40
50
60
70
80
90
100
110
SWP 100 of 100
1
Marker 1 [T1 ]
54.92 dBµV
2.483500000 GHz
D1 73.979 dBµV
Date: 28.APR.2014 20:14:03
Plot 6-5. Radiated Restricted Upper Band Edge Measurement (Peak)
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 20 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
6.7 Line Conducted Measurement Data
§15.207
0
5
10
15
20
25
30
35
40
45
50
55
60
65
70
75
80
150k 300 400 500 800 1M 2M 3M 4M 5M 6 8 10M 20M 30M
Level in dBµV
Frequency in Hz
FCC Part 15 Class B Voltage on Mains QP.LimitLine FCC Part 15 Class B Voltage on Mains AV.LimitLine Preview Result 1-PK+
Final Result 1-QPK Final Result 2-AVG
FCC Part 15 Class B Voltage on Mains QP
FCC Part 15 Class B Voltage on Mains AV
Plot 6-6. Line-Conducted Test Plot (L1)
Frequency Corr. QuasiPeak Limit Margin Average Limit Margin
MHz dB dV dV dB dBµV dBµV dB
0.724 L1 0.1 33.20 56.00 22.80 14.40 46.00 31.60
1.100 L1 0.1 30.80 56.00 25.20 15.10 46.00 30.90
1.543 L1 0.1 28.00 56.00 28.00 13.40 46.00 32.60
1.997 L1 0.1 26.30 56.00 29.70 11.50 46.00 34.50
2.103 L1 0.1 25.20 56.00 30.80 10.30 46.00 35.70
11.866 L1 0.4 35.30 60.00 24.70 27.30 50.00 22.70
Line
Table 6-8. Line-Conducted Test Data (L1)
Notes:
1. All Modes of operation were investigated and the worst-case emissions are reported using the low channel. The
emissions found were not affected by the choice of channel used during testing.
2. The limit for an intentional radiator from 150kHz to 30MHz are specified in Section 15.207 of the Title 47 CFR.
3. Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB)
4. QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB)
5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV)
6. Traces shown in plot are made using a peak detector.
7. Deviations to the Specifications: None.
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 21 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
Line Conducted Measurement Data
§15.207
0
5
10
15
20
25
30
35
40
45
50
55
60
65
70
75
80
150k 300 400 500 800 1M 2M 3M 4M 5M 6 8 10M 20M 30M
Level in dBµV
Frequency in Hz
FCC Part 15 Class B Voltage on Mains QP.LimitLine FCC Part 15 Class B Voltage on Mains AV.LimitLine Preview Result 1-PK+
Final Result 1-QPK Final Result 2-AVG
FCC Part 15 Class B Voltage on Mains QP
FCC Part 15 Class B Voltage on Mains AV
Plot 6-7. Line-Conducted Test Plot (N)
Frequency Corr. QuasiPeak Limit Margin Average Limit Margin
MHz dB dV dV dB dBµV dBµV dB
0.717 N 0.1 37.30 56.00 18.70 20.80 46.00 25.20
0.994 N 0.1 36.70 56.00 19.30 18.80 46.00 27.20
1.131 N 0.1 35.90 56.00 20.10 19.00 46.00 27.00
1.385 N 0.1 34.20 56.00 21.80 17.20 46.00 28.80
1.491 N 0.1 33.50 56.00 22.50 15.70 46.00 30.30
1.550 N 0.2 34.30 56.00 21.70 17.10 46.00 28.90
Line
Table 6-9. Line-Conducted Test Data (N)
Notes:
1. All Modes of operation were investigated and the worst-case emissions are reported using the low channel. The
emissions found were not affected by the choice of channel used during testing.
2. The limit for an intentional radiator from 150kHz to 30MHz are specified in Section 15.207 of the Title 47 CFR.
3. Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB)
4. QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB)
5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV)
6. Traces shown in plot are made using a peak detector.
7. Deviations to the Specifications: None.
FCC ID: A3LSMT700
FCC Pt. 15.249 ANT+ TEST REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 22 of 22
0Y1404110755.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/20/2014
7.0 CONCLUSION
The data collected relate only to the item(s) tested and show that the Samsung Portable Tablet
FCC ID: A3LSMT700 is in compliance with Part 15 Subpart C (15.249) of the FCC Rules.
Download: SMT700 Portable Tablet with WLAN, Bluetooth and ANT+ Test Report A3LSMT700 ANT+ Reportm Samsung Electronics Co Ltd
Mirror Download [FCC.gov]SMT700 Portable Tablet with WLAN, Bluetooth and ANT+ Test Report A3LSMT700 ANT+ Reportm Samsung Electronics Co Ltd
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