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Q9DAPINR108109APINR108, APINR109 Wireless LAN Access Point

Hewlett Packard Enterprise Company
APINR108, APINR109 Wireless LAN Access Point - FCC ID Q9DAPINR108109 - Hewlett Packard Enterprise Company
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Dec 11, 2012
Application Purpose
Original Equipment
Date of Application
Nov 29, 2012
Equipment Note
APINR108, APINR109 Wireless LAN Access Point
Frequency Range
5190.00000000 - 5230.00000000
Company
Hewlett Packard Enterprise Company
Country
United States

Documents & Files

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Users Manual

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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

Aruba RAP-108 and RAP-109 Remote Access Point Installation Guide The Aruba RAP-108 and RAP-109 are dual-radio, dual-band remote access points that supports the IEEE 802.11n standard for high-performance WLAN. These access point uses MIMO (Multiple-in, Multiple-out) technology and other high- throughput mode techniques to deliver high-performance, 802.11n 2.4 GHz and 5 GHz functionality while simultaneously supporting existing 802.11a/b/g wireless services. The RAP-108/RAP-109 ships with Aruba Instant software. Therefore, out of the box, the RAP-108/RAP-109 will operate as a Virtual Controller (VC) or an Instant AP. However, the RAP-108/RAP-109 can be converted to operate as a Remote AP (RAP). For information about the IAP to RAP conversion, see RAP Conversion. The Aruba RAP-108/RAP-109 remote access point provides the following capabilities: Wireless transceiver Protocol-independent networking functionality IEEE 802.11a/b/g/n operation as a wireless access point IEEE 802.11a/b/g/n operation as a wireless air monitor Compatibility with IEEE 802.3af and 802.3at Package Contents RAP-108 or RAP-109 Remote Access Point RAP-108/RAP-109 Mounting Stand Installation Guide RAP-108/RAP-109 Hardware Overview Figure 1 Ports Reset Button The reset button can be used to return the AP to factory default settings. To reset the AP: 1. Power off the AP. 2. Press and hold the reset button using a small, narrow object, such as a paperclip. 3. Power-on the AP without releasing the reset button. The power LED will flash within 5 seconds. 4. Release the reset button. The power LED will flash again within 15 seconds indicating that the reset is completed. The AP will now continue to boot with the factory default settings. USB Interface The RAP-108/RAP-109 is equipped with a USB interface for connectivity with cellular modems. Console Port Use the console port to connect to a terminal for direct local management. ENET 0 For primary network connectivity, RAP-108/RAP-109 is equipped with a 10/100/ 1000BASE-T (RJ-45) auto-sensing, MDI/MDX Gigabit Ethernet port. This port supports IEEE 802.3af Power over Ethernet (PoE) compliance, accepting 48VDC as a standard defined Powered Device (PD) from a Power Sourcing Equipment (PSE) such as a PoE midspan injector, or network infrastructure that supports PoE. ENET 1 For secondary network connectivity, RAP-108/RAP-109 is equipped with a 10/ 100BASE-T (RJ-45) auto-sensing, MDI/MDX Fast Ethernet port. DC Power Socket If PoE is not available, an optional Aruba AP AC-DC adapter kit (sold separately) can be used to power the RAP-108/RAP-109. External Antenna Connectors (RAP-108 Only) The RAP-108 is equipped with two RP-SMA external antenna connectors and requires the use of two dual-band antennas. These ports are marked ANT0 and ANT1, matching radio chains 0 and 1. In order to ensure accurate RF power level setting and reporting in software, as well as compliance with any regulatory restrictions, the correct gain for antennas used (adjusted for any additional cabling loss, if applicable) needs to be entered in software when provisioning the RAP-108. Two antenna gain numbers are needed for this; one for each supported band (2.4GHz and 5GHz). These numbers can be obtained from the antenna datasheet or specifications. Antenna gain for RAP-109 is hardcoded to the correct values already, so there is no need for any additional action on that platform. Figure 2 LEDs LEDs PWR: Indicates whether or not the RAP-108/RAP-109 is powered-on ENET0 and ENET1: Indicates the status of the RAP-108/RAP-109’s Ethernet ports 5 GHz: Indicates the status of the 802.11a/n radio 2.4 GHz: Indicates the status of the 802.11b/g/n radio Installing the AP Tabletop Mounting The RAP-108/RAP-109 is shipped with a stand to use on flat (i.e. table top) surfaces. Place the RAP-108/RAP-109 in the stand (see Figure 3) and place the stand on a flat, level surface. To attach the RAP to the stand: 1. Align the center peg of the stand with recessed hole on the unit. 2. Align the mounting posts on the back of the AP with corresponding openings on the stand. 3. Rotate the AP clockwise until it clicks into place. Figure 3 Stand Installation Connecting the Required Cables The RAP-108/RAP-109 must be connected to a network device that has access to the Internet, such as a router or modem. To complete the installation of the RAP- 108/RAP-109: 1. Connect one end of the provided RJ-45 cable to port E0 on the RAP-108/RAP- 109. 2. Connect the other end of the RJ-45 cable to a free RJ-45 port on your modem or router. 3. Attach the provided power adapter to the DC IN port on the RAP-108/RAP- 109. 4. Connect the other end of the power adapter to a power outlet. The RAP-108/RAP-109 is now powered on. To verify this, ensure that the PWR LED is solid green. Verifying Successful Installation Once the RAP-108/RAP-109’s PWR LED has come up, the device will take 2 to 3 minutes to complete the boot cycle. Once the boot cycle is complete, you can connect to your company or corporate network. RAP Conversion If your network administrator has instructed you to convert the RAP-108/RAP- 109 to work in RAP mode, follow the process below to complete the RAP conversion. 1. Power up the RAP-108/RAP-109. 2. Connect to Instant SSID. 3. Login to the RAP-108/RAP-109 by navigating to http:// instant.arubanetworks.com and login to the Instant WebUI. The default username is admin and the default password is admin. See the included Aruba Instant Quick Start Guide for more information. 4. Navigate to the Maintenance tab in the top right. 5. Click on the Convert tab. 6. Select Remote APs managed by a Mobility Controller from the drop down menu. 7. Enter the IP address of the controller. This is provided by your network administrator. 8. Click Convert Now to complete the conversion (see Figure 4). 9. The RAP-108/RAP-109 will reboot and begin operating in RAP mode. Figure 4 IAP-RAP Conversion over the Internet The RAP-108/RAP-109 requires Aruba Instant 3…

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Cover Letter(s)

Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 November 14, 2012 Re: SDR Certification Company name: Aruba Networks, Inc. FCC ID: Q9DAPINR108109 Gentlemen, In accordance with 0.459 of CFR 47, Aruba Networks, Inc. hereby requests confidentiality of following documents for the subject application:  Electrical Schematics  Block Diagram  Theory of Operations - Operational Description  SDR Security Description Guide - Aruba_Secure_Mobility_System_SDR  Bill of Materials These documents contain detailed system and equipment description and related information about the product which Aruba Networks considers to be proprietary, confidential and a custom design and otherwise would not release to the general public. Since the design is a basis from which future technological products will evolve, Aruba Networks considers that this information would be of benefit to its competitors and that the disclosure of the information in these documents would give competitors an unfair advantage in the market. Sincerely, Signature Ivaylo Tankov Compliance Manager Aruba Networks, Inc. 1344 Crossman Ave., Sunnyvale, CA 94089 Tel: (408) 227 4500 Email: [email protected]

Cover Letter(s)

Letter of Authorization November 14, 2012 Company: Aruba Networks, Inc. Address: 1344 Crossman Ave, Sunnyvale, CA 94089 Model: APINR108 and APINR109 including IAP variants We authorize MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566, USA, to act on our behalf on all matters concerning the above named equipment. This shall include the following: - Testing - Approval applications and procedures - Payment of approval fees We declare that MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566, USA, is allowed to forward all information related to the approval project to the applied notified body and to the notification entities and to discuss any issues concerning the approval application. Any and all acts carried out by MiCOM Labs on our behalf shall have the same effect as acts of our own. This authorization is valid for 90 (ninety) days. Sincerely, Signature Name:Ivaylo Tankov Title:Compliance Manager Aruba Networks, Inc. 1344 Crossman Ave., Sunnyvale, CA 94089 Tel: (408) 227 4500 Email: [email protected]

External Photos

APINR108 and APINR109 Remote Access points External Photos Photo 1 – APINR108 Top View Photo 2 – APINR108 Top View Photo 3 – APINR109 Top View Photo 4 – APINR109 Top View Photo 5 – APINR108 Bottom View Photo 6 – APINR108 & APINR109 Bottom View - connectors

ID Label/Location Info

Letter of Authorization November 21, 2012 Company: Aruba Networks, Inc. Address: 1344 Crossman Ave, Sunnyvale, CA 94089 FCC ID: Q9DAPINR108109 To whom it my concern, FCC Certification will be submitted as SDR for the Equipment marketed under the FCC ID listed above will be labeled with electronic label according (Section 2.944). Sincerely, Name: Ivaylo Tankov Title: Compliance Manager Aruba Networks, Inc. 1344 Crossman Ave., Sunnyvale, CA 94089 Tel: (408) 227 4500 Email: [email protected]

Internal Photos

APINR108 and APINR109 Remote Access points Internal Photos Photo 1 – APINR108 Assembly Photo 2 – APINR10p Assembly Photo 3 – Main Board Back View with shield Photo 4 – Main Board Back View shield removed Photo 5 – Main Board Top View shield removed Photo 6 – APINR108 & APINR109 Main Board Radio part shield removed

RF Exposure Info

Maximum Permissible Exposure Aruba Network APINR108, APINR109 FCC, Part 15 Subpart C §15.407(f) Industry Canada RSS-Gen §5.6 Calculations for Maximum Permissible Exposure Levels Power Density = Pd (mW/cm 2 ) = EIRP/(4d 2 ) EIRP = P * G P = Peak output power (mW) G = Antenna numeric gain (numeric) d = Separation distance (cm) Numeric Gain = 10 ^ (G (dBi)/10) Because the EUT belongs to the General Population/Uncontrolled Exposure the limit of power density is 1.0 mW/cm 2 Note: for mobile or fixed location transmitters the minimum separation distance is 20cm, even if calculations indicate the MPE distance to be less. Specification Maximum Permissible Exposure Limits FCC §1.1310 Limit = 1mW / cm 2 from 1.310 Table 1 RSS-Gen §5.6 Category I and Category II equipment shall comply with the applicable requirements of RSS-102. Laboratory Measurement Uncertainty for Power Measurements Measurement uncertainty 1.33 dB 5250 – 5350 MHz Antenna Model Type Ant Gain (dBi) Numeric Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Calculated Safe Distance @ 1mW/cm 2 Limit(cm) Power Density @ 20cm (mW/cm 2 ) AP-ANT-1B Omni 5.8 4 16.16 41.30 3.54 0.03 AP-ANT-13B Omni 3.3 2 16.16 41.30 2.65 0.02 AP-ANT-16 Omni 4.7 3 16.16 41.30 3.11 0.02 AP-ANT-17 Directional 120 Deg 5.0 3 16.16 41.30 3.22 0.03 AP-ANT-18 Directional 60 Deg 7.5 6 14.66 29.24 3.62 0.03 AP-ANT-19 Omni 6.0 4 16.16 41.30 3.62 0.03 *Note: for mobile or fixed location transmitters the minimum separation distance is 20cm, even if calculations indicate the MPE distance to be less.

Test Report

COVER PAGE Test of Aruba Networks APINR108, APINR109 Wireless AP To: FCC 47 CFR Part 15.407 & IC RSS-210 Test Report Serial No.: ARUB120-U2 Rev A TITLE PAGE TEST REPORT FROM Test of Aruba Networks APINR108, APINR109 Wireless AP to To FCC 47 CFR Part 15.407 & IC RSS-210 Test Report Serial No.: ARUB120-U2 Rev A Note: this report contains data with regard to the 5,150 to 5,250 MHz band for Aruba Networks, APINR108, APINR109 Wireless Access Point. 2.4 and 5.8 GHz test data are reported in MiCOM Labs test report ARUB120-U1 This report supersedes None Applicant: Aruba Networks 1344 Crossman Avenue Sunnyvale California 94089, USA Product F unction:Wireless Access Point Copy No: pdf Issue Date: 28th November 2012 This Test Report is Issued Under the Authority of; MiCOM Labs, Inc. 440 Boulder Cour t, Suite 200 Pleasanton, CA 94566 USA Phone: +1 (925) 462-0304 Fax: +1 (925) 462-0306 www.micomlabs.com TEST CERTIFICATE #2381.01 MiCOM Labs is an ISO 17025 Accredited Testing Laboratory This test report may be reproduced in full only. The document may only be updated by MiCOM Labs personnel. Any changes will be noted in the Document History section of the report. Title: Aruba Networks APINR108, APINR109 Wireless AP To: Serial #: Issue Date: Page: FCC 47 CF R Part 15.407 & IC RSS-210 ARUB120-U2 Rev A 28th November 2012 3 of 130 This test report may be reproduced in full only. The document may only be updated by MiCOM Labs personnel. Any changes will be noted in the Document History section of the report. MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566 USA, Phone: 925.462.0304, Fax: 925.462.0306, www.micomlabs.com This page has been left intentionally blank Title: Aruba Networks APINR108, APINR109 Wireless AP To: Serial #: Issue Date: Page: FCC 47 CF R Part 15.407 & IC RSS-210 ARUB120-U2 Rev A 28th November 2012 4 of 130 This test report may be reproduced in full only. The document may only be updated by MiCOM Labs p ersonnel. Any changes will be noted in the Document History section of the report. MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566 USA, Phone: 925.462.0304, Fax: 925.462.0306, www.micomlabs.com TABLE OF CONTENTS ACCREDITATION, LISTINGS & RECOGNITION ............................................................. 5 TESTING ACCREDITATION ..............................................................................................5 RECOGNITION ...................................................................................................................6 PRODUCT CERTIFICATION ..............................................................................................7 1. TEST RESULT CERTIFICATE.................................................................................... 9 2. REFERENCES AND MEASUREMENT UNCERTAINTY ........................................ 10 2.1. Normative References..............................................................................................10 2.2. Test and Uncertainty Procedures.............................................................................11 3. PRODUCT DETAILS AND TEST CONFIGURATIONS ........................................... 12 3.1. Technical Details ......................................................................................................12 3.2. Scope of Test Program ............................................................................................13 3.3. Equipment Model(s) and Serial Number(s) ..............................................................17 3.4. Antenna Details ........................................................................................................17 3.5. Cabling and I/O Ports ...............................................................................................17 3.6. Test Configurations ..................................................................................................18 3.7. Equipment Modifications ..........................................................................................19 3.8. Deviations from the Test Standard...........................................................................19 3.9. Subcontracted Testing or Third Party Data ..............................................................19 4. TESTING EQUIPMENT CONFIGURATION(S) ........................................................ 20 4.1. Conducted RF Emission Test Set-up .......................................................................20 4.2. Radiated Spurious Emission Test Set-up > 1 GHz ..................................................21 4.3. Digital Emissions Test Set-up (0.03 – 1 GHz)..........................................................22 4.4. ac Wireline Emission Test Set-up ............................................................................23 5. TEST SUMMARY....................................................................................................... 24 6. TEST RESULTS ........................................................................................................ 26 6.1. Device Characteristics..............................................................................................26 6.1.1. Conducted Testing ..................................................................................... 26 6.1.2. Radiated Emission Testing ........................................................................ 46 6.1.3. AC Wireline Conducted Emissions (150 kHz – 30 MHz) ........................... 76 7. PHOTOGRAPHS ....................................................................................................... 78 7.1. Test Setup - Digital Emissions below 1 GHz............................................................78 7.2. Radiated Emissions Test Setup >1 GHz – ANT-19 .................................................79 8. TEST EQUIPMENT DETAILS ................................................................................... 80 APPENDIX ...........................................................…

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Contact Information

Applicant

Mark Hill(Principal Engineer)
[email protected]650-236-7322Fax: 408-227-4550

Technical Contact

MiCOM LabsBill Graff
[email protected](925)4620304

440 Boulder Court · Pleasanton · United States

Test Firm

Micom LabsGordon Hurst
[email protected]925-462-0304Fax: 925-462-0306

Technical Specifications

#Rule PartsFrequency RangePower Output
215E5.19 GHz - 5.23 GHz42.00 mW
Software Defined Radio
Yes
Confidentiality
Long Term
Grant Notes
Power Output listed is Conducted. The antennas used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with accepted multi-transmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. End users and installers must understand and be provided with the outdoor usage prohibition instructions when using the 5150-5250 MHz Band.

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