FCC PART TEST REPORT. Xiamen Ursalink Technology Co., Ltd.

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1 FCC PRT TEST REPORT For Xiamen Ursalink Technology Co., Ltd. 4/F,NO Wanghai Road, 2nd Software Park,Xiamen,China FCC ID: 2OSV-UR5 Report Type: Original Report Product Name: Industrial Cellular Router Report Number: RXM8335-B Report Date: Reviewed By: Test Laboratory: Jerry Zhang EMC Manager Bay rea Compliance Laboratories Corp. (Dongguan) No.69 Pulongcun, Puxinhu Industry rea, Tangxia, Dongguan, Guangdong, China Tel: Fax: Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay rea Compliance Laboratories Corp. (Dongguan). This report must not be used by the customer to claim product certification, approval, or endorsement by 2L* or any agency of the Federal Government. * This report may contain data that are not covered by the 2L accreditation and are marked with an asterisk *.

2 TBLE OF CONTENTS GENERL INFORMTION... 4 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT)... 4 OBJECTIVE... 4 RELTED SUBMITTL(S)/GRNT(S)... 4 TEST METHODOLOGY... 4 MESUREMENT UNCERTINTY... 5 TEST FCILITY... 5 SYSTEM TEST CONFIGURTION... 6 DESCRIPTION OF TEST CONFIGURTION... 6 EUT EXERCISE SOFTWRE... 6 EQUIPMENT MODIFICTIONS... 9 LOCL SUPPORT EQUIPMENT LIST ND DETILS... 9 SUPPORT CBLE LIST ND DETILS... BLOCK DIGRM OF TEST SETUP... SUMMRY OF TEST RESULTS... FCC (i) &.3 & 2.9- MXIMUM PERMISSIBLE EXPOSURE (MPE)... 2 PPLICBLE STNDRD... 2 FCC NTENN REQUIREMENT... 4 PPLICBLE STNDRD... 4 NTENN CONNECTOR CONSTRUCTION... 4 FCC 5.27 (a) C LINE CONDUCTED EMISSIONS... 5 PPLICBLE STNDRD... 5 EUT SETUP... 5 EMI TEST RECEIVER SETUP... 5 TEST PROCEDURE... 6 CORRECTED MPLITUDE & MRGIN CLCULTION... 6 TEST EQUIPMENT LIST ND DETILS... 6 TEST DT... 6 FCC 5.29, 5.25 & 5.247(d) - SPURIOUS EMISSIONS... 9 PPLICBLE STNDRD... 9 EUT SETUP... 9 EMI TEST RECEIVER & SPECTRUM NLYZER SETUP... 2 TEST PROCEDURE... 2 CORRECTED MPLITUDE & MRGIN CLCULTION... 2 TEST EQUIPMENT LIST ND DETILS... 2 TEST DT... 2 FCC 5.247(a) (2) 6 db EMISSION BNDWIDTH... 3 PPLICBLE STNDRD... 3 TEST PROCEDURE... 3 TEST EQUIPMENT LIST ND DETILS... 3 TEST DT... 3 FCC 5.247(b) (3) - MXIMUM PEK CONDUCTED OUTPUT POWER PPLICBLE STNDRD TEST PROCEDURE Page 2 of 53

3 TEST EQUIPMENT LIST ND DETILS TEST DT FCC 5.247(d) khz BNDWIDTH OF FREQUENCY BND EDGE... 4 PPLICBLE STNDRD... 4 TEST PROCEDURE... 4 TEST EQUIPMENT LIST ND DETILS... 4 TEST DT... 4 FCC 5.247(e) - POWER SPECTRL DENSITY PPLICBLE STNDRD TEST PROCEDURE TEST EQUIPMENT LIST ND DETILS TEST DT Page 3 of 53

4 GENERL INFORMTION Product Description for Equipment under Test (EUT) EUT Name: Industrial Cellular Router EUT Model: UR5 FCC ID: 2OSV-UR5 Rated Input Voltage: DC 2V from dapter Model: OH-52U-UL dapter Input: -24V~5/6Hz 35m Information Output: DC 2V/ External Dimension: mm(l)*96.mm(w)*3mm(h) Serial Number: 8335 EUT Received Date: Objective This report is prepared on behalf of Xiamen Ursalink Technology Co., Ltd. in accordance with Part 2, Subpart J, Part 5, Subparts and C of the Federal Communications Commission s rules. The tests were performed in order to determine the compliance of the EUT with FCC Rules Part 5- Subpart C, section 5.23, 5.25, 5.27, 5.29 and rules. Related Submittal(s)/Grant(s) FCC Part 5E NII submissions with FCC ID: 2OSV-UR5. FCC Part 5B JBP submissions with FCC ID: 2OSV-UR5. Test Methodology ll measurements contained in this report were conducted with NSI C63.-23, merican National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices. nd KDB D DTS Meas Guidance v4. ll emissions measurement was performed and Bay rea Compliance Laboratories Corp. (Dongguan). Page 4 of 53

5 Measurement Uncertainty Parameter Measurement Uncertainty Occupied Channel Bandwidth ±5 % RF output power, conducted ±.6dB Power Spectral Density, conducted ±.6 db Unwanted Emissions, radiated 3M~2MHz: 4.55 db,2m~ghz: 5.92 db,g~6ghz: 4.98 db, 6G~8GHz: 5.89 db,8g~26.5g:5.47 db,26.5g~4g:5.63 db Unwanted Emissions, conducted ±.5 db Temperature ± Humidity ±5% DC and low frequency voltages ±.4% Duty Cycle % C Power Lines Conducted Emission 3.2 db (5 khz to 3 MHz) Test Facility The Test site used by Bay rea Compliance Laboratories Corp. (Dongguan) to collect test data is located on the No.69 Pulongcun, Puxinhu Industry rea, Tangxia, Dongguan, Guangdong, China. The test site has been approved by the FCC under the KDB D and is listed in the FCC Public ccess Link (PL) database, FCC Registration No. : 89728,the FCC Designation No. : CN22. The test site has been registered with ISED Canada under ISED Canada Registration Number 362D. Page 5 of 53

6 SYSTEM TEST CONFIGURTION Description of Test Configuration The system was configured for testing in Engineering Mode, which was provided by the manufacturer. For 2.4GHz band, channels are provided: Channel Frequency Frequency Channel (MHz) (MHz) / / For 82.b, 82.g, and 82.n ht2 modes were test with channel,6,. For 82.n ht4 mode was tested with channel 3, 6, 9. EUT Exercise Software The software QRCT Version was used for testing, which was provided by manufacturer. The maximum power was configured as below table, that provided by the manufacturer: Software and version Frequency Mode Channel (MHz) 82.b 82.g 82.n ht2 82.n ht4 QRCT Version Data Rate (Mbps) Power Level Low Middle High Low Middle High Low 242 MCS 5 Middle 2437 MCS 8 High 2462 MCS 5 Low 2422 MCS 3 Middle 2437 MCS 6 High 2452 MCS 3 Page 6 of 53

7 The maximum duty cycle as following table: Test mode T on T on+off Duty Cycle (ms) (ms) (%) 82.b 82.g n ht n ht b SWEEP TIME RBW MHz ms * VBW MHz Ref 3 dbm * tt 4 db SWT ms 3 Offset db PK * CLRWR 2 SGL Center GHz ms/ Date: 2.JUL.28 23:49:24 Page 7 of 53

8 82.g DELT MRKER 2 RBW MHz 2.7 ms * VBW MHz Ref 3 dbm * tt 4 db SWT ms 3 Offset db 2 PK * CLRWR Delta 2 [T ] -.79 db 2.7 ms Marker [T ] dbm 2.6 ms Delta [T ] -.7 db 2. ms SGL Center GHz ms/ Date: 2.JUL.28 23:48:53 82.n ht2 DELT MRKER 2 RBW MHz 2.5 ms * VBW MHz Ref 3 dbm * tt 4 db SWT ms 3 Offset db 2 PK * CLRWR Delta 2 [T ].2 db 2.5 ms Marker [T ] dbm. ms Delta [T ].34 db.96 ms SGL Center GHz ms/ Date: 2.JUL.28 23:48:4 Page 8 of 53

9 82.n ht4 DELT MRKER 2 RBW MHz.9 ms * VBW MHz Ref 3 dbm * tt 4 db SWT 5 ms 3 Offset db 2 PK * CLRWR Delta 2 [T ].24 db.9 ms Marker [T ] dbm 58. µs Delta [T ] -.27 db. ms SGL Center GHz 5 µs/ Date: 2.JUL.28 23:46:5 Equipment Modifications No modification was made to the EUT. Local Support Equipment List and Details Manufacturer Description Model Serial Number DELL Laptop PPL HLKYGB Page 9 of 53

10 Support Cable List and Details Cable Description Shielding Type Ferrite Core Length (m) From Port RJ45 Cable No No.8 RJ45 Port of EUT Laptop ntenna Cable No No.5 ntenna Port of EUT LTE main antenna ntenna Cable No No.5 ntenna Port of EUT LTE diversity antenna GPS Cable No No.5 GPS Port of EUT GPS NT dapter Cable No Yes.5 EUT dapter Ground line No No.5 Gnd Port of EUT ground To Block Diagram of Test Setup Page of 53

11 SUMMRY OF TEST RESULTS FCC Rules Description of Test Result FCC (i) &.3 & 2.9 Maximum Permissible Exposure (MPE) Compliance 5.23 ntenna Requirement Compliance 5.27 (a) C Line Conducted Emissions Compliance 5.25, 5.29, 5.247(d) Spurious Emissions Compliance (a)(2) 6 db Bandwidth Compliance 5.247(b)(3) Maximum Conducted Output Power Compliance 5.247(d) khz Bandwidth of Frequency Band Edge Compliance 5.247(e) Power Spectral Density Compliance Page of 53

12 FCC (i) &.3 & 2.9- MXIMUM PERMISSIBLE EXPOSURE (MPE) pplicable Standard ccording to subpart 5.247(i)and subpart.3, systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission s guidelines. Limits for Maximum Permissible Exposure (MPE) (.3, 2.9) Frequency Range (MHz) (B) Limits for General Population/Uncontrolled Exposure Electric Field Magnetic Field Power Density Strength (V/m) Strength (/m) (mw/cm 2 ) veraging Time (minutes) *() /f 2.9/f *(8/f²) / / f/5 3 5, / /. 3 f = frequency in MHz; * = Plane-wave equivalent power density; ccording to.3 and 2.9 RF exposure is calculated. Calculation formula: Prediction of power density at the distance of the applicable MPE limit S = PG/4 R² = power density (in appropriate units, e.g. mw/cm 2 ); P = power input to the antenna (in appropriate units, e.g., mw); G = power gain of the antenna in the direction of interest relative to an isotropic radiator, the power gain factor, is normally numeric gain; R = distance to the center of radiation of the antenna (appropriate units, e.g., cm); For simultaneously transmit system, the calculated power density should comply with: Page 2 of 53

13 Calculated Data: Frequency (MHz) ntenna Gain Conducted output power including Tuneup Tolerance Evaluation Distance (cm) S limit (mw/cm 2 ) MPE Limit (mw/cm 2 ) S i /S limit (dbi) (numeric) (dbm) (mw) & The Wi-Fi function and LTE Module can transmit simultaneously. 2.4GHz and 5GHz Wi-Fi can not transmit simultaneously. Worst case as below. =S Wi-Fi /S Wi-Fi + S WWN /S limit WWN =.4+.4=.8< Result: The device meet FCC MPE at 2 cm distance Page 3 of 53

14 FCC NTENN REQUIREMENT pplicable Standard ccording to 5.23, an intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The manufacturer may design the unit so that a broken antenna can be replaced by the user, but the user of a standard antenna jack or electrical connector is prohibited. The structure and application of the EUT were analyzed to determine compliance with section 5.23 of the rules state that the subject device must meet the following criteria: a. ntenna must be permanently attached to the unit. b. ntenna must use a unique type of connector to attach to the EUT. c. Unit must be professionally installed, and installer shall be responsible for verifying that the correct antenna is employed with the unit. ntenna Connector Construction The EUT have one external antenna for Wi-Fi, and the antenna gain is 3dBi, the EUT requires professional installation. Please refer to the professional installation statement letter. Result: Compliance. Page 4 of 53

15 FCC 5.27 (a) C LINE CONDUCTED EMISSIONS pplicable Standard FCC 5.27(a) EUT Setup The setup of EUT is according with per NSI C measurement procedure. The specification used was with the FCC Part The spacing between the peripherals was cm. The adapter was connected to the main lisn with a 2 V/6 Hz C power source. EMI Test Receiver Setup The EMI test receiver was set to investigate the spectrum from 5 khz to 3 MHz. During the conducted emission test, the EMI test receiver was set with the following configurations: Frequency Range IF B/W 5 khz 3 MHz 9 khz Page 5 of 53

16 Test Procedure During the conducted emission test, the adapter was connected to the first LISN. Maximizing procedure was performed on the six (6) highest emissions of the EUT. ll data was recorded in the Quasi-peak and average detection mode. Corrected mplitude & Margin Calculation The basic equation is as follows: V C = V R + C + VDF C f = C + VDF Herein, V C (cord. Reading): corrected voltage amplitude V R : reading voltage amplitude c : attenuation caused by cable loss VDF: voltage division factor of MN C f : Correction Factor The Margin column of the following data tables indicates the degree of compliance within the applicable limit. For example, a margin of 7dB means the emission is 7dB below the limit. The equation for margin calculation is as follows: Test Equipment List and Details Margin = Limit Corrected mplitude Manufacturer Description Model Serial Number Calibration Date Calibration Due Date R&S EMI Test Receiver ESCS / R&S L.I.S.N ESH2-Z5 8927/ R&S Two-line V- network ENV R&S Test Software EMC32 Version8.53. N/ N/ Unknown Coaxial Cable C-NJNJ-5 C * Statement of Traceability: Bay rea Compliance Laboratories Corp. (Dongguan) attests that all calibrations have been performed, traceable to National Primary Standards and International System of Units (SI). Test Data Environmental Conditions Temperature: 28.4 C Relative Humidity: 56 % TM Pressure:.3 kpa The testing was performed by Sider Huang on Page 6 of 53

17 Test Mode: Transmitting (Wi-Fi 82.b mode low channel was the worst) C2 V, 6 Hz, Line: 8 Level in dbμ Quasi-Peak Limit verage Limit 5k M 2M 3M 4M 5M 6 8 M 2M 3M Frequency in Hz Frequency (MHz) QuasiPeak (dbμv) Bandwidth (khz) Line Corr. (db) Margin (db) Limit (dbμv) Comment L Compliance L Compliance L Compliance L Compliance L Compliance L Compliance Frequency (MHz) verage (dbμv) Bandwidth (khz) Line Corr. (db) Margin (db) Limit (dbμv) Comment L Compliance L Compliance L Compliance L Compliance L Compliance L Compliance Page 7 of 53

18 C2 V, 6 Hz, Neutral: 8 7 Level in dbμ Quasi-Peak Limit verage Limit 5k M 2M 3M 4M 5M 6 8 M 2M 3M Frequency in Hz Frequency (MHz) QuasiPeak (dbμv) Bandwidth (khz) Line Corr. (db) Margin (db) Limit (dbμv) Comment N Compliance N Compliance N Compliance N Compliance N Compliance N Compliance Frequency (MHz) verage (dbμv) Bandwidth (khz) Line Corr. (db) Margin (db) Limit (dbμv) Comment N Compliance N Compliance N Compliance N Compliance N Compliance N Compliance Page 8 of 53

19 FCC 5.29, 5.25 & 5.247(d) - SPURIOUS EMISSIONS pplicable Standard FCC (d); 5.29; 5.25; EUT Setup Below GHz: bove GHz: The radiated emission Below GHz tests were performed in the 3 meters chamber test site, above GHz tests were performed in the 3 meters chamber test site B, using the setup accordance with the NSI C The specification used was the FCC 5.29, and FCC limits. The spacing between the peripherals was cm. Page 9 of 53

20 EMI Test Receiver & Spectrum nalyzer Setup The system was investigated from 3 MHz to 25 GHz. During the radiated emission test, the EMI test receiver & Spectrum nalyzer Setup were set with the following configurations: 3MHz-MHz: GHz- 25GHz: Note: T is minimum transmission duration Measurement RBW Video B/W IF B/W QP 2 khz 3 khz 2kHz Measurement Duty cycle RBW Video B/W PK ny MHz 3 MHz V >98% MHz Hz <98% MHz /T Test Procedure Maximizing procedure was performed on the highest emissions to ensure that the EUT complied with all installation combinations. Data was recorded in Quasi-peak detection mode for frequency range of 3 MHz- GHz, peak and verage detection modes for frequencies above GHz. Corrected mplitude & Margin Calculation The Corrected mplitude is calculated by adding the ntenna Factor and Cable Loss, and subtracting the mplifier Gain from the Meter Reading. The basic equation is as follows: Corrected mplitude = Meter Reading + ntenna Factor + Cable Loss - mplifier Gain The Margin column of the following data tables indicates the degree of compliance with the applicable limit. For example, a margin of 7dB means the emission is 7dB below the limit. The equation for margin calculation is as follows: Margin = Limit Corrected mplitude Page 2 of 53

21 Test Equipment List and Details Manufacturer Description Model Serial Number Calibration Date Calibration Due Date R&S EMI Test Receiver ESCI Farad Test Software EZ-EMC V..4.2 N/ N/ Sunol Sciences ntenna JB Unknown Coaxial Cable C-NJNJ-5 C Unknown Coaxial Cable C-NJNJ-5 C Unknown Coaxial Cable C-NJNJ-5 C HP mplifier 8447D gilent Spectrum nalyzer E444 SG R&S Spectrum nalyzer FSP Farad Test Software EZ-EMC V..4.2 N/ N/ ETS-Lindgren Horn ntenna Ducommun Horn ntenna RH Technolagies 34 Unknown Coaxial Cable C-SJSJ-5 C Unknown Coaxial Cable C-2.4J2.4J-5 C MITEQ mplifier FS S Quinstar mplifier QLW JO E-Microwave Band-stop Filters OBSF S OE Micro-tronics High Pass Filter HPM5 S/N-G * Statement of Traceability: Bay rea Compliance Laboratories Corp. (Dongguan) attests that all calibrations have been performed, traceable to National Primary Standards and International System of Units (SI). Test Data Environmental Conditions Temperature: 26.3~29.9 C Relative Humidity: 39~4 % TM Pressure: 99.5~. kpa * The testing was performed by Vem Shen & Blake Yang from to Test Result: Compliance, please Refer to the following data Test Mode: Transmitting Page 2 of 53

22 ) 3MHz-GHz(82.b low channel was the worst) Horizontal: Frequency (MHz) Receiver Reading (dbuv) Detector Correction Factor (db/m) Cord. mp. (dbuv/m) Limit (dbuv/m) Margin (db) QP QP QP QP QP QP Page 22 of 53

23 Vertical: Frequency (MHz) Receiver Reading (dbuv) Detector Correction Factor (db/m) Cord. mp. (dbuv/m) Limit (dbuv/m) Margin (db) QP QP QP QP QP QP Page 23 of 53

24 2) -25GHz: 82.b Frequency (MHz) Receiver Rx ntenna Cable Reading (dbμv) Detector (PK/QP/V) Polar (H/V) Factor (db/m) loss (db) mplifier Gain (db) Corrected mplitude (dbμv/m) Limit (dbμv/m) Margin (db) Low Channel: 242 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Middle Channel: 2437 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V High Channel: 2462 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Page 24 of 53

25 82.g Frequency (MHz) Receiver Rx ntenna Cable Reading (dbμv) Detector (PK/QP/V) Polar (H/V) Factor (db/m) loss (db) mplifier Gain (db) Corrected mplitude (dbμv/m) Limit (dbμv/m) Margin (db) Low Channel: 242 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Middle Channel: 2437 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V High Channel: 2462 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Page 25 of 53

26 82.n ht2 Frequency (MHz) Receiver Rx ntenna Cable Reading (dbμv) Detector (PK/QP/V) Polar (H/V) Factor (db/m) loss (db) mplifier Gain (db) Corrected mplitude (dbμv/m) Limit (dbμv/m) Margin (db) Low Channel: 242 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Middle Channel: 2437 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V High Channel: 2462 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Page 26 of 53

27 82.n ht4 Frequency (MHz) Receiver Rx ntenna Cable Reading (dbμv) Detector (PK/QP/V) Polar (H/V) Factor (db/m) loss (db) mplifier Gain (db) Corrected mplitude (dbμv/m) Limit (dbμv/m) Margin (db) Low Channel: 2422 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Middle Channel: 2437 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V High Channel: 2452 MHz PK H N/ N/ V H N/ N/ PK V N/ N/ V V N/ N/ PK V V V PK V V V PK V V V Page 27 of 53

28 Test plots(82. b mode low channel was the worst) Horizontal: Fundamental Test with Band Rejection Filter Page 28 of 53

29 Vertical: Fundamental Test with Band Rejection Filter Page 29 of 53

30 FCC 5.247(a) (2) 6 db EMISSION BNDWIDTH pplicable Standard ccording to FCC 5.247(a) (2) Systems using digital modulation techniques may operate in the MHz, MHz, and MHz bands. The minimum 6 db bandwidth shall be at least 5 khz. Test Procedure a) Set RBW = khz. b) Set the video bandwidth (VBW) 3 RBW. c) Detector = Peak. d) Trace mode = max hold. e) Sweep = auto couple. f) llow 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 maximum level measured in the fundamental emission. EUT Spectrum nalyzer Test Equipment List and Details Manufacturer Description Model Serial Number Calibration Date Calibration Due Date R&S EMI Test Receiver ESPI Unknown Coaxial Cable C-SJ- C/ Each time N/ * Statement of Traceability: Bay rea Compliance Laboratories Corp. (Dongguan) attests that all calibrations have been performed, traceable to National Primary Standards and International System of Units (SI). Test Data Environmental Conditions Temperature: 27.4 C Relative Humidity: 6 % TM Pressure:.3 kpa * The testing was performed by ndy Huang on Page 3 of 53

31 Test Mode: Transmitting Test Result: Compliant. please refer to the following table and plots. Test mode 82.b 82.g 82.n ht2 82.n ht4 Frequency (MHz) 6 db Bandwidth (MHz) Limit (MHz) dB bandwidth: 82.b Low Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ]. db 8.8 MHz 3 2 Offset db Marker [T ] 3.36 dbm 2.48 GHz PK MXH D 8.33 dbm D dbm Center 2.42 GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:7:8 Page 3 of 53

32 82.b Middle Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ].2 db 8.6 MHz 3 2 Offset db Marker [T ].85 dbm GHz PK MXH D 8.8 dbm D2 2.8 dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23::2 82.b High Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] -.4 db 8.8 MHz 3 2 Offset db Marker [T ] 3.33 dbm GHz PK MXH D 8.7 dbm D2 2.7 dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:2:27 Page 32 of 53

33 82.g Low Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] -2.6 db 5.2 MHz 3 2 Offset db Marker [T ] -.72 dbm GHz PK MXH D 3.73 dbm D dbm Center 2.42 GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:5:4 82.g Middle Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] 2.58 db 5.28 MHz 3 2 Offset db Marker [T ] -.4 dbm GHz PK MXH D 6.6 dbm D2.6 dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:8:8 Page 33 of 53

34 82.g High Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] -.98 db 5.28 MHz 3 2 Offset db Marker [T ] -3.5 dbm GHz PK MXH D 3.45 dbm D dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:2:4 82.n ht2 Low Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] db 5.2 MHz 3 2 Offset db Marker [T ] -.26 dbm GHz PK MXH D 3.67 dbm D dbm Center 2.42 GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:23:34 Page 34 of 53

35 82.n ht2 Middle Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] 2.58 db 5.2 MHz 3 2 Offset db Marker [T ] -.68 dbm GHz PK MXH D 6.2 dbm D2.2 dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:27:2 82.n ht2 High Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Delta [T ] -.82 db 5.28 MHz 3 2 Offset db Marker [T ] dbm GHz PK MXH D 3.44 dbm D dbm Center GHz 4 MHz/ Span 4 MHz Date: 2.JUL.28 23:3:2 Page 35 of 53

36 82.n ht4 Low Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT ms Delta [T ].6 db MHz 3 2 Offset db Marker [T ] dbm GHz PK MXH - D -2.4 dbm D2-8.4 dbm Center GHz 8 MHz/ Span 8 MHz Date: 2.JUL.28 23:33:25 82.n ht4 Middle Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT ms Delta [T ].97 db MHz 3 2 Offset db Marker [T ] dbm GHz PK MXH - D.6 dbm D dbm Center GHz 8 MHz/ Span 8 MHz Date: 2.JUL.28 23:38:2 Page 36 of 53

37 82.n ht4 High Channel Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT ms Delta [T ] -.8 db 35.4 MHz 3 2 Offset db Marker [T ] -6.6 dbm GHz PK MXH - D -2.8 dbm D2-8.8 dbm Center GHz 8 MHz/ Span 8 MHz Date: 2.JUL.28 23:4:26 Page 37 of 53

38 FCC 5.247(b) (3) - MXIMUM PEK CONDUCTED OUTPUT POWER pplicable Standard ccording to FCC 5.247(b) (3), for systems using digital modulation in the MHz, MHz, and MHz bands: Watt. s an alternative to a peak power measurement, compliance with the one Watt limit can be based on a measurement of the maximum conducted output power. Maximum Conducted Output Power is defined as the total transmit power delivered to all antennas and antenna elements averaged across all symbols in the signaling alphabet when the transmitter is operating at its maximum power control level. Power must be summed across all antennas and antenna elements. The average must not include any time intervals during which the transmitter is off or is transmitting at a reduced power level. If multiple modes of operation are possible (e.g., alternative modulation methods), the maximum conducted output power is the highest total transmit power occurring in any mode. Test Procedure. Place the EUT on a bench and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to test equipment. 3. dd a correction factor to the display. 4. Set the power Meter to test Peak output power, record the result as peak power. 5. Set the power meter to test average output power, record the result as average power. EUT Power Meter Test Equipment List and Details Manufacturer Description Model gilent USB Wideband Power Sensor Serial Number Calibration Date Calibration Due Date U222X MY Unknown Coaxial Cable C-SJ- C/ Each time N/ * Statement of Traceability: Bay rea Compliance Laboratories Corp. (Dongguan) attests that all calibrations have been performed, traceable to National Primary Standards and International System of Units (SI). Page 38 of 53

39 Test Data Environmental Conditions Temperature: 27.4 C Relative Humidity: 6 % TM Pressure:.3 kpa * The testing was performed by ndy Huang on Test Mode: Transmitting Test Result: Compliant. Please refer to the following table. Test mode Channel Frequency (MHz) Max Peak Conducted Output Power (dbm) Limit (dbm) 82.b 82.g 82.n ht2 82.n ht4 Low Middle High Low Middle High Low Middle High Low Middle High Page 39 of 53

40 FCC 5.247(d) khz BNDWIDTH OF FREQUENCY BND EDGE pplicable Standard ccording to FCC 5.247(d):In any khz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 2 db below that in the khz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies with the conducted power limits based on the use of RMS averaging over a time interval, as permitted under paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 3 db instead of 2 db. ttenuation below the general limits specified in 5.29(a) is not required. In addition, radiated emissions which fall in the restricted bands, as defined in 5.25(a), must also comply with the radiated emission limits specified in 5.29(a) (see 5.25(c)). Test Procedure. Check the calibration of the measuring instrument using either an internal calibrator or a known signal from an external generator. 2. Position the EUT without connection to measurement instrument. Turn on the EUT and connect its antenna terminal to measurement instrument via a low loss cable. Then set it to any one measured frequency within its operating range, and make sure the instrument is operated in its linear range. 3. Set RBW to khz and VBW of spectrum analyzer to 3 khz with a convenient frequency span including khz bandwidth from band edge. 4. Measure the highest amplitude appearing on spectral display and set it as a reference level. Plot the graph with marking the highest point and edge frequency. 5. Repeat above procedures until all measured frequencies were complete. Test Equipment List and Details Manufacturer Description Model Serial Number Calibration Date Calibration Due Date R&S EMI Test Receiver ESPI Unknown Coaxial Cable C-SJ- C/ Each time N/ * Statement of Traceability: Bay rea Compliance Laboratories Corp. (Dongguan) attests that all calibrations have been performed, traceable to National Primary Standards and International System of Units (SI). Page 4 of 53

41 Test Data Environmental Conditions Temperature: 27.4 C Relative Humidity: 59~6 % TM Pressure: 99.5~.3 kpa * The testing was performed by ndy Huang on , Test mode: Transmitting Test Result: Compliant. Please refer to following plots. 82.b: Band Edge, Left Side Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Marker 2 [T ] dbm GHz 3 2 Offset db Marker [T ] 8.42 dbm 2.44 GHz PK MXH dBm Center 2.4 GHz 4.8 MHz/ Span 48 MHz Date: 2.JUL.28 23:9: Page 4 of 53

42 82.b: Band Edge, Right Side MRKER 2 * RBW khz GHz * VBW 3 khz Ref 3 dbm * tt 4 db SWT ms 3 Offset db 2 Marker 2 [T ] dbm GHz Marker [T ] 8.5 dbm GHz PK MXH D 8.5 dbm - D dbm Center GHz 8.6 MHz/ Span 86 MHz Date: 22.JUL.28 9:3:37 82.g: Band Edge, Left Side Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Marker 2 [T ] -3.3 dbm GHz 3 2 Offset db Marker [T ] 3.2 dbm GHz PK MXH dBm Center 2.4 GHz 4.8 MHz/ Span 48 MHz Date: 2.JUL.28 23:6:48 Page 42 of 53

43 82.g: Band Edge, Right Side MRKER 2 * RBW khz GHz * VBW 3 khz Ref 3 dbm * tt 4 db SWT ms 3 Offset db 2 Marker 2 [T ] dbm GHz Marker [T ] 3.3 dbm GHz PK MXH D 3.3 dbm - -2 D dbm Center GHz 8.6 MHz/ Span 86 MHz Date: 22.JUL.28 9:6:25 82.n ht2 Band Edge, Left Side Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT 5 ms Marker 2 [T ] -3.8 dbm GHz 3 2 Offset db Marker [T ] 3.8 dbm GHz PK MXH dBm Center 2.4 GHz 4.8 MHz/ Span 48 MHz Date: 2.JUL.28 23:25:27 Page 43 of 53

44 82.n ht2 Band Edge, Right Side MRKER 2 * RBW khz GHz * VBW 3 khz Ref 3 dbm * tt 4 db SWT ms 3 Offset db 2 Marker 2 [T ] dbm GHz Marker [T ] 3.46 dbm GHz PK MXH D 3.46 dbm - -2 D dbm Center GHz 8.6 MHz/ Span 86 MHz Date: 22.JUL.28 9::37 82.n ht4: Band Edge, Left Side Ref 3 dbm * tt 4 db * RBW khz * VBW 3 khz SWT ms Marker 2 [T ] dbm 2.4 GHz 3 2 Offset db Marker [T ] -2.3 dbm GHz PK MXH dBm Center 2.4 GHz 8.8 MHz/ Span 88 MHz Date: 2.JUL.28 23:37:2 Page 44 of 53

45 82.n ht4 Band Edge, Right Side MRKER 2 * RBW khz GHz * VBW 3 khz Ref 3 dbm * tt 4 db SWT 5 ms 3 Offset db 2 Marker 2 [T ] dbm GHz Marker [T ] dbm GHz PK MXH D dbm D dbm Center GHz 2.6 MHz/ Span 26 MHz Date: 22.JUL.28 9:9:7 Page 45 of 53

46 FCC 5.247(e) - POWER SPECTRL DENSITY pplicable Standard For digitally modulated systems, the power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8 dbm in any 3 khz band during any time interval of continuous transmission. This power spectral density shall be determined in accordance with the provisions of paragraph (b) of this section. The same method of determining the conducted output power shall be used to determine the power spectral density. Test Procedure. Check the calibration of the measuring instrument using either an internal calibrator or a known signal from an external generator. 2. Position the EUT was set without connection to measurement instrument. Turn on the EUT and connect its antenna terminal to measurement instrument via a low loss cable. Then set it to any one measured frequency within its operating range, and make sure the instrument is operated in its linear range. 3. Set the RBW = 3 khz, VBW = khz, Set the span to.5 times the DTS bandwidth. 4. Use the peak marker function to determine the maximum amplitude level. Test Equipment List and Details Manufacturer Description Model Serial Number Calibration Date Calibration Due Date R&S EMI Test Receiver ESPI Unknown Coaxial Cable C-SJ- C/ Each time N/ * Statement of Traceability: Bay rea Compliance Laboratories Corp. (Dongguan) attests that all calibrations have been performed, traceable to National Primary Standards and International System of Units (SI). Test Data Environmental Conditions Temperature: 27.4~28.5 C Relative Humidity: 56~6 % TM Pressure:.~.3 kpa * The testing was performed by ndy Huang on , Test Result: Compliance Test Mode: Transmitting Test Result: Compliant. Please refer to the following table and plots Page 46 of 53

47 Test mode Channel Frequency (MHz) PSD (dbm/3khz) Limit (dbm/3khz) 82.b 82.g 82.n ht2 82.n ht4 Low Middle High Low Middle High Low Middle High Low Middle High Power Spectral Density, 82.b Low Channel MRKER * RBW 3 khz GHz * VBW khz Ref 2 dbm * tt 3 db SWT.35 s 2 Offset db Marker [T ] -8.9 dbm GHz PK MXH Center 2.42 GHz.22 MHz/ Span 2.2 MHz Date: 8.UG.28 ::32 Page 47 of 53

48 Power Spectral Density, 82.b Middle Channel MRKER * RBW 3 khz GHz * VBW khz Ref 2 dbm * tt 4 db SWT.4 s 2 Offset db Marker [T ] dbm GHz PK MXH Center GHz.224 MHz/ Span 2.24 MHz Date: 8.UG.28 :3: Power Spectral Density, 82.b High Channel MRKER * RBW 3 khz GHz * VBW khz Ref 2 dbm * tt 4 db SWT.35 s 2 Offset db Marker [T ] -.6 dbm GHz PK MXH Center GHz.22 MHz/ Span 2.2 MHz Date: 8.UG.28 :4:22 Page 48 of 53

49 Power Spectral Density, 82.g Low Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 2.6 s Marker [T ] -2.9 dbm GHz 3 Offset db PK MXH Center 2.42 GHz 2.28 MHz/ Span 22.8 MHz Date: 2.JUL.28 23:6:9 Power Spectral Density, 82.g Middle Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 2.6 s Marker [T ] -.74 dbm GHz 3 Offset db PK MXH Center GHz MHz/ Span MHz Date: 2.JUL.28 23:9:2 Page 49 of 53

50 Power Spectral Density, 82.g High Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 2.6 s Marker [T ] dbm GHz 3 Offset db PK MXH Center GHz MHz/ Span MHz Date: 2.JUL.28 23:22:8 Power Spectral Density, 82.n ht2 Low Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 2.6 s Marker [T ] -2.2 dbm GHz 3 Offset db PK MXH Center 2.42 GHz 2.28 MHz/ Span 22.8 MHz Date: 2.JUL.28 23:24:49 Page 5 of 53

51 Power Spectral Density, 82.n ht2 Middle Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 2.6 s Marker [T ] -.24 dbm GHz 3 Offset db PK MXH Center GHz 2.28 MHz/ Span 22.8 MHz Date: 2.JUL.28 23:28:33 Power Spectral Density, 82.n ht2 High Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 2.6 s Marker [T ] dbm GHz 3 Offset db PK MXH Center GHz MHz/ Span MHz Date: 2.JUL.28 23:3:36 Page 5 of 53

52 Power Spectral Density, 82.n ht4 Low Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 6 s Marker [T ] dbm GHz 3 Offset db PK MXH Center GHz MHz/ Span MHz Date: 2.JUL.28 23:36:43 Power Spectral Density, 82.n ht4 Middle Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 6 s Marker [T ] dbm GHz 3 Offset db PK MXH Center GHz MHz/ Span MHz Date: 2.JUL.28 23:4:24 Page 52 of 53

53 Power Spectral Density, 82.n ht4 High Channel Ref 3 dbm * tt 4 db * RBW 3 khz * VBW khz SWT 6 s Marker [T ] dbm GHz 3 Offset db PK MXH Center GHz MHz/ Span MHz Date: 2.JUL.28 23:44:2 ***** END OF REPORT ***** Page 53 of 53

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