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PKRISGMD8000Wireless Cellular Module

Inseego Corp.
Wireless Cellular Module - FCC ID PKRISGMD8000 - Inseego Corp.
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Jan 09, 2020
Application Purpose
Original Equipment
Date of Application
Jan 07, 2020
Equipment Note
Wireless Cellular Module
Frequency Range
1710.00000000 - 1780.00000000
Company
Inseego Corp.
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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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

The MD8800 module is not for sale to 3rd parties and the user manual integration instructions are internal confidential manufacturing documents. Grant for this module is “Limited” based on this these statements.

Attestation Statements

TÜV SÜD America Inc., 10040 Mesa Rim Road, San Diego, CA 92121 Tel: (858) 678-1400. Website: www.TUVamerica.com TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 December 20, 2019 TUV SUD BABT FCB Octagon House, Concorde Way Segensworth Rd N, Fareham PO15 5RL RE: FCC ID: PKRISGMD8000 IC: 3229A-MD8000 Inseego Corp. 9605 Scranton Road, Suite 300 San Diego, CA 92121 We hereby attest that the above product complies with the latest version of the following standards: FCC CFR 47 Part 22: 2018 FCC CFR 47 Part 24: 2018 FCC CFR 47 Part 27: 2018 FCC CFR 47 Part 90: 2018 FCC CFR 47 Part 96: 2018 RSS-132 Issue 3 January 2013 RSS-133 Issue 6 January 2018 RSS-130 Issue 2 February 2019 RSS-139 Issue 3 July 2015 RSS-140 Issue 1 April 2018 RSS-192 Issue 3 January 2018 RSS-195 Issue 2 April 2014 RSS-197 Issue 1 February 2010 RSS-199 Issue 3 December 2016. The device is a cellular module which support WCDMA Band 2, 4, 5. LTE Band 2, 4, 5, 7, 12, 13, 14, 17, 25, 26, 30, 38, 40, 41, 42, 48 and 66. All conducted testing was performed on its host under Model Number MIFI8000 (FCC ID: PKRISGMIFI8000 and IC: 3229A-MIFI8000). Test reports numbers are 72142923A, 72142923B, 72142923C, 72142923D, 72142923E issued by TÜV SÜD America Inc. in May TÜV SÜD America Inc., 10040 Mesa Rim Road, San Diego, CA 92121 Tel: (858) 678-1400. Website: www.TUVamerica.com TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 and July 2019, and 72152860A, 72152860B, 72152860C issued by TÜV SÜD America Inc. in October 2019. The test results are still valid and applicable with the current requirements. Radiated Spurious Emissions for worst case bands were performed and the test report numbers are 72154465A and 72154465B issued by TÜV SÜD America Inc. in December 2019. Sincerely, Xiaoying Zhang EMC/Wireless Test Engineer

Attestation Statements

Inseego Corp. 9605 Scranton Road Suite 300, San Diego CA 92121 Toll Free: 888.888.9231 Main 858.812.3400  Fax 858.812.3406 www.inseego.com Date: December 17, 2019 TUV SUD BABT FCB Octagon House, Concorde Way Segensworth Rd N, Fareham PO15 5RL RE: FCC ID: PKRISGMD8000 We hereby attest that the above product complies with the latest version of the FCC Part 96.47 End User Device Requirements (CBSD Protocol). The Cellular Radio Module Model MD8000 was previously tested for B48 & B42 under the Wireless Hot Spot host variant(s): • Model MIFI880L for B48 • Model MIFI8000 for B42 The conduced measurement(s) per Part 96.47 are from the host variants which are covered under T est Reports: • MIFI8800L_B48_FCC Part 96 SAS-Interop Test Report Rev0 • MIFI8000_B42_FCC Part 96 SAS-Interop Test Report_RevA MD8000 (Cellular Radio Module), MIFI8800L ( Wireless Hot Spot), & MIFI8000 (Wireless Host Spot) share the s ame PCB circuitry. The Test Results are valid and applicable with the current requirements. Should you have any questions or comments regarding this matter, please have my best att ention. Yours sincerely, Name: Roman Olmos Title: Regulatory Engineer

Cover Letter(s)

Inseego Corp. 9605 Scranton Road Suite 300, San Diego CA 92121 Toll Free: 888.888.9231 Main 858.812.3400  Fax 858.812.3406 www.inseego.com Date: December 09, 2019 TUV SUD BABT TCB Octagon House, Segensworth Road, Fareham, Hampshire, PO15 5RL Agent Authorization Letter Dear Sir or Madam, We, Inseego Corp. hereby authorize Marlene Sealey of TUV SUD America, 10040 Mesa Rim Road, San Diego, CA, 92121 to act as our agent in all matters relating to applications for equipment authorization, including the signing of all documents relating to these matters. Yours sincerely, Name: Roman Olmos Title: Regulatory Engineer

Cover Letter(s)

Inseego Corp. 9605 Scranton Road Suite 300, San Diego CA 92121 Toll Free: 888.888.9231 Main 858.812.3400  Fax 858.812.3406 www.inseego.com Date: December 09, 2019 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 FCC Confidentiality Request Letter FCC ID: PKRISGMD8000 Pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission’s Rules, Inseego Corp. hereby requests permanent confidential treatment of information accompanying this application as outlined below: 1. BOM (Bill of Material) 2. Tuning Procedure 3. Schematics Diagrams 4. Theory of Operation 5. Block Diagram 6. Assembly Drawing Inseego Corp. also hereby requests short-term confidential treatment of information accompanying this application as outlined below for a period of 180 days: 1. External and Internal Photos 2. Test Photos 3. User Guide 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(d)(1)(ii), disclosure of this Application and all accompanying materials will not be made before the date of the Grant for this Application. Yours sincerely, Name: Roman Olmos Title: Regulatory Engineer

Cover Letter(s)

Inseego Corp. 9605 Scranton Road Suite 300, San Diego CA 92121 Toll Free: 888.888.9231 Main 858.812.3400  Fax 858.812.3406 www.inseego.com Date: December 09, 2019 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 Limited Modular Approval Request Letter FCC ID: PKRISGMD8800 The following attestation addresses the requirements to support modular approval: Modular approval requirement Yes (provide brief statement) No * (a) The radio elements must have the radio frequency circuitry shielded. Physical components and tuning capacitor(s) may be located external to the shield, but must be on the module assembly Yes, module radio elements are shielded. Refer to External Photographs Exhibit (b) The module must have buffered modulation/data inputs to ensure that the device will comply with Part 15 requirements with any type of input signal Yes, module chipset design incorporates integrated buffer circuitry (c) The module must contain power supply regulation on the module Yes, module chipset design incorporates voltage regulation to transceiver circuitry (d) The module must contain a permanently attached antenna, or contain a unique antenna connector, and be marketed and operated only with specific antenna(s), per Sections 15.203, 15.204(b), 15.204(c), 15.212(a), 2.929(b) Not Applicable to Licensed Modules (e) The module must demonstrate compliance in a stand-alone configuration Yes, EUT Conformance Testing of the module was performed in Stand-Alone configuration. (f) The module must be labelled with its permanently affixed FCC ID label, or use an electronic display (See KDB Publication 784748 about labelling requirements) Yes, Refer to Product Label Exhibit. Inseego Corp. 9605 Scranton Road Suite 300, San Diego CA 92121 Toll Free: 888.888.9231 Main 858.812.3400  Fax 858.812.3406 www.inseego.com (g) The module must comply with all specific rules applicable to the transmitter. The grantee must provide comprehensive instructions to explain compliance requirements Yes, MD8800 module is compliant with all applicable FCC rules. Compliance requirements are stated in the MD8800 Integration Guide Exhibit. The MD8800 module is not for sale to 3 rd parties and the user manual integration instructions are internal confidential manufacturing documents. Grant for this module is “Limited” based on this these statements. Modular approval requirement Yes (provide brief statement) No * (h) The module must comply with RF exposure requirements Yes, Compliance with RF Exposure requirements is addressed in the RF Exposure Report. Yours sincerely, Name: Roman Olmos Title: Regulatory Engineer

ID Label/Location Info

Inseego Corp. 9605 Scranton Road Suite 300, San Diego CA 92121 Toll Free: 888.888.9231 Main 858.812.3400  Fax 858.812.3406 www.inseego.com MD8000 Label and Placement Location 1.0 Product Label: 2.0 Label Location/Placement:

RF Exposure Info

TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 December 20, 2019 TUV SUD BABT Octagon House, Concorde Way Segensworth Rd N, Fareham PO15 5RL Attention: Director of Certification RE: Analysis of RF Exposure for Portable and Mobile use per KDB 447498 D01 Mobile Portable RF Exposure v06 and RSS-102 Issue 5 March 2015. FCC ID: PKRISGMD8000 IC: 3229A-MD8000 1.Limits Limits for General Population/Uncontrolled Exposure (Title 47 Subpart J §2.1091 and KDB 447498 D01 referring to limits under §1.1310) Frequency Range (MHz) Electric Field Strength (E) (V/m) Electric Field Strength (H) (A/m) Power Density (S) (mW/cm 2 ) Averaging Time (minutes) 0.3 –1.346141.63*(100)30 1.34 –30824/f2.19/f*(180/f 2 )30 30 –30027.50.0730.230 300 –1500--f/150030 1500 –100,000--1.030 f = frequency in MHz *Plane-wave equivalent power density Limits for Devices Used by the General Public (Uncontrolled Environment (RSS-102 Issue 5 March 2015) Frequency Range (MHz) Electric Field Strength (V/m rms) Magnetic Field (A/m rms) Power Density (W/m 2 ) Reference Period (minutes) 0.003 –10 21 8390-Instantaneous 0.1 –10-0.73/f-6** 1.1 –1087/f 0.5 --6** 10 –2027.460.072826 20 –48-58.07/f 0.25 0.1540/f 0.25 8.944/f 0.5 6 48 –30022.060.058521.2916 300 –60003.142 f 0.3417 0.008335 f .0.3417 0.02619 f 0.6834 6 6000 –1500061.40.163106 15000 –15000061.40.16310616000/f 1.2 150000 –3000000.158f 0.5 4.21 x 10 .-4 f 0.5 6.67 x 10 .-5 f616000/f 1.2 f is frequency in MHz *Based on nerve stimulation (NS) ** Based on specific absorption rate (SAR) TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 2.Mobile MPE Calculation Summary using a 20cm separation distance: Mode Output Power (dBm/mW) FCC Power Density Limit (mW/cm 2 ) ISED Power Density Limit (W/m 2 ) FCC Maximum Allowed Antenna Gain (dBi) ISED Maximum Allowed Antenna Gain (dBi) WCDMA Band 224.0 / 251.191.04.48013.0129.525 WCDMA Band 424.0 / 251.191.04.24613.0129.292 WCDMA Band 524.0 / 251.190.5512.58010.4237.130 LTE Band 224.0 / 251.191.04.47713.0129.523 LTE Band 424.0 / 251.191.04.24313.0129.289 LTE Band 524.0 / 251.190.5492.57710.4147.124 LTE Band 724.0 / 251.191.05.50213.01210.418 LTE Band 1224.0 / 251.190.4662.3039.706.636 LTE Band 1324.0 / 251.190.5202.48010.1696.956 LTE Band 1424.0 / 251.190.5272.50310.236.998 LTE Band 1724.0 / 251.190.4712.3189.7426.664 LTE Band 2524.0 / 251.191.04.47713.0129.523 LTE Band 2624.0 / 251.190.5432.55610.3617.087 LTE Band 3024.0 / 251.191.05.20613.01210.177 LTE Band 3824.0 / 251.191.05.60713.01210.50 LTE Band 4024.0 / 251.191.05.20613.01210.177 LTE Band 4124.0 / 251.191.05.49713.01210.413 LTE Band 4224.0 / 251.191.06.99213.01211.458 LTE Band 4824.0 / 251.191.06.99113.01211.458 LTE Band 6624.0 / 251.191.04.24313.0129.289 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 3.Mobile MPE Calculation using a 20cm separation distance (WCDMA Band 2): Maximum peak output power at antenna input terminal: 24.0 (dBm) Maximum peak output power at antenna input terminal: 251.19 (mW) Prediction distance: 20 (cm) Source Based Time Average Duty Cycle: 100 (%) Prediction frequency: 1852.4 (MHz) FCC MPE limit for uncontrolled exposure at prediction frequency: 1.0 (mW/cm 2 ) ISED MPE limit for uncontrolled exposure at prediction frequency: 4.480 (W/m 2 ) FCC Maximum Antenna gain: 13.012 (dBi) ISED Maximum Antenna gain: 9.525 (dBi) 4.Mobile MPE Calculation using a 20cm separation distance (WCDMA Band 4): Maximum peak output power at antenna input terminal: 24.0 (dBm) Maximum peak output power at antenna input terminal: 251.19 (mW) Prediction distance: 20 (cm) Sourse Based Time Average Duty Cycle: 100 (%) Prediction frequency: 1712.4 (MHz) FCC MPE limit for uncontrolled exposure at prediction frequency: 1 (mW/cm 2 ) ISED MPE limit for uncontrolled exposure at prediction frequency: 4.246 (W/m 2 ) FCC Maximum Antenna gain: 13.012 (dBi) ISED Maximum Antenna gain: 9.292 (dBi) 5.Mobile MPE Calculation using a 20cm separation distance (WCDMA Band 5): Maximum peak output power at antenna input terminal: 24.0 (dBm) Maximum peak output power at antenna input terminal: 251.19 (mW) Prediction distance: 20 (cm) Sourse Based Time Average Duty Cycle: 100 (%) Prediction frequency: 826.4 (MHz) FCC MPE limit for uncontrolled exposure at prediction frequency: 0.551 (mW/cm 2 ) ISED MPE limit for uncontrolled exposure at prediction frequency: 2.580 (W/m 2 ) FCC Maximum Antenna gain: 10.423 (dBi) ISED Maximum Antenna gain: 7.130 (dBi) TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400 FAX: 858 546 0364 6.Mobile MPE Calculation using a 20cm separation distance (LTE Band 2): Maximum peak output power at antenna input terminal: 24.0 (dBm) Maximum peak output power at antenna input terminal: 251.19 (mW) Prediction distance: 20 (cm) Source Based Time Average Duty Cycle: 100 (%) Prediction frequency: 1850.7 (MHz) FCC MPE limit for uncontrolled exposure at prediction frequency: 1.0 (mW/cm 2 ) ISED MPE limit for uncontrolled exposure at prediction frequency: 4.477 (W/m 2 ) FCC Maximum Antenna gain: 13.012 (dBi) ISED Maximum Antenna gain: 9.523 (dBi) 7.Mobile MPE Calculation using a 20cm separation distance (LTE Band 4): Maximum peak output power at antenna input terminal: 24.0 (dBm) Maximum peak output power at antenna input terminal: 251.19 (mW) Prediction distance: 20 (cm) Sourse Based Time Average Duty Cycle: 100 (%) Prediction frequency: 1710.7 (MHz) FCC MPE limit for uncontrolled exposure at prediction frequency: 1.0 (mW/cm 2 ) ISED MPE limit for uncontrolled exposure at prediction frequency: 4.243 (W/m 2 ) FCC Maximum Antenna gain: 13.012 (dBi) ISED Maximum Antenna gain: 9.289 (dBi) 8.Mobile MPE Calculation using a 20cm separation distance (LTE Band 5): Maximum peak output power at antenna input terminal: 24.0 (dBm) Maximum peak output power at antenna input terminal: 251.19 (mW) Prediction distance: 20 (cm)…

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Test Report

Report No. 72140633A Rev 1.0March 2019 America Report On Application for Grant of Equipment Authorization of the Inseego Corp. MD8800 Wireless Module FCC CFR 47 Part 2, Part 22 and Part 24: 2018 RSS-132 issue 3: 2013 and RSS-133 issue 6: 2018 FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page2of124 REPORT ON TEST REPORT NUMBER PREPARED FOR Radio Testing of the Inseego Corp. MD8800Wireless Module 72140633A Rev 1.0 Inseego Corp. 9605 Scranton Road, Suite 300 San Diego, CA 92121 USA CONTACT PERSONRoman Olmos Senior Regulatory Engineer (858) 812-0606 [email protected] PREPARED BYXiaoying Zhang Name Authorized Signatory Title: EMC/Wireless Test Engineer APPROVED BYFerdinand S. Custodio Name Authorized Signatory Title: Senior EMC Test Engineer/Wireless Team Lead DATEDMarch 28, 2019 FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page3of124 Revision History 72140633A Rev 1.0 Inseego Corp. MD8800 Wireless Module DATEOLD REVISIONNEW REVISIONREASON PAGES AFFECTED APPROVED BY 12/28/2018-Initial ReleaseFerdinand Custodio 03/28/2019Initial ReleaseRev 1.0Changed FCC IDAllFerdinand Custodio FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page4of124 CONTENTS SectionPage No 1REPORT SUMMARY............................................................................................................................... 5 1.1Introduction ................................................................................................................................................ 6 1.2Brief Summary of Results............................................................................................................................ 7 1.3Product Information ................................................................................................................................... 8 1.4EUT Test Configuration ............................................................................................................................. 10 1.5Deviations from the Standard................................................................................................................... 12 1.6Modification Record ................................................................................................................................. 12 1.7Test Methodology..................................................................................................................................... 12 1.8Test Facility Location................................................................................................................................. 12 1.9Test Facility Registration ........................................................................................................................... 12 1.10Sample Calculations .................................................................................................................................. 14 2TEST DETAILS ...................................................................................................................................... 16 2.1Transmitter Conducted Power Measurements ........................................................................................ 17 2.2Effective Radiated Power.......................................................................................................................... 31 2.3Equivalent Isotropic Radiated Power........................................................................................................ 33 2.4Peak-Average Ratio ................................................................................................................................... 38 2.5Occupied Bandwidth................................................................................................................................. 54 2.6Spurious Emission at Band edge ............................................................................................................... 60 2.7Conducted Spurious EmissionS ................................................................................................................. 83 2.8Field Strength of Spurious Radiation ........................................................................................................ 90 2.9Frequency Stability ................................................................................................................................. 107 2.10Receiver Spurious Emissions ................................................................................................................... 113 3TEST EQUIPMENT USED .................................................................................................................... 115 3.1Test Equipment Used .............................................................................................................................. 116 3.2Measurement Uncertainty ..................................................................................................................... 117 4DIAGRAM OF TEST SETUP ................................................................................................................. 119 4.1Test Setup Diagram................................................................................................................................. 120 5ACCREDITATION, DISCLAIMERS AND COPYRIGHT ............................................................................. 123 5.1Accreditation, Disclaimers and Copyright............................................................................................... 124 FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page5of124 SECTION 1 REPORT SUMMARY Radio Testing of the Inseego Corp. MD8800 Wireless Module FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page6of124 1.1INTRODUCTION The information contained in this report is intended to show verification of the Inseego Corp. MD8800 Wireless Module to the requireme…

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Test Report

FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page54of124 2.5OCCUPIED BANDWIDTH 2.5.1Specification Reference FCC 47 CFR Part 2, Clause 2.1049 FCC 47 CFR Part 22, Clause 22.917(b) FCC 47 CFR Part 24, Clause 24.238(b) RSS-GEN, Clause 6.7 2.5.2Standard Applicable The transmitted signal bandwidth shall be reported as the 99% emission bandwidth, that is the frequency bandwidth suuch that, below its lower and above its upper frequency limits, the mean powers radiated are eqch equal to 0.5 percent of the total mean power radiated by a give emission. 26dB Bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emissions are attenuated by at least 26 dB below the transmitter power. 2.5.3Equipment Under Test and Modification State Serial No: AZ280418A00044 / Test Configuration A 2.5.4Date of Test/Initial of test personnel who performed the test June 06, 11 , 2018 / XYZ 2.5.5Test Equipment Used The major items of test equipment used for the above tests are identified in Section 3.1. 2.5.6Environmental Conditions/ Test Location Test performed at TÜV SÜD America Inc. Rancho Bernardo facility Ambient Temperature 24.8 – 25.7°C Relative Humidity46.4 – 51.3% ATM Pressure98.5 kPa 2.5.7Additional Observations •This is a conducted test. Both 26dB bandwidth and 99% bandwidth presented. •Using the occupied bandwidth meansurement function in the spectrum analyzer, the 99% occupied bandwith was measured. •The 26dB bandwidth was measured in accorance with ANSI C63.26 clause 5.4.3 using the ndB measurement function in the spectrum analyzer. •The transmitter shall be operated at its maximum carrier power measured under normal test conditions. •The span of the analyzer shall be set to capture all products of the modulation process, including the emission skirts. FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page55of124 •The resolution bandwidth (RBW) shall be in the range of 1% of the occupied bandwidth (OBW) and video bandwidth (VBW) shall be at least 3x RBW. •Low, Mid and High channels for all bandwidths and modulations were verified. Test results of Mid channel were presented as representative. 2.5.8Test Results WCDMA BandChannelFrequency 99% OBW (MHz) 26dB BW (MHz) Band 294001880.04.144.75 Band 54183836.64.224.93 LTE Band 2 Modulation Bandwidth (MHz) ChannelFrequency 99% OBW (MHz) 26dB BW (MHz) QPSK 1.4 189001880.0 1.091.25 32.693.02 54.494.95 108.959.86 1513.4314.65 2017.8419.19 16QAM 1.4 189001880.0 1.091.25 32.693.00 54.494.93 108.959.64 1513.4214.59 2017.8919.19 LTE Band 5 Modulation Bandwidth (MHz) ChannelFrequency 99% OBW (MHz) 26dB BW (MHz) QPSK 1.4 20525836.5 1.091.24 32.693.0 54.494.95 108.949.72 16QAM 1.4 20525836.5 1.091.24 32.692.97 54.474.93 108.939.64 FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page56of124 2.5.9Example Test Plots WCDMA Band 2 / Middle Channel 1880 MHz / 99% OBW WCDMA Band 2 / Middle Channel 1880 MHz / 26dB BW FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page57of124 WCDMA Band 5 / Middle Channel 836.6 MHz /99% OBW WCDMA Band 5 / Middle Channel 836.6 MHz / 26dB OBW FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page58of124 LTE Band 2 (5 MHz BW) / Middle Channel 1880 MHz / QPSK / 99% OBW LTE Band 2 (5 MHz BW) / Middle Channel 1880 MHz / QPSK / 26dB BW FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page59of124 LTE Band 5 (5 MHz BW) / Middle Channel 836.5 MHz / QPSK / 99% OBW f LTE Band 5 (5 MHz BW) / Middle Channel 836.5 MHz / QPSK / 26dB BW FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page60of124 2.6SPURIOUS EMISSION AT BAND EDGE 2.6.1Specification Reference FCC 47 CFR Part 2, Clause 2.1051 FCC 47 CFR Part 22, Clause 22.917(a)(b) FCC 47 CFR Part 24, Clause 24.238(a)(b) RSS-132, Clause 5.5 RSS-133, Clause 6.5 2.6.2Standard Applicable In the 1.0 MHz bands immediately outside and adjacent to the equipment’s operating frequency block, the emission power per any 1% of the emission bandwidth shall be attenuated (in dB) below the transmitter output power P (dBW) by at least 43 + 10 log10 p(watts). 2.6.3Equipment Under Test and Modification State Serial No: AZ280418A00044 / Test Configuration A 2.6.4Date of Test/Initial of test personnel who performed the test July 16 and 17, 2018 / XYZ 2.6.5Test Equipment Used The major items of test equipment used for the above tests are identified in Section 3.1. 2.6.6Environmental Conditions/ Test Location Test performed at TÜV SÜD America Inc. Rancho Bernardo facility Ambient Temperature 24.9 - 25.1°C Relative Humidity53.7 % ATM Pressure99.0 kPa 2.6.7Additional Observations •This is a conducted test. •The path loss were measured and entered as a level offset. •RBW is set to minimum 1% of EBW and VBW is set to >3 x RBW in the 1 MHz band immediately outside and adjacent to the channel edge. •For WCDMA/LTE Band 5, RBW was set 1% of the Emission Bandwidth, and for emissions more than 1.0 MHz outside the equipment’s operating frequency block, the limit is set to: -13 + 10lg (RBW used /100kHz) dBm. •For WCDMA/LTE Band 2, RBW was set 1% of the Emission Bandwidth, and for emissions more than 1.0 MHz outside the equipment’s operating frequency block, the limit is set to: -13 + 10lg (RBW used /1 MHz) dBm. •Only worst case configuration for all technologies presented in this test report. FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page61of124 2.6.8Test Results WCDMA Band 2/Low Channel 1852.4 MHz / Band Edge @ 1850 MHz WCDMA Band 2/High Channel 1907.6 MHz / Band Edge @ 1910 MHz FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page62of124 WCDMA Band 5/Low Channel 826.4 MHz / Band Edge @ 824 MHz WCDMA Band 5/High Channel 846.6 MHz / Band Edge @ 849 MHz FCC ID: PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633A Rev 1.0 Page63of124 LTE Band 2 (1.4 MHz BW)/QPSK/Low Chan…

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Test Report

Report No. 72140633E Rev 1.0March 2019 America Report On Application for Grant of Equipment Authorization of the Inseego Corp. MD8800 Wireless Module FCC CFR 47 Part 2, 24 and 27: 2018 RSS-133 Issue 6 January 2018 RSS-139 Issue 3 July 2015 RSS-130 Issue 2 February 2019 FCC ID PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633E Rev 1.0 Page2of94 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400FAX: 858 546 0364 REPORT ON TEST REPORT NUMBER PREPARED FOR Radio Testing of the Inseego Corp. MD8800 Wireless Module 72140633E Rev 1.0 Inseego Corp. 9605 Scranton Road, Suite 300 San Diego, CA 92121 USA CONTACT PERSONRoman Olmos Senior Regulatory Engineer (858) 812-0606 [email protected] PREPARED BYXiaoying Zhang Name Authorized Signatory Title: EMC/Wireless Test Engineer APPROVED BYFerdinand S. Custodio Name Authorized Signatory Title: Senior EMC Test Engineer/Wireless Team Lead DATEDMarch 28, 2019 FCC ID PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633E Rev 1.0 Page3of94 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400FAX: 858 546 0364 Revision History 72140633E Rev 1.0 Inseego Corp. MD8800 Wireless Module DATEOLD REVISIONNEW REVISIONREASON PAGES AFFECTED APPROVED BY 12/28/2018-Initial ReleaseFerdinand S. Custodio 03/28/2019Initial ReleaseRev 1.0Changed FCC IDAllFerdinand S. Custodio FCC ID PKRISGMD8800 IC: 3229A-MD8800 Report No. 72140633E Rev 1.0 Page4of94 TÜV SÜD AMERICA INC 10040 Mesa Rim Road San Diego, CA 92121-2912 Phone: 858 678 1400FAX: 858 546 0364 CONTENTS SectionPage No 1REPORT SUMMARY............................................................................................................................... 5 1.1Introduction ................................................................................................................................................ 6 1.2Brief Summary of Results............................................................................................................................ 8 1.3Product Information ................................................................................................................................... 9 1.4EUT Test Configuration ............................................................................................................................. 11 1.5Deviations from the Standard................................................................................................................... 14 1.6Modification Record ................................................................................................................................. 14 1.7Test Methodology..................................................................................................................................... 14 1.8Test Facility Location................................................................................................................................. 14 1.9Test Facility Registration ........................................................................................................................... 14 1.10Sample Calculations .................................................................................................................................. 16 2TEST DETAILS ...................................................................................................................................... 17 2.1Transmitter Conducted Power Measurements ........................................................................................ 18 2.2Effective Isotropic Radiated Power and Power Spectral Density.............................................................. 24 2.3Peak-Average Ratio ..............................................................................................................…

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Contact Information

Applicant

Roman Olmos(Sr. Staff Regulatory Engineer)
[email protected]858-812-3400Fax: 858-408-4345

Test Firm

TUV SUD America Inc.Mac Elliott
[email protected]813-284-2736Fax: 978 977 0182

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
123271.71 GHz - 1.78 GHz190.00 mW18M0W7D0.02 ppm
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Limited Modular Approval. Output power is ERP for Part 22 & Part 90 and EIRP for Part 24 & Part 27. Used by the grantee in its own products and not intended for sale to third parties. The antennas used for this transmitter shall be installed to provide a separation distance of at least 20cm from all persons. Users and installers must be provided with product operating instructions and applicable warnings to satisfy RF exposure compliance requirements.

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