FCC Test Report (Bluetooth)

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1 Report No.: T479F Page: of 52 FCC Test Report (Bluetooth) FCC ID : 8IVOOMBOX-ONGO pplicant : Shenzhen DIVOOM Technology Co., Ltd. 3, 2nd Floor, Block, Zhengxing Building, No. 33 Taizi Road, Shekou, Nanshan District, Guangdong, China Sample Description Product Name : Bluetooth Speaker Model No. : Voombox-ongo Serial No. : N/ Trademark : DIVOOM Receipt Date : Test Date : to Issue Date : Test Standard(s) : FCC CFR Title 47 Part 5 Subpart C Section Conclusions : PSSED In the configuration tested, the EUT complied with the standards specified above. Test/Witness Engineer : pproved & uthorized : This report details the results of the testing carried out on one sample. The results contained in this test report do not relate to other samples of the same product. The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in the report. Tel: (86) Fax: (86)

2 Report No.: T479F Page: 2 of 52 Contents CONTENTS...2. GENERL INFORMTION Client Information General Description of EUT (Equipment Under Test) Block Diagram Showing The Configuration of System Tested Description of Support Units External I/O Cable Description of Test Mode Test Instruments List Laboratory Location TEST SUMMRY NTENN REQUIREMENT Standard Requirement ntenna Connected Construction CONDUCTED EMISSION TEST Test Standard and Limit Test Setup Test Procedure Test Data CONDUCTED PEK OUTPUT POWER TEST Test Standard and Limit Test Setup Test Procedure Test Data DB OCCUPY BNDWIDTH TEST Test Standard and Limit Test Setup Test Procedure Test Data CRRIER FREQUENCY SEPRTION TEST Test Standard and Limit Test Setup Test Procedure Test Data NUMBER OF HOPPING CHNNEL Test Standard and Limit Test Setup...28 Tel: (86) Fax: (86)

3 Report No.: T479F Page: 3 of Test Procedure Test Data DWELL TIME TEST Test Standard and Limit Test Setup Test Procedure Test Data...3. PSEUDORNDOM FREQUENCY HOPPING SEQUENCE Standard Requirement EUT Pseudorandom Frequency Hopping Sequence BND EDGE REQUIREMENT (CONDUCTED EMISSION METHOD) Test Standard and Limit Test Setup Test Procedure Test Data BND EDGE REQUIREMENT (RDITED EMISSION METHOD) Test Standard and Limit Test Setup Test Procedure Test Data SPURIOUS EMISSION (CONDUCTED EMISSION METHOD) Test Standard and Limit Test Setup Test Procedure Test Data SPURIOUS EMISSION (RDITED EMISSION METHOD) Test Standard and Limit Test Setup Test Procedure Test Data...47 Tel: (86) Fax: (86)

4 Report No.: T479F Page: 4 of 52. General Information.. Client Information pplicant : Shenzhen DIVOOM Technology Co., Ltd. ddress : 3, 2nd Floor, Block, Zhengxing Building, No. 33 Taizi Road, Shekou, Nanshan District, Guangdong, China Manufacturer : Shenzhen DIVOOM Technology Co., Ltd. ddress : 3, 2nd Floor, Block, Zhengxing Building, No. 33 Taizi Road, Shekou, Nanshan District, Guangdong, China.2. General Description of EUT (Equipment Under Test) Product Name : Bluetooth Speaker Models No. : Voombox-ongo Serial No. : N/ Trademark : DIVOOM Operation Frequency: 242MHz~248MHz Transfer Rate: /2/3 Mbits/s Product Description : Number of Channel: Modulation Type: 79 Channels GFSK, π/4-dqpsk, 8-DPSK Modulation Technology: FHSS ntenna Type: Integral PCB ntenna ntenna Gain: dbi Power Supply : USB DC 5V from PC, DC 3.7V from Li-ion battery Note: () For a more detailed features description, please refer to the manufacturer s specifications or the User s Manual. (2) Channel List: Channel Frequency (MHz) Channel Frequency (MHz) Channel Frequency (MHz) Tel: (86) Fax: (86)

5 Report No.: T479F Page: 5 of Remark: Channel, 39 &78 selected for GFSK, π/4-dqpsk and 8DPSK..3. Block Diagram Showing The Configuration of System Tested EUT Tel: (86) Fax: (86)

6 Report No.: T479F Page: 6 of Description of Support Units Name Model Serial Number Manufacturer Printer HP2 CNCJ4726 HP LCD Monitor G25HV CER PC SPIREM83 PTSF9C355CC3 CER Keyboard SK-9625 KBUSB58537E CER Mouse MS.2.4 M-UY-CR2 CER.5. External I/O Cable Cable Description Length(m) From/ Port To Shielding Detachable USB Cable.5 Host PC Mouse Shielding Detachable K/B Cable.5 Host PC Keyboard Shielding Detachable serial Cable.5 Host PC Printer Shielding Detachable VG Cable.5 Host PC LCD Monitor Unshielding Detachable USB &V Cable.5 EUT Host PC.6. Description of Test Mode To investigate the maximum EMI emission characteristics generates from EUT, the test system was pre-scanning tested base on the consideration of following EUT operation mode or test configuration mode which possible have effect on EMI emission level. Each of these EUT operation mode(s) or test configuration mode(s) mentioned follow was evaluated respectively. Test Mode Charging & Playing mode Transmitting mode Remark Description Keep the EUT in Charging& Playing mode Keep the EUT in Transmitting mode with worst case data rate GFSK(Mbps) is the worst case mode Remark: The sample was placed.8m 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. Tel: (86) Fax: (86)

7 Report No.: T479F Page: 7 of Test Instruments List Item Test Equipment Manufacturer Model No. Cal. Date Cal. Due date Bilog ntenna SCHWRZBECK MESS-ELEKTRONIK VULB963 Mar. 28, 24 Mar. 27, 25 2 Double -ridged SCHWRZBECK waveguide horn MESS-ELEKTRONIK BBH92D Mar. 28, 24 Mar. 27, 25 3 Coaxial Cable N/ N/ Mar. 28, 24 Mar. 27, 25 4 Coaxial Cable N/ N/ Mar. 28, 24 Mar. 27, 25 5 Coaxial cable N/ N/ Mar. 28, 24 Mar. 27, 25 6 Coaxial Cable N/ N/ Mar. 28, 24 Mar. 27, 25 7 Coaxial Cable N/ N/ Mar. 28, 24 Mar. 27, 25 8 mplifier (khz-.3ghz) HP 8447D Mar. 28, 24 Mar. 27, 25 9 mplifier Compliance Direction (GHz-8GHz) Systems Inc. PP-G8 Mar. 28, 24 Mar. 27, 25 Pre-amplifier FS33-82 Rohde & Schwarz (8-26GHz) 65-8P-44 Mar. 28, 24 Mar. 27, 25 Horn ntenna ETS-LINDGREN 36 Mar. 28, 24 Mar. 27, 25 2 Positioning Controller UC UC3 N/ N/ Spectrum 3 analyzer Rohde & Schwarz FSP Mar. 28, 24 Mar. 27, 25 9kHzGHz 4 EMI Test Receiver Rohde & Schwarz ESPI Mar. 28, 24 Mar. 27, 25 5 Loop antenna Laplace instrument RF3 Mar. 28, 24 Mar. 27, 25 Universal radio 6 communication Rhode & Schwarz CMU2 Mar. 28, 24 Mar. 27, 25 tester 7 Signal nalyzer Rohde & Schwarz FSIQ3 Mar. 28, 24 Mar. 27, 25 8 EMI Test Receiver Rohde & Schwarz ESCI ESCI Mar. 28, 24 Mar. 27, 25 9 LISN CHSE MN25D Mar. 28, 24 Mar. 27, Laboratory Location Shenzhen Certification Technology Service Co., Ltd. ddress: 2F, Building B, East rea of Nanchang Second Industrial Zone, Gushu 2nd Road, Bao an District, Shenzhen 5826, P.R. China t the time of testing, the Laboratory is accredited. It is listed in the United States of merican Federal Communications Commission (FCC), and the registration number is Tel: Fax: Tel: (86) Fax: (86)

8 Report No.: T479F Page: 8 of Test Summary Standard Section Test Item Judgment 5.23/5.247(c) ntenna Requirement PSSED 5.27 Conducted Emission PSSED 5.247(b)() Conducted Peak Output Power PSSED 5.247(a)() 2dB Occupied Bandwidth PSSED 5.247(a)() Carrier Frequencies Separation PSSED 5.247(a)() Hopping Channel Number PSSED 5.247(a)() Dwell Time PSSED 5.247(b)(4)&TCB Exclusion List (7 July 22) Pseudorandom Frequency Hopping Sequence PSSED 5.25/5.29 Spurious Emission PSSED 5.247(d) Band Edge PSSED Remark: N/ is an abbreviation for Not pplicable. Tel: (86) Fax: (86)

9 Report No.: T479F Page: 9 of ntenna Requirement 3.. Standard Requirement 3.. Test standard FCC Part5 Section 5.23 /247(c) 3..2 Requirement ) 5.23 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. 2) 5.247(c) ()(i) requirement: 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 6 dbi ntenna Connected Construction The bluetooth antenna is an integral antenna which permanently attached, and the best case gain of the antenna is dbi. It complies with the standard requirement. BT ntenna Tel: (86) Fax: (86)

10 Report No.: T479F Page: of Conducted Emission Test 4.. Test Standard and Limit 4.. Test Standard FCC Part5 Section Test Limit Frequency Conducted Emission Test Limit Maximum RF Line Voltage (db V) Quasi-peak Level verage Level 5kHz~5kHz 66 ~ ~ 46 5kHz~5MHz MHz~3MHz 6 5 Remark: () Decreasing linearly with logarithm of the frequency. (2) The lower limit shall apply at the transition frequencies Test Setup 4.3. Test Procedure ) The EUT was connected to C power source through a LISN (Line Impedance Stabilization Network) which provides a 5Ω/5µH + 5Ωlinear impedance. The power cables of all other units of the EUT were connected to a second LISN 2, which was bonded to the ground reference plane in the same way as the LISN for the unit being measured. multiple socket outlet strip was used to connect multiple power cables to a single LISN provided the rating of the LISN was not exceeded. 2) The tabletop EUT was placed upon a non-metallic table.8m above the ground reference plane. nd for floor-standing arrangement, the EUT was placed on the horizontal ground reference plane. The test was performed with a vertical ground reference plane. The rear of the EUT shall be.4 m from the vertical ground reference plane. The vertical ground reference plane was bonded to the horizontal Tel: (86) Fax: (86)

11 Report No.: T479F Page: of 52 ground reference plane. The LISN was placed.8 m from the boundary of the unit under test and bonded to a ground reference plane for LISNs mounted on top of the ground reference plane. This distance was between the closest points of the LISN and the EUT. ll other units of the EUT and associated equipment was at least.8 m from the LISN 2. The Test Receiver setup: RBW=9kHz, VBW=3kHz, Sweep time= auto 4.4. Test Data Please to see the following pages Tel: (86) Fax: (86)

12 Report No.: T479F Page: 2 of 52 Conducted Emission Test Data EUT: Bluetooth Speaker M/N: Voombox-ongo Operating Condition: Charging & Playing mode Test Site: Shielded room Operator: Jason Test Specification: C2V/6Hz Polarization: Line Note Tem:25 Hum:5% Tel: (86) Fax: (86)

13 Report No.: T479F Page: 3 of 52 Conducted Emission Test Data EUT: Bluetooth Speaker M/N: Voombox-ongo Operating Condition: Charging & Playing mode Test Site: Shielded room Operator: Jason Test Specification: C 2V/6Hz Polarization: Neutral Note Tem:25 Hum:5% Tel: (86) Fax: (86)

14 Report No.: T479F Page: 4 of Conducted Peak Output Power Test 5.. Test Standard and Limit 5.. Test Standard FCC Part5 C Section (b)(3) 5..2 Test Limit FCC Part 5 Subpart C(5.247) Test Item Peak Output Power 5.2. Test Setup Limit Hopping Channels>75 Power<W(3dBm) Other <25 mw(2dbm) Frequency Range (MHz) 24~ Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: RBW=MHz, VBW=3MHz, Detector=Peak (If 2dB BW MHz) RBW=3MHz, VBW=MHz, Detector=Peak (If 2dB BW > MHz) (3) The EUT was set to continuously transmitting in the max power during the test Test Data Tel: (86) Fax: (86)

15 Report No.: T479F Page: 5 of 52 GFSK mode Channel Number Channel Frequency Test Result Limit Judgment (MHz) (dbm) (3dBm) CH PSSED CH PSSED CH PSSED π/4-dqpsk mode Channel Number Channel Frequency Test Result Limit Judgment (MHz) (dbm) (3dBm) CH PSSED CH PSSED CH PSSED 8DPSK mode Channel Number Channel Frequency Test Result Limit Judgment (MHz) (dbm) (3dBm) CH PSSED CH PSSED CH PSSED Remark: Test plot as follows Tel: (86) Fax: (86)

16 Report No.: T479F Page: 6 of 52 Modulation mode GFSK mode RBW MHz Marker [T ] VBW 3 MHz.76 dbm Ref.5 dbm 2.42 GHz Offset.5 db PK - 242MHz -8 Center 2.42 GHz MHz/ Span MHz Date: 3.J U L.24 :43:45 RBW MHz Marker [T ] VBW 3 MHz.86 dbm Ref.5 dbm GHz Offset.5 db PK - 244MHz -8 Center 2.44 GHz MHz/ Span MHz Date: 3.J U L.24 :44:8 RBW MHz Marker [T ] VBW 3 MHz.27 dbm Ref.5 dbm GHz Offset.5 db PK - 248MHz -8 Center 2.48 GHz MHz/ Span MHz Date: 3.J U L.24 :44:42 Tel: (86) Fax: (86)

17 Report No.: T479F Page: 7 of 52 Modulation mode π/4-dqpsk RBW 3 MHz Marker [T ] VBW MHz.2 dbm Ref.5 dbm GHz Offset.5 db PK - 242MHz -8 Center 2.42 GHz.5 MHz/ Span 5 MHz Date: 3.J U L.24 :9:56 RBW 3 MHz Marker [T ] VBW MHz.25 dbm Ref.5 dbm GHz Offset.5 db PK - 244MHz -8 Center 2.44 GHz.5 MHz/ Span 5 MHz Date: 3.J U L.24 ::6 RBW 3 MHz Marker [T ] VBW MHz -.2 dbm Ref.5 dbm GHz Offset.5 db PK - 248MHz -8 Center 2.48 GHz.5 MHz/ Span 5 MHz Date: 3.J U L.24 ::44 Tel: (86) Fax: (86)

18 Report No.: T479F Page: 8 of 52 Modulation mode 8DPSK RBW 3 MHz Marker [T ] VBW MHz.6 dbm Ref.5 dbm 2.42 GHz Offset.5 db PK - 242MHz -8 Center 2.42 GHz.5 MHz/ Span 5 MHz Date: 3.J U L.24 :22:59 RBW 3 MHz Marker [T ] VBW MHz.3 dbm Ref.5 dbm 2.44 GHz Offset.5 db PK - 244MHz -8 Center 2.44 GHz.5 MHz/ Span 5 MHz Date: 3.J U L.24 :23:9 RBW 3 MHz Marker [T ] VBW MHz -.9 dbm Ref.5 dbm GHz Offset.5 db PK - 248MHz -8 Center 2.48 GHz.5 MHz/ Span 5 MHz Date: 3.J U L.24 :23:5 Tel: (86) Fax: (86)

19 Report No.: T479F Page: 9 of dB Occupy Bandwidth Test 6.. Test Standard and Limit 6.. Test Standard FCC Part5 C Section (a)() 6..2 Test Limit 6.2. Test Setup Test Item FCC Part 5 Subpart C(5.247) Limit Frequency Range (MHz) Bandwidth 2dB bandwidth 24~ Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: Bandwidth: RBW=3 khz, VBW= khz, detector= Peak 6.4. Test Data 2dB Bandwidth Channel Channel (khz) Number Frequency GFSK π/4-dqpsk 8DPSK CH 242(MHz) CH (MHz) CH (MHz) Remark: Test plot as follows Tel: (86) Fax: (86)

20 Report No.: T479F Page: 2 of 52 Modulation mode GFSK mode RBW 3 khz VBW khz Delta 2 [T ] -.3 db Ref.5 dbm 828. khz Offset.5 db Marker [T ] dbm GHz PK - D dbm 2 242MHz -8 Center 2.42 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :47:27 RBW 3 khz VBW khz Delta 2 [T ] -.6 db Ref.5 dbm 828. khz Offset.5 db Marker [T ] dbm GHz PK - D dbm 2 244MHz -8 Center 2.44 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :46:2 RBW 3 khz VBW khz Delta 2 [T ] -.7 db Ref.5 dbm 824. khz Offset.5 db Marker [T ] dbm GHz PK - D.4 dbm 2 248MHz -8 Center 2.48 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :45:4 Tel: (86) Fax: (86)

21 Report No.: T479F Page: 2 of 52 Modulation mode π/4-dqpsk RBW 3 khz VBW khz Delta 2 [T ].4 db Ref.5 dbm.2 MHz Offset.5 db Marker [T ] dbm GHz PK - D dbm 2 242MHz -8 Center 2.42 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :9:33 RBW 3 khz VBW khz Delta [T ] -.35 db Ref.5 dbm.6 MHz Offset.5 db Marker [T ] -2.4 dbm GHz PK - D dbm 244MHz -8 Center 2.44 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :8:34 RBW 3 khz VBW khz Delta 2 [T ].9 db Ref.5 dbm.6 MHz Offset.5 db Marker [T ] dbm GHz PK - D dbm 2 248MHz -8 Center 2.48 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :7:6 Tel: (86) Fax: (86)

22 Report No.: T479F Page: 22 of 52 Modulation mode 8DPSK RBW 3 khz VBW khz Delta [T ] -.4 db Ref.5 dbm.64 MHz Offset.5 db Marker [T ] dbm GHz PK - D dbm 242MHz -8 Center 2.42 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :26: RBW 3 khz VBW khz Delta 2 [T ] -.58 db Ref.5 dbm.64 MHz Offset.5 db Marker [T ] -2.7 dbm GHz PK - D -2.7 dbm 2 244MHz -8 Center 2.44 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :25:24 RBW 3 khz VBW khz Delta [T ].5 db Ref.5 dbm.68 MHz Offset.5 db Marker [T ] dbm GHz PK - D -22. dbm 248MHz -8 Center 2.48 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 :24:33 Tel: (86) Fax: (86)

23 Report No.: T479F Page: 23 of Carrier Frequency Separation Test 7.. Test Standard and Limit 7.. Test Standard FCC Part5 C Section (a)() 7..2 Test Limit 7.2. Test Setup Test Item Channel Separation FCC Part 5 Subpart C(5.247) Limit >25KHz or >two-thirds of the 2 db bandwidth (Which is greater) Frequency Range (MHz) 24~ Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: RBW= khz, VBW=3 khz, detector= Peak, Sweep Time =auto. (3) The EUT was set to the Hopping Mode for Channel Separation Test and continuously transmitting for the Test Test Data Tel: (86) Fax: (86)

24 Report No.: T479F Page: 24 of 52 GFSK mode Channel Number Channel Frequency Test Result Limit Judgment (MHz) (dbm) (3dBm) CH PSSED CH PSSED CH PSSED π/4-dqpsk mode Channel Number Channel Frequency Test Result Limit Judgment (MHz) (dbm) (3dBm) CH PSSED CH PSSED CH PSSED 8DPSK mode Channel Number Channel Frequency Test Result Limit Judgment (MHz) (dbm) (3dBm) CH PSSED CH PSSED CH PSSED Remark: Test plot as follows ccording to section 6.4 Test Mode 2dB bandwidth (khz) (worse case) Limit (khz) (Carrier Frequency Separation) GFSK π/4-dqpsk DPSK Tel: (86) Fax: (86)

25 Report No.: T479F Page: 25 of 52 Modulation mode GFSK mode RBW 3 khz Marker [T ] VBW khz 4.63 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW84. khz PK Temp [T OBW] dbm 2.46 GHz Temp 2 [T OBW] dbm GHz - T T2 242MHz Center 2.42 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:7:3 RBW 3 khz Marker [T ] VBW khz 4.77 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW836. khz PK Temp [T OBW] dbm GHz Temp 2 [T OBW] dbm GHz - T T2 244MHz Center 2.44 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:8:9 RBW 3 khz Marker [T ] VBW khz 4.54 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW84. khz PK Temp [T OBW] dbm GHz Temp 2 [T OBW] dbm GHz - T T2 248MHz Center 2.48 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:9: Tel: (86) Fax: (86)

26 Report No.: T479F Page: 26 of 52 Modulation mode π/4-dqpsk RBW 3 khz Marker [T ] VBW khz 2.23 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW.6 MHz PK Temp [T OBW] -.42 dbm GHz Temp 2 [T OBW] -.53 dbm GHz - T T2 242MHz Center 2.42 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:2:39 RBW 3 khz Marker [T ] VBW khz 2.48 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW.64 MHz PK Temp [T OBW] -2.2 dbm GHz Temp 2 [T OBW] -.9 dbm GHz - T T2 244MHz Center 2.44 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7::2 RBW 3 khz Marker [T ] VBW khz 2.56 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW.6 MHz PK Temp [T OBW] -.7 dbm GHz Temp 2 [T OBW] -. dbm GHz - T T2 248MHz Center 2.48 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:9:45 Tel: (86) Fax: (86)

27 Report No.: T479F Page: 27 of 52 Modulation mode 8DPSK RBW 3 khz Marker [T ] VBW khz 2.8 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW.4 MHz PK Temp [T OBW] -3.3 dbm GHz Temp 2 [T OBW] dbm GHz - T T2 242MHz Center 2.42 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:3:33 RBW 3 khz Marker [T ] VBW khz 2.5 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW.4 MHz PK Temp [T OBW] -3. dbm GHz Temp 2 [T OBW] dbm GHz - T T2 244MHz Center 2.44 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:4:3 RBW 3 khz Marker [T ] VBW khz 2.47 dbm Ref 2.5 dbm GHz 2 Offset.5 db OBW.4 MHz PK Temp [T OBW] dbm GHz Temp 2 [T OBW] dbm GHz - T T2 248MHz Center 2.48 GHz 2 khz/ Span 2 MHz Date: 3.J U L.24 7:5: Tel: (86) Fax: (86)

28 Report No.: T479F Page: 28 of Number of Hopping Channel 8.. Test Standard and Limit 8.. Test Standard FCC Part5 C Section (a)() 8..2 Test Limit 8.2. Test Setup Test Item FCC Part 5 Subpart C (5.247) Limit Frequency Range (MHz) Number of Hopping Channel >5 channels 24~ Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: RBW= khz, VBW=3 khz, Detector=Peak, Sweep time= uto. (3) The EUT was set to the Hopping Mode for Channel Separation Test and continuously transmitting for the Test Test Data Mode Quantity of Hopping Limit Judgment Channel GFSK, π/4-dqpsk, 8DPSK 79 >5 PSSED Tel: (86) Fax: (86)

29 Report No.: T479F Page: 29 of 52 Modulation mode GFSK mode RBW khz VBW 3 khz Marker 2 [T ] -.9 dbm Ref.5 dbm SWT ms 2.48 GHz Offset.5 db Marker [T ] -.2 dbm GHz PK - -8 Center 2.44 GHz MHz/ Span MHz Date: 3.J U L.24 :55:7 Modulation mode π/4-dqpsk RBW khz VBW 3 khz Marker 2 [T ] -. dbm Ref.5 dbm SWT ms 2.48 GHz Offset.5 db Marker [T ] -.67 dbm GHz PK - -8 Center 2.44 GHz MHz/ Span MHz Date: 3.J U L.24 :8:44 Modulation mode 8DPSK RBW khz VBW 3 khz Marker 2 [T ] -.89 dbm Ref.5 dbm SWT ms 2.48 GHz Offset.5 db Marker [T ] -2.3 dbm GHz PK - -8 Center 2.44 GHz MHz/ Span MHz Date: 3.J U L.24 :37: Tel: (86) Fax: (86)

30 Report No.: T479F Page: 3 of Dwell Time Test 9.. Test Standard and Limit 9.. Test Standard FCC Part5 C Section (a)() 9..2 Test Limit FCC Part 5 Subpart C(5.247) Section Test Item Limit 5.247(a)() Dwell time.4 sec 9.2. Test Setup 9.3. Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: RBW=MHz, VBW=MHz, Span=Hz, Detector=Peak (3) Use video trigger with the trigger level set to enable triggering only on full pulses. (4) Sweep Time is more than once pulse time. (5) Set the center frequency on any frequency would be measure and set the frequency span to zero span. (6) Measure the maximum time duration of one single pulse. (7) Set the EUT for packet transmitting. (8) Measure the maximum time duration of one single pulse. (9) The EUT was set to the Hopping Mode for Dwell Time Test 9.4. Test Data Tel: (86) Fax: (86)

31 Report No.: T479F Page: 3 of 52 For GFSK, π/4-dqpsk and 8DPSK: The test period: T=.4 Second/Channel x 79 Channel = 3.6 s The lowest channel (242MHz), middle channel (244MHz), highest channel (248MHz) as below DH time slot=.46(6/ (279))3.6=29.92ms DH3 time slot=.686(6/ (479))3.6=269.76ms DH5 time slot=3.6(6/ (679))3.6=32.7ms 2-DH time slot=.42(6/ (279))3.6=28.64ms 2-DH3 time slot=.68(6/ (479))3.6=268.8ms 2-DH5 time slot=2.928(6/ (679))3.6=32.32ms 3-DH time slot=.4(6/ (279))3.6=28.ms 3-DH3 time slot=.752(6/ (479))3.6=28.32ms 3-DH5 time slot=2.928(6/ (679))3.6=32.32ms Mode Packet Total of Dwell Period Time Limit Judgment (ms) (s) (s) DH PSS GFSK DH PSS DH PSS 2-DH PSS π/4-dqpsk 2-DH PSS 2-DH PSS 3-DH PSS 8DPSK 3-DH PSS 3-DH PSS Remark: Test plot as follows Tel: (86) Fax: (86)

32 Report No.: T479F Page: 32 of 52 Modulation mode GFSK mode RBW MHz Delta [T ] VBW MHz.54 db Ref.5 dbm SWT ms 46. µs Offset.5 db Marker [T ] dbm 432. µs SGL PK CLRWR - DH -8 Center 2.44 GHz µs/ Date: 3.J U L.24 :54:9 RBW MHz Delta [T ] VBW MHz.79 db Ref.5 dbm SWT 3 ms.686 ms Offset.5 db Marker [T ] dbm 456. µs SGL PK CLRWR - DH3-8 Center 2.44 GHz 3 µs/ Date: 3.J U L.24 :55:4 RBW MHz Delta [T ] VBW MHz -.88 db Ref.5 dbm SWT 4 ms 3.6 ms Offset.5 db Marker [T ] dbm 64. µs SGL PK CLRWR - DH5-8 Center 2.44 GHz 4 µs/ Date: 3.J U L.24 :56:3 Tel: (86) Fax: (86)

33 Report No.: T479F Page: 33 of 52 Modulation mode π/4-dqpsk RBW MHz Delta [T ] VBW MHz -4.3 db Ref.5 dbm SWT ms 42. µs Offset.5 db Marker [T ].93 dbm 356. µs SGL PK CLRWR - 2-DH -8 Center 2.44 GHz µs/ Date: 3.J U L.24 :56:34 RBW MHz Delta [T ] VBW MHz.89 db Ref.5 dbm SWT 3 ms.68 ms Offset.5 db Marker [T ].97 dbm 522. µs SGL PK CLRWR - 2-DH3-8 Center 2.44 GHz 3 µs/ Date: 3.J U L.24 :57:2 RBW MHz Delta [T ] VBW MHz.44 db Ref.5 dbm SWT 4 ms ms Offset.5 db Marker [T ] dbm 232. µs SGL PK CLRWR - 2-DH5-8 Center 2.44 GHz 4 µs/ Date: 3.J U L.24 :57:5 Tel: (86) Fax: (86)

34 Report No.: T479F Page: 34 of 52 Modulation mode 8DPSK RBW MHz Delta [T ] VBW MHz -.8 db Ref.5 dbm SWT ms 4. µs Offset.5 db Marker [T ].45 dbm 45. µs SGL PK CLRWR - 3-DH -8 Center 2.44 GHz µs/ Date: 3.J U L.24 :58:4 RBW MHz Delta [T ] VBW MHz -.73 db Ref.5 dbm SWT 3 ms.752 ms Offset.5 db Marker [T ].45 dbm 552. µs SGL PK CLRWR - 3-DH3-8 Center 2.44 GHz 3 µs/ Date: 3.J U L.24 :59:8 RBW MHz Delta [T ] VBW MHz -. db Ref.5 dbm SWT 4 ms ms Offset.5 db Marker [T ] dbm 624. µs SGL PK CLRWR - 3-DH5-8 Center 2.44 GHz 4 µs/ Date: 3.J U L.24 :59:56 Tel: (86) Fax: (86)

35 Report No.: T479F Page: 35 of 52. Pseudorandom Frequency Hopping Sequence.. Standard Requirement.. Test Standard FCC Part5 C Section (a)()..2 Requirement Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 25 khz or the 2 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 25 khz or two-thirds of the 2 db bandwidth of the hopping channel, whichever is greater, provided the systems operate with an output power no greater than 25 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..2. 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: = 5 bits Longest sequence of zeros: 8 (non-inverted signal) Linear Feedback Shift Register for Generation of the PRBS Sequence. 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. Tel: (86) Fax: (86)

36 Report No.: T479F Page: 36 of 52. Band Edge Requirement (Conducted Emission Method).. Test Standard and Limit.. Test Standard FCC Part5 C Section (d)..2 Test Limit In any khz bandwidth outside the frequency band in which the spread spectrum 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..2. Test Setup.3. Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: RBW= khz, VBW=3 khz, Detector=Peak.4. Test Data Test plot as follows Tel: (86) Fax: (86)

37 Report No.: T479F Page: 37 of 52 Modulation mode GFSK Test channel Lowest RBW khz Marker 2 [T ] RBW khz Marker 2 [T ] VBW 3 khz dbm VBW 3 khz dbm Ref.5 dbm SWT ms 2.4 GHz Ref.5 dbm SWT ms 2.4 GHz PK Offset.5 db - Marker [T ].9 dbm GHz Delta [T ] db -.34 MHz PK Offset.5 db - Marker [T ].26 dbm GHz Delta [T ] db -.2 MHz F F Start 2.3 GHz 9.4 MHz/ Stop 2.44 GHz Start 2.3 GHz 9.5 MHz/ Stop 2.45 GHz Date: 3.J U L.24 :48:22 Date: 3.J U L.24 :52:23 No-hopping mode Hopping mode Modulation mode GFSK Test channel Highest RBW khz Marker 2 [T ] RBW khz Marker 2 [T ] VBW 3 khz dbm VBW 3 khz dbm Ref.5 dbm SWT ms 2.4 GHz Ref.5 dbm SWT ms 2.4 GHz Offset.5 db Marker [T ] Offset.5 db Marker [T ] PK dbm GHz Delta [T ] db -3. MHz PK dbm 2.45 GHz Delta [T ] db MHz F F Start 2.3 GHz 9.5 MHz/ Stop 2.45 GHz Start 2.3 GHz 9.5 MHz/ Stop 2.45 GHz Date: 3.J U L.24 :2:9 Date: 3.J U L.24 :2:54 No-hopping mode Hopping mode Tel: (86) Fax: (86)

38 Report No.: T479F Page: 38 of 52 Modulation mode π/4-dqpsk Test channel Lowest RBW khz Marker 2 [T ] RBW khz Marker 2 [T ] VBW 3 khz dbm VBW 3 khz dbm Ref.5 dbm SWT ms 2.4 GHz Ref.5 dbm SWT ms 2.4 GHz Offset.5 db Marker [T ] Offset.5 db Marker [T ] PK dbm GHz Delta [T ] db.7 MHz PK dbm GHz Delta [T ] db -9.9 MHz F F Start 2.3 GHz 9.5 MHz/ Stop 2.45 GHz Start 2.3 GHz 9.5 MHz/ Stop 2.45 GHz Date: 3.J U L.24 :3:9 Date: 3.J U L.24 :3:48 No-hopping mode Hopping mode Modulation mode π/4-dqpsk Test channel Highest RBW khz Marker 2 [T ] RBW khz Marker 2 [T ] VBW 3 khz -59. dbm VBW 3 khz dbm Ref.5 dbm SWT 5 ms GHz Ref.5 dbm SWT 5 ms GHz Offset.5 db Marker [T ] Offset.5 db Marker [T ] PK dbm GHz Delta [T ] db MHz PK dbm GHz Delta [T ] db MHz F F Start GHz 3.2 MHz/ Stop 2.5 GHz Start GHz 3.2 MHz/ Stop 2.5 GHz Date: 3.J U L.24 :49:8 Date: 3.J U L.24 :5:23 No-hopping mode Hopping mode Tel: (86) Fax: (86)

39 Report No.: T479F Page: 39 of 52 Modulation mode 8DPSK Test channel Lowest RBW khz Marker 2 [T ] RBW khz Marker 3 [T ] VBW 3 khz dbm VBW 3 khz dbm Ref.5 dbm SWT 5 ms GHz Ref.5 dbm SWT 5 ms GHz Offset.5 db Marker [T ] Offset.5 db Marker [T ] PK dbm GHz Delta [T ] db MHz PK dbm GHz Delta 2 [T ] db 8.34 MHz F F Start GHz 3.2 MHz/ Stop 2.5 GHz Start GHz 3.2 MHz/ Stop 2.5 GHz Date: 3.J U L.24 ::6 Date: 3.J U L.24 :4:26 No-hopping mode Hopping mode Modulation mode 8DPSK Test channel Highest RBW khz Marker 2 [T ] RBW khz Marker 2 [T ] VBW 3 khz dbm VBW 3 khz dbm Ref.5 dbm SWT 5 ms GHz Ref.5 dbm SWT 5 ms GHz Offset.5 db Marker [T ] Offset.5 db Marker [T ] PK - -. dbm GHz Delta [T ] db MHz PK dbm GHz Delta [T ] db 4.6 MHz F F Start GHz 3.2 MHz/ Stop 2.5 GHz Start GHz 3.2 MHz/ Stop 2.5 GHz Date: 3.J U L.24 :29:32 Date: 3.J U L.24 :33:25 No-hopping mode Hopping mode Tel: (86) Fax: (86)

40 Report No.: T479F Page: 4 of Band Edge Requirement (Radiated Emission Method) 2.. Test Standard and Limit 2.. Test Standard FCC Part5 C Section 5.29 and Test Limit Radiated Emission Test Limit Frequency Limit (db Remark bove GHz 54. verage value 74. Peak value 2.2. Test Setup 2.3. Test Procedure ) The EUT was placed on the top of a rotating table.8 meters above the ground at a 3 meter semi-anechoic camber. The table was rotated 36 degrees to determine the position of the highest radiation. 2) The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top of a variable-height antenna tower. 3) The antenna height is varied from one meter to four meters above the ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set to make the measurement. 4) For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to heights from meter to 4 meters and the rotatable table was turned from degrees to 36 degrees to find the maximum reading. 5) The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. Peak Value: RBW=MHz, VBW=3MHz; verage value: RBW=MHz, VBW=Hz Tel: (86) Fax: (86)

41 Report No.: T479F Page: 4 of 52 6) If the emission level of the EUT in peak mode was db lower than the limit specified, then testing could be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have db margin would be re-tested one by one using peak, quasi-peak or average method as specified and then reported in a data sheet Test Data Remark:. During the test, pre-scan the GFSK, π/4-dqpsk, 8DPSK, GFSK mode is the worst case, and the data were shown in the report. 2. Pre-scan all kind of the place mode (X-axis, Y-axis, Z-axis), and found the Y-axis is the worst case. Test mode: GFSK Test channel: Lowest Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level H PEK V PEK H VG V VG. Test mode: GFSK Test channel: Highest Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level H PEK V PEK H VG V VG. Remark:. Final Level = Read Level + ntenna Factor + Cable Loss - Preamplifier Factor 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Tel: (86) Fax: (86)

42 Report No.: T479F Page: 42 of Spurious Emission (Conducted Emission Method) 3.. Test Standard and Limit 3.. Test Standard FCC Part5 C Section (d) 3..2 Test Limit In any khz bandwidth outside the frequency band in which the spread spectrum 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 Test Setup 3.3. Test Procedure () The EUT was directly connected to the spectrum analyzer and antenna output port as show in the block diagram above. (2) Spectrum Setting: RBW= KHz, VBW=3 KHz. Frequency range from 3MHz to 25 GHz Test Data Tel: (86) Fax: (86)

43 Report No.: T479F Page: 43 of 52 Modulation mode GFSK Frequency range 3MHz~25GHz RBW khz Delta [T ] VBW 3 khz.64 db Ref.5 dbm SWT 2.5 s GHz Offset.5 db Marker [T ].2 dbm GHz PK - Lowest -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :2:32 RBW khz Delta 2 [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s GHz Offset.5 db Marker [T ] -.95 dbm GHz PK - 2 Middle -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :4:26 RBW khz Delta [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s.8656 GHz Offset.5 db Marker [T ] -.25 dbm GHz PK - Highest -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 ::27 Tel: (86) Fax: (86)

44 Report No.: T479F Page: 44 of 52 Modulation mode π/4-dqpsk Frequency range 3MHz~25GHz RBW khz Delta 2 [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s GHz Offset.5 db Marker [T ] -.95 dbm GHz PK - 2 Lowest -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :4:44 RBW khz Delta [T ] VBW 3 khz.7 db Ref.5 dbm SWT 2.5 s.8656 GHz Offset.5 db Marker [T ] -.75 dbm GHz PK - Middle -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :5:8 RBW khz Delta [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s.8656 GHz Offset.5 db Marker [T ] -2.5 dbm GHz PK - Highest -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :6:26 Tel: (86) Fax: (86)

45 Report No.: T479F Page: 45 of 52 Modulation mode 8DPSK Frequency range 3MHz~25GHz RBW khz Delta [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s.2365 GHz Offset.5 db Marker [T ] dbm GHz PK - Lowest -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :39:48 RBW khz Delta [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s GHz Offset.5 db Marker [T ] -.82 dbm GHz PK - Middle -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :4:52 RBW khz Delta [T ] VBW 3 khz db Ref.5 dbm SWT 2.5 s.3662 GHz Offset.5 db Marker [T ] -2.4 dbm GHz PK - Highest -8 Start 3 MHz GHz/ Stop 25 GHz Date: 3.J U L.24 :42:27 Tel: (86) Fax: (86)

46 Report No.: T479F Page: 46 of Spurious Emission (Radiated Emission Method) 4.. Test Standard and Limit 4.. Test Standard FCC Part5 C Section Test Limit Frequency Limit (db V/m) (MHz) t 3m Distance 3MHz~88MHz 4 Quasi-peak 88MHz~26MHz 43.5 Quasi-peak 26MHz~96MHz 46 Quasi-peak 96MHz~MHz 54 Quasi-peak bove MHz 54 verage 74 Peak Remark:. The lower limit shall apply at the transition frequency Test Setup Below GHz bove GHz 4.3. Test Procedure ) The EUT was placed on the top of a rotating table.8 meters above the ground at a 3 meter semi-anechoic camber. The table was rotated 36 degrees to determine the position of the highest radiation. 2) The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top of a variable-height antenna tower. 3) The antenna height is varied from one meter to four meters above the ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set Tel: (86) Fax: (86)

47 Report No.: T479F Page: 47 of 52 to make the measurement. 4) For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to heights from meter to 4 meters and the rotatable table was turned from degrees to 36 degrees to find the maximum reading. 5) The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. Peak value: RBW=MHz, VBW=3MHz; verage value: RBW=MHz, VBW=Hz; QP Value: RBW=2kHz, VBW=3kHz 6) If the emission level of the EUT in peak mode was db lower than the limit specified, then testing could be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have db margin would be re-tested one by one using peak, quasi-peak or average method as specified and then reported in a data sheet Test Data Remark:. During the test, pre-scan the GFSK, π/4-dqpsk, 8-DPSK modulation, and found the GFSK modulation is the worst case. 2. Pre-scan all kind of the place mode (X-axis, Y-axis, Z-axis), and found the Y-axis is the worst case khz to 3 MHz is noise floor, so only shows the data of above 3MHz in this report. Tel: (86) Fax: (86)

48 Report No.: T479F Page: 48 of 52 Radiated Emission Test Data (Below GHz) EUT: Bluetooth Speaker M/N: Voombox-ongo Operating Condition: Test Site: Operator: Test Specification: Polarization: Bluetooth TX mode 3m chamber Jason C2V/6Hz Horizontal Note Tem:23 Hum:5% Tel: (86) Fax: (86)

49 Report No.: T479F Page: 49 of 52 Radiated Emission Test Data (Below GHz) EUT: Bluetooth Speaker M/N: Voombox-ongo Operating Condition: Test Site: Operator: Test Specification: Polarization: Bluetooth TX mode 3m chamber Jason C2V/6Hz Vertical Note Tem:23 Hum:5% Tel: (86) Fax: (86)

50 Report No.: T479F Page: 5 of 52 Radiated Emission Test Data (bove GHz) Test mode: GFSK Test channel: Lowest Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level V PEK V PEK V PEK V PEK V PEK V PEK H PEK H PEK H PEK H PEK H PEK H PEK Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level V VG V VG V VG V VG V VG V VG H VG H VG H VG H VG H VG H VG. Remark:. Final Level = Read Level + ntenna Factor + Cable Loss Preamplifier Factor 2., means this data is the too weak instrument of signal is unable to test. 3. The emission levels of other frequencies are very lower than the limit and not show in test report. Tel: (86) Fax: (86)

51 Report No.: T479F Page: 5 of 52 Radiated Emission Test Data (bove GHz) Test mode: GFSK Test channel: Middle Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level V PEK V PEK V PEK V PEK V PEK V PEK H PEK H PEK H PEK H PEK H PEK H PEK Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level V VG V VG V VG V VG V VG V VG H VG H VG H VG H VG H VG H VG. Remark:. Final Level = Read Level + ntenna Factor + Cable Loss Preamplifier Factor 2., means this data is the too weak instrument of signal is unable to test. 3. The emission levels of other frequencies are very lower than the limit and not show in test report. Tel: (86) Fax: (86)

52 Report No.: T479F Page: 52 of 52 Radiated Emission Test Data (bove GHz) Test mode: GFSK Test channel: Highest Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level V PEK V PEK V PEK V PEK V PEK V PEK H PEK H PEK H PEK H PEK H PEK H PEK Frequency (MHz) Read Level (dbuv) ntenna Factor (db/m) Cable Loss (db) Preamp Factor (db) Level (dbuv/m) Limit (dbuv/m) Over Limit (db) Pol. Level V VG V VG V VG V VG V VG V VG H VG H VG H VG H VG H VG H VG. Remark:. Final Level = Read Level + ntenna Factor + Cable Loss Preamplifier Factor 2., means this data is the too weak instrument of signal is unable to test. 3. The emission levels of other frequencies are very lower than the limit and not show in test report. Tel: (86) Fax: (86)

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