47 CFR Part 15, Subpart C Section

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1 Test Report And Application for Grant of Equipment Authorization TEST REPORT PERTAINING TO: Equipment Under Test Premium Seat Electronics Box Model Number(s) RD-FA CONFIGURATION Tested with an Intel PRO/Wireless 2915ABG Network Connection with a Centurion PIFA Type MEASUREMENTS PERFORMED IN ACCORDANCE WITH THE FOLLOWING STANDARD (S) Regulatory Standard(s) 47 CFR Part 15, Subpart C Section Test Method: ANSI C63.4: 2003 American National Standard for Methods of Measurement of Radio-Noise Emissions from Low- Voltage Electrical and Electronic Equipment in the Range of 9 khz to 40 GHz Certificate Number: PREPARED FOR: PREPARED BY: Panasonic Avionics Aegis Labs, Inc Enterprise Way 8 Rancho Circle Lake Forest, CA Lake Forest, CA Contact(s): Mr. William Wallace Agent(s): Mr. Rick Candelas Mr. Johnny Candelas Test Report #: Test Report Revision: PANAS F NONE APPENDICES REPORT BODY TOTAL PAGES A B PAGES The contents of this report shall not be reproduced except in full, without the written approval of Aegis Labs, Inc. The Panasonic Avionics logo is used for identification purposes only and is a registered trademark of Panasonic Avionics Page 1 of 12

2 TABLE OF CONTENTS SECTION TITLE PAGE COVER SHEET TABLE OF CONTENTS REGULATORY COMPLIANCE GUIDELINES Guidelines For Testing To Emissions Standards SUMMARY OF REGULATORY LIMITS ADMINISTRATIVE DATA AND TEST DESCRIPTION DESCRIPTION OF EUT CONFIGURATION EUT Description EUT Configuration List of EUT Sub-Assemblies and Host Equipment I/O Cabling Diagram and Description EMC Test Hardware and Software Measurement Equipment CONDITIONS DURING EMISSIONS MEASUREMENTS General Radiated Emissions Test Setup.. 12 A B Test Data Modifications And Recommendations APPENDICES Page 2 of 12

3 1.0 REGULATORY COMPLIANCE GUIDELINES Aegis Labs, Inc. operates as both a Nevada and California Corporation with no organizational or financial relationship with any company, institution, or private individual. Testing and engineering functions provided by Aegis Labs were furnished by RF technicians and engineers with accredited qualifications and training credentials to carry out their duties. The object of this report was to publish verifiable test results of an EUT subjected to the tests outlined in the standard listed on the cover page of this report. 1.1 Guidelines For Testing To Emissions Standards This standard for EMC emission requirements apply to electrical equipment for Information Technology Equipment (ITE). Compliance to these standards and in combination with the other standards listed in this test report can be used to demonstrate presumption of compliance with the protection requirements of the appropriate agency standard. The purpose of this standard is to specify minimum requirements for emissions regarding electromagnetic compatibility (EMC) and protect the radio frequency spectrum 9 khz. 400 GHz. from unwanted interference generated from electrical/digital systems that intentionally or unintentionally generated RF energy. The emissions standards, normative documents and/or publications were used to conduct all tests performed on the equipment herein referred to as Equipment Under Test. Page 3 of 12

4 2.0 SUMMARY OF TEST RESULTS b Mode ( MHz) EMISSIONS STANDARD FCC Part 15 Description Results Comments Section (a)(2) The minimum 6dB bandwidth shall be at least 500 khz. PASSED 2412 MHz = MHz 2437 MHz = MHz 2462 MHz = 9.92 MHz (b)(3) (b)(5) (d) (d) The maximum peak output power of the intentional radiator shall not exceed 1 watt. The intentional radiator shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the FCC guidelines per Section (b)(1). In any 100 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 20 db below that in the 100 khz bandwidth within the band that contains the highest level of the desired power. Radiated emissions, which fall in the restricted bands, as defined in Sec (a), must also comply with the radiated emission limits specified in Sec (a). All others must be < -20dBc. The peak power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8 dbm in any 3 khz band during any time interval of continuous transmission. PASSED PASSED PASSED PASSED 2412 MHz = dbm = mw 2437 MHz = dbm = mw 2462 MHz = dbm = mw Refer to SAR Test Report See Data Sheets See Data Sheets (e) PASSED 2412 MHz = db 2437 MHz = db 2462 MHz = db Radiated Emissions ( MHz) PASSED See Data Sheets Page 4 of 12

5 2.0 Summary of Test Results (Continued) g Mode ( MHz) EMISSIONS STANDARD FCC Part 15 Description Results Comments Section (a)(2) The minimum 6dB bandwidth shall be at least 500 khz. PASSED 2412 MHz = MHz 2437 MHz = MHz 2462 MHz = MHz (b)(3) (b)(5) (d) (d) The maximum peak output power of the intentional radiator shall not exceed 1 watt. The intentional radiator shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the FCC guidelines per Section (b)(1). In any 100 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 20 db below that in the 100 khz bandwidth within the band that contains the highest level of the desired power. Radiated emissions, which fall in the restricted bands, as defined in Sec (a), must also comply with the radiated emission limits specified in Sec (a). All others must be < -20dBc. The peak power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8 dbm in any 3 khz band during any time interval of continuous transmission. PASSED PASSED PASSED PASSED 2412 MHz = dbm = mw 2437 MHz = dbm = mw 2462 MHz = dbm = mw Refer to SAR Test Report See Data Sheets See Data Sheets (e) PASSED 2412 MHz = db 2437 MHz = db 2462 MHz = db Radiated Emissions ( MHz) PASSED See Data Sheets ANALYSIS AND CONCLUSIONS Based upon the measurement results we find that this equipment is within the limits of the global standards listed on the cover page of this test report. All results are based on a test of one sample. If any significant changes are made to the unit, the changes shall be evaluated and a retest may be required. Approval Signatories Test and Report Completed By: Report Approved By: Johnny Candelas Test Technician Aegis Labs, Inc. 04/30/07 Date: 05/02/07 Rick Candelas Date: Quality Assurance & EMC Lab Manager Aegis Labs, Inc. Page 5 of 12

6 3.0 ADMINISTRATIVE DATA AND TEST DESCRIPTION DEVICE TESTED: ITE Type: Premium Seat Electronics Box Model Number(s): RD-FA Serial Number: D FCC ID: U6YRD-FA3221 DATE EUT RECEIVED: April 10 th, 2007 TEST DATE(S): April 10 th 25 th, 2007 ORIGIN OF TEST SAMPLE(S): EQUIPMENT CLASS: Production EUT tested as CLASS B device RESPONSIBLE PARTY: Panasonic Avionics Enterprise Way Lake Forest, CA CLIENT CONTACT: MANUFACTURER: TEST LOCATION: Mr. William Wallace Panasonic Avionics Aegis Labs, Inc Trabuco Creek Road Trabuco Canyon, CA Open Area Test Site #1& #2 ACCREDITATION CERTIFICATE(s): PURPOSE OF TEST: UNCERTAINTY BUDGET: STATEMENT OF CALIBRATION: A2LA Certificate Number: , Valid through February 28, 2008 To demonstrate compliance with the standards as described in Sections 1.0 & 2.0 of this report. Proficiency Testing and Uncertainty Calculations for all tests indicated in this report have been conducted in accordance with ISO 17025: 2005 requirements Section 5.4.6, and 5.9. Uncertainty Budgets and Proficiency Test results available upon request. All accredited equipment calibrations were performed by Liberty Labs, Inc. and World Cal. with typical calibration uncertainty estimates derived from ISO Guide to the determination of uncertainties with a Coverage of k=2 for 95% level of confidence. Page 6 of 12

7 4.0 DESCRIPTION OF EUT CONFIGURATION 4.1 EUT Description Equipment Under Test (EUT) Trade Name: Model Number: Frequency Range: Type of Transmission: Transfer Rate: Number of Channels: Modulation Type: Type: Gain (See Note 2): Transmit Output Power: Power Supply: Number of External Test Ports Exercised: Premium Seat Electronics Box RD-FA b/g = MHz Direct Sequence Spread Spectrum 1/5.5/11 Mbps for b mode 6/36/54 Mbps for g mode b mode ( MHz) = g mode ( MHz) = 11 DBPSK, DQPSK, CCK, OFDM PIFA 5 GHz = 4.00 dbi 2.4 GHz = 3.00 dbi Please see Appendix A (Data Sheets) for actual output power. 28VDC 1 Port The PSEB is a device designed to provide video entertainment and peripheral interfaces for one seat in the premium class of an aircraft. It will be installed below the passenger seat. An abg radio module (Intel PRO/Wireless 2915ABG) will be integrated in the chassis of the PSEB and the transmitter/receiving antenna will be remotely located off to the left or right of the passenger depending on the location of the seat (using a 52 inch long coax cable) in the vicinity between the foot and knee of a passenger. The coax will connect to the radio module using an SMA Type connector but will not be readily accessible to the passenger. NOTE 1: NOTE 2: For a more detailed description, please refer to the manufacture s specifications or User s Manual. The EUT was tested with a set of Centurion s. (Refer to the antenna specifications exhibits). Page 7 of 12

8 4.2 EUT Configuration The EUT was tested with an Intel PRO/Wireless 2915ABG Network Connection (MN: WM3B2915ABG) installed in its Mini PCI slot and was connected to a Centurion multi-band antenna via its main antenna port. Data for a Centurion can be found in Appendix A. The low, middle, and high channels were tested in a, b, & g modes. Also, the EUT was tested transmitting from the Main antenna port. The EUT was placed in either continuous transmit or continuous receive mode by a program provided by the Intel Corporation (CRTU Version ). Page 8 of 12

9 4.3 List of EUT, Sub-Assemblies and Host Equipment Manufacturer Panasonic Avionics Equipment Name Premium Seat Electronics Box Equipment Under Test Model or Part Number RD-FA Serial Number D EUT Sub Assemblies Manufacturer Equipment Name Model or Part Number Serial Number Intel Corporation Intel PRO/Wireless Network Connection WM3B2915ABG N/A Centurion Main WID2452 N/A Manufacturer HOST EQUIPMENT LIST Model or Part Equipment Name Number Serial Number Linksys Wireless Router WRT55AG ver 2 MDJ104A03092 Phitek Headset N/A Phitek Headset N/A Panasonic ADB RD-FA C Resistors ISPC Load N/A N/A Generic SC Simulator HW28 Sony DVD Player 1 DVP-FX Sony DVD Player 2 DVP-FX Panasonic USB Handset 1 RDFA C Panasonic USB Handset 2 RDFA C Panasonic USB Handset 3 RDFA C Panasonic USB Handset 4 RDFA C Panasonic USB Handset 5 RDFA C Panasonic USB Handset 6 RDFA C Dell Laptop 1 PP10S CN-0C F-0182 Dell Laptop 2 PP10S CN-0C F-0172 Dell Laptop 3 PP10S CN-0C F-0112 Panasonic Laptop 4 CF-48 CF-48E4KFUKM Byte Runner Byte Runner 1 COMMI Byte Runner Byte Runner 2 COMMI Panasonic LCD Monitor U-FW C GW DC Power Supply 1 GPR-6030D D GW DC Power Supply 2 PSP-603 EE Generic Keyboard 5140 C Panasonic PSEB (Support) RDFA D NOTE: All the power cords of the above support equipment are standard and non-shielded. Page 9 of 12

10 4.4 I/O Cabling Diagram and Description DC Power Supply +28V Laptop 3 2 Spare Ethernet RS-232 converter RS485 IPSC LOAD DVD 2 2 ex2 Handset FILTER 115 VAC, 1 60Hz 3 Noise-canceling Headset PSEB RD-FA RS-232 converter RS485 J4 J6 J5 J3 J2 J1 J9 J8 2 DVD 1 2 Laptop 1 1 FILTER 115 VAC, 60Hz 3 Noise-canceling Headset ex2 Handset 3 or 10 meters Wireless 2 Aux ANTENNA Laptop 2 +28V v + - c PSEB J1 1 FILTER 115 VAC, 60Hz 1 FILTER 115 VAC, 60Hz SC SIMULATOR 2 J8 ADB J3 115 VAC, 400Hz 1 FILTER 1 FILTER (OPTIONAL) Laptop 4 WLAN Router Note: Diagram was obtained from Panasonic Avionics Corporation inches pigtail attached to cable shield USB devices are USB Handset, P/N: RD-FA LPF fcutoff = 400Hz for 115VAC/400Hz (Optional) WLAN flooding transmissions is performed with packet size of 1472 bytes per packet. EMI TEST RECEIVER Page 10 of 12

11 4.5 EMC Test Hardware and Software Measurement Equipment TEST EQUIPMENT LIST - Emissions Equipment Name Manufacturer Model Number Serial Number Calibration Due Date Maintenance Calibration Cycle Spectrum Analyzer Agilent 8565EC 3946A /24/07 1 Year - Horn EMCO /15/07 1 Year Preamp Miteq JS P /21/07 1 Year 28 Foot Coax Semflex S1L29BFS /26/07 1 Year 2.4 GHz Notch Filter Micro-Tronics BRM NCR NCR GHz Preamplified Horn Aegis Labs, Inc. H042 SLK-35-3W 02/08/08 1 Year GHz Preamplified Horn Aegis Labs, Inc. H028 GM /08/08 1 Year EMI Receiver - RF Section Hewlett Packard 8546A 3325A /26/07 1 Year EMI Receiver - RF Filter Section Hewlett Packard 85460A 3325A /26/07 1 Year - Biconical EMCO /25/07 1 Year - Log Periodic ETS /25/07 1 Year Power Meter Anritsu ML2487A 6K /30/07 1 Year Wide Bandwidth Sensor Anritsu MA2491A /30/07 1 Year 12dB Attenuator Narda /09/07 2 Years Temperature/Humidity Monitor NCR No Calibration Required. Dickson TH /13/08 1 Year Page 11 of 12

12 5.0 CONDITIONS DURING EMISSIONS MEASUREMENTS 5.1 General All measurements were made according to the procedures defined in or referred to by the standard listed on the cover page of this report. The measurements were made in the operating mode producing the largest emissions consistent with normal operation and connected to the minimum configuration of auxiliary devices. 5.2 Radiated Emissions Test Setup The Open Area Test Site (OATS) was used for radiated emission testing. The receiving (Rx) antenna(s) was placed 10m from the nearest side of the EUT facing the Rx antenna. The EUT (if floor-standing) was placed directly on the flushmounted 360 degree rotating turntable. The EUT (if table-top) was placed directly on an 80cm high non-metallic table, and the table was placed on the rotating turntable. During the initial EMI scan, all the suspect frequencies, i.e.; harmonics, broadband signals were checked with the Rx broadband antennas in both vertical and horizontal polarities. The biconical Rx, log periodic Rx, and horn Rx antennas were used from 30MHz MHz, 300MHz 1000MHz, and 1GHz 18GHz respectively. Upon completion of all harmonic and broadband measurements, the balance of any remaining frequencies was checked between 30MHz 18GHz. Any signals appearing within 20 db of the classification limit was measured. Each signal was maximized by first rotating the turntable at least 360 degrees and recording the azimuth in the data sheet. Lastly, the Rx antenna was raised and/or lowered to maximize the signal elevation. If the measured signal was obtained using the peak detector and that signal appeared within 3 db of the regulatory limit line, then the same signal was re-measured using the quasi-peak detector on the EMI receiver. Both meter readings if necessary were recorded on the data sheet. Climatic Conditions: The EUT was tested within its intended operating and climatic conditions. EUT 3m or 10m 80cm Metal Ground Plane Receiver Page 12 of 12

13 APPENDIX A TEST DATA Page 1 of 49 (Appendix A)

14 RADIATED EMISSIONS TEST RESULTS CLIENT: Panasonic Avionics DATE: 04/10/07 EUT: Premium Seat Electronics Box PROJECT NUMBER: PANAS MODEL NUMBER: RD-FA TEST ENGINEER: SERIAL NUMBER: D SITE #: 2 Tested with an Intel PRO/Wireless TEMPERATURE: 21 deg. C CONFIGURATION: 2915ABG Network Connection HUMIDITY: 50% installed in the EUT s mini PCI slot. TIME: 1:45 PM Description: Radiated RF Emissions (30 MHz 1000 MHz) Results: PASSED Horizontal and Vertical Polarizations Class B Limits Note: Radiated Emissions Measurements were performed on the EUT with the power supply set at the following voltage. 28VDC Radiated Emissions Sample Calculations Corrected Meter = Meter + F +C - D Where, F = C = Cable G = Amplifier Gain D = Distance (if applicable) Therefore, the equation for determining the Corrected Meter Limit (CML) is: CML = Specification Limit - F - C + D Page 2 of 49 (Appendix A)

15 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) SC Simulator Mode (PANAS ) Horizontal Open Field Maximized Data Azimuth (degrees) Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Page 3 of 49 (Appendix A)

16 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) SC Simulator Mode (PANAS ) Vertical Open Field Maximized Data Azimuth (degrees) Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Q Q Q Page 4 of 49 (Appendix A)

17 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) DVD 1 Mode (PANAS ) Horizontal Open Field Maximized Data Azimuth (degrees) Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Freq. (MHz) Meter Height (cm) Azimuth (degrees) Vertical Open Field Maximized Data Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Q Q Page 5 of 49 (Appendix A)

18 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) DVD 2 Mode (PANAS ) Horizontal Open Field Maximized Data Azimuth (degrees) Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Freq. (MHz) Meter Height (cm) Azimuth (degrees) Vertical Open Field Maximized Data Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Page 6 of 49 (Appendix A)

19 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) HDD Mode (PANAS ) Horizontal Open Field Maximized Data Azimuth (degrees) Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Freq. (MHz) Meter Height (cm) Azimuth (degrees) Vertical Open Field Maximized Data Quasi pk or AVG Cable Distance Corrected (dbuv/m) Limits (dbuv/m) Diff +=FAIL Page 7 of 49 (Appendix A)

20 RADIATED EMISSIONS TEST RESULTS CLIENT: Panasonic Avionics DATE: 04/11/07 EUT: Premium Seat Electronics Box PROJECT NUMBER: PANAS MODEL NUMBER: RD-FA TEST ENGINEER: /BM SERIAL NUMBER: D SITE #: 2 Tested with an Intel PRO/Wireless TEMPERATURE: 18 deg. C 2915ABG Network Connection HUMIDITY: 58% RH CONFIGURATION: installed in the EUT s mini PCI slot in b ( MHz) mode with Centurion. TIME: 11:00 AM Description: Radiated RF Emissions (1 GHz 18 GHz) Results: PASSED Horizontal and Vertical Polarizations Class B Limits Note: Radiated Emissions Measurements were performed on the EUT with power supply set at the following voltage. 28VDC Unwanted Spurious Emissions Limits Frequency Field Strength Field Strength (dbuv/m) Field Strength (dbm/mhz) (MHz) (uv/m) (Emissions in the restricted bands) (Emissions outside the restricted bands) Above (Average) (Peak) < -20 dbc Radiated Emissions Sample Calculations Corrected Meter = Meter + F +C - D Where, F = C = Cable G = Amplifier Gain D = Distance (if applicable) Therefore, the equation for determining the Corrected Meter Limit (CML) is: CML = Specification Limit - F - C + D Page 8 of 49 (Appendix A)

21 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Fundamental Measurements in b mode ( MHz) Channels 1, 6, & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A Ch A Ch A Freq. (MHz) Meter RADIATED EMISSIONS Vertical Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A Ch A Ch A NOTE: Fundamental signals measured to calculate the band edge field strengths using the Marker Delta Method. Page 9 of 49 (Appendix A)

22 Radiated Emissions Test Results (Continued) Freq. (MHz) Band Edge Field Strength Measurements in b mode ( MHz) Channels 1 & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS Meter RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A Ch A A Freq. (MHz) Meter RADIATED EMISSIONS Vertical Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A Ch A A NOTE: The Band Edge Field Strength was calculated using the Fundamental and Conducted Band Edge measurements per the Marker-Delta Method with the following formula: BE = Fm m Where BE = Band Edge Field Strength Fm = Measured Fundamental (Peak or Average) m = Measured Conducted Band Edge Delta (Peak or Average) Page 10 of 49 (Appendix A)

23 Radiated Emissions Test Results (Continued) Plots Showing Out-Of-Band Emissions (Peak RBW=VBW=1MHz; Average RBW = 1MHz, VBW = 10Hz) 04/12/ GHz band edge PEAK DELTA (PANAS b01) 04/12/ GHz band edge AVERAGE DELTA (PANAS b02) Page 11 of 49 (Appendix A)

24 Radiated Emissions Test Results (Continued) Plots Showing Out-Of-Band Emissions (Peak RBW=VBW=1MHz; Average RBW = 1MHz, VBW = 10Hz) 04/12/ GHz band edge PEAK DELTA (PANAS b03) 04/12/ GHz band edge AVERAGE DELTA (PANAS b04) Page 12 of 49 (Appendix A)

25 Spurious Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Spurious Emissions Measurements in b mode ( MHz) Channels 1, 6, & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Distance Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A Ch A A Ch A A A Freq. (MHz) Meter Height (cm) RADIATED EMISSIONS - Vertical Polarization Azimuth (degrees) Quasi pk or AVG Distance Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A Ch A A Ch A A A NOTE: These spurious emissions measurements were taken without a preamp at a distance on 1 meter to avoid saturating the preamp and analyzer because the signals were close to the fundamental frequency. The readings were extrapolated to 3 meters. Page 13 of 49 (Appendix A)

26 Spurious Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Spurious Emissions Measurements in b mode ( MHz) Channels 1, 6, & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A Ch A A A Ch A A A Page 14 of 49 (Appendix A)

27 Spurious Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) RADIATED EMISSIONS - Vertical Polarization Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A Ch A A A Ch A A A Page 15 of 49 (Appendix A)

28 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Spurious Emissions Measurements in b mode ( MHz) Channels 1, 6, & 11 Continuous RX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A A Ch A A A A Ch A A A A Page 16 of 49 (Appendix A)

29 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) RADIATED EMISSIONS - Vertical Polarization Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A A Ch A A A A Ch A A A A Page 17 of 49 (Appendix A)

30 RADIATED EMISSIONS TEST RESULTS CLIENT: Panasonic Avionics DATE: 04/11/07 EUT: Premium Seat Electronics Box PROJECT NUMBER: PANAS MODEL NUMBER: RD-FA TEST ENGINEER: /BM SERIAL NUMBER: D SITE #: 2 Tested with an Intel PRO/Wireless TEMPERATURE: 18 deg. C 2915ABG Network Connection HUMIDITY: 58% RH CONFIGURATION: installed in the EUT s mini PCI slot in g ( MHz) mode with Centurion. TIME: 11:00 AM Description: Radiated RF Emissions (1 GHz 18 GHz) Results: PASSED Horizontal and Vertical Polarizations Class B Limits Note: Radiated Emissions Measurements were performed on the EUT with power supply set at the following voltage. 28VDC Unwanted Spurious Emissions Limits Frequency Field Strength Field Strength (dbuv/m) Field Strength (dbm/mhz) (MHz) (uv/m) (Emissions in the restricted bands) (Emissions outside the restricted bands) Above (Average) (Peak) < -20 dbc Radiated Emissions Sample Calculations Corrected Meter = Meter + F +C - D Where, F = C = Cable G = Amplifier Gain D = Distance (if applicable) Therefore, the equation for determining the Corrected Meter Limit (CML) is: CML = Specification Limit - F - C + D Page 18 of 49 (Appendix A)

31 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Fundamental Measurements in g mode ( MHz) Channels 1, 6, & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A Ch A Ch A Freq. (MHz) Meter RADIATED EMISSIONS Vertical Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A Ch A Ch A NOTE: Fundamental signals measured to calculate the band edge field strengths using the Marker Delta Method. Page 19 of 49 (Appendix A)

32 Radiated Emissions Test Results (Continued) Freq. (MHz) Band Edge Field Strength Measurements in g mode ( MHz) Channels 1 & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS Meter RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A Ch A Freq. (MHz) Meter RADIATED EMISSIONS Vertical Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A Ch A NOTE: The Band Edge Field Strength was calculated using the Fundamental and Conducted Band Edge measurements per the Marker-Delta Method with the following formula: BE = Fm m Where BE = Band Edge Field Strength Fm = Measured Fundamental (Peak or Average) m = Measured Conducted Band Edge Delta (Peak or Average) Page 20 of 49 (Appendix A)

33 Radiated Emissions Test Results (Continued) Plots Showing Out-Of-Band Emissions (Peak RBW=VBW=1MHz; Average RBW = 1MHz, VBW = 10Hz) 04/12/ GHz band edge PEAK DELTA (PANAS c01) 04/12/ GHz band edge AVERAGE DELTA (PANAS c02) Page 21 of 49 (Appendix A)

34 Radiated Emissions Test Results (Continued) Plots Showing Out-Of-Band Emissions (Peak RBW=VBW=1MHz; Average RBW = 1MHz, VBW = 10Hz) 04/12/ GHz band edge PEAK DELTA (PANAS c03) 04/12/ GHz band edge AVERAGE DELTA (PANAS c04) Page 22 of 49 (Appendix A)

35 Spurious Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Spurious Emissions Measurements in g mode ( MHz) Channels 1, 6, & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Distance Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A Ch A A A Ch A A Freq. (MHz) Meter Height (cm) RADIATED EMISSIONS - Vertical Polarization Azimuth (degrees) Quasi pk or AVG Distance Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A Ch A A A Ch A A NOTE: These spurious emissions measurements were taken without a preamp at a distance on 1 meter to avoid saturating the preamp and analyzer because the signals were close to the fundamental frequency. The readings were extrapolated to 3 meters. Page 23 of 49 (Appendix A)

36 Spurious Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Spurious Emissions Measurements in g mode ( MHz) Channels 1, 6, & 11 Continuous TX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A Ch A A Ch A A Freq. (MHz) Meter Height (cm) RADIATED EMISSIONS - Vertical Polarization Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A Ch A A Ch A A Page 24 of 49 (Appendix A)

37 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Spurious Emissions Measurements in g mode ( MHz) Channels 1, 6, & 11 Continuous RX at Main port with Centurion Aegis Labs, Inc. File #: PANAS RADIATED EMISSIONS - Horizontal Polarization Height (cm) Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A A Ch A A A A Ch A A A A Page 25 of 49 (Appendix A)

38 Radiated Emissions Test Results (Continued) Freq. (MHz) Meter Height (cm) RADIATED EMISSIONS - Vertical Polarization Azimuth (degrees) Quasi pk or AVG Preamp Cable Ant. Corrected Limits Diff +=FAIL Comments Ch A A A A Ch A A A A Ch A A A A Page 26 of 49 (Appendix A)

39 PEAK TRANSMIT POWER CLIENT: Panasonic Avionics DATE: 04/11/07 EUT: Premium Seat Electronics Box PROJECT NUMBER: PANAS MODEL NUMBER: RD-FA TEST ENGINEER: SERIAL NUMBER: D SITE #: 2 Tested with an Intel PRO/Wireless TEMPERATURE: 16 deg. C CONFIGURATION: 2915ABG Network Connection HUMIDITY: 67% RH installed in the EUT s mini PCI slot. TIME: 9:15 AM Description: The maximum peak output power of the intentional radiator shall not exceed 1 watt. Results: Passed (See Data Sheet) Note: Conducted Emissions Measurements were performed on the EUT with power supply set at the following voltage. 28VDC Peak Transmit Power Limits Frequency (MHz) Output Power (W) Page 27 of 49 (Appendix A)

40 Peak Transmit Power (Continued) Mode Channel Frequency (MHz) Data Rate (Mbps) Average Power (dbm) Average Power (mw) Peak Power (dbm) Peak Power (mw) b b b b b b b b b g g g g g g g g g NOTE: The output power measurement is conducted. Page 28 of 49 (Appendix A)

41 6dB EMISSIONS BANDWIDTH CLIENT: Panasonic Avionics DATE: 04/13/07 EUT: Premium Seat Electronics Box PROJECT NUMBER: PANAS MODEL NUMBER: RD-FA TEST ENGINEER: SERIAL NUMBER: D SITE #: 2 Tested with an Intel PRO/Wireless TEMPERATURE: 21 deg. C CONFIGURATION: 2915ABG Network Connection HUMIDITY: 42% RH installed in the EUT s mini PCI slot. TIME: 11:15 AM Description: The minimum 6dB bandwidth shall be at least 500 khz. Results: See Data Sheet Note: Conducted Emissions Measurements were performed on the EUT with power supply set at the following voltage. 28VDC Page 29 of 49 (Appendix A)

42 6dB Emissions Bandwidth (Continued) b Mode 04/13/ GHz (PANAS a01) 04/13/ GHz (PANAS a02) Page 30 of 49 (Appendix A)

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