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  3. LDK102068

LDK1020685.8GHz Radio Module

Cisco Systems Inc
5.8GHz Radio Module - FCC ID LDK102068 - Cisco Systems Inc
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Feb 05, 2008
Application Purpose
Original Equipment
Date of Application
Feb 05, 2008
Equipment Note
5.8GHz Radio Module
Frequency Range
5745.00000000 - 5825.00000000
Company
Cisco Systems Inc
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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ID Label/Location Info

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Parts List/Tune Up Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

REVIEW DRAFTβ€”CISCO CONFIDENTIAL Americas Headquarters Cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134-1706 USA http://www.cisco.com Tel: 408 526-4000 800 553-NETS (6387) Fax: 408 527-0883 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide March, 2008 Text Part Number: OL-12632-03 REVIEW DRAFTβ€”CISCO CONFIDENTIAL THE SPECIFICATIONS AND INFORMATION REGARDING THE PRODUCTS IN THIS MANUAL ARE SUBJECT TO CHANGE WITHOUT NOTICE. ALL STATEMENTS, INFORMATION, AND RECOMMENDATIONS IN THIS MANUAL ARE BELIEVED TO BE ACCURATE BUT ARE PRESENTED WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED. USERS MUST TAKE FULL RESPONSIBILITY FOR THEIR APPLICATION OF ANY PRODUCTS. THE SOFTWARE LICENSE AND LIMITED WARRANTY FOR THE ACCOMPANYING PRODUCT ARE SET FORTH IN THE INFORMATION PACKET THAT SHIPPED WITH THE PRODUCT AND ARE INCORPORATED HEREIN BY THIS REFERENCE. IF YOU ARE UNABLE TO LOCATE THE SOFTWARE LICENSE OR LIMITED WARRANTY, CONTACT YOUR CISCO REPRESENTATIVE FOR A COPY. The following information is for FCC compliance of Class A devices: This equipment has been tested and found to comply with the limits for a Class A 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 commercial environment. This equipment generates, uses, and can radiate radio-frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference, in which case users will be required to correct the interference at their own expense. The following information is for FCC compliance of Class B devices: The equipment described in this manual generates and may radiate radio-frequency energy. If it is not installed in accordance with Cisco’s installation instructions, it may cause interference with radio and television reception. This equipment has been tested and found to comply with the limits for a Class B digital device in accordance with the specifications in part 15 of the FCC rules. These specifications are designed to provide reasonable protection against such interference in a residential installation. However, there is no guarantee that interference will not occur in a particular installation. Modifying the equipment without Cisco’s written authorization may result in the equipment no longer complying with FCC requirements for Class A or Class B digital devices. In that event, your right to use the equipment may be limited by FCC regulations, and you may be required to correct any interference to radio or television communications at your own expense. You can determine whether your equipment is causing interference by turning it off. If the interference stops, it was probably caused by the Cisco equipment or one of its peripheral devices. If the equipment causes interference to radio or television reception, try to correct the interference by using one or more of the following measures: β€’ Turn the television or radio antenna until the interference stops. β€’ Move the equipment to one side or the other of the television or radio. β€’ Move the equipment farther away from the television or radio. β€’ Plug the equipment into an outlet that is on a different circuit from the television or radio. (That is, make certain the equipment and the television or radio are on circuits controlled by different circuit breakers or fuses.) Modifications to this product not authorized by Cisco Systems, Inc. could void the FCC approval and negate your authority to operate the product. The Cisco implementation of TCP header compression is an adaptation of a program developed by the University of California, Berkeley (UCB) as part of UCB’s public domain version of the UNIX operating system. All rights reserved. Copyright Β© 1981, Regents of the University of California. NOTWITHSTANDING ANY OTHER WARRANTY HEREIN, ALL DOCUMENT FILES AND SOFTWARE OF THESE SUPPLIERS ARE PROVIDED β€œAS IS” WITH ALL FAULTS. CISCO AND THE ABOVE-NAMED SUPPLIERS DISCLAIM ALL WARRANTIES, EXPRESSED OR IMPLIED, INCLUDING, WITHOUT LIMITATION, THOSE OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OR ARISING FROM A COURSE OF DEALING, USAGE, OR TRADE PRACTICE. IN NO EVENT SHALL CISCO OR ITS SUPPLIERS BE LIABLE FOR ANY INDIRECT, SPECIAL, CONSEQUENTIAL, OR INCIDENTAL DAMAGES, INCLUDING, WITHOUT LIMITATION, LOST PROFITS OR LOSS OR DAMAGE TO DATA ARISING OUT OF THE USE OR INABILITY TO USE THIS MANUAL, EVEN IF CISCO OR ITS SUPPLIERS HAVE BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. Any Internet Protocol (IP) addresses used in this document are not intended to be actual addresses. Any examples, command display output, and figures included in the document are shown for illustrative purposes only. Any use of actual IP addresses in illustrative content is unintentional and coincidental. Book Title Β©2007 Cisco Systems, Inc. All rights reserved. CCSP, the Cisco Square Bridge logo, Follow Me Browsing, and StackWise are trademarks of Cisco Systems, Inc.; Changing the Way We Work, Live, Play, and Learn, and i Study are service marks of Cisco Systems, Inc.; and Access Registrar, Aironet, ASIST, BPX, Catalyst, CCDA, CCDP, CCIE, CCIP, CCNA, CCNP, Cisco, the Cisco Certifie Internetwork Expert logo, Cisco IOS, Cisco Press, Cisco Systems, Cisco Systems Capital, the Cisco Systems logo, Cisco Unity, Empowering the Internet Generation, Enterprise/Solver, EtherChannel, EtherFast, EtherSwitch, Fast Step, FormShare, GigaDrive, GigaStack, HomeLink, Internet Quotient, IOS, IP/TV, iQ Expertise, the iQ log o Net Readiness Scorecard, LightStream, Linksys, MeetingPlace, MGX, the Networkers logo, Networking Academy, Network Registrar, Packet, PIX, Post-Routing, Pre-Rout ProConnect, RateMUX, ScriptShare, SlideCast, SMARTnet, StrataView Plus, SwitchProbe, TeleRouter, The Fastest W…

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Users Manual

REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-21 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 2 Mounting Instructions Mounting the Access Point Mounting the Access Point on a Pole When installing an access point on a vertical pole, mast, or a streetlight pole, you should use the optional Cisco pole mount kit. The kit supports metal, wood, or fiberglass poles from 2 to 16 inches in diameter. Assembling the Pole Clamp Bracket and the Mounting Bracket When installing an access point on a pole, mast, or a streetlight, you should use the optional Cisco pole mount kit. The kit supports metal, wood, or fiberglass poles from 2 to 16 inches in diameter. The pole mount kit contains several parts that you must assembled prior to mounting on a pole. First you need to assemble two strap brackets on the pole clamp bracket that are positioned for the pole diameter you are using to mount the access point. Figure 2-9 illustrates the pole diameter indicators and bolt holes on the pole clamp bracket. REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-22 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 2 Mounting Instructions Mounting the Access Point Figure 2-9Pole Clamp Bracket Adjustment Hole Locations 1Pole size indicators β€’2 to 6 in. β€’6 to 11 in. β€’11 to 16 in. 2Bolt holes for pole diameters (11 to 16 inches indicated) REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-23 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 2 Mounting Instructions Mounting the Access Point To assemble the pole clamp bracket, perform these steps: Step 1Position the strap brackets on the pole clamp bracket for the pole diameter you are using and secure each strap bracket with two M8 x16 bolts (with lock washers) (see Figure 2-10). Tighten the bolts to 13 to 15 ft lbs (17.6 to 20.3 Nm). Figure 2-10Assembled Pole Clamp Bracket and Strap Brackets 1M8 x1.25x16 bolts (with lock washers) 3Strap bracket (shown positioned for 11 to 16 inch diameter pole) 2Pole clamp bracket REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-24 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 2 Mounting Instructions Mounting the Access Point Step 2Screw the M8 nut onto the pole clamp bracket support bolt, and tighten just enough to prevent the bolt from falling off. Step 3Go to the β€œPole Mounting” section on page 2-24. Pole Mounting 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 LAP1522 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 LAP1521 model uses the 2.4-GHz radio for both Mesh backhaul and local wireless client access. To mount your access point on a vertical pole or streetlight pole, you need to install two metal bands around the pole to support the access point. This process requires extra tools and material not provided in the pole mount kit (see Table 2-3). To mount the access point onto a vertical pole or streetlight pole, follow these steps: Step 1Select a mounting location on the pole to mount the access point. You can attach the access point to any pole from 2 to 16 in. (5.1 to 40.6 cm) in diameter. NoteIf you will be using a streetlight power tap adapter, position the access point within 3 ft (1 m) of the outdoor light control. Step 2For poles larger than 3.5 in. (8.9 cm), mount the pole clamp bracket assembly to a pole (see Figure 2-11) using two metal straps. Following the instructions provided with the hand strap tool (AIR-BAND-INST-TL=), loop each metal strap twice through the slots on the strap bracket. CautionDo not place the metal straps in the large open area between the pole clamp bracket and the strap brackets, because this does not properly secure the access point. Ta b l e 2-3Material Needed to Mount Access Point on a Pole Mounting MethodMaterials RequiredIn Kit Vertical or streetlight poleTwo 0.75-in. (1.9 cm) stainless steel bands Band hand tool (Cisco AIR-BAND-IT-TOOL=) Ground lug (provided with access point) Crimping tool for ground lug, Panduit CT-720 with CD-720-1 die (http://onlinecatalog.panduit.com) #6 AWG Ground wire Yes No Yes No No REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-25 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 2 Mounting Instructions Mounting the Access Point Figure 2-11Clamp Bracket Assembly Mounted on Poles Larger than 3.5 in. (8.9 cm) Step 3For pole diameters of 3.5 in. (8.9 cm) or less, mount the pole clamp bracket assembly to a pole using two metal straps looped through the space between the pole clamp bracket and the strap brackets (see Figure 2-12) to provide maximum holding strength for extreme environments. Following the instructions provided with the hand strap tool (AIR-BAND-INST-TL=), loop each metal strap twice. 1Pole clamp bracket3Metal mounting strap 2Strap slot in strap bracket4Pole REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-26 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 2 Mounting Instructions Mounting the Access Point Figure 2-12Metal Strap Open Space for 3.5 in. (8.9 cm) and Smaller Poles CautionDo not place the metal straps in the large open area between the pole clamp bracket and the strap brackets, because this does not properly secure the access point. Step 4Position the pole clamp bracket on the pole as needed before tightening the metal bands. NoteWhen the metal bands are tightened to the full tension, the pole clamp bracket cannot be adjusted unless the metal bands are cut or disassembled. 1Metal strap open space REVIEW DRAFTβ€”CISCO CONFIDENTIAL 2-27 Cisco Aironet 15…

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Users Manual

REVIEW DRAFTβ€”CISCO CONFIDENTIAL 3-5 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 3 Troubleshooting Verifying Controller Association The access point LED signals are listed in Table 3-1. Verifying Controller Association To verify that your access point is associated to the controller, follow these steps: Step 1Log into your controller web interface using a web browser. You can also use the controller CLI show ap summary command from the controller console port. Step 2Click Wireless, and verify that your access point MAC address is listed under Ethernet MAC. Step 3Log out of the controller, and close your web browser. Ta b l e 3-1Access Point LED Signals LEDColor 1, 2 1. If all LEDs off, the access point has no power. 2. When the access point power supply is initially turned on, all LEDs are amber. Meaning StatusOff– GreenAccess point is operational. Blinking greenDownload or upgrade of Cisco IOS image file in progress. AmberMesh neighbor access point discovery in progress. Blinking amberMesh authentication in progress. Blinking red / green /amberLWAPP discovery in progress. RedFirmware failure. Contact your support organization for assistance. Uplink OffNo physical connector present or the uplink port is not operational. GreenUplink network is operational (cable, fiber optic, or Ethernet). RF-1 (2.4-GHz radio) OffRadio turned off. GreenRadio is operational. RedFirmware failure. Contact your support organization for assistance. RF-2 (5-GHz radio) OffRadio turned off. GreenRadio is operational. RedFirmware failure. Contact your support organization for assistance. REVIEW DRAFTβ€”CISCO CONFIDENTIAL 3-6 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 3 Troubleshooting Changing the Bridge Group Name Changing the Bridge Group Name The bridge group name (BGN) controls the association of the access points to a RAP. BGNs can be used to logically group the radios to avoid different networks on the same channel from communicating with each other. This setting is also useful if you have more than one RAP in your network in the same area. If you have two RAPs in your network in the same area (for more capacity), we recommend that you configure the two RAPs with different BGNs and on different channels. The BGN is a string of ten characters maximum. A factory-set bridge group name (NULL VALUE) is assigned during manufacturing. It is not visible to you, but allows new access point radios to join a network of new access points. The BGN can be reconfigured from the Controller CLI and GUI. After configuring the BGN, the access point reboots. After the access points are deployed and associated to the controller, the BGN should be changed from the default value to prevent the MAPs from attempting to associate to other mesh networks. The BGN should be configured very carefully on a live network. You should always start with the most distant access point (last node) from the RAP and move towards the RAP. If you start configuring the BGN in a different location, then the access points beyond this point (farther away) are dropped, as they have a different BGN. To configure the BGN for the access points using the controller GUI, follow these steps: Step 1Log into your controller using a web browser. Step 2Click Wireless. When access points associates to the controller, the access point’s name appears in the AP Name list. Step 3Click on an access point’s name. Step 4Find the Mesh Information section, and enter the new BGN in the Bridge Group Name field. Step 5Click Apply. Step 6Repeat Steps 2 through 5 for each access point. Step 7Log out from your controller, and close your web browser. REVIEW DRAFTβ€”CISCO CONFIDENTIAL 3-7 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 3 Troubleshooting Cable Modem LEDs Cable Modem LEDs The internal cable modem in the access point cable configuration has five LEDs (see Figure 3-2). To view the cable modem LEDs, you must open the access point hinged cover (refer to the β€œOpening the Access Point Hinged Cover” section on page 2-38). After viewing the LEDs, you must close the hinged cover (refer to the β€œClosing the Access Point Hinged Cover” section on page 2-39). Figure 3-2Cable Modem LEDs and Console Port Location 1Power LED4Cable LED 2Receive data LED5PC LED 3Send data LED6Console port connector 1 1. The console port is available on all access point configurations. REVIEW DRAFTβ€”CISCO CONFIDENTIAL 3-8 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-03 Chapter 3 Troubleshooting Connecting to the Access Point Locally Table 3-2 describes the status information provided by the cable modem LEDs. Connecting to the Access Point Locally If you need to monitor the access point locally (without connecting the access point to a wired LAN), you can connect a PC to its console port using a DB-9 to RJ-45 serial cable. NoteThe console port should only be used for debugging in a lab environment. Follow these steps to open the CLI by connecting to the access point console port: Step 1Open the hinged cover of the access point (see β€œOpening the Access Point Hinged Cover” section on page 2-38 for instructions). Connect a nine-pin, female DB-9 to RJ-45 serial cable to the RJ-45 console port on the access point and to the COM port on a computer (see Figure 3-2 for the console port location). NoteThe Cisco part number for the DB-9 to RJ-45 serial cable is AIR-CONCAB1200. Browse to http://www.cisco.com/go/marketplace to order a serial cable. Step 2Set up a terminal emulator program on your PC to communicate with the access point. Use the following settings for the terminal emulator connection: 9600 baud, 8 data bits, no parity, 1 stop bit, and no flow control. Ta b l e 3-2Cable LED Status Information LEDsDescription PowerGreen indicates power is available. Receive dataBlinking green indicates that the cable mod…

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Users Manual

Americas Headquarters Cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134-1706 USA http://www.cisco.com Tel: 408 526-4000 800 553-NETS (6387) Fax: 408 527-0883 Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points November, 2007 Text Part Number: OL-11321-07 THE SPECIFICATIONS AND INFORMATION REGARDING THE PRODUCTS IN THIS MANUAL ARE SUBJECT TO CHANGE WITHOUT NOTICE. ALL STATEMENTS, INFORMATION, AND RECOMMENDATIONS IN THIS MANUAL ARE BELIEVED TO BE ACCURATE BUT ARE PRESENTED WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED. USERS MUST TAKE FULL RESPONSIBILITY FOR THEIR APPLICATION OF ANY PRODUCTS. THE SOFTWARE LICENSE AND LIMITED WARRANTY FOR THE ACCOMPANYING PRODUCT ARE SET FORTH IN THE INFORMATION PACKET THAT SHIPPED WITH THE PRODUCT AND ARE INCORPORATED HEREIN BY THIS REFERENCE. IF YOU ARE UNABLE TO LOCATE THE SOFTWARE LICENSE OR LIMITED WARRANTY, CONTACT YOUR CISCO REPRESENTATIVE FOR A COPY. The following information is for FCC compliance of Class A devices: This equipment has been tested and found to comply with the limits for a Class A 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 commercial environment. This equipment generates, uses, and can radiate radio-frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference, in which case users will be required to correct the interference at their own expense. The following information is for FCC compliance of Class B devices: The equipment described in this manual generates and may radiate radio-frequency energy. If it is not installed in accordance with Cisco’s installation instructions, it may cause interference with radio and television reception. This equipment has been tested and found to comply with the limits for a Class B digital device in accordance with the specifications in part 15 of the FCC rules. These specifications are designed to provide reasonable protection against such interference in a residential installation. However, there is no guarantee that interference will not occur in a particular installation. Modifying the equipment without Cisco’s written authorization may result in the equipment no longer complying with FCC requirements for Class A or Class B digital devices. In that event, your right to use the equipment may be limited by FCC regulations, and you may be required to correct any interference to radio or television communications at your own expense. You can determine whether your equipment is causing interference by turning it off. If the interference stops, it was probably caused by the Cisco equipment or one of its peripheral devices. If the equipment causes interference to radio or television reception, try to correct the interference by using one or more of the following measures: β€’ Turn the television or radio antenna until the interference stops. β€’ Move the equipment to one side or the other of the television or radio. β€’ Move the equipment farther away from the television or radio. β€’ Plug the equipment into an outlet that is on a different circuit from the television or radio. (That is, make certain the equipment and the television or radio are on circuits controlled by different circuit breakers or fuses.) Modifications to this product not authorized by Cisco Systems, Inc. could void the FCC approval and negate your authority to operate the product. The Cisco implementation of TCP header compression is an adaptation of a program developed by the University of California, Berkeley (UCB) as part of UCB’s public domain version of the UNIX operating system. All rights reserved. Copyright Β© 1981, Regents of the University of California. NOTWITHSTANDING ANY OTHER WARRANTY HEREIN, ALL DOCUMENT FILES AND SOFTWARE OF THESE SUPPLIERS ARE PROVIDED β€œAS IS” WITH ALL FAULTS. CISCO AND THE ABOVE-NAMED SUPPLIERS DISCLAIM ALL WARRANTIES, EXPRESSED OR IMPLIED, INCLUDING, WITHOUT LIMITATION, THOSE OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT OR ARISING FROM A COURSE OF DEALING, USAGE, OR TRADE PRACTICE. IN NO EVENT SHALL CISCO OR ITS SUPPLIERS BE LIABLE FOR ANY INDIRECT, SPECIAL, CONSEQUENTIAL, OR INCIDENTAL DAMAGES, INCLUDING, WITHOUT LIMITATION, LOST PROFITS OR LOSS OR DAMAGE TO DATA ARISING OUT OF THE USE OR INABILITY TO USE THIS MANUAL, EVEN IF CISCO OR ITS SUPPLIERS HAVE BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES. Any Internet Protocol (IP) addresses used in this document are not intended to be actual addresses. Any examples, command display output, and figures included in the document are shown for illustrative purposes only. Any use of actual IP addresses in illustrative content is unintentional and coincidental. Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points Β©2007 Cisco Systems, Inc. All rights reserved. CCVP, the Cisco logo, and Welcome to the Human Network are trademarks of Cisco Systems, Inc.; Changing the Way We Work, Live, Play, and Learn is a service mark of Cisco Systems, Inc.; and Access Registrar, Aironet, Catalyst, CCDA, CCDP, CCIE, CCIP, CCNA, CCNP, CCSP, Cisco, the Cisco Certified Internetwork Expert logo, Cisco IOS, Cisco Press, Cisco Systems, Cisco Systems Capital, the Cisco Systems logo, Cisco Unity, Enterprise/Solver, EtherChannel, EtherFast, EtherSwitch, Fast Step, Follow Me Browsing, FormShare, GigaDrive, HomeLink, Internet Quotient, IOS, iPhone, IP/TV, iQ Expertise, the iQ logo, iQ Net Readiness Scorecard, iQuick Study, LightStream, Linksys, MeetingPlace, MGX, Networkers, Networking Academy, Network Registrar, PIX, ProConnect, ScriptShare, SMARTnet, StackWise, The Fastest Way to Increase Your Internet Quotient, and TransPath are registered trademarks of Cisco Systems, Inc. and/or its affil…

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Users Manual

6-12 Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points OL-11321-06 Chapter 6 Cisco Aironet 1250 Series Lightweight Access Points Channels and Maximum Power Levels Tab le 6-11 indicates the channel identifiers, channel center frequencies, and maximum power levels for each channel allowed by the –K regulatory domain for a 5-GHz radio with up to 6-dBi antennas. Ta b l e 6-11Channels and Maximum Conducted Power in the –K Regulatory Domain with up to 6-dBi Antennas Maximum Conducted Power Levels (dBm) in the –K Regulatory Domain for a 5-GHz Radio with up to 6-dBi Antennas Channel ID Freq (MHz) 802.11a Single Antenna 6 to 54 Mbps HT-20 MHz Dual Antennas M0 to M15 1 1. M0 to M15 corresponds to the Modulaton and Coding Schemes (MCS0 to MCS15). The MCS settings determine the number of spatial streams, the modulation, the coding rate, and the data rate values. Duplicate (2x20 MHz) Dual Antennas 6 Mbps HT-40 MHz Dual Antennas M0 to M15 1 Tx A Tx B To t a l Power Tx A Tx B To t a l Power Tx A ––Tx A Tx B To t a l Power UNII-1 (5150-5250 MHz) 365180 14OFF1488118––8811 405200 14OFF1488118––8811 445220 14OFF1488118––8811 485240 14OFF1488118––8811 5250 to 5350 MHz 525260 17OFF1717172017––171720 565280 17OFF1717172017––171720 605300 17OFF1717172017––171720 645320 17OFF1717172017––171720 5470 to 5725 MHz 100550017OFF1717172017––171720 104552017OFF1717172017––171720 108554017OFF1717172017––171720 112556017OFF1717172017––171720 116558017OFF1717172017––171720 120560017OFF1717172017––171720 124562017OFF1717172017––––– 1285640–––––––––––– 1325660–––––––––––– 1365680–––––––––––– 1405700–––––––––––– 5725 to 5850 MHz 149574517OFF1717172017––171720 153576517OFF1717172017––171720 157578517OFF1717172017––171720 161580517OFF1717172017––171720 1655825–––––––––––– 6-13 Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points OL-11321-06 Chapter 6 Cisco Aironet 1250 Series Lightweight Access Points Channels and Maximum Power Levels Tab le 6-12 indicates the channel identifiers, channel center frequencies, and maximum power levels for each channel allowed by the –N regulatory domain for a 5-GHz radio with up to 6-dBi antennas. Ta b l e 6-12Channels and Maximum Conducted Power in the –N Regulatory Domain with up to 6-dBi Antennas Maximum Conducted Power Levels (dBm) in the –N Regulatory Domain for a 5-GHz Radio with up to 6-dBi Antennas Channel ID Freq (MHz) 802.11a Single Antenna 6 to 54 Mbps HT-20 MHz Dual Antennas M0 to M15 1 1. M0 to M15 corresponds to the Modulaton and Coding Schemes (MCS0 to MCS15). The MCS settings determine the number of spatial streams, the modulation, the coding rate, and the data rate values. Duplicate (2x20 MHz) Dual Antennas 6 Mbps HT-40 MHz Dual Antennas M0 to M15 1 Tx A Tx B To t a l Power Tx A Tx B To t a l Power Tx A ––Tx A Tx B To t a l Power UNII-1 (5150-5250 MHz) 365180 14OFF1411111411––111114 405200 14OFF1411111411––111114 445220 14OFF1411111411––111114 485240 14OFF1411111411––111114 5250 to 5350 MHz 525260 17OFF1714141714––141417 565280 17OFF1714141714––141417 605300 17OFF1714141711––111114 645320 11OFF1114141711––111114 5470 to 5725 MHz 1005500–––––––––––– 1045520–––––––––––– 1085540–––––––––––– 1125560–––––––––––– 1165580–––––––––––– 1205600–––––––––––– 1245620–––––––––––– 1285640–––––––––––– 1325660–––––––––––– 1365680–––––––––––– 1405700–––––––––––– 5725 to 5850 MHz 149574517OFF1717172017––171720 153576517OFF1717172017––171720 157578517OFF1717172017––171720 161580517OFF1717172017––171720 165582517OFF17171720–––––– 6-14 Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points OL-11321-06 Chapter 6 Cisco Aironet 1250 Series Lightweight Access Points Channels and Maximum Power Levels Tab le 6-13 indicates the channel identifiers, channel center frequencies, and maximum power levels for each channel allowed by the –P regulatory domain for a 5-GHz radio with up to 6-dBi antennas. Ta b l e 6-13Channels and Maximum Conducted Power in the –P Regulatory Domain with up to 6-dBi Antennas Maximum Conducted Power Levels (dBm) in the –P Regulatory Domain for the 5-GHz Radio with up to 6-dBi Antennas Channel ID Freq (MHz) 802.11a Single Antenna 6 to 54 Mbps HT-20 MHz Dual Antennas M0 to M15 1 1. M0 to M15 corresponds to the Modulaton and Coding Schemes (MCS0 to MCS15). The MCS settings determine the number of spatial streams, the modulation, the coding rate, and the data rate values. Duplicate (2x20 MHz) Dual Antennas 6 Mbps HT-40 MHz Dual Antennas M0 to M15 1 Tx A Tx B To t a l Power Tx A Tx B To t a l Power Tx A ––Tx A Tx B To t a l Power UNII-1 (5150-5250 MHz) 365180 14OFF1411111411––111114 405200 14OFF1411111411––111114 445220 14OFF1411111411––111114 485240 14OFF1411111411––111114 5250 to 5350 MHz 525260 14OFF1411111411––111114 565280 14OFF1411111411––111114 605300 14OFF1411111411––111114 645320 14OFF1411111411––111114 5470 to 5725 MHz 1005500–––––––––––– 1045520–––––––––––– 1085540–––––––––––– 1125560–––––––––––– 1165580–––––––––––– 1205600–––––––––––– 1245620–––––––––––– 1285640–––––––––––– 1325660–––––––––––– 1365680–––––––––––– 1405700–––––––––––– 5725 to 5850 MHz 1495745–––––––––––– 1535765–––––––––––– 1575785–––––––––––– 1615805–––––––––––– 1655825–––––––––––– 6-15 Channels and Maximum Power Settings for Cisco Aironet Lightweight Access Points OL-11321-06 Chapter 6 Cisco Aironet 1250 Series Lightweight Access Points Channels and Maximum Power Levels Tab le 6-14 indicates the channel identifiers, channel center frequencies, and maximum power levels for each channel allowed by the –S regulatory domain for a 5-GHz radio with up to 6-dBi antennas. Ta b l e 6-14Channels and Maximum Conducted Power in the –S Regulatory Domain with up to 6-dBi Antennas Maximum Conducted Power Levels (dBm) in the –S Regulatory Domain for a 5-GHz Radio with up to 6-dBi Antennas Channel ID Freq (MHz) 802.11a Single Antenna 6 to 54 Mbps HT-20 MHz Dual Antennas M0 to M15 1 1. M0 to M15 corresponds to the Modulaton and Coding Schemes (MCS0…

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Contact Information

Applicant

Samuel Kim(Manager, Engineering)
[email protected]408-527-1446Fax: 408-527-1446

Technical Contact

Cisco Systems, Inc.Trinh Waitt
[email protected]408-853-5571

170 W. Tasman Drive Β· San Jose, California Β· United States

Non-Technical Contact

Cisco Systems, Inc.Trinh Waitt
[email protected]408-853-5571

Test Firm

Cisco Systems, Inc.Dave Wilson
[email protected]408-525-0324Fax: 4085264184

Technical Specifications

#Rule PartsFrequency RangePower Output
115C5.75 GHz - 5.83 GHz562.00 mW
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Limited Modular Approval. Power Output listed is Conducted. The antenna(s) used for this transmitter must not be co-located nor operate in conjunction with any other antenna or transmitter within a host device, except as described in filings under this FCC ID. The antenna(s) used for this transmitter must be professionally installed and fixed-mounted on outdoor permanent structures with a separation distance of at least 50 cm from all persons and with antenna gain not to exceed 17 dBi. Antennas with gains of 14 dBi and 17 dBi may be used only in fixed point-to-point installations. Specific co-located transmitter operating conditions have been evaluated as shown in this application. Other antenna configurations may require separate approval. Compliance of this device in all final host configurations is the responsibility of the Grantee. Users and installers must be provided with appropriate antenna installation instructions and transmitter operating conditions, including antenna co-location requirements of section 1.1307(b)(3), for satisfying RF exposure compliance.

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