
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
911702 Rev. 7.04 15November2013 AIRAVE 2.5 and 2.5+ User Guide ©2013 Sprint. Sprint and the logo are trademarks of Sprint. Other marks are trademarks of their respective owners. Important Messages Important Messages IMPORTANT: Sprint’s policies often do not apply to third-party applications. Third-party applications may access your personal information or require Sprint to disclose your customer information to the third-party application provider. To find out how a third-party application will collect, access, use, or disclose your personal information, check the application provider’s policies, which can usually be found on their website. If you aren’t comfortable with the third- party application’s policies, don’t use the application. i Table of Contents Introduction ................................................................................................................................ 3 Getting Started ........................................................................................................................... 4 Check What’s in the Box ........................................................................................................ 4 Set up at a glance .................................................................................................................. 4 Setting up Your AIRAVE™ ..................................................................................................... 5 External GPS Antenna Setup ................................................................................................. 8 When is Your AIRAVE Ready for Use? .................................................................................. 9 Setting up Optional Components ..............................................................................................10 PC or LAN Router Setup .......................................................................................................10 Configuring AIRAVE™ Router ...............................................................................................11 Adding Your ISP User Name and Password .............................................................................12 Using Your AIRAVE™ ...............................................................................................................15 How AIRAVE Works ..............................................................................................................15 Your Broadband Connection Speed ...................................................................................15 How Calls and Data Go Over the Internet ..........................................................................16 Maintenance ..........................................................................................................................16 Ventilation ..........................................................................................................................16 Cleaning ............................................................................................................................16 Troubleshooting ........................................................................................................................17 Troubleshooting Installation Problems ...................................................................................17 Troubleshooting Slow Connection When Laptop is Connected to the AIRAVE™ ..................18 Troubleshooting Voice Quality Issues ....................................................................................19 Resetting the AIRAVE ...........................................................................................................20 LED Quick Reference ............................................................................................................21 Using LEDs ...........................................................................................................................22 FAQs .....................................................................................................................................25 Why does the AIRAVE™ need a GPS antenna?................................................................25 Why does the AIRAVE™ need an external GPS antenna? ................................................25 What happens to the AIRAVE™ if there is a power outage or if you lose Internet access? 25 Can you move the AIRAVE™ to another location? ............................................................25 ii How do I know if my phone is connecting through the AIRAVE™? ....................................25 I have a DSL modem and cannot connect to the Internet ...................................................25 Getting Help ..........................................................................................................................26 Safety Information .....................................................................................................................27 General Precautions ..............................................................................................................27 FCC Information ....................................................................................................................28 ! FCC Radiation Exposure Statement ................................................................................28 FCC Part 15 .......................................................................................................................28 3 Introduction This User Guide introduces you to the SPRINT® AIRAVE™ service and all its features. It’s divided into four sections: ● Getting Started page 4 ● Setting up Optional Components page 10 ● Using Your AIRAVE™ page 15 ● Troubleshooting page 17 ● Safety Information page 27 Throughout this guide, you’ll find tips and techniques that help you make the most of your new device and service. The Table of Contents and Index also help you quickly locate sp…
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Airvana Train 8 Design Variations Page 1 of 6 Top of File Airvana Train 8 Design Variations Airvana Train Design Variations Page 2 of 6 Argylle Confidential REV0.1 TABLE OF CONTENTS TOP OF FILE 1 TABLE OF CONTENTS 2 1. REFERENCES 3 1.1 AIRVANA REFERENCE DOCUMENTS 3 1.2 COMPONENT SPECIFICATIONS 3 1.3 INDUSTRY-STANDARD REFERENCES 3 1.4 ACRONYMS 3 2. INTRODUCTION 4 2.1 RADIO BLOCK DIAGRAM 5 3. 750723 – 750722 DESIGN VARIATION 6 3.1 SAW COMPONENT VARIATION 6 Airvana Train Design Variations Page 3 of 6 Argylle Confidential REV0.1 1. References 1.1 Airvana Reference Documents 1. 750723 Schematic 2. 750722 Schematic 3. 700723 PCB Board File 4. 700722 PCB Board File 5. Train 8 Radio Block Diagram 1.2 Component Specifications 1. Airvana Part Number 130232 : Epcos B39202B9007E610 2. Airvana Part Number 130333 : Epcos B39202B9477P810 1.3 Industry-Standard References 1.4 Acronyms AAA: Authentication, Authorization, and Accounting Airvana Train 8 Design Variations Page 4 of 6 2. Introduction This document describes two model variations for the train 8 Airvana femto cell radio sub- system. These model variations are required to support end of life component issues and substitutions. The two model variations are described as follows: 750723: This model supports current production BC1 saw devices, FL2-FL6, which are due to be discontinued at some later date. 750722: This model supports current production BC1 saw devices which are replacement devices for FL2-FL6 in the 750723 assembly, and this design is expected to supersede the 750722 assembly, but may be manufactured in conjunction with the 750723 assembly. Airvana Train Design Variations Page 5 of 6 Argylle Confidential REV0.1 2.1 Radio Block Diagram Airvana Train Design Variations Page 6 of 6 Argylle Confidential REV0.1 3. 750723 – 750722 Design Variation 3.1 Saw Component Variation The 750723 contains BC1 saw devices FL2-FL6 which are becoming obsolete. These devices are used as filters for the BC1 transmit signals. The 750723 assembly contains the Airvana Part Number 130232 :Epcos B39202B9007E610 The 750722 assembly contains the Airvana Part Number 130333: Epcos B39202B9477P810 Then major difference with these devices are the footprints they use. The B39202B9007E610 has the following pcb footprint. The B39202B9477P810has the following pcb footprint.
Exterior Photos Representing 750722 and 750723
UNLESS OTHERWISE SPECIFIED -INTERPRET PER ASME Y14.5M 1994 -ALL DIMENSIONS IN INCHES -DO NOT SCALE DRAWING THIRD ANGLE PROJECTION LABEL; FCC PART 15; TRAIN8 THIS DOCUMENT CONTAINS INFORMATION WHICH IS THE EXCLUSIVE PROPERTY OF AIRVANA INC.. DISTRIBUTION, REPRODUCTION OR USE BY OTHERS IS NOT PERMITTED WITHOUT THE EXPRESS WRITTEN CONSENT OF AIRVANA INC. SIZEDRAWN BYPART NUMBERREV AK. CRAIG61015501 SCALE NONE CAD GENERATED DRAWINGSHEET 1 OF 2 TOLERANCES UNLESS OTHERWISE SPECIFIED X.X.XX.XXXANGLES INCHESN/A0.10.03 0.01 5 1° MATERIAL: FINISH: NOTE 1 REV.DESCRIPTIONDATEBY 01INITIAL ENGINEERING RELEASE10-28-2013KEC D C B A 4321 D C B A 4321 AIRVANA INC. 19 Alpha Rd. Chelmsford, MA 01824 (978) 250-4455 Notes: 1. Material: Label stock, Brady B483 Ribbon resin, R6007 2. Material and process used for fabrication of this part must be RoHS compliant Actual Size 1.125 0.400 This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. FCC ID: QHYHUBBUBC4502-RT This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. FCC ID: QHYHUBBUBC4502-RT SCALE 2/1 Model: HubBub C1-600-RT Rating: 12V 2A Made in China, Nov 2013 WARNING OF 911 LIMITATIONS: You may not be able to make phone calls, including to 911, in the event of an electrical power outage, broadband connection failure, termination of broadband service or other service disruption. 911 or enhanced 911 services may be limited in areas outside of Sprint’s wireless network coverage. Always be prepared to report your precise location. 800228-00-01 214357 SV This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. FCC ID: QHYHUBBUBC4502-RT
Board Pictures of 750722
Board Pictues of 750723
MPE Exhibit for Airvana Models 750722 &750723 1 Contents Model 750722 ........................................................................................................................................... 2 MPE for each transmitter ...................................................................................................................... 2 Combined MPE Calculation for 750722 ................................................................................................ 6 Model 750723 ........................................................................................................................................... 7 MPE for each transmitter ...................................................................................................................... 7 Combined MPE Calculation for 750723 .............................................................................................. 11 2 Model 750722 MPE for each transmitter Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 2 4 R PG S p = 750722: BC0 Maximum peak output power at the antenna terminal:5.3dBm Maximum peak output power at the antenna terminal:3.388mW Antenna gain (typical):0.0dBi Maximum antanna gain:1.0numeric Prediction distance:20cm Prediction frequency:879.6MHz MPE limit for uncontrolled exposure at prediction frequency:0.586400mW/cm^2 Power density at prediction frequency:0.000674mW/cm^2 Maximum allowable antenna gain:29.394638dBi 3 Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 2 4 R PG S p = 750722: BC10 Maximum peak output power at the antenna terminal: 3.4 dBm Maximum peak output power at the antenna terminal: 2.188 mW Antenna gain (typical): 0.0 dBi Maximum antanna gain: 1.0 numeric Prediction distance: 20 cm Prediction frequency: 862.9 MHz MPE limit for uncontrolled exposure at prediction frequency: 0.575267 mW/cm^2 Power density at prediction frequency: 0.000435 mW/cm^2 Maximum allowable antenna gain: 31.211391 dBi 4 Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 2 4 R PG S p = 750722: BC1 (EVDO) Maximum peak output power at the antenna terminal: 28.2 dBm Maximum peak output power at the antenna terminal: 660.693 mW Antenna gain (typical): 0.0 dBi Maximum antanna gain: 1.0 numeric Prediction distance: 20 cm Prediction frequency: 1956.25 MHz MPE limit for uncontrolled exposure at prediction frequency: 1.000000 mW/cm^2 Power density at prediction frequency: 0.131441 mW/cm^2 Maximum allowable antenna gain: 8.812699 dBi 5 Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 2 4 R PG S p = 750722: BC1 (One-X) Maximum peak output power at the antenna terminal: 20.9 dBm Maximum peak output power at the antenna terminal: 123.027 mW Antenna gain (typical): 0.0 dBi Maximum antanna gain: 1.0 numeric Prediction distance: 20 cm Prediction frequency: 1956.25 MHz MPE limit for uncontrolled exposure at prediction frequency: 1.000000 mW/cm^2 Power density at prediction frequency: 0.024475 mW/cm^2 Maximum allowable antenna gain: 16.112699 dBi 6 Combined MPE Calculation for 750722 Requirement: Results: If [ Pd(1) / LPd(1) ] + [ Pd(2) / LPd(2) ] + ..... + [ Pd(n) / LPd(n) ] < 1, then device complies with FCC’s RF radiation exposure limit for general population for a mobile device. Where; Pd(n) = Power density of n th transmitter at 20cm LPd(n) = Power density limit for the n th transmitter The highest gain values were used for antenna gain. MPE for entire product: 750722 (power density) (MPE limit) (pwr density / limit) mW/cm^2 mW/cm^2 numeric BC0/BC10 0.000674 0.5864 0.001150 BC1 (EVDO) 0.131441 1.0000 0.131441 BC1 (One-X) 0.024475 1.0000 0.024475 SUM: 0.157066 OVERALL LIMIT: 1.0 RESULT: Pass 7 Model 750723 MPE for each transmitter Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 2 4 R PG S p = 750723: BC0 Maximum peak output power at the antenna terminal: 2.3 dBm Maximum peak output power at the antenna terminal: 1.698 mW Antenna gain (typical): 0.0 dBi Maximum antanna gain: 1.0 numeric Prediction distance: 20 cm Prediction frequency: 879.6 MHz MPE limit for uncontrolled exposure at prediction frequency: 0.586400 mW/cm^2 Power density at prediction frequency: 0.000338 mW/cm^2 Maximum allowable antenna gain: 32.394638 dBi 8 Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna 2 4 R PG S p = 750723: BC10 Maximum peak output power at the antenna terminal: 3.0 dBm Maximum peak output power at the antenna terminal: 1.995 mW Antenna gain (typical): 0.0 dBi Maximum antanna gain: 1.0 numeric Prediction distance: 20 cm P…
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Curtis-Straus LLC is accredited by the American Association for Laboratory Accreditation for the specific scope of accreditation under Certificate Number 1627-01. This report may contain data which is not covered by the A2LA accreditation. ____________________________________________________________ Curtis-Straus LLC, a wholly owned subsidiary of BV CPS One Distribution Center Circle, #1 Littleton, MA TEL (978) 486-8880 FAX (978) 486-8828 page 1 of 106 Test Report Curtis-Straus LLC, a wholly owned subsidiary of BV CPS Report No EN2817-1 Client Airvana Address 19 Alpha Road Chelmsford, MA 01824 Phone 978-250-2622 Item tested Femto Cell 750722 and Femto Cell 750723 FCC ID QHYHUBBUBC4502-RT FRN 0021466594 Equipment Type PCS Licensed Transmitter Equipment Code PCB Emission Designator 1M27D7D FCC Rule Parts 47 CFR 22 Subpart H 47 CFR 24 Subpart E 47 CFR 90 Subpart S Test Dates November 4-8 & 11-13, 2013, and January 17, 2014 Results As detailed within this report Prepared by Arik Zwirner Authorized by Mairaj Hussain – EMC Supervisor Issue Date January 17, 2014 REPORT: EN2817-1 January 17, 2014 ______________________________________________________________________ ____________________________________________________________ Curtis-Straus LLC, a wholly owned subsidiary of BV CPS One Distribution Center Circle, #1 Littleton, MA TEL (978) 486-8880 FAX (978) 486-8828 page 2 of 106 Contents CONTENTS ............................................................................................................................................................. 2 SUMMARY ............................................................................................................................................................. 4 DESCRIPTION OF MODEL VARIATIONS ................................................................................................................... 5 TEST METHODOLOGY............................................................................................................................................. 6 PRODUCT TESTED - CONFIGURATION DOCUMENTATION ...................................................................................... 7 Model 750722 ....................................................................................................................................................... 7 Model 750723 ....................................................................................................................................................... 8 STATEMENT OF CONFORMITY ............................................................................................................................... 9 MODEL 750722 TEST DATA AND RESULTS ............................................................................................................ 10 TESTS SPECIFIC TO PART 22 ........................................................................................................................................... 10 Bandwidth ........................................................................................................................................................... 10 ERP ...................................................................................................................................................................... 14 Band Edge Measurements .................................................................................................................................. 15 Conducted Spurious Emissions at Antenna Port ................................................................................................. 18 TESTS SPECIFIC TO PART 24 ........................................................................................................................................... 22 Bandwidth ........................................................................................................................................................... 22 EIRP ..................................................................................................................................................................... 29 Band Edge Measurements .................................................................................................................................. 30 Conducted Spurious Emissions at Antenna Port ................................................................................................. 35 TESTS SPECIFIC TO PART 90 ........................................................................................................................................... 42 Occupied Bandwidth ........................................................................................................................................... 42 ERP ...................................................................................................................................................................... 46 Emission Mask .................................................................................................................................................... 47 Conducted Spurious Emissions at Antenna Port ................................................................................................. 50 TESTS FOR PARTS 22, 24, & 90: SPURIOUS EMISSIONS AND FREQUENCY STABILITY .................................................................. 53 Radiated Spurious Emissions Measurements ...................................................................................................... 53 Frequency Stability .............................................................................................................................................. 55 CONDUCTED SPURIOUS EMISSIONS ON AC MAINS ............................................................................................................. 56 MODEL 750723 TEST DATA AND RESULTS .............................................................................…
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1 Test Photos for 75072 and 750723 Contents Model 750722 ........................................................................................................................................... 2 Occupied Bandwidth, Conducted Spurious Emissions at Antenna Port, Band Edge and Emissions Mask ...................................................................................................................................................... 2 ERP for BC1 (One-X) and BC1 (EVDO) ................................................................................................... 3 EPR / EIRP for BC0 and BC10 ................................................................................................................. 5 Radiated Spurious Emissions Measurements ....................................................................................... 7 Conducted Spurious Emissions on AC Mains ...................................................................................... 10 Frequency Stability .............................................................................................................................. 12 Model 750723 ......................................................................................................................................... 13 Occupied Bandwidth, Conducted Spurious Emissions at Antenna Port, Band Edge and Emissions Mask .................................................................................................................................................... 13 ERP for BC1 (One-X) and BC1 (EVDO) ................................................................................................. 14 EPR / EIRP for BC0 and BC10 ............................................................................................................... 16 Radiated Spurious Emissions Measurements ..................................................................................... 18 Conducted Spurious Emissions on AC Mains ...................................................................................... 21 Frequency Stability .............................................................................................................................. 23 2 Model 750722 Occupied Bandwidth, Conducted Spurious Emissions at Antenna Port, Band Edge and Emissions Mask 3 ERP for BC1 (One-X) and BC1 (EVDO) 4 5 EPR / EIRP for BC0 and BC10 6 7 Radiated Spurious Emissions Measurements 8 9 10 Conducted Spurious Emissions on AC Mains 11 12 Frequency Stability 13 Model 750723 Occupied Bandwidth, Conducted Spurious Emissions at Antenna Port, Band Edge and Emissions Mask 14 ERP for BC1 (One-X) and BC1 (EVDO) 15 16 EPR / EIRP for BC0 and BC10 17 18 Radiated Spurious Emissions Measurements 19 20 21 Conducted Spurious Emissions on AC Mains 22 23 Frequency Stability 24
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 9 | 862.9 MHz - 867.9 MHz | 2.19 mW | 1M43F9W | 1.5 ppm |

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