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J9CGSAF2Globalstar Analog Fixed User Terminal

Qualcomm Technologies, Inc.
Globalstar Analog Fixed User Terminal - FCC ID J9CGSAF2 - Qualcomm Technologies, Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Oct 24, 2001
Application Purpose
Original Equipment
Date of Application
Aug 15, 2001
Equipment Note
Globalstar Analog Fixed User Terminal
Frequency Range
1610.00000000 - 1624.35000000
Company
Qualcomm Technologies, Inc.
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Analog Fixed Unit User ManualGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 8-1 Exhibit 8 Analog Fixed Unit User Manual Remote Analog Fixed Phone Installation ManualGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 7-1 Exhibit 7 Remote Analog Fixed Phone Installation Manual RELEASED INTERNAL USE ONLY RELEASED INTERNAL USE ONLY Remote Antenna Fixed Phone Rework and Installation Instructions RELEASED INTERNAL USE ONLY RELEASED INTERNAL USE ONLY QUALCOMM Incorporated 5775 Morehouse Drive San Diego, CA 92121-1714 U.S.A. Copyright © 2001 QUALCOMM Incorporated. All rights reserved. Printed in the United States of America. All data and information contained in or disclosed by this document are confidential and proprietary information of QUALCOMM Incorporated and all rights therein are expressly reserved. By accepting this material the recipient agrees that this material and the information contained therein are held in confidence and in trust and will not be used, copied, reproduced in whole or in part, nor its contents revealed in any manner to others without the express written permission of QUALCOMM Incorporated. This technology was exported from the United States Government. Diversion contrary to U.S. law prohibited. QUALCOMM is a registered trademark of QUALCOMM Incorporated. Globalstar is a trademark of Loral Qualcomm Satellite Services, Inc. All other trademarks and registered trademarks are the property of their respective owners. Remote Antenna Fixed Phone Rework Instructions 80-99438-1EN Rev. - June 29, 2001 RELEASED INTERNAL USE ONLY RELEASED INTERNAL USE ONLY 80-99438-1EN Rev. -iii Contents 1. Converting a fixed phone to a remote antenna fixed phone............................ 1 2. Converting the fixed phone Radio Antenna Unit (RAU)................................... 1 2.1 Modifying the Fixed Phone Radio Antenna Unit (RAU) to use the brass plug with antenna cables....................................................................................... 1 3. Modifying your fixed phone antenna.................................................................. 9 3.1 Converting the antenna from OSX connectors to SMA connectors............. 10 3.1.1 Before you begin....................................................................................... 10 3.2 Changing connectors...................................................................................... 11 3.3 Installation cabling requirements................................................................. 14 4. Hooking up your Remote Antenna Fixed Phone............................................. 15 4.1 With quadrifilar helix antenna..................................................................... 16 4.2 With dome-shaped antenna........................................................................... 18 RELEASED INTERNAL USE ONLY RELEASED INTERNAL USE ONLY ContentsRemote Antenna Fixed Phone Rework Instructions iv80-99438-1EN Rev. - This page intentionally left blank. RELEASED INTERNAL USE ONLY RELEASED INTERNAL USE ONLY 80-99438-1EN Rev. -v Tables Table 3-1. Cable types for quadrifilar helix antenna........................................14 Table 3-2. Cable types for small dome-like antenna.........................................15 Figures Figure 1. RAU.......................................................................................................2 Figure 2. RAU with access cover removed...........................................................2 Figure 3. RAU with interface CCA removed.......................................................3 Figure 4. RAU with top housing tilted.................................................................3 Figure 5. Yellow ribbon and black and white wire disconnected........................4 Figure 6. Module exposed.....................................................................................4 Figure 7. Back housing with Tx and Rx antenna connectors.............................5 Figure 8. Threading out the antenna...................................................................6 Figure 9. Inserting the brass plug.......................................................................6 Figure 10. Brass plug connectors connected........................................................7 Figure 11. Module replaced..................................................................................7 Figure 12. Module reconnected to top housing....................................................8 Figure 13. RAU top housing replaced..................................................................8 Figure 14. Interface CCA reinstalled...................................................................9 Figure 15. RAU with access cover replaced.........................................................9 Figure 16. Wire stripped.....................................................................................10 Figure 17. Parts needed for conversion.............................................................11 Figure 18. Shrink tubing....................................................................................11 Figure 19. Ferrule...............................................................................................11 Figure 20. Insulation jacket stripped off...........................................................12 Figure 21. Ends of coax flared............................................................................12 Figure 22. Teflon stripped off.............................................................................12 Figure 23. Pin over wire.....................................................................................13 Figure 24. Female connector on and showing pin inside connector.................13 Figure 25. Crimping the ferrule.........................................................................14 Figure 26. Shrink tubing over ferrule...................…

Text truncated - open the document above for the full version.

Attestation Statements

TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone 858 546 3999 FAX 858 546 0364 Report No. 104902-03 Page 2 of 15 Rev.No 1.0 Measurement Requirements (CFR 47 Part 25, Paragraph 25.202) The measurements which follow were performed by TÜV Product Service. To the best of my knowledge these tests were conducted in accordance with the procedures outlined in Part 2 of the Commission's Rules and Regulations. The data presented below demonstrates compliance with the appropriate technical standards. _____________________________ Floyd R. Fleury EMC Manager Attestation StatementGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 3-2 Exhibit 3 Attestation Statement The equipment, QUALCOMM model Remote Analog Fixed Phone, is a satellite communications user terminal designed to operate under the requirements of FCC CFR47 Part 25. The product is designed to operate at a granted level of 4.17 Watts E.I.R.P. (2.53 Watts ERP) The equipment complies with uncontrolled RF exposure environment requirement by the IEEE STD C95.1. and FCC OET Bulletin 65, Edition 97-01 August 1997. The data, data evaluation and equipment configuration represented herein for equipment certification are a true and accurate representation of the measurements of the sample’s radio frequency interference emissions characteristics as of the dates and at the times of the test under the conditions herein specified. This applies to all tests that do not require an Open Area Test Site (OATS) to perform. TUV Product Services performed tests that required an OATS site. Equipment Tested:GSP-2400RA Globalstar Remote Analog Fixed User Terminal (RAFUT) Part 25 References:25.202 Frequency Stability 25.202 Emissions Limits Part Number:10-81390-1 Series Number:N1074FB3W Dates of Test:May 25, 2001, May 26, 2001 Test Performed by:John Forrester, Senior Engineer Senior EMC/Regulator Engineer Qualcomm Incorporated

Cover Letter(s)

Cover LettersGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 2-3 2.2 Request of Confidentiality TO: TCB, BABT Product Service 4855 Patrick Henry Drive, Building 6 Santa Clara, CA 95054 July 10, 2001 Re: Request of Confidentiality Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, the Applicant hereby requests confidential treatment of the information accompanying this Application as outlined below: All schematics/block diagrams All parts lists The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457, disclosure of this Application and all accompanying documentation will not be made before the date of the Grant for this Application. John Forrester EMC/Regulatory Engineer QUALCOMM, INC.

External Photos

External PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 9-1 Exhibit 9 External Photos 9.1 General External Photos GSP-2800RA with Quadrifilar Helix Antenna External PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 9-2 GSP-2800RA with DRA Antenna Deskset Front View RAU External PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 9-3 Rear View RAU External PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 9-4 9.2 Helical Antenna Photos/Drawings Quadrifilar Helix Antenna RELEASED 06/04/1999 INTERNAL USE ONLY External PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 9-5 9.3 DRA Antenna Photos/Drawings DRA Antenna RELEASED 06/19/2000 INTERNAL USE ONLY RELEASED 06/19/2000 INTERNAL USE ONLY RELEASED 06/19/2000 INTERNAL USE ONLY RELEASED 06/19/2000 INTERNAL USE ONLY RELEASED 06/19/2000 INTERNAL USE ONLY

ID Label/Location Info

FCC Identifier LabelGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 5-1 Exhibit 5 FCC Identifier Label The FCC Identifier label is located on the back of the RAFUT’s RAU unit. Figure 5–1. Actual Size FCC Label Figure 5–2. Zoom-in FCC Label FCC Identifier LabelGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 5-2 Label Location

Internal Photos

Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-1 Exhibit 10 Internal Photos 10.1 AFUT RF Board Drawings RF board Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-2 RF Board with Shields Removed RF Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-3 RF Board Zoom RF Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-4 RF Board Zoom RF Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-5 RF Board Zoom RF Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-6 Back of RF Board

Internal Photos

RELEASED 06/24/1999 INTERNAL USE ONLY RELEASED 06/24/1999 INTERNAL USE ONLY RELEASED 06/24/1999 INTERNAL USE ONLY RELEASED 06/24/1999 INTERNAL USE ONLY RELEASED 06/24/1999 INTERNAL USE ONLY RELEASED 06/24/1999 INTERNAL USE ONLY

Internal Photos

Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-7 10.2 AFUT Digital Board Drawings Digital Board Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-8 Digital Board Zoom Digital Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-9 Digital Board Zoom Digital Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-10 Digital Board Zoom Digital Board Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-11 Digital Board Zoom Digital Board Zoom RELEASED 03/22/1999 INTERNAL USE ONLY

Internal Photos

Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-12 10.3 AFUT Interface Board Drawings Interface Board Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-13 Interface Board Rear View RELEASED 06/13/2000 INTERNAL USE ONLY Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-14 10.4 AFUT REN Card Drawings REN Board Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-15 REN Card Zoom REN Card Zoom Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-16 REN Card Zoom REN Card Rear RELEASED 08/25/1999 INTERNAL USE ONLY Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-17 10.5 Other Photographs Junction Box Junction Box Close Up Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-18 REN Board RF Board REN Board Digital Board Internal PhotosGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 10-19 REN Board

Operational Description

Product Overview (Part 2.1033)GSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 4-1 Exhibit 4 Product Overview (Part 2.1033) 4.1 Technical Description The GSP-2800RA “Remote Antenna Fixed Phone” (RAFUT) operates in Globalstar mode only, communicating directly with overhead Globalstar satellites and via those satellites to the nearest Globalstar Gateway and through the Gateway the rest of the network. The service supports voice and data communications and provides user position location information. Physically the RAFUT is comprised of: • An externally-mounted Remote Antenna Unit (RAU) containing the radio and digital control circuitry. The RAU contains a digital, a RF, and a REN circuit board. • A Junction Box which provides surge protection at the entry point to the dwelling or facility where the AFUT is installed • A deskset (phone) which provides the telephone user interface, interconnecting cables and ground wires which tie the AFUT elements together • An antenna connected to the RAU with coaxial cable. Any standard analog telephone deskset may be used with the AFUT, although the audio quality may be less than that provided by the Qualcomm-furnished deskset. The RAFUT is essential the same product as the previously FCC certified “Globalstar Analog Fixed User Terminal”, FCC ID J9CGSAF1. The difference between the two products is that the old unit’s antenna was mechanically integrated into the RAU, where as the RAFUT antenna is connected to the RAU with coaxial cable. The coaxial cable allows the antenna to be mounted in a remote location away from the RAU. There are two available antennas for use with the system. The first antenna is the same quadrifilar helix antenna used in the original Analog Fixed User Terminal. The second antenna is a passive dielectric resonator antenna, also referred to as the “ODU” antenna or “DRA” antenna. The Remote Antenna Fixed Phone Installation Manual (see Exhibit 7 ) specifies minimum cable loss requirements (tables 3-1 and 3-2) for use with the two different antennas to insure compliance with the FCC grant transmit power level and MPE requirements.

RF Exposure Info

RF ExposureGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 13-1 Exhibit 13 RF Exposure Table 13-1 and Table 13-2 provide an analysis of the maximum permissible exposure (MPE) information for each of the RAFUT antenna configurations. The analysis was performed in reference to FCC OET Bulletin 65. The maximum EIRP power used for the MPE calculation incorporates 1 dB of calibration error and the peak gain to represent the worst case radiated transmit power. The cable losses for each configuration, per table 3-1 and 3-2 of the “Remote Antenna Fixed Phone Installation Instructions” (Exhibit 7 ), are also included in the calculation. The cable loss for the DRA antenna is 2.7 dB, and the cable loss for the helix antenna is 0.5 dB. Page 16 and Page 18 of the Remote Antenna Fixed Phone Installation Instructions (Exhibit 7 ) specifies the minimum separation distances for each antenna to insure FCC RF safety requirements are satisfied. For the DRA antenna, the minimum separation is 53cm (20.9 inches). For the helix antenna, the minimum separation distance is 43cm (17 inches). The separation distances specified in the warning statement of the manual is slightly farther then the calculated distances in order to provide an increased safety margin to the user. It should be noted that these separation distances were specified in reference to the more stringent IRPA Uncontrolled environment guidelines. RF ExposureGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 13-2 Table 13-1 Passive Dielectric Resonator Assembly (DRA) Antenna MPE Analysis MPE - Passive-Tx ODU Dielectric Resonator Assembly (DRA) Antenna References: International Radiation Protection Association (IRPA) Guidelines on Protection Against Non-Ionizing Radiation, 1991 47 CFR Ch.1 (10-1-97 Edition) Part 1, Section 1.1310 FCC OST Bulletin No. 65, 1985 Max. Antenna Power = 1585 mW = 32.00 dBm Calibration Error Tolerance = 1.0 dB Minmum Cable Loss 2.3 Max. Antenna Gain = 6.5 dBic EIRP = 5248 mW3184.41mW = 37.20 dBm EIRP35.03dBm ERP 1991 IRPA Guidelines Uncontrolled MPE = f/2000 mW/cm^2; f = frequency in MHz 1997 FCC Uncontrolled MPE = 1.0 mW/cm^2 Far-Field Power Density Calculations (in phase addition, worst case) Free SpaceP.d = EIRP/(4 * pi * r^2) 100% Ground ReflectionP.d = EIRP/( pi * r^2) Radio Broadcast TowersP.d = (1.6)^2 * EIRP/( 4 *pi * r^2) IRPA Guideline Uncontrolled MPE Safe Approach Distance Frequency (MHz) Wavelengt h (cm) Elemental Dipole Far- Field Dist. (cm) IRPA MPE (mW/cm^2) Distance to Free Space MPE (cm) Distance to 100% Ground Reflection MPE (cm) 161018.632.970.80522.7845.56 161818.542.950.80922.7245.44 1621.3518.502.940.81122.7045.40 1626.518.442.940.81322.6645.32 FCC Uncontrolled MPE Safe Approach Distance Frequency (MHz) Wavelengt h (cm) Elemental Dipole Far- Field Dist. (cm) FCC MPE (mW/cm^2) Distance to Free Space MPE (cm) Distance to 100% Ground Reflection MPE (cm) 1610 18.632.97 1.000 20.4440.87 1618 18.542.95 1.000 20.4440.87 1621.35 18.502.94 1.000 20.4440.87 1626.5 18.442.94 1.000 20.4440.87 RF ExposureGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 13-3 Table 13-2 Passive Quadrifilar Helix Antenna MPE Analysis MPE - Passive-Tx Quadrifilar Helix Antenna References: International Radiation Protection Association (IRPA) Guidelines on Protection Against Non-Ionizing Radiation, 1991 47 CFR Ch.1 (10-1-97 Edition) Part 1, Section 1.1310 FCC OST Bulletin No. 65, 1985 Max. Antenna Power = 1585 mW = 32.00 dBm Calibration Error Tolerance = 1.0 dB Minmum Cable Loss 0.5 Max. Antenna Gain = 4.0 dBic EIRP = 4467 mW2710.37mW = 36.50 dBm EIRP34.33dBm ERP 1991 IRPA Guidelines Uncontrolled MPE = f/2000 mW/cm^2; f = frequency in MHz 1997 FCC Uncontrolled MPE = 1.0 mW/cm^2 Far-Field Power Density Calculations (in phase addition, worst case) Free SpaceP.d = EIRP/(4 * pi * r^2) 100% Ground ReflectionP.d = EIRP/( pi * r^2) Radio Broadcast TowersP.d = (1.6)^2 * EIRP/( 4 *pi * r^2) IRPA Guideline Uncontrolled MPE Safe Approach Distance Frequency (MHz) Wavelengt h (cm) Elemental Dipole Far- Field Dist. (cm) IRPA MPE (mW/cm^2) Distance to Free Space MPE (cm) Distance to 100% Ground Reflection MPE (cm) 161018.632.970.80521.0142.03 161818.542.950.80920.9641.92 1621.3518.502.940.81120.9441.88 1626.518.442.940.81320.9141.81 FCC Uncontrolled MPE Safe Approach Distance Frequency (MHz) Wavelengt h (cm) Elemental Dipole Far- Field Dist. (cm) FCC MPE (mW/cm^2) Distance to Free Space MPE (cm) Distance to 100% Ground Reflection MPE (cm) 1610 18.632.97 1.000 18.8537.71 1618 18.542.95 1.000 18.8537.71 1621.35 18.502.94 1.000 18.8537.71 1626.5 18.442.94 1.000 18.8537.71

Test Report

TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone 858 546 3999 FAX 858 546 0364 Report No. 104902-03 Page 1 of 15 Rev.No 1.0 RADIATED EMISSIONS DATA FOR QUALCOMM, INC. 10300 Campus Point Drive San Diego, CA 92121 Prepared by TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone 858 546 3999 FAX 858 546 0364 Report No. 104902-03 Page 2 of 15 Rev.No 1.0 Measurement Requirements (CFR 47 Part 25, Paragraph 25.202) The measurements which follow were performed by TÜV Product Service. To the best of my knowledge these tests were conducted in accordance with the procedures outlined in Part 2 of the Commission's Rules and Regulations. The data presented below demonstrates compliance with the appropriate technical standards. _____________________________ Floyd R. Fleury EMC Manager TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone 858 546 3999 FAX 858 546 0364 Report No. 104902-03 Page 3 of 15 Rev.No 1.0 Emissions Test Conditions: SPURIOUS RADIATED EMISSIONS Roof (small open area test site) The Spurious Radiated Emissions measurements were performed using the following equipment: Test Equipment Used : Model No. Prop. No. Description Manufacturer Serial No. Cal Due Date HP8566B 407 Spectrum Analyzer Hewlett Packard 2311A02209 02/02 HP8445B 809 Automatic Preselector Hewlett Packard 1442A01127 N/A* AMF-3D-010180-35-10P 752 Amplifier 20 dB Miteq 614344 N/A* FF6548-2 781 2000 MHz High Pass Filter Sage Laboratories 004 N/A* 3115 251 Double Ridge Antenna EMCO 2495 10/01 AA-190-30.00.0 732 30 foot HFreq. Cable ( 1 - 18 GHz ) United Microwave Pro -- N/A* AA-190-06.00.0 657 High Freq. Cable United Microwave Pro -- N/A* Remarks: (*) Verified TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone 858 546 3999 FAX 858 546 0364 Report No. 104902-03 Page 4 of 15 Rev.No 1.0 FCC Part 25, Paragraph 25.202 Globalstar ODU and Globalstar AFUT Low, mid and high channels tested. All emissions (spurious and harmonics) were greater than 20 dB below the limit. Frequency range investigated from lowest RF frequency generated up to the 10th harmonic. Operating Mode: Transmit Full Power RBW and VBW = 1 MHz for peak for fundamental and harmonics. RBW and VBW = 30 kHz 20 video samples for average for fundamental. TÜV PRODUCT SERVICE 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone 858 546 3999 FAX 858 546 0364 Report No. 104902-03 Page 5 of 15 Rev.No 1.0 Testing Facilities Certificates of Approval Frequency StabilityGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 14-1 Exhibit 14 Frequency Stability The test results reported in the following 2 tables are abstracted from the conducted design verification test (DVT) results on 8 sample DVT RAU RF Boards as will be reported in the in-progress Fixed Phone RF Board Design Verification Test Plan, 80-98415-1 X3. Table 1 presents the mean values of measured frequency variation in parts per million (ppm) at cold (-30° C), ambient, and hot (60° C) temperatures. Table 2 presents the minimum, maximum , and mean values over all temperatures for the 7 boards tested. Test Equipment EquipmentSerial NumberCal DateCal Due Leader DC Power Supply DE14268September 14, 2000September 14, 2001 HP 8593EM Spectrum Analyzer 3412A00107February 1, 2001February 12, 2002 Table 1. Mean Variation in TX Frequency with Temperature Delta -30 CAmbient60 CSpec.Amb. To ColdAmb. To Hot TX ppm1.180.310.365.000.870.04 Table 2. Variation Range for TX Frequency over Temperature Range Data for Hot, Cold, AmbientTestDesign Min.Max.MeanLimitStd. Dev.Cpk TX ppm-0.492.300.655.000.781.9 Statistical Manufacturing MarginCpk = (Average - spec. Limit) / 3*Sigma Value

Test Report

Conducted Test Data DRA AntennaGSP-2800RA FCC Part 25 Application FCC ID: J9CGSAF2 80-99444-1 X1QUALCOMM ProprietaryPage 16-1 Exhibit 16 Conducted Test Data DRA Antenna Globalstar Compliance Lab Compliance Lab Data Packet Customer Name Qualcomm Test Title RAFP Conducted Emissions with ODU antenna gains Test Type Conducted UT Name QC-AFUT UT Serial Number N1074FB3W UT Model Number GSP-2400 AFUT UT HW Version 10-81390-15 UT SW Version 5.3.0.0.1.A UT Test Voltage Low and High UT Test Current Limit 4.00A UTDM Version 8.0 Anritsu SW Version R32.2 Test Station HW Version 1.0 Test Station SW Version 1.0 Operator Name bthompson Document Number 80-XXXXX-1 Rev. X_ Document Title UT for MES used on the Globalstar System File Name QC-AFUT_N1074FB3W_05292001100913.mdb Test Start Time 3:04:30 PM Friday, May 25, 2001 Test Stop Time 10:09:13 AM Tuesday, May 29, 2001 Monday, June 04, 2001Page 1 of 1 Summary of Measured Power for DRA Antenna 36.37dBm EIRP34.20dBm ERP 6.37dBW EIRP4.20dBW ERP Maximum Measured EIRP = 4.34W EIRP2.63W ERP Measured value taken from the table on the next page of the conducted emissions document. The conducted emission data incorporates the antenna gain and cable loss to provide an EIRP power value. Time Test Name Test #Test Description Fwd Chnl Rev Chnl Low Actual High Units Status Temp Volts UT for MES used on the Globalstar System RAFP Conducted Emissions with ODU antenna gains 5/25/01 4:01:08 PM Maximum RF Output Power Power Meter MPS 3.4.5 Min Averaged Power 63 250 3 1.3650723 9.9 dBW/1.23MHz 25.00 12.00 V *C 5/25/01 6:12:16 PM Maximum RF Output Power Power Meter MPS 3.4.5 Min Averaged Power 63 250 3 1.3429726 9.9 dBW/1.23MHz 25.00 16.00 V *C 5/25/01 9:10:13 PM Maximum RF Output Power Power Meter MPS 3.4.5 Min Averaged Power 63 332 0 -1.573363 9.9 dBW/1.23MHz 25.00 9.00 V *C 5/25/01 4:45:17 PM Maximum RF Output Power Power Meter MPS 3.4.5 Min Averaged Power 63 332 0 -1.523063 9.9 dBW/1.23MHz 25.00 12.00 V *C 5/25/01 6:57:17 PM Maximum RF Output Power Power Meter MPS 3.4.5 Min Averaged Power 63 332 0 -1.533463 9.9 dBW/1.23MHz 25.00 16.00 V *C 5/25/01 7:45:30 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 4 0 5.8786061 9.9 dBW/1.23MHz 25.00 9.00 V *C 5/25/01 3:15:44 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 4 0 5.9299068 9.9 dBW/1.23MHz 25.0012.00 V *C 5/25/01 5:33:49 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 4 0 5.8709060 9.9 dBW/1.23MHz 25.0016.00 V *C 5/25/01 8:24:52 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 250 0 6.3210728 9.9 dBW/1.23MHz 25.00 9.00 V *C 5/25/01 4:01:08 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 250 0 6.3650723 9.9 dBW/1.23MHz 25.0012.00 V *C 5/25/01 6:12:16 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 250 0 6.3429726 9.9 dBW/1.23MHz 25.0016.00 V *C 5/25/01 9:10:13 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 332 -3 3.4266374 9.9 dBW/1.23MHz 25.00 9.00 V *C 5/25/01 4:45:17 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 332 -3 3.4769369 9.9 dBW/1.23MHz 25.0012.00 V *C 5/25/01 6:57:17 PM Maximum RF Output Power Power Meter MPS 3.4.5 Upper Limit 63 332 -3 3.4665366 9.9 dBW/1.23MHz 25.0016.00 V *C 5/25/01 7:45:09 PM Minimum RF Output Power FSEM 20 MPS 3.4.6 Upper Limit 63 4 -30 -22.41772 -20 dBW/1.23MHz 25.00 9.00 V *C Page 52 of 140 N1074FB3W 10-81390-15 5.3.0.0.1.A Software: Hardware Serial #: 3:04:30 PM Friday, May 25, 2001 80-XXXXX-1 Rev. X_ QUALCOMM Proprietary Occupied Bandwidth Test Equipment EquipmentSerial NumberCal DateCal Due Leader DC Power Supply DE14268September 14, 2000September 14, 2001 HP 8593EM Spectrum Analyzer 3412A00107February 1, 2001February 12, 2002 Measured External attenuation = 21.2 dB (cable loss, 10dB attenuator, directional coupler) Channel 1 Occupied Bandwidth Channel 7 Occupied Bandwidth Channel 9 Occupied Bandwidth Plot NumberPlotTitle UT for MES used on the Globalstar System Emissions with ODU antenna gains 129Channel# 4 @25.00*C, 12.00V: FCC Out-of-band Emissions: 14200.00MHz to 14700.00MHz 130Channel# 4 @25.00*C, 12.00V: FCC Out-of-band Emissions: 14700.00MHz to 15200.00MHz 131Channel# 4 @25.00*C, 12.00V: FCC Out-of-band Emissions: 15200.00MHz to 15700.00MHz 132Channel# 4 @25.00*C, 12.00V: FCC Out-of-band Emissions: 15700.00MHz to 16200.00MHz 133Channel# 4 @25.00*C, 12.00V: FCC Out-of-band Emissions: 16200.00MHz to 16500.00MHz 278Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1.00MHz to 10.00MHz 279Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 10.00MHz to 30.00MHz 280Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 30.00MHz to 1000.00MHz 281Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1000.00MHz to 1185.00MHz 282Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1185.00MHz to 1370.00MHz 283Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1370.00MHz to 1559.00MHz 284Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1559.00MHz to 1580.42MHz 285Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1580.42MHz to 1605.00MHz 286Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1559.00MHz to 1580.42MHz 287Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1580.42MHz to 1605.00MHz 288Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1605.00MHz to 1607.54MHz 289Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1607.54MHz to 1609.39MHz 290Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1609.39MHz to 1610.00MHz 291Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1621.35MHz to 1621.96MHz 292Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1621.96MHz to 1623.81MHz 293Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 1623.81MHz to 1630.50MHz 294Channel# 250 @25.00*C, 12.00V: FCC Out-of-band Emissions: 163…

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Contact Information

Applicant

Paul Guckian(Vice President, Regulatory Engineering)
[email protected]858-651-1547Fax: 858-651-1547

Test Firm

TUV AmericaJames Owen
[email protected]858-678-1435Fax: 858-546-0364

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
2251.61 GHz - 1.62 GHz2.06 W1M25G1W10 ppm
Confidentiality
Long Term
Grant Notes
Reissued by FCC

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