David Huang Checked By

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1 RF TEST REPORT Report No.: Supersede Report No.: N/A Applicant ZTE Corporation Product Name LTE/WCDMA/GSM(EDGE GPRS) USB modem Model No. MF833V Serial No. N/A Test Standard FCC Part 22(H):2015, FCC Part 24(E):2015, FCC Part 27: 2015; ANSI/TIA-603-D: 2010 Test Date January 12 to February 01, 2018 Issue Date February 2, 2018 Test Result Pass Fail Equipment complied with the specification Equipment did not comply with the specification Aaron Liang Test Engineer David Huang Checked By This test report may be reproduced in full only Test result presented in this test report is applicable to the tested sample only Issued by: SIEMIC (SHENZHEN-CHINA) LABORATORIES Zone A, Floor 1, Building 2 Wan Ye Long Technology Park South Side of Zhoushi Road, Bao an District, Shenzhen, Guangdong China

2 Page 2 of 158 Phone: China@siemic.com.cn

3 Page 3 of 158 Laboratories Introduction SIEMIC, headquartered in the heart of Silicon Valley, with superior facilities in US and Asia, is one of the leading independent testing and certification facilities providing customers with one-stop shop services for Compliance Testing and Global Certifications. In addition to testing and certification, SIEMIC provides initial design reviews and compliance management throughout a project. Our extensive experience with China, Asia Pacific, North America, European, and International compliance requirements, assures the fastest, most cost effective way to attain regulatory compliance for the global markets. Accreditations for Conformity Assessment Country/Region Scope USA EMC, RF/Wireless, SAR, Telecom Canada EMC, RF/Wireless, SAR, Telecom Taiwan EMC, RF, Telecom, SAR, Safety Hong Kong RF/Wireless, SAR, Telecom Australia EMC, RF, Telecom, SAR, Safety Korea EMI, EMS, RF, SAR, Telecom, Safety Japan EMI, RF/Wireless, SAR, Telecom Singapore EMC, RF, SAR, Telecom Europe EMC, RF, SAR, Telecom, Safety

4 Page 4 of 158 This page has been left blank intentionally.

5 Page 5 of 158 CONTENTS 1. REPORT REVISION HISTORY CUSTOMER INFORMATION TEST SITE INFORMATION EQUIPMENT UNDER TEST (EUT) INFORMATION TEST SUMMARY MEASUREMENTS, EXAMINATION AND DERIVED RESULTS RF EXPOSURE (SAR) RF OUTPUT POWER PEAK-AVERAGE RATIO OCCUPIED BANDWIDTH SPURIOUS EMISSIONS AT ANTENNA TERMINALS SPURIOUS RADIATED EMISSIONS BAND EDGE BAND EDGE 27.53(M) FREQUENCY STABILITY ANNEX A. TEST INSTRUMENT ANNEX B. EUT AND TEST SETUP PHOTOGRAPHS ANNEX C. TEST SETUP AND SUPPORTING EQUIPMENT ANNEX C.II. EUT OPERATING CONKITIONS ANNEX D. USER MANUAL / BLOCK DIAGRAM / SCHEMATICS / PARTLIST ANNEX E. DECLARATION OF SIMILARITY

6 Page 6 of Report Revision History Report No. Report Version Description Issue Date NONE Original February 2, Customer information Applicant Name Applicant Add Manufacturer Manufacturer Add ZTE Corporation ZTE Plaza, Keji Road South, Hi-Tech, Industrial Park,Nanshan District,Shenzhen, Guangdong, , P.R.China ZTE Corporation ZTE Plaza, Keji Road South, Hi-Tech, Industrial Park,Nanshan District,Shenzhen, Guangdong, , P.R.China 3. Test site information Lab performing tests SIEMIC (Shenzhen-China) LABORATORIES Zone A, Floor 1, Building 2 Wan Ye Long Technology Park Lab Address South Side of Zhoushi Road, Bao an District, Shenzhen, Guangdong China FCC Test Site No IC Test Site No. 4842E-1 Test Software Radiated Emission Program-To Shenzhen v2.0

7 Page 7 of Equipment under Test (EUT) Information Description of EUT: LTE/WCDMA/GSM(EDGE GPRS) USB modem Main Model: MF833V Serial Model: N/A Date EUT received: January11, 2018 Test Date(s): January 12 to February 01, 2018 Equipment Category: PCT Antenna Gain: GSM850: 0.45dBi PCS1900: 1.68dBi UMTS-FDD Band V: 0.45dBi UMTS-FDD Band IV: 1.49dBi UMTS-FDD Band II: 1.68dBi LTE Band II: 1.69dBi LTE Band IV: 1.49dBi LTE Band V: 0.45dBi LTE Band VII: 1.76dBi LTE Band XII: 0.84dBi LTE Band XVII: 0.84dBi Antenna Type: Internal antenna Type of Modulation: GSM / GPRS: GMSK EGPRS: GMSK,8PSK UMTS-FDD: LTE Band:, RF Operating Frequency (ies): GSM850 TX: ~ MHz; RX: ~ MHz PCS1900 TX: ~ MHz; RX: ~ MHz UMTS-FDD Band V TX: ~ MHz; RX: ~ MHz UMTS-FDD Band IV TX: ~ MHz; RX : ~ MHz UMTS-FDD Band II TX: ~ MHz;

8 Page 8 of 158 RX: ~ MHz LTE Band II TX: ~ MHz; RX : ~ MHz LTE Band IV TX: ~ MHz; RX : ~ MHz LTE Band V TX: 824.7~ MHz; RX : ~ 893.3MHz LTE Band VII TX: ~ MHz; RX : ~ MHz LTE Band XII TX:699.7 ~ MHz; RX : 729.7~ 745.3MHz LTE Band XVII TX: ~ MHz; RX : ~ MHz Maximum Conducted AV Power to Antenna: LTE Band II: dbm LTE Band IV: dbm LTE Band V: dbm LTE Band VII: dbm LTE Band XII: dbm LTE Band XVII: dbm ERP/EIRP: LTE Band II: dbm / EIRP LTE Band IV: dbm / EIRP LTE Band V: dbm / EIRP LTE Band VII: 24.45dBm / EIRP LTE Band XII: dbm / EIRP LTE Band XVII: dbm / ERP Port: Power Supply: USB Port 5V Trade Name : ZTE FCC ID: SRQ-MF833V

9 Page 9 of Test Summary The product was tested in accordance with the following specifications. All testing has been performed according to below product classification: FCC Rules Description of Test Result ; RF Exposure (SAR) Compliance ; (a); (c); 27.50(c.10); 27.50(d.4) RF Output Power Compliance (d); 27.50(d) Peak-Average Ratio Compliance ; ; ; ; 27.53(a.5) 99% & -26 db Occupied Bandwidth Compliance ; (a); (a); 27.53(h) Spurious Emissions at Antenna Terminal Compliance ; (a); (a); 27.53(h) Field Strength of Spurious Radiation Compliance (a); (a); Out of band emission, Band Edge Compliance 27.53(m) Band Edge 27.53(m) Compliance ; ; ; Frequency stability vs. temperature 27.5(h); Frequency stability vs. voltage Compliance Note: Testing was performed by configuring EUT to maximum output power status, the declared output power class for different Measurement Uncertainty Emissions Test Item Description Uncertainty Confidence level of approximately 95% (in the case Band Edge and Radiated where distributions are normal), with a coverage +5.6dB/-4.5dB Spurious Emissions factor of 2 (for EUTs < 0.5m X 0.5m X 0.5m) - - -

10 Page 10 of MEASUREMENTS, EXAMINATION AND DERIVED RESULTS 6.1 RF Exposure (SAR) Test Result: Pass The EUT is a portable device, thus requires SAR evaluation; Please refer to RF Exposure Evaluation Report: FCC-H.

11 Page 11 of RF Output Power Temperature 24 o C Relative Humidity 53% Atmospheric Pressure 1010mbar Test date : January 15, 2018 Tested By : Aaron Liang Requirement(s): Spec Item Requirement Applicable (a) a) ERP:38.45dBm (c) b) EIRP:33dBm (c) c) EIRP: 30dBm Test Setup Base Station EUT Test Procedure For Conducted Power: - The transmitter output port was connected to base station. - Set EUT at maximum power through base station. - Select lowest, middle, and highest channels for each band and different test mode. For ERP/EIRP: - The transmitter was placed on a wooden turntable, and it was transmitting into a non-radiating load which was also placed on the turntable. - The measurement antenna was placed at a distance of 3 meters from the EUT. During the tests, the antenna height and polarization as well as EUT azimuth were varied in order to identify the maximum level of emissions from the EUT. The test was performed by placing the EUT on 3-orthogonal axis. - The frequency range up to tenth harmonic of the fundamental frequency was investigated.

12 Page 12 of Remove the EUT and replace it with substitution antenna. A signal generator was connected to the substitution antenna by a nonradiating cable. The absolute levels of the spurious emissions were measured by the substitution. - Spurious emissions in db = 10 log (TX power in Watts/0.001) the absolute level - Spurious attenuation limit in db = Log10 (power out in Watts. Remark Result Pass Fail Test Data Yes N/A Test Plot Yes (See below) N/A

13 Page 13 of 158 Conducted Power LTE Band II: BW 20MHz Ch Freq Mode UL RB Allocation UL RB Offset MPR Average power Tune up Power tolerant 20.9±1 20.3±1 20.4±1 20.4±1 21±1 20±1

14 Page 14 of 158 BW 15MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 20.9±1 20.3±1 20.5±1 20.4±1 21±1 20±1

15 Page 15 of 158 BW 10MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 20.6±1 20.1±1 20.3±1 20±1 20.6±1 20.1±1

16 Page 16 of 158 BW 5MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 20.6±1 19.4±1 20.2±1 19.5±1 20.6±1 19.7±1

17 Page 17 of 158 BW 3MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 20.8±1 19.7±1 20.2±1 19.7±1 20.6±1 19.7±1

18 Page 18 of 158 BW 1.4MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 20.6±1 19.5±1 20.6±1 19.6±1 20.5±1 20±1

19 Page 19 of 158 LTE Band IV: BW 20MHz Ch Freq Mode UL RB Allocation UL RB Offset MPR Average power Tune up Power tolerant 21±1 20.2±1 20.7±1 20.2±1 20.7±1 20.3±1

20 Page 20 of 158 BW 15MHz Ch Freq Mode UL RB Allocation UL RB Offset MPR Average power Tune up Power tolerant 20.8±1 20.1±1 20.3±1 20.2±1 20.7±1 20.3±1

21 Page 21 of 158 BW 10MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.1±1 20.3±1 20.5±1 20.3±1 20.9±1 20.2±1

22 Page 22 of 158 BW 5MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.2±1 20.3±1 20.6±1 20.3±1 21.2±1 20.3±1

23 Page 23 of 158 BW 3MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.1±1 20±1 20.4±1 20±1 21.1±1 20±1

24 Page 24 of 158 BW 1.4MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 20.8±1 19.8±1 20.7±1 19.7±1 20.7±1 19.8±1

25 Page 25 of 158 LTE Band V: BW 10MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 23.4±1 22.6±1 23.2±1 22.2±1 23.3±1 22.6±1

26 Page 26 of 158 BW 5MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 23.2±1 22.6±1 22.9±1 22.2±1 23.3±1 22.6±1

27 Page 27 of 158 BW 3MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 23.3±1 22.6±1 22.9±1 22.6±1 23.2±1 22.6±1

28 Page 28 of 158 BW 1.4MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 23.2±1 22.6±1 22.8±1 22.6±1 23.2±1 22.6±1

29 Page 29 of 158 LTE Band VII: BW 20MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.6±1 19.9±1 21.1±1 19.9±1 21.6±1 19.9±1

30 Page 30 of 158 BW 15MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.3±1 19.9±1 20.9±1 20±1 21.4±1 19.9±1

31 Page 31 of 158 BW 10MHz Ch Freq Mode UL RB Allocation UL RB Offset MPR Average power Tune up Power tolerant 21.3±1 19.9±1 20.8±1 19.9±1 21.3±1 19.9±1

32 Page 32 of 158 BW 5MHz Ch Freq Mode UL RB Allocation UL RB Offset MPR Average power Tune up Power tolerant 21.5±1 20.5±1 21.1±1 20.8±1 21.4±1 20.7±1

33 Page 33 of 158 LTE Band XII: BW 10MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.3±1 20.8±1 21.5±1 21.2±1 22.2±1 21.1±1

34 Page 34 of 158 BW 5MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.5±1 20.5±1 21.1±1 20.8±1 21.4±1 20.7±1

35 Page 35 of 158 BW 3MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.4±1 20.6±1 21.2±1 20.5±1 21.6±1 21±1

36 Page 36 of 158 BW 1.4MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 21.4±1 20.5±1 21±1 20.8±1 21.5±1 20.6±1

37 Page 37 of 158 LTE Band XVII: BW 10MHz Ch Freq Mode Average UL RB UL RB MPR power Allocation Offset Tune up Power tolerant 22.3±1 21.3±1 22.2±1 21.7±1 22.4±1 21.6±1

38 Page 38 of 158 BW 5MHz Ch Freq Mode UL RB Allocation UL RB Offset MPR Average power Tune up Power tolerant 21.9±1 20.9±1 21.6±1 21.6±1 22.1±1 21.2±1

39 Page 39 of 158 Frequency BW Modulation ERP & EIRP EIRP for LTE Band II (Part 24E) RB Size/Offset Substitut ed level Antenna Polarizati on Antenna Gain correction (dbi) Cable Loss (db) Absolut e Level Limit /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM /24 V /0 V /24 V /24 H /0 H /24 H QAM 1/24 V QAM QAM 1/0 V QAM QAM 1/24 V QAM QAM 1/24 H QAM QAM 1/0 H QAM QAM 1/24 H QAM /0 V /0 V /49 V /0 H /0 H

40 Page 40 of /49 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/49 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/49 H QAM /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM

41 Frequency BW Modulation Test Report Page 41 of 158 EIRP for LTE Band IV (Part 27) RB Size/Offset Substitut ed level Antenna Polarizati on Antenna Gain correction (dbi) Cable Loss (db) Absolu te Level Limit /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/5 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/5 H QAM QAM 1/0 H QAM QAM 1/0 H QAM /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM /0 V /0 V /24 V /0 H /0 H /24 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/24 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/24 H QAM /0 V /49 V /0 V /0 H /49 H /0 H QAM 1/0 V QAM QAM 1/49 V QAM

42 Page 42 of QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/49 H QAM QAM 1/0 H QAM /0 V /74 V /0 V /0 H /74 H /0 H QAM 1/0 V QAM QAM 1/74 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/74 H QAM QAM 1/0 H QAM /99 V /99 V /0 V /99 H /99 H /0 H QAM 1/99 V QAM QAM 1/99 V QAM QAM 1/0 V QAM QAM 1/99 H QAM QAM 1/99 H QAM QAM 1/0 H QAM

43 Frequency BW Modulation Test Report Page 43 of 158 EIRP for LTE Band V (Part 22) RB Size/Offset Substitut ed level Antenna Polarizati on Antenna Gain correction (dbi) Cable Loss (db) Absolut e Level Limit /5 V /5 V /5 V /5 H /5 H /5 H QAM 1/5 V QAM QAM 1/5 V QAM QAM 1/5 V QAM QAM 1/5 H QAM QAM 1/5 H QAM QAM 1/5 H QAM /14 V /0 V /14 V /14 H /0 H /14 H QAM 1/14 V QAM QAM 1/0 V QAM QAM 1/14 V QAM QAM 1/14 H QAM QAM 1/0 H QAM QAM 1/14 H QAM /24 V /24 V /24 V /24 H /24 H /24 H QAM 1/24 V QAM QAM 1/24 V QAM QAM 1/24 V QAM QAM 1/24 H QAM QAM 1/24 H QAM QAM 1/24 H QAM /49 V /49 V /49 V /49 H /49 H /49 H QAM 1/49 V QAM QAM 1/49 V QAM

44 Page 44 of QAM 1/49 V QAM QAM 1/49 H QAM QAM 1/49 H QAM QAM 1/49 H QAM

45 Page 45 of 158 Frequency BW Modulation ERP for LTE Band VII (Part 27) RB Size/Offset Substitut ed level Antenna Polarizati on Antenna Gain correction (dbi) Cable Loss (db) Absolut e Level Limit /0 V /0 V /24 V /0 H /0 H /24 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/24 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/24 H QAM /0 V /49 V /0 V /0 H /49 H /0 H QAM 1/0 V QAM QAM 1/49 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/49 H QAM QAM 1/0 H QAM /0 V /74 V /0 V /0 H /74 H /0 H QAM 1/0 V QAM QAM 1/74 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/74 H QAM QAM 1/0 H QAM /99 V /99 V /0 V /99 H /99 H /0 H

46 Page 46 of QAM 1/99 V QAM QAM 1/99 V QAM QAM 1/0 V QAM QAM 1/99 H QAM QAM 1/99 H QAM QAM 1/0 H QAM

47 Page 47 of 158 Frequency BW Modulation ERP for LTE Band XII (Part 27) RB Size/Offset Substitut ed level Antenna Polarizati on Antenna Gain correction (dbi) Cable Loss (db) Absolut e Level Limit /5 V /5 V /5 V /5 H /5 H /5 H QAM 1/5 V QAM QAM 1/5 V QAM QAM 1/5 V QAM QAM 1/5 H QAM QAM 1/5 H QAM QAM 1/5 H QAM /14 V /0 V /14 V /14 H /0 H /14 H QAM 1/14 V QAM QAM 1/0 V QAM QAM 1/14 V QAM QAM 1/14 H QAM QAM 1/0 H QAM QAM 1/14 H QAM /24 V /24 V /24 V /24 H /24 H /24 H QAM 1/24 V QAM QAM 1/24 V QAM QAM 1/24 V QAM QAM 1/24 H QAM QAM 1/24 H QAM QAM 1/24 H QAM /49 V /49 V /49 V /49 H /49 H /49 H QAM 1/49 V QAM

48 Page 48 of QAM 1/49 V QAM QAM 1/49 V QAM QAM 1/49 H QAM QAM 1/49 H QAM QAM 1/49 H QAM

49 Page 49 of 158 Frequency BW Modulation ERP for LTE Band XVII (Part 27) RB Size/Offset Substitut ed level Antenna Polarizati on Antenna Gain correction (dbi) Cable Loss (db) Absolut e Level Limit /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM /0 V /0 V /0 V /0 H /0 H /0 H QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 V QAM QAM 1/0 H QAM QAM 1/0 H QAM QAM 1/0 H QAM

50 Page 50 of Peak-Average Ratio Temperature 24 o C Relative Humidity 53% Atmospheric Pressure 1010mbar Test date : January 15, 2018 Tested By : Aaron Liang Requirement(s): Spec Item Requirement Applicable (d) 27.50(d) a) The peak-to-average ratio (PAR) of the transmission may not exceed 13 db. Test Setup Base Station Spectrum Analyzer EUT According with KDB v02r Alternate procedure for PAPR Peak power measurements with a peak power meter Test Procedure The total peak output power may be measured using a broadband peak RF power meter. The power meter must have a video bandwidth that is greater than or equal to the emission bandwidth and utilize a fast-responding diode detector Average power measurement with average power meter As an alternative to the use of a spectrum/signal analyzer or EMI receiver to perform a measurement of the total in-band average output power, a wideband RF average power meter with a thermocouple detector or equivalent can be used under certain conditions If the EUT can be configured to transmit continuously (i.e., the burst duty cycle 98%) and at all times the EUT is transmitting at is maximum output

51 Page 51 of 158 power level, then a conventional wide-band RF power meter can be used. If the EUT cannot be configured to transmit continuously (i.e., the burst duty cycle < 98%), then there are two options for the use of an average power meter. First, a gated average power meter can be used to perform the measurement if the gating parameters can be adjusted such that the power is measured only over active transmission bursts at maximum output power levels. A conventional average power meter can also be used if the measured burst duty cycle is constant (i.e., duty cycle variations are less than ± 2 percent) by performing the measurement over the on/off burst cycles and then correcting (increasing) the measured level by a factor equal to 10log(1/duty cycle) Remark Result Pass Fail Test Data Yes N/A Test Plot Yes (See below) N/A

52 Page 52 of 158 LTE Band II (part 24E) BW Frequency Mode Modulation Conducted Power Peak Average Peak-Average Ratio (PAR) RB 1/ RB 1/ RB 1/ RB 1/ RB 1/ RB 1/ LTE Band IV (part 27) BW Frequency Mode Modulation Conducted Power Peak Average Peak-Average Ratio (PAR) RB 1/ RB 1/ RB 1/ RB 1/ RB 1/ RB 1/

53 Page 53 of 158 LTE Band V (part 27) BW Frequency Mode Modulation Conducted Power Peak Average Peak-Average Ratio (PAR) RB 1/ RB 1/ RB 1/ RB 1/ LTE Band VII (part 27) BW Frequency Mode Modulation Conducted Power Peak Average Peak-Average Ratio (PAR) RB 1/ RB 1/ RB 1/ RB 1/

54 Page 54 of 158 LTE Band XII (part 27) BW Frequency Mode Modulation Conducted Power Peak Average Peak-Average Ratio (PAR) RB 1/ RB 1/ RB 1/ RB 1/ LTE Band XVII (part 27) BW Frequency Mode Modulation Conducted Power Peak Average Peak-Average Ratio (PAR) RB 1/ RB 1/

55 Page 55 of Occupied Bandwidth Temperature 23 o C Relative Humidity 51% Atmospheric Pressure 1020mbar Test date : January 30, 2018 Tested By : Aaron Liang Requirement(s): Spec Item Requirement Applicable , a) 99% Occupied Bandwidth(kHz) , (a) b) 26 db Bandwidth(kHz) Test Setup Base Station Spectrum Analyzer EUT Test Procedure - The EUT was connected to Spectrum Analyzer and Base Station via power divider. - The 99% and 26 db occupied bandwidth (BW) of the middle channel for the highest RF powers. Remark Result Pass Fail Test Data Yes N/A Test Plot Yes (See below) N/A

56 Page 56 of 158 LTE Band II (Part 24E) BW Channel Frequency Modulation 99% Occupied Bandwidth 26 db Bandwidth

57 Page 57 of

58 Page 58 of 158 LTE Band IV (Part 27) BW Channel Frequency Modulation 99% Occupied Bandwidth 26 db Bandwidth

59 Page 59 of

60 Page 60 of 158 LTE Band V (Part 22H) BW Channel Frequency Modulation 99% Occupied Bandwidth 26 db Bandwidth

61 Page 61 of 158 LTE Band VII (Part 27) result BW Channel Frequency Modulation 99% Occupied Bandwidth 26 db Bandwidth

62 Page 62 of 158 LTE Band XII (Part 27) BW Channel Frequency Modulation 99% Occupied Bandwidth 26 db Bandwidth

63 Page 63 of 158 LTE Band XVII (Part 27) BW Channel Frequency Modulation 99% Occupied Bandwidth 26 db Bandwidth

64 Page 64 of 158 Test Plots LTE Band II (Part 24E) LTE Band II - Low CH -1.4 LTE Band II - Low CH -1.4 LTE Band II - Middle CH -1.4 LTE Band II - Middle CH -1.4 LTE Band II - High CH -1.4 LTE Band II - High CH -1.4

65 Page 65 of 158 LTE Band II - Low CH -3 LTE Band II - Low CH -3 LTE Band II - Middle CH -3 LTE Band II - Middle CH -3 LTE Band II - High CH -3 LTE Band II - High CH -3

66 Page 66 of 158 LTE Band II - Low CH -5 LTE Band II - Low CH -5 LTE Band II - Middle CH -5 LTE Band II - Middle CH -5 LTE Band II - High CH -5 LTE Band II - High CH -5

67 Page 67 of 158 LTE Band II - Low CH -10 LTE Band II - Low CH -10 LTE Band II - Middle CH -10 LTE Band II - Middle CH -10 LTE Band II - High CH -10 LTE Band II - High CH -10

68 Page 68 of 158 LTE Band II - Low CH -15 LTE Band II - Low CH -15 LTE Band II - Middle CH -15 LTE Band II - Middle CH -15 LTE Band II - High CH -15 LTE Band II - High CH -15

69 Page 69 of 158 LTE Band II - Low CH -20 LTE Band II - Low CH -20 LTE Band II - Middle CH -20 LTE Band II - Middle CH -20 LTE Band II - High CH -20 LTE Band II - High CH -20

70 Page 70 of 158 LTE Band IV (Part 27) LTE Band IV - Low CH -1.4 LTE Band IV - Low CH -1.4 LTE Band IV - Middle CH -1.4 LTE Band IV - Middle CH -1.4 LTE Band IV - High CH -1.4 LTE Band IV - High CH -1.4

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