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1 FCCC ART 15C TESTREORT for TCL Communication Ltd. L GSM Quad-band UMTS Quad-band LTE 7-band mobile phone MODEL NAME: 5056A with FCCC ID: 2ACCJB0444 Hardware Version: VC Software Version: vhas2 Issued Date: Note: The test results in this test report relate only to the devices specified in this report. This reportt shall not be reproduced except in full without the written approval of CTTL. Test Laboratory: CTTL, Telecommunication Technology Labs, Academy of Telecommunication Research, MIIT No.52, HuayuanNorth Road, Haidian District, Beijing,. R. China Tel:+86(0) ,Fax:+86(0) cttl_terminals@catr.cn, website:

2 age2 REORT HISTORY Report Number I15Z43150-SRD01 I15Z43150-SRD01 Revision Rev.0 Rev.1 Description 1st edition 2nd edition Issue Date

3 age3 CONTENTS 1. TEST LABORATORY TESTINGLOCATION... 5 TESTINGENVIRONMENT... 5 ROJECT DATA... 5 SIGNATURE CLIENTINFORMATION ALICANT INFORMATION MANUFACTURER INFORMATION EQUIMENT UNDERTEST (EUT) AND ANCILLARY EQUIMENT (AE) ABOUT EUT... 7 INTERNAL IDENTIFICATION OFF EUT... 7 INTERNAL IDENTIFICATION OFF AE... 7 GENERAL DESCRITION... 8 INTERRETATION OF THE TEST ENVIRONMENT REFERENCE DOCUMENTS DOCUMENTS SULIED BY ALICANT REFERENCE DOCUMENTS FOR TESTING TEST RESULTS SUMMARY OF TESTT RESULTS... 9 STATEMENTS... 9 TEST CONDITIONS TEST FACILITIES UTILIZED ANNEX A: DETAILED TESTT RESULTSS A.1. MEASUREMENT METHOD A.2. MAXIMUM OUTUT OWER A.2.1. EAK OUTUT OWER-CONDUCTED A.2.2. AVERAGE OUTUT OWER-CONDUCTED A.3. EAK OWER SECTRAL DENSITY A.4. DTS 6-DB SIGNAL BANDWIDTH A.5. BAND EDGES COMLIANCE A.6. TRANSMITTER SURIOUS EMISSION... 30

4 age4 A.6.1 TRANSMITTER SURIOUS EMISSION CONDUCTED A.6.2 TRANSMITTER SURIOUS EMISSION - RADIATED A.7. AC OWER-LINE CONDUCTED EMISSION ANNEX B: ACCREDITATIO ON CERTIFICATE... 94

5 age5 1. Test Laboratory 1.1. Testing Location Location 1:CTTL(Huayuan North Road) Address: No. 52, Huayuan North Road, Haidian District, Beijing,. R. China Location 2:CTTL(Shouxiang) Address: No. 51 Shouxiang Science Building, Xueyuan Road, Haidian District, Beijing,. R. China Testing Environment Normal Temperature: Extreme Temperature: Relative Humidity: 20-75% 1.3. roject data Testing Start Date: Testing End Date: Signature Xu Zhongfei (repared this test report) Li Zhibin (Reviewed this test report) Lv Songdong (Approved this test report)

6 age6 2. Client Information 2.1. Applicant Information Company Name: TCL Communication Ltd. 5F, C building, No. 232, Liang Jing Road R ZhangJiang High-Tech High-Tech ark, ark, Address: udong Areaa Shanghai,.R. China City: Shanghai ostal Code: Country: China Telephone: Fax: Manufacturer Information Company Name: TCL Communication Ltd. 5F, C building, No. 232, Liang Jing Road R ZhangJiang Address: udong Areaa Shanghai,.R. China City: Shanghai ostal Code: Country: China Telephone: Fax:

7 age7 3. Equipment Under Test (EUT) and Ancillary Equipment (AE) 3.1. About EUT Description GSM Quad-band UMTS Quad-bandd LTE 7-band mobile phone Model name 5056A FCC ID 2ACCJB044 IC ID With WLAN Function Yess Frequency Range ISM 2400MHz~ ~2483.5MHzz Type of Modulation DSSSCCKOFDM Number of Channels 11 Antenna Integral Antenna MAX Conducted ower 26.46dBm(DSSS) ower Supply 3.8VV DC by Battery 3.2. Internal Identification of EUT EUT ID* SN or IMEI UT01a UT02a HW Version VC VC SW S Versionn vhas2 v vhas2 v *EUT ID: is used to identify the t test sample in the lab internally Internal Identification of AE AE ID* AE1 AE2 Description Battery Battery SN AE1 Commercial name Battery Type CAC C1 Manufacturer BYDD Length of cable AE2 Commercial name Battery Type CAC C2 Manufacturer SCUD Length of cable *AE ID: is used to identify the test sample in the lab internally.

8 age General Description The Equipment under Test (EUT) is a model of GSM Quad-band UMTS Quad-band LTE 7-band mobile phone with integrated antenna and inbuilt battery. It has Bluetooth (EDR) function. It consists of normal options: travel charger, USB cable and hone. Manual and specifications off the EUT were providedd to fulfil thee test. Samples undergoing test were selected by the client Interpretation of the Test Environment For the test methods, the test environment uncertainty figures correspond k=2. Measurement Uncertainty arameter Uncertainty temperature 0.48 C humidity 2 % DC voltages 0.003V to an expansion factor 4. Reference Documents 4.1. EUT Documents supplied by applicant feature information is supplied by the applicant or manufacturer, whichh is the basis of testing Reference Documents for testing The following documents listed in this section are referred for testing. Reference Title FCC CFR 47, art 15, Subpart C: Version Restrictedd bands of operation; FCC art Radiated emission limits, general requirements; Operationn within the bands MHz, MHz, and MHz. ANSI C63.10 American National Standard of rocedures for Compliance Testing of Unlicensed Wireless Devices 2013

9 age9 5. Test Results 5.1. Summary of Test Results SUMMARY OF MEASUREMENT RESULTS Sub-clause of art15c Sub-clause of IC Maximum eak Output owerr eak ower Spectral Density Occupied 6dB Bandwidth Band Edges Compliance Transmitter Spurious Emission - Conducted Transmitter Spurious Emission - Radiatedd AC owerline Conducted Emission lease refer to ANNEX A for detail. Terms used in Verdict column (b) (e) (a) (d) (d) , , , N NA F ass, The EUT complies with the essential requirements in the standard. Not erform, The test was not performed by b CTTL Not Applicable, Thee test was not applicable Fail, The EUT does not comply with the essential requirements in the standard F Fail, The EUT does not comply with the essential requirements in the standard 5.2. Statements The test cases as listed in section 5. 1 of this report for thee EUT specified in section 3 was performed by CTTL and according to thee standards or reference documents listed in section 4.2 The EUT met all requirements of the standards or referencee documents, and only the WLAN function was tested in this report Test Conditions T nom T min T max V nom Normal Temperature Low Temperature High Temperature Normal Voltagee For this report, if the test cases listed above are tested under normal temperature and normal voltage, and also under norm humidity, the specific condition is shown as follows: Temperature Voltage Humidity T nom V nom H nom V(By 3 battery) 44% 4 Verdict

10 age10 6. Test Facilities Utilized Conducted test system No. Equipment Vector Signal 1 Analyzer 2 Test Receiver 3 LISN 4 Shielding Room Serial Model Number FSQ ESCI ENV S81 Manufacturer Rohde & Schwarzz Rohde & Schwarzz Rohde & Schwarzz ETS-Lindgren Calibration date Calibration Due date Radiated emission testt system No Equipment Test Receiver Loop antenna BiLog Antenna Dual-Ridge Waveguidee Horn Antenna Dual-Ridge Waveguidee Horn Antenna Vector Signal Analyzer Semi-anechoic chamber Serial Model Number ESCI HFH2-Z VULB FSV CT Manufacturer Rohde & Schwarz Rohde & Schwarz Schwarzbeck ETS-Lindgren Rohde & Schwarz Calibration date EMCO Frankoniaa German Calibratio n Due date

11 age111 ANNEX A: Detailed Test Results A.1. Measurement Method A.1.1 Conducted Measurements Connect the EUT to the test system as Fig.A shows. Set the EUT to the required work mode.. Set the EUT to the required channel. Set the Vector Signal Analyzer and startt measurement. Record the values. Vector Signal Analyzer EUT Attenuator Vectorr Analyzer Signal Shielding room Fig.A.1.1.1: Test Setup Diagram for Conducted Measurements A.1.2. Radiated Emission Measureme ents In the case of radiated emission, the used settings are as follows, Sweep frequency from 30 MHz to 1GHz, RBW = 100 khz, VBW = 300 khz; Sweep frequency from 1 GHz to 26GHz, RBW = 1MHz, VBW = 10Hz; Antenna EUT Antenna Vector Signal Analyzer (Test Receiver) Anechoic Chamber Fig.A : Test Setup Diagram for Radiatedd Measurements

12 age12 A.2. Maximumm Output ower Method of Measurement: See ANSI C clause a) Set the RBW = 1 MHz. b) Set the VBW = 3 MHz. c) Set the span [1.5 DTS bandwidth]. d) Detector = peak. e) Sweep time = auto couple. f) Trace mode = max hold. g) Allow trace to fully stabilize. h) Use the instrument s bandchannel power measurement function with the band limits set equal to the DTS bandwidth edges (for some instruments, this may equire a manual override to select the peak detector). Measurement Limit: Standard FCC CRF art (b) Limit L (dbm) < 30 EUT ID: EUT2 A.2.1. eak Output ower-conducted Measurement Results: bg mode Data Rate Mode (Mbps) b g MHz (Ch1) Test Result (dbm)) 2437MHz (Ch6)( MHz (Ch11) The data rate 11Mbps and 48Mbps are selected as worse condition, and performed with this condition. the following cases are

13 age n-HT20 mode Data Rate Mode (Index) MCS0 MCS1 MCS n MCS3 (20MHz) MCS4 MCS5 MCS6 MCS7 2412MHz (Ch1) Test Result (dbm)) 2437MHz (Ch6)( MHz (Ch11) The data rate MCS4 is selected as worse condition, and the following f cases are performed with this condition. Conclusion: ass A.2.2 Average Output ower-conducted Method of Measurement: See ANSI C clause The procedure for this method is as follows: a) Set span = 80MHz. b) Set RBW = 1MHz. c) Set VBW = 3MHz d) Number of points in sweep = 625 e) Sweep time = auto. f) Detector = RMS. g) The trigger shall be set to free run. h) Trace averagee 100 traces in power averaging (rms) mode. i) Compute power by integrating the spectrum across the OBW of the signal using the instrument si s band power measurement function, withh band limits set equal too the OBW band edges bg mode Mode b g 2412MHz (Ch1) Test Result (dbm) 2437MHz (Ch6) MHz (Ch11) n-HT20 mode Mode 2412MHz (Ch1) n (20MHz) Conclusion: ass Test Result (dbm) 2437MHz (Ch6) MHz (Ch11) 15.42

14 age14 A.3. eak ower Spectral Densityy Method of Measurement: See ANSI C clause a) Set analyzer center frequency to DTSS channel center frequency. b) Set the span to 1.5 times the DTS bandwidth. c) Set the RBW to RBW = 3 khz. d) Set the VBW = 10 khz. e) Detector = peak. f) Sweep time = auto couple. g) Trace mode = max hold. h) Allow trace to fully stabilize. i) Use the peak marker function to determine the maximum amplitude levell within the RBW. Measurement Limit: Standard FCC CRF art (e) Limit < 8 dbm3 khzz Measurement Results: bg mode Mode b g Channel ower Spectral Density ( dbm3 khz ) Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Conclusion n-HT20 mode Mode n (HT20) Channel ower Spectral Density ( dbm3 khz ) Fig.A Fig.A Fig.A Conclusion Conclusion: ass Test graphs as below:

15 age15 Fig.A.3. 1 owerr Spectral Density( b,Ch1) Fig.A.3.2 ower Spectral Density (802.11b, Ch 6)

16 age16 Fig.A.3.3 ower Spectral Density ( b, Ch 11) ) Fig.A.3.4 ower Spectral Density (802.11g, Ch 1)

17 age17 Fig.A.3.5 ower Spectral Density (802.11g, Ch 6) Fig.A.3.6 ower Spectral Density ( g, Ch 11) )

18 age18 Fig.A.3.7 ower Spectral Density (802.11n-HT20, Chh 1) Fig.A.3.8 ower Spectral Density (802.11n-HT20, Chh 6)

19 age19 Fig.A.3.9 ower Spectral Density (802.11n-HT20, Ch 11)

20 age20 A.4. DTS 6-dB Signal Bandwidth Method of Measurement: See ANSI C section a) Set RBW = 100 khz. b) Set the video bandwidth (VBW)( = 3000 khz. c) Detector = eak. d) Trace mode = max hold. e) Sweep = auto couple. f) Allow the trace to stabilize. g) Measure the maximum width of the emission that is constrained by the frequencies associated with the two outermost amplitude points (upper and lower frequencies) that are attenuated by 6 db relative to the maximumm level measured in the fundamental emission. Measurement Limit: Standard FCC 47 CFR art (a) Limit (khz) 500 EUT ID: EUT2 Measurement Result: bg mode Mode b g Channel Occupied 6dB Bandwidth ( khz) Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A conclusion n-HT20 mode Mode n (HT20) Channel Occupied 6dB Bandwidth ( khz) Fig.A Fig.A Fig.A conclusion Conclusion: ass Test graphs as below:

21 age21 Fig.A.4.1 Occupied 6dB Bandwidth( (802.11b,Chh 1) Fig.A.4.2 Occupied 6dB Bandwidth (802.11b,( Chh 6)

22 age222 Fig.A.4.3 Occupied 6dB Bandwidth (802.11b,( Chh 11) Fig.A..4.4 Occupied 6dB Bandwidth (802.11g, Ch 1)

23 age23 Fig.A..4.5 Occupied 6dB Bandwidth (802.11g, Ch 6) Fig.A.4.6 Occupied 6dB Bandwidth (802.11g,( Chh 11)

24 age24 Fig.A.4.7 Occupiedd 6dB Bandwidth (802.11n-20MHz, Ch 1) Fig.A.4.8 Occupied 6dB Bandwidth (802.11n-HT20, Ch 6)

25 age25 Fig.A.4.9 Occupied 6dB Bandwidth (802.11n-HT20, Ch 11)

26 age26 A.5. Band Edges Compliance Method of Measurement: See ANSI C clause Connect the spectrum analyzer to the EUT using an appropriate RF cablee connected to the EUT output. Configure the spectrum analyzer settings as described below. a) Set Span = 100MHz b) Sweep Time: coupled c) Set the RBW= 100 khz c) Set the VBW= 300 khz d) Detector: eak e) Trace: Max hold Measurement Limit: Standard FCC 47 CFR art (d) Limitt (dbc) > 20 EUT ID: EUT2 Measurement Result: bg mode Mode b g Channel Test Results Fig.A.5.1 Fig.A.5.2 Fig.A.5.3 Fig.A.5.4 Conclusion n-HT20 mode Mode n (HT20) Channel 1 11 Test Results Fig.A.5.5 Fig.A.5.6 Conclusion Conclusion: ass Test graphs as below:

27 age27 Fig.A.5.1 Band Edges (802.11b, Ch 1) Fig.A.5.2 Band Edges (802.11b, Ch 11)

28 age28 Fig.A.5.33 Band Edges (802.11g, Ch 1) Fig.A.5.4 Band Edges (802.11g, Ch 11)

29 age29 Fig.A.5.5 Band Edges (802.11n-HT20, Ch 1) Fig.A.5.6 Band Edges (802.11n-HT T20, Ch 11)

30 age30 A.6. Transmitter Spurious Emission A.6.1 Transmitter Spurious Emission Conducted Method of Measurement: See ANSI C clause Establish a reference level by using the following procedure: a) Set instrument center frequency to DTS channel center frequency b) Set the span to 1.5 times the DTS bandwidth c) Set the RBW= 100 khz d) Set the VBW= 300 khz e) Detector = eak f) Sweep time = auto couple g) Trace mode = max hold h) Allow trace to fully stabilize i) Use the peak marker function to determine the maximum SD level Note that the channel found to contain the maximum SD level can bee used to establish the reference level. Establish an emission level by using thee following procedure: a) Set the center frequency and span to encompass frequencyy range to be measured. b) Set the RBW = 100 khz.. c) Set the VBW = 300 khz. d) Detector = peak. e) Sweep time = auto couple. f) Trace mode = max hold. g) Allow trace to fully stabilize. h) Use the peak marker function to determine the maximum amplitude level. Ensure that the amplitude of all unwanted emissions outsidee of the authorized frequency band (excluding restricted frequency bands) is attenuated by at least the minimum equirements specified in Report the three highest emissions relative to the limit. Measurement Limit: Standard FCC 47 CFR art (d) Limit 20dB below peakk output power in 100 khz bandwidth EUT ID: EUT2 Measurement Results:

31 age b mode MODE b Channel Frequency Range GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz Test Results Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Conclusion

32 age g mode MODE g Channel Frequency Range GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz Test Results Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Conclusion

33 age n-HT20 mode MODE Channel n 6 (HT20) 11 Frequency Range GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz GHz 30 MHz ~ 1 GHz 1 GHz ~ 2.5 GHz 2.5 GHz ~ 7.5 GHz 7.5 GHz ~ 10 GHz 10 GHz ~ 15 GHz 15 GHz ~ 20 GHz 20 GHz ~ 26 GHz Test Results Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Fig.A Conclusion Conclusion: ass Test graphs as below:

34 age34 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 30 MHz-1 GHz)

35 age35 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 2.5 GHz-7.5 GHz)

36 age36 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 7. 5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 10 GHz-15 GHz)

37 age37 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch1, 20 GHz-26 GHz)

38 age38 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 30 MHz-1 GHz)

39 age39 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 2.5 GHz-7.5 GHz)

40 age40 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 7. 5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 10 GHz-15 GHz)

41 age41 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch6, 20 GHz-26 GHz)

42 age42 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11,, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 30 MHz-1 GHz)

43 age43 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 2..5 GHz-7.5 GHz)

44 age444 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 7.5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 10 GHz-15 GHz)

45 age45 Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11b, Ch11, 20 GHz-26 GHz)

46 age46 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 30 MHz-1 GHz)

47 age47 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 2.5 GHz-7.5 GHz)

48 age48 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 7. 5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 10 GHz-15 GHz)

49 age49 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 15 GHz-20 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch1, 20 GHz-26 GHz)

50 age50 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, Center Frequency) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 30 MHz-1 GHz)

51 age51 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 1 GHz-2.5 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 2.5 GHz-7.5 GHz)

52 age52 Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 7. 5 GHz-10 GHz) Fig.A Transmitter Spurious Emission - Conducted (802.11g, Ch6, 10 GHz-15 GHz)

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