FCC RF Test Report

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L860-GL-16 TestRpt PCB LTE Part90S LTE B26

HP Inc. HNI57CPT System Model HSN-I57 B94HNI57CPT B94HNI57CPT hni57cpt

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FCC RF Test Report

Report No. : FW0O3022

FCC RF Test Report

APPLICANT EQUIPMENT BRAND NAME MODEL NAME FCC ID STANDARD CLASSIFICATION

: Fibocom Wireless Inc. : LTE Module : Fibocom : L860-GL-16 : ZMOL860GL16 : 47 CFR Part 2, and 90(S) : PCS Licensed Transmitter (PCB)

The product was received on Oct. 30, 2020 and completely tested on Feb. 04, 2021. We, Sporton International (Kunshan) Inc., would like to declare that the tested sample has been evaluated in accordance with the procedures given in ANSI C63.26-2015 and shown compliance with the applicable technical standards. The test results in this report apply exclusively to the tested model / sample. Without written approval of Sporton International (Kunshan) Inc., the test report shall not be reproduced except in full.

Reviewed by: Jason Jia / Supervisor

Approved by: James Huang / Manager
Sporton International (Kunshan) Inc.
No. 1098, Pengxi North Road, Kunshan Economic Development Zone Jiangsu Province 215300 People's Republic of China

Sporton International (Kunshan) Inc. TEL : +86-512-57900158 FAX : +86-512-57900958 FCC ID : ZMOL860GL16

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TABLE OF CONTENTS
REVISION HISTORY..........................................................................................................................................3
SUMMARY OF TEST RESULT .........................................................................................................................4
1 GENERAL DESCRIPTION .......................................................................................................................... 5 1.1 Applicant............................................................................................................................................5 1.2 Manufacturer ..................................................................................................................................... 5 1.3 Feature of Equipment Under Test ..................................................................................................... 5 1.4 Product Specification of Equipment Under Test ............................................................................... 5 1.5 Modification of EUT ........................................................................................................................... 5 1.6 Maximum Conducted Power, Frequency Tolerance and Emission Designator................................6 1.7 Testing Site........................................................................................................................................ 6 1.8 Test Software .................................................................................................................................... 6 1.9 Applied Standards ............................................................................................................................. 7
2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST ........................................................................ 8 2.1 Test Mode.......................................................................................................................................... 8 2.2 Connection Diagram of Test System ................................................................................................ 9 2.3 Support Unit used in test configuration and system .......................................................................... 9 2.4 Measurement Results Explanation Example .................................................................................... 9 2.5 Frequency List of Low/Middle/High Channels.................................................................................10
3 TEST RESULT...........................................................................................................................................11 3.1 Conducted Output Power Measurement.........................................................................................11 3.2 99% Occupied Bandwidth and 26dB Bandwidth Measurement......................................................12 3.3 Emissions Mask Measurement .......................................................................................................13 3.4 Emissions Mask ­ Out Of Band Emissions Measurement..............................................................15 3.5 Field Strength of Spurious Radiation Measurement .......................................................................16 3.6 Frequency Stability Measurement...................................................................................................18
4 LIST OF MEASURING EQUIPMENT ........................................................................................................20
5 UNCERTAINTY OF EVALUATION ...........................................................................................................21
APPENDIX A. TEST RESULTS OF CONDUCTED TEST
APPENDIX B. TEST RESULTS OF RADIATED TEST
APPENDIX C. SETUP PHOTOGRAPHS

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REVISION HISTORY

REPORT NO. FW0O3022

VERSION Rev. 01

DESCRIPTION Initial issue of report

Report No. : FW0O3022
ISSUED DATE Feb. 07, 2021

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SUMMARY OF TEST RESULT

Report Section

FCC Rule

Description

Limit

Result

Remark

3.1

§2.1046

Conducted Output Power

Reporting only

PASS

-

§2.1049

Occupied Bandwidth and

3.2

Reporting only

PASS

-

§90.209

26dB Bandwidth

§2.1051 3.3
§90.691

Emission masks ­

< 50+10log10(P[Watts]) PASS

-

In-band emissions

§2.1051

Emission masks ­

3.4

< 43+10log10(P[Watts]) PASS

-

§90.691

Out of band emissions

Under limit

§2.1053

Field Strength of Spurious

3.5

< 43+10log10(P[Watts]) PASS

43.83 dB at

§90.691

Radiation

4074.00 MHz

§2.1055

Frequency Stability for

3.6

§90.213

Temperature & Voltage

< 2.5 ppm

PASS

-

Declaration of Conformity:
The test results with all measurement uncertainty excluded are presented in accordance with the regulation limits or requirements declared by manufacturers.
Comments and Explanations:
The declared of product specification for EUT presented in the report are provided by the manufacturer, and the manufacturer takes all the responsibilities for the accuracy of product specification.

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1 General Description
1.1 Applicant
Fibocom Wireless Inc. 1101,Tower A, Building 6, Shenzhen International Innovation Valley, Dashi 1st Rd, Nanshan,Shenzhen, China

1.2 Manufacturer
Fibocom Wireless Inc. 1101,Tower A, Building 6, Shenzhen International Innovation Valley, Dashi 1st Rd, Nanshan,Shenzhen, China

1.3 Feature of Equipment Under Test

Product Feature

Equipment Brand Name Model Name FCC ID EUT supports Radios application

LTE Module Fibocom L860-GL-16 ZMOL860GL16 WCDMA/LTE/GNSS

HW Version

V1.3

SW Version

18601.5001.00.01.01.01

EUT Stage

Identical Prototype

Remark: The above EUT's information was declared by manufacturer. Please refer to the specifications

or user's manual for more detailed description.

1.4 Product Specification of Equipment Under Test

Product Specification subjective to this standard

Tx Frequency Rx Frequency Bandwidth Maximum Output Power to Antenna

814 ~ 824 MHz 859 ~ 869 MHz 1.4MHz / 3MHz / 5MHz / 10MHz / 15MHz 22.93 dBm

Antenna Gain

3.00 dBi

Type of Modulation

QPSK / 16QAM / 64QAM

1.5 Modification of EUT
No modifications are made to the EUT during all test items.

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1.6 Maximum Conducted Power, Frequency Tolerance and Emission Designator

LTE Band 26

BW (MHz)

Frequency Range (MHz)

10

819.0

15

821.5

Emission Designator (99%OBW)
9M05G7D 13M4G7D

QPSK
Frequency Tolerance
(ppm)
0.0087 -

Maximum Conducted
power (W)
0.1963
0.1959

Emission Designator (99%OBW)
9M01W7D 13M4W7D

16QAM
Frequency Tolerance
(ppm)
-

Maximum Conducted
power (W)
0.1486
0.1570

1.7 Testing Site

Sporton International (Kunshan) Inc. is accredited to ISO/IEC 17025:2017 by American Association for Laboratory Accreditation with Certificate Number 5145.02.

Test Firm

Sporton International (Kunshan) Inc.

Test Site Location

No. 1098, Pengxi North Road, Kunshan Economic Development Zone Jiangsu Province 215300 People's Republic of China TEL : +86-512-57900158 FAX : +86-512-57900958

Test Site No.

Sporton Site No.
03CH06-KS TH01-KS

FCC Designation No. CN1257

FCC Test Firm Registration No.
314309

1.8 Test Software

Item 1.

Site 03CH06-KS

Manufacturer AUDIX

Name E3

Version 6.2009-8-24al

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1.9 Applied Standards
According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards:  47 CFR Part 2, 90(S)  ANSI C63.26-2015  FCC KDB 971168 D01 Power Meas. License Digital Systems v03r01  FCC KDB 971168 D02 Misc Rev Approv License Devices v02r01

Remark: 1. All test items were verified and recorded according to the standards and without any deviation
during the test. 2. This EUT has also been tested and complied with the requirements of FCC Part 15, Subpart B,
recorded in a separate test report.

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2 Test Configuration of Equipment Under Test
2.1 Test Mode

During all testing, EUT is in link mode with base station emulator at maximum power level. The spurious emission measurements were carried out in semi-anechoic chamber with 3-meter test range, and EUT is rotated on three test planes to find out the worst emission. Frequency range investigated for radiated emission is 30 MHz to 9000 MHz.

Test Items
Max. Output Power
26dB and 99% Bandwidth Emission masks In-band emissions Emission masks ­ Out of band emissions Frequency Stability Radiated Spurious Emission
Note

Band 26 26 26
26 26 26 1.

Bandwidth (MHz)

Modulation

RB #

Test Channel

QPS 16QA 64QA

Hal

1.4

3 5 10 15 20

1

Full L M H

K

M

M

f

v

vvvv -

v

v

v

v

v

v

v

v v

v

-

v

v

v

v

vvvv -

v

v

v

v v

v

v

vvvv -

v

v

v

v vv

v

-

v

v

v

Worst Case

v

2. The mark "v " means that this configuration is chosen for testing 3. The mark "-" means that this bandwidth is not supported. 4. LTE Band26 transmit frequency for part22 rule is 824MHz-849MHz, for part90 rule is
814MHz-824MHz. ERP over 15MHz bandwidth complies the ERP limit line of part22 rule, therefore ERP of the partial frequency spectrum which falls within part 22 also complies. 5. Based on engineering evaluation, only the worst modulation test results are shown in the report.

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2.2 Connection Diagram of Test System

Report No. : FW0O3022

System Simulator
Power Source

AP router

Notebook

GPS Station

BT Earphone

EUT

Notebook

Cradle

Earphone

iPod

WLAN AP

Monitor

This example is connection diagram of EUT test configurations. For detail, please refer to test mode configuration and setup photographs for each test item.

2.3 Support Unit used in test configuration and system

Item Equipment

Trade Name

1. System Simulator Anritsu

2. Test jig

N/A

Model No. MT8820C N/A

FCC ID N/A N/A

Data Cable Power Cord

N/A

Unshielded, 1.8 m

N/A

N/A

2.4 Measurement Results Explanation Example
For all conducted test items:

The offset level is set in the spectrum analyzer to compensate the RF cable loss between RF conducted output port and spectrum analyzer. With the offset compensation, the spectrum analyzer reading level will be exactly the RF output level.

The spectrum analyzer offset is derived from RF cable loss. Offset = RF cable loss. The following shows an offset computation example with RF cable loss 4.4 dB. Example : Offset(dB) = RF cable loss(dB).
= 4.4 (dB)

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2.5 Frequency List of Low/Middle/High Channels

BW [MHz] 15 10 5 3 1.4

LTE Band 26 Channel and Frequency List

Channel/Frequency(MHz)

Lowest

Middle

Channel

26765

-

Frequency

821.5

-

Channel

-

26740

Frequency

-

819

Channel

26715

26740

Frequency

816.5

819

Channel

26705

26740

Frequency

815.5

819

Channel

26697

26740

Frequency

814.7

819

Highest -
26765 821.5 26775 822.5 26783 823.3

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3 Test Result
3.1 Conducted Output Power Measurement
3.1.1 Description of the Conducted Output Power Measurement
A system simulator was used to establish communication with the EUT. Its parameters were set to enforce EUT transmitting at the maximum power. The measured power in the radio frequency on the transmitter output terminals shall be reported.

3.1.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.

3.1.3 Test Procedures
1. The transmitter output port was connected to the system simulator. 2. Set EUT at maximum power through the system simulator. 3. Select lowest, middle, and highest channels for each band and different modulation. 4. Measure and record the power level from the system simulator.

3.1.4 Test Setup

3.1.5 Test Result of Conducted Output Power
Please refer to Appendix A.

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3.2 99% Occupied Bandwidth and 26dB Bandwidth Measurement
3.2.1 Description of (Occupied) Bandwidth Limitations Measurement
The 99% occupied bandwidth is the width of a frequency band such that, below the lower and above the upper frequency limits, the mean powers emitted are each equal to a specified percentage 0.5% of the total mean transmitted power. The emission bandwidth is defined as the width of the signal between two points, located at the 2 sides of the carrier frequency, outside of which all emissions are attenuated at least 26 dB below the transmitter power.

3.2.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.

3.2.3 Test Procedures
1. The EUT was connected to spectrum analyzer and system simulator via a power divider. 2. The 26dB and 99% occupied bandwidth (BW) of the middle channel for the highest RF power
with full RB sizes were measured.

3.2.4 Test Setup

3.2.5 Test Result of 99% Occupied Bandwidth and 26dB Bandwidth
Please refer to Appendix A.

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3.3 Emissions Mask Measurement
3.3.1 Description of Emissions Mask Measurement
Equipment used in this licensed to EA or non-EA systems shall comply with the emission mask provisions of FCC Part 90.691.(a): (a) Out-of-band emission requirement shall apply only to the "outer" channels included in an EA license and to spectrum adjacent to interior channels used by incumbent licensees. The emission limits are as follows: (1) For any frequency removed from the EA licensee's frequency block by up to and including 37.5 kHz, the power of any emission shall be attenuated below the transmitter power (P) in watts by at least 116 Log10(f/6.1) decibels or 50 + 10 Log10(P) decibels or 80 decibels, whichever is the lesser attenuation, where f is the frequency removed from the center of the outer channel in the block in kilohertz and where f is greater than 12.5 kHz. (2) For any frequency removed from the EA licensee's frequency block greater than 37.5 kHz, the power of any emission shall be attenuated below the transmitter power (P) in watts by at least 43 + 10Log10(P) decibels or 80 decibels, whichever is the lesser attenuation, where f is the frequency removed from the center of the outer channel in the block in kilohertz and where f is greater than 37.5 kHz.

3.3.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.

3.3.3 Test Procedures
1. The EUT was connected to spectrum analyzer and base station via power divider. 2. The emissions mask of low and high channels for the highest RF powers were measured. 3. The measured RBW and the VBW set 3 times of RBW are then set in spectrum analyzer, and
the RBW correction factor 10log (1% of OBW/measured RBW)(dB) was compensated, if required. 4. The test results were shown below plots with a correction offset factor including cable loss, insertion loss of power divider.

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3.3.5 Test Result (Plots) of Conducted Emissions Mask
Please refer to Appendix A.

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3.4 Emissions Mask ­ Out Of Band Emissions Measurement
3.4.1 Description of Conducted Emissions Out of band emissions measurement
The power of any emission FCC Part 90.691 (a)(2) on any frequency removed from the assigned frequency by out of the authorized bandwidth at least 43 + 10 log (P) dB. It is measured by means of a calibrated spectrum analyzer and scanned from 30 MHz up to a frequency including its 10th harmonic.
3.4.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.

3.4.3 Test Procedures
1. The EUT was connected to spectrum analyzer and system simulator via a power divider. 2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator.
The path loss was compensated to the results for each measurement. 3. The middle channel for the highest RF power within the transmitting frequency was measured. 4. The conducted spurious emission for the whole frequency range was taken. 5. Make the measurement with the spectrum analyzer's RBW = 1MHz, VBW = 3MHz, taking the
record of maximum spurious emission. 6. The RF fundamental frequency should be excluded against the limit line in the operating
frequency band. 7. The limit line is derived from 43 + 10log(P)dB below the transmitter power P(Watts)

3.4.4 Test Setup

3.4.5 Test Result (Plots) of Conducted Emission
Please refer to Appendix A.

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3.5 Field Strength of Spurious Radiation Measurement
3.5.1 Description of Field Strength of Spurious Radiated Measurement
The radiated spurious emission was measured by substitution method according to ANSI/TIA-603-E. The power of any emission FCC Part 90.691 on any frequency removed from the assigned frequency by more than 250 percent of the authorized bandwidth at least 43 + 10 log (P) dB. The spectrum is scanned from 30 MHz up to a frequency including its 10th harmonic. The power of any emission outside of the authorized operating frequency ranges must be attenuated below the transmitter power (P) by a factor of at least 43+10log10(P[Watts]) dB. The spectrum is scanned from 30 MHz up to a frequency including its 10th harmonic.
3.5.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
3.5.3 Test Procedures
1. The EUT was placed on a turntable with 0.8 meter for frequency below 1GHz and 1.5 meter for frequency above 1GHz respectively above ground.
2. The EUT was set 3 meters from the receiving antenna, which was mounted on the antenna tower.
3. The table was rotated 360 degrees to determine the position of the highest spurious emission. 4. The height of the receiving antenna is varied between one meter and four meters to search the
maximum spurious emission for both horizontal and vertical polarizations. 5. Make the measurement with the spectrum analyzer's RBW = 1MHz, VBW = 3MHz, Sweep =
500ms, Taking the record of maximum spurious emission. 6. A horn antenna was substituted in place of the EUT and was driven by a signal generator. 7. Tune the output power of signal generator to the same emission level with EUT maximum
spurious emission. 8. Taking the record of output power at antenna port. 9. Repeat step 7 to step 8 for another polarization. 10. EIRP (dBm) = S.G. Power ­ Tx Cable Loss + Tx Antenna Gain 11. ERP (dBm) = EIRP - 2.15 12. The RF fundamental frequency should be excluded against the limit line in the operating
frequency band. 13. The limit line is derived from 43 + 10log(P) dB below the transmitter power P(Watts)

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3.5.4 Test Setup
For radiated test from 30MHz to 1GHz

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For radiated test above 1GHz

3.5.5 Test Result of Field Strength of Spurious Radiated
Please refer to Appendix B.

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3.6 Frequency Stability Measurement
3.6.1 Description of Frequency Stability Measurement
The frequency stability shall be measured by variation of ambient temperature and variation of primary supply voltage to ensure that the fundamental emission stays within the authorized frequency block. The frequency stability of the transmitter shall be maintained within ±0.00025% (±2.5ppm) of the center frequency according to FCC Part 90.213.

3.6.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.

3.6.3 Test Procedures for Temperature Variation
1. The EUT was set up in the thermal chamber and connected with the base station. 2. With power OFF, the temperature was decreased to -30°C and the EUT was stabilized for three
hours. Power was applied and the maximum change in frequency was recorded within one minute. 3. With power OFF, the temperature was raised in 10°C step up to 50°C. The EUT was stabilized at each step for at least half an hour. Power was applied and the maximum frequency change was recorded within one minute.
3.6.4 Test Procedures for Voltage Variation
1. The EUT was placed in a temperature chamber at 20±5°C and connected with the system simulator.
2. The power supply voltage to the EUT was varied from 85% to 115% of the nominal value for other than hand carried battery equipment.
3. For hand carried, battery powered equipment, reduce the primary ac or dc supply voltage to the 4. battery operating end point, which shall be specified by the manufacturer. 5. The variation in frequency was measured for the worst case.

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3.6.6 Test Result of Temperature Variation
Please refer to Appendix A.

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4 List of Measuring Equipment

Instrument
Spectrum Analyzer Temperature &hu midity chamber EXA Spectrum Analyzer

Manufacturer R&S
Hongzhan Keysight

Calibration Model No. Serial No. Characteristics
Date

Test Date

FSV40

101040

10Hz~40GHz

Nov. 01, 2020

Dec. 15, 2020~ Feb. 04, 2021

LP-150U

H201401144 -40~+150°C

0

20%~95%RH

Jul. 03, 2020

Dec. 15, 2020~ Feb. 04, 2021

N9010A

MY5515020 8

10Hz-44GHz

Apr. 14, 2020 Jan. 10, 2021

Due Date Oct. 31, 2021 Jul. 02, 2021 Apr. 13, 2021

Bilog Antenna

TeseQ

CBL6111D 49921 30MHz-1GHz May 29, 2020 Jan. 10, 2021 May 28, 2021

Double Ridge Horn Antenna

ETS-Lindgren

3117

00218652 1GHz~18GHz Apr. 27, 2020 Jan. 10, 2021 Apr. 26, 2021

Amplifier

SONOMA

310N

187289 9KHz ~1GHZ Apr. 14, 2020 Jan. 10, 2021 Apr. 13, 2021

high gain Amplifier MITEQ

Amplifier

Keysight

AMF-7D-00

101800-30- 2025788 1Ghz-18Ghz Jan. 06, 2021

10P

83017A

MY5327020 3

500MHz~26.5G Hz

Apr. 15, 2020

Jan. 10, 2021 Jan. 10, 2021

Jan.05, 2022 Apr. 14. 2021

AC Power Source Chroma

61601 F104090004

N/A

NCR

Jan. 10, 2021

NCR

Turn Table

ChamPro EM 1000-T 060762-T 0~360 degree

NCR

Jan. 10, 2021

NCR

Antenna Mast

ChamPro EM 1000-A 060762-A

1 m~4 m

NCR

Jan. 10, 2021

NCR

Remark
Conducted (TH01-KS) Conducted (TH01-KS) Radiation (03CH06-KS) Radiation (03CH06-KS) Radiation (03CH06-KS) Radiation (03CH06-KS)
Radiation (03CH06-KS)
Radiation (03CH06-KS)
Radiation (03CH06-KS)
Radiation (03CH06-KS)
Radiation (03CH06-KS)

NCR: No Calibration Required

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Report Template No.: BU5-FWLTE Version 2.0

FCC RF Test Report

Report No. : FW0O3022

5 Uncertainty of Evaluation
The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI 63.26-2015. All the measurement uncertainty value were shown with a coverage K=2 to indicate 95% level of confidence. The measurement data show herein meets or exceeds the CISPR measurement uncertainty values specified in CISPR 16-4-2 and can be compared directly to specified limit to determine compliance.

Uncertainty of Radiated Emission Measurement (30 MHz ~ 1000 MHz)

Measuring Uncertainty for a Level of Confidence of 95% (U = 2Uc(y))

2.5dB

Uncertainty of Radiated Emission Measurement (1 GHz ~ 18 GHz)
Measuring Uncertainty for a Level of Confidence of 95% (U = 2Uc(y))

2.1dB

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Report No. : FW0O3022

Appendix A. Test Results of Conducted Test

Conducted Output Power (Average power)

BW [MHz]
15 15 15 15 15
10 10 10
5 5 5
3 3 3
1.4 1.4 1.4

Modulation

RB Size

Channel

Frequency (MHz)

QPSK

1

QPSK

1

QPSK

75

16QAM

1

64QAM

1

Channel

Frequency (MHz)

QPSK

1

16QAM

1

64QAM

1

Channel

Frequency (MHz)

QPSK

1

16QAM

1

64QAM

1

Channel

Frequency (MHz)

QPSK

1

16QAM

1

64QAM

1

Channel

Frequency (MHz)

QPSK

1

16QAM

1

64QAM

1

RB Offset
0 74 0 0 0

Power Low
Ch. / Freq. 26765 821.5 22.92 22.69 21.63 21.96 20.68

0

0

-

0

26715

816.5

0

22.63

0

21.86

0

20.96

26705

815.5

0

22.63

0

21.72

0

20.78

26697

814.7

0

22.69

0

21.85

0

20.69

Power Middle Ch. / Freq.
-
26740 819 22.93 21.72 20.89
26740 819 22.89 22.36 20.72
26740 819 22.86 22.58 21.63
26740 819 22.21 22.36 21.21

Power High Ch. / Freq.
-
-
26765 821.5 22.89 21.85 21.23 26775 822.5 22.92 21.68 20.69 26783 823.3 22.85 22.18 21.25

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: A1 of A19

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FCC RF Test Report
26dB Bandwidth
Mode BW Mod. Middle CH

Report No. : FW0O3022

LTE Band 26 : 26dB BW(MHz)

10MHz

QPSK

16QAM

9.95

9.85

Middle Channel / 10MHz / QPSK

Middle Channel / 10MHz / 16QAM

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Occupied Bandwidth

Mode Mod. Middle CH CH 26765

LTE Band 26 : 99%OBW(MHz)

QPSK

16QAM

9.05

9.01

13.43

13.40

Middle Channel / 10MHz / QPSK

Middle Channel / 10MHz / 16QAM

CH26765 / 15MHz / QPSK

CH26765 / 15MHz / 16QAM

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Conducted Band Edge

LTE Band 26 / 1.4MHz / QPSK

Lowest Band Edge / 1RB

Highest Band Edge / 1RB

Lowest Band Edge / Full RB

Highest Band Edge / Full RB

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LTE Band 26 / 1.4MHz / 16QAM

Lowest Band Edge / 1 RB

Highest Band Edge / 1 RB

Lowest Band Edge / Full RB

Highest Band Edge / Full RB

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LTE Band 26 / 3MHz / QPSK

Lowest Band Edge / 1RB

Highest Band Edge / 1 RB

Lowest Band Edge / Full RB

Highest Band Edge / Full RB

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LTE Band 26 / 3MHz / 16QAM

Lowest Band Edge / 1 RB

Highest Band Edge /1 RB

Lowest Band Edge / Full RB

Highest Band Edge / Full RB

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LTE Band 26 / 5MHz / QPSK

Lowest Band Edge / 1 RB

Highest Band Edge / 1 RB

Lowest Band Edge / Full RB

Highest Band Edge / Full RB

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LTE Band 26 / 5MHz / 16QAM

Lowest Band Edge / 1RB

Highest Band Edge / 1 RB

Lowest Band Edge / Full RB

Highest Band Edge / Full RB

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LTE Band 26 / 10MHz / QPSK

Lowest Band Edge / 1 RB

Highest Band Edge / 1 RB

Band Edge / Full RB

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LTE Band 26 / 10MHz / 16QAM

Lowest Band Edge / 1 RB

Highest Band Edge / 1 RB

Band Edge / Full RB

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LTE Band 26 / 15MHz QPSK

Lowest Band Edge / 1 RB

Lowest Band Edge / Full RB

LTE Band 26 / 15MHz 16QAM

Lowest Band Edge / 1 RB

Lowest Band Edge / Full RB

QAM
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Conducted Spurious Emission

Lowest Channel / QPSK

LTE Band 26 / 1.4MHz

Lowest Channel / 16QAM

Middle Channel / QPSK

Middle Channel / 16QAM

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Highest Channel / QPSK

LTE Band 26 / 1.4MHz

Highest Channel / 16QAM

Lowest Channel / QPSK

LTE Band 26 / 3MHz

Lowest Channel / 16QAM

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Middle Channel / QPSK

LTE Band 26 / 3MHz

Middle Channel / 16QAM

Highest Channel / QPSK

Highest Channel / 16QAM

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Lowest Channel / QPSK

LTE Band 26 / 5MHz

Lowest Channel / 16QAM

Middle Channel / QPSK

Middle Channel / 16QAM

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Highest Channel / QPSK

LTE Band 26 / 5MHz

Highest Channel / 16QAM

Middle Channel / QPSK

LTE Band 26 / 10MHz

Middle Channel / 16QAM

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Lowest Channel / QPSK

LTE Band 26 / 15MHz

Lowest Channel / 16QAM

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Frequency Stability

Test Conditions

LTE Band 26 (QPSK) / Middle Channel

Limit

Temperature (°C)

Voltage (Volt)

BW 10MHz
Deviation (ppm)

2.5ppm Result

50

Normal Voltage

0.0053

40

Normal Voltage

0.0087

30

Normal Voltage

0.0065

20(Ref.)

Normal Voltage

0.0000

10

Normal Voltage

0.0079

0

Normal Voltage

0.0004

-10

Normal Voltage

0.0020

-20

Normal Voltage

0.0087

-30

Normal Voltage

0.0068

20

Maximum Voltage

0.0017

20

Normal Voltage

0.0001

20

Battery End Point

0.0072

Note: Normal Voltage =3.3 V.Battery End Point (BEP) =3.135 V.Maximum Voltage =4.4 V.

PASS

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Appendix B. Test Results of Radiated Test

Radiated Spurious Emission

LTE Band 26 / 10MHz / QPSK

Channel

Frequency ( MHz )

ERP ( dBm )

Limit ( dBm )

Over Limit ( dB )

S.G. Power ( dBm )

TX Cable loss ( dB )

TX Antenna Gain (dBi)

Polarization (H/V)

1628

-64.69

-13

-51.69

-71.66

1.58

10.70

H

2444

-60.71

-13

-47.71

-68.96

2.102

12.50

H

3258

-58.51

-13

-45.51

-67.40

2.856

13.90

H

Middle

4074 1628

-57.07 -64.71

-13 -13

-44.07 -51.71

-65.53 -71.68

2.689 1.58

13.30 10.70

H V

2444

-59.49

-13

-46.49

-67.74

2.10

12.50

V

3258

-58.39

-13

-45.39

-67.28

2.86

13.90

V

4074

-56.83

-13

-43.83

-65.29

2.69

13.30

V

Remark: Spurious emissions within 30-1000MHz were found more than 20dB below limit line.

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: Rev. 01



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