FCC Test Report. Received Date : Dec. 18, Tested Date : Jan. 08 ~ Jan. 23, 2014

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1 FCC Test Report FCC ID Equipment Model No. Brand Name Applicant Address Standard : MXF-WLTCS106 : WiMAX Gateway : WLTCS-106 : Gemtek Received Date : Dec. 18, 2013 : Gemtek Technology Co., Ltd. : No Zhanghua Road, Hsinchu Industrial Park, Hukou, Hsinchu, Taiwan, : 47 CFR FCC Part 90 Subpart Z Tested Date : Jan. 08 ~ Jan. 23, 2014 We, International Certification Corp., would like to declare that the tested sample has been evaluated and in compliance with the requirement of the above standards. The test results contained in this report refer exclusively to the product. It may be duplicated completely for legal use with the approval of the applicant. It shall not be reproduced except in full without the written approval of our laboratory. Approved & Reviewed by: Gary Chang / Manager Ty: XXX Report No.: FW3D1801 Page : 1 of 62

2 Table of Contents 1 GENERAL DESCRIPTION Information Local Support Equipment List Test Setup Chart The Equipment List Test Standards Measurement Uncertainty TEST CONFIGURATION Testing Condition and Location Information The Worst Test Modes and Channel Details TEST RESULTS Equivalent Isotropically Radiated Power and Peak EIRP Power Density Radiated Emissions Conducted Emissions Emission Mask dBc Bandwidth Frequency Stability TEST LABORATORY INFORMATION Report No.: FW3D1801 Page : 2 of 62

3 Release Record Report No. Version Description Issued Date FW3D1801 Rev. 01 Initial issue Feb. 27, 2014 FW3D1801 Rev. 02 Modified information of test standard Mar. 07, 2014 Report No.: FW3D1801 Page : 3 of 62

4 Summary of Test Results FCC Rules Test Items Measured Result / Equivalent Isotropically Radiated Power and power density Power[dBm]: / Radiated Emissions Meet the requirement of limit Pass / Conducted Emissions Meet the requirement of limit Pass Pass Emission Mask Meet the requirement of limit Pass (h) / dBc Bandwidth Meet the requirement of limit Pass / Frequency Stability Meet the requirement of limit Pass Report No.: FW3D1801 Page : 4 of 62

5 1 General Description 1.1 Information Specification of the Equipment under Test (EUT) Operating Frequency Channel Bandwidth: 5MHz: ~ Channel Bandwidth: 7MHz: ~ Channel Bandwidth: 10MHz: ~ Uplink Modulation Type QPSK 1/2, QPSK 3/4, 16QAM 1/2, 16QAM 3/4 Downlink Modulation Type Modulation Technology OFDMA H/W Version S/W Version QPSK 1/2, QPSK 3/4, 16QAM 1/2, 16QAM 3/4, 64QAM 1/2, 64QAM 2/3, 64QAM 3/4, 64QAM 5/6 Main board: WLTCS-100_V02 Daughter board: WLTFSR-115GN_B42_B43_V00A Maximum EIRP & Emission Designator Channel Bandwidth Modulation Maximum EIRP (W) Emission Designator 5MHz QPSK M98G7D 5MHz 16QAM M96W7D 7MHz QPSK M84G7D 7MHz 16QAM M24W7D 10MHz QPSK M04G7D 10MHz 16QAM M98W7D Details Ant. No. Type Gain (dbi) Connector 1 Outdoor patch ant. 15 MHF EUT Operational Condition Power Supply Type 56Vdc from POE Test Software telnet, Version: Operational Voltage Vnom (110 V) Vmax (126.5 V) Vmin (93.5 V) Operational Climatic Tnom (20 C ) Tmax (55 C ) Tmin (-30 C ) Report No.: FW3D1801 Page : 5 of 62

6 1.1.5 Accessories No. Equipment Description 1 POE Accessories Brand Name: PHIHONG Model Name: PSM25R-560 Power Rating: I/P: Vac, 50-60Hz, 0.5A O/P: 56Vdc, 0.45A Power Line: AC: 1.7m non-shielded cable with one core DC: 1m non-shielded cable w/o core Operating Channel List Channel Bandwidth Frequency Report No.: FW3D1801 Page : 6 of 62

7 1.2 Local Support Equipment List Support Equipment List No. Equipment Brand Model S/N FCC ID Signal cable / Length (m) 1 Notebook DELL E FCC DoC RJ45, 10m non-shielded 1.3 Test Setup Chart Test Setup Diagram Report No.: FW3D1801 Page : 7 of 62

8 1.4 The Equipment List Test Item Test Site Radiated Emission 966 chamber1 / (03CH01-WS) Instrument Manufacturer Model No. Serial No. Calibration Date Calibration Until Spectrum Analyzer R&S FSV Jan. 24, 2013 Jan. 23, 2014 Receiver R&S ESR Jan. 30,2013 Jan. 29, 2014 Bilog SCHWARZBECK VULB9168 VULB Jan. 03, 2014 Jan. 02, 2015 Horn 1G-18G Horn 18G-40G SCHWARZBECK BBHA 9120 D BBHA 9120 D 1096 Feb. 18, 2013 Feb. 17, 2014 SCHWARZBECK BBHA 9170 BBHA Dec. 27, 2013 Dec. 26, 2014 Amplifier Burgeon BPA Nov. 22, 2013 Nov. 21, 2014 Amplifier Agilent 83017A MY Dec. 16, 2013 Dec. 15, 2014 RF Cable HUBER+SUHNER SUCOFLEX104 MY16014/4 Dec. 16, 2013 Dec. 15, 2014 RF Cable HUBER+SUHNER SUCOFLEX104 MY16019/4 Dec. 16, 2013 Dec. 15, 2014 RF Cable HUBER+SUHNER SUCOFLEX104 MY16139/4 Dec. 16, 2013 Dec. 15, 2014 RF Cable-R03m Woken CFD400NL-LW CFD400NL-001 Dec. 16, 2013 Dec. 15, 2014 RF Cable-R10m Woken CFD400NL-LW CFD400NL-002 Dec. 16, 2013 Dec. 15, 2014 control EM Electronics EM N/A N/A Note: Calibration Interval of instruments listed above is one year. Loop R&S HFH2-Z Nov. 15, 2012 Nov. 14, 2014 Amplifier EM EM18G40G Jun. 20, 2013 Jun. 19, 2015 Note: Calibration Interval of instruments listed above is two year. Test Item RF Conducted Test Site RF Conducted (TH01-WS) Instrument Manufacturer Model No. Serial No. Calibration Date Calibration Until Spectrum Analyzer Agilent N9010A MY Oct. 07, 2013 Oct. 06, 2014 TEMP&HUMIDITY CHAMBER GIANT FORCE GCT SP-SD MAF Dec. 11, 2013 Dec. 10, 2014 Power Meter Anritsu ML2495A Oct. 24, 2013 Oct. 23, 2014 Power Sensor Anritsu MA2411B Oct. 24, 2013 Oct. 23, 2014 Note: Calibration Interval of instruments listed above is one year. Report No.: FW3D1801 Page : 8 of 62

9 1.5 Test Standards According to the specification of EUT, the EUT must comply with following standards. 47 CFR FCC Part 90 Subpart Z KDB D01 PwrMeas Part 90 Z Equipment v01 KDB D01 Power Meas License Digital Systems v02r01 KDB D01 Determining ERP and EIRP v01 ANSI C ANSI / TIA / EIA-603-C Note: The EUT has been tested and complied with FCC part 15B requirement. FCC Part 15B test results are issued to another report. 1.6 Measurement Uncertainty ISO/IEC requires that an estimate of the measurement uncertainties associated with the emissions test results be included in the report. The measurement uncertainties given below are based on a 95% confidence level (based on a coverage factor (k=2) Bandwidth Conducted power Frequency error Temperature Conducted emission AC conducted emission Radiated emission Measurement Uncertainty Parameters Uncertainty ± Hz ±0.738 db ± Hz ±0.3 o C ±2.946 db ±2.43 db ±2.49 db Report No.: FW3D1801 Page : 9 of 62

10 2 Test Configuration 2.1 Testing Condition and Location Information Test Item Test Site Ambient Condition Tested By RF conducted TH01-WS 22 C / 61% Mark Liao Radiated Emissions 03CH01-WS 22 C / 63% Haru Yang FCC site registration No.: IC site registration No.: 10807A The Worst Test Modes and Channel Details Test item Channel Bandwidth Modulation Test channel Equivalent Isotropically Radiated Power Peak EIRP Power Density Radiated Emission 1GHz Radiated Emission > 1GHz Conducted Emissions Emission Mask 26dBc Bandwidth 5 MHz 7 MHz 10 MHz 5 MHz 7 MHz 10 MHz 5 MHz 7 MHz 10 MHz 5 MHz 7 MHz 10 MHz QPSK / 16QAM QPSK / 16QAM QPSK / 16QAM QPSK QPSK QPSK QPSK QPSK QPSK QPSK / 16QAM QPSK / 16QAM QPSK / 16QAM / / / / / / / / / / / / / / / / / / Frequency Stability --- Un-modulation Note: 1. The device supports TX antenna diversity function (Ant. 0 & Ant. 1). After pretest, Ant. 1 has the worst emission value, therefore the following test results came out from this. Report No.: FW3D1801 Page : 10 of 62

11 3 Test Results 3.1 Equivalent Isotropically Radiated Power and Peak EIRP Power Density of Equivalent Isotropically Radiated Power and Peak EIRP Power Density Base and fixed stations are limited to 25 watts/25 MHz equivalent isotropically radiated power (EIRP), the peak EIRP power density shall not exceed 1 Watt in any one-mega hertz slice of spectrum. Mobile and portable stations are limited to 1 watt/25 MHz EIRP. The peak EIRP density shall not exceed 40 milli watts in any one-megahertz slice of spectrum Test Procedures For EIRP 1. Connect the DUT transmitter output to the spectrum analyzer via coaxial cable while ensuring proper impedance matching. 2. Tune the analyzer to the nominal center frequency of the emission bandwidth. 3. Set the span to twice the nominal EBW (span = 2 x EBW). 4. Set the resolution bandwidth (RBW) to approximately 1% of EBW. 5. Set the video bandwidth (VBW) to 3 x RBW. 6. Select the average power (RMS) display detector. 7. Set the number of measurement points to Use auto-coupled sweep time. 9. Perform measurement over an interval of time when the transmission is continuous and at its maximum power level. 10. Utilize trace averaging over 100 traces in the power averaging. 11. Use the Band/Channel Power function to determine the integrated power over the full EBW. 12. Record the band power level. 13. Adjust the recorded level by applying appropriate correction factors for the measurement set-up. 14. Determine the EIRP by adding the effective antenna gain to the adjusted power level. Report No.: FW3D1801 Page : 11 of 62

12 For Peak EIRP Power Density 1. Connect the transmitter to the spectrum analyzer via coaxial cable (i.e., conducted measurement) while ensuring proper impedance matching. 2. Tune the analyzer to the nominal center frequency of the emission bandwidth. 3 Set the span to twice the nominal EBW (span = 2 x EBW). 4 Set the resolution bandwidth (RBW) to 1 MHz. 5 Set the video bandwidth (VBW) to 3 x RBW. 6 Select the average power (RMS) display detector. 7 Set the number of measurement points to Use auto-coupled sweep time. 9 Perform the measurement over an interval of time when the transmission is continuous and at its maximum power level. 10 Utilize trace averaging over 100 traces in the power averaging. 11 Find the maximum trace amplitude (peak search) and record. 12 Adjust the recorded level by applying appropriate correction factors for the measurement set-up. 13 Determine the EIRP by adding the effective antenna gain to the adjusted power level Test Setup Report No.: FW3D1801 Page : 12 of 62

13 3.1.4 Test Result of EIRP and Peak EIRP Density Channel Bandwidth Modulation Frequency Conducted Power EIRP Gain (dbi) E.I.R.P E.I.R.P (W) (W/MHz) 5 QPSK QPSK QPSK Channel Bandwidth Modulation Frequency Conducted Power EIRP Gain (dbi) E.I.R.P E.I.R.P (W) (W/MHz) 5 16QAM QAM QAM Channel Bandwidth Modulation Frequency Peak EIRP Density Conducted Power Density Gain (dbi) Peak E.I.R.P Density Peak E.I.R.P Density (W) (W/MHz) 5 QPSK QPSK QPSK Channel Bandwidth Modulation Frequency Peak EIRP density Conducted Power Density Gain (dbi) Peak E.I.R.P Density Peak E.I.R.P Density (W) (W/MHz) 5 16QAM QAM QAM Report No.: FW3D1801 Page : 13 of 62

14 Test item Conducted Power QPSK / Worst Plots 16QAM / Worst Plots Test item Conducted Power Density QPSK / Worst Plots 16QAM / Worst Plots Report No.: FW3D1801 Page : 14 of 62

15 Channel Bandwidth Modulation Frequency Conducted Power EIRP Gain (dbi) E.I.R.P E.I.R.P (W) (W/MHz) 7 QPSK QPSK QPSK Channel Bandwidth Modulation Frequency Conducted Power EIRP Gain (dbi) E.I.R.P E.I.R.P (W) (W/MHz) 7 16QAM QAM QAM Channel Bandwidth Modulation Frequency Peak EIRP Density Conducted Power Density Gain (dbi) Peak E.I.R.P Density Peak E.I.R.P Density (W) (W/MHz) 7 QPSK QPSK QPSK Channel Bandwidth Modulation Frequency Peak EIRP density Conducted Power Density Gain (dbi) Peak E.I.R.P Density Peak E.I.R.P Density (W) (W/MHz) 7 16QAM QAM QAM Report No.: FW3D1801 Page : 15 of 62

16 Test item Conducted Power QPSK / Worst Plots 16QAM / Worst Plots Test item Conducted Power Density QPSK / Worst Plots 16QAM / Worst Plots Report No.: FW3D1801 Page : 16 of 62

17 Channel Bandwidth Modulation Frequency Conducted Power EIRP Gain (dbi) E.I.R.P E.I.R.P (W) (W/MHz) 10 QPSK QPSK QPSK Channel Bandwidth Modulation Frequency Conducted Power EIRP Gain (dbi) E.I.R.P E.I.R.P (W) (W/MHz) 10 16QAM QAM QAM Channel Bandwidth Modulation Frequency Peak EIRP Density Conducted Power Density Gain (dbi) Peak E.I.R.P Density Peak E.I.R.P Density (W) (W/MHz) 10 QPSK QPSK QPSK Channel Bandwidth Modulation Frequency Peak EIRP density Conducted Power Density Gain (dbi) Peak E.I.R.P Density Peak E.I.R.P Density (W) (W/MHz) 10 16QAM QAM QAM Report No.: FW3D1801 Page : 17 of 62

18 Test item Conducted Power QPSK / Worst Plots 16QAM / Worst Plots Test item Conducted Power Density QPSK / Worst Plots 16QAM / Worst Plots Report No.: FW3D1801 Page : 18 of 62

19 3.2 Radiated Emissions of Radiated Emissions The power of any emission outside of the authorized operating frequency ranges must be attenuated below the transmitting power (P) by a factor of at least log(p) db equal to -13dBm Test Procedures 1. Measurement is made at a semi-anechoic chamber that incorporates a turntable allowing a EUT rotation of 360. A continuously-rotating, remotely-controlled turntable is installed at the test site to support the EUT and facilitate determination of the direction of maximum radiation for each EUT emission frequency. The EUT is placed at a height of 0.8 m test table above the ground plane. 2. Measurement is made with the antenna positioned in both the horizontal and vertical planes of polarization. The measurement antenna is varied in height (1m ~ 4m) above the reference ground plane to obtain the maximum signal strength. Distance between EUT and antenna is 3 m. 3. This investigation is performed with the EUT rotated 360, the antenna height scanned between 1 m and4 m, and the antenna rotated to repeat the measurements for both the horizontal and vertical antenna polarizations. 4. After finding the max radiated emission, substitution method will be used for getting effective radiated power. EUT will be removed and substitution antenna will be placed at same position. Signal generator will output CW signal to substitution antenna through a RF cable. Rotate turntable and move antenna to find maximum radiated emission. Adjust output power of signal generator to let the maximum radiated emission is same as step 3. Record the output power level. 5. E.I.R.P = output power of step 4 + gain of substitution antenna cable loss of RF cable. Report No.: FW3D1801 Page : 19 of 62

20 3.2.3 Test Setup Radiated Emissions below 1 GHz Radiated Emissions above 1 GHz Report No.: FW3D1801 Page : 20 of 62

21 3.2.4 Test Result of Radiated Emissions below 1GHz CB Mode 5MHz Wimax, Channel : MHz,QPSK Frequency Polarity E.I.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H H H H V V V V V V Report No.: FW3D1801 Page : 21 of 62

22 CB Mode 7MHz Wimax, Channel : MHz,QPSK Frequency Polarity E.I.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H H H H V V V V V V Report No.: FW3D1801 Page : 22 of 62

23 CB Mode 10MHz Wimax, Channel : 3675MHz,QPSK Frequency Polarity E.I.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H H H H V V V V V V Report No.: FW3D1801 Page : 23 of 62

24 3.2.5 Test Result of Radiated Emissions above 1GHz CB Mode 5MHz Wimax, Channel : MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Mode Wimax, Channel : 3675MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Mode Wimax, Channel : MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Report No.: FW3D1801 Page : 24 of 62

25 CB Mode 7MHz Wimax, Channel : MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Mode Wimax, Channel : 3675MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Mode Wimax, Channel : MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Report No.: FW3D1801 Page : 25 of 62

26 CB Mode 10MHz Wimax, Channel : 3655MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Mode Wimax, Channel : 3675MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Mode Wimax, Channel : 3695MHz,QPSK Frequency Polarity E.R.P Margin S.A Reading S.G Power Vaule Correction Factor H H H V V V Report No.: FW3D1801 Page : 26 of 62

27 3.3 Conducted Emissions of Conducted Emissions The power of any emission outside of the authorized operating frequencyranges must be attenuated below the transmitting power (P) by a factor of at least log(p) db equal to -13dBm Test Procedures 1. Lowest, middle and highest operating channels are tested for this item. 2. Scan frequency range is from 30MHz~40GHz. 3. Set RBW = 1MHz, VBW = 3MHz, detector = RMS, sweep time = auto. 4. Record the max trace value and capture the test plot of each sub frequency band Test Setup Report No.: FW3D1801 Page : 27 of 62

28 3.3.4 Test Result of Conducted Emissions Mode QPSK, CB: 5MHz Channel MHz Report No.: FW3D1801 Page : 28 of 62

29 Mode QPSK, CB: 5MHz Channel MHz Report No.: FW3D1801 Page : 29 of 62

30 Mode QPSK, CB: 5MHz Channel MHz Report No.: FW3D1801 Page : 30 of 62

31 Mode 16QAM, CB: 5MHz Channel MHz Report No.: FW3D1801 Page : 31 of 62

32 Mode 16QAM, CB: 5MHz Channel MHz Report No.: FW3D1801 Page : 32 of 62

33 Mode 16QAM, CB: 5MHz Channel MHz Report No.: FW3D1801 Page : 33 of 62

34 Mode QPSK, CB: 7MHz Channel MHz Report No.: FW3D1801 Page : 34 of 62

35 Mode QPSK, CB: 7MHz Channel MHz Report No.: FW3D1801 Page : 35 of 62

36 Mode QPSK, CB: 7MHz Channel MHz Report No.: FW3D1801 Page : 36 of 62

37 Mode 16QAM, CB: 7MHz Channel MHz Report No.: FW3D1801 Page : 37 of 62

38 Mode 16QAM, CB: 7MHz Channel MHz Report No.: FW3D1801 Page : 38 of 62

39 Mode 16QAM, CB: 7MHz Channel MHz Report No.: FW3D1801 Page : 39 of 62

40 Mode QPSK, CB: 10MHz Channel MHz Report No.: FW3D1801 Page : 40 of 62

41 Mode QPSK, CB: 10MHz Channel MHz Report No.: FW3D1801 Page : 41 of 62

42 Mode QPSK, CB: 10MHz Channel MHz Report No.: FW3D1801 Page : 42 of 62

43 Mode 16QAM, CB: 10MHz Channel MHz Report No.: FW3D1801 Page : 43 of 62

44 Mode 16QAM, CB: 10MHz Channel MHz Report No.: FW3D1801 Page : 44 of 62

45 Mode 16QAM, CB: 10MHz Channel MHz Report No.: FW3D1801 Page : 45 of 62

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