David Huang Checked By

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1 RF TEST REPORT Report No.: Supersede Report No.: N/A Applicant Product Name Model No. Serial No. est Standard Verykool SA Inc Mobile Phone s5007 N/A FCC Part 22(H):2015 ;FCC Part 24(E):2015; FCC Part 27:2015; ANSI/ IA-603-D: 2010 est Date July 08 to July 27, 2016 Issue Date July 29, 2016 est Result Pass Fail Equipment complied with the specification Equipment did not comply with the specification Loren Luo est Engineer David Huang Checked By his test report may be reproduced in full only est result presented in this test report is applicable to the tested sample only Issued by: SIEMIC (SHENZHEN-CHINA) LABORA ORIES Zone A, Floor 1, Building 2 Wan Ye Long echnology Park South Side of Zhoushi Road, Bao an District, Shenzhen, Guangdong China Phone: China@siemic.com.cn

2 Page 2 of 102 Laboratories Introduction SIEMIC, headquartered in the heart of Silicon Valley, with superior facilities in S and Asia, is one of the leading independent testing and certification facilities providing customers with one-stop shop services for Compliance esting 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 SA EMC, RF/Wireless, SAR, elecom Canada EMC, RF/Wireless, SAR, elecom aiwan EMC, RF, elecom, SAR, Safety Hong Kong RF/Wireless, SAR, elecom Australia EMC, RF, elecom, SAR, Safety Korea EMI, EMS, RF, SAR, elecom, Safety Japan EMI, RF/Wireless, SAR, elecom Singapore EMC, RF, SAR, elecom Europe EMC, RF, SAR, elecom, Safety

3 Page 3 of 102 his page has been left blank intentionally.

4 Page 4 of 102 CON EN S 1. REPOR REVISION HIS ORY C S OMER INFORMA ION ES SI E INFORMA ION EQ IPMEN NDER ES (E ) INFORMA ION ES S MMARY MEAS REMEN S, EXAMINA ION AND DERIVED RES L S RF EXPOS RE (SAR) RF O P POWER PEAK-AVERAGE RA IO OCC PIED BANDWID H SP RIO S EMISSIONS A AN ENNA ERMINALS SP RIO S RADIA ED EMISSIONS BAND EDGE FREQ ENCY S ABILI Y ANNEX A. ES INS R MEN ANNEX B. E AND ES SE P PHO OGRAPHS ANNEX C. ES SE P AND S PPOR ING EQ IPMEN ANNEX C.II. E OPERA ING CONKI IONS ANNEX D. SER MAN AL / BLOCK DIAGRAM / SCHEMA ICS / PAR LIS ANNEX E. DECLARA ION OF SIMILARI Y

5 Page 5 of Report Revision History Report No. Report Version Description Issue Date NONE Original July 29, Customer information Applicant Name Applicant Add Manufacturer Manufacturer Add Verykool SA Inc 3636 Nobel Drive, Suite 325, San Diego, California nited States Shenzhen Fortuneship echnology Co., Ltd 6/F, Kanghesheng Building, No.1 Chuangsheng Road, Nanshan District, Shenzhen, Guangdong, China 3. est site information Lab performing tests SIEMIC (Shenzhen-China) LABORA ORIES Zone A, Floor 1, Building 2 Wan Ye Long echnology Park Lab Address South Side of Zhoushi Road, Bao an District, Shenzhen, Guangdong China FCC est Site No IC est Site No. 4842E-1 est Software Radiated Emission Program- o Shenzhen v2.0

6 Page 6 of Equipment under est (E ) Information Description of E : Mobile Phone Main Model: s5007 Serial Model: N/A Date E received: July 07, 2016 est Date(s): July 08 to July 27, 2016 Equipment Category PCE Antenna Gain: GSM850: 0.68dBi PCS1900: 0.95dBi M S-FDD Band V: 0.92dBi M S-FDD Band IV: 0.95dBi M S-FDD Band II: 0.95dBi Bluetooth /WIFI:1.92dBi Antenna ype: PIFA antenna ype of Modulation: GSM / GPRS: GMSK EGPRS: GMSK M S-FDD: QPSK b/g/n: DSSS, OFDM Bluetooth: GFSK, π /4DQPSK, 8DPSK RF Operating Frequency (ies): GSM850 X: ~ MHz; RX: ~ MHz PCS1900 X: ~ MHz; RX: ~ MHz M S-FDD Band V X: ~ MHz; RX: ~ MHz M S-FDD Band IV X: ~ MHz; RX : ~ MHz M S-FDD Band II X: ~ MHz; RX: ~ MHz WIFI: b/g/n(20M): MHz Bluetooth: MHz

7 Page 7 of 102 Number of Channels: GSM 850: 124CH PCS1900: 299CH M S-FDD Band V: 102CH M S-FDD Band IV: 202CH M S-FDD Band II: 277CH WIFI :802.11b/g/n(20M): 11CH Bluetooth: 79CH Port: Earphone Port, SB Port Input Power: Adapter: Model: s5005 Input: AC V,50/60Hz;0.2A Output: DC 5.0V,1A Battery: Model: s5005 Spec: 3.7V,2000mAh(7.4Wh) Charge limited voltage: 4.2V GSM Vioce:GSM850: dbm PCS1900: dbm GPRS:GSM850: 32.22dBm PCS1900: dbm MCS1:GSM850: dbm PCS1900: dbm Maximum Conducted AV Power to Antenna: RMC: M S-FDD Band V: dbm M S-FDD Band II: dbm M S-FDD Band IV: dbm HSDPA: M S-FDD Band V: dbm M S-FDD Band II: dbm M S-FDD Band IV: dbm HS PA: M S-FDD Band V: dbm M S-FDD Band II: dbm M S-FDD Band IV: dbm

8 Page 8 of 102 GSM Vioce:GSM850: dbm / ERP PCS1900: dbm / EIRP GPRS:GSM850: dbm / ERP PCS1900: dbm / EIRP MCS1:GSM850: dbm / ERP PCS1900: dbm / EIRP ERP/EIRP: RMC: M S-FDD Band V: dbm / ERP M S-FDD Band II: dbm / ERP M S-FDD Band IV: dbm / EIRP HSDPA: M S-FDD Band V: dbm / ERP M S-FDD Band II: dbm / ERP M S-FDD Band IV: dbm / EIRP HS PA: M S-FDD Band V: dbm / ERP M S-FDD Band II: dbm / ERP M S-FDD Band IV: dbm / EIRP rade Name : verykool GPRS/EGPRS Multi-slot class 8/10/12 FCC ID: WA6S5007

9 Page 9 of est Summary he product was tested in accordance with the following specifications. All testing has been performed according to below product classification: FCC Rules Description of est 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 erminal Compliance ; (a); (a); 27.53(h) Field Strength of Spurious Radiation Compliance (a); (a); 27.53(h) Out of band emission, Band Edge Compliance ; ; ; Frequency stability vs. temperature 27.5(h); Frequency stability vs. voltage Compliance Note: esting was performed by configuring E to maximum output power status, the declared output power class for different Measurement ncertainty Emissions est Item Description ncertainty 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 E s < 0.5m X 0.5m X 0.5m) - - -

10 Page 10 of MEAS REMEN S, EXAMINA ION AND DERIVED RES L S 6.1 RF Exposure (SAR) est Result: Pass he E is a portable device, thus requires SAR evaluation; Please refer to RF Exposure Evaluation Report: FCC-H.

11 Page 11 of RF Output Power emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable (a) a) ERP:38.45dBm (c) b) EIRP:33dBm (c) c) EIRP: 30dBm est Setup est Procedure For Conducted Power: - he transmitter output port was connected to base station. - Set E at maximum power through base station. - Select lowest, middle, and highest channels for each band and different test mode. For ERP/EIRP: According with KDB v02r02 - he transmitter was placed on a wooden turntable, and it was transmitting into a non-radiating load which was also placed on the turntable. - he measurement antenna was placed at a distance of 3 meters from the E. During the tests, the antenna height and polarization as well as E azimuth were varied in order to identify the maximum level of emissions from the E. he test was performed by placing the E on 3-orthogonal axis. - he frequency range up to tenth harmonic of the fundamental

12 Page 12 of 102 frequency was investigated. - Remove the E and replace it with substitution antenna. A signal generator was connected to the substitution antenna by a nonradiating cable. he absolute levels of the spurious emissions were measured by the substitution. - Spurious emissions in db = 10 log ( X power in Watts/0.001) the absolute level - Spurious attenuation limit in db = Log10 (power out in Watts. Remark Result Pass Fail est Data Yes N/A est Plot Yes (See below) N/A

13 Page 13 of 102 Conducted Power GSM Mode: Burst Average Power ; Band GSM850 PCS1900 une up une up Channel Power Power tolerant tolerant Frequency (MHz) / / GSM Voice (1 uplink),gmsk ± ±1 GPRS Multi-Slot Class 8 (1 uplink),gmsk ± ±1 GPRS Multi-Slot Class 10 (2 uplink) GMSK ± ±1 GPRS Multi-Slot Class 12 (4 uplink) GMSK ± ±1 EGPRS Multi-Slot Class 8 (1 uplink) ± ±1 GMSK MCS1 EGPRS Multi-Slot Class 10 (2 uplink) ± ±1 GMSK MCS1 EGPRS Multi-Slot Class 10 (4 uplink) ± ±1 GMSK MCS1 Remark : GPRS, CS1 coding scheme. EGPRS, MCS1 coding scheme. Multi-Slot Class 8, Support Max 4 downlink, 1 uplink, 5 working link Multi-Slot Class 10, Support Max 4 downlink, 2 uplink, 5 working link Multi-Slot Class 12, Support Max 4 downlink, 4 uplink, 5 working link

14 Page 14 of 102 M S Mode: Band/ ime Slot configuration RMC 12.2kbps HSDPA Subtest1 HSDPA Subtest2 HSDPA Subtest3 HSDPA Subtest4 HS PA Subtest1 HS PA Subtest2 HS PA Subtest3 HS PA Subtest4 HS PA Subtest5 M S-FDD Band V Channel Frequency Average power une up Power tolerant ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ±1

15 Page 15 of 102 M S-FDD Band Ⅱ Band/ ime Slot configuration RMC 12.2kbps HSDPA Subtest1 HSDPA Subtest2 HSDPA Subtest3 HSDPA Subtest4 HS PA Subtest1 HS PA Subtest2 HS PA Subtest3 HS PA Subtest4 HS PA Subtest5 Channel Frequency Average power une up Power tolerant ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ±1

16 Page 16 of 102 M S-FDD Band IV Band/ ime Slot configuration RMC 12.2kbps HSDPA Subtest1 HSDPA Subtest2 HSDPA Subtest3 HSDPA Subtest4 HS PA Subtest1 HS PA Subtest2 HS PA Subtest3 HS PA Subtest4 HS PA Subtest5 Channel Frequency Average power une up Power tolerant ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ± ±1

17 Page 17 of 102 ERP & EIRP GSM Voice ERP for Cellular Band (Part 22H) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for PCS Band (Part 24E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H

18 Page 18 of 102 GPRS: ERP for Cellular Band (Part 22H) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for PCS Band (Part 24E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H

19 Page 19 of 102 EGPRS (MCS1): ERP for Cellular Band (Part 22H) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for PCS Band (Part 24E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H

20 Page 20 of 102 RMC ERP for M S-FDD Band Ⅴ (Part 22H) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for M S-FDD Band Ⅱ (Part 24E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for M S-FDD Band IV (Part 27E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H

21 Page 21 of 102 HSDPA ERP for M S-FDD Band Ⅴ (Part 22H) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for M S-FDD Band Ⅱ (Part 24E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for M S-FDD Band IV (Part 27E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H

22 Page 22 of 102 HS PA ERP for M S-FDD Band Ⅴ (Part 22H) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for M S-FDD Band Ⅱ (Part 24E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H EIRP for M S-FDD Band IV (Part 27E) Substituted Antenna Gain Frequency Antenna Cable Loss Absolute Level Limit level correction (MHz) Polarization (db) (dbi) V H V H V H

23 Page 23 of Peak-Average Ratio emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable (d) 27.50(d) a) The peak-to-average ratio (PAR) of the transmission may not exceed 13dB. est Setup According with KDB v02r Alternate procedure for PAPR Peak power measurements with a peak power meter he total peak output power may be measured using a broadband peak RF power meter. he power meter must have a video bandwidth that is est Procedure 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 E can be configured to transmit continuously (i.e., the burst duty cycle 98%) and at all times the E is transmitting at is maximum output

24 Page 24 of 102 power level, then a conventional wide-band RF power meter can be used. If the E 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 est Data Yes N/A est Plot Yes (See below) N/A

25 Page 25 of 102 GSM GSM 1900 PK-AV POWER (PAR 24E) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR) GPRS 1900 PK-AV POWER (PAR 24E) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR)

26 Page 26 of 102 RMC M S-FDD Band 2 PK-AV POWER (PAR 24E) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR) M S-FDD Band 4 PK-AV POWER (PAR 27) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR) HS PA M S-FDD Band 2 PK-AV POWER (PAR 24E) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR) M S-FDD Band 4 PK-AV POWER (PAR 27) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR)

27 Page 27 of 102 HSDPA M S-FDD Band 2 PK-AV POWER (PAR 24E) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR) M S-FDD Band 4 PK-AV POWER (PAR 27) Frequency Conducted power Peak-Average (MHz) Peak Average Ratio(PAR)

28 Page 28 of Occupied Bandwidth emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable , a) 99% Occupied Bandwidth(kHz) , (a) b) 26 db Bandwidth(kHz) est Setup est Procedure - he E was connected to Spectrum Analyzer and Base Station via power divider. - he 99% and 26 db occupied bandwidth (BW) of the middle channel for the highest RF powers. Remark Result Pass Fail est Data Yes N/A est Plot Yes (See below) N/A

29 Page 29 of 102 GSM Voice: Cellular Band (Part 22H) result Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (khz) (khz) PCS Band (Part 24E) result Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (khz) (khz) GPRS: Cellular Band (Part 22H) result Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (khz) (khz) PCS Band (Part 24E) result Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (khz) (khz)

30 Page 30 of 102 EGPRS (MCS 1): Cellular Band (Part 22H) result Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (khz) (khz) PCS Band (Part 24E) result Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (khz) (khz)

31 Page 31 of 102 RMC: M S-FDD Band Ⅴ (Part 22H) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz) M S-FDD Band IV (Part 27) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz) M S-FDD Band Ⅱ (Part 24E) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz)

32 Page 32 of 102 HSDPA: M S-FDD Band Ⅴ (Part 22H) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz) M S-FDD Band IV (Part 27) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz) M S-FDD Band Ⅱ (Part 24E) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz)

33 Page 33 of 102 HS PA: M S-FDD Band Ⅴ (Part 22H) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz) M S-FDD Band IV (Part 27) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz) M S-FDD Band Ⅱ (Part 24E) Channel Frequency 99% Occupied 26 db Bandwidth (MHz) Bandwidth (MHz) (MHz)

34 Page 34 of 102 est Plots GMS Voice: GSM 850 BW - Low CH 824.2MHz GSM 850 BW - Mid CH 836.6MHz GSM 850 BW - High CH 848.8MHz PCS 1900 BW - Low CH MHz PCS 1900 BW - Mid CH 1880MHz PCS 1900 BW - High CH MHz

35 Page 35 of 102 GPRS: GSM 850 BW - Low CH 824.2MHz GSM 850 BW - Mid CH 836.6MHz GSM 850 BW - High CH 848.8MHz PCS 1900 BW - Low CH MHz PCS 1900 BW - Mid CH 1880MHz PCS 1900 BW - High CH MHz

36 Page 36 of 102 EGPRS (MCS 1): GSM 850 BW - Low CH 824.2MHz GSM 850 BW - Mid CH 836.6MHz GSM 850 BW - High CH 848.8MHz PCS 1900 BW - Low CH MHz PCS 1900 BW - Mid CH 1880MHz PCS 1900 BW - High CH MHz

37 Page 37 of 102 RMC: Band V BW - Low CH MHz Band V BW - Mid CH MHz Band V BW - High CH MHz Band IV BW - Low CH MHz Band IV BW - Mid CH MHz Band IV BW - High CH MHz

38 Page 38 of 102 Band II BW - Low CH MHz Band II BW - Mid CH 1880MHz Band II BW - High CH MHz

39 Page 39 of 102 HSDPA: Band V BW - Low CH MHz Band V BW - Mid CH MHz Band V BW - High CH MHz Band IV BW - Low CH MHz Band IV BW - Mid CH MHz Band IV BW - High CH MHz

40 Page 40 of 102 Band II BW - Low CH MHz Band II BW - Mid CH 1880MHz Band II BW - High CH MHz

41 Page 41 of 102 HS PA: Band V BW - Low CH MHz Band V BW - Mid CH MHz Band V BW - High CH MHz Band IV BW - Low CH MHz Band IV BW - Mid CH MHz Band IV BW - High CH MHz

42 Page 42 of 102 Band II BW - Low CH MHz Band II BW - Mid CH 1880MHz Band II BW - High CH MHz

43 Page 43 of Spurious Emissions at Antenna erminals emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable , he power of any emission outside of the authorized (a)& operating frequency ranges must be lower than the a) (a) transmitter power (P) by a factor of at least log 27.53(h) (P) db est Setup est Procedure - he E was connected to Spectrum Analyzer and Base Station via power divider. - he Band Edges of low and high channels for the highest RF powers were measured. - Setting RBW as roughly BW/100. Remark Result Pass Fail est Data Yes N/A est Plot Yes (See below) N/A

44 Page 44 of 102 est Plots GSM Voice: Cellular Band (Part 22H) result Fundamental GSM Low Channel-1 GSM Low Channel-2 Fundamental GSM 850 Middle Channel-1 GSM 850 Middle Channel-2 Fundamental GSM High Channel-1 GSM High Channel-2

45 Page 45 of 102 PCS Band (Part24E) result Fundamental PCS Low Channel-1 PCS Low Channel-2 Fundamental PCS Middle Channel-1 PCS Middle Channel-2 Fundamental PCS High Channel-1 PCS High Channel-2

46 Page 46 of 102 GPRS: Cellular Band (Part 22H) result Fundamental GSM Low Channel-1 GSM Low Channel-2 Fundamental GSM 850 Middle Channel-1 GSM 850 Middle Channel-2 Fundamental GSM High Channel-1 GSM High Channel-2

47 Page 47 of 102 PCS Band (Part24E) result Fundamental PCS Low Channel-1 PCS Low Channel-2 Fundamental PCS Middle Channel-1 PCS Middle Channel-2 Fundamental PCS High Channel-1 PCS High Channel-2

48 Page 48 of 102 EGPRS (MCS 1): Cellular Band (Part 22H) result Fundamental GSM Low Channel-1 GSM Low Channel-2 Fundamental GSM 850 Middle Channel-1 GSM 850 Middle Channel-2 Fundamental GSM High Channel-1 GSM High Channel-2

49 Page 49 of 102 PCS Band (Part24E) result Fundamental PCS Low Channel-1 PCS Low Channel-2 Fundamental PCS Middle Channel-1 PCS Middle Channel-2 Fundamental PCS High Channel-1 PCS High Channel-2

50 Page 50 of 102 RMC M S-FDD Band Ⅴ (Part 22H) Fundamental Band V - Low Channel-1 Band V - Low Channel-2 Fundamental Band V - Middle Channel-1 Band V - Middle Channel-2 Fundamental Band V - High Channel-1 Band V - High Channel-2

51 Page 51 of 102 M S-FDD Band IV (Part 27) Fundamental Band IV - Low Channel-1 Band IV - Low Channel-2 Fundamental Band IV - Middle Channel-1 Band IV - Middle Channel-2 Fundamental Band IV - High Channel-1 Band IV - High Channel-2

52 Page 52 of 102 M S-FDD Band Ⅱ (Part 24E) Fundamental Band II - Low Channel-1 Band II - Low Channel-2 Fundamental Band II - Middle Channel-1 Band II - Middle Channel-2 Fundamental Band II - High Channel-1 Band II - High Channel-2

53 Page 53 of 102 HSDPA: M S-FDD Band Ⅴ (Part 22H) Fundamental Band V - Low Channel-1 Band V - Low Channel-2 Fundamental Band V - Middle Channel-1 Band V - Middle Channel-2 Fundamental Band V - High Channel-1 Band V - High Channel-2

54 Page 54 of 102 M S-FDD Band IV (Part 27) Fundamental Band IV - Low Channel-1 Band IV - Low Channel-2 Fundamental Band IV - Middle Channel-1 Band IV - Middle Channel-2 Fundamental Band IV - High Channel-1 Band IV - High Channel-2

55 Page 55 of 102 M S-FDD Band Ⅱ (Part 24E) Fundamental Band II - Low Channel-1 Band II - Low Channel-2 Fundamental Band II - Middle Channel-1 Band II - Middle Channel-2 Fundamental Band II - High Channel-1 Band II - High Channel-2

56 Page 56 of 102 HS PA: M S-FDD Band Ⅴ (Part 22H) Fundamental Band V - Low Channel-1 Band V - Low Channel-2 Fundamental Band V - Middle Channel-1 Band V - Middle Channel-2 Fundamental Band V - High Channel-1 Band V - High Channel-2

57 Page 57 of 102 M S-FDD Band IV (Part 27) Fundamental Band IV - Low Channel-1 Band IV - Low Channel-2 Fundamental Band IV - Middle Channel-1 Band IV - Middle Channel-2 Fundamental Band IV - High Channel-1 Band IV - High Channel-2

58 Page 58 of 102 M S-FDD Band Ⅱ (Part 24E) Fundamental Band II - Low Channel-1 Band II - Low Channel-2 Fundamental Band II - Middle Channel-1 Band II - Middle Channel-2 Fundamental Band II - High Channel-1 Band II - High Channel-2

59 Page 59 of Spurious Radiated Emissions emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable , he power of any emission outside of the authorized operating frequency ranges must be attenuated below the & a) transmitter power (P) by a factor of at least log (P) db. he spectrum is scanned from 30 MHz up to a frequency 27.53(h) including its 10th harmonic. est setup est Procedure 1. he transmitter was placed on a wooden turntable, and it was transmitting into a nonradiating load which was also placed on the turntable. 2. he measurement antenna was placed at a distance of 3 meters from the E. During the tests, the antenna height and polarization as well as E azimuth were varied in order to identify the maximum level of emissions from the E. he test was performed by placing the E on 3-orthogonal axis. 3. Remove the E and replace it with substitution antenna. A signal generator was connected to the substitution antenna by a non-radiating cable. he absolute levels of the spurious emissions were measured by the substitution. Sample Calculation: E Field Strength = Raw Amplitude (dbµv/m) Amplifier Gain (db) + Antenna Factor (db) + Cable Loss (db) + Filter Attenuation (db, if used)

60 Page 60 of 102 Remark Result Pass Fail est Data Yes N/A est Plot Yes (See below) N/A

61 Page 61 of 102 Cellular Band (Part 22H) result Low channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Middle channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H High channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Note: 1, The testing has been conformed to 10*848.8MHz=8,488MHz 2, All other emissions more than 30 db below the limit 3,GSM voice, GPRS and EGPRS mode were investingated. The results above show only the worse cases 4, X-Axis, Y-Axis and Z-Axis were investigated. The results above show only the worst case.

62 Page 62 of 102 PCS Band (Part24E) result Low channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Middle channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H High channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Note: 1, The testing has been conformed to 10*1909.8MHz=19,098MHz 2, All other emissions more than 30 db below the limit 3,GSM voice, GPRS and EGPRS mode were investingated. The results above show only the worse cases 4, X-Axis, Y-Axis and Z-Axis were investigated. The results above show only the worst case.

63 Page 63 of 102 M S-FDD Band Ⅴ (Part 22H) Low channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Middle channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H High channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Note: 1, The testing has been conformed to 10*846.6MHz=8,466MHz 2, All other emissions more than 30 db below the limit 3,RMC, HSUPA and HSDPA mode were investingated. The results above show only the worse cases 4, X-Axis, Y-Axis and Z-Axis were investigated. The results above show only the worst case.

64 Page 64 of 102 M S-FDD Band Ⅱ (Part 24E) Low channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Middle channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H High channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Note: 1, The testing has been conformed to 10*1907.6MHz=19,076MHz 2, All other emissions more than 30 db below the limit 3,RMC, HSUPA and HSDPA mode were investingated. The results above show only the worse cases 4, X-Axis, Y-Axis and Z-Axis were investigated. The results above show only the worst case

65 Page 65 of 102 M S-FDD Band IV (Part 27E) Low channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Middle channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H High channel Frequency (MHz) Substituted level Polarity (H/V) Antenna Gain Correction (db) Cable Loss (db) Corrected Reading Limit Margin (db) V H V H Note: 1, The testing has been conformed to 10*1712.4MHz=17,124MHz 2, All other emissions more than 30 db below the limit 3,RMC, HSUPA and HSDPA mode were investingated. The results above show only the worse cases 4, X-Axis, Y-Axis and Z-Axis were investigated. The results above show only the worst case

66 Page 66 of Band Edge emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable he power of any emission outside of the authorized (a) operating frequency ranges must be lower than the (a) a) transmitter power (P) by a factor of at least log (P) 27.53(h) db. est setup Procedure - he E was connected to Spectrum Analyzer and Base Station via power divider. - he Band Edges of low and high channels for the highest RF powers were measured. Setting RBW as roughly BW/100. Remark Result Pass Fail est Data Yes N/A est Plot Yes (See below) N/A

67 Page 67 of 102 GSM Voice: Cellular Band (Part 22H) result Frequency (MHz) Emission Limit PCS Band (Part24E) result Frequency (MHz) Emission Limit GPRS: Cellular Band (Part 22H) result Frequency (MHz) Emission Limit PCS Band (Part24E) result Frequency (MHz) Emission Limit

68 Page 68 of 102 EGPRS (MCS1): Cellular Band (Part 22H) result Frequency (MHz) Emission Limit PCS Band (Part24E) result Frequency (MHz) Emission Limit

69 Page 69 of 102 RMC: M S-FDD Band Ⅴ (Part 22H) Frequency (MHz) Emission Limit M S-FDD Band IV (Part 27) Frequency (MHz) Emission Limit M S-FDD Band Ⅱ (Part 24E) Frequency (MHz) Emission Limit HSDPA: M S-FDD Band Ⅴ (Part 22H) Frequency (MHz) Emission Limit M S-FDD Band IV (Part 27) Frequency (MHz) Emission Limit

70 Page 70 of 102 M S-FDD Band Ⅱ (Part 24E) Frequency (MHz) Emission Limit HS PA: M S-FDD Band Ⅴ (Part 22H) Frequency (MHz) Emission Limit M S-FDD Band IV (Part 27) Frequency (MHz) Emission Limit M S-FDD Band Ⅱ (Part 24E) Frequency (MHz) Emission Limit

71 Page 71 of 102 GSM Voice: est Plots Cellular Band - Low Channel Note: Offset=Cable loss (4.0) + 10log (3.19/3)= =4.3dB Cellular Band - High Channel Note: Offset=Cable loss (4.0) + 10log (3.18/3)= =4.3dB PCS Band - Low Channel Note: Offset=Cable loss (4.0) + 10log (3.19/3)= =4.8dB PCS Band - High Channel Note: Offset=Cable loss (4.0) + 10log (3.18/3)= =4.8dB

72 Page 72 of 102 GPRS: est Plots Cellular Band - Low Channel Note: Offset=Cable loss (4.0) + 10log (3.20/3)= =4.3dB Cellular Band - High Channel Note: Offset=Cable loss (4.0) + 10log (3.24/3)= =4.3dB PCS Band - Low Channel Note: Offset=Cable loss (4.5) + 10log (3.23/3)= =4.8dB PCS Band - High Channel Note: Offset=Cable loss (4.5) + 10log (3.19/3)= =4.8dB

73 Page 73 of 102 EGPRS (MCS 1): est Plots Cellular Band - Low Channel Note: Offset=Cable loss (4.0) + 10log (3.20/3)= =4.3dB Cellular Band - High Channel Note: Offset=Cable loss (4.0) + 10log (3.17/3)= =4.2dB PCS Band - Low Channel Note: Offset=Cable loss (4.5) + 10log (3.26/3)= =4.9dB PCS Band - High Channel Note: Offset=Cable loss (4.5) + 10log (3.23/3)= =4.8dB

74 Page 74 of 102 RMC: M S-FDD Band Ⅴ - Low Channel Note: Offset=Cable loss (4.0) + 10log (46.94/30)= =5.9dB M S-FDD Band Ⅴ - High Channel Note: Offset=Cable loss (4.0) + 10log (46.94/30)= =5.9dB M S-FDD Band IV - Low Channel Note: Offset=Cable loss (4.5) + 10log (46.98/30)= =5.9dB M S-FDD Band IV - High Channel Note: Offset=Cable loss (4.5) + 10log (46.84/30)= =6.0dB

75 Page 75 of 102 M S-FDD Band Ⅱ - Low Channel Note: Offset=Cable loss (4.5) + 10log (46.86/30) =6.5dB M S-FDD Band Ⅱ - High Channel Note: Offset=Cable loss (4.5) + 10log (47.17/30)= =6.4dB

76 Page 76 of 102 HSDPA: M S-FDD Band Ⅴ - Low Channel Note: Offset=Cable loss (4.0) + 10log (47.00/30)= =5.9dB M S-FDD Band Ⅴ - High Channel Note: Offset=Cable loss (4.0) + 10log (47.20/30)= =5.9dB M S-FDD Band IV - Low Channel Note: Offset=Cable loss (4.5) + 10log (46.84/30)= =5.9dB M S-FDD Band IV - High Channel Note: Offset=Cable loss (4.5) + 10log (46.95/30)= =5.9dB

77 Page 77 of 102 M S-FDD Band Ⅱ - Low Channel Note: Offset=Cable loss (4.5) + 10log (46.95/30)= =6.5dB M S-FDD Band Ⅱ - High Channel Note: Offset=Cable loss (4.5) + 10log (47.21/30)= =6.4dB

78 Page 78 of 102 HS PA: M S-FDD Band Ⅴ - Low Channel Note: Offset=Cable loss (4.0) + 10log (47.12/30)= =5.9dB M S-FDD Band Ⅴ - High Channel Note: Offset=Cable loss (4.0) + 10log (46.86/30)= =6.0dB M S-FDD Band IV - Low Channel Note: Offset=Cable loss (4.5) + 10log (47.17/30)= =5.9dB M S-FDD Band IV - High Channel Note: Offset=Cable loss (4.5) + 10log (46.99/30)= =6.0dB

79 Page 79 of 102 M S-FDD Band Ⅱ - Low Channel Note: Offset=Cable loss (4.5) + 10log (47.12/30)= =6.5dB M S-FDD Band Ⅱ - High Channel Note: Offset=Cable loss (4.5) + 10log (47.06/30)= =6.5dB

80 Page 80 of Frequency Stability emperature 22 Relative Humidity 54% Atmospheric Pressure 1021mbar est date : July 21, 2016 ested By : Loren Luo Requirement(s): Spec Item Requirement Applicable According to , the carrier frequency of each transmitter in the Public Mobile Services must be maintained within the tolerances given in able below: Frequency olerance for ransmitters in the Public Mobile Services , & (h); a) Frequency Range (MHz) Base, fixed (ppm) Mobile 3 watts (ppm) Mobile 3 watts (ppm) 25 to to to to to N/A N/A 929 to N/A N/A 2110 to N/A N/A According to , the frequency stability shall be sufficient to ensure that the fundamental emissions stay within the authorized frequency block. est setup

81 Page 81 of 102 Procedure A communication link was established between E and base station. he frequency error was monitored and measured by base station under variation of ambient temperature and variation of primary supply voltage. Limit: he frequency stability of the transmitter shall be maintained within ± % (±2.5ppm) of the center frequency. Remark Result Pass Fail est Data Yes N/A est Plot Yes (See below) N/A

82 Page 82 of 102 GSM Voice: Cellular Band (Part 22H) result Middle Channel, fo = MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm) PCS Band (Part 24E) result Middle Channel, fo = 1880 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

83 Page 83 of 102 GPRS: Cellular Band (Part 22H) result Middle Channel, fo = MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm) PCS Band (Part 24E) result Middle Channel, fo = 1880 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

84 Page 84 of 102 EGPRS (MCS1): Cellular Band (Part 22H) result Middle Channel, fo = MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm) PCS Band (Part 24E) result Middle Channel, fo = 1880 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

85 Page 85 of 102 RMC: M S-FDD Band Ⅴ (Part 22H) Middle Channel, fo = 835 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm) M S-FDD Band Ⅱ (Part 24E) Middle Channel, fo = 1880 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

86 Page 86 of 102 M S-FDD Band IV (Part 27E) Middle Channel, fo = MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

87 Page 87 of 102 HS PA: M S-FDD Band Ⅴ (Part 22H) Middle Channel, fo = 835 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm) M S-FDD Band Ⅱ (Part 24E) Middle Channel, fo = 1880 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

88 Page 88 of 102 M S-FDD Band IV (Part 27E) Middle Channel, fo = MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

89 Page 89 of 102 HSDPA: M S-FDD Band Ⅴ (Part 22H) Middle Channel, fo = 835 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm) M S-FDD Band Ⅱ (Part 24E) Middle Channel, fo = 1880 MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

90 Page 90 of 102 M S-FDD Band IV (Part 27E) Middle Channel, fo = MHz emperature ( ) -10 Power Supplied (VDC) Frequency Frequency Limit Error Error (ppm) (Hz) (ppm)

91 Page 91 of 102 Annex A. ES INS R MEN Instrument Model Serial # Cal Date Cal Due In use RF Conducted est Agilent ESA-E SERIES SPEC R M ANALYZER E4407B MY /16/ /15/2016 Power Splitter 1# 1# 09/01/ /31/2016 niversal Radio Communication ester CM /25/ /24/2016 emperature/humidity Chamber HL /09/ /08/2016 DC Power Supply E3640A MY /17/ /16/2016 RF Power Sensor Dare RPR3006C/P/W AY /17/ /16/2016 Radiated Emissions EMI test receiver ESL /17/ /16/2016 OP 010 AMPLIFIER ( MHz) 8447E 2727A /01/ /31/2016 Microwave Preamplifier (1~26.5GHz) 8449B 3008A /24/ /23/2017 Bilog Antenna (30MHz~6GHz) JB6 A /21/ /20/2016 Bilog Antenna (30MHz~2GHz) JB1 A /21/ /20/2016 Double Ridge Horn Antenna (1 ~18GHz) AH /24/ /23/2016 Double Ridge Horn Antenna (1 ~18GHz) AH /24/ /23/2016 SYN HESIZED SIGNAL GENERA OR 8665B 3744A /17/ /16/2016 Power Amplifier SMC150D R /09/ /08/2017 Power Amplifier S41-25D R /27/ /26/2017 unable Notch Filter 3NF-800/1000- S AA4 09/01/ /31/2016

92 Page 92 of 102 unable Notch Filter 3NF- 1000/2000-S AM 4 09/01/ /31/2016

93 Page 93 of 102 Annex B. E And est Setup Photographs Annex B.i. Photograph: E External Photo Whole Package View Adapter - Front View E - Front View E - Rear View

94 Page 94 of 102 E - op View E - Bottom View E - Left View E - Right View

95 Page 95 of 102 Annex B.ii. Photograph: E Internal Photo Cover Off - op View 1 Cover Off - op View 2 Battery - Front View Battery - Rear View Mainboard with Shielding - Front View Mainboard without Shielding - Front View

96 Page 96 of 102 Mainboard - Rear View LCD Front View LCD Rear View GSM/PCS/ M S-FDD - Antenna View WIFI/B / - Antenna View

97 Page 97 of 102 Annex B.iii. Photograph: est Setup Photo Radiated Spurious Emissions est Setup Below 1GHz Radiated Spurious Emissions est Setup Above 1GHz

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