TEST REPORT. Issued for: RUIMA INTERNATIONAL(HK)INDUSTRIAL CO.,LIMITED NO.19 Ruixiang Road, Xinhua Industrial Zone, Huadu District, Guangzhou China

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1 TEST REPORT FCC ID: HSJRM-66B Product: Boombox Speaker Model No.: RM-66 dditional Model: STREET HOPPER 6, CNNON 6 Trade Mark: RUIM Issued Date: ug. 4, 6 Issued for: RUIM INTERNTIONL(HK)INDUSTRIL CO.,LIMITED NO.9 Ruixiang Road, Xinhua Industrial Zone, Huadu District, Guangzhou China Issued By: Shenzhen Tongce Testing Lab. F, Leinuo Watch Building, Fuyong Town, Baoan Dist, Shenzhen, China TEL: FX: Note: This report shall not be reproduced except in full, without the written approval of Shenzhen Tongce Testing Lab. This document may be altered or revised by Shenzhen Tongce Testing Lab. personnel only, and shall be noted in the revision section of the document. The test results in the report only apply to the tested sample.

2 TBLE OF CONTENTS. Test Certification Test Result Summary EUT Description Genera Information Test environment and mode Description of Support Units Facilities and ccreditations Facilities Location Measurement Uncertainty Test Results and Measurement Data ntenna requirement Conducted Emission Conducted Output Power db Occupy Bandwidth Carrier Frequencies Separation Hopping Channel Number Dwell Time Pseudorandom Frequency Hopping Sequence Conducted Band Edge Measurement Conducted Spurious Emission Measurement Radiated Spurious Emission Measurement ppendix : Photographs of Test Setup ppendix B: Photographs of EUT Page of 6

3 . Test Certification Product: Model No.: dditional Model: pplicant: ddress: Boombox Speaker RM-66 STREET HOPPER 6, CNNON 6 RUIM INTERNTIONL(HK)INDUSTRIL CO., LIMITED NO.9 Ruixiang Road, Xinhua Industrial Zone, Huadu District, Guangzhou China Manufacturer: GUNGZHOU HUIYUN ELECTRONICS CO., LIMITED ddress: NO.9 Ruixiang Road, Xinhua Industrial Zone, Huadu District, Guangzhou China Date of Test: Jun. 9 ug. 3, 6 pplicable Standards: FCC CFR Title 47 Part 5 Subpart C Section 5.47 The above equipment has been tested by Shenzhen Tongce Testing Lab. and found compliance with the requirements set forth in the technical standards mentioned above. The results of testing in this report apply only to the product/system, which was tested. Other similar equipment will not necessarily produce the same results due to production tolerance and measurement uncertainties. Tested By: Date: ug. 3, 6 Beryl Zhao Reviewed By: Date: ug. 4, 6 Joe Zhou pproved By: Date: ug. 4, 6 Tomsin Page 3 of 6

4 . Test Result Summary Requirement CFR 47 Section Result ntenna Requirement 5.3/ 5.47 (c) PSS C Power Line Conducted Emission 5.7 PSS Conducted Peak Output Power db Occupied Bandwidth 5.47 (b)() (a)().49 PSS PSS Carrier Frequencies Separation 5.47 (a)() PSS Hopping Channel Number 5.47 (a)() PSS Dwell Time 5.47 (a)() PSS Radiated Emission Band Edge 5.5/ , (d).5,.57 PSS PSS Note:. PSS: Test item meets the requirement.. Fail: Test item does not meet the requirement. 3. N/: Test case does not apply to the test object. 4. The test result judgment is decided by the limit of test standard. Page 4 of 6

5 3. EUT Description Product Name: Model : Boombox Speaker RM-66 dditional Model: STREET HOPPER 6, CNNON 6 Trade Mark: Operation Frequency: Transfer Rate: RUIM 4MHz~48MHz //3 Mbits/s Number of Channel: 79 Modulation Type: GFSK, π/4-dqpsk, 8DPSK Modulation Technology: FHSS ntenna Type: ntenna Gain: Power Supply: Remark: Internal ntenna dbi dapter Information: INPUT: -4V~5/6Hz OUTPUT: 3.5V, ll models above are identical in interior structure, electrical circuits and components, and just model names are different for the marketing requirement. Operation Frequency each of channel for GFSK, π/4-dqpsk, 8DPSK Channel Frequency Channel Frequency Channel Frequency Channel Frequency 4MHz 4MHz 4 44MHz 6 46MHz 43MHz 43MHz 4 443MHz 6 463MHz 4MHz 3 43MHz 5 45MHz 7 47MHz 43MHz 3 433MHz 5 453MHz 7 473MHz 8 4MHz 38 44MHz 58 46MHz 78 48MHz 9 4MHz 39 44MHz 59 46MHz - Remark: Channel, 39 &78 have been tested for GFSK, π/4-dqpsk, 8DPSK modulation mode. Page 5 of 6

6 4. Genera Information 4.. Test environment and mode Operating Environment: Temperature: 5. C Humidity: tmospheric Pressure: 56 % RH mbar Test Mode: Engineering mode: Keep the EUT in continuous transmitting by select channel and modulations The sample was placed.8m &.5m for the measurement below & above GHz above the ground plane of 3m chamber. Measurements in both horizontal and vertical polarities were performed. During the test, each emission was maximized by: having the EUT continuously working, investigated all operating modes, rotated about all 3 axis (X, Y & Z) and considered typical configuration to obtain worst position, manipulating interconnecting cables, rotating the turntable, varying antenna height from m to 4m in both horizontal and vertical polarizations. The emissions worst-case are shown in Test Results of the following pages. 4.. Description of Support Units The EUT has been tested as an independent unit together with other necessary accessories or support units. The following support units or accessories were used to form a representative test configuration during the tests. Equipment Model No. Serial No. FCC ID Trade Name / / / / / Note:. ll the equipment/cables were placed in the worst-case configuration to maximize the emission during the test.. Grounding was established in accordance with the manufacturer s requirements and conditions for the intended use. 3. For conducted measurements (Output Power, db Occupied Bandwidth, Carrier Frequencies Separation, Hopping Channel Number, Dwell Time, Spurious Emissions), the antenna of EUT is connected to the test equipment via temporary antenna connector, the antenna connector is soldered on the antenna port of EUT, and the temporary antenna connector is listed in the Test Instruments. Page 6 of 6

7 5. Facilities and ccreditations 5.. Facilities The test facility is recognized, certified, or accredited by the following organizations: FCC - Registration No.: 5733 Shenzhen Tongce Testing Lab The 3m Semi-anechoic chamber has been registered and fully described in a report with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is maintained in our files. IC - Registration No.: 668- The 3m Semi-anechoic chamber of Shenzhen TCT Testing Technology Co., Ltd. has been registered by Certification and Engineering Bureau of Industry Canada for radio equipment testing CNS - Registration No.: CNS L665 Shenzhen TCT Testing Technology Co., Ltd. is accredited to ISO/IEC 75:5 General Requirements for the Competence of Testing and Calibration laboratories for the competence of testing. The Registration No. is CNS L Location Shenzhen Tongce Testing Lab ddress: F, Leinuo Watch Building, Fuyong Town, Baoan Dist, Shenzhen, China Tel: Measurement Uncertainty The reported uncertainty of measurement y ± U, where expended uncertainty U is based on a standard uncertainty multiplied by a coverage factor of k=, providing a level of confidence of approximately 95 %. No. Item MU Conducted Emission ±.56dB RF power, conducted ±.db 3 Spurious emissions, conducted ±.db 4 ll emissions, radiated(<g) ±3.9dB 5 ll emissions, radiated(>g) ±4.8dB 6 Temperature ±. C 7 Humidity ±.% Page 7 of 6

8 6. Test Results and Measurement Data 6.. ntenna requirement Standard requirement: FCC Part5 C Section 5.3 /47(c) 5.3 requirement: n 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, the manufacturer may design the unit so that a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical connector is prohibited. 5.47(c) ()(i) requirement: (i) Systems operating in the MHz band that is used exclusively for fixed. Point-to-point operations may employ transmitting antennas with directional gain greater than 6dBi provided the maximum conducted output power of the intentional radiator is reduced by db for every 3 db that the directional gain of the antenna exceeds 6dBi. E.U.T ntenna: The Bluetooth antenna is an internal antenna which permanently attached, and the best case gain of the antenna is dbi. ntenna Page 8 of 6

9 6.. Conducted Emission 6... Test Specification Test Requirement: FCC Part5 C Section 5.7 Test Method: Frequency Range: Receiver setup: Limits: NSI C63.:3 5 khz to 3 MHz RBW=9 khz, VBW=3 khz, Sweep time=auto Frequency range Limit (dbuv) (MHz) Quasi-peak verage to 56* 56 to 46* Test Setup: Test Mode: Refer to item 4. Test Procedure: Test Result:. The E.U.T and simulators are connected to the main power through a line impedance stabilization network (L.I.S.N.). This provides a 5ohm/5uH coupling impedance for the measuring equipment.. The peripheral devices are also connected to the main power through a LISN that provides a 5ohm/5uH coupling impedance with 5ohm termination. (Please refer to the block diagram of the test setup and photographs). 3. Both sides of.c. line are checked for maximum conducted interference. In order to find the maximum emission, the relative positions of equipment and all of the interface cables must be changed according to NSI C63.: 3 on conducted measurement. PSS Page 9 of 6

10 6... Test Instruments Conducted Emission Shielding Room Test Site (843) Equipment Manufacturer Model Serial Number Calibration Due EMI Test Receiver R&S ESCS3 39 Sep., 6 LISN Schwarzbeck NSLK Sep. 6, 6 Coax cable TCT CE-5 N/ Sep., 6 EMI Test Software Shurple Technology EZ-EMC N/ N/ Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page of 6

11 6..3. Test data Please refer to following diagram for individual Conducted Emission on Line Terminal of the power line (5 khz to 3MHz) Note: Freq. = Emission frequency in MHz Reading level (dbµv) = Receiver reading Corr. Factor (db) = ntenna factor + Cable loss Measurement (dbµv) = Reading level (dbµv) + Corr. Factor (db) Limit (dbµv) = Limit stated in standard Margin (db) = Measurement (dbµv) Limits (dbµv) Q.P. =Quasi-Peak VG =average * is meaning the worst frequency has been tested in the frequency range 5 khz to 3MHz Page of 6

12 Conducted Emission on Neutral Terminal of the power line (5 khz to 3MHz) Note: Freq. = Emission frequency in MHz Reading level (dbµv) = Receiver reading Corr. Factor (db) = ntenna factor + Cable loss Measurement (dbµv) = Reading level (dbµv) + Corr. Factor (db) Limit (dbµv) = Limit stated in standard Margin (db) = Measurement (dbµv) Limits (dbµv) Q.P. =Quasi-Peak VG =average * is meaning the worst frequency has been tested in the frequency range 5 khz to 3MHz. Note: Measurements were conducted in all three channels (high, middle, low) and three modulation (GFSK, Pi/4 DQPSK, 8DPSK), and the worst case Mode (Highest channel and GFSK) was submitted only. Page of 6

13 6.3. Conducted Output Power Test Specification Test Requirement: Test Method: Limit: FCC Part5 C Section 5.47 (b)(3) NSI C63.:3 and D-75 Section 5.47 (b) The maximum peak conducted output power of the intentional radiator shall not exceed the following: () For frequency hopping systems operating in the MHz band employing at least 75 non-overlapping hopping channels, and all frequency hopping systems in the MHz band: watt. For all other frequency hopping systems in the MHz band.5 watts. Test Setup: Test Mode: Test Procedure: Test Result: Transmitting mode with modulation Use the following spectrum analyzer settings: Span = approximately 5 times the db bandwidth, centered on a hopping channel RBW > the db bandwidth of the emission being measured VBW RBW Sweep = auto Detector function = peak Trace = max hold llow the trace to stabilize. Use the marker-to-peak function to set the marker to the peak of the emission. PSS Test Instruments Equipment Manufacturer Model Serial Number Calibration Due Spectrum nalyzer R&S FSU 54 Sep., 6 RF Cable TCT RE-6 N/ Sep., 6 ntenna Connector TCT RFC- N/ Sep., 6 Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page 3 of 6

14 Test Data GFSK mode Test channel Peak Output Power (dbm) Limit (dbm) Result Lowest.6. PSS Middle.3. PSS Highest.4. PSS Pi/4DQPSK mode Test channel Peak Output Power (dbm) Limit (dbm) Result Lowest.. PSS Middle.84. PSS Highest.8. PSS 8DPSK mode Test channel Peak Output Power (dbm) Limit (dbm) Result Lowest.9. PSS Middle.96. PSS Highest.96. PSS Test plots as follows: Page 4 of 6

15 GFSK Modulation Lowest channel * RBW 3 MHz * VBW MHz.6 dbm Ref 3 dbm SWT.5 ms.4643 GHz MXH Center.4 GHz MHz/ Span MHz Date: 3.UG.6 :9:5 Middle channel * RBW 3 MHz * VBW MHz.6 dbm Ref 3 dbm SWT.5 ms.4643 GHz MXH Center.4 GHz MHz/ Span MHz Date: 3.UG.6 :9:5 Highest channel * RBW 3 MHz * VBW MHz.4 dbm Ref 3 dbm SWT.5 ms GHz MXH Center.48 GHz MHz/ Span MHz Date: 3.UG.6 :3:4 Page 5 of 6

16 Pi/4DQPSK Modulation Lowest channel * RBW 3 MHz * VBW MHz. dbm Ref 3 dbm SWT.5 ms GHz MXH Center.4 GHz MHz/ Span MHz Date: 3.UG.6 :35:48 Middle channel * RBW 3 MHz * VBW MHz.84 dbm Ref 3 dbm SWT.5 ms GHz MXH Center.44 GHz MHz/ Span MHz Date: 3.UG.6 :37:4 Highest channel * RBW 3 MHz * VBW MHz.8 dbm Ref 3 dbm SWT.5 ms GHz MXH Center.48 GHz MHz/ Span MHz Date: 3.UG.6 :38:56 Page 6 of 6

17 8DPSK Modulation Lowest channel * RBW 3 MHz * VBW MHz.9 dbm Ref 3 dbm SWT.5 ms GHz MXH Center GHz MHz/ Span MHz Date: 3.UG.6 :4:47 Middle channel * RBW 3 MHz * VBW MHz.96 dbm Ref 3 dbm SWT.5 ms GHz MXH Center.44 GHz MHz/ Span MHz Date: 3.UG.6 :43:3 Highest channel * RBW 3 MHz * VBW MHz.96 dbm Ref 3 dbm SWT.5 ms GHz MXH Center.48 GHz MHz/ Span MHz Date: 3.UG.6 :44:7 Page 7 of 6

18 6.4. db Occupy Bandwidth Test Specification Test Requirement: Test Method: Limit: FCC Part5 C Section 5.47 (a)() NSI C63.:3 and D-75 N/ Test Setup: Test Mode: Test Procedure: Test Result: Transmitting mode with modulation. The testing follows FCC Public Notice D -75 Measurement Guidelines.. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Use the following spectrum analyzer settings for db Bandwidth measurement. Span = approximately to 3 times the db bandwidth, centered on a hopping channel; RBW % of the db bandwidth; VBW RBW; Sweep = auto; Detector function = peak; Trace = max hold. 5. Measure and record the results in the test report. PSS Test Instruments RF Test Room Equipment Manufacturer Model Serial Number Calibration Due Spectrum nalyzer R&S FSU 54 Sep., 6 RF cable TCT RE-6 N/ Sep., 6 ntenna Connector TCT RFC- N/ Sep., 6 Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page 8 of 6

19 Test data Test channel db Occupy Bandwidth (khz) GFSK π/4-dqpsk 8DPSK Conclusion Lowest PSS Middle PSS Highest PSS Test plots as follows: Page 9 of 6

20 GFSK Modulation Lowest channel * RBW 3 khz Delta [T ] VBW khz -.46 db Ref 4 dbm SWT ms khz -.77 dbm GHz MXH D -.89 dbm - - D -.89 dbm Center.4 GHz khz/ Span MHz Date:.UG.6 8:3:5 Middle channel * RBW 3 khz Delta [T ] VBW khz -.7 db Ref 4 dbm SWT ms khz dbm GHz MXH D -.3 dbm - - D -.3 dbm Center.44 GHz khz/ Span MHz Date:.UG.6 8:34:3 Highest channel * RBW 3 khz Delta [T ] VBW khz -.8 db Ref 4 dbm SWT ms khz -9.7 dbm GHz MXH D. dbm - - D dbm Center.48 GHz khz/ Span MHz Date:.UG.6 8:37:7 Page of 6

21 Pi/4DQPSK Modulation Lowest channel * RBW 3 khz Delta [T ] VBW khz -.94 db Ref 4 dbm SWT ms.5358 MHz -.7 dbm GHz MXH D -.9 dbm - - D -.9 dbm Center.4 GHz khz/ Span MHz Date:.UG.6 8:4:5 Middle channel * RBW 3 khz Delta [T ] VBW khz -.53 db Ref 4 dbm SWT ms.5358 MHz -.4 dbm GHz MXH D -.8 dbm - - D -.8 dbm Center.44 GHz khz/ Span MHz Date:.UG.6 8:45:4 Highest channel * RBW 3 khz Delta [T ] VBW khz -.36 db Ref 3 dbm SWT ms MHz -.87 dbm GHz MXH D -.66 dbm - - D -.66 dbm Center.48 GHz khz/ Span MHz Date: 3.UG.6 :3: Page of 6

22 8DPSK Modulation Lowest channel * RBW 3 khz Delta [T ] VBW khz -.4 db Ref 3 dbm SWT ms MHz dbm GHz MXH D dbm - - D dbm Center.4 GHz khz/ Span MHz Date: 3.UG.6 :8:6 Middle channel * RBW 3 khz Delta [T ] VBW khz -.34 db Ref 3 dbm SWT ms MHz -.43 dbm GHz MXH D -.46 dbm - - D -.46 dbm Center.44 GHz khz/ Span MHz Date: 3.UG.6 ::5 Highest channel * RBW 3 khz Delta [T ] VBW khz. db Ref 3 dbm SWT ms MHz -.98 dbm GHz MXH D -.59 dbm - - D -.59 dbm Center.48 GHz khz/ Span MHz Date: 3.UG.6 :6: Page of 6

23 6.5. Carrier Frequencies Separation Test Specification Test Requirement: Test Method: Limit: FCC Part5 C Section 5.47 (a)() NSI C63.:3 and D-75 Frequency hopping systems operating in the MHz band may have hopping channel carrier frequencies that are separated by 5 khz or two-thirds of the db bandwidth of the hopping channel, whichever is greater. Test Setup: Test Mode: Test Procedure: Test Result: Hopping mode. The testing follows FCC Public Notice D -75 Measurement Guidelines.. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Enable the EUT hopping function. 5. Use the following spectrum analyzer settings: Span = wide enough to capture the peaks of two adjacent channels; RBW % of the span; VBW RBW; Sweep = auto; Detector function = peak; Trace = max hold. 6. Measure and record the results in the test report. PSS Test Instruments RF Test Room Equipment Manufacturer Model Serial Number Calibration Due Spectrum nalyzer R&S FSU 54 Sep., 6 RF cable TCT RE-6 N/ Sep., 6 ntenna Connector TCT RFC- N/ Sep., 6 Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page 3 of 6

24 Test data GFSK mode Test channel Carrier Frequencies Separation (khz) Limit (khz) Result Lowest PSS Middle PSS Highest PSS Test channel Pi/4 DQPSK mode Carrier Frequencies Separation (khz) Limit (khz) Result Lowest PSS Middle PSS Highest PSS Test channel 8DPSK mode Carrier Frequencies Separation (khz) Limit (khz) Result Lowest PSS Middle PSS Highest PSS Note: ccording to section 6.4 Mode db bandwidth (khz) (worse case) Limit (khz) (Carrier Frequencies Separation) GFSK π/4-dqpsk DPSK Test plots as follows: Page 4 of 6

25 GFSK Modulation Lowest channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ].4 db. MHz.83 dbm GHz MXH Center.45 GHz khz/ Span MHz Date: 3.UG.6 :9:3 Middle channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ] -. db.358 MHz.7 dbm GHz MXH Center.445 GHz khz/ Span MHz Date: 3.UG.6 :33:3 Highest channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ]. db MHz.64 dbm GHz MXH Center.4795 GHz khz/ Span MHz Date: 3.UG.6 :38:3 Page 5 of 6

26 Pi/4DQPSK Modulation Lowest channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ]. db. MHz.4 dbm GHz MXH Center.45 GHz khz/ Span MHz Date: 3.UG.6 :4:4 Middle channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ]. db.6456 MHz.9 dbm GHz MXH Center.445 GHz khz/ Span MHz Date: 3.UG.6 :45:7 Highest channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ] -. db.358 MHz.8 dbm GHz MXH Center.4795 GHz khz/ Span MHz Date: 3.UG.6 :48:43 Page 6 of 6

27 8DPSK Modulation Lowest channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ].4 db MHz.4 dbm.4838 GHz MXH Center.45 GHz khz/ Span MHz Date: 3.UG.6 :5:6 Middle channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ]. db.358 MHz.95 dbm GHz MXH Center.445 GHz khz/ Span MHz Date: 3.UG.6 :54:5 Highest channel Ref 3 dbm * RBW khz * VBW 3 khz SWT.5 ms Delta [T ] -. db. MHz.8 dbm GHz MXH Center.4795 GHz khz/ Span MHz Date: 3.UG.6 :57:9 Page 7 of 6

28 6.6. Hopping Channel Number Test Specification Test Requirement: Test Method: Limit: FCC Part5 C Section 5.47 (a)() NSI C63.:3 and D-75 Frequency hopping systems in the MHz band shall use at least 5 channels. Test Setup: Test Mode: Test Procedure: Test Result: Hopping mode. The testing follows FCC Public Notice D -75 Measurement Guidelines.. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Enable the EUT hopping function. 5. Use the following spectrum analyzer settings: Span = the frequency band of operation; RBW % of the span; VBW RBW; Sweep = auto; Detector function = peak; Trace = max hold. 6. The number of hopping frequency used is defined as the number of total channel. 7. Record the measurement data derived from spectrum analyzer. PSS Test Instruments RF Test Room Equipment Manufacturer Model Serial Number Calibration Due Spectrum nalyzer R&S FSU 54 Sep., 6 RF cable TCT RE-6 N/ Sep., 6 ntenna Connector TCT RFC- N/ Sep., 6 Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page 8 of 6

29 Test data Mode Hopping channel numbers Limit Result GFSK, P/4-DQPSK,8DPSK 79 5 PSS Test plots as follows: Page 9 of 6

30 GFSK * RBW khz Delta [T ] * VBW 3 khz.86 db Ref 3 dbm SWT ms MHz. dbm.47 GHz MXH Start.4 GHz 8.35 MHz/ Stop.4835 GHz Date: 3.UG.6 :59:3 Pi/4DQPSK * RBW khz Delta [T ] * VBW 3 khz.8 db Ref 3 dbm SWT ms MHz MXH -.7 dbm.4896 GHz Start.4 GHz 8.35 MHz/ Stop.4835 GHz Date: 3.UG.6 :4:8 8DPSK * RBW khz Delta [T ] * VBW 3 khz -.9 db Ref 3 dbm SWT ms MHz.6 dbm GHz MXH Start.4 GHz 8.35 MHz/ Stop.4835 GHz Date: 3.UG.6 :8:33 Page 3 of 6

31 6.7. Dwell Time Test Specification Test Requirement: Test Method: Limit: FCC Part5 C Section 5.47 (a)() NSI C63.:3 and D-75 The average time of occupancy on any channel shall not be greater than.4 seconds within a period of.4 seconds multiplied by the number of hopping channels employed. Test Setup: Test Mode: Test Procedure: Test Result: Hopping mode. The testing follows FCC Public Notice D -75 Measurement Guidelines.. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Enable the EUT hopping function. 5. Use the following spectrum analyzer settings: Span = zero span, centered on a hopping channel; RBW = MHz; VBW RBW; Sweep = as necessary to capture the entire dwell time per hopping channel; Detector function = peak; Trace = max hold. 6. Measure and record the results in the test report. PSS Test Instruments RF Test Room Equipment Manufacturer Model Serial Number Calibration Due Spectrum nalyzer R&S FSU 54 Sep., 6 RF cable TCT RE-6 N/ Sep., 6 ntenna Connector TCT RFC- N/ Sep., 6 Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page 3 of 6

32 Test Data Mode Packet Hops Over Occupancy Time (hops) Package Transfer Time (ms) Dwell time (second) Limit (second) Result GFSK DH PSS Pi/4 DQPSK -DH PSS 8DPSK 3-DH PSS Note:. In normal mode, hopping rate is 6 hops/s with 6 slots in 79 hopping channels. With channel hopping rate (6 / 6 / 79) in Occupancy Time Limit (.4 x 79) (s), Hops Over Occupancy Time comes to (6 / 6 / 79) x (.4 x 79) = 6.67 hops. Dwell Time(s) = Hops Over Occupancy Time (hops) x Package Transfer Time Test plots as follows: Page 3 of 6

33 GFSK Ref 3 dbm RBW MHz * VBW MHz SWT 4 ms Delta [T ] -.98 db ms dbm MXH µs SGL Center.4 GHz 4 µs/ Date: 3.UG.6 :3:5 Pi/4DQPSK Ref 3 dbm RBW MHz * VBW MHz SWT 4 ms Delta [T ] -.33 db ms dbm MXH 75. µs SGL Center.4 GHz 4 µs/ Date: 3.UG.6 :7:4 8DPSK Ref 3 dbm RBW MHz * VBW MHz SWT 4 ms Delta [T ].8 db.9377 ms dbm MXH µs SGL Center.4 GHz 4 µs/ Date: 3.UG.6 :9:55 Page 33 of 6

34 6.8. Pseudorandom Frequency Hopping Sequence Test Requirement: FCC Part5 C Section 5.47 (a)() requirement: Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 5 khz or the db bandwidth of the hopping channel, whichever is greater. lternatively. Frequency hopping systems operating in the MHz band may have hopping channel carrier frequencies that are separated by 5 khz or two-thirds of the db bandwidth of the hopping channel, whichever is greater, provided the systems operate with an output power no greater than 5 mw. The system shall hop to channel frequencies that are selected at the system hopping rate from a Pseudorandom ordered list of hopping frequencies. Each frequency must be used equally on the average by each transmitter. The system receivers shall have input bandwidths that match the hopping channel bandwidths of their corresponding transmitters and shall shift frequencies in synchronization with the transmitted signals. EUT Pseudorandom Frequency Hopping Sequence The pseudorandom sequence may be generated in a nine-stage shift register whose 5th and 9th stage outputs are added in a modulo-two addition stage. nd the result is fed back to the input of the first stage. The sequence begins with the first one of 9 consecutive ones; i.e. the shift register is initialized with nine ones. Number of shift register stages: 9 Length of pseudo-random sequence: 9 - = 5 bits Longest sequence of zeros: 8 (non-inverted signal) n example of Pseudorandom Frequency Hopping Sequence as follow: Each frequency used equally on the average by each transmitter. The system receivers have input bandwidths that match the hopping channel bandwidths of their corresponding transmitters and shift frequencies in synchronization with the transmitted signals. Page 34 of 6

35 6.9. Conducted Band Edge Measurement Test Specification Test Requirement: Test Method: Limit: FCC Part5 C Section 5.47 (d) NSI C63.:3 and D-75 In any khz bandwidth outside the intentional radiation frequency band, the radio frequency power shall be at least db below the highest level of the radiated power. In addition, radiated emissions which fall in the restricted bands must also comply with the radiated emission limits. Test Setup: Test Mode: Test Procedure: Test Result: Transmitting mode with modulation. The testing follows the guidelines in Band-edge Compliance of RF Conducted Emissions of FCC Public Notice D -75 Measurement Guidelines.. Set to the maximum power setting and enable the EUT transmit continuously. 3. Set RBW = khz ( % span=mhz), VBW = 3 khz ( RBW). Band edge emissions must be at least db down from the highest emission level within the authorized band as measured with a khz RBW. The attenuation shall be 3 db instead of db when RMS conducted output power procedure is used. 4. Enable hopping function of the EUT and then repeat step and Measure and record the results in the test report. PSS Test Instruments RF Test Room Equipment Manufacturer Model Serial Number Calibration Due Spectrum nalyzer R&S FSU 54 Sep., 6 RF cable TCT RE-6 N/ Sep., 6 ntenna Connector TCT RFC- N/ Sep., 6 Note: The calibration interval of the above test instruments is months and the calibrations are traceable to international system unit (SI). Page 35 of 6

36 Test Data GFSK Modulation Test channel: Lowest channel * RBW khz * RBW khz * VBW 3 khz dbm * VBW 3 khz dbm Ref 3 dbm SWT ms GHz Ref 3 dbm SWT ms GHz MXH D. dbm MXH D. dbm D -8.9 dbm - D dbm F -7 F Start.3 GHz 9.5 MHz/ Stop.45 GHz Start.3 GHz 9.5 MHz/ Stop.45 GHz Date: 3.UG.6 :4:3 Date: 3.UG.6 ::7 Test channel: No-hopping mode Highest channel Hopping mode * RBW khz * RBW khz * VBW 3 khz -48. dbm * VBW 3 khz -5. dbm Ref 3 dbm SWT ms GHz Ref 3 dbm SWT ms GHz MXH D.68 dbm MXH D.59 dbm D -8.3 dbm - D -8.4 dbm F -7 F Start.4785 GHz.5 MHz/ Stop.5 GHz Start.4785 GHz.5 MHz/ Stop.5 GHz Date: 3.UG.6 :5:54 No-hopping mode Date: 3.UG.6 :3:47 Hopping mode Page 36 of 6

37 Pi/4DQPSK Modulation Test channel: Lowest channel * RBW khz * RBW khz * VBW 3 khz dbm * VBW 3 khz dbm Ref 3 dbm SWT ms GHz Ref 3 dbm SWT ms GHz MXH D.3 dbm MXH D.36 dbm D dbm - D dbm F -7 F Start.3 GHz 9.5 MHz/ Stop.45 GHz Start.3 GHz 9.5 MHz/ Stop.45 GHz Date: 3.UG.6 :34:36 Date: 3.UG.6 :39:6 Test channel: No-hopping mode Highest channel Hopping mode * RBW khz * RBW khz * VBW 3 khz dbm * VBW 3 khz dbm Ref 3 dbm SWT ms GHz Ref 3 dbm SWT ms GHz MXH D.87 dbm MXH D.84 dbm D -9.3 dbm - D -9.6 dbm F -7 F Start.4785 GHz.5 MHz/ Stop.5 GHz Start.4785 GHz.5 MHz/ Stop.5 GHz Date: 3.UG.6 :4: No-hopping mode Date: 3.UG.6 4:8:5 Hopping mode Page 37 of 6

38 8DPSK Modulation Test channel: Lowest channel * RBW khz * RBW khz * VBW 3 khz dbm * VBW 3 khz dbm Ref 3 dbm SWT ms GHz Ref 3 dbm SWT ms GHz MXH D.33 dbm MXH D.9 dbm D dbm - D -9.7 dbm F -7 F Start.3 GHz 9.5 MHz/ Stop.45 GHz Start.3 GHz 9.5 MHz/ Stop.45 GHz Date: 3.UG.6 4:4: Date: 3.UG.6 4:3:48 Test channel: No-hopping mode Highest channel Hopping mode * RBW khz * RBW khz * VBW 3 khz dbm * VBW 3 khz -5.9 dbm Ref 3 dbm SWT ms GHz Ref 3 dbm SWT ms GHz MXH D.89 dbm MXH D.89 dbm D -9. dbm - D -9. dbm F -7 F Start.4785 GHz.5 MHz/ Stop.5 GHz Start.4785 GHz.5 MHz/ Stop.5 GHz Date: 3.UG.6 4:37:49 No-hopping mode Date: 3.UG.6 4:45:8 Hopping mode Page 38 of 6

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