SMT700 Portable Tablet with WLAN, Bluetooth and ANT+ Test Report WLAN 1 Samsung Electronics Co Ltd

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

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FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 1 of 122
0Y1404110750.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/13/2014
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.:
0Y1404110750.A3L
FCC ID: A3LSMT700
APPLICANT: Samsung Electronics, Co. Ltd.
Application Type: Certification
Model(s): SM-T700
EUT Type: Portable Tablet
FCC Classification: Digital Transmission System (DTS)
FCC Rule Part(s): Part 15.247
Test Procedure(s): KDB 558074 v03r01, KDB 62911 v02r01
Max.
Power
(mW)
Max.
Power
(dBm)
Max.
Power
(mW)
Max.
Power
(dBm)
Max.
Power
(mW)
Max.
Power
(dBm)
Max.
Power
(mW)
Max.
Power
(dBm)
Max.
Power
(mW )
Max.
Power
(dBm)
Max.
Power
(mW)
Max.
Power
(dBm)
802.11b 2412 - 2462 17.19 12.35 37.89 15.79 17.54 12.44 37.12 15.70
‐‐‐‐
802.11g 2412 - 2462 14.06 11.48 73.33 18.65 13.43 11.28 57.32 17.58
‐‐‐‐
802.11n 2412 - 2462 11.18 10.49 65.49 18.16 10.02 10.01 43.28 16.36 11.12 10.46 44.16 16.45
802.11a 5745 - 5825 5.62 7.50 30.98 14.91 5.72 7.57 29.37 14.68
‐‐‐‐
802.11n (20MHz) 5745 - 5825 5.53 7.43 31.36 14.96 5.65 7.52 26.52 14.24 6.27 7.97 21.63 13.35
802.11n (40MHz)
5755‐5795
5.73 7.58 21.08 13.24 4.37 6.40 21.85 13.39 6.08 7.84 19.95 13.00
802.11ac (80MHz)
5775
5.14 7.11 25.54 14.07 4.43 6.46 20.61 13.14 5.18 7.14 29.92 14.76
Avg Conducted Peak Conducted
Mode Tx Frequency
(MHz)
ANT1 ANT2 MIMO
Avg Conducted Peak Conducted Avg Conducted Peak Conducted
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 KDB 558074 v03r01. 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 15.247 WLAN 802.11a/b/g/n/ac
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 2 of 122
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© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
01/13/2014
TABLE OF CONTENTS
FCC PART 15.247 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 ............................................................................................................................... 6
2.4EMI SUPPRESSION DEVICE(S)/MODIFICATIONS ...................................................................................... 6
2.5LABELING REQUIREMENTS ........................................................................................................................ 6
3.0DESCRIPTION OF TEST ........................................................................................................................ 7
3.1EVALUATION PROCEDURE ......................................................................................................................... 7
3.2AC LINE CONDUCTED EMISSIONS ............................................................................................................. 7
3.3RADIATED EMISSIONS ................................................................................................................................ 8
4.0ANTENNA REQUIREMENTS .................................................................................................................. 9
5.0TEST EQUIPMENT CALIBRATION DATA ............................................................................................ 10
6.0TEST RESULTS .................................................................................................................................... 11
6.1SUMMARY ................................................................................................................................................... 11
6.26DB BANDWIDTH MEASUREMENT – 802.11A/B/G/N/AC ......................................................................... 12
6.3OUTPUT POWER MEASUREMENT ........................................................................................................... 33
6.4POWER SPECTRAL DENSITY (802.11A/B/G/N/AC) .................................................................................. 43
6.5CONDUCTED EMISSIONS AT THE BAND EDGE ...................................................................................... 65
6.6CONDUCTED SPURIOUS EMISSIONS ...................................................................................................... 80
6.7RADIATED SPURIOUS EMISSION MEASUREMENTS .............................................................................. 94
6.8RADIATED RESTRICTED BAND EDGE MEASUREMENTS .................................................................... 106
6.9ANTENNA-2 RADIATED RESTRICTED BAND EDGE MEASUREMENTS ............................................... 110
6.10MIMO RADIATED RESTRICTED BAND EDGE MEASUREMENTS ..................................................... 114
6.11LINE-CONDUCTED TEST DATA ........................................................................................................... 118
7.0CONCLUSION .....................................................................................................................................122
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
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MEASUREMENT REPORT
FCC Part 15.247
§ 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 15.247
BASE MODEL: SM-T700
FCC ID: A3LSMT700
FCC CLASSIFICATION: Digital Transmission System (DTS)
Test Device Serial No.: 10APR-2, 10APR-3,
4.25REV0.3/PV2 Production Pre-Production Engineering
DATE(S) OF TEST: 4/11 - 5/7/2014
TEST REPORT S/N: 0Y1404110750.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. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
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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. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
Test Report S/N: Test Dates: EUT Type: Page 5 of 122
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© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
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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 WLAN (DTS) 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: 5GHz WLAN (DTS/NII) operation is possible in 20MHz, 40MHz, and 80MHz channel bandwidths. The
maximum achievable duty cycles for all modes were determined based on measurements performed on a
spectrum analyzer in zero-span mode with RBW = 8MHz, VBW = 50MHz, and detector = peak per the
guidance of Section 6.0 b) of KDB 558074 v03r01. The RBW and VBW were both greater than 50/T, where T
is the minimum transmission duration, and the number of sweep points across T was greater than 100. The
duty cycles are as follows:
802.11b – 99.8%
802.11a/n 20MHz Bandwidth – 99.7%
802.11n 40MHz Bandwidth – 99.3%
802.11ac 80MHz Bandwidth – 99.1%
The device employs MIMO technology. Below are the possible configurations.
WiFi Configurations SISO SDM
ANT1 ANT2 ANT1 ANT2
2.4GHz
11b X X
11g X X
11n X X X X
5GHz
11a X X
11n (20MHz) X X X X
11n (40MHz) X X X X
11ac (80MHz) X X X X
Table 2-1. Frequency / Channel Operations
= Support ; = NOT Support
SISO = Single Input Single Output
SDM = Spatial Diversity Multiplexing – MIMO function
.
CDD or Cyclic Delay Diversity MIMO function is also a capability of the EUT. However, since CDD only alters
the system by transmitting a phase shifted (i.e. cyclical) copy of the original signal within the same allotted
bandwidth and using the same Tx power, it was determined that CDD operation was the same, in regards to
matters relating to the bandwidth and powers, as SDM MIMO mode, which is addressed in the report. Thus,
no further measurements were performed for CDD MIMO operation.
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
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2.3 Test Configuration
The Samsung Portable Tablet FCC ID: A3LSMT700 was tested per the guidance of KDB 558074 v03r01.
ANSI C63.10-2009 was used to reference the appropriate EUT setup for radiated spurious emissions testing
and AC line conducted testing. 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.
Additionally, KDB 662911 v02r01 was utilized to calculate the summed MIMO powers per “Measure-and-sum
technique” described in this KDB.
2.4 EMI Suppression Device(s)/Modifications
No EMI suppression device(s) were added and/or 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. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
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3.0 DESCRIPTION OF TEST
3.1 Evaluation Procedure
The measurement procedures described in the American National Standard for Testing Unlicensed Wireless
Devices (ANSI C63.10-2009), and the guidance provided in KDB 558074 v03r01 were 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 6.11. 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. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
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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 changing the orientation of the EUT
through three orthogonal planes and changing the polarity of the receive antenna, whichever produced the
worst-case emissions. For the EUT positioning, “H” is defined with the EUT lying flat on the test surface, “H2”
is defined with the EUT standing up on its side, and “V” is defined with the EUT standing upright.
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
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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 Portable Tablet are permanently attached.
There are no provisions for connections to an external antenna.
Conclusion:
The Samsung Portable Tablet FCC ID: A3LSMT700 unit complies with the requirement of §15.203.
Ch. Frequency (MHz) Ch. Frequency (MHz)
1 2412 7 2442
2 2417 8 2447
3 2422 9 2452
4 2427 10 2457
5 2432 11 2462
6 2437
Ch. BW
(MHz) Frequency (MHz) Ch. BW
(MHz) Frequency (MHz)
149 20 5745 159 20 / 40 5795
151 20 / 40 5755 161 20 5805
153 20 5765 163 20 5815
155 20 / 80 5775 165 20 5825
157 20 5785
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 Description Cal Date Cal Interval Cal Due Serial Number
‐ RE1RadiatedEmissionsCableSet(UHF/EHF)3/25/2014 Annual3/25/2015 N/A
‐ WL401ConductedCableSet(40GHz)1/29/2014 Annual1/29/2015 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
AnritsuML2495APowerMeter10/31/2013 Annual10/31/2014 941001
AnritsuMA2411BPulsePowerSensor2/3/2014 Annual2/3/2015 1339026
ComPowerAL1309kHz‐30MHzLoopAntenna6/26/2013 Annual6/26/2014 121034
Emco3115 HornAntenna(118GHz)1/30/2014 Biennial1/30/2016 97045182
ETSLindgren3160091826.5GHzStandardGainHorn5/30/2012 Biennial5/30/2014 135427
ETSLindgren31601026.540GHzStandardGainHorn6/6/2012 Biennial6/6/2014 130993
Huber+SuhnerSucoflex102A40GHzRadiatedCable1/30/2014 Annual1/30/2015 251425001
K&L6000/T18000HighPassFilter2/7/2014 Annual2/7/2015 1
PasternackNMLC1LineConductedEmissionsCable(NM)1/28/2014 Annual1/28/2015 N/A
Rohde&SchwarzTSPR18118GHzPreAmplifier5/31/2013 Annual5/31/2014 100071
Rohde&SchwarzTSPR261826.5GHzPreAmplifier5/31/2013 Annual5/31/2014 100040
Rohde&SchwarzESU26EMITestReceiver(26.5GHz)1/27/2014 Annual1/27/2015 100342
Rohde&SchwarzTSPR4026.540GHzPreAmplifier6/6/2012 Biennial6/6/2014 100037
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
Note:
If equipment listed above that has a calibration due date that falls within the test date range, care was taken to
ensure that this equipment was utilized prior to the calibration due date.
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
(CERTIFICATION)
Reviewed by:
Quality Manager
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© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
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6.0 TEST RESULTS
6.1 Summary
Company Name: Samsung Electronics, Co. Ltd.
FCC ID: A3LSMT700
FCC Classification: Digital Transmission System (DTS)
Data Rate(s) Tested: 1Mbps, 2Mbps, 5.5Mbps, 11Mbps (b)
6Mbps, 9Mbps, 12Mbps, 18Mbps, 24Mbps, 36Mbps, 48Mbps, 54Mbps (a/g)
6.5/7.2Mbps, 13/14.4Mbps, 19.5/21.7Mbps, 26/28.9Mbps, 39/43.3Mbps,
52/57.8Mbps, 58.5/65Mbps, 65/72.2Mbps (n – 20MHz)
13.5/15Mbps, 27/30Mbps, 40.5/45Mbps, 54/60Mbps, 81/90Mbps, 108/120Mbps,
121.5/135Mbps, 135/150Mbps (n – 40MHz)
29.3/32.5Mbps, 58.5/65Mbps, 87.8/97.5Mbps, 117/130Mbps, 175.5/195Mbps,
234/260Mbps, 263.3/292.5Mbps, 292.5/325Mbps, 351/390Mbps, 390/433.3Mbps
(ac – 80MHz BW)
FCC Part
Section(s) Test Description Test Limit Test
Condition
Test
Result Reference
T
RANSMITTER MODE (TX)
15.247(a)(2) 6dB Bandwidth > 500kHz
CONDUCTED
PASS Section 6.2
15.247(b)(3) Transmitter Output Power 1 Watt PASS Sections 6.3
15.247(e) Transmitter Power Spectral
Density 8dBm / 3kHz Band PASS Section 6.4
15.247(d) Band Edge /
Out-of-Band Emissions Conducted 30dBc PASS Sections 6.5,
6.6
15.205
15.209
General Field Strength Limits
(Restricted Bands and
Radiated Emission Limits)
Emissions in restricted
bands must meet the
radiated limits detailed in
15.209
RADIATED PASS
Sections 6.7,
6.8, 6.9, 6.10
15.207 AC Conducted Emissions
150kHz – 30MHz < FCC 15.207 limits LINE
CONDUCTED PASS Section 6.11
Table 6-1. Summary of Test Results
Notes:
1) All modes of operation and data rates were investigated. The test results shown in the following
sections represent the worst case emissions.
2) 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.
3) 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 and attenuators.
4) For conducted spurious emissions, automated test software was used to measure emissions and
capture the corresponding plots necessary to show compliance. The measurement software utilized is
PCTEST “WLAN Automation”, Version 2.6.
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6.2 6dB Bandwidth Measurement – 802.11a/b/g/n/ac
§15.247(a.2)
Test Overview and Limit
The bandwidth at 6dB down from the highest in-band spectral density is measured with a spectrum analyzer
connected to the transmitter antenna terminal of the EUT while the EUT is operating at its maximum duty cycle
(>98%), at maximum power, and at the appropriate frequencies. All data rates were investigated and the worst
case configuration results are reported in this section.
The minimum permissible 6dB bandwidth is 500 kHz.
Test Procedure Used
KDB 558074 v03r01 – Section 8.2 Option 2
Test Settings
1. The signal analyzer’s automatic bandwidth measurement capability was used to perform the 6dB
bandwidth measurement. The “X” dB bandwidth parameter was set to X = 6. The bandwidth
measurement was not influenced by any intermediate power nulls in the fundamental emission.
2. RBW = 100kHz
3. VBW 3 x RBW
4. Detector = Peak
5. Trace mode = max hold
6. Sweep = auto couple
7. The trace was allowed to stabilize
Test Setup
The EUT and measurement equipment were set up as shown in the diagram below.
Figure 6-1. Test Instrument & Measurement Setup
Test Notes
None
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Antenna-1 6 dB Bandwidth Measurements
2412 1 b 1 8.589 0.500 Pass
2437 6 b 1 8.597 0.500 Pass
2462 11 b 1 9.054 0.500 Pass
2412 1 g 6 16.36 0.500 Pass
2437 6 g 6 16.36 0.500 Pass
2462 11 g 6 16.41 0.500 Pass
2412 1 n 6.5/7.2
(MCS0) 17.59 0.500 Pass
2437 6 n 6.5/7.2
(MCS0) 17.61 0.500 Pass
2462 11 n 6.5/7.2
(MCS0) 17.63 0.500 Pass
5745 149 a 6 16.33 0.500 Pass
5785 157 a 6 16.39 0.500 Pass
5825 165 a 6 16.37 0.500 Pass
5745 149 n
(20MHz)
6.5/7.2
(MCS0) 17.59 0.500 Pass
5785 157 n
(20MHz)
6.5/7.2
(MCS0) 17.58 0.500 Pass
5825 165 n
(20MHz)
6.5/7.2
(MCS0) 17.61 0.500 Pass
5755 151 n
(40MHz)
13.5/15
(MCS0) 36.37 0.500 Pass
5795 159 n
(40MHz)
13.5/15
(MCS0) 36.36 0.500 Pass
5775 155 ac
(80MHz)
29.3/32.5
(MCS0) 75.49 0.500 Pass
Frequenc
y
[MHz]
Data
Rate
[Mbps]
802.11
Mode
Channel
No.
Measured
Bandwidth
[MHz]
Minimum
Bandwidth
[MHz]
Pass / Fail
Table 6-2. Conducted Bandwidth Measurements
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Plot 6-1. 6dB Bandwidth Plot (802.11b – Ch. 1)
Plot 6-2. 6dB Bandwidth Plot (802.11b – Ch. 6)
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Plot 6-3. 6dB Bandwidth Plot (802.11b – Ch. 11)
Plot 6-4. 6dB Bandwidth Plot (802.11g – Ch. 1)
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Plot 6-5. 6dB Bandwidth Plot (802.11g – Ch. 6)
Plot 6-6. 6dB Bandwidth Plot (802.11g – Ch. 11)
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Plot 6-7. 6dB Bandwidth Plot (802.11n (2.4GHz) – Ch. 1)
Plot 6-8. 6dB Bandwidth Plot (802.11n (2.4GHz) – Ch. 6)
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Plot 6-9. 6dB Bandwidth Plot (802.11n (2.4GHz) – Ch. 11)
Plot 6-10. 6dB Bandwidth Plot (802.11a – Ch. 149)
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Plot 6-11. 6dB Bandwidth Plot (802.11a – Ch. 157)
Plot 6-12. 6dB Bandwidth Plot (802.11a – Ch. 165)
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Plot 6-13. 6dB Bandwidth Plot (20MHz BW 802.11n (5.8GHz) – Ch. 149)
Plot 6-14. 6dB Bandwidth Plot (20MHz BW 802.11n (5.8GHz) – Ch. 157)
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Plot 6-15. 6dB Bandwidth Plot (20MHz BW 802.11n (5.8GHz) – Ch. 165)
Plot 6-16. 6dB Bandwidth Plot (40MHz BW 802.11n (5.8GHz) – Ch. 151)
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Plot 6-17. 6dB Bandwidth Plot (40MHz BW 802.11n (5.8GHz) – Ch. 159)
Plot 6-18. 6dB Bandwidth Plot (80MHz BW 802.11ac (5.8GHz) – Ch. 155)
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Antenna-2 6 dB Bandwidth Measurements
2412 1 b 1 9.043 0.500 Pass
2437 6 b 1 9.041 0.500 Pass
2462 11 b 1 8.593 0.500 Pass
2412 1 g 6 16.36 0.500 Pass
2437 6 g 6 16.33 0.500 Pass
2462 11 g 6 16.02 0.500 Pass
2412 1 n 6.5/7.2
(MCS0) 17.30 0.500 Pass
2437 6 n 6.5/7.2
(MCS0) 16.94 0.500 Pass
2462 11 n 6.5/7.2
(MCS0) 17.07 0.500 Pass
5745 149 a 6 16.39 0.500 Pass
5785 157 a 6 16.35 0.500 Pass
5825 165 a 6 16.37 0.500 Pass
5745 149 n
(20MHz)
6.5/7.2
(MCS0) 17.58 0.500 Pass
5785 157 n
(20MHz)
6.5/7.2
(MCS0) 17.60 0.500 Pass
5825 165 n
(20MHz)
6.5/7.2
(MCS0) 17.60 0.500 Pass
5755 151 n
(40MHz)
13.5/15
(MCS0) 36.17 0.500 Pass
5795 159 n
(40MHz)
13.5/15
(MCS0) 36.35 0.500 Pass
5775 155 ac
(80MHz)
29.3/32.5
(MCS0) 75.79 0.500 Pass
Frequenc
y
[MHz]
Channel
No.
802.11
Mode
Data
Rate
[Mbps]
Measured
Bandwidth
[MHz]
Minimum
Bandwidth
[MHz]
Pass / Fail
Table 6-3. Conducted Bandwidth Measurements
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Plot 6-19. 6dB Bandwidth Plot (802.11b – Ch. 1)
Plot 6-20. 6dB Bandwidth Plot (802.11b – Ch. 6)
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Plot 6-21. 6dB Bandwidth Plot (802.11b – Ch. 11)
Plot 6-22. 6dB Bandwidth Plot (802.11g – Ch. 1)
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Plot 6-23. 6dB Bandwidth Plot (802.11g – Ch. 6)
Plot 6-24. 6dB Bandwidth Plot (802.11g – Ch. 11)
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Plot 6-25. 6dB Bandwidth Plot (802.11n (2.4GHz) – Ch. 1)
Plot 6-26. 6dB Bandwidth Plot (802.11n (2.4GHz) – Ch. 6)
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Plot 6-27. 6dB Bandwidth Plot (802.11n (2.4GHz) – Ch. 11)
Plot 6-28. 6dB Bandwidth Plot (802.11a – Ch. 149)
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Plot 6-29. 6dB Bandwidth Plot (802.11a – Ch. 157)
Plot 6-30. 6dB Bandwidth Plot (802.11a – Ch. 165)
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Plot 6-31. 6dB Bandwidth Plot (20MHz BW 802.11n (5.8GHz) – Ch. 149)
Plot 6-32. 6dB Bandwidth Plot (20MHz BW 802.11n (5.8GHz) – Ch. 157)
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Plot 6-33. 6dB Bandwidth Plot (20MHz BW 802.11n (5.8GHz) – Ch. 165)
Plot 6-34. 6dB Bandwidth Plot (40MHz BW 802.11n (5.8GHz) – Ch. 151)
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Plot 6-35. 6dB Bandwidth Plot (40MHz BW 802.11n (5.8GHz) – Ch. 159)
Plot 6-36. 6dB Bandwidth Plot (80MHz BW 802.11ac (5.8GHz) – Ch. 155)
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6.3 Output Power Measurement
§15.247(b.3)
Test Overview and Limits
A transmitter antenna terminal of EUT is connected to the input of an RF power sensor. Measurement is made
using a broadband power meter capable of making peak and average measurements while the EUT is
operating at its maximum duty cycle (>98%), at maximum power, and at the appropriate frequencies.
The maximum permissible conducted output power is 1 Watt.
Test Procedure Used
KDB 558074 v03r01 – Section 9.1.3 PKPM1 Peak Power Method (for signals with BW 50MHz)
KDB 558074 v03r01 – Section 9.1.2 Integrated Band Power Method (for signals with BW > 50MHz)
KDB 558074 v03r01 – Section 9.2.3.2 Method AVGPM-G (for signals of all BWs)
KDB 662911 v02r01 – Section D
Test Settings
Method PKPM1 (Peak Power Measurement of Signals with DTS BW 50MHz)
Peak power measurements were performed only when the EUT was transmitting at its maximum
power control level using a broadband power meter with a pulse sensor. The pulse sensor employs a
VBW = 50MHz so this method was only used for signals whose DTS bandwidth was less than or
equal to 50MHz.
Integrated Band Power Method (Peak Power Measurement of Signals with DTS BW > 50MHz)
Since the RF power meter used only implemented a VBW of 50MHz, a signal analyzer was required to
perform power measurements for signals’ whose bandwidth were > 50MHz. The following settings shown in
the next two sub-sections were used on a signal analyzer:
1. The signal analyzers’ channel power measurement function was enabled with the integration
bandwidth set to the measured DTS bandwidth
2. RBW = 1MHz
3. VBW 3 x RBW
4. Span 1.5 x DTS BW
5. Detector = peak
6. Sweep time = auto
7. Trace mode = max hold
8. Trace was allowed to fully stabilize
Method AVGPM-G (Average Power Measurements for Signals With Any Channel BW)
Average power measurements were performed only when the EUT was transmitting at its maximum
power control level using a broadband power meter with a pulse sensor. The power meter
implemented triggering and gating capabilities which were set up such that power measurements
were recorded only during the ON time of the transmitter. The trace was averaged over 100 traces to
obtain the final measured average power.
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Test Setup
The EUT and measurement equipment were set up as shown in the diagrams below.
Figure 6-2. Test Instrument & Measurement Setup for Power Meter Measurements
Figure 6-3. Test Instrument & Measurement Setup for Signal Analyzer Measurements
Test Notes
None
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Antenna-1 Output Power Measurement – 802.11b/g/n (2.4GHz)
125.511
802.11b 2412 1 AVG 11.85 11.93 11.93 11.95
PEAK 15.22 15.29 15.20 15.28
802.11b 2437 6 AVG 12.13 12.27 12.35 12.19
PEAK 15.49 15.75 15.79 15.74
802.11b 2462 11 AVG 11.79 11.96 11.97 11.99
PEAK 15.18 15.32 15.32 15.33
Data Rate [Mbps]Dete ctor
802.11b Conducted Power [dBm]
Mode Freq
[MHz] Channel
Table 6-4. 802.11b Conducted Output Power Measurements
6 9 12 18 24 36 48 54
802.11g 2412 1 AVG 11.12 11.12 11.13 11.12 11.39 11.33 11.44 11.25
PEAK 17.03 17.13 17.05 16.96 18.48 18.45 18.24 18.27
802.11g 2437 6 AVG 11.45 11.35 11.40 11.35 11.45 11.48 11.41 11.40
PEAK 17.40 17.37 17.27 16.97 18.56 18.62 18.65 18.22
802.11g 2462 11 AVG 11.29 11.27 11.25 11.26 11.38 11.45 11.46 11.40
PEAK 17.09 17.04 16.98 16.72 18.40 18.36 18.29 17.94
802.11g Conducted Power [dBm]
Data Rate [Mbps]Mode Freq
[MHz] Channel Detector
Table 6-5. 802.11g Conducted Output Power Measurements
6.5 13 19.5 26 39 52 58.5 65
802.11n 2412 1 AVG 10.22 10.20 10.19 10.44 10.49 10.39 10.39 10.46
PEAK 16.29 16.26 16.20 17.61 17.81 17.70 17.71 17.50
802.11n 2437 6 AVG 10.46 10.48 10.48 10.44 10.42 10.41 10.47 10.45
PEAK 16.65 16.76 16.74 18.05 18.14 18.01 18.05 18.16
802.11n 2462 11 AVG 10.25 10.26 10.29 10.39 10.40 10.49 10.43 10.46
PEAK 16.33 16.27 16.20 17.73 17.71 17.67 17.55 17.67
Mode Freq
[MHz] Channel Detector
802.11n (2.4GHz) Conducted Power [dBm]
Data Rate [Mbps]
Table 6-6. 20MHz BW 802.11n (2.4GHz) Conducted Output Power Measurements
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Antenna-1 Output Power Measurement – 802.11a/n/ac (5GHz)
6 9 12 18 24 36 48 54
802.11a 5745 149 AVG 7.14 7.00 7.15 7.05 7.24 7.15 7.24 7.04
PEAK 13.10 12.99 13.09 12.72 14.40 14.54 14.29 14.14
802.11a 5765 153 AVG 7.29 7.26 7.19 7.17 7.47 7.23 7.43 7.21
PEAK 13.19 13.19 13.10 12.86 14.70 14.58 14.60 14.21
802.11a 5785 157 AVG 7.35 7.39 7.39 7.28 7.50 7.42 7.47 7.37
PEAK 13.25 13.50 13.34 12.97 14.91 14.89 14.48 14.38
802.11a 5805 161 AVG 7.17 7.26 7.25 7.10 7.44 7.28 7.38 7.11
PEAK 13.14 13.25 13.13 12.76 14.70 14.84 14.55 14.22
802.11a 5825 165 AVG 7.05 6.98 7.05 7.05 7.35 7.26 7.25 7.11
PEAK 12.99 12.89 12.94 12.60 14.57 14.60 14.33 14.00
Mode Freq
[MHz] Channel Detector
802.11a Conducted Power [dBm]
Data Rate [Mbps]
Table 6-7. 802.11a Conducted Output Power Measurements
6.5 13 19.5 26 39 52 58.5 65
802.11n 5745 149 AVG 7.09 7.09 7.19 7.25 7.31 7.28 7.43 7.37
PEAK 12.68 12.72 12.65 14.31 14.09 14.72 14.67 14.74
802.11n 5765 153 AVG 7.01 6.96 7.00 7.28 7.26 7.19 7.22 7.24
PEAK 12.62 12.61 12.69 14.22 13.99 14.84 14.65 14.65
802.11n 5785 157 AVG 6.94 6.77 6.79 6.88 7.06 6.99 7.02 7.10
PEAK 12.60 12.43 12.49 13.87 14.20 14.82 14.71 14.50
802.11n 5805 161 AVG 6.89 6.79 6.86 7.11 7.11 7.20 7.20 7.14
PEAK 12.42 12.30 12.33 13.75 13.84 14.40 14.54 14.38
802.11n 5825 165 AVG 6.84 7.00 6.84 7.19 7.26 7.31 7.21 7.30
PEAK 12.44 12.67 12.61 14.27 14.35 14.96 14.57 14.91
20MHz BW 802.11n (5GHz) Conducted Power [dBm]
Data Rate [Mbps]Mode Freq
[MHz] Channel Detector
Table 6-8. 20MHz BW 802.11n (5GHz) Conducted Output Power Measurements
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13.5 27 40.5 54 81 108 121.5 135
802.11n 5755 151 AVG 7.35 7.40 7.39 7.45 7.48 7.54 7.58 7.42
PEAK 11.32 11.39 11.37 12.81 12.83 13.23 13.24 12.89
802.11n 5795 159 AVG 7.31 7.36 7.40 7.43 7.50 7.54 7.55 7.55
PEAK 11.05 10.91 11.00 12.22 12.23 12.61 12.85 12.93
Mode Freq
[MHz] Channel Detector
40MHz BW 802.11n (5GHz) Conducted Power [dBm]
Data Rate [Mbps]
Table 6-9. 40MHz BW 802.11n (5GHz) Conducted Output Power Measurements
6.5 Mbps
802.11ac 5745 149 AVG 7.23
PEAK 12.10
802.11ac 5785 157 AVG 7.22
PEAK 11.93
802.11ac 5825 165 AVG 7.12
PEAK 12.12
20MHz BW 802.11ac (5GHz) Conducted Power [dBm]
Mode Freq
[MHz] Channel Detector
Data
Rate
Table 6-10. 20MHz BW 802.11ac (5GHz)
Conducted Output Power Measurements
13.5 Mbps
802.11ac 5755 151 AVG 7.32
PEAK 12.24
802.11ac 5795 159 AVG 7.30
PEAK 12.29
40MHz BW 802.11ac (5GHz) Conducted Pow er [dBm ]
Mode Freq
[MHz] Channel Detector
Data
Rate
Table 6-11. 40MHz BW 802.11ac (5GHz)
Conducted Output Power Measurements
29.3 58.5 87.8 117 175.5 234 263.3 292.5 351 390
802.11ac 5775 155 AVG 6.88 6.66 6.69 7.02 7.05 7.00 7.05 7.11 6.69 7.09
PEAK 11.10 11.12 11.67 12.87 13.07 13.26 13.38 13.30 13.06 14.07
Mode Freq
[MHz] Channel Detector
80MHz BW 802.11ac (5GHz) Conducted Power [dBm]
Data Rate [Mbps]
Table 6-12. 80MHz BW 802.11ac (5GHz) Conducted Output Power Measurements
FCC ID: A3LSMT700
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Antenna-2 Output Power Measurement – 802.11b/g/n (2.4GHz)
125.511
802.11b 2412 1 AVG 11.88 12.10 12.11 12.12
PEAK 15.00 15.16 15.20 15.20
802.11b 2437 6 AVG 12.35 12.44 12.41 12.42
PEAK 15.54 15.70 15.66 15.63
802.11b 2462 11 AVG 11.30 11.68 11.64 11.66
PEAK 14.49 14.75 14.73 14.71
802.11b Conducted Power [dBm]
Data Rate [Mbps]Mode Freq
[MHz] Channel Detector
Table 6-13. 802.11b Conducted Output Power Measurements
6 9 12 18 24 36 48 54
802.11g 2412 1 AVG 10.33 10.29 10.34 10.37 10.61 10.61 10.51 10.60
PEAK 15.76 15.95 15.78 15.65 16.92 16.90 16.89 16.94
802.11g 2437 6 AVG 11.05 11.15 10.97 11.11 11.27 11.28 11.22 11.28
PEAK 16.33 16.44 16.18 16.12 17.51 17.39 17.57 17.58
802.11g 2462 11 AVG 10.05 10.08 10.08 10.11 10.34 10.36 10.15 10.29
PEAK 15.61 15.48 15.50 15.25 16.71 16.39 16.68 16.48
Mode Freq
[MHz] Channel Detector
802.11g Conducted Power [dBm]
Data Rate [Mbps]
Table 6-14. 802.11g Conducted Output Power Measurements
6.5 13 19.5 26 39 52 58.5 65
802.11n 2412 1 AVG 9.00 9.01 9.05 9.28 9.26 9.21 9.27 9.30
PEAK 14.37 14.65 14.45 15.88 15.87 15.89 15.86 15.96
802.11n 2437 6 AVG 9.59 9.56 9.63 9.84 9.88 9.88 9.80 10.01
PEAK 14.72 14.93 14.71 15.91 16.31 16.29 16.36 16.19
802.11n 2462 11 AVG 8.66 8.64 8.60 8.96 8.83 8.91 8.76 8.79
PEAK 13.87 13.99 13.85 15.19 15.20 15.12 15.27 14.84
802.11n (2.4GHz) Conducted Power [dBm]
Data Rate [Mbps]Mode Freq
[MHz] Channel Detector
Table 6-15. 20MHz BW 802.11n (2.4GHz) Conducted Output Power Measurements
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Antenna-2 Output Power Measurement – 802.11a/n (5GHz)
6 9 12 18 24 36 48 54
802.11a 5745 149 AVG 7.22 7.30 7.23 7.25 7.52 7.50 7.54 7.52
PEAK 12.63 12.63 12.55 12.28 13.83 13.74 14.68 14.04
802.11a 5765 153 AVG 7.16 6.88 6.84 6.85 7.22 7.21 7.28 7.32
PEAK 12.46 12.46 12.19 11.99 13.54 13.50 14.15 13.78
802.11a 5785 157 AVG 7.22 7.09 7.09 7.08 7.43 7.46 7.32 7.44
PEAK 12.48 12.41 12.26 12.03 13.66 13.60 14.09 13.83
802.11a 5805 161 AVG 7.21 7.26 7.23 7.27 7.56 7.50 7.47 7.53
PEAK 12.39 12.46 12.25 12.03 13.64 13.69 13.98 13.71
802.11a 5825 165 AVG 7.35 7.21 7.20 7.16 7.57 7.44 7.50 7.51
PEAK 12.46 12.47 12.41 12.08 13.65 13.70 14.23 13.79
802.11a Conducted Power [dBm]
Data Rate [Mbps]Mode Freq
[MHz] Channel Detector
Table 6-16. 802.11a Conducted Output Power Measurements
6.5 13 19.5 26 39 52 58.5 65
802.11n 5745 149 AVG 6.94 6.93 7.01 7.29 7.13 7.42 7.41 7.40
PEAK 11.70 11.95 11.76 13.11 13.15 13.82 13.86 14.01
802.11n 5765 153 AVG 7.02 7.07 7.17 7.38 7.35 7.52 7.46 7.52
PEAK 11.93 12.11 12.10 13.31 13.54 14.24 14.22 13.92
802.11n 5785 157 AVG 6.95 7.00 6.89 6.98 7.19 7.25 7.29 7.21
PEAK 11.83 12.01 11.74 12.95 13.21 13.75 14.11 13.65
802.11n 5805 161 AVG 6.91 6.90 7.00 7.21 7.29 7.40 7.28 7.28
PEAK 11.80 12.08 11.93 13.22 13.38 14.05 13.96 13.80
802.11n 5825 165 AVG 6.92 6.84 6.90 7.12 7.16 7.35 7.28 7.27
PEAK 11.7 11.772 11.65 12.59 13.02 14.08 13.83 13.84
Mode Freq
[MHz] Channel Detector
20MHz BW 802.11n (5GHz) Conducted Power [dBm]
Data Rate [Mbps]
Table 6-17. 20MHz BW 802.11n (5GHz) Conducted Output Power Measurements
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13.5 27 40.5 54 81 108 121.5 135
802.11n 5755 151 AVG 6.05 6.12 6.13 6.10 6.11 6.18 6.40 6.20
PEAK 11.41 11.51 11.43 12.67 12.54 13.12 13.39 13.10
802.11n 5795 159 AVG 6.03 6.06 6.01 6.14 6.18 6.27 6.39 6.34
PEAK 11.43 11.27 11.36 12.85 12.63 13.17 13.28 13.38
40MHz BW 802.11n (5GHz) Conducted Power [dBm]
Data Rate [Mbps]
Mode Freq
[MHz] Channel Detector
Table 6-18. 40MHz BW 802.11n (5GHz) Conducted Output Power Measurements
6.5 Mbps
802.11ac 5745 149 AVG 6.99
PEAK 11.81
802.11ac 5785 157 AVG 6.85
PEAK 11.69
802.11ac 5825 165 AVG 6.71
PEAK 11.55
20MHz BW 802.11ac (5GHz) Conducted Power [dBm]
Mode Freq
[MHz] Channel Detector
Data
Rate
Table 6-19. 20MHz BW 802.11ac (5GHz)
Conducted Output Power Measurements
13.5 Mbps
802.11ac 5755 151 AVG 6.04
PEAK 11.45
802.11ac 5795 159 AVG 6.02
PEAK 11.41
40MHz BW 802.11ac (5GHz) Conducted Pow er [dBm ]
Mode Freq
[MHz] Channel Detector
Data
Rate
Table 6-20. 40MHz BW 802.11ac (5GHz)
Conducted Output Power Measurements
29.3 58.5 87.8 117 175.5 234 263.3 292.5 351 390
802.11ac 5775 155 AVG 6.22 6.11 6.28 6.33 6.42 6.43 6.34 6.40 6.46 6.39
PEAK 11.11 11.12 11.09 12.36 12.44 13.12 13.02 12.82 13.14 13.00
80MHz BW 802.11ac (5GHz) Conducted Power [dBm]
Data Rate [Mbps]Mode Freq
[MHz] Channel Detector
Table 6-21. 80MHz BW 802.11ac (5GHz) Conducted Output Power Measurements
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MIMO Output Power Measurement – 802.11n (2.4GHz, 5GHz)
Sample MIMO Calculation:
At 2462MHz MCS8 the average conducted output power was measured to be 6.54 dBm for Antenna-1 and
7.31 dBm for Antenna-2. The measured values were summed in linear power units then converted back to
DBm:
Antenna 1 + Antenna 2 = MIMO
(6.54 dBm + 7.31 dBm) = (4.508 mW + 5.383 mW) = 9.891 mW = 9.95 dBm
802.11n 2412 1 AVG 7.26 7.09 10.19
PEAK 13.18 13.17 16.19
802.11n 2437 6 AVG 7.44 7.45 10.46
PEAK 13.45 13.42 16.45
802.11n 2462 11 AVG 6.54 7.31 9.95
PEAK 12.60 13.15 15.89
MCS8
ANT1 ANT2 MIMO
Mode Freq
[MHz] Channel Detector
Table 6-22. 20MHz BW 802.11n (2.4GHz) Conducted Output Power Measurements
802.11n 5745 149 AVG 5.61 4.08 7.92
PEAK 10.02 9.69 12.87
802.11n 5765 153 AVG 5.75 3.79 7.89
PEAK 10.43 9.05 12.80
802.11n 5785 157 AVG 5.52 4.11 7.88
PEAK 10.55 10.12 13.35
802.11n 5805 161 AVG 5.74 3.82 7.90
PEAK 10.54 9.89 13.24
802.11n 5825 165 AVG 5.64 4.16 7.97
PEAK 10.62 9.80 13.24
MCS8
ANT1 ANT2 MIMO
Mode Freq
[MHz] Channel Detector
Table 6-23. 20MHz BW 802.11n (5GHz) Conducted Output Power Measurements
802.11n 5755 151 AVG 5.50 4.04 7.84
PEAK 9.78 10.19 13.00
802.11n 5795 159 AVG 5.33 4.00 7.73
PEAK 9.72 10.10 12.92
ANT2 MIMO
MCS8
ANT1
Mode Freq
[MHz] Channel Detector
Table 6-24. 40MHz BW 802.11n (5GHz) Conducted Output Power Measurements
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802.11ac 5745 149 AVG 4.72 3.32 7.09
PEAK 9.81 11.64 13.83
802.11ac 5785 157 AVG 5.12 3.46 7.38
PEAK 9.89 11.78 13.95
802.11ac 5825 165 AVG 4.65 3.96 7.33
PEAK 9.45 12.34 14.14
20MHz BW 802.11ac (5GHz) Conducted Power [dBm]
MCS8
ANT1 ANT2 MIMO
Mode Freq
[MHz] Channel Detector
Table 6-25. 20MHz BW 802.11ac (5GHz)
Conducted Output Power Measurements
802.11ac 5755 151 AVG 4.82 3.44 7.19
PEAK 10.15 12.57 14.54
802.11ac 5795 159 AVG 4.51 3.40 7.00
PEAK 10.15 12.66 14.59
40MHz BW 802.11ac (5GHz) Conducted Power [dBm]
MCS8
ANT1 ANT2 MIMO
Mode Freq
[MHz] Channel Detector
Table 6-26. 40MHz BW 802.11ac (5GHz)
Conducted Output Power Measurements
802.11ac 5775 155 AVG 4.02 4.24 7.14
PEAK 11.23 12.22 14.76
MCS8
ANT1 ANT2 MIMO
Mode Freq
[MHz] Channel Detector
Table 6-27. 80MHz BW 802.11ac (5GHz) Conducted Output Power Measurements
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6.4 Power Spectral Density (802.11a/b/g/n/ac)
§15.247(e)
Test Overview and Limit
The peak power density is measured with a spectrum analyzer connected to the antenna terminal of the EUT
while the EUT is operating at its maximum duty cycle (>98%), at maximum power, and at the appropriate
frequencies. All data rates were investigated and the worst case configuration results are reported in this
section.
The maximum permissible power spectral density is 8 dBm in any 3 kHz band.
Test Procedure Used
KDB 558074 v03r01 – Section 10.2 Method PKPSD
Test Settings
1. Analyzer was set to the center frequency of the DTS channel under investigation
2. Span = 1.5 times the DTS channel bandwidth
3. RBW = 10kHz
4. VBW = 1MHz
5. Detector = peak
6. Sweep time = auto couple
7. Trace mode = max hold
8. Trace was allowed to stabilize
Test Setup
The EUT and measurement equipment were set up as shown in the diagram below.
Figure 6-4. Test Instrument & Measurement Setup
Test Notes
None
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Antenna-1 Power Spectral Density Measurements
2412 1 b 1 -4.90 8.00 -12.90 Pass
2437 6 b 1 -5.19 8.00 -13.19 Pass
2462 11 b 1 -5.18 8.00 -13.18 Pass
2412 1 g 6 -8.79 8.00 -16.79 Pass
2437 6 g 6 -8.79 8.00 -16.79 Pass
2462 11 g 6 -8.05 8.00 -16.05 Pass
2412 1 n 6.5/7.2
(MCS0) -9.63 8.00 -17.63 Pass
2437 6 n 6.5/7.2
(MCS0) -8.19 8.00 -16.19 Pass
2462 11 n 6.5/7.2
(MCS0) -7.38 8.00 -15.38 Pass
5745 149 a 6 -14.47 8.00 -22.47 Pass
5785 157 a 6 -13.73 8.00 -21.73 Pass
5825 165 a 6 -14.59 8.00 -22.59 Pass
5745 149 n
(20MHz)
6.5/7.2
(MCS0) -13.01 8.00 -21.01 Pass
5785 157 n
(20MHz)
6.5/7.2
(MCS0) -13.38 8.00 -21.38 Pass
5825 165 n
(20MHz)
6.5/7.2
(MCS0) -12.76 8.00 -20.76 Pass
5755 151 n
(40MHz)
13.5/15
(MCS0) -14.59 8.00 -22.59 Pass
5795 159 n
(40MHz)
13.5/15
(MCS0) -16.21 8.00 -24.21 Pass
5775 155 ac
(80MHz)
29.3/32.5
(MCS0) -19.39 8.00 -27.39 Pass
Frequenc
y
[MHz]
Measured
Power Spectral
Density [dBm]
Maximum
P e rm i ssi b l e
Power Densit
y
[
dBm / 3kHz
]
Channel
No.
802.11
Mode
Data
Rate
[Mbps]
Pass / Fail
Margin
[dB]
Table 6-28. Conducted Power Density Measurements
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Plot 6-37. Power Spectral Density Plot (802.11b – Ch. 1)
Plot 6-38. Power Spectral Density Plot (802.11b – Ch. 6)
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Plot 6-39. Power Spectral Density Plot (802.11b – Ch. 11)
Plot 6-40. Power Spectral Density Plot (802.11g – Ch. 1)
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Plot 6-41. Power Spectral Density Plot (802.11g – Ch. 6)
Plot 6-42. Power Spectral Density Plot (802.11g – Ch. 11)
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Plot 6-43. Power Spectral Density Plot (802.11n (2.4GHz) – Ch. 1)
Plot 6-44. Power Spectral Density Plot (802.11n (2.4GHz) – Ch. 6)
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Plot 6-45. Power Spectral Density Plot (802.11n (2.4GHz) – Ch. 11)
Plot 6-46. Power Spectral Density Plot (802.11a – Ch. 149)
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Plot 6-47. Power Spectral Density Plot (802.11a – Ch. 157)
Plot 6-48. Power Spectral Density Plot (802.11a – Ch. 165)
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Plot 6-49. Power Spectral Density Plot (20MHz BW 802.11n (5.8GHz) – Ch. 149)
Plot 6-50. Power Spectral Density Plot (20MHz BW 802.11n (5.8GHz) – Ch. 157)
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Plot 6-51. Power Spectral Density Plot (20MHz BW 802.11n (5.8GHz) – Ch. 165)
Plot 6-52. Power Spectral Density Plot (40MHz BW 802.11n (5.8GHz) – Ch. 151)
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Plot 6-53. Power Spectral Density Plot (40MHz BW 802.11n (5.8GHz) – Ch. 159)
Plot 6-54. Power Spectral Density Plot (80MHz BW 802.11ac (5.8GHz) – Ch. 155)
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Antenna-2 Power Spectral Density Measurements
2412 1 b 1 -5.78 8.00 -13.78 Pass
2437 6 b 1 -4.04 8.00 -12.04 Pass
2462 11 b 1 -5.39 8.00 -13.39 Pass
2412 1 g 6 -8.64 8.00 -16.64 Pass
2437 6 g 6 -8.70 8.00 -16.70 Pass
2462 11 g 6 -9.89 8.00 -17.89 Pass
2412 1 n 6.5/7.2
(MCS0) -10.34 8.00 -18.34 Pass
2437 6 n 6.5/7.2
(MCS0) -9.98 8.00 -17.98 Pass
2462 11 n 6.5/7.2
(MCS0) -10.38 8.00 -18.38 Pass
5745 149 a 6 -13.95 8.00 -21.95 Pass
5785 157 a 6 -13.11 8.00 -21.11 Pass
5825 165 a 6 -13.11 8.00 -21.11 Pass
5745 149 n
(20MHz)
6.5/7.2
(MCS0) -12.83 8.00 -20.83 Pass
5785 157 n
(20MHz)
6.5/7.2
(MCS0) -13.79 8.00 -21.79 Pass
5825 165 n
(20MHz)
6.5/7.2
(MCS0) -13.13 8.00 -21.13 Pass
5755 151 n
(40MHz)
13.5/15
(MCS0) -17.35 8.00 -25.35 Pass
5795 159 n
(40MHz)
13.5/15
(MCS0) -16.88 8.00 -24.88 Pass
5775 155 ac
(80MHz)
29.3/32.5
(MCS0) -19.19 8.00 -27.19 Pass
Data
Rate
[Mbps]
Measured
Power Spectral
Density [dBm]
Maximum
P e rm i ssi b l e
Power Densit
y
[
dBm / 3kHz
]
Margin
[dB] Pass / Fail
802.11
Mode
Frequenc
y
[MHz]
Channel
No.
Table 6-29. Conducted Power Density Measurements
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Plot 6-55. Power Spectral Density Plot (802.11b – Ch. 1)
Plot 6-56. Power Spectral Density Plot (802.11b – Ch. 6)
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Plot 6-57. Power Spectral Density Plot (802.11b – Ch. 11)
Plot 6-58. Power Spectral Density Plot (802.11g – Ch. 1)
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Plot 6-59. Power Spectral Density Plot (802.11g – Ch. 6)
Plot 6-60. Power Spectral Density Plot (802.11g – Ch. 11)
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
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Plot 6-61. Power Spectral Density Plot (802.11n (2.4GHz) – Ch. 1)
Plot 6-62. Power Spectral Density Plot (802.11n (2.4GHz) – Ch. 6)
FCC ID: A3LSMT700
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Plot 6-63. Power Spectral Density Plot (802.11n (2.4GHz) – Ch. 11)
Plot 6-64. Power Spectral Density Plot (802.11a – Ch. 149)
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Plot 6-65. Power Spectral Density Plot (802.11a – Ch. 157)
Plot 6-66. Power Spectral Density Plot (802.11a – Ch. 165)
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
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0Y1404110750.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
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Plot 6-67. Power Spectral Density Plot (20MHz BW 802.11n (5.8GHz) – Ch. 149)
Plot 6-68. Power Spectral Density Plot (20MHz BW 802.11n (5.8GHz) – Ch. 157)
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
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0Y1404110750.A3L 4/11 - 5/7/2014 Portable Tablet
© 2014 PCTEST Engineering Laboratory, Inc. V 5.0
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Plot 6-69. Power Spectral Density Plot (20MHz BW 802.11n (5.8GHz) – Ch. 165)
Plot 6-70. Power Spectral Density Plot (40MHz BW 802.11n (5.8GHz) – Ch. 151)
FCC ID: A3LSMT700
FCC Pt. 15.247 802.11a/b/g/n/ac MEASUREMENT REPORT
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Plot 6-71. Power Spectral Density Plot (40MHz BW 802.11n (5.8GHz) – Ch. 159)
Plot 6-72. Power Spectral Density Plot (80MHz BW 802.11ac (5.8GHz) – Ch. 155)
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MIMO Power Spectral Density Measurements
2412 1 b 1 -4.90 -5.78 -2.31 8.00 -10.31 Pass
2437 6 b 1 -5.19 -4.04 -1.57 8.00 -9.57 Pass
2462 11 b 1 -5.18 -5.39 -2.28 8.00 -10.28 Pass
2412 1 g 6 -8.79 -8.64 -5.71 8.00 -13.71 Pass
2437 6 g 6 -8.79 -8.70 -5.74 8.00 -13.74 Pass
2462 11 g 6 -8.05 -9.89 -5.86 8.00 -13.86 Pass
2412 1 n 6.5/7.2
(MCS0) -9.63 -10.34 -6.96 8.00 -14.96 Pass
2437 6 n 6.5/7.2
(MCS0) -8.19 -9.98 -5.98 8.00 -13.98 Pass
2462 11 n 6.5/7.2
(MCS0) -7.38 -10.38 -5.61 8.00 -13.61 Pass
5745 149 a 6 -14.47 -13.95 -11.19 8.00 -19.19 Pass
5785 157 a 6 -13.73 -13.11 -10.40 8.00 -18.40 Pass
5825 165 a 6 -14.59 -13.12 -10.78 8.00 -18.78 Pass
5745 149 n
(20MHz)
6.5/7.2
(MCS0) -13.01 -12.83 -9.91 8.00 -17.91 Pass
5785 157 n
(20MHz)
6.5/7.2
(MCS0) -13.38 -13.80 -10.57 8.00 -18.57 Pass
5825 165 n
(20MHz)
6.5/7.2
(MCS0) -12.76 -13.13 -9.93 8.00 -17.93 Pass
5755 151 n
(40MHz)
13.5/15
(MCS0) -14.59 -17.35 -12.74 8.00 -20.74 Pass
5795 159 n
(40MHz)
13.5/15
(MCS0) -16.21 -16.88 -13.52 8.00 -21.52 Pass
5775 155 ac
(80MHz)
29.3/32.5
(MCS0) -19.48 -19.19 -16.32 8.00 -24.32 Pass
Frequency
[MHz]
Channel
No.
Summed MIMO
Power Spectral
Density [dBm]
Maximum
Permissible
Power Density
[
dBm / 3kHz
]
Margin
[dB] Pass / Fail
ANT 2 Power
Spectral Density
[dBm]
802.11
Mode
Data
Rate
[Mbps]
ANT 1 Power
Spectral Density
[dBm]
Table 6-30.MIMO Conducted Power Density Measurements
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