FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Hewlett Packard Enterprise Company/
  3. Q9DAPIN0114115

Q9DAPIN0114115Wireless Access Point

Hewlett Packard Enterprise Company
Wireless Access Point - FCC ID Q9DAPIN0114115 - Hewlett Packard Enterprise Company
Click to zoom

Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Aug 25, 2013
Application Purpose
Original Equipment
Date of Application
Aug 06, 2013
Equipment Note
Wireless Access Point
Frequency Range
5755.00000000 - 5795.00000000
Company
Hewlett Packard Enterprise Company
Country
United States

Documents & Files

Select a file to view

Users Manual

↗

Cover Letter(s)

↗
↗

External Photos

↗

ID Label/Location Info

↗
↗
↗

Internal Photos

↗

RF Exposure Info

↗

Test Report

↗
↗

Test Setup Photos

↗

Document Text

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

Users Manual

AP-110 Series Wireless Access Point Installation Guide The Aruba AP-114 and AP-115 wireless access points support the IEEE 802.11n standard for high-performance WLAN. These access points use 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 AP-110 Series access points work only in conjunction with an Aruba Controller. The Aruba AP-110 Series 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 802.3at PoE+ and 802.3af PoE Central management configuration and upgrades through a controller Package Contents AP-114 or AP-115 access point 9/16" and 15/16” Ceiling Rail Adapters Installation guide (this document) AP-110 Series Hardware Overview Figure 1 AP-110 Series LEDs LEDs The AP-110 Series is equipped with four LEDs that indicate the status of the various components of the AP. PWR: Indicates whether or not the AP-110 Series is powered-on ENET: Indicates the status of the AP-110 Series’ Ethernet port 5 GHz: Indicates the status of the 802.11a/n radio 2.4 GHz: Indicates the status of the 802.11b/g/n radio Figure 2 AP-110 Series Side (AP-114 shown) External Antenna Connectors The AP-114 is equipped with three external antenna connectors. The connectors are labeled ANT0, ANT1, and ANT2, and correspond to radio chains 0, 1, and 2. USB Interface The AP-110 Series is equipped with a USB interface for connectivity with cellular modems. Figure 3 AP-110 Series Rear Console Port The serial console port allows you to connect the AP to a serial terminal or a laptop for direct local management. This port is an RJ-45 female connector with the pinouts described in Figure 4. Connect it directly to a terminal or terminal server using an Ethernet cable. Figure 4 Serial Port Pin-Out Ethernet Port AP-110 Series is equipped with one 10/100/1000Base-T (RJ-45) auto-sensing, MDI/MDX wired-network connectivity port. This port supports IEEE 802.3af and 802.3at Power over Ethernet (PoE) compliance, accepting 48 VDC (nominal) 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. The 10/100/1000 Mbps Ethernet ports are on the bottom of the AP. These ports have RJ-45 female connectors with the pin-outs shown in Figure 5. Figure 5 Gigabit Ethernet Port Pin-Out DC Power Socket If PoE is not available, an optional Aruba AP AC-DC adapter kit (sold separately) can be used to power the AP-110 Series. Additionally, a locally-sourced AC-to-DC adapter (or any DC source) can be used to power this device, as long as it complies with all applicable local regulatory requirements and the DC interface meets the following specifications: 12 VDC (+/- 5%)/18W Center-positive 1.7/4.0 mm circular plug, 9.5 mm length 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. Before You Begin Pre-Installation Network Requirements After WLAN planning is complete and the appropriate products and their placement have been determined, the Aruba controller(s) must be installed and initial setup performed before the Aruba APs are deployed. For initial setup of the controller, refer to the ArubaOS Quick Start Guide for the software version installed on your controller. AP Pre-Installation Checklist Before installing your AP-110 Series AP, ensure that you have the following: CAT5e or better UTP cable of required length One of the following power sources: IEEE 802.3at or 802.3af-compliant Power over Ethernet (PoE) source. The POE source can be any power source equipment (PSE) controller or midspan PSE device Aruba AP AC-DC adapter kit (sold separately) Aruba Controller provisioned on the network: Layer 2/3 network connectivity to your access point One of the following network services: Aruba Discovery Protocol (ADP) DNS server with an “A” record DHCP Server with vendor-specific options Summary of the Setup Process Successful setup of an AP-110 Series access point consists of five tasks, which must be performed in this order: 1. Verify pre-installation connectivity. 2. Identify the specific installation location for each AP. 3. Install each AP. 4. Verify post-installation connectivity. 5. Configure each AP. Verifying Pre-Installation Connectivity Before you install APs in a network environment, make sure that the APs are able to locate and connect to the controller after power on. Specifically, you must verify the following conditions: When connected to the network, each AP is assigned a valid IP address APs are able to locate the controller Refer to the ArubaOS Quick Start Guide for instructions on locating and connecting to the controller. Identifying Specific Installation Locations You can mount the AP-110 Series access point on a wall or on the ceiling. Use the AP placement map generated by Aruba’s Airwave VisualRF Plan software application to determine the proper installation location(s). Each location should be as close as possible to the center of the intended coverage area and should be free from obstructions or obvious sources of interference. These RF absorbers/reflectors/interference sources will impact RF propagation and should have been accounted for during the planning phase and adjusted for in VisualRF plan…

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

Cover Letter(s)

7/24/2013 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 Request for Confidentiality Company name: Aruba Networks Inc. FCC ID: Q9DAPIN0114115 FCC Part 15 Certification Gentlemen, Pursuant to 47 CFR 0.457(d)(1)(ii) and 0.459 Aruba Networks Inc. hereby requests permanent confidentiality of the following documents for the subject application: Exhibit Type File Name Description Operational Description APIN0114 APIN0115 operational description Theory of operations Software Security Description Aruba Secure Mobility System SDR 2013- 07-24 SDR security description Professional Installation Instructions APIN0114_ProfInstall-Instruction Professional Installation Instructions Electrical Schematics APIN0115_ElSchematics_20130129A_B09 Electrical Schematics Block Diagram APIN0114_APIN0115_Block Diagram Block Diagram BOM APIN0114-APIN0115 BOM_Explosion_Report_0621 Bill of Materials Note: Any exhibit NOT granted Confidential status is viewable on the FCC website as soon as the Grant is issued. Reason why the material should be withheld from public inspection: These documents contain detailed system, equipment description and related information about the product which Aruba Networks Inc. considers proprietary, confidential, and a custom design not otherwise available to the general public. State why the information is a “trade secret”; Since the design is a basis from which future products will evolve, Aruba Networks Inc. considers that this information would be of significant benefit to its competitors and that disclosure would give competitors an unfair advantage in the marketplace. Trade secret” information is information which is not generally known or reasonably ascertainable, by which a business can obtain an economic advantage over competitors. The information is not normally released to any party or person outside the company. Sincerely, Name: Ivaylo Tankov Company: Aruba Networks Title: Compliance Manager Date: 7/24/2013

Cover Letter(s)

Letter of Authorization July 24, 2013 Company: Aruba Networks, Inc. Address: 1344 Crossman Ave, Sunnyvale, CA 94089 Model: APIN0114 and APIN0115 including Instant 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

External Photos for APIN0114 and APIN0115 Photo 1‐ APIN0114Front View Photo 2‐ APIN0115 Front View Photo 3‐ APIN0114 Back View Photo 4‐ APIN0115 Back View Photo 5‐ APIN0114 Antenna Connectors View

ID Label/Location Info

2013.5.22 white PET AP114Label/Aruba 1 1 1 932AJX00KP Text and graphic color:PANTONE COOL GRAY 3 C Background color:BLACK NOTE: 1. DIMENSIONS IN MILLIMETERS 2. THICKNESS: 0.1MM 3. MATERIAL: #75 white PET GLOSSY, ADHESIVE BACKED, UL APPROVED STOCK LABEL, UL APPROVED INK 4. GRAPHICS AND TEXT: Pantone Cool Gray 3C Notes: 1.材質:75#白色特多龍, 上霧PP, 背壓克力膠 2.印刷顏色:如图 3.尺寸公差:0/-0.2mm 4.所使用材料需符合Rohs Aruba Networks, Inc. Model: APIN0114 IC: 4675A-APIN0114115 FCC ID: Q9DAPIN0114115 N19592

ID Label/Location Info

2013.5.21 white PET AP115Label/Aruba 1 5 1 932AJX00KP Text and graphic color:PANTONE COOL GRAY 3 C Background color:BLACK NOTE: 1. DIMENSIONS IN MILLIMETERS 2. THICKNESS: 0.1MM 3. MATERIAL: #75 white PET GLOSSY, ADHESIVE BACKED, UL APPROVED STOCK LABEL, UL APPROVED INK 4. GRAPHICS AND TEXT: Pantone Cool Gray 3C Notes: 1.材質:75#白色特多龍, 上霧PP, 背壓克力膠 2.印刷顏色:如图 3.尺寸公差:0/-0.2mm 4.所使用材料需符合Rohs Aruba Networks, Inc. Model: APIN0115 IC: 4675A-APIN0114115 FCC ID: Q9DAPIN0114115 N19592

ID Label/Location Info

Page 1 Electronic Labeling APIN0114 and APIN0115 The device is electronically labeled and the FCC ID:Q9DAPIN0114115 will be displayed via the controller WebUI under the about menu. Reference: 784748 D01 Labeling Part 15 &18 Guidelines v07 A software defined radio (Section 2.944) may provide permanently affixed labels according to standard Certification labeling requirements (see 2.2 Certification (labeling requirements) above) or electronic labeling.

Internal Photos

Internal Photos for APIN0114 Photo 1 – Cover off shielding view Photo 2 – Main Board Front View Photo 3– Main Board front View (Shielding off) Photo 4‐ Main Board Back View Photo 5– Main Board back View (Shielding off) Photo 6‐ antenna connector front view Photo 7‐ antenna connector back view Photo 8‐ antenna connector back view( shielding off)

RF Exposure Info

ARUB148 Maximum Permissible Exposure FCC, Part 15 §1.1310 Industry Canada RSS-Gen §5.6 Calculations for Maximum Permissible Exposure Levels Power Density = Pd (mW/cm 2 ) = EIRP/(4πd 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 The calculations in the table below use highest gain antennas for the client EUT. Where the antenna gain exceeds 6dBi the transmitter power is reduced where necessary to meet the EIRP requirements. These calculations represent worst case in terms of the exposure levels. Freq. Band (MHz) Antenna Gain (dBi) Numeric Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Calculated Safe Distance @ 1mW/cm 2 Limit(cm) Minimum Separation Distance (cm) 2400 – 2483.5 7.5 5.62 27.61 577 16.1 20 5725 - 5850 7.5 5.62 27.06 509 15.1 20 5150 - 5250 7.5 5.62 15.5 35.5 4.0 20 Assessment for simultaneous operation in 2.4 GHz and 5 GHz bands The Aruba APIN0114, APIN0115 has two identical radio modules. Each module is dual band, but each one is dedicated to operate ONLY in 1 band (2.4 GHz or 5 GHz). The following assessment is based on simultaneous operation in the 2.4 GHz and 5 GHz bands. Freq. Band (MHz) Antenna Gain (dBi) Numeric Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Calculated Safe Distance @ 1mW/cm 2 Limit(cm) Minimum Separation Distance (cm) 2400 – 2483.5 7.5 5.62 27.61 577 16.1 20 5725 - 5850 7.5 5.62 27.06 509 15.1 20 Combined Total 7.5 5.62 30.35 1086 22.0 22.0 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

Test Report

HH COVER PAGE Test of APIN0114, APIN0115 802.11a/b/g/n To: FCC 47 CFR Part 15.247 & IC RSS-210 Test Report Serial No.: ARUB148-U4 Rev A TITLE PAGE TEST REPORT FROM Test of APIN0114, APIN0115 802.11a/b/g/n to To FCC 47 CFR Part 15.247 & IC RSS-210 Test Report Serial No.: ARUB148-U4 Rev A Note: this report contains data with regard to the 2400-2483.5 MHz and 5725-5850 MHz operational modes of the Aruba Networks APIN0114 and APIN0115 Wireless Access Point. Test data for the 5,150 - 5,350 and 5,470–5,725 MHz is reported in MiCOM Labs test report ARUB149-U4 This report supersedes: NONE Applicant: Aruba Networks 1344 Crossman Avenue Sunnyvale California 94089, USA Product Function: Wireless LAN Access Point Copy No: pdf Issue Date: 2nd August 2013 MiCOM Labs is an ISO 17025 Accredited Testing Laboratory This Test Report is Issued Under the Authority of; MiCOM Labs, Inc. 440 Boulder Court, Suite 200 Pleasanton, CA 94566 USA Phone: +1 (925) 462-0304 Fax: +1 (92 5) 462-0306 TEST CERTIFICATE #2381.01 www.micomlabs.com 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: To: APIN0114, APIN0115 802.11a/b/g/n FCC 47 CFR Part 15.247 & IC RSS-210 Serial #: Issue Date: Page: 3 of 394 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. ARUB148-U4 Rev A 2nd August 2013 This page has been left intentionally blank Title: To: Serial #: Issue Date: Page: 4 of 394 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 APIN0114, APIN0115 8 02.11a/b/g/n FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 TABLE OF CONTENTS ACCREDITATION, LISTINGS & RECOGNITION ............................................................ 5 TESTING ACCREDITATION ............................................................................................ 5 RECOGNITION ................................................................................................................. 6 PRODUCT CERTIFICATION ............................................................................................ 7 TEST RESULT CERTIFICATE .......................................................................................... 9 1. REFERENCES AND MEASUREMENT UNCERTAINTY ........................................ 10 1.1. Normative References ............................................................................................. 10 1.2. Test and Uncertainty Procedures ............................................................................ 11 2. PRODUCT DETAILS AND TEST CONFIGURATIONS .......................................... 12 2.1. Technical Details ..................................................................................................... 12 2.2. Scope of Test Program ............................................................................................ 13 2.3. Equipment Model(s) and Serial Number(s) ............................................................. 16 2.4. Antenna Details ....................................................................................................... 16 2.5. Cabling and I/O Ports .............................................................................................. 17 2.6. Test Configurations.................................................................................................. 18 2.7. Equipment Modifications.......................................................................................... 20 2.8. Deviations from the Test Standard .......................................................................... 20 3. TEST EQUIPMENT CONFIGURATION(S) .............................................................. 21 3.1. Conducted RF Emission Test Set-up ...................................................................... 21 3.2. Radiated Spurious Emission Test Set-up > 1 GHz.................................................. 22 3.3. Digital Emissions Test Set-up (0.03 – 1 GHz) ......................................................... 23 3.4. ac Wireline Emission Test Set-up ............................................................................ 24 4. TEST SUMMARY ...................................................................................................... 25 5. TEST RESULTS ........................................................................................................ 27 5.1. Device Characteristics ............................................................................................. 27 5.1.1. Conducted Testing ...................................................................................27 5.1.2. Radiated Emission Testing ......................................................................61 5.1.3. AC Wireline Conducted Emissions (150 kHz – 30 MHz)........................113 6. PHOTOGRAPHS..................................................................................................... 116 6.1. Conducted Test Setup ........................................................................................... 116 6.2. Test Setup - Digital Emissions > 1 GHz................................................................. 117 6.3. Radiated Emissions Test Setup >1 GHz ............................................................... 118 6.4. ac Wireline Test Setup >1 GHz ............................................................................. 119 7. TEST EQUIPMENT ................................................................................................. 120 APPENDIX .........................................…

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

Test Report

Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 201 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY Variant: 802.11g, Channel: 2462.00 MHz, Chain b, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2456.980 MHz : -2.343 dBm Limit: ≤ 13.229 dBm Margin: -15.57 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 202 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY Variant: 802.11g, Channel: 2462.00 MHz, Chain c, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2458.844 MHz : -3.323 dBm Limit: ≤ 13.229 dBm Margin: -16.55 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 203 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY - AVERAGE Variant: 802.11n HT-20, Channel: 2437.00 MHz, Chain a, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2432.281 MHz : 0.390 dBm Limit: ≤ 13.229 dBm Margin: -12.84 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 204 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY - AVERAGE Variant: 802.11n HT-20, Channel: 2437.00 MHz, Chain b, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2433.543 MHz : 1.316 dBm Limit: ≤ 13.229 dBm Margin: -11.91 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 205 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY - AVERAGE Variant: 802.11n HT-20, Channel: 2437.00 MHz, Chain c, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2443.884 MHz : 0.333 dBm Limit: ≤ 13.229 dBm Margin: -12.90 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 206 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY Variant: 802.11n HT-20, Channel: 2412.00 MHz, Chain a, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2417.020 MHz : -3.271 dBm Limit: ≤ 13.229 dBm Margin: -16.50 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 207 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY Variant: 802.11n HT-20, Channel: 2412.00 MHz, Chain b, Temp: Ambient, Voltage: 12 Vdc Analyser Setup Marker : Frequency : Amplitude Test Results Detector = AVERAGE Sweep Count = 0 RF Atten (dB) = 20 Trace Mode = VIEW M1 : 2405.116 MHz : -2.110 dBm Limit: ≤ 13.229 dBm Margin: -15.34 dB Back to the Matrix Title: APIN0114, APIN0115 802.11a/b/g/n To: Serial #: Issue Date: Page: 208 of 394 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 FCC 47 CFR Part 15.247 & IC RSS-210 ARUB148-U4 Rev A 2nd August 2013 POWER SPECTRAL DENSITY Va…

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

Test Setup Photos

MiCOM Labs, 440 Boulder Court, Suite 200, Pleasanton, CA 94566 Tel: +1 (925) 462-0304, Fax: +1 (925) 462-0306, Web: www.micomlabs.com the wireless lab 2 August 2013 Aruba Networks APIN0114 APIN0115 Test Photos Page 2 of 4 the wireless lab 6.2 Digital emissions <1GHz Page 3 of 4 the wireless lab Page 4 of 4 the wireless lab

Contact Information

Applicant

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

Technical Contact

MiCOM LabsWilliam 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
415C5.75 GHz - 5.79 GHz440.00 mW
Software Defined Radio
Yes
Confidentiality
Long Term
Grant Notes
Software Defined Radio. Power Output listed is maximum combined Conducted power operating in a 3X3 MIMO configuration. The antenna used for this transmitter must be installed to provide a separation distance of at least 22 cm from all persons and must not be simultaneously operated in conjunction with any other antenna or transmitter except in accordance with accepted multi-transmitter product procedures.

Other Applications from Hewlett Packard Enterprise Company

Q9DAPINH721

Access Point

Jul 17, 2026

Equipment Class

6ID - 15E 6 GHz Low Power Indoor Access Point
Q9DASIN0307

HPE Aruba User Experience Sensor

Dec 22, 2025

Equipment Class

DTS - Digital Transmission System
Q9DASIN0308

HPE Aruba User Experience Sensor

Nov 23, 2025

Equipment Class

DTS - Digital Transmission System
Q9DAPEX0764

ACCESS POINT

Nov 20, 2025

Equipment Class

DTS - Digital Transmission System
Q9DAPIN0763

ACCESS POINT

Sep 29, 2025

Equipment Class

NII - Unlicensed National Information Infrastructure TX