SPORTON International Inc.

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1 SPORTON International Inc. No. 52, Hwa Ya 1st Rd., Kwei-Shan Hsiang, TaoYuan Hsien, Taiwan, R.O.C. Ph: / FAX: / CE RADIO TEST REPORT Applicant s company Applicant Address Ralink Technology Corporation 5F., No.36, Taiyuan St., Jhubei City, Hsinchu County 302, Taiwan, R.O.C. Manufacturer s company Manufacturer Address Ralink Technology Corporation 5F., No.36, Taiyuan St., Jhubei City, Hsinchu County 302, Taiwan, R.O.C. Product Name Brand Name Model Name b/g/n 1T1R combo card Ralink RT3090BC4 Test Standard(s) ETSI EN V1.7.1 ( ) Test Freq. Range 2400 ~ MHz Receive Date Nov. 15, 2009 Test Date Jan. 01, 2010 Submission Type Existing Change Statement Test result included in this report is only for the Bluetooth part of the product. The test result in this report refers exclusively to the presented test model / sample. Without written approval of SPORTON International Inc., the test report shall not be reproduced except in full. The measurements and test results shown in this test report were made in accordance with the procedures and found in compliance with the limit given in ETSI EN V1.7.1 ( ). The test equipment used to perform the test is calibrated and traceable to NML/ROC. Report Format Version: 02

2 Table of Contents 1. CERTIFICATE OF COMPLIANCE SUMMARY OF THE TEST RESULT GENERAL INFORMATION Product Details Medium Access Protocol Accessories Table for Filed Antenna Table for Carrier Frequencies Table for Test Modes Table for Testing Locations Table for Supporting Units Table for Parameters of Test Software Setting Test Configurations TEST RESULT Equivalent Isotropic Radiated Power Measurement Frequency Range Measurement Transmitter Spurious Emissions Measurement Receiver Spurious Emissions Measurement LIST OF MEASURING EQUIPMENTS TEST LOCATION APPENDIX A. PHOTOGRAPHS OF EUT...A1 ~ A20 APPENDIX B. TEST PHOTOS... B1 ~ B5 APPENDIX C. ANTENNA LIST Report Format Version: 02 Page No. : i of ii

3 History of This Test Report Original Issue Date: Jan. 18, 2010 Report No.: ER9D AB No additional attachment. Additional attachment were issued as following record: Attachment No. Issue Date Description ER9D0210AB Dec. 08, 2009 Add two higher gain antennas, so all the test items were tested and recorded in the report FHSS (GFSK) 1 3 GFSK Report Format Version: 02 Page No. : ii of ii

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5 2. SUMMARY OF THE TEST RESULT Applied Standard: ETSI EN V1.7.1 ( ) Part Standard Clause Description of Test Result Under Limit Equivalent Isotropic Radiated Power Complies db Power Spectral Density Frequency Range Complies Transmitter Spurious Emissions Complies 7.97 db Receiver Spurious Emissions Complies 1.49 db Note: According to EN V1.7.1, power spectral density shall not be tested on FHSS modulation. Test Items Uncertainty Remark Equivalent Isotropic Radiated Power (Conducted) ±0.8dB Confidence levels of 95% Power Spectral Density (Conducted) ±1.0dB Confidence levels of 95% Frequency Range ± Confidence levels of 95% Spurious Emissions 30MHz~1000MHz (Radiated) ±2.6dB Confidence levels of 95% Spurious Emissions 1GHz~18GHz (Radiated) ±2.6dB Confidence levels of 95% Temperature ±0.7 Confidence levels of 95% Humidity ±3.2% Confidence levels of 95% DC / AC Power Source ±1.4% Confidence levels of 95% Report Format Version: 02 Page No. : 2 of 51

6 3. GENERAL INFORMATION 3.1. Product Details EUT is a Terminal with b/g/n and Bluetooth radio functions. Only the radio detail of Bluetooth is shown in the table below. For more detailed features description, please refer to the manufacturer s specifications or user s manual. Items Description Power Type Modulation From host system FHSS (GFSK) Data Rate (Mbps) 3 Frequency Band 2400 ~ MHz Channel Number 79 EIRP Power 9.03 dbm Carrier Frequencies Please refer to section 3.5 Antenna Please refer to section Medium Access Protocol DUT s medium access protocol has be implemented standard ensures that all stations, both radio-based network interface cards (NICs) and access points, implement access methods for sharing the air medium. The medium access protocols makes it mandatory that all stations implement the DCF, a form of carrier sense multiple access with collision avoidance (CSMA/CA). CSMA is a contention-based protocol making certain that all stations first sense the medium before transmitting. The main goal is to avoid having stations transmit at the same time, which results in collisions and corresponding retransmissions Accessories Others There are two antennas with two cores in the end side. The core brand is King core (K5B RH 9*8*5). Report Format Version: 02 Page No. : 3 of 51

7 3.4. Table for Filed Antenna Ant. Brand Model Name Antenna Type Connector Gain (dbi) Remark A JOYMAX IWX-145XRSXX-999 Dipole Antenna Reversed-SMA 3.7 TX/RX B ACON APP6P PIFA Antenna I-PEX 3.5 TX/RX Note: There are four types of EUT, the difference of each type as following description: EUT 1. Two antenna connectors with two crystals EUT 2. Two antenna connectors with one crystal EUT 3. One antenna connector with two crystals EUT 4. One antenna connector with one crystal After pre-testing, EUT 1 generated the worst test result, so it was recorded in the report. There are two sizes of EUT. One is full size (with PCB extend card), and another is half size (without PCB extend card). But their internal structures are identical. So only full size of EUT was tested and recorded in the report. All the detail antenna information, please refer to Appendix C for further information. Due to Ant. A and B mentioned above are the highest gain value among two different types, only ant A and B were tested and recorded in this test report. The EUT supports the antenna with TX/RX diversity function for WLAN and Bluetooth. When Connector 1 is WLAN function, Connector 2 must be Bluetooth function. Oppositely, if Connector 2 is WLAN function, Connector 1 must be Bluetooth function. Connector 1: TX/RX Connector 2: TX/RX Report Format Version: 02 Page No. : 4 of 51

8 3.5. Table for Carrier Frequencies Frequency Band Channel No. Frequency MHz MHz : : MHz 2400~2483.5MHz MHz MHz : : MHz MHz 3.6. Table for Test Modes Preliminary tests were performed in different data rate to find the worst radiated emission. The data rate shown in the table below is the worst-case rate with respect to the specific test item. Investigation has been done on all the possible configurations for searching the worst cases. The following table is a list of the test modes shown in this test report. Test Items Mode Data Rate Channel Antenna Equivalent Isotropic Radiated Power GFSK 3 Mbps 0/39/78 A/B Frequency Range GFSK 3 Mbps 0/78 A/B TX Spurious Emissions (30MHz~1GHz) GFSK 3 Mbps 0/78 A/B RX Spurious Emissions (30MHz~1GHz) GFSK - 0/78 A/B Transmitter Spurious Emissions (1GHz~12.75GHz) GFSK 3 Mbps 0/78 A/B Receiver Spurious Emissions (1GHz~12.75GHz) GFSK - 0/78 A/B The following test modes were performed for all tests: Mode 1. EUT 1 with Dipole Antenna Mode 2. EUT 1 with PIFA Antenna 3.7. Table for Testing Locations Test Site No. Site Category Location Test Site No. Site Category Location 05CH01-HY FAC Hwa Ya TH01-HY OVEN Room Hwa Ya Open Area Test Site (OATS); Semi Anechoic Chamber (SAC); Fully Anechoic Chamber (FAC). Please refer section 6 for Test Site Address Table for Supporting Units Support Unit Brand Model FCC ID Notebook DELL M1330 E2KWM3945ABG Report Format Version: 02 Page No. : 5 of 51

9 3.9. Table for Parameters of Test Software Setting During testing, Channel & Power Controlling Software provided by the customer was used to control the operating channel as well as the output power level. The RF output power selection is for the setting of RF output power expected by the customer and is going to be fixed on the firmware of the final end product. <For Antenna A>: Power Parameters of Bluetooth Test Software Version Bluetest Frequency 2402 MHz 2441 MHz 2480 MHz BT <For Antenna B>: Power Parameters of Bluetooth Test Software Version Bluetest Frequency 2402 MHz 2441 MHz 2480 MHz BT Report Format Version: 02 Page No. : 6 of 51

10 3.10. Test Configurations Test Mode: Mode 1 AC Main 1 ANT ANT RJ-11 DC VGA PS/2 LPT RJ-45 Notebook USB x 2 EUT POWER CABLE, 260 CM, NON-SHIELDED 2. ANT CABLE, 19 CM, SHIELDED Test Mode: Mode 2 AC Main 1 ANT ANT RJ-11 DC VGA PS/2 LPT RJ-45 Notebook USB x 2 EUT POWER CABLE, 260 CM, NON-SHIELDED 2. ANT CABLE, 22 CM, SHIELDED Report Format Version: 02 Page No. : 7 of 51

11 4. TEST RESULT 4.1. Equivalent Isotropic Radiated Power Measurement Limit The equivalent isotropic radiated power is defined as the total power of the transmitter. The equivalent isotropic radiated power shall be equal to or less than -10dBW (100 mw) e.i.r.p. This limit shall apply for any combination of power level and intended antenna assembly Measuring Instruments and Setting Please refer to section 5 of equipments list in this report. The following table is the setting of the power meter. Power Meter Parameter Filter No. Measurement time Used Average Sensor Setting Auto s ~ 26 s NRV-Z Test Procedures 1. Since a temporary antenna connector can be attached on the RF output port, so conducted measurement method was used in this case. 2. A wide band power meter with a matched thermocouple detector was used to directly measure the output power from the RF output port of the EUT in continuously transmitting mode. 3. The EIRP = A+G+10*log(1/x), where A is the power measured in (2), G is the gain of the antenna of the EUT in dbi and x is the duty cycle of the EUT in continuously transmitting mode. 4. The measurement shall be repeated at the lowest, the middle, and the highest channel of the stated frequency range. These measurements shall also be performed at normal and extreme test conditions Test Setup Layout Test Deviation There is no deviation with the original standard EUT Operation during Test The EUT was programmed to be in continuously transmitting mode. Report Format Version: 02 Page No. : 8 of 51

12 Test Result <For Antenna A>: Temperature 20 Humidity 60% Test Engineer Jacky Ho Configurations Bluetooth Test Date Dec. 30, 2009 Test Conditions Average EIRP mean power (dbm) CH 0 CH 39 CH 78 T nom ( C) 20 V nom (V) T min ( C) 0 T max ( C) 35 V max (V) V min (V) V max (V) V min (V) Max mean Power 9.03 Limits Result 20 dbm (-10 dbw) Complies <For Antenna B>: Temperature 20 Humidity 60% Test Engineer Jacky Ho Configurations Bluetooth Test Date Dec. 30, 2009 Test Conditions Average EIRP mean power (dbm) CH 0 CH 39 CH 78 T nom ( C) 20 V nom (V) T min ( C) 0 T max ( C) 35 V max (V) V min (V) V max (V) V min (V) Max mean Power 8.83 Limits Result 20 dbm (-10 dbw) Complies Report Format Version: 02 Page No. : 9 of 51

13 4.2. Frequency Range Measurement Limit The frequency range of the equipment is determined by the lowest and highest frequencies occupied by the power envelope. f H is the highest frequency of the power envelope: it is the frequency furthest above the frequency of maximum power where the output power drops below the level of -80 dbm/hz e.i.r.p. spectral power density (-30 dbm if measured in a 100 khz bandwidth). f L is the lowest frequency of the power envelope; it is the frequency furthest below the frequency of maximum power where the output power drops below the level equivalent to -80 dbm/hz e.i.r.p. spectral power density (or -30 dbm if measured in a 100 khz bandwidth). The frequency range is determined by the lowest value of f L and the highest value of f H resulting from the adjustment of the equipment to the lowest and highest operating frequencies. For all equipment, the frequency range shall lie within the band 2.4 GHz to GHz (f L > 2.4 GHz and f H < GHz) Measuring Instruments and Setting Please refer to section 5 of equipments list in this report. The following table is the setting of spectrum analyzer. Spectrum Analyzer Attenuation Span Frequency RB VB Detector Trace Setting 20~30dB 40MHz 100 khz 100 khz Average Average 50 sweeps Test Procedures 1. The transmitter output (antenna port) was connected to the spectrum analyzer. 2. Added [x] dbi of antenna gain was on the spectrum analyzer. 3. Place the spectrum analyzer in detector averaging mode with a minimum of 50 sweeps selected and activate transmitter with modulation applied. 4. Select lowest operating frequency of the equipment under test. 5. Find lowest frequency below the operating frequency at which spectral power density drops below -80 dbm/hz e.i.r.p. (-30 dbm if measured in a 100 khz bandwidth). This frequency shall be recorded (f L ). 6. Select the highest operating frequency of the equipment under test. 7. Find the highest frequency at which the spectral power density drops below-80 dbm/hz e.i.r.p. (-30 dbm if measured in a 100 khz bandwidth). This frequency shall be recorded (f H ). 8. These measurements shall also be performed at normal and extreme test conditions. Report Format Version: 02 Page No. : 10 of 51

14 Test Setup Layout Test Deviation There is no deviation with the original standard EUT Operation during Test The EUT was programmed to be in continuously transmitting mode. Report Format Version: 02 Page No. : 11 of 51

15 Test Result <For Antenna A>: Temperature 20 Humidity 60% Test Engineer Jacky Ho Configurations Bluetooth Test Date Dec. 30, 2009 Test Conditions Frequency range (MHz) f L CH 0 f H CH 78 T nom ( C) 20 V nom (V) T min ( C) 0 T max ( C) 35 V max (V) V min (V) V max (V) V min (V) Min. f L / Max. f H Band Edges Limits f L > MHz f H < MHz Result Complies <For Antenna B>: Temperature 20 Humidity 60% Test Engineer Jacky Ho Configurations Bluetooth Test Date Dec. 30, 2009 Test Conditions Frequency range (MHz) f L CH 0 f H CH 78 T nom ( C) 20 V nom (V) T min ( C) 0 T max ( C) 35 V max (V) V min (V) V max (V) V min (V) Min. f L / Max. f H Band Edges Limits f L > MHz f H < MHz Result Complies Report Format Version: 02 Page No. : 12 of 51

16 4.3. Transmitter Spurious Emissions Measurement Limit Transmitter spurious emissions are emissions outside the frequency range(s) of the equipment as defined in 2.4~2.4835GHz when the equipment is in Transmit mode and/or in Standby mode. The spurious emissions of the transmitter shall not exceed the values in tables 1 and 2 in the indicated bands. Table 1 Transmitter limits for narrowband spurious emissions Frequency Range (MHz) Transmit Mode (dbm) Standby Mode (dbm) 30~ ~ ~1900 / 5150~ Table 2 Transmitter limits for wideband spurious emissions Frequency Range (MHz) Transmit Mode (dbm/hz) Standby Mode (dbm/hz) 30~ ~ ~1900 / 5150~ Measuring Instruments and Setting Please refer to section 5 of equipments list in this report. The following table is the setting of the spectrum analyzer. Spectrum Analyzer Attenuation Start Frequency Stop Frequency Detector Span Sweep Time RB / VB Setting Auto 30 MHz MHz Positive Peak 100 MHz 1s 100 khz / 30 khz Test Procedures 1. The EUT was placed on the top of the turntable in fully anechoic chamber. 2. The test shall be made in the transmitting mode. The turntable was rotated by 360 degrees to determine the position of the highest radiation. 3. This measurement shall be repeated with the transmitter in standby mode where applicable. 4. For 30~1000MHz spurious emissions measurement, the broad band bi-log receiving antenna was placed 3 meters far away from the turntable. For 1~12.75GHz measurement, the receiving Horn antenna was placed 1.5 meters far away from the turntable. 5. The broadband receiving antenna was fixed on the same height with the EUT to find each Report Format Version: 02 Page No. : 13 of 51

17 suspected emissions of both horizontal and vertical polarization. Each recorded suspected value is indicated as Read Level (Raw). 6. Replace the EUT by standard antenna and feed the RF port by signal generator. 7. Adjust the frequency of the signal generator to the suspected emission and slightly rotate the turntable to locate the position with maximum reading. 8. Adjust the power level of the signal generator to reach the same reading with Read Level (Raw). 9. The level of the spurious emission is the power level of (8) plus the gain of the standard antenna in dbi and minus the loss of the cable used between the signal generator and the standard antenna. 10. If the level calculated in (9) is higher than limit by more than 6dB, then lower the RBW of the spectrum analyzer to 30KHz. If the level of this emission does not change by more than 2dB, then it is taken as narrowband emission, otherwise, wideband emission. 11. The measurement shall be repeated at the lowest and the highest channel of the stated frequency range Test Setup Layout Report Format Version: 02 Page No. : 14 of 51

18 Test Deviation There is no deviation with the original standard EUT Operation during Test The EUT was programmed to be in continuously transmitting mode Results of Standby Mode Spurious Emissions In the initial investigation on standby mode and receiving mode, no significant differences in spurious emissions were observed between these 2 modes. Therefore, test data for standby mode was omitted in this section. Report Format Version: 02 Page No. : 15 of 51

19 Results of Transmitter Spurious Emissions Below 1GHz <For Antenna A>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 16 of 51

20 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 17 of 51

21 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 18 of 51

22 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 19 of 51

23 <For Antenna B>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 20 of 51

24 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 21 of 51

25 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 22 of 51

26 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 23 of 51

27 Results of Transmitter Spurious Emissions Above 1GHz <For Antenna A>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 24 of 51

28 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 25 of 51

29 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 26 of 51

30 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 27 of 51

31 <For Antenna B>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 28 of 51

32 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 29 of 51

33 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 30 of 51

34 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 31 of 51

35 4.4. Receiver Spurious Emissions Measurement Limit Receiver spurious emissions are emissions at any frequency when the equipment is in received mode. The spurious emissions of the receiver shall not exceed the values in tables 1 and 2 in the indicated bands. Table 1 Receiver limits for narrowband spurious emissions Frequency Range (MHz) Limit (dbm) 30~ ~ Table 2 Receiver limits for wideband spurious emissions Frequency Range (MHz) Limit (dbm) 30~ ~ Measuring Instruments and Setting Please refer to section 5 of equipments list in this report. The following table is the setting of the Spectrum Analyzer. Spectrum Analyzer Attenuation Start Frequency Stop Frequency Detector Span Sweep Time RB / VB Setting Auto 30 MHz MHz Positive Peak 100 MHz 1s 100 khz / 30 khz Test Procedures 1. The EUT was placed on the top of the turntable in fully anechoic chamber. 2. The test shall be made in the receiving mode. The turntable was rotated by 360 degrees to determine the position of the highest radiation. 3. For 30~1000MHz spurious emissions measurement, the broad band bi-log receiving antenna was placed 3 meters far away from the turntable. For 1~12.75GHz measurement, the receiving Horn antenna was placed 1.5 meters far away from the turntable. 4. The broadband receiving antenna was fixed on the same height with the EUT to find each suspected emissions of both horizontal and vertical polarization. Each recorded suspected value is indicated as Read Level (Raw). 5. Replace the EUT by standard antenna and feed the RF port by signal generator. Report Format Version: 02 Page No. : 32 of 51

36 6. Adjust the frequency of the signal generator to the suspected emission and slightly rotate the turntable to locate the position with maximum reading. 7. Adjust the power level of the signal generator to reach the same reading with Read Level (Raw). 8. The level of the spurious emission is the power level of (7) plus the gain of the standard antenna in dbi and minus the loss of the cable used between the signal generator and the standard antenna. 9. The measurement shall be repeated at the lowest and the highest channel of the stated frequency range Test Setup Layout Test Deviation There is no deviation with the original standard EUT Operation during Test The EUT was programmed to be in continuously receiving mode. Report Format Version: 02 Page No. : 33 of 51

37 Results of Receiver Spurious Emissions Below 1GHz <For Antenna A>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 34 of 51

38 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 35 of 51

39 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 36 of 51

40 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 37 of 51

41 <For Antenna B>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 38 of 51

42 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 39 of 51

43 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 40 of 51

44 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 41 of 51

45 Results of Receiver Spurious Emissions Above 1GHz <For Antenna A>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 42 of 51

46 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 43 of 51

47 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 44 of 51

48 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 45 of 51

49 <For Antenna B>: Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 0 Horizontal Report Format Version: 02 Page No. : 46 of 51

50 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 47 of 51

51 Temperature 23 Humidity 56% Test Engineer Sam Chen Configurations Bluetooth / CH 78 Horizontal Report Format Version: 02 Page No. : 48 of 51

52 Vertical Note: The amplitude of spurious emissions that is lower by more than 6dB below the permissible value need not to be reported. Except fundamental harmonic emissions, other emissions listed have been verified as narrow band spurious emissions. Report Format Version: 02 Page No. : 49 of 51

53 5. LIST OF MEASURING EQUIPMENTS Instrument Manufacturer Model No. Serial No. Characteristics Spectrum Analyzer Calibration Date R&S FSEK khz - 40GHz Nov. 25, 2009 Amplifier Agilent 8447D 2944A kHz ~ 1.3GHz Jul. 03, 2009 Amplifier Agilent 8449B 3008A GHz ~ 26.5GHz Mar. 09, 2009 Bilog Antenna SCHAFFNER CBL6111C MHz ~ 2GHz Jul. 11, 2009 Horn Antenna COM-POWER AH GHz ~ 18GHz Jan. 16, 2009 Signal Generator R&S SMR MHz ~ 40GHz Mar. 09, 2009 RF Cable-R03m Jye Bao RG142 CB031 30MHz ~1GHz Aug. 19, 2009 RF Cable-HIGH SUHNER SUCOFLEX CH01-HY 1GHz~26.5GHz Jan. 16, 2009 Horn Antenna SCHWARZBECK BBHA9170 BBHA GHz ~ 40GHz Jan. 16, 2009 Turn Table HD DS /655/12 0 ~ 360 degree N/A Antenna Mast HD MA /569/12 1 m ~ 4 m N/A Spectrum Analyzer R&S FSU Hz ~ 26.5GHz Oct. 29, 2009 Power Meter R&S NRVS DC ~ 40GHz Jul. 31, 2009 Power Sensor R&S NRV-Z DC ~ 30GHz Aug. 05, 2009 Power Sensor R&S NRV-Z MHz ~ 6GHz Jul. 31, 2009 AC Power Source HPC HPA-500W HPA AC 0 ~ 300V Jul. 12, 2009* DC Power Source G.W. GPC-6030D C DC 1V ~ 60V Mar. 13, 2009 Temp. and Humidity Chamber Giant Force GTH S MAB N/A Aug. 06, 2009 RF CABLE-1m Jye Bao RG142 CB034-1m 20MHz ~ 7GHz Dec. 01, 2009 RF CABLE-2m Jye Bao RG142 CB035-2m 20MHz ~ 1GHz Dec. 01, 2009 Vector Signal Generator R&S SMU200A kHz ~ 6GHz Feb. 13, 2009 Signal Generator R&S SMR MHz ~ 40GHz Mar. 25, 2009 Note: Calibration Interval of instruments listed above is one year. NCR: Non-Calibration required. Remark Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Radiation (05CH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Conducted (TH01-HY) Report Format Version: 02 Page No. : 50 of 51

54 6. TEST LOCATION SHIJR ADD : 6Fl., No. 106, Sec. 1, Shintai 5th Rd., Shijr City, Taipei, Taiwan 221, R.O.C. TEL : FAX : HWA YA ADD : No. 52, Hwa Ya 1st Rd., Kwei-Shan Hsiang, Tao Yuan Hsien, Taiwan, R.O.C. TEL : FAX : LINKOU ADD : No. 30-2, Dingfu Tsuen, Linkou Shiang, Taipei, Taiwan 244, R.O.C TEL : FAX : DUNGHU ADD : No. 3, Lane 238, Kangle St., Neihu Chiu, Taipei, Taiwan 114, R.O.C. TEL : FAX : JUNGHE ADD : 7Fl., No. 758, Jungjeng Rd., Junghe City, Taipei, Taiwan 235, R.O.C. TEL : FAX : NEIHU ADD : 4Fl., No. 339, Hsin Hu 2 nd Rd., Taipei 114, Taiwan, R.O.C. TEL : FAX : JHUBEI ADD : No.8, Lane 724, Bo-ai St., Jhubei City, HsinChu County 302, Taiwan, R.O.C. TEL : FAX : Report Format Version: 02 Page No. : 51 of 51

55 APPENDIX A. Photographs of EUT SPORTON International Inc. PAGE NUMBER : A1 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

56 SPORTON International Inc. PAGE NUMBER : A2 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

57 EUT 1. Two antenna connectors with two crystals SPORTON International Inc. PAGE NUMBER : A3 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

58 SPORTON International Inc. PAGE NUMBER : A4 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

59 SPORTON International Inc. PAGE NUMBER : A5 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

60 SPORTON International Inc. PAGE NUMBER : A6 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

61 EUT 2. Two antenna connectors with one crystal SPORTON International Inc. PAGE NUMBER : A7 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

62 SPORTON International Inc. PAGE NUMBER : A8 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

63 SPORTON International Inc. PAGE NUMBER : A9 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

64 EUT 3. One antenna connector with two crystals SPORTON International Inc. PAGE NUMBER : A10 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

65 SPORTON International Inc. PAGE NUMBER : A11 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

66 SPORTON International Inc. PAGE NUMBER : A12 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

67 EUT 4. One antenna connector with one crystal SPORTON International Inc. PAGE NUMBER : A13 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

68 SPORTON International Inc. PAGE NUMBER : A14 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

69 SPORTON International Inc. PAGE NUMBER : A15 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

70 Antenna A SPORTON International Inc. PAGE NUMBER : A16 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

71 SPORTON International Inc. PAGE NUMBER : A17 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

72 Antenna B SPORTON International Inc. PAGE NUMBER : A18 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

73 SPORTON International Inc. PAGE NUMBER : A19 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

74 SPORTON International Inc. PAGE NUMBER : A20 OF A20 TEL : ISSUED DATE : Jan. 18, 2010 FAX :

75 Appendix B. Test Photos Page No. : B1 of B5

76 1. Photographs of Test Configuration Test Mode: Mode 1 FRONT VIEW REAR VIEW Page No. : B2 of B5

77 SIDE VIEW Page No. : B3 of B5

78 Test Mode: Mode 2 FRONT VIEW REAR VIEW Page No. : B4 of B5

79 SIDE VIEW Page No. : B5 of B5

80 Report No.: 9D Appendix C. Antenna List Page No. : C1 of C2

81 Report No.: 9D Table for Filed Antenna Antenna Item Note Gain with Brand P/N cable loss (Peak) 1 Dipole Main and Aux.(cable loss 0.5dB) Micon PIFA Main and Aux. for 2 connector MICHIGAN Main Antenna: 6036B Aux Antenna: 6036B Main: 2.95 Aux.: PIFA TX and RX FAVORTRON TX: W870CU K RX: W870CU K TX: 1.66 RX: PIFA TX1 and RX 2 5 PIFA TX1 and RX 2 FAVORTRON W860CU N TX1: 1.23 RX 2: 2.08 Well Green W830T SK840WMPB01+B TX1: 1.39 RX2: PIFA TX1 and RX 2 FAVORTRON TX1: W760TUN N RX2: W760TUN N TX1: 2.70 RX2: PIFA TX1 and RX 2 Well Green R130T SKR13WMPB01+A TX1: 0.92 RX2: PIFA Main and Aux. Well Green C4800_WM PIFA Main and Aux. Well Green C4500 WM PIFA Main and Aux. Well Green C4500 WM PIFA TX1 and RX 2 VSO C TX1: 1.22 RX2: PIFA Main and Aux. Well Green M Dipole Main and Aux.(cable loss 0.3dB) Joymax IWX-145XRSXX PIFA Main and Aux. ACON APP6P Page No. : C2 of C2

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