Cisco Aironet 1500 Series Outdoor Mesh
Access Point Hardware Installation Guide
December 2006
Americas Headquarters
Cisco Systems, Inc.
170 West Tasman Drive
San Jose, CA 95134-1706
USA
Tel: 408 526-4000
800 553-NETS (6387)
Fax: 408 527-0883
Text Part Number: OL-9977-05
C O N T E N T S
Preface vii
Objectives vii
Audience vii
Organization vii
Conventions viii
Cisco.com xiv
Overview 1-1
Connectors 1-3
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Contents
Warnings 2-3
Troubleshooting 3-1
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Contents
Overview G-2
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Contents
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Preface
This section describes the objectives, audience, organization, and conventions of the Cisco Aironet 1500
Series Outdoor Mesh Access Point Hardware Installation Guide.
Objectives
This publication explains the steps for installing the Cisco Aironet 1500 Series Outdoor Mesh Access
Point (hereafter called the access point). The access point is available in two models: The LAP1510
model supports dual band (2.4- and 5-GHz) operation. The LAP1505 model supports single band
(2.4 GHz) operation.
Audience
This publication is for the person installing and configuring an access point for the first time. The
installer should be familiar with network structures, terms, and concepts.
Warning
Only trained and qualified personnel should be allowed to install, replace, or service this equipment.
Statement 1030
Organization
This guide contains the following sections:
Chapter 1, “Overview,” describes the major components and features of the access point.
Chapter 2, “Mounting Instructions,” provides warnings, safety information, and mounting information
needed during the installation of your access point.
Chapter 3, “Troubleshooting,” provides basic troubleshooting procedures for the access point.
Appendix A, “Translated Safety Warnings,” indicates how to access the document that provides
translations of the safety warnings that appear in this publication.
Appendix B, “Declarations of Conformity and Regulatory Information,” describes the regulatory
conventions to which the access point conforms and provides guidelines for operating access points in
Japan.
Appendix C, “Access Point Specifications,” lists technical specifications for the access point.
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Conventions
Appendix D, “Channels and Power Levels,” indicates how to access the document that lists the access
point radio channels and the maximum power levels supported by the world’s regulatory domains.
Appendix E, “Connector Pinouts,” describes the connector pinouts for the access point.
Appendix F, “Priming Access Points Prior to Deployment,” describes the procedure to pre-configure an
access point with IP addresses and controller information.
Appendix G, “Configuring DHCP Option 43,” describes the procedure to configure DHCP Option 43.
Conventions
This publication uses the following conventions to convey instructions and information:
•
Commands and keywords are in boldface type.
Note
Means reader take note. Notes contain helpful suggestions or references to materials not contained in
this manual.
Caution
Means reader be careful. In this situation, you might do something that could result in equipment
damage or loss of data.
Warning
IMPORTANT SAFETY INSTRUCTIONS
This warning symbol means danger. You are in a situation that could cause bodily injury. Before you
work on any equipment, be aware of the hazards involved with electrical circuitry and be familiar
with standard practices for preventing accidents. Use the statement number provided at the end of
each warning to locate its translation in the translated safety warnings that accompanied this
device. Statement 1071
SAVE THESE INSTRUCTIONS
Waarschuwing
BELANGRIJKE VEILIGHEIDSINSTRUCTIES
Dit waarschuwingssymbool betekent gevaar. U verkeert in een situatie die lichamelijk letsel kan
veroorzaken. Voordat u aan enige apparatuur gaat werken, dient u zich bewust te zijn van de bij
elektrische schakelingen betrokken risico's en dient u op de hoogte te zijn van de standaard
praktijken om ongelukken te voorkomen. Gebruik het nummer van de verklaring onderaan de
waarschuwing als u een vertaling van de waarschuwing die bij het apparaat wordt geleverd, wilt
raadplegen.
BEWAAR DEZE INSTRUCTIES
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Conventions
Varoitus
TÄRKEITÄ TURVALLISUUSOHJEITA
Tämä varoitusmerkki merkitsee vaaraa. Tilanne voi aiheuttaa ruumiillisia vammoja. Ennen kuin
käsittelet laitteistoa, huomioi sähköpiirien käsittelemiseen liittyvät riskit ja tutustu
onnettomuuksien yleisiin ehkäisytapoihin. Turvallisuusvaroitusten käännökset löytyvät laitteen
mukana toimitettujen käännettyjen turvallisuusvaroitusten joukosta varoitusten lopussa näkyvien
lausuntonumeroiden avulla.
SÄILYTÄ NÄMÄ OHJEET
Attention
IMPORTANTES INFORMATIONS DE SÉCURITÉ
Ce symbole d'avertissement indique un danger. Vous vous trouvez dans une situation pouvant
entraîner des blessures ou des dommages corporels. Avant de travailler sur un équipement, soyez
conscient des dangers liés aux circuits électriques et familiarisez-vous avec les procédures
couramment utilisées pour éviter les accidents. Pour prendre connaissance des traductions des
avertissements figurant dans les consignes de sécurité traduites qui accompagnent cet appareil,
référez-vous au numéro de l'instruction situé à la fin de chaque avertissement.
CONSERVEZ CES INFORMATIONS
WICHTIGE SICHERHEITSHINWEISE
Warnung
Avvertenza
Advarsel
Dieses Warnsymbol bedeutet Gefahr. Sie befinden sich in einer Situation, die zu Verletzungen führen
kann. Machen Sie sich vor der Arbeit mit Geräten mit den Gefahren elektrischer Schaltungen und
den üblichen Verfahren zur Vorbeugung vor Unfällen vertraut. Suchen Sie mit der am Ende jeder
Warnung angegebenen Anweisungsnummer nach der jeweiligen Übersetzung in den übersetzten
Sicherheitshinweisen, die zusammen mit diesem Gerät ausgeliefert wurden.
BEWAHREN SIE DIESE HINWEISE GUT AUF.
IMPORTANTI ISTRUZIONI SULLA SICUREZZA
Questo simbolo di avvertenza indica un pericolo. La situazione potrebbe causare infortuni alle
persone. Prima di intervenire su qualsiasi apparecchiatura, occorre essere al corrente dei pericoli
relativi ai circuiti elettrici e conoscere le procedure standard per la prevenzione di incidenti.
Utilizzare il numero di istruzione presente alla fine di ciascuna avvertenza per individuare le
traduzioni delle avvertenze riportate in questo documento.
CONSERVARE QUESTE ISTRUZIONI
VIKTIGE SIKKERHETSINSTRUKSJONER
Dette advarselssymbolet betyr fare. Du er i en situasjon som kan føre til skade på person. Før du
begynner å arbeide med noe av utstyret, må du være oppmerksom på farene forbundet med
elektriske kretser, og kjenne til standardprosedyrer for å forhindre ulykker. Bruk nummeret i slutten
av hver advarsel for å finne oversettelsen i de oversatte sikkerhetsadvarslene som fulgte med denne
enheten.
TA VARE PÅ DISSE INSTRUKSJONENE
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Preface
Conventions
Aviso
INSTRUÇÕES IMPORTANTES DE SEGURANÇA
Este símbolo de aviso significa perigo. Você está em uma situação que poderá ser causadora de
lesões corporais. Antes de iniciar a utilização de qualquer equipamento, tenha conhecimento dos
perigos envolvidos no manuseio de circuitos elétricos e familiarize-se com as práticas habituais de
prevenção de acidentes. Utilize o número da instrução fornecido ao final de cada aviso para
localizar sua tradução nos avisos de segurança traduzidos que acompanham este dispositivo.
GUARDE ESTAS INSTRUÇÕES
¡Advertencia!
INSTRUCCIONES IMPORTANTES DE SEGURIDAD
Este símbolo de aviso indica peligro. Existe riesgo para su integridad física. Antes de manipular
cualquier equipo, considere los riesgos de la corriente eléctrica y familiarícese con los
procedimientos estándar de prevención de accidentes. Al final de cada advertencia encontrará el
número que le ayudará a encontrar el texto traducido en el apartado de traducciones que acompaña
a este dispositivo.
GUARDE ESTAS INSTRUCCIONES
VIKTIGA SÄKERHETSANVISNINGAR
Varning!
Denna varningssignal signalerar fara. Du befinner dig i en situation som kan leda till personskada.
Innan du utför arbete på någon utrustning måste du vara medveten om farorna med elkretsar och
känna till vanliga förfaranden för att förebygga olyckor. Använd det nummer som finns i slutet av
varje varning för att hitta dess översättning i de översatta säkerhetsvarningar som medföljer denna
anordning.
SPARA DESSA ANVISNINGAR
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Conventions
Aviso
INSTRUÇÕES IMPORTANTES DE SEGURANÇA
Este símbolo de aviso significa perigo. Você se encontra em uma situação em que há risco de lesões
corporais. Antes de trabalhar com qualquer equipamento, esteja ciente dos riscos que envolvem os
circuitos elétricos e familiarize-se com as práticas padrão de prevenção de acidentes. Use o
número da declaração fornecido ao final de cada aviso para localizar sua tradução nos avisos de
segurança traduzidos que acompanham o dispositivo.
GUARDE ESTAS INSTRUÇÕES
Advarsel
VIGTIGE SIKKERHEDSANVISNINGER
Dette advarselssymbol betyder fare. Du befinder dig i en situation med risiko for
legemesbeskadigelse. Før du begynder arbejde på udstyr, skal du være opmærksom på de
involverede risici, der er ved elektriske kredsløb, og du skal sætte dig ind i standardprocedurer til
undgåelse af ulykker. Brug erklæringsnummeret efter hver advarsel for at finde oversættelsen i de
oversatte advarsler, der fulgte med denne enhed.
GEM DISSE ANVISNINGER
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Conventions
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Related Publications
Related Publications
These documents provide complete information about the access point:
•
•
•
Release Notes for Cisco Wireless LAN Controllers and Lightweight Access Points
Quick Start Guide: Cisco Aironet 1500 Series Lightweight Outdoor Mesh Access Points
Cisco Wireless LAN Controller Configuration Guide
Click this link to browse to the Cisco Wireless documentation home page:
To browse to the access point documentation, click Cisco Aironet 1500 Series listed under “Wireless
LAN Access.”
To browse to the Cisco Wireless LAN Controller documentation, click Cisco 4400 Series Wireless LAN
Controllers or Cisco 2000 Series Wireless LAN Controllers listed under “Wireless LAN Controllers.”
Obtaining Documentation
Cisco documentation and additional literature are available on Cisco.com. This section explains the
product documentation resources that Cisco offers.
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Documentation Feedback
Cisco.com
You can access the most current Cisco documentation at this URL:
You can access the Cisco website at this URL:
You can access international Cisco websites at this URL:
Product Documentation DVD
The Product Documentation DVD is a library of technical product documentation on a portable medium.
The DVD enables you to access installation, configuration, and command guides for Cisco hardware and
software products. With the DVD, you have access to the HTML documentation and some of the
PDF files found on the Cisco website at this URL:
The Product Documentation DVD is created and released regularly. DVDs are available singly or by
subscription. Registered Cisco.com users can order a Product Documentation DVD (product number
DOC-DOCDVD= or DOC-DOCDVD=SUB) from Cisco Marketplace at the Product Documentation
Store at this URL:
Ordering Documentation
You must be a registered Cisco.com user to access Cisco Marketplace. Registered users may order Cisco
documentation at the Product Documentation Store at this URL:
If you do not have a user ID or password, you can register at this URL:
Documentation Feedback
You can provide feedback about Cisco technical documentation on the Cisco Support site area by
entering your comments in the feedback form available in every online document.
Cisco Product Security Overview
Cisco provides a free online Security Vulnerability Policy portal at this URL:
From this site, you will find information about how to do the following:
•
Report security vulnerabilities in Cisco products
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Preface
Product Alerts and Field Notices
•
•
Obtain assistance with security incidents that involve Cisco products
Register to receive security information from Cisco
A current list of security advisories, security notices, and security responses for Cisco products is
available at this URL:
To see security advisories, security notices, and security responses as they are updated in real time, you
can subscribe to the Product Security Incident Response Team Really Simple Syndication (PSIRT RSS)
feed. Information about how to subscribe to the PSIRT RSS feed is found at this URL:
Reporting Security Problems in Cisco Products
Cisco is committed to delivering secure products. We test our products internally before we release them,
and we strive to correct all vulnerabilities quickly. If you think that you have identified a vulnerability
in a Cisco product, contact PSIRT:
•
An emergency is either a condition in which a system is under active attack or a condition for which
a severe and urgent security vulnerability should be reported. All other conditions are considered
nonemergencies.
•
In an emergency, you can also reach PSIRT by telephone:
•
•
1 877 228-7302
1 408 525-6532
Tip
We encourage you to use Pretty Good Privacy (PGP) or a compatible product (for example, GnuPG) to
encrypt any sensitive information that you send to Cisco. PSIRT can work with information that has been
encrypted with PGP versions 2.x through 9.x.
Never use a revoked encryption key or an expired encryption key. The correct public key to use in your
correspondence with PSIRT is the one linked in the Contact Summary section of the Security
Vulnerability Policy page at this URL:
The link on this page has the current PGP key ID in use.
If you do not have or use PGP, contact PSIRT to find other means of encrypting the data before sending
any sensitive material.
Product Alerts and Field Notices
Modifications to or updates about Cisco products are announced in Cisco Product Alerts and Cisco Field
Notices. You can receive these announcements by using the Product Alert Tool on Cisco.com. This tool
enables you to create a profile and choose those products for which you want to receive information.
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Obtaining Technical Assistance
To access the Product Alert Tool, you must be a registered Cisco.com user. Registered users can access
the tool at this URL:
To register as a Cisco.com user, go to this URL:
Obtaining Technical Assistance
Cisco Technical Support provides 24-hour-a-day award-winning technical assistance. The
Cisco Support website on Cisco.com features extensive online support resources. In addition, if you
have a valid Cisco service contract, Cisco Technical Assistance Center (TAC) engineers provide
telephone support. If you do not have a valid Cisco service contract, contact your reseller.
Cisco Support Website
The Cisco Support website provides online documents and tools for troubleshooting and resolving
technical issues with Cisco products and technologies. The website is available 24 hours a day at
this URL:
Access to all tools on the Cisco Support website requires a Cisco.com user ID and password. If you have
a valid service contract but do not have a user ID or password, you can register at this URL:
Note
Before you submit a request for service online or by phone, use the Cisco Product Identification Tool
to locate your product serial number. You can access this tool from the Cisco Support website
by clicking the Get Tools & Resources link, clicking the All Tools (A-Z) tab, and then choosing
Cisco Product Identification Tool from the alphabetical list. This tool offers three search options:
by product ID or model name; by tree view; or, for certain products, by copying and pasting show
command output. Search results show an illustration of your product with the serial number label
location highlighted. Locate the serial number label on your product and record the information
before placing a service call.
Tip
Displaying and Searching on Cisco.com
If you suspect that the browser is not refreshing a web page, force the browser to update the web page
by holding down the Ctrl key while pressing F5.
To find technical information, narrow your search to look in technical documentation, not the
entire Cisco.com website. After using the Search box on the Cisco.com home page, click the
Advanced Search link next to the Search box on the resulting page and then click the
Technical Support & Documentation radio button.
To provide feedback about the Cisco.com website or a particular technical document, click
Contacts & Feedback at the top of any Cisco.com web page.
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Obtaining Technical Assistance
Finding the Product Serial Number
Figure 1 Location of Serial Number Label
SN: XXXNNNNXXXX
The access point serial number label contains the following information:
•
•
•
•
Model number, such as AIR-LAP1510AG-A-k9 or AIR-LAP1505G-A-k9
Serial number, such as WCN0636279B (11 alphanumeric digits)
MAC address, such as 00abc65094f3 (12 hexadecimal digits)
Location of manufacture, such as Made in Singapore
You need your product serial number when requesting support from the Cisco Technical Assistance
Center.
Submitting a Service Request
Using the online TAC Service Request Tool is the fastest way to open S3 and S4 service requests. (S3 and
S4 service requests are those in which your network is minimally impaired or for which you require
product information.) After you describe your situation, the TAC Service Request Tool provides
recommended solutions. If your issue is not resolved using the recommended resources, your service
request is assigned to a Cisco engineer. The TAC Service Request Tool is located at this URL:
For S1 or S2 service requests, or if you do not have Internet access, contact the Cisco TAC by telephone.
(S1 or S2 service requests are those in which your production network is down or severely degraded.)
Cisco engineers are assigned immediately to S1 and S2 service requests to help keep your business
operations running smoothly.
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Obtaining Additional Publications and Information
To open a service request by telephone, use one of the following numbers:
Asia-Pacific: +61 2 8446 7411
Australia: 1 800 805 227
EMEA: +32 2 704 55 55
USA: 1 800 553 2447
For a complete list of Cisco TAC contacts, go to this URL:
Definitions of Service Request Severity
To ensure that all service requests are reported in a standard format, Cisco has established severity
definitions.
Severity 1 (S1)—An existing network is “down” or there is a critical impact to your business operations.
You and Cisco will commit all necessary resources around the clock to resolve the situation.
Severity 2 (S2)—Operation of an existing network is severely degraded, or significant aspects of your
business operations are negatively affected by inadequate performance of Cisco products. You and Cisco
will commit full-time resources during normal business hours to resolve the situation.
Severity 3 (S3)—Operational performance of the network is impaired while most business operations
remain functional. You and Cisco will commit resources during normal business hours to restore service
to satisfactory levels.
Severity 4 (S4)—You require information or assistance with Cisco product capabilities, installation, or
configuration. There is little or no effect on your business operations.
Obtaining Additional Publications and Information
Information about Cisco products, technologies, and network solutions is available from various online
and printed sources.
•
The Cisco Online Subscription Center is the website where you can sign up for a variety of Cisco
e-mail newsletters and other communications. Create a profile and then select the subscriptions that
you would like to receive. To visit the Cisco Online Subscription Center, go to this URL:
•
The Cisco Product Quick Reference Guide is a handy, compact reference tool that includes brief
product overviews, key features, sample part numbers, and abbreviated technical specifications for
many Cisco products that are sold through channel partners. It is updated twice a year and includes
the latest Cisco channel product offerings. To order and find out more about the Cisco Product Quick
Reference Guide, go to this URL:
•
•
Cisco Marketplace provides a variety of Cisco books, reference guides, documentation, and logo
merchandise. Visit Cisco Marketplace, the company store, at this URL:
Cisco Press publishes a wide range of general networking, training, and certification titles. Both new
and experienced users will benefit from these publications. For current Cisco Press titles and other
information, go to Cisco Press at this URL:
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Obtaining Additional Publications and Information
•
Internet Protocol Journal is a quarterly journal published by Cisco for engineering professionals
involved in designing, developing, and operating public and private internets and intranets. You can
access the Internet Protocol Journal at this URL:
•
•
Networking products offered by Cisco, as well as customer support services, can be obtained at
this URL:
Networking Professionals Connection is an interactive website where networking professionals
share questions, suggestions, and information about networking products and technologies with
Cisco experts and other networking professionals. Join a discussion at this URL:
•
•
“What’s New in Cisco Documentation” is an online publication that provides information about the
latest documentation releases for Cisco products. Updated monthly, this online publication is
organized by product category to direct you quickly to the documentation for your products. You
can view the latest release of “What’s New in Cisco Documentation” at this URL:
World-class networking training is available from Cisco. You can view current offerings at
this URL:
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Obtaining Additional Publications and Information
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C H A P T E R
1
Overview
The Cisco Aironet 1500 Series Outdoor Mesh Access Point (hereafter called the access point) is a
wireless device designed for wireless client access, point-to-point bridging, point-to-multipoint
bridging, and point-to-multipoint mesh wireless connectivity. The access point is a standalone unit that
can be mounted on a streetlight pole or on a building wall or overhang.access point
The access point is available in two models: LAP1510 (supports 2.4-GHz and 5-GHz radios) and
LAP1505 (supports a 2.4-GHz radio).The access point provides client access and supports 6 to 54 Mbps
data rates without the need for a license. The LAP1510 model dedicates the 5-GHz radio for backhaul
operations to reach a wired network and uses the 2.4-GHz radio for wireless clients. The LAP1505 model
uses the 2.4-GHz radio for both backhaul and wireless clients.
The access point can also operate as a relay node for other access points not directly connected to a wired
network. Intelligent wireless routing is provided by the patent-pending Adaptive Wireless Path Protocol
(AWPP). This enables each access point to identify its neighbors and intelligently choose the optimal
path to the wired network by calculating the cost of each path in terms of signal strength and the number
of hops required to get to a controller.
The access point is configured, monitored, and operated through a Cisco wireless LAN controller
(hereafter called a controller) as described in the Cisco Wireless LAN Controller Configuration Guide.
The Deployment Guide: Cisco Mesh Networking Solution describes how to plan and initially configure
the Cisco Mesh network, which supports wireless point-to-point, point-to-multipoint, and mesh
deployments. The controllers use a browser-based management system, a command-line interface (CLI),
or the Cisco Wireless Control System (WCS) network management system to manage the controller and
the associated access points. The access point is compliant with Wi-Fi Protected Access (WPA2) and
employs hardware-based Advanced Encryption Standard (AES) encryption between wireless nodes to
provide end-to-end security.
This chapter provides information on the following topics:
•
•
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Chapter 1 Overview
Hardware Features
Hardware Features
Some of the access point hardware features are listed below:
•
Dual simultaneous 2.4- and 5-GHz radio operation (see the “Single or Dual Radio Operation”
•
•
•
•
Metal enclosure supports outdoor installations (see the “Metal Enclosure” section on page 1-6
–
Industrial temperature rating
•
•
•
Figure 1-1 shows the access point connectors.
Figure 1-1 Access Point Connectors
1
5.8-GHz antenna bracket
(LAP1510 model only)
4
Ethernet (PoE) connector (MS3112P14-12P)
AC power connector (MS3112P14-5P)
2
3
Vent (do not remove)
5
6
2.4-GHz Type N antenna connector
5.8-GHz Type N antenna connector
(LAP1510 model only)
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Chapter 1 Overview
Hardware Features
Connectors
•
•
•
•
Ethernet (PoE) connector—12 pin circular Mil spec (MS3112P14-12P)
AC power connector—5 pin circular Mil spec (MS3112P14-5P)
2.4-GHz Type N antenna connector
5-GHz Type N antenna connector ( LAP1510 model only)
Single or Dual Radio Operation
The access point is available in two models: LAP1510 (supports 2.4-GHz and 5-GHz radios) and
LAP1505 (supports only a 2.4-GHz radio). The radios use external antennas (see “External Antennas”).
The LAP1510 model supports simultaneous dual-radio operation using a 2.4-GHz 802.11b/g radio and
a 5-GHz 802.11a radio.The 5-GHz radio incorporates an Unlicensed National Information Infrastructure
(UNII) radio transceiver operating in the UNII 5-GHz frequency bands. The 5-GHz radio on the access
point is used for backhaul operations to the controller. The 5-GHz radio can also operate in the 4.9-GHz
Public Safety band in the United States.
Note
The 4.9-GHz band requires a license and may be used only by qualified Public Safety operators as
defined in section 90.20 of the FCC rules.
The LAP1505 model supports both mesh backhaul operation and wireless clients using the 2.4-GHz
radio.
External Antennas
The access point is equipped with an N-type radio frequency (RF) connector on the large flat side of the
unit for an external 2.4-GHz antenna. The LAP1510 model also has an N-type RF connector on the end
omnidirectional antennas, the 2.4-GHz antenna connects directly to the access point, and the 5-GHz
antenna connects to the access point using the antenna’s included coax cable.
The Cisco omnidirectional external antennas use vertical polarization.
The access point can also be equipped with specific third-party external antennas (see Table 1-1 and
Table 1-2), subject to local regulatory requirements. When you are installing third-party antennas, they
must be installed with all waterproofing steps recommended by the third-party manufacturer.
Note
When you mount the access point in an indoor environment, you must also mount the antennas in an
indoor environment.
Warning
Only trained and qualified personnel should be allowed to install, replace, or service this equipment.
Statement 1030
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Chapter 1 Overview
Hardware Features
Table 1-1
External 5-GHz Antennas1
Part Number
Model
Gain (dBi)
AIR-ANT5175V-N
4.9 GHz Compact omnidirectional2 6.5
5 GHz Compact omnidirectional
5 GHz Sector
7.5
9.5
14
AIR-ANT58G10SSA-N
Cushcraft S49014WP (third party)
Cushcraft S54717P (third party)
1. Not supported on the LAP1505 model.
5 GHz Patch
5 GHz Patch
17
2. The use of the 4.9-GHz band requires a license and may be used only by qualified Public Safety operators as defined in section
90.20 of the FCC rules.
Table 1-2
External 2.4-GHz Antennas
Part Number
Model
Gain (dBi)
AIR-ANT-2455V-N
2.4 GHz Compact Omnidirectional
2.4 GHz Omnidirectional
5.5
8
Cushcraft S2406BP (third party)
Multiple Power Sources
The access point can be powered by one of these power sources:
•
•
48 VDC inline power-over-Ethernet (PoE)
AC power
Inline PoE is provided by a shielded Ethernet cable using the Cisco Aironet Power Injector (AIR-
PWRINJ1500=), hereafter called the power injector.
Caution
To provide inline PoE, you must use the power injector (AIR- PWRINJ1500=) specified for the access
point. Other power injectors, PoE switches, and 802.3af power sources may not provide adequate power,
which may cause the access point to malfunction and cause over-current conditions at the power source.
You must ensure that the switch port connected to the access point has PoE turned off.
Caution
Caution
The power injector (AIR- PWRINJ1500=) has been evaluated for installation in an indoor environment
only.
When the access point is installed outdoors or in a wet or damp location, the AC branch circuit that is
powering the access point should be provided with ground fault protection (GFCI), as required by Article
210 of the National Electrical Code (NEC).
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Hardware Features
Note
The maximum Ethernet cable length is 128 ft. (38 m) from the switch to the power injector and 200 ft.
(61 m) from the power injector to the access point.
AC power is provided from an AC power source (100 to 240 VAC at 50/60 Hz):
•
AC power cord options:
–
–
15-ft (4.6-m) power cord (AIR-CORD1500-15NA=) for use in the US and Canada.
40-ft (12.2-m) power cord (AIR-CORD1500-40NA=) for light pole installations in the US and
Canada.
–
–
40-ft (12.2-m) power cord (AIR-CORD1500-40UE=) for use outside the US and Canada. One
end of the power cord is terminated with an access point AC power connector and the other end
is unterminated.
4-ft (1.2-m) streetlight power tap adapter (AIR-PWR-ST-LT-TAP=) for light pole installations
in the US and Canada.
Note
For important safety instructions for AC power cords, refer to the AC Power Cords for Cisco
Aironet 1500 Series Outdoor Mesh Access Points document that shipped with your AC
power cords.
Ethernet Port
The access point’s Ethernet port uses a Mil-spec 12 pin connector, linking the access point to your
10BASE-T or 100BASE-T Ethernet LAN through the optional power injector. The shielded Ethernet
cables are used to send and receive Ethernet data and to optionally supply inline 48-VDC power from
the power injector.
The Ethernet MAC address is printed on the label on the side of the access point (refer to the “Finding
Tip
The access point senses the Ethernet and power signals and automatically switches internal circuitry to
match the cable connections.
Caution
To provide inline PoE, you must use the power injector (AIR- PWRINJ1500=) specified for the access
point. Other power injectors, PoE switches, and 802.3af power sources may not provide adequate power,
which may cause the access point to malfunction and cause over-current conditions at the power source.
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Network Configuration Examples
Metal Enclosure
The access point uses a metal enclosure that can accommodate both indoor or outdoor operating
environments and an industrial temperature operating range of –40°C (–40°F) to +55°C (+131°F). The
access point complies with NEMA Type 4X and IP66 requirements from IEC60529.
The access point is shipped with a mounting plate attached to the unit.
Note
When the access point is mounted indoors, the antennas must also be mounted indoors.
Optional Hardware
Some of the access point hardware options are listed below:
•
•
•
Pole mount kit (AIR-ACCPMK1500=)-—provides hardware for mounting the access point to the top
of a metal pole, such as a streetlight pole.
Streetlight power tap adapter (AIR-PWR-ST-LT-TAP=)—connects to the light control connector on
a streetlight pole and provides AC power to the access point.
Outdoor rated Ethernet cable (AIR-ETH1500-150=)—used to supply Ethernet and optional DC power
to the access point.
•
•
Power injector (AIR-PWRINJ1500=)—provides power-over-Ethernet (PoE) to the access point.
AC power cord (for additional information, refer to the “Multiple Power Sources” section on
page 1-4).
Network Configuration Examples
The access point is a wireless device designed for wireless client access and point-to-point bridging,
point-to-multipoint bridging, and point-to-multipoint mesh wireless connectivity. The access point
provides 5-GHz backhaul capability to link with another access point to reach a wired network
connection or to provide repeater operations for other access points.
The access point plays two primary radio roles: a root access point ( hereafter called a RAP) or a non-root
access point (hereafter called a MAP). When the access point has a wired Ethernet connection to the
controller (through a switch), the radio role is called a RAP. A RAP is a parent node to any bridging or
mesh network. A controller can support one or more RAPs, each one parenting the same or different
wireless networks. There can be more than one RAP for the same mesh network for redundancy. RAPs
also support wireless clients on the band not being used for the backhaul interface.
When the access point does not have a wired Ethernet connection to the controller (through a switch),
the radio role is called a MAP. The MAPs have a wireless connection (through the backhaul interface)
to other MAPs and finally to a RAP with an Ethernet connection through a switch to the controller.
MAPs may also have a wired Ethernet connection to a local LAN and serve as a bridge endpoint for that
LAN (using a point-to-point or point-to-multipoint bridge connection). MAPs also support wireless
clients on the band not used for the backhaul interface.
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Wireless Backhaul
The access point supports wireless backhaul capability using the 5-GHz radio to bridge to another access
point to reach a wired network connection to a controller (see Figure 1-2). The access point connected
to the wired network is considered a RAP in this configuration. The remote access point is considered a
MAP and transfers wireless client traffic to the RAP for transfer to the wired network. Lightweight
access point protocol (LWAPP) control traffic is also transferred over this bridged link.
Note
The LAP 1505 model uses the 2.4-GHz radio for backhaul and wireless client operations.
Figure 1-2
Access Point Backhaul Example
(2.4 Ghz)
(5.8 Ghz)
Point-to-Point Bridging
The access points can be used to extend a remote network by using the 5-GHz backhaul radio to bridge
bridging on the controller for each access point.
Note
The LAP 1505 model uses the 2.4-GHz radio for bridging operations.
Wireless client access is supported; however, if bridging between tall buildings, the 2.4-Ghz wireless
coverage area may be limited and possibly not suitable for direct wireless client access.
Figure 1-3
Access Point Point-to-Point Bridging Example
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Point-to-Multipoint Bridging
The access points can be used as a RAP to connect multiple remote MAPs with their associated wired
networks (see Figure 1-4). By default this capability is turned-off for all access points. To support
Ethernet bridging, you must enable bridging on the controller for each access point.
Wireless client access can be provided over the bridging link; however, if bridging between tall
buildings, the 2.4-Ghz wireless coverage area may be limited and possibly not suitable for direct wireless
client access.
Figure 1-4
Access Point Point to Multipoint Bridging Example
Mesh Network
The access points are typically deployed in a mesh network configuration. In a typical mesh deployment,
one or more RAPs have a wired network connection through a switch to a controller. Other remote MAPs
without wired network connections use the backhaul feature to optimally link to a RAP that is connected
to the wired network. In the mesh network, the links between the access points are referred to as the
backhaul links.
Intelligent wireless routing is provided by the patent-pending Adaptive Wireless Path protocol (AWPP).
This enables each MAP to identify its neighbors and intelligently choose the optimal path to the RAP
with the wired network connection by calculating the cost of each path in terms of signal strength and
the number of hops required to get to a controller.
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Network Configuration Examples
Figure 1-5 illustrates a typical mesh configuration using MAPs and RAPs.
Figure 1-5
Typical Mesh Configuration Using Access Points
IP
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Layer 2 and Layer 3 Network Operation
The access points support Layer 2 or Layer 3 network operation. In Layer 2 configurations, the access
point and the controller are on the same subnet and communicate with encapsulated Ethernet frames
using MAC addresses rather than IP addresses. Layer 2 configurations are typically not scalable into
larger networks. Additionally, Layer 2 operation is supported only by the Cisco 4400 series controllers.
Access points and controllers in Layer 3 configurations use IP addresses and UDP packets, which can
be routed through large networks. Layer 3 operation is scalable and recommended by Cisco.
Figure 1-6 illustrates a typical Layer-3 wireless network configuration containing access points and a
controller.
Figure 1-6
Typical Layer 3 Access Point Network Configuration Example
LWAPP
LWAPP
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Figure 1-7 illustrates a typical Layer 2 network configuration. In a Layer 2 configuration, the controller
and the access points are on the same subnet.
Figure 1-7
Typical Layer 2 Access Point Network Configuration Example
LWAPP
LWAPP
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C H A P T E R
2
Mounting Instructions
This chapter describes warnings, safety information, and mounting information needed during the
installation of your access point. The chapter contains these sections:
•
•
•
•
•
•
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Unpacking the Access Point
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Unpacking the Access Point
Note
When you are unpacking the access point, do not remove the foam blocks attached to the antenna
connectors. The foam protects the antenna connectors during installation.
Follow these steps to unpack the access point:
Step 1
Step 2
Step 3
Open the shipping container and carefully remove the contents.
Return all packing materials to the shipping container and save it.
Ensure that all items listed in Package Contents are included in the shipment. If any item is damaged or
missing, notify your authorized Cisco sales representative.
Package Contents
Each access point package contains the following items:
•
•
•
Access point with mounting plate attached
Cisco product documentation, translated safety warnings, registration and feedback cards
Grounding lug with screw and lock washer
Tools and Materials
To install the access point you will need the following:
•
•
•
•
•
•
Open and box-end wrenches or socket set and ratchet
Customer-supplied 10-AWG copper ground wire
Ground lug (Panduit PN-10-6R-2K) and screw with lock washer (supplied)
Customer supplied crimping tool for the ground lug (Panduit PN-10-6R-2K)
Optional power injector (AIR-PWRINJ1500=)
Optional Ethernet cable
–
–
150-ft (45.72-m) Ethernet cable (AIR-ETH1500-150=)
Other lengths (user supplied)
•
Optional AC power cord
–
–
15-ft (4.6-m) power cord (AIR-CORD1500-15NA=) for use in the US and Canada.
40-ft (12.2-m) power cord (AIR-CORD1500-40NA=) for light pole installations in the US and
Canada.
–
40-ft (12.2-m) power cord (AIR-CORD1500-40UE=) for use outside the US and Canada. One
end of the power cord is terminated with an access point AC power connector and the other end
is unterminated.
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Warnings
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–
4-ft (1.2-m) streetlight power tap adapter (AIR-PWR-ST-LT-TAP=) for light pole installations
in the US and Canada.
•
•
•
•
Optional pole mount kit (AIR-ACCPMK1500=)
Optional primary protector (user supplied), as required by local regulations
Optional ladder, power lift, rope, or other tools as required
Warnings
Translated versions of all safety warnings are available in the safety warning document that shipped with
your access point or on Cisco.com. To browse to the document on Cisco.com, refer to Appendix 1,
“Translated Safety Warnings” for instructions.
Warning
IMPORTANT SAFETY INSTRUCTIONS
This warning symbol means danger. You are in a situation that could cause bodily injury. Before you
work on any equipment, be aware of the hazards involved with electrical circuitry and be familiar
with standard practices for preventing accidents. Use the statement number provided at the end of
each warning to locate its translation in the translated safety warnings that accompanied this device.
Statement 1071
SAVE THESE INSTRUCTIONS
Warning
Warning
Do not operate the unit near unshielded blasting caps or in an explosive environment unless the
device has been modified to be especially qualified for such use. Statement 364
This equipment must be externally grounded using a customer-supplied ground wire before power is
applied. Contact the appropriate electrical inspection authority or an electrician if you are uncertain
that suitable grounding is available. Statement 366
Warning
Warning
Read the installation instructions before connecting the system to the power source. Statement 1004
Ultimate disposal of this product should be handled according to all national laws and regulations.
Statement 1040
Safety Information
Follow the guidelines in this section to ensure proper operation and safe use of the access point.
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Safety Information
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FCC Safety Compliance Statement
The FCC, with its action in ET Docket 96-8, has adopted a safety standard for human exposure to RF
electromagnetic energy emitted by FCC-certified equipment. When used with approved Cisco Aironet
antennas, Cisco Aironet products meet the uncontrolled environmental limits found in OET-65 and ANSI
C95.1, 1991. Proper operation of this radio device according to the instructions in this publication results
in user exposure substantially below the FCC recommended limits.
Safety Precautions
Warning
In order to comply with radio frequency (RF) exposure limits, the antennas for this product should be
positioned no less than 6.56 ft (2 m) from your body or nearby persons. Statement 339
Warning
Warning
The AC power supply has double pole/neutral fusing. Statement 188
Do not work on the system or connect or disconnect cables during periods of lightning activity.
Statement 1001
Warning
Warning
This equipment has been designed for connection to TN and IT power systems. Statement 1007
Only trained and qualified personnel should be allowed to install, replace, or service this equipment.
Statement 1030
Warning
Do not locate the antenna near overhead power lines or other electric light or power circuits, or
where it can come into contact with such circuits. When installing the antenna, take extreme care
not to come into contact with such circuits, because they may cause serious injury or death. For
proper installation and grounding of the antenna, please refer to national and local codes (for
example, U.S.:NFPA 70, National Electrical Code, Article 810, Canada: Canadian Electrical Code,
Section 54). Statement 1052
Caution
Caution
No serviceable parts inside. Do not open.
Double pole/neutral fusing. The power supply has two fuses and might have live circuits even when one fuse
has blown.
Note
For additional important safety instructions for AC power cords, refer to the AC Power Cords for Cisco
Aironet 1500 Series Outdoor Mesh Access Points document that shipped with your AC power cords.
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Avoiding Damage to Radios in a Testing Environment
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Each year hundreds of people are killed or injured when attempting to install an antenna. In many of
these cases, the victim was aware of the danger of electrocution, but did not take adequate steps to avoid
the hazard.
For safety, and to help you achieve a good installation, please read and follow these safety precautions.
They may save your installer’s life!
1. Select your installation site with safety, as well as performance in mind. Remember: electric power
lines and phone lines look alike. For safety, assume that any overhead line can kill.
2. Call your electric power company. Tell them your plans and ask them to come look at your proposed
installation. This is a small inconvenience considering your installer’s life is at stake.
3. Plan your installation carefully and completely before you begin. Successful raising of a mast or
tower is largely a matter of coordination. Each person should be assigned to a specific task, and
should know what to do and when to do it. One person should be in charge of the operation to issue
instructions and watch for signs of trouble.
4. When installing the access point and antennas, remember:
a. Do not use a metal ladder.
b. Do not work on a wet or windy day.
c. Do dress properly—shoes with rubber soles and heels, rubber gloves, long sleeved shirt or
jacket.
5. Use a rope to lift the access point. If the assembly starts to drop, get away from it and let it fall.
6. If any part of the antenna system should come in contact with a power line, don’t touch it or try to
remove it yourself. Call your local power company. They will remove it safely.
If an accident should occur call for qualified emergency help immediately.
Avoiding Damage to Radios in a Testing Environment
The radios on outdoor units (bridges) have higher transmit power levels than radios on indoor units
(access points). When you test high power radios in a link, you must avoid exceeding the receiver’s
maximum receive input level. At levels above normal the operating range, packet error rate (PER)
performance is degraded. At even higher levels, the receiver can be permanently damaged. To avoid
receiver damage and PER degradation, you can use one of the following techniques:
•
Separate the omnidirectional antennas by at least 2 ft (0.6 m) to avoid receiver damage or by at least
25 ft (7.6 m) to avoid PER degradation.
Note
These distances assume free space path loss and are conservative estimates. Required
separation distances for damage and performance degradation levels in actual deployments will be less
due to non line-of-sight propagation conditions.
•
•
•
Reduce the configured transmit power to the minimum level.
Use directional antennas and keep them away from each other.
Cable the radios together using a combination of attenuators, combiners, or splitters to achieve a total
attenuation of at least 60 dB.
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Installation Guidelines
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For a radiated test bed, the following equation describes the relationships among transmit power, antenna
gain, attenuation, and receiver sensitivity:
txpwr + tx gain + rx gain - [attenuation due to antenna spacing] < max rx input level
Where:
txpwr = Radio transmit power level
tx gain = transmitter antenna gain
rx gain = receiver antenna gain
For a conducted test bed, the following equation describes the relationships among transmit power,
antenna gain, and receiver sensitivity:
txpwr - [attenuation due to coaxial components] < max rx input level
Caution
Under no circumstances should you connect the antenna port from one access point to the antenna port
of another access point without using an RF attenuator. If you connect antenna ports you must not exceed
the maximum survivable receive level of 0 dBm. Never exceed 0 dBm or damage to the access point can
occur. Using attenuators, combiners, and splitters having a total of at least 60 dB of attenuation ensures
that the receiver is not damaged and PER performance is not degraded.
Installation Guidelines
Because the access point is a radio device, it is susceptible to common causes of interference that can
reduce throughput and range. Follow these basic guidelines to ensure the best possible performance:
•
For information on planning and initially configuring your Cisco Mesh network, refer to the
Deployment Guide: Cisco Mesh Networking Solution.
•
•
Perform a site survey before beginning the installation.
Install the access point in an area where structures, trees, or hills do not obstruct radio signals to and
from the access point.
•
The access points can be installed at any height, but best throughput is achieved when all the access
points are mounted at the same height.
Note
Note
Cisco recommends installing the access points no higher than 40 feet to allow support for wireless clients
on the ground.
To calculate path loss and to determine how far apart to install access points, consult an RF planning
expert.
Site Surveys
Every network application is a unique installation. Before installing multiple access points, you should
perform a site survey to determine the optimum use of networking components and to maximize range,
coverage, and network performance.
Consider the following operating and environmental conditions when performing a site survey:
•
Data rates—Sensitivity and range are inversely proportional to data bit rates. The maximum radio
range is achieved at the lowest workable data rate. A decrease in receiver sensitivity occurs as the
radio data increases.
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•
Antenna type and placement—Proper antenna configuration is a critical factor in maximizing radio
range. As a general rule, range increases in proportion to antenna height. However, do not place the
antenna higher than necessary, because the extra height also increases potential interference from
other unlicensed radio systems and decreases the wireless coverage from the ground.
•
•
Physical environment—Clear or open areas provide better radio range than closed or filled areas.
Obstructions—Physical obstructions such as buildings, trees, or hills can hinder performance of
wireless devices. Avoid locating the devices in a location where there is an obstruction between the
sending and receiving antennas.
Before Beginning the Installation
Before you begin the installation process:
•
•
•
•
•
Ensure that a site survey has been performed.
Ensure that your network infrastructure devices are operational and properly configured.
Ensure that your controllers are connected to switch trunk ports.
Ensure that your switch is configured with untagged access ports for connecting your access points.
Ensure that a DHCP server with Option 43 configured is reachable by your access points or
manually configure the controller information in the access point (for additional information, refer
•
•
•
Become familiar with the access point installation components (see the “Becoming Familiar with
Add the MAC addresses of the access points to the controller’s filter list (see the “Adding the Access
Enable automatic configuration of access points on the controller (see the “Enabling Zero Touch
Becoming Familiar with Access Point Installation Components
The access point is designed to be installed in an indoor or outdoor environment, such as an interior wall
or ceiling or the exterior roof overhang of a tall building or a streetlight pole.
Note
When you mount access point in an indoor environment, you must also mount the attached antennas in
an indoor environment.
Carefully review the following figures to become familiar with the system components, connectors,
indicators, cables, system interconnection, and grounding:
•
•
•
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Figure 2-1
Components in a Typical Access Point Installation
1
2
9
8
3
10
7
4
5
6
1
2
3
4
5
Building roof-overhang
Outdoor rated shielded Ethernet cable1
6
7
8
9
Ground
AC power cord2
Power injector3
Ethernet (CAT 5) cable1
Water drip loop
10-AWG copper grounding wire1
Ground rod1
10 Controller (through a switch)
1. User supplied.
2. The safety ground wire in the AC power cord must have a ground path to a grounding rod.
3. The shielded Ethernet cable has a ground path through the power injector and the safety ground wire in the AC power cord.
Warning
Note
Installation of the equipment must comply with local and national electrical codes. Statement 1074
There is no requirement for external lightening arrestors on the 1510. The power supplies on the 1510
and the PoE in ports have transient voltage surge suppression. In addition, the PoE in port should be used
with shielded cables that are grounded at the access point and power injector.
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Figure 2-2
Access Point Connectors
1
2
3
5.8-GHz antenna bracket (LAP1510 model)
Vent (do not remove)
4
5
6
Ethernet (PoE) connector (MS3112P14-12P)
AC power connector (MS3112P14-5P)
2.4-GHz antenna connector (Type-N)
5.8-GHz Type N antenna connector
(LAP1510 model)
Figure 2-3
Streetlight Power Tap Adapter Installation
1
2
3
1
2
Outdoor light control
3
10-AWG copper grounding wire
Streetlight power tap adapter
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Adding the Access Point MAC Addresses to the Controller Filter List
Prior to installing your access points, configure your controller by adding the MAC addresses of the
access points to the filter list and enable Zero Touch Configuration. This enables the controller to
respond to the listed access points and transfer the Bridge Shared Secret Key to each access point. The
secret key is required for the access points to communicate with other access points in the same bridge
group upon installation. Follow these steps to add a MAC filter entry on the controller:
Step 1
Step 2
Step 3
Step 4
Step 5
Log into your controller using a web browser.
Choose SECURITY > MAC Filtering > New.
Enter the MAC address of the access point to the MAC Filter list; for example, 00:0B:91:21:3A:C7.
Select a WLAN ID or Any WLAN from the WLAN ID pop-up menu.
Enter a description (32 characters maximum) of the access point in the Description field; for example,
Fisher_Street_00.0B.91.21.3A.C7 shows the location and MAC address of the access point.
Step 6
Step 7
Step 8
Choose an interface from the Interface Name pop-up menu and click Apply.
Repeat Steps 2 to 6 to add other access points to the list.
Log out of your controller and close your web browser.
Enabling Zero Touch Configuration on the Controller
Follow these steps to enable automatic configuration of access points on the controller:
Step 1
Step 2
Step 3
Log into your controller using a web browser.
Choose WIRELESS > MESH.
Check Enable Zero Touch Configuration.
Note
If you do not specify a new bridging shared secret key and key format, the default or the existing
configured value is used.
Step 4
Step 5
Step 6
[Optional] Choose a key format by clicking the down arrow in the Key Format field.
[Optional] Enter a new secret key and confirm the entry.
Click Apply.
Note
You can also use the controller CLI command config network zero-config to enable automatic
configuration.
Step 7
Log out from your controller and close your web browser.
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Configuring a RAP
The access point defaults to the MAP radio role. One or more of your access points must be reconfigured
as a RAP. The RAPs connect to a wired Ethernet link through a switch to the controller. The MAPs use
their wireless backhaul interface to connect to a RAP to reach the controller.
Follow these steps to configure a RAP on the controller:
Step 1
Step 2
Log into your controller using a web browser.
Click Wireless. When your access point associates to the controller, your access point’s name is visible
in the AP Name list.
Step 3
Step 4
Step 5
Step 6
Step 7
Find your access point’s name and click Detail.
Find Bridging Instructions and choose Root AP by clicking the drop down arrow in the AP Role field.
Click Apply.
Repeat Steps 2 through 5 for each RAP.
Log out from your controller and close your web browser.
Mounting the Access Point
This section provides instructions for installing your access points. Personnel installing the access point
must understand wireless access points and bridging techniques and grounding methods.
Installation Options
There are two common installation methods: a roof-overhang or wall installation using the access point
mounting plate (supplied) or a pole installation using the optional pole mount kit.
Warning
Only trained and qualified personnel should be allowed to install, replace, or service this equipment.
Statement 1030
Warning
Caution
Installation of the equipment must comply with local and national electrical codes. Statement 1074
When the product is installed outside of the building, and the DC power/Ethernet connection is used, this
cabling should be installed in accordance with the requirements of a Class 2 circuit, as detailed in Article
725 of the National Electric Code (NEC). Such requirements include, but are not limited to, routing the
Class 2 cabling away from AC power lines and AC building wiring, and limiting the exposed cable runs
external to the building to less than 140 ft (42m) – or is directly buried or in underground conduit, where
a continuous metallic cable shield or a continuous metallic conduit containing the cable is bonded to
each building grounding electrode system. If such installation methods are not followed, the cabling
must be installed according to the requirements for telecommunication circuits (TNV) as detailed in
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Article 800, which includes requirements for a Listed primary protector upon entering the building, and
limits the installation to only Listed networking equipment designed to accommodate telecommunication
interfaces.
Caution
To provide inline PoE, you must use the power injector (AIR- PWRINJ1500=) specified for the access
point. Other power injectors, PoE switches, and 802.3af power sources may not provide adequate power,
which may cause the access point to malfunction and cause over-current conditions at the power source.
You must ensure that the switch port connected to the access point has PoE turned off.
Refer to these sections for installation details.
•
•
•
•
•
Access Point Mounting Orientations
When installing an access point on a horizontal or vertical surface, you must ensure that the access point
is correctly oriented.
Caution
When mounting the access point in a horizontal position, you must position the side with the 2.4-GHz
antenna connector facing down (see Figure 2-4). When you are mounting the access point in a vertical
position, you must position the access point with the 5-GHz antenna connector facing up (see
Figure 2-5). This positioning is required to prevent water intrusion into the unit from the vent. You must
ensure that the vent is not obstructed by anything.
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Figure 2-4
Preferred Horizontal Orientation
1
2
3
1
2
5-GHz antenna connector (LAP1510 model)
5-GHz antenna cable (LAP1510 model)
3
2.4-GHz antenna connector (this side down)
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Figure 2-5 illustrates the access point vertical orientation.
Figure 2-5
Optional Vertical Orientation
1
2
3
1
2
5-GHz external antenna connector
(LAP 1510 model)
3
This end must be down
2.4-GHz external antenna connector
Note
Omnidirectional antennas must be mounted vertically.
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Mounting the Access Point on a Vertical or Horizontal Surface
To mount the access point on a vertical or horizontal surface such as a wall or a roof-overhang, use the
supplied mounting plate. For the correct access point mounting orientations, refer to the “Access Point
Step 1
The mounting plate is attached to the access point by two carriage bolts. Refer to Figure 2-6 for the
location of the carriage bolts securing the mounting plate.
Figure 2-6
Access Point Mounting Plate and Carriage Bolts
2
1
2
3
1
2
Mounting plate
Carriage bolts
3
Grounding screw hole
Step 2
Step 3
Remove the nuts and washers from the carriage bolts and remove the carriage bolts.
Remove the mounting plate from the access point.
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Step 4
Use the mounting plate as a template to mark four screw hole locations on your mounting surface. See
Figure 2-7 for the mounting plate screw hole locations.
Caution
The mounting surface, attaching screws, and optional wall anchors must be able to support a 50 lbs
(22.7 kg) static weight.
Figure 2-7
Mounting Plate Screw Hole Locations
1
1
Four locations
Step 5
Use four customer-supplied screws and optional screw anchors to attach the mounting plate to the
mounting surface.
Note
If necessary, use suitable screw anchors and an exterior-grade plywood backboard to mount the
access point to stucco, cement, or drywall.
Step 6
Step 7
Use the carriage bolts and the associated nuts and washers to reattach the access point to the mounting
plate. Tighten the nuts to 61 to 71 in. lbs (6.89 to 8.02 Nm).
Roof-Overhang Installation
When your access point is mounted on a roof overhang, follow these steps to complete the installation:
Step 1
Step 2
Connect a Category 5 Ethernet cable from your wired LAN network to the optional power injector.
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Caution
When the product is installed outside of the building, and the DC power/Ethernet connection
is used, this cabling should be installed in accordance with the requirements of a Class 2
circuit, as detailed in Article 725 of the National Electric Code (NEC). Such requirements
include, but are not limited to, routing the Class 2 cabling away from AC power lines and AC
building wiring, and limiting the exposed cable runs external to the building to less than 140
ft (42 m) – or is directly buried or in underground conduit, where a continuous metallic cable
shield or a continuous metallic conduit containing the cable is bonded to each building
grounding electrode system. If such installation methods are not used, the cabling must be
installed according to the requirements for telecommunication circuits (TNV) as detailed in
Article 800, which includes requirements for a Listed primary protector upon entering the
building, and limits the installation to only Listed networking equipment designed to
accommodate telecommunication interfaces.
Use only the specified power injector (AIR-PWRINJ1500=) for the access point. This power injector is
designed to meet the power requirements of the access point and is a listed Class 2 Limited Power Source
(LPS).
Tip
To forward bridge traffic, add a switch between the power injector and controller. Refer to the
Deployment Guide: Cisco Mesh Networking Solution for more information.
Step 3
Step 4
Ensure the antennas are connected to the access point before you apply power to the access point.
Connect a shielded outdoor-rated Ethernet cable (such as AIR-ETH1500-150=) between the power
Note
You should hand-tighten the access point Ethernet cable connector until the connector locks.
Warning
Step 5
Use the captive connector cap on the unused mil spec connector to prevent water intrusion and
possible safety hazards. Statement 362
When using the optional Cisco external omnidirectional antennas, connect them to the access point as
installation documentation that shipped with the antennas.
Step 6
Step 7
When using optional third-party external antennas, mount and connect them as described in the
installation documents that shipped with the antennas.
Mounting the Access Point on a Pole
When installing an access point on a pole or mast, you should use the optional Cisco pole mount kit. To
mount the access point on a pole, perform these steps:
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Step 1
From the pole mount kit, use four of the supplied short bolts, lock washers, and flat washers to attach
the pole mount kit adjustment plate to the access point mounting plate as shown in Figure 2-8. Tighten
the bolts to 15 to 20 ft. lbs. (20 to 27 Nm).
Figure 2-8
Adjustment Plate Attached to the Mounting Plate
Step 2
Step 3
Select a mounting location. You can attach the access point to any pole from 1.66 to 3.35 in. (4.22 to
9.02 cm) in diameter.
Note
If you will be using a streetlight power tap adapter, position the access point within 3 ft (1 m) of
the outdoor light control.
Loosely assemble the pole clamp components around the pole and thread the four long bolts into the
clamp adjustment plate. Figure 2-9 shows the pole clamp attached to a pole with the clamp adjustment
plate positioned on the bolts.
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Figure 2-9
Pole Clamp and Clamp Adjustment Plate Mounted on a Pole
Step 4
Adjust the top edge of the pole clamp until it is horizontal and tighten the bolts to 15 to 20 ft. lbs. (20
to 27 Nm)
Note
If you need longer bolts, purchase 3/8–16 bolts of the correct length for your installation. Also,
the bolts can protrude up to 2 in (5 cm) and still allow the pole mount assembly to swivel and
rotate.
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Step 5
From the pole mount kit, use the two short bolts, lock washers, and flat washers to loosely attach the two
Note
Do not over-tighten the bolts. You will need to adjust the access point orientation.
Figure 2-10
Access Point Attached to the Pole Clamp
Step 6
Step 7
If necessary, rotate the access point until the top edge of the housing is horizontal, and tighten the two
short bolts on the adjustment plates. Torque the bolts to 15 to 20 ft. lbs. (20 to 27 Nm).
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Grounding the Access Point
Warning
This equipment must be externally grounded using a customer-supplied ground wire before power is
applied. Contact the appropriate electrical inspection authority or an electrician if you are uncertain
that suitable grounding is available. Statement 366
Warning
Installation of the equipment must comply with local and national electrical codes. Statement 1074
In all outdoor installations and when powering the access point with AC power, you must follow these
instructions to properly ground the case:
Step 1
Step 2
If using insulated 10-AWG copper ground wire, strip the insulation as required for the grounding lug.
Use the appropriate crimping tool to crimp the bare 10-AWG copper ground wire to the grounding lug
(Panduit PN-10-6R-2K lug supplied).
Step 3
Connect the grounding lug to the access point grounding screw hole using the supplied Phillips head
screw (6-32x1/4 stainless steel) with lock washer (McMaster-Carr 95345A458 or equivalent). The
grounding screw hole is located on the mounting plate side of the access point case near the 5-GHz
antenna connector (see Figure 2-6). Tighten the grounding screw to 7 to 8 in. lbs. Do not overtighten!
Step 4
If necessary, strip the other end of the ground wire and connect to a reliable earth ground, such as a
grounding rod or an appropriate grounding point on a metal streetlight pole that is grounded (see
Streetlight Pole Installations
The access point can be installed where power is available, without the need for a wired LAN connection.
The access point uses intelligent wireless routing that is based on the Adaptive Wireless Path Protocol
(AWPP). AWPP enables a remote access point to dynamically optimize the best route to the wired LAN
network using another access point.
The LAP1510 model uses the 5-GHz radio for the Mesh backhaul Mesh connections. The 2.4-GHz radio
is used for local wireless client access. The LAP1505 model uses the 2.4-GHz radio for both Mesh
backhaul and local wireless client access.
The access point can be installed on a streetlight pole and powered from a streetlight outdoor light
control using the optional streetlight power tap adapter.
Caution
The access point can be powered by a light pole twist-lock outdoor light control that provides 100- to
240-VAC 50/60 Hz power. Do not connect to an outdoor light control powered by higher voltages.
When powering the access point with AC power other than the streetlight power tap adapter, you must
ensure that the following conditions are observed:
1. AC power can be conveniently removed from the unit. The power should not be removed by
disconnecting the AC power connector on the unit.
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Caution
A readily accessible service disconnect device must be incorporated in the fixed wiring. The disconnect
device must open all of the phase conductors.
2. You must protect any AC power plugs and AC receptacles from water and other outdoor elements.
You can accomplished by using a UL Listed waterproofing enclosure suitable for covering the AC
receptacle and AC power plug that supplies power to the unit as described in Article 406 of the NEC.
3. When you install the access point outdoors or in a wet or damp location, the AC branch circuit that
powers the access point should be provided with ground fault protection (GFCI), as required by
Article 210 of the National Electrical Code (NEC).
Warning
Note
Be very careful when connecting the streetlight adapter to Category 3 pole-top power. If you are not
careful, you may electrocute yourself or fall. Statement 363
For additional important safety instructions for AC power cords, refer to the AC Power Cords for Cisco
Aironet 1500 Series Outdoor Mesh Access Points document that shipped with your AC power cords.
To install an access point on a light pole, follow these steps:
Step 1
Step 2
When using the streetlight power tap adapter (AIR-PWR-ST-LT-TAP=), ensure that the access point is
mounted within 3 ft (1m) of the outdoor light control. For mounting instructions, refer to the “Mounting
Refer to Figure 2-11. The streetlight power tap adapter uses a 3-pronged UL773 twist-lock adapter that
is placed between the outdoor light control and its fixture. The UL773 twist-lock adapter is designed to
be used with UL773 listed outdoor light controls operating at 100-to 240-VAC, 50/60 Hz.
Step 3
Step 4
Step 5
Disconnect the outdoor light control from its fixture.
Verify that the voltage available at the fixture is between 100 and 240 VAC, 50/60 Hz.
Turn off power to the fixture at the designated circuits.
Caution
For your safety, when installing the streetlight power tap adapter to the access point AC power connector,
always connect the access point end of the cable FIRST. When removing the streetlight power tap
adapter, always disconnect the access point end of the cable LAST.
Warning
Step 6
Use the captive connector cap on the unused mil spec connector to prevent water intrusion and
possible safety hazards. Statement 362
Move the protective cap from the 5-pin AC power connector to the 12-pin Ethernet connector because
the Ethernet connector is not used in light pole deployments.
Note
Ensure that your antennas are connected to the access point before you apply power to the access
point.
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Step 7
Step 8
Connect the streetlight power tap adapter to the access point AC power connector, as shown in
Note
Hand-tighten the cable connector until it locks. No specific torque is required.
Plug the streetlight power tap adapter into the outdoor light control fixture, as shown in Figure 2-11.
Figure 2-11
Using the Streetlight Power Tap Adapter
1
2
3
1
2
Outdoor light control
3
10-AWG copper grounding wire
Streetlight power tap adapter
Step 9
Plug the outdoor light control into the streetlight power tap adapter.
Step 10 Ensure the antennas are connected to the access point before you apply power to the access point.
Step 11 Turn on the power to the outdoor light control fixture at the designated circuits.
Note
When you power up a MAP that is not connected to a wired Ethernet network to the controller,
the access point uses the Cisco Adaptive Wireless Path Protocol to bind to another MAP with
the best path to a RAP connected to the wired network to a controller.
The access point sends a discovery request when powered up. If you have configured the access point in
the controller correctly, the controller sends back a discovery response to the access point. When that
happens, the access point sends out a join request to the controller and the controller responds with a
join confirmation response. Then, the access point establishes an LWAPP connection to the controller
and gets the shared secret configured on the controller under zero-touch configuration.
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What to Do Next
Refer to the Cisco Wireless LAN Controller Configuration Guide for more information on configuring,
monitoring, and operating your access points. The following lists some of the configuration settings you
might want to reconfigure:
•
•
•
Changing the bridge shared secret key to a non-default value
Selecting a backhaul channel when using the 4.9 MHz band ( LAP1510 model only)
Disabling the Zero Touch Configuration feature
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C H A P T E R
3
Troubleshooting
This chapter provides troubleshooting procedures for basic problems with the access point. For the most
up-to-date, detailed troubleshooting information, refer to the Cisco Technical Support and
Documentation website at the following URL:
Sections in this chapter include:
•
•
•
•
•
•
•
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Chapter 3 Troubleshooting
Guidelines for Using the Access Points
Guidelines for Using the Access Points
You should keep these guidelines in mind when you use the access points:
•
•
The access point can only communicate with controllers and cannot operate independently.
The access point does not support Wireless Domain Services (WDS) and cannot communicate with
WDS devices. However, the controller provides functionality equivalent to WDS when the access
point associates to it.
•
The access points support Layer 2 or Layer 3 LWAPP communications with the controllers. In Layer
2 operation, the access point and the controller must be on the same subnet and communicate with
each other using MAC addresses in encapsulated Ethernet frames. This operation is not scalable to
larger networks and not recommended by Cisco.
In Layer 3 operation, the access point and the controller can be on the same or different subnets. The
access point communicates with the controller using standard IP packets. Layer 3 operation is
scalable and is recommended by Cisco. A Layer 3 access point on a different subnet than the
controller requires a DHCP server on the access point subnet and a route to the controller. The route
to the controller must have destination UDP ports 12222 and 12223 open for LWAPP
communications. The route to the primary, secondary, and tertiary controllers must allow IP packet
fragments.
•
Before deploying your access points ensure that the following has been done:
–
–
–
Your controllers are connected to switch ports that are configured as trunk ports.
Your access points are connected to switch ports that are configured as untagged access ports.
A DHCP server is reachable by your access points and has been configured with Option 43.
Option 43 is used to provide the IP addresses of the Management Interfaces of your controllers.
Typically, a DHCP server can be configured on a Cisco switch.
–
Optionally a DNS server can be configured to enable CISCO-LWAPP-CONTROLLER.<local
domain> to resolve to the IP address of the Management Interface of your controller.
–
–
Your controllers are configured and reachable by the access points.
Your controllers are configured with the MAC addresses of the access points and Zero Touch
Configuration is enabled.
Controller MAC Filter List
Prior to activating your access point, you must ensure that the access point MAC address has been added
to the controller MAC Filter list. To view the MAC addresses added to the controller MAC filter list, you
can use the controller CLI or the controller GUI:
•
Controller CLI–Use the show macfilter summary controller CLI command to view the MAC
addresses added to the controller filter list.
•
Controller GUI–Log into your controller web interface (HTTPS) using a web browser and choose
SECURITY > MAC Filters to view the MAC addresses added to the controller filter list.
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Using DHCP Option 43
Using DHCP Option 43
You can use DHCP Option 43 to provide a list of controller IP addresses to the access points, enabling
the access point to find and join a controller. Refer to the product documentation for your DHCP server
for instructions on configuring DHCP Option 43. For additional information, refer to the “Configuring
Misconfigured Bridge Shared Secret Key
If an access point has a misconfigured bridge shared secret key, it is not allowed to join the mesh
network. If Enable Zero Touch Configuration is checked on your controller, the access point can
obtain the shared secret key from the controller or a neighbor access point.
If Enable Zero Touch Configuration is not checked, you might need to check the feature to allow the
access point to get a new bridge shared secret key (refer to the “Enabling Zero Touch Configuration on
Misconfigured MESH Access Point IP address
IP address misconfiguration can occur when you are re-addressing a segment of your mesh network and
your first IP address change is the IP addresses of the RAP connected to the wired network. To avoid this
problem, always start the IP addressing changes from the farthest access point and work your way back
to the RAP. This problem might also happen if you move equipment; for example, you uninstall an access
point and redeploy it in another physical location on the mesh network with a different IP subnet.
Another option to fix this misconfigured IP address is to physically take a controller in L2 mode with a
RAP to the location of the misconfigured MAP. Set the bridge group name for the RAP to match the
misconfigured MAP. Add the MAP’s MAC address to the controller’s filter list and check Enable Zero
Tough Configuration. When the misconfigured MAP displays on the controller’s Summary page, you
can properly configure the access point.
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Chapter 3 Troubleshooting
Verifying Controller Association
Verifying Controller Association
To verify that your access point is associated to the controller, follow these steps:
Step 1
Log into your controller web interface (HTTPS) using a web browser.
Note
You can also use the controller CLI show ap summary command from the controller console
port.
Step 2
Step 3
Click Wireless and verify that your access point MAC address is listed under Ethernet MAC.
Logout of the controller and close your web browser.
Access Point Power
The access point does not have an LED to indicate available power.
Caution
No serviceable parts inside. Do not open.
To ensure that your access point has power after installation, perform these steps:
Step 1
Step 2
Ensure that the access point power source is turned-off.
Remove and reconnect the AC power or Ethernet connector that supplies power to the access point.
Note
Hand-tighten the connector until the connector locks.
Step 3
Step 4
Ensure that all other cable connectors are properly connected.
Turn-on the power source for the access point.
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A P P E N D I X
A
Translated Safety Warnings
For translated safety warnings, refer to the safety warning document that shipped with your access point or
that is available on Cisco.com.
To browse to the document on Cisco.com, follow these steps:
Step 1
Click this link to the Cisco Wireless documentation home page:
Click Cisco Aironet 1500 Series listed under Outdoor Wireless.
Click Install and Upgrade Guides.
Step 2
Step 3
Step 4
Click Translated Safety Warnings for Cisco Aironet 1500G Series Lightweight Outdoor Mesh
Access Points.
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Appendix A Translated Safety Warnings
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A P P E N D I X
B
Declarations of Conformity and
Regulatory Information
This appendix provides declarations of conformity and regulatory information for the Cisco Aironet
1500 series lightweight outdoor mesh access point.
This appendix contains the following sections:
•
Manufacturers Federal Communication Commission Declaration of Conformity Statement, page
B-2
•
•
•
•
•
VCCI Statement for Japan, page B-3
Industry Canada, page B-3
Declaration of Conformity for RF Exposure, page B-4
Administrative Rules for Cisco Aironet Access Points in Taiwan, page B-4
Operation of Cisco Aironet Access Points in Brazil, page B-6
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Appendix B Declarations of Conformity and Regulatory Information
Manufacturers Federal Communication Commission Declaration of Conformity Statement
Manufacturers Federal Communication Commission
Declaration of Conformity Statement
Tested To Comply
With FCC Standards
FOR HOME OR OFFICE USE
Model:
AIR-LAP1510AG-A-K9
AIR-LAP1505G-A-K9
FCC Certification number:
LDK102058
Manufacturer:
Cisco Systems, Inc.
170 West Tasman Drive
San Jose, CA 95134-1706
USA
This device complies with Part 15 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.
This equipment has been tested and found to comply with the limits of a Class B digital device, pursuant
to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful
interference when the equipment is operated in a residential environment. This equipment generates,
uses, and radiates radio frequency energy, and if not installed and used in accordance with the
instructions, may cause harmful interference. However, there is no guarantee that interference will not
occur. If this equipment does cause interference to radio or television reception, which can be determined
by turning the equipment off and on, the user is encouraged to correct the interference by one of the
following measures:
•
•
•
•
Reorient or relocate the receiving antenna.
Increase separation between the equipment and receiver.
Connect the equipment to an outlet on a circuit different from which the receiver is connected.
Consult the dealer or an experienced radio/TV technician.
Caution
The Part 15 radio device operates on a non-interference basis with other devices operating at this
frequency when using Cisco-supplied antennas. Any changes or modification to the product not
expressly approved by Cisco could void the user’s authority to operate this device.
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Appendix B Declarations of Conformity and Regulatory Information
VCCI Statement for Japan
Caution
Note
To meet regulatory restrictions, the access point must be professionally installed.
The use of the 4.9-GHz band requires a license and may be used only by qualified Public Safety
operators as defined in section 90.20 of the FCC rules ( LAP1510 model only).
VCCI Statement for Japan
Warning
This is a Class B product based on the standard of the Voluntary Control Council for Interference from
Information Technology Equipment (VCCI). If this is used near a radio or television receiver in a
domestic environment, it may cause radio interference. Install and use the equipment according to
the instruction manual.
Industry Canada
IC Certification Number: 2461B-102058
Canadian Compliance Statement
This Class B Digital apparatus meets all the requirements of the Canadian Interference-Causing
Equipment Regulations.
Cet appareil numerique de la classe B respecte les exigences du Reglement sur le material broilleur du
Canada.
This device complies with Class B Limits of Industry Canada. 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.
Cisco’s access points are certified to the requirements of RSS-210 issue 5, RSP 100, and RSS 102 for
spread spectrum devices.
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Appendix B Declarations of Conformity and Regulatory Information
Declaration of Conformity for RF Exposure
Declaration of Conformity for RF Exposure
This access point product has been found to be compliant to the requirements set forth in CFR 47
Section 1.1307 addressing RF Exposure from radio frequency devices as defined in Evaluating
Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields.T he
antennas should be positioned more than 6.56 feet (2 meters) from your body or nearby persons.
This access point is also compliant to EN 50835 for RF exposure.
Administrative Rules for Cisco Aironet Access Points in Taiwan
This section provides administrative rules for operating Cisco Aironet access points in Taiwan. The rules
are provided in both Chinese and English.
Chinese Translation
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Administrative Rules for Cisco Aironet Access Points in Taiwan
English Translation
Administrative Rules for Low-power Radio-Frequency Devices
Article 12
For those low-power radio-frequency devices that have already received a type-approval, companies,
business units or users should not change its frequencies, increase its power or change its original
features and functions.
Article 14
The operation of the low-power radio-frequency devices is subject to the conditions that no harmful
interference is caused to aviation safety and authorized radio station; and if interference is caused, the
user must stop operating the device immediately and can't re-operate it until the harmful interference is
clear.
The authorized radio station means a radio-communication service operating in accordance with the
Communication Act.
The operation of the low-power radio-frequency devices is subject to the interference caused by the
operation of an authorized radio station, by another intentional or unintentional radiator, by industrial,
scientific and medical (ISM) equipment, or by an incidental radiator.
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Appendix B Declarations of Conformity and Regulatory Information
Operation of Cisco Aironet Access Points in Brazil
Operation of Cisco Aironet Access Points in Brazil
This section contains special information for operation of Cisco Aironet access points in Brazil.
Access Point Models
AIR-LAP1510G-A-K9
AIR-LAP1505G-A-K9
Regulatory Information
Figure 1-1 contains Brazil regulatory information for the AIR-LAP1510G-A-K9 and the
AIR-LAP1505G-A-K9 access points.
Figure 1-1
Brazil Regulatory Information
Portuguese Translation
Este equipamento opera em caráter secundário, isto é, não tem direito a proteção contra interferência
prejudicial, mesmo de estações do mesmo tipo, e não pode causar interferência a sistemas operando em
caráter primário.
English Translation
This equipment operates on a secondary basis and consequently must accept harmful interference, including
interference from stations of the same kind. This equipment may not cause harmful interference to systems
operating on a primary basis.
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A P P E N D I X
C
Access Point Specifications
Table C-1 lists the technical specifications for the Cisco Aironet 1500 Series Lightweight Outdoor Mesh
Access Point.
Table C-1
Access Point Specifications
Specifications
Category
802.11b
802.11g
802.11a (LAP1510 model)
Size
15.0 in x 7.3 in x 5.7 in. (38.1 cm x 18.5 cm x 14.5 cm)
(includes antenna mount bracket)
Connectors
Ethernet (POE) connector—12 pin circular Mil spec (MS3112P14-12P)
AC power connector—5 pin circular Mil spec (MS3112P14-5P)
2.4-GHz Type N antenna connector
5-GHz Type N antenna connector—(LAP1510 model)
Input voltage
Input power
100- to 240- VAC, 50/60 Hz (nominal)
48 VDC (nominal)
DC inline PoE power
28.5 W at 48 VDC (nominal)
AC power
57.8 W at 120 VAC (nominal)
70.3 W at 240 VAC (nominal)
Operating temperature Access point
–40 to 131oF (–40 to 55oC)
Power injector
30 to 140oF (0 to 60oC)
Access point
–58 to 185oF (–50 to 85oC)
Power injector
-76 to 158oF (-60 to 70oC)
Storage temperature
Weight
10 lbs. (4.55 kg)
Modulation
Complementary Code Keying Orthogonal Frequency Division Multiplex (OFDM)
(CCK)
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Appendix C Access Point Specifications
Table C-1
Access Point Specifications (continued)
Specifications
802.11b
Category
802.11g
802.11a (LAP1510 model)
Subcarrier modulation BPSK (1 Mbps)
QPSK (2 Mbps)
BPSK (6 and 9 Mbps)
BPSK (6 Mbps and 9 Mbps)
QPSK (12 Mbps and 18 Mbps)
16-QAM (24 and 36 Mbps)
64-QAM (48 and 54 Mbps)
QPSK (12 and 18 Mbps)
16-QAM (24 and 36 Mbps)
64-QAM (48 and 54 Mbps)
CCK (5.5 and 11 Mbps)
CCK
OFDM
OFDM
Power output
Frequency
24 dBm conducted
26 dBm conducted
Maximum output depends on the regulatory domain in which the access point is installed. For
2.400 to 2.484 GHz
4.940 to 4.990 GHz 1
5.470 to 5.725 GHz
5.725 to 5.85 GHz
Frequency depends on the regulatory domain in which the access point is installed. For additional
Data rates
1, 2, 5.5, and 11 Mbps
6, 9, 12, 18, 24, 36, 48, and 54 Mbps
Environmental ratings NEMA Type 4X, IP66
Maximum elevation
Wind resistance
Immunity
6561 ft (2000 m)
Up to 165 MPH
Less than or equal to 5 mJ for 6kV/3kA @ 8/20 ms waveform
ANSI/IEEE C62.41
EN61000-4-5 Level 4 AC Surge Immunity
EN61000-4-4 Level 4 Electrical Fast Transient Burst Immunity
EN61000-4-3 Level 4 EMC Field Immunity
EN61000-4-2 Level 4 ESD Immunity
Safety
Designed to meet:
AS/NZS 60950.1
IEC 60950-1
UL 60950-1
CSA 60950-1
EN 60950-1
IEC60664-1 Overvoltage category IV (for streetlight installations)
Radio approvals
FCC Parts 15.247, 90.210
FCC Bulletin OET-65C
Canada RSS-210 and RSS-102
AS/NZS 4268.2003
EMI and Susceptibility FCC Part 15.107 and 15.109
ICES-003 (Canada)
EN 55022
EN 55022
1. The use of the 4.9-GHz band requires a license and may be used only by qualified Public Safety operators as defined in section 90.20 of the FCC rules.
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A P P E N D I X
D
Channels and Power Levels
For channel and maximum power level settings, refer to the Channels and Maximum Power Settings for
Cisco Aironet Lightweight Access Points and Bridges document available on the Cisco Wireless
documentation page of Cisco.com.
To browse to the document, follow these steps:
Step 1
Click this link to the Cisco Wireless documentation home page:
Click Cisco Aironet 1500 Series listed under Outdoor Wireless.
Click Install and Upgrade Guides.
Step 2
Step 3
Step 4
Click Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points and
Bridges.
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Appendix D Channels and Power Levels
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A P P E N D I X
E
Connector Pinouts
This appendix describes the pin signals of the access point AC power connector (MS3112P14-5P), the
access point Ethernet (POE) connector (MS3112P14-12P), and the power injector Input and Output
Table E-1
AC Power Connector (MS3112P14-5P) Pinouts
Pin Number
Signal Name
Neutral
A
B
C
D
E
Line
(unused)
Case Ground
(unused)
Table E-2 describes the pin signals of the Ethernet (POE) connector.
Table E-2
Ethernet (POE) Connector (MS3112P14-12P) Pinouts
Pin Number
Signal Name
A
B
C
D
E
F
Ethernet Tx+
Ethernet Tx–
Ethernet Rx+
Ethernet Rx–
RS232 TxD1
RS232 RxD1
G
H
J
Ground Signal/RS232
(unused)
(unused)
K
L
M
Case Ground
DC+ (the DC power goes through a bridge rectifier, so polarity should not be an issue)
DC- (this side of the DC power is fused)
1. Not used in the access point outdoor Ethernet cable (AIR-ETH1500-150=).
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Appendix E Connector Pinouts
Table E-3 describes the pin signals for the power injector Input connector (RJ-45).
Table E-3
Power Injector Input Connector Pinouts
Pin Number
Signal Name
Ethernet Tx+
Ethernet Tx–
Ethernet Rx+
(unused)
1
2
3
4
5
6
7
8
(unused)
Ethernet Rx–
(unused)
(unused)
Table E-4 describes the pin signals for the power injector Output connector (RJ-45).
Table E-4
Power Injector Output Connector Pinouts
Pin Number
Signal Name
1
2
3
4
5
6
7
8
Ethernet Tx+
Ethernet Tx–
Ethernet Rx+
48 VDC power (+)
48 VDC power (+)
Ethernet Rx–
48 VDC power (return)
48 VDC power (return)
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A P P E N D I X
F
Priming Access Points Prior to Deployment
This section describes an optional procedure designed to prime or stage your access points in a
convenient location rather than after they are installed in possibly difficult to reach locations. This helps
limit potential installation problems to primarily Ethernet and power areas.
Figure F-1 illustrates a typical priming configuration for your access points.
Figure F-1
Typical Priming Configuration
LWAPP
LWAPP
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Appendix F Priming Access Points Prior to Deployment
Before deploying your access points to their final locations, follow these steps to prime your access
points:
Step 1
Use the controller CLI, controller GUI, or Cisco WCS to configure your controller:
a. Add the MAC addresses of your access points in controller filter list (refer to the “Adding the Access
Step 2
Step 3
In a Layer 2 environment, where the access points are located on the same subnet as the controller, the
access point communicates directly with the controller. In this environment, you don’t need a DHCP
server on the same subnet as the access points because the access points receive IP address information
from the controller.
In a Layer 3 environment, ensure that a DHCP server (typically on your switch) is enabled on the same
subnet as your access points. The access points will receive its IP address and controller information
using DHCP Option 43.
The access point must be able to find the IP address of the controller. This can be accomplished using
DHCP, DNS, OTAP, or IP subnet broadcast. This guide describes the DHCP method to convey the
controller IP address. For other methods, refer to the product documentation. Refer to the “Controller
MAC Filter List” section on page 3-2 for more information.
Note
For a Layer 3 access point on a different subnet than the controller, ensure that the route to the
controller has destination UDP ports 12222 and 12223 open for LWAPP communications.
Ensure that the routes to the primary, secondary, and tertiary controllers allow IP packet
fragments.
Step 4
Step 5
Ensure that your controller is connected to a switch trunk port.
Configure the controller in LWAPP Layer 3 mode and ensure that its DS Port is connected to the switch.
Use the CLI, web-browser interface, or Cisco WCS procedures as described in the appropriate controller
guide.
a. In multi-controller environments, You can set one controller’s DS port to Master (you can use the
config network master-base disable CLI command or you can use the controller GUI) so that new
access points always associate with it. You can use the show network config CLI command to
determine if the controller DS port is the master.
All access points associate to the master controller. From one location, you can configure access
point settings such as primary, secondary, and tertiary controllers. This allows you to redistribute
your access points to other controllers on the network.
You can also use a Cisco WCS server to control, configure, and redistribute all your access points
from a single location.
Step 6
Apply power to the access points:
a. Connect your access points to untagged access ports on your POE capable switch. You can
optionally use power injectors (AIR-PWRINJ1500=) to power your access points.
b. When the access point associates with the controller, if the access point code version differs from
the controller code version, the access point downloads the operating system code from the
controller.
c. When the operating system download is successful, the access point reboots.
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Appendix F Priming Access Points Prior to Deployment
Step 7
Step 8
Step 9
Use the controller CLI, controller GUI, or Cisco WCS to configure the access point with primary,
secondary, and tertiary controller names.
If the access point is in a Controller Mobility Group, use the controller CLI, controller GUI, or Cisco
WCS to configure the Controller Mobility Group name.
Use controller CLI, controller GUI, or Cisco WCS to configure the access point-specific 802.11a,
802.11b, and 802.11g network settings.
Step 10 Repeat Steps 4 to 9 for each access point.
When you successfully complete the configuration priming of all your access points, ensure that Master
setting is disabled on your controller. You can begin deploying the access points to their final
destinations.
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Appendix F Priming Access Points Prior to Deployment
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A P P E N D I X
G
Configuring DHCP Option 43
This appendix describes the steps needed to configure DHCP Option 43 on a Windows 2003 Enterprise
DHCP server, such as a Cisco Catalyst 3750 series switch, for use with Cisco Aironet lightweight access
points. This appendix contains these sections:
•
•
•
•
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Appendix G Configuring DHCP Option 43
Overview
Overview
This section contains a DHCP Option 43 configuration example on a Windows 2003 Enterprise DHCP
server for use with Cisco Aironet lightweight access points. For other DHCP server implementations,
consult DHCP server product documentation for configuring DHCP Option 43. In Option 43, you should
use the IP address of the controller management interface.
Note
DHCP Option 43 is limited to one access point type per DHCP pool. You must configure a separate
DHCP pool for each access point type.
Cisco Aironet 1000 and 1500 series access points use a comma-separated string format for DHCP Option
43. Other Cisco Aironet access points use the type-length-value (TLV) format for DHCP Option 43.
DHCP servers must be programmed to return the option based on the access point’s DHCP Vendor Class
Identifier (VCI) string (DHCP Option 60). The VCI strings for Cisco access points capable of operating
Table G-1
Lightweight Access Point VCI Strings
Access Point
Vendor Class Identifier (VCI)
Airespace.AP1200
Cisco APc1100
Cisco APc1130
Cisco APc1200
Cisco APc1240
Cisco APc1300
Cisco APc15001
Cisco Aironet 1000 series
Cisco Aironet 1100 series
Cisco Aironet 1130 series
Cisco Aironet 1200 series
Cisco Aironet 1240 series
Cisco Aironet 1300 series
Cisco Aironet 1500 series
Cisco AP.OAP15002,Cisco AP.LAP15102,or
Cisco AP.LAP15052
Airespace.AP12003
1. For controller release 4.1 or later.
2. For controller release 4.0, the VCI depends on the model.
3. For controller release 3.2
The format of the TLV block for 1100, 1130, 1200, 1240, 1250, and 1300 series access points is listed
below:
•
•
•
Type: 0xf1 (decimal 241)
Length: Number of controller IP addresses * 4
Value: List of WLC management interfaces
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Appendix G Configuring DHCP Option 43
Configuring Option 43 for 1000 Series Access Points
Configuring Option 43 for 1000 Series Access Points
To configure DHCP Option 43 for Cisco 1000 series lightweight access points in the embedded Cisco
IOS DHCP server, follow these steps:
Step 1
Step 2
Enter configuration mode at the Cisco IOS command line interface (CLI).
Create the DHCP pool, including the necessary parameters such as default router and name server. A
DHCP scope example is as follows:
ip dhcp pool <pool name>
network <IP Network> <Netmask>
default-router <Default router>
dns-server <DNS Server>
Where:
<pool name> is the name of the DHCP pool, such as AP1000
<IP Network> is the network IP address where the controller resides, such as 10.0.15.1
<Netmask> is the subnet mask, such as 255.255.255.0
<Default router> is the IP address of the default router, such as 10.0.0.1
<DNS Server> is the IP address of the DNS server, such as 10.0.10.2
Step 3
Step 4
Add the option 60 line using the following syntax:
option 60 ascii “Airespace.AP1200”
The quotation marks must be included.
Add the option 43 line using the following syntax:
option 43 ascii “Comma Separated IP Address List”
For example, if you are configuring option 43 for Cisco 1000 series access points using the controller IP
addresses 10.126.126.2 and 10.127.127.2, add the following line to the DHCP pool in the Cisco IOS
CLI:
option 43 ascii “10.126.126.2,10.127.127.2”
The quotation marks must be included.
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Appendix G Configuring DHCP Option 43
Configuring Option 43 for 1100, 1130, 1200, 1240, and 1300 Series Access Points
Configuring Option 43 for 1100, 1130, 1200, 1240, and 1300 Series
Access Points
To configure DHCP Option 43 for Cisco Aironet 1100, 1130, 1200, 1240, and 1300 series lightweight
access points in the embedded Cisco IOS DHCP server, follow these steps:
Step 1
Step 2
Enter configuration mode at the Cisco IOS CLI.
Create the DHCP pool, including the necessary parameters such as default router and name server. A
DHCP scope example is as follows:
ip dhcp pool <pool name>
network <IP Network> <Netmask>
default-router <Default router>
dns-server <DNS Server>
Where:
<pool name> is the name of the DHCP pool, such as AP1240
<IP Network> is the network IP address where the controller resides, such as 10.0.15.1
<Netmask> is the subnet mask, such as 255.255.255.0
<Default router> is the IP address of the default router, such as 10.0.0.1
<DNS Server> is the IP address of the DNS server, such as 10.0.10.2
Step 3
Step 4
Add the option 60 line using the following syntax:
option 60 ascii “VCI string”
Add the option 43 line using the following syntax:
option 43 hex <hex string>
The hex string is assembled by concatenating the TLV values shown below:
Type + Length + Value
Type is always f1(hex). Length is the number of controller management IP addresses times 4 in hex. Value
is the IP address of the controller listed sequentially in hex.
For example, suppose that there are two controllers with management interface IP addresses,
10.126.126.2 and 10.127.127.2. The type is f1(hex). The length is 2 * 4 = 8 = 08 (hex). The IP addresses
translate to 0a7e7e02 and 0a7f7f02. Assembling the string then yields f1080a7e7e020a7f7f02. The
resulting Cisco IOS command added to the DHCP scope is listed below:
option 43 hex f1080a7e7e020a7f7f02
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Appendix G Configuring DHCP Option 43
Configuring Option 43 for 1500 Series Access Points
Configuring Option 43 for 1500 Series Access Points
To configure DHCP Option 43 for Cisco 1500 series lightweight access points in the embedded Cisco
IOS DHCP server, follow these steps:
Step 1
Step 2
Enter configuration mode at the Cisco IOS command line interface (CLI).
Create the DHCP pool, including the necessary parameters such as default router and name server. A
DHCP scope example is as follows:
ip dhcp pool <pool name>
network <IP Network> <Netmask>
default-router <Default router>
dns-server <DNS Server>
Where:
<pool name> is the name of the DHCP pool, such as AP1500
<IP Network> is the network IP address where the controller resides, such as 10.0.15.1
<Netmask> is the subnet mask, such as 255.255.255.0
<Default router> is the IP address of the default router, such as 10.0.0.1
<DNS Server> is the IP address of the DNS server, such as 10.0.10.2
Step 3
Step 4
Add the option 60 line using the following syntax:
option 60 ascii “Cisco AP c1500”
The quotation marks must be included.
Add the option 43 line using the following syntax:
option 43 ascii “Comma Separated IP Address List”
For example, if you are configuring option 43 for Cisco 1500 series access points using the controller IP
addresses 10.126.126.2 and 10.127.127.2, add the following line to the DHCP pool in the Cisco IOS
CLI:
option 43 ascii “10.126.126.2,10.127.127.2”
The quotation marks must be included.
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Appendix G Configuring DHCP Option 43
Configuring Option 43 for 1500 Series Access Points
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Index
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