Report On. FCC and Industry Canada Testing of the Inmarsat Global Ltd IsatPhone Pro GMR2+ Satellite Phone COMMERCIAL-IN-CONFIDENCE

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1 Report On FCC and Industry Canada Testing of the Inmarsat Global Ltd IsatPhone Pro GMR2+ Satellite Phone FCC ID: YCTISATPHONE IC ID: 8944A-ISATPHONE Document Report 07 Issue 1 June 2010

2 TUV Product Service Ltd, Octagon House, Concorde Way, Segensworth North, Fareham, Hampshire, United Kingdom, PO15 5RL Tel: +44 (0) Website: REPORT ON FCC and Industry Canada Testing of the Inmarsat Global Ltd IsatPhone Pro GMR2+ Satellite Phone Document Report 07 Issue 1 June 2010 PREPARED FOR Inmarsat Global Ltd 99 City Road London EC1Y 1AX PREPARED BY N Bennett Senior Administrator APPROVED BY M Jenkins Authorised Signatory DATED 11 June 2010 ENGINEERING STATEMENT The measurements shown in this report were made in accordance with the procedures described on test pages. All reported testing was carried out on a sample equipment to demonstrate limited compliance with FCC CFR 47: Part 25, Part 2 and RSS-170. The sample tested was found to comply with the requirements defined in the applied rules. Test Engineer(s); M P Hardy S Bennett S Hartley A Guy G Lawler J Holcombe Document Report 07 Issue 1 Page 1 of 130

3 CONTENTS Section Page No 1 REPORT SUMMARY Introduction Brief Summary of Results Declaration of Build Status Product Information Test Conditions Deviations From the Standard Modification Record TEST DETAILS Spurious Emissions (Radiated) EIRP Peak Power Spurious Emissions (Conducted) Spurious Emissions (Conducted) Spurious Emissions (Conducted) Spurious Emissions Emission Mask Emission Mask Occupied Bandwidth Frequency Tolerance / Frequency Stability Power and Antenna Height Limits Modulation Characteristics TEST EQUIPMENT USED Test Equipment Used Measurement Uncertainty ACCREDITATION, DISCLAIMERS AND COPYRIGHT Accreditation, Disclaimers and Copyright Document Report 07 Issue 1 Page 2 of 130

4 SECTION 1 REPORT SUMMARY FCC and Industry Canada Testing of the Inmarsat Global Ltd IsatPhone Pro GMR2+ Satellite Phone Document Report 07 Issue 1 Page 3 of 130

5 1.1 INTRODUCTION The information contained in this report is intended to show verification of the Inmarsat Global Ltd, IsatPhone Pro GMR2+ Satellite Phone to the requirements of FCC CFR 47 Part 25 and Part 2 and RSS-170. Objective Manufacturer Model Number(s) To perform FCC and Industry Canada Testing to determine the Equipment Under Test's (EUT s) compliance with the Test Specification, for the series of tests carried out. Inmarsat Global Ltd IsatPhone Pro GMR2+ Satellite Phone Serial Number(s) IMEI: IMEI: IMEI: IMEI: Software Version V0.3.9_P6 Hardware Version 0321 Number of Samples Tested 4 Test Specification/Issue/Date FCC CFR 47 Part 25: 2009 FCC CFR 47 Part 2: 2009 RSS-170: Issue 1: 1999 Incoming Release Date Disposal Reference Number Date Order Number Date Declaration of Build Status 02 June 2010 Held Pending Disposal Not Applicable Not Applicable March 2010 Start of Test 26 April 2010 Finish of Test 03 June 2010 Name of Engineer(s) M P Hardy S Bennett S Hartley A Guy G Lawler J Holcombe Related Document(s) ANSI C63.4: 2003 Document Report 07 Issue 1 Page 4 of 130

6 1.2 BRIEF SUMMARY OF RESULTS A brief summary of results for each configuration, in accordance with FCC CFR 47 Part 25 and Part 2 and RSS-170 is shown below. Configuration 1 Mobile Handset + SHF Section 2.1 Spec Clause FCC Test Description Mode Mod State Result Base Standard IC Part 25 Part Annex B: B3 Spurious Emissions (Radiated) Carrier On 0 Pass ANSI C63.4 (f)(3) Annex B: B1 EIRP Peak Power Carrier On 0 Pass ANSI C (f)(3) - - Spurious Emissions (Conducted) Carrier On 0 Pass ANSI C (h) - - Spurious Emissions (Conducted) Carrier On 0 Pass ANSI C (i) - - Spurious Emissions (Conducted) Carrier On N/A Annex B: B2 Spurious Emissions Carrier On 0 Pass ANSI C Annex B: B2 Emission Mask Carrier On 0 Pass ANSI C (f)(1)(2) Emission Mask Carrier On 0 Pass ANSI C Occupied Bandwidth Carrier On 0 Pass ANSI C (d) Annex B: B5 Frequency Tolerance / Frequency Stability Carrier On 0 Pass ANSI C Annex B: B1 Power and Antenna Height Limits Carrier On 0 Pass ANSI C Modulation Characteristics Carrier On 0 Pass Document Report 07 Issue 1 Page 5 of 130

7 Configuration 2 - Mobile Handset + AC Charger + SHF Section 2.1 Spec Clause FCC Test Description Mode Mod State Result Base Standard IC Part 25 Part Annex B: B3 Spurious Emissions (Radiated) Carrier On 0 Pass ANSI C63.4 (f)(3) Annex B: B1 EIRP Peak Power Carrier On 0 Pass ANSI C (f)(3) - - Spurious Emissions (Conducted) Carrier On N/A ANSI C (h) - - Spurious Emissions (Conducted) Carrier On N/A (i) - - Spurious Emissions (Conducted) Carrier On 0 Pass ANSI C Annex B: B2 Spurious Emissions Carrier On N/A ANSI C Annex B: B2 Emission Mask Carrier On N/A ANSI C (f)(1)(2) Emission Mask Carrier On N/A ANSI C Occupied Bandwidth Carrier On N/A ANSI C (d) Annex B: B5 Frequency Tolerance / Frequency Stability Carrier On N/A ANSI C Annex B: B1 Power and Antenna Height Limits Carrier On N/A ANSI C Modulation Characteristics Carrier On N/A Document Report 07 Issue 1 Page 6 of 130

8 Configuration 3 Mobile Handset + USB + SHF Section 2.1 Spec Clause FCC Test Description Mode Mod State Result Base Standard IC Part 25 Part Annex B: B3 Spurious Emissions (Radiated) Carrier On 0 Pass ANSI C63.4 (f)(3) Annex B: B1 EIRP Peak Power Carrier On 0 Pass ANSI C (f)(3) - - Spurious Emissions (Conducted) Carrier On N/A ANSI C (h) - - Spurious Emissions (Conducted) Carrier On N/A (i) - - Spurious Emissions (Conducted) Carrier On N/A - - Annex B: B2 Spurious Emissions Carrier On N/A ANSI C Annex B: B2 Emission Mask Carrier On N/A ANSI C (f)(1)(2) Emission Mask Carrier On N/A ANSI C Occupied Bandwidth Carrier On N/A ANSI C (d) Annex B: B5 Frequency Tolerance / Frequency Stability Carrier On N/A ANSI C Annex B: B1 Power and Antenna Height Limits Carrier On N/A ANSI C Modulation Characteristics Carrier On N/A Document Report 07 Issue 1 Page 7 of 130

9 Configuration 4 - Mobile Handset + DC Charger Section 2.1 Spec Clause FCC Test Description Mode Mod State Result Base Standard IC Part 25 Part Annex B: B3 Spurious Emissions (Radiated) Carrier On 0 Pass ANSI C63.4 (f)(3) Annex B: B1 EIRP Peak Power Carrier On 0 Pass ANSI C (f)(3) - - Spurious Emissions (Conducted) Carrier On N/A ANSI C (h) - - Spurious Emissions (Conducted) Carrier On N/A (i) - - Spurious Emissions (Conducted) Carrier On N/A - - Annex B: B2 Spurious Emissions Carrier On N/A ANSI C Annex B: B2 Emission Mask Carrier On N/A ANSI C (f)(1)(2) Emission Mask Carrier On N/A ANSI C Occupied Bandwidth Carrier On N/A ANSI C (d) Annex B: B5 Frequency Tolerance / Frequency Stability Carrier On N/A ANSI C Annex B: B1 Power and Antenna Height Limits Carrier On N/A ANSI C63.4 N/A Not Applicable Modulation Characteristics Carrier On N/A Document Report 07 Issue 1 Page 8 of 130

10 1.3 DECLARATION OF BUILD STATUS MAIN EUT MANUFACTURING DESCRIPTION IsatPhone Pro GMR2+ Satellite Phone MANUFACTURER Inmarsat TYPE IsatPhone Pro PART NUMBER NA SERIAL NUMBER HWID: 0321 Rx Modification Fitted HWID: 0321 Rx Modification Fitted HARDWARE VERSION 0321 SOFTWARE VERSION V0.3.9_P6 GMR MHz TRANSMITTER OPERATING RANGE BT MHz GMR MHz RECEIVER OPERATING RANGE BT MHz GPS MHz INTERMEDIATE FREQUENCIES MHz EMISSION DESIGNATOR(S): G1D (i.e. G1D, GXW) MODULATION TYPES: GMR 2+ TX: GMSK (i.e. GMSK, QPSK) RX:OQPSK HIGHEST INTERNALLY GENERATED 3350MHz FREQUENCY HIGHEST INTERNALLY GENERATED 3118MHz FREQUENCY IN RECEIVE IDLE MODE GMR dBm OUTPUT POWER (W or dbm) BT +3.8dBm TECHNICAL DESCRIPTION (a brief description of the intended use and GMR2+ Satellite Phone for Inmarsat satellite network system operation) If unit is SRD being tested to ETS please state Class of Equipment as defined in Section BATTERY/POWER SUPPLY MANUFACTURING DESCRIPTION Li-Ion Battery AC-Charger MANUFACTURER VARTA Tenwei TYPE Li-Ion 2600mAh TAV PART NUMBER VOLTAGE 3.7V 5V SERIAL NUMBER NA NA MANUFACTURING DESCRIPTION MANUFACTURER TYPE PART NUMBER SERIAL NUMBER ANCILLARIES (if applicable) Headset TopDen Mono headset with 2.5mm plug TS628D NA Signature Held on File at TUV Date 02 June 2010 D of B S Serial No /01 Note: This document has been prepared to enable manufacturers with no mechanism for producing their own Declaration of Build Status, to declare the build state of the equipment submitted for test. No responsibility will be accepted by TÜV Product Service as to the accuracy of the information declared in this document by the manufacturer. Document Report 07 Issue 1 Page 9 of 130

11 1.4 PRODUCT INFORMATION Technical Description The Equipment Under Test (EUT) was a Inmarsat Global Ltd, IsatPhone Pro GMR2+ Satellite Phone as shown in the photograph below. A full technical description can be found in the manufacturer s documentation. Equipment Under Test Document Report 07 Issue 1 Page 10 of 130

12 1.4.2 Test Configuration Configuration 1: Mobile Handset + SHF The EUT was configured in accordance with FCC CFR 47 Part 25 and Part 2 and RSS-170. Configuration 2: Mobile Handset + AC Charger + SHF The EUT was configured in accordance with FCC CFR 47 Part 25 and Part 2 and RSS-170. Configuration 3: Mobile Handset + USB + SHF The EUT was configured in accordance with FCC CFR 47 Part 25 and Part 2 and RSS-170. Configuration 4: Mobile Handset + DC Charger The EUT was configured in accordance with FCC CFR 47 Part 25 and Part 2 and RSS EUT Cable / Port Identification Port Max Cable Length specified Usage Type Screened AC Power 1.5m AC Power Lead 2 core No USB Data 1.5m Data Transfer Multicore No Modes of Operation Modes of operation of each EUT during testing were as follows: Mode 1 Carrier On Document Report 07 Issue 1 Page 11 of 130

13 1.5 TEST CONDITIONS For all tests the EUT was set up in accordance with the relevant test standard and to represent typical operating conditions. Tests were applied with the EUT situated in a shielded enclosure, test laboratories or an open test area as appropriate. The EUT was powered from a 3.7V internal battery or an AC power supply. FCC Accreditation Octagon House, Fareham Test Laboratory Industry Canada Accreditation IC2932B-1 Octagon House, Fareham Test Laboratory 1.6 DEVIATIONS FROM THE STANDARD No deviations from the applicable test standards or test plan were made during testing. 1.7 MODIFICATION RECORD The table below details modifications made to the EUT during the test programme. The modifications incorporated during each test are recorded on the appropriate test pages. IMEI: Modification State Description of Modification still fitted to EUT Modification Fitted By Date Modification Fitted 0 As supplied by the customer (HWID: 0321 Rx Modification Fitted) Sasken 05 May 2010 IMEI: Modification State Description of Modification still fitted to EUT Modification Fitted By Date Modification Fitted 0 As supplied by the customer (HWID: 0321 Rx Modification Fitted) Sasken 05 May 2010 Document Report 07 Issue 1 Page 12 of 130

14 SECTION 2 TEST DETAILS FCC and Industry Canada Testing of the Inmarsat Global Ltd IsatPhone Pro GMR2+ Satellite Phone Document Report 07 Issue 1 Page 13 of 130

15 2.1 SPURIOUS EMISSIONS (RADIATED) Specification Reference FCC CFR 47 Part 2, Clause FCC CFR 47 Part 25, Clause (f)(3) RSS-170, Clause Annex B: B Equipment Under Test` IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 04 May, 27 May and 30 May Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The test was applied in accordance with the test method requirements of ANSI C63.4. A preliminary profile of the Spurious Radiated Emissions was obtained by operating the EUT on a remotely controlled turntable within a semi-anechoic chamber. Measurements of emissions from the EUT were obtained with the Measurement Antenna in both Horizontal and Vertical Polarisations. The profiling produced a list of the worst-case emissions together with the EUT azimuth and antenna polarisation. Using the information from the preliminary profiling of the EUT, the list of emissions was then confirmed or updated under Alternative Open Site conditions. Emission levels were maximised by adjusting the antenna height, antenna polarisation and turntable azimuth. Through this process of profiling the EUT, it was determined that the worst case was Configuration 2 (Mobile Handset + AC Charger + SHF), therefore a full sweep of plots for Top, Middle and Bottom Channels has been presented. For Configurations 1 and 3 a plot showing 30MHz to 1GHz for the Top and Bottom Channels plus a full sweep of plots for the Middle Channel have also been presented in this document to support this judgement. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode 1 Configuration 2 - Mode 1 Configuration 3 - Mode 1 Configuration 4 - Mode 1 Document Report 07 Issue 1 Page 14 of 130

16 2.1.6 Environmental Conditions 04 May May May 2010 Ambient Temperature 20.0 C 21.0 C 19.2 C Relative Humidity 32% 42% 45% Atmospheric Pressure 1020mbar 1005mbar 1005mbar Document Report 07 Issue 1 Page 15 of 130

17 2.1.7 Test Results For the period of test the EUT met the requirements of FCC CFR 47 Part 25 and RSS-170 for Spurious Emissions (Radiated). The test results are shown below. Configuration 1 - Mode 1 Top Channel 30MHz to 1GHz Vertical Document Report 07 Issue 1 Page 16 of 130

18 Horizontal Document Report 07 Issue 1 Page 17 of 130

19 Middle Channel 30 MHz to 1 GHz Vertical Horizontal Document Report 07 Issue 1 Page 18 of 130

20 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 19 of 130

21 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 20 of 130

22 8 GHz to 12 GHz Vertical Horizontal Document Report 07 Issue 1 Page 21 of 130

23 12 GHz to 16 GHz Vertical Horizontal Document Report 07 Issue 1 Page 22 of 130

24 16 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 23 of 130

25 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Horizontal Vertical Horizontal Vertical Vertical Horizontal Vertical 30MHz to 17GHz No emissions were detected within 22dB of the Peak limit. Document Report 07 Issue 1 Page 24 of 130

26 Bottom Channel 30 MHz to 1 GHz Vertical Horizontal Document Report 07 Issue 1 Page 25 of 130

27 Configuration 2 - Mode 1 Top Channel 30MHz to 1GHz Vertical Horizontal Document Report 07 Issue 1 Page 26 of 130

28 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 27 of 130

29 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 28 of 130

30 8 GHz to 12.5 GHz Vertical Horizontal Document Report 07 Issue 1 Page 29 of 130

31 12.5 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 30 of 130

32 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Vertical 30MHz to 17GHz No emissions were detected within 21dB of the Peak limit. Document Report 07 Issue 1 Page 31 of 130

33 Middle Channel 30MHz to 1GHz Vertical Horizontal Document Report 07 Issue 1 Page 32 of 130

34 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 33 of 130

35 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 34 of 130

36 8 GHz to 12.5 GHz Vertical Horizontal Document Report 07 Issue 1 Page 35 of 130

37 12.5 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 36 of 130

38 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Vertical 30MHz to 17GHz No emissions were detected within 21dB of the Peak limit. Document Report 07 Issue 1 Page 37 of 130

39 Bottom Channel 30MHz to 1GHz Vertical Horizontal Document Report 07 Issue 1 Page 38 of 130

40 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 39 of 130

41 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 40 of 130

42 8 GHz to 12.5 GHz Vertical Horizontal Document Report 07 Issue 1 Page 41 of 130

43 12.5 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 42 of 130

44 Final Result 30MHz to 17GHz No emissions were detected within 22dB of the Peak limit. Document Report 07 Issue 1 Page 43 of 130

45 Configuration 3 - Mode 1 Top Channel 30MHz to 1GHz Combined Vertical and Horizontal Document Report 07 Issue 1 Page 44 of 130

46 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 45 of 130

47 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 46 of 130

48 8 GHz to 12.5 GHz Vertical Horizontal Document Report 07 Issue 1 Page 47 of 130

49 12.5 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 48 of 130

50 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Vertical Vertical Horizontal Horizontal Vertical 30MHz to 17GHz No emissions were detected within 22dB of the Peak limit. Document Report 07 Issue 1 Page 49 of 130

51 Middle Channel 30MHz to 1GHz Combined Vertical and Horizontal Document Report 07 Issue 1 Page 50 of 130

52 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 51 of 130

53 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 52 of 130

54 8 GHz to 12.5 GHz Vertical Horizontal Document Report 07 Issue 1 Page 53 of 130

55 12.5 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 54 of 130

56 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Vertical Vertical Horizontal Horizontal Vertical 30MHz to 17GHz No emissions were detected within 23dB of the Peak limit. Document Report 07 Issue 1 Page 55 of 130

57 Bottom Channel 30MHz to 1GHz Combined Vertical and Horizontal Document Report 07 Issue 1 Page 56 of 130

58 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 57 of 130

59 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 58 of 130

60 8 GHz to 12.5 GHz Vertical Horizontal Document Report 07 Issue 1 Page 59 of 130

61 12.5 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 60 of 130

62 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Vertical Vertical Horizontal Horizontal Vertical 30MHz to 17GHz No emissions were detected within 22dB of the Peak limit. Document Report 07 Issue 1 Page 61 of 130

63 Configuration 4 - Mode 1 Top Channel 30MHz to 1GHz Vertical Horizontal Document Report 07 Issue 1 Page 62 of 130

64 Final Result 30MHz to 1GHz No emissions were detected within 25dB of the Peak limit. Document Report 07 Issue 1 Page 63 of 130

65 Middle Channel 30MHz to 1GHz Vertical Horizontal Document Report 07 Issue 1 Page 64 of 130

66 1 GHz to 4 GHz Vertical Horizontal Document Report 07 Issue 1 Page 65 of 130

67 4 GHz to 8 GHz Vertical Horizontal Document Report 07 Issue 1 Page 66 of 130

68 8 GHz to 12 GHz Vertical Horizontal Document Report 07 Issue 1 Page 67 of 130

69 12.5 GHz to 16 GHz Vertical Horizontal Document Report 07 Issue 1 Page 68 of 130

70 16 GHz to 17 GHz Vertical Horizontal Document Report 07 Issue 1 Page 69 of 130

71 Final Result Frequency (MHz) Result Peak (dbm) Limit (dbm) Margin (db) Angle (deg) Height (m) Polarity Horizontal Vertical Horizontal Vertical Vertical Horizontal 30MHz to 17GHz No emissions were detected within 20dB of the Peak limit. Document Report 07 Issue 1 Page 70 of 130

72 Bottom Channel 30MHz to 1GHz Vertical Horizontal Document Report 07 Issue 1 Page 71 of 130

73 Final Result 30MHz to 1GHz No emissions were detected within 25dB of the Peak limit. Document Report 07 Issue 1 Page 72 of 130

74 2.2 EIRP PEAK POWER Specification Reference FCC CFR 47 Part 2, Clause FCC CFR 47 Part 25, Clause RSS-170, Clause Annex B: B Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 30 April, 04 May and 03 June Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The test was applied in accordance with the test method requirements of ANSI C63.4. Measurements of the fundamental from the EUT were obtained with the Measurement Antenna in both Horizontal and Vertical Polarisations. The fundamental frequency was maximised by adjusting the antenna height, antenna polarisation and turntable azimuth. A peak detector was used with the trace set to max hold. The maximum result was recorded. The EUT was then removed from the chamber and replaced with a substitution antenna. Using a signal generator the level was adjusted to achieve the same value on the measuring instrument as previously recorded with the EUT. The final result was determined by a calculation using the signal generator level, antenna gain and cable loss. The measurements were performed at a 3m distance unless otherwise stated. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode 1 Configuration 2 - Mode 1 Configuration 3 - Mode 1 Configuration 4 - Mode Environmental Conditions 30 April May June 2010 Ambient Temperature 20 C 19 C 21.2 C Relative Humidity 32% 32% 48% Atmospheric Pressure 1010mbar 1020mbar 1012mbar Document Report 07 Issue 1 Page 73 of 130

75 2.2.7 Test Results For the period of test the EUT met the requirements of RSS-170 for EIRP Peak Power. The test results are shown below. Configuration 1 - Mode 1 Frequency (MHz) Result (dbm) Limit (dbm) Result (W) Limit (W) Top Channel Document Report 07 Issue 1 Page 74 of 130

76 Middle Channel Bottom Channel Document Report 07 Issue 1 Page 75 of 130

77 Configuration 2 - Mode 1 Frequency (MHz) Result (dbm) Limit (dbm) Result (W) Limit (W) Top Channel Document Report 07 Issue 1 Page 76 of 130

78 Middle Channel Bottom Channel Document Report 07 Issue 1 Page 77 of 130

79 Configuration 3 - Mode 1 Frequency (MHz) Result (dbm) Limit (dbm) Result (W) Limit (W) Top Channel Document Report 07 Issue 1 Page 78 of 130

80 Middle Channel Bottom Channel Document Report 07 Issue 1 Page 79 of 130

81 Configuration 4 - Mode 1 Frequency (MHz) Result (dbm) Limit (dbm) Result (W) Limit (W) Top Channel Document Report 07 Issue 1 Page 80 of 130

82 Middle Channel Bottom Channel Document Report 07 Issue 1 Page 81 of 130

83 2.3 SPURIOUS EMISSIONS (CONDUCTED) Specification Reference FCC CFR 47 Part 25, Clause (f) Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 26 April Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes In accordance with Part (f) the Spurious Conducted Emissions from the antenna terminal were measured. The transmitter output power was attenuated using a combination of filters and attenuators and the frequency spectrum investigated from 9 khz to 17 GHz. The EUT was set to transmit on full power. The spectrum analyser detector was set to Max Hold. (Worst case) The maximum path loss across each measurement band was used as the reference level offset to ensure worst case results. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 26 April 2010 Ambient Temperature 22 C Relative Humidity 35% Document Report 07 Issue 1 Page 82 of 130

84 2.3.7 Test Results For the period of test the EUT met the requirements of FCC CFR 47 Part 25 for Spurious Emissions (Conducted). The test results are shown below. Configuration 1 - Mode V DC Supply MHz 9kHz to 1GHz Ref 12 dbm * Att 0 db * RBW 100 khz VBW 300 khz SWT 100 ms Marker 1 [T1 ] dbm MHz 10 Offset 32 db 1 PK MAXH 0-10 D1-13 dbm A LVL PRN -40 EXT Start 9 khz MHz/ Stop 1 GHz Date: 26.APR :29:19 Document Report 07 Issue 1 Page 83 of 130

85 1GHz to 2.5GHz Ref 37 dbm * Att 0 db * RBW 100 khz VBW 300 khz SWT 150 ms Marker 1 [T1 ] dbm GHz Offset 32 db 30 A 1 PK MAXH LVL 0-10 D1-13 dbm PRN EXT Start 1 GHz 150 MHz/ Stop 2.5 GHz Date: 26.APR :45:02 2.5GHz to 12GHz Ref 10 dbm * Att 0 db 10 Offset 37.2 db * RBW 1 MHz VBW 3 MHz SWT 55 ms Marker 1 [T1 ] dbm GHz 0 A 1 PK MAXH -10 D1-13 dbm LVL PRN EXT Start 2.5 GHz 950 MHz/ Stop 12 GHz Date: 26.APR :48:39 Document Report 07 Issue 1 Page 84 of 130

86 12GHz to 17GHz Ref 10 dbm * Att 0 db 10 Offset 37.2 db * RBW 1 MHz VBW 3 MHz SWT 30 ms Marker 1 [T1 ] dbm GHz 0 A 1 PK MAXH -10 D1-13 dbm LVL PRN EXT Start 12 GHz 500 MHz/ Stop 17 GHz Date: 26.APR :04: MHz 9kHz to 1GHz Ref 12 dbm 10 Offset 32 db * Att 0 db * RBW 100 khz VBW 300 khz SWT 100 ms 1 PK MAXH 0-10 D1-13 dbm A LVL PRN -40 EXT Start 9 khz MHz/ Stop 1 GHz Date: 26.APR :28:24 Document Report 07 Issue 1 Page 85 of 130

87 1GHz to 2.5GHz Ref 37 dbm * Att 0 db * RBW 100 khz VBW 300 khz SWT 150 ms Marker 1 [T1 ] dbm GHz Offset 32 db 30 A 1 PK MAXH LVL 0-10 D1-13 dbm PRN EXT Start 1 GHz 150 MHz/ Stop 2.5 GHz Date: 26.APR :43:51 2.5GHz to 12GHz Ref 10 dbm * Att 0 db 10 Offset 37.2 db * RBW 1 MHz VBW 3 MHz SWT 55 ms Marker 1 [T1 ] dbm GHz 0 A 1 PK MAXH -10 D1-13 dbm LVL PRN EXT Start 2.5 GHz 950 MHz/ Stop 12 GHz Date: 26.APR :53:39 Document Report 07 Issue 1 Page 86 of 130

88 12GHz to 17GHz Ref 10 dbm * Att 0 db 10 Offset 37.2 db * RBW 1 MHz VBW 3 MHz SWT 30 ms Marker 1 [T1 ] dbm GHz 0 A 1 PK MAXH -10 D1-13 dbm LVL EXT Start 12 GHz 500 MHz/ Stop 17 GHz Date: 26.APR :04: MHz 9kHz to 1GHz Ref 12 dbm * Att 0 db * RBW 100 khz VBW 300 khz SWT 100 ms Marker 1 [T1 ] dbm MHz 10 Offset 32 db 1 PK MAXH 0-10 D1-13 dbm A LVL PRN EXT Start 9 khz MHz/ Stop 1 GHz Date: 26.APR :38:39 Document Report 07 Issue 1 Page 87 of 130

89 1GHz to 2.5GHz Ref 37 dbm * Att 0 db * RBW 100 khz VBW 300 khz SWT 150 ms Marker 1 [T1 ] dbm GHz Offset 32 db 30 A 1 PK MAXH LVL 0-10 D1-13 dbm PRN EXT Start 1 GHz 150 MHz/ Stop 2.5 GHz Date: 26.APR :41:49 2.5GHz to 12GHz Ref 10 dbm * Att 0 db 10 Offset 37.2 db * RBW 1 MHz VBW 3 MHz SWT 55 ms Marker 1 [T1 ] dbm GHz 0 A 1 PK MAXH -10 D1-13 dbm LVL PRN EXT Start 2.5 GHz 950 MHz/ Stop 12 GHz Date: 26.APR :05:50 Document Report 07 Issue 1 Page 88 of 130

90 12GHz to 17GHz Ref 10 dbm * Att 0 db 10 Offset 37.2 db * RBW 1 MHz VBW 3 MHz SWT 30 ms Marker 1 [T1 ] dbm GHz 0 A 1 PK MAXH -10 D1-13 dbm LVL PRN EXT Start 12 GHz 500 MHz/ Stop 17 GHz Date: 26.APR :56:00 Limit Clause (f)(3) >250% Authorised Bandwidth log P Document Report 07 Issue 1 Page 89 of 130

91 2.4 SPURIOUS EMISSIONS (CONDUCTED) Specification Reference FCC CFR 47 Part 25, Clause (h) Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 10 June Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to a spectrum analyser via a cable and 30dB attenuator. The worst case path loss was measured and entered as a reference level offset into the spectrum analyser. The EUT was set to transmit at maximum power on bottom, middle and top channels with modulation representative of normal use with a symbol rate of kb/s. The spectrum analyser detector was set to RMS and the trace averaged using an RBW of 1MHz. The spectrum analyser was gated over a 2ms period of the transmit signal as defined in (h). The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 10 June 2010 Ambient Temperature 21 C Relative Humidity 51% Document Report 07 Issue 1 Page 90 of 130

92 2.4.7 Test Results For the period of test the EUT met the requirements of FCC CFR 47 Part 25 for Spurious Emissions (Conducted). The test results are shown below. Configuration 1 - Mode V DC Supply Top Channel Ref 20 dbm * Att 0 db * RBW 1 MHz * VBW 3 MHz SWT 2.5 ms Marker 1 [T1 ] dbm GHz 20 Offset 37.4 db 1 RM * AVG 10 0 A SGL GAT TRG LVL SWP 200 of EXT 3DB Start GHz 500 khz/ Stop 1.61 GHz OBW1 Date: 10.JUN :28:03 Document Report 07 Issue 1 Page 91 of 130

93 Middle Channel Ref 10 dbm * Att 0 db * RBW 1 MHz * VBW 3 MHz SWT 2.5 ms Marker 1 [T1 ] dbm GHz 10 Offset 37.4 db 1 RM * AVG 0-10 A SGL GAT TRG LVL EXT SWP 200 of DB Start GHz 500 khz/ Stop 1.61 GHz OBW1 Date: 10.JUN :24:06 Bottom Channel Ref 10 dbm * Att 0 db * RBW 1 MHz * VBW 3 MHz SWT 2.5 ms Marker 1 [T1 ] dbm GHz 10 Offset 37.4 db 1 RM * AVG 0-10 A SGL GAT TRG LVL SWP 200 of EXT 1 3DB Start GHz 500 khz/ Stop 1.61 GHz OBW1 Date: 10.JUN :23:04 Limit Clause (h) Frequency Range Limit MHz -70dBW/MHz at 1605MHz to -46dBW/MHz at 1610MHz Document Report 07 Issue 1 Page 92 of 130

94 2.5 SPURIOUS EMISSIONS (CONDUCTED) Specification Reference FCC CFR 47 Part 25, Clause (i) Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 10 June Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to a spectrum analyser via a 10dB attenuator and cable. The worst case path loss was measured and entered as a reference level offset into the spectrum analyser. The EUT was set to its carrier off state. The spectrum analyser detector was set to rms and the trace averaged using a RBW of 1MHz. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 10 June 2010 Ambient Temperature 21 C Relative Humidity 51% Document Report 07 Issue 1 Page 93 of 130

95 2.5.7 Test Results For the period of test the EUT met the requirements of FCC CFR 47 Part 25 for Spurious Emissions (Conducted). The test results are shown below. Configuration 1 - Mode V DC Supply 1559 to 1610 MHz Ref -26 dbm * Att 0 db * RBW 1 MHz * VBW 3 MHz SWT 2.5 ms Marker 1 [T1 ] dbm GHz Offset 11.4 db RM * AVG A SGL LVL -60 PA SWP 200 of 200 EXT 3DB Start GHz 5.1 MHz/ Stop 1.61 GHz OBW1 Date: 10.JUN :34:49 Limit Clause (i) Frequency Range Limit MHz -80dBW/MHz Document Report 07 Issue 1 Page 94 of 130

96 2.6 SPURIOUS EMISSIONS Specification Reference RSS-170, Clause Annex B: B Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 05 May Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to a spectrum analyser via a cable and 30dB attenuator. The worst case path loss was measured and entered as a reference level offset into the spectrum analyser. The EUT was set to transmit at maximum power on bottom and top channels with modulation representative of normal use with a symbol rate, of ks/s. The EUT utilises a TDMA system and therefore the detector was set to peak and the trace to max hold, (worst case). As is was not possible to select a 4kHz RBW as defined in Table B2, the closest larger RBW of 10kHz was selected, (worst case). Where emissions shown in the plots exceed the specification, the marker noise function was used showing the result in dbm/hz. The displayed result should be corrected by 36dB to give the result in a 4kHz bandwidth as defined in the specification. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 05 May 2010 Ambient Temperature 22 C Relative Humidity 31% Document Report 07 Issue 1 Page 95 of 130

97 2.6.7 Test Results For the period of test the EUT met the requirements of RSS-170 for Spurious Emissions. The test results are shown below. Configuration 1 - Mode V DC Supply MHz 9kHz to 1GHz Ref 7.3 dbm #Peak Log 10 db/ Offst 32.2 db Dl dbm 13:32:16 May 5, 2010 Marker MHz dbm Atten 5 db Mkr MHz dbm Ext Ref V1 S2 S3 FC AA 1 Start 9 khz #Res BW 10 khz VBW 30 khz Stop 1 GHz Sweep s (401 pts) Document Report 07 Issue 1 Page 96 of 130

98 1GHz to 1.559GHz Ref 7.3 dbm #Peak Log 10 db/ Offst 32.2 db Dl dbm 13:01:57 May 5, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref V1 S2 S3 FC AA 1 Start 1 GHz #Res BW 10 khz VBW 30 khz Stop GHz Sweep s (401 pts) 1.559GHz to GHz Ref 7.3 dbm #Peak Log 10 db/ Offst 32.2 db Dl -7.0 dbm 13:06:12 May 5, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref 1 V1 S2 S3 FC AA Start GHz #Res BW 10 khz VBW 30 khz Stop GHz Sweep ms (401 pts) Document Report 07 Issue 1 Page 97 of 130

99 GHz to 3GHz Ref 7.3 dbm #Peak Log 10 db/ Offst 32.2 db Dl -7.0 dbm 1 13:19:55 May 5, 2010 Atten 5 db Marker GHz Noise dbm(1hz) Mkr GHz Noise dbm(1hz) Ext Ref V1 S2 S3 FC AA Start GHz #Res BW 10 khz VBW 30 khz Stop 3 GHz Sweep s (401 pts) 3GHz to 10GHz Ref 7.3 dbm #Peak Log 10 db/ Offst 32.2 db 1 Dl -7.0 dbm 13:26:43 May 5, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref V1 S2 S3 FC AA Start 3 GHz #Res BW 10 khz VBW 30 khz Stop 10 GHz Sweep s (401 pts) Document Report 07 Issue 1 Page 98 of 130

100 MHz 9kHz to 1GHz Ref 7.2 dbm Peak Log 10 db/ Offst 32.2 db Dl dbm 10:23:07 Jun 1, 2010 Marker MHz dbm Atten 5 db Mkr MHz dbm Ext Ref V1 S2 S3 FC AA 1 Start 9 khz #Res BW 10 khz VBW 30 khz Stop 1 GHz Sweep s (401 pts) 1GHz to 1.559GHz Ref 7.2 dbm Peak Log 10 db/ Offst 32.2 db Dl dbm 10:26:06 Jun 1, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref V1 S2 S3 FC AA 1 Start 1 GHz #Res BW 10 khz VBW 30 khz Stop GHz Sweep s (401 pts) Document Report 07 Issue 1 Page 99 of 130

101 1.559GHz to GHz Ref 7.2 dbm Peak Log 10 db/ Offst 32.2 db Dl -7.0 dbm 10:58:31 Jun 1, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref 1 V1 S2 S3 FC AA Start GHz #Res BW 10 khz VBW 30 khz Stop 1.66 GHz Sweep s (401 pts) GHz to GHz Ref 7.2 dbm Peak Log 10 db/ Offst db Dl -7.0 dbm 11:24:36 Jun 1, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref V1 S2 S3 FC AA Start GHz #Res BW 10 khz VBW 30 khz Stop 1.7 GHz Sweep ms (401 pts) Document Report 07 Issue 1 Page 100 of 130

102 1.700GHz to 3.0 GHz Ref 7.2 dbm Peak Log 10 db/ Offst 32.2 db Dl -7.0 dbm 11:27:43 Jun 1, 2010 Marker GHz dbm Atten 5 db Mkr GHz dbm Ext Ref 1 V1 S2 S3 FC AA Start 1.7 GHz #Res BW 10 khz VBW 30 khz Stop 3 GHz Sweep s (401 pts) 3.0GHz to 10 GHz Ref 7.2 dbm Peak Log 10 db/ Offst 32.2 db Dl -7.0 dbm 10:51:37 Jun 1, 2010 Marker GHz dbm 1 Atten 5 db Mkr GHz dbm Ext Ref V1 S2 S3 FC AA Start 3 GHz #Res BW 10 khz VBW 30 khz Stop 10 GHz Sweep s (401 pts) Document Report 07 Issue 1 Page 101 of 130

103 Limit Clause Annex B: B2 RSS-170 Frequency (MHz) Minimum Attenuation Relative to Transmit Power in Any 4kHz dB or ( logTp)dB whichever is less stringent > dB or ( logTp)dB whichever is less stringent Document Report 07 Issue 1 Page 102 of 130

104 2.7 EMISSION MASK Specification Reference RSS-170, Clause Annex B: B Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 06 May Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to a spectrum analyser via cable and attenuators. Emission Mask (b) from Table B1 was used. It was not possible to set a 4kHz RBW on the instrumentation, so the closest larger RBW of 5kHz was selected. Using an RMS detector, trace averaging and utilising an externally gated trigger, the EUT was assessed against the mask for compliance over 100 sweeps. The EUT was tested at bottom and top channels with modulation at a symbol rate of kHz. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 06 May 2010 Ambient Temperature 23 C Relative Humidity 34% Document Report 07 Issue 1 Page 103 of 130

105 2.7.7 Test Results For the period of test the EUT met the requirements of RSS-170 for Emission Mask. The test results are shown below. Configuration 1 - Mode V DC Supply MHz Document Report 07 Issue 1 Page 104 of 130

106 MHz Limit Clause Annex B: B2 Frequency Offset Normalised to SR (Symbol Rate) (a) Minimum Attenuation Relative to in-band Spectral Density (dbc) (b) Minimum Attenuation Relative to Transmitter Output Power (dbc) in any 4kHz ± ± ± ± or ( logTp) whichever is less stringent 65 or ( logTp) whichever is less stringent Document Report 07 Issue 1 Page 105 of 130

107 2.8 EMISSION MASK Specification Reference FCC CFR 47 Part 2, Clause FCC CFR 47 Part 25, Clause (f)(1)(2) Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 26 May Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to a spectrum analyser via 30dB of attenuation. The RBW was set to 3kHz and the VBW to 10kHz. A correction factor of 1.25dB was added to the reference level offset to account for the RBW being 3kHz not 4kHz as defined in (f). Also included in the reference level offset were the antenna gain, (3.5dBi) and the pass loss between the spectrum analyser and the EUT. The reference level offset was established by measuring the wideband power using a power meter averaging over the burst length. The emission mask was based on an authorised bandwidth of 100kHz as defined by the satellite service provider. Measurements of the emission mask were performed using an RMS detector with trace averaging over 50 sweeps with a gated trigger ensuring averaging was only performed with the transmit signal active. Measurements were performed on bottom, middle and top channels. The plots are on the following pages. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 26 May 2010 Ambient Temperature 25 C Relative Humidity 30% Document Report 07 Issue 1 Page 106 of 130

108 2.8.7 Test Results For the period of test the EUT met the requirements of RSS-170 for Emission Mask. The test results are shown below. Configuration 1 - Mode V DC Supply MHz Ref 37.4 dbm * Att 0 db * RBW 3 khz * VBW 10 khz SWT 640 ms Offset 42 db 30 LIMIT CHECK PASS A 1 RM * AVG SGL GAT TRG LVL SWP 50 of PRN EXT Center GHz 37 khz/ Span 370 khz Date: 26.MAY :16:27 Document Report 07 Issue 1 Page 107 of 130

109 MHz Ref 37.5 dbm * Att 0 db * RBW 3 khz * VBW 10 khz SWT 640 ms Offset 41.6 db 30 LIMIT CHECK PASS A 1 RM * AVG SGL GAT TRG LVL SWP 50 of PRN EXT Center GHz 37 khz/ Span 370 khz Date: 26.MAY :34: MHz Ref 38.1 dbm * Att 0 db * RBW 3 khz * VBW 10 khz SWT 640 ms Offset 41 db LIMIT CHECK PASS 30 A 1 RM * AVG SGL GAT TRG LVL -10 PRN EXT SWP 50 of Center GHz 37 khz/ Span 370 khz Date: 26.MAY :22:37 Document Report 07 Issue 1 Page 108 of 130

110 Limit Clause (f)(1)(2) Frequency Range Attenuation in 4kHz Bandwdith 50 to 100% Authorised Bandwidth 25dB 100 to 250% 35dB > 250% logp Document Report 07 Issue 1 Page 109 of 130

111 2.9 OCCUPIED BANDWIDTH Specification Reference FCC CFR 47 Part 2, Clause RSS-170, Clause Annex B: B Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 05 May Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The test was applied in accordance with the test method requirements of ANSI C63.4. The EUT was connected to a Spectrum Analyser via a cable and a 20dB attenuator. The ETU was configured to transmit on bottom, middle and top channels with GMSK modulation. The trace was set to max hold until a sufficient number of sweeps were observed. The 99% occupied bandwidth function was selected on the spectrum analyser and the result and the trace were recorded. The maximum path loss across each measurement band was used as the reference level offset to ensure worst case results. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 05 May 2010 Ambient Temperature 23 C Relative Humidity 32% Document Report 07 Issue 1 Page 110 of 130

112 2.9.7 Test Results For the period of test the EUT met the requirements of FCC CFR 47 Part 2 and RSS-170 for Occupied Bandwidth. The test results are shown below. Configuration 1 - Mode V DC Supply Frequency (MHz) Results (khz) Limit Clause FCC declared authorised bandwidth: 70kHz Ref 40.8 dbm #Peak Log 10 db/ Offst 20.8 db 10:28:23 May 5, 2010 Sweep Time ms Atten 30 db 1 Mkr GHz dbm Ext Ref Center GHz Res BW 1 khz Occupied Bandwidth khz #VBW 3 khz Span 200 khz Sweep ms (401 pts) Occ BW % Pwr x db % db Transmit Freq Error x db Bandwidth khz khz Document Report 07 Issue 1 Page 111 of 130

113 Ref 40.8 dbm #Peak Log 10 db/ Offst 20.8 db 10:26:15 May 5, 2010 Sweep Time ms Atten 30 db 1 Mkr GHz dbm Ext Ref Center GHz Res BW 1 khz Occupied Bandwidth khz #VBW 3 khz Span 200 khz Sweep ms (401 pts) Occ BW % Pwr x db % db Transmit Freq Error x db Bandwidth khz khz Ref 40.8 dbm #Peak Log 10 db/ Offst 20.8 db 10:14:11 May 5, 2010 Atten 30 db 1 Mkr GHz dbm Ext Ref Center 1.66 GHz Res BW 1 khz Occupied Bandwidth khz #VBW 3 khz Span 200 khz Sweep ms (401 pts) Occ BW % Pwr x db % db Transmit Freq Error x db Bandwidth khz khz Document Report 07 Issue 1 Page 112 of 130

114 2.10 FREQUENCY TOLERANCE / FREQUENCY STABILITY Specification Reference FCC CFR 47 Part 2, Clause FCC CFR 47 Part 25, Clause (d) RSS-170, Clause Annex B: B Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 28 and 29 April Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to an FSQ spectrum analyser via a cable and 30 db attenuator. The EUT was configured to transmit a modulated carrier at maximum power using customer supplied test scripts. The trace was set to max hold until a sufficient number of sweeps was observed. Measurements were made over symbols. The VSA function was selected on the Spectrum Analyser and the result and the trace were recorded. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 28 and 29 April 2010 Ambient Temperature 23 C Relative Humidity 47% Document Report 07 Issue 1 Page 113 of 130

115 Test Results For the period of test the EUT met the requirements of FCC CFR 47 Part 25 and RSS-170 for Power and Antenna Height Limits. The test results are shown below. Configuration 1 - Mode V DC Supply Temperature MHz MHz MHz C Error Hz ppm Error Hz ppm Error Hz ppm V nom V min V max Limit Clause (d) for FCC Maximum Frequency Error ±320Hz Annex B:B5 RSS-170 Maximum Frequency Error ±0.001% of reference frequency Document Report 07 Issue 1 Page 114 of 130

116 2.11 POWER AND ANTENNA HEIGHT LIMITS Specification Reference FCC CFR 47 Part 25, Clause / RSS-170, Clause Equipment Under Test IsatPhone Pro GMR2+ Satellite Phone, IMEI: Date of Test and Modification State 06 May Modification State Test Equipment Used The major items of test equipment used for the above tests are identified in Section Test Method and Operating Modes The EUT was connected to a power meter via a cable and 30dB attenuator. The path loss was measured and entered as a reference level offset into the instrumentation. The transmit power was measured over the whole burst due to its length being less than 100ms. The average power was measured with modulation on bottom and top channels. The test was performed with the EUT in the following configurations and modes of operation: Configuration 1 - Mode Environmental Conditions 06 May 2010 Ambient Temperature 23 C Relative Humidity 33% Document Report 07 Issue 1 Page 115 of 130

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