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LDK102084Cisco Aironet 802.11n Dual Band Access Points

Cisco Systems Inc
Cisco Aironet 802.11n Dual Band Access Points - FCC ID LDK102084 - Cisco Systems Inc
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Nov 29, 2012
Application Purpose
Original Equipment
Date of Application
Aug 30, 2012
Equipment Note
Cisco Aironet 802.11n Dual Band Access Points
Frequency Range
5660.00000000 - 5700.00000000
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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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

GETTING STARTED GUIDE Cisco Aironet 1600 Series Access Points November, 2012 1About this Guide 2Introduction to the Access Point 3Safety Instructions 4Unpacking 5Configurations 6Access Point Ports and Connectors 7Configuring the Access Point 8Mounting the Access Point 9Deploying the Access Point on the Wireless Network 10Troubleshooting 11Declarations of Conformity and Regulatory Information 12Configuring DHCP Option 43 and DHCP Option 60 13Access Point Specifications ap1600getstart.fm Page 1 Tuesday, July 3, 2012 9:21 AM 2 1 About this Guide This Guide provides instructions on how to install and configure your Cisco Aironet 1600 Series Access Point. The 1600 Series Access Point is referred to as the 1600 series or the access point in this document. 2 Introduction to the Access Point The 1600 series offers dual-band radios (2.4 GHz and 5 GHz) with integrated and external antenna options. The access points support full inter-operability with leading 802.11n clients, and support a mixed deployment with other access points and controllers. The 1600 series access point is available in controller-based mode and supports: •Simultaneous single-band or dual-band (2.4 GHz/5 GHz) radios •Integrated antennas on 1602I access point models (AIR-CAP1602I-x-K9) •External antennas on 1602E access point models (AIR-CAP1602E-x-K9) NoteThe ‘x’ in the model numbers represents the regulatory domain. Refer to “Regulatory Domains” section on page 6 for a list of supported regulatory domains. The features of the 1600 series are: •Processing sub-systems (including CPUs and memory) and radio hardware which supports: –Network management –ClientLink 2.0—BeamForming to 802.11n clients as well as legacy 802.11a/g OFDM clients –VideoStream –Location –WIDS/WIPS –Security –Radio Resource Management (RRM) –Rogue detection –Management Frame Protection (MFP) –Throughput, forwarding, and filtering performance scaled to meet 3 spatial stream, 450 Mbps data-rates •32 MB flash size •802.11af/at ap1600getstart.fm Page 2 Tuesday, July 3, 2012 9:21 AM 3 –CDP (Cisco Discovery Protocol) •2.4 GHz and 5 GHz 802.11n radios with the following features: –3TX x 3RX –2 spatial streams, 450 Mbps PHY rate –DPD (Digital Pre-Distortion) technology –Radio hardware is capable of explicit compressed beamforming (ECBF) per 802.11n standard 3 Safety Instructions Translated versions of the following safety warnings are provided in the translated safety warnings document that is shipped with your access point. The translated warnings are also in the Translated Safety Warnings for Cisco Aironet Access Points, which is available on Cisco.com. WarningIMPORTANT 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 WarningRead the installation instructions before you connect the system to its power source. Statement 1004 WarningInstallation of the equipment must comply with local and national electrical codes. Statement 1074 WarningThis product relies on the building’s installation for short-circuit (overcurrent) protection. Ensure that the protective device is rated not greater than:  20A. Statement 1005 ap1600getstart.fm Page 3 Tuesday, July 3, 2012 9:21 AM 4 WarningDo not operate your wireless network device near unshielded blasting caps or in an explosive environment unless the device has been modified to be especially qualified for such use. Statement 245B WarningIn order to comply with FCC radio frequency (RF) exposure limits, antennas should be located at a minimum of 7.9 inches (20 cm) or more from the body of all persons.  Statement 332 CautionThe fasteners you use to mount an access point on a ceiling must be capable of maintaining a minimum pullout force of 20 lbs (9 kg) and must use all 4 indented holes on the mounting bracket. CautionThis product and all interconnected equipment must be installed indoors within the same building, including the associated LAN connections as defined by Environment A of the IEEE 802.af Standard. NoteThe access point is suitable for use in environmental air space in accordance with section 300.22.C of the National Electrical Code and sections 2-128, 12-010(3), and 12-100 of the Canadian Electrical Code, Part 1, C22.1. You should not install the power supply or power injector in air handling spaces. NoteUse only with listed ITE equipment. 4 Unpacking To unpack the access point, follow these steps: Step 1Unpack and remove the access point and the accessory kit from the shipping box. Step 2Return any packing material to the shipping container and save it for future use. ap1600getstart.fm Page 4 Tuesday, July 3, 2012 9:21 AM 5 Step 3Verify that you have received the items listed below. If any item is missing or damaged, contact your Cisco representative or reseller for instructions. –The access point –Mounting bracket (selected when you ordered the access point) –Adjustable ceiling-rail clip (selected when you ordered the access point) 5 Configurations The 1600 series access point contains two simultaneous dual-band radios, the 2.4-GHz and 5-GHz 802.11n MIMO radios, in controller-based mode. The 1600 series access point configurations are: •AIR-CAP1602E-x-K9 and AIR-SAP1602E-x-K9—two 2.4-GHz/5-GHz dual-band radios with up to 3 external dual-band dipole antennas •AIR-CAP1602I-x-K9 and AIR-SAP1602I-x-K9—two 2.4-GHz/5-GHz dual-band radios, with integrated dual-band inverted-F antennas For information on the regulatory domains (shown as “x” in the model numbers) see “Regulatory Domains” section on page 6. External Antennas The 1602E models are configured with up to three external dual-band dipole antennas, and two 2.…

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Cover Letter(s)

August 21, 2012 Federal Communications Commission Equipment Authorization branch 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: In reference to the application under FCC ID: LDK102084 and pursuant to Sections 0.457(d)(l)(ii) and 0.459 of the Commission’s Rules, the Applicant hereby requests confidential treatment of the accompanying information as outlined below: Schematics Block Diagram Radio Theory of Operation Series Software Theory of Operation These documents contain detailed system and equipment description and related information about the product that Cisco considers to be proprietary, confidential, and a custom design and, otherwise, would not release to the general public. Since this design is a basis from which future technological products will evolve, Cisco considers that this information would be of benefit to its competitors, and that disclosure of the information in these documents would give competitors an unfair advantage in the market. Best Regards, Jim Nicholson EMC Compliance Engineer 4125 Highlander Parkway Richfield, Ohio 44286 Email: [email protected] Direct: (330)523-2094

External Photos

1600E External Photos Top view Bottom View Side 1 view Side 2 view Side 3 view Side 4 view

External Photos

1600I External Photos Top view Bottom View Side 1 view Side 2 view Side 3 view Side 4 view

ID Label/Location Info

Label Location

Internal Photos

1600 Internal Photos

RF Exposure Info

Custom EMC Test Report No: EDCS - 1186187 Page No: 79 of 81 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Maximum Permissible Exposure (MPE) Calculations 15.407: U-NII devices are subject to the radio frequency radiation exposure requirements specified in Sec. 1.1307(b), Sec. 2.1091 and Sec. 2.1093 of this chapter, as appropriate. All equipment shall be considered to operate in a ``general population/uncontrolled'' environment. Applications for equipment authorization of devices operating under this section must contain a statement confirming compliance with these requirements for both fundamental emissions and unwanted emissions. Technical information showing the basis for this statement must be submitted to the Commission upon request. Given E=√(30*P*G)/d and S=E^2/3770 where E=Field Strength in Volts/meter P=Power in Watts G=Numeric Antenna Gain d=Distance in meters S=Power Density in mW/cm^2 Combine equations and rearrange the terms to express the distance as a function of the remaining variables: d=√((30*P*G)/(3770*S)) Changing to units of power in mW and distance in cm, using: P(mW)=P(W)/1000 d(cm)=100*d(m) yields d=100*√((30*(P/1000)*G)/(3770*S)) d=0.282*√(P*G/S) where d=Distance in cm P=Power in mW G=Numerica Antenna Gain S=Power Density in mW/cm^2 Substituting the logarithmic form of power and gain using: P(mW)=10^(P(dBm)/10) G(numeric)=10^(G(dBi)/10) yields d=0.282*10^((P+G)/20)/√S Equation (1) and s=((0.282*10^((P+G)/20))/d)^2 Equation (2) where d=MPE distance in cm P=Power in dBm G=Antenna Gain in dBi S=Power Density in mW/cm^2 Custom EMC Test Report No: EDCS - 1186187 Page No: 80 of 81 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Equation (1) and the measured peak power are used to calculate the MPE distance. Note that for mobile or fixed location transmitters such as an access point, the minimum separation distance is 20 cm even if the calculations indicate that the MPE distance may be less. S=1mW/cm^2 maximum. Using the peak power levels recorded in the test report along with Equation 1 above, the MPE distances are calculated as follows. Frequency (MHz) Bit Rate (Mbps) Power Density (mW/cm^2) Peak Transmit Power (dBm) Antenna Gain (dBi) MPE Distance (cm) Limit (cm) Margin (cm) 518054114.56 2.99 2017.01 524054114.56 2.99 2017.01 MPE Calculations To maintain compliance, installations will assure a separation distance of at least 20cm. Using Equation 2, the MPE levels (s) at 20 cm are calculated as follows: Frequency (MHz) Bit Rate (Mbps) MPE Distance (cm) Peak Transmit Power (dBm) Antenna Gain (dBi) Power Density (mW/cm^2) Limit (mW/cm^2) Margin (mW/cm^2) 5180542014.56 0.02 10.98 5240542014.56 0.02 10.98

RF Exposure Info

Custom EMC Test Report No: EDCS - 1186222 Page No: 78 of 80 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Maximum Permissible Exposure (MPE) Calculations 15.407: U-NII devices are subject to the radio frequency radiation exposure requirements specified in Sec. 1.1307(b), Sec. 2.1091 and Sec. 2.1093 of this chapter, as appropriate. All equipment shall be considered to operate in a ``general population/uncontrolled'' environment. Applications for equipment authorization of devices operating under this section must contain a statement confirming compliance with these requirements for both fundamental emissions and unwanted emissions. Technical information showing the basis for this statement must be submitted to the Commission upon request. Given E=√(30*P*G)/d and S=E^2/3770 where E=Field Strength in Volts/meter P=Power in Watts G=Numeric Antenna Gain d=Distance in meters S=Power Density in mW/cm^2 Combine equations and rearrange the terms to express the distance as a function of the remaining variables: d=√((30*P*G)/(3770*S)) Changing to units of power in mW and distance in cm, using: P(mW)=P(W)/1000 d(cm)=100*d(m) yields d=100*√((30*(P/1000)*G)/(3770*S)) d=0.282*√(P*G/S) where d=Distance in cm P=Power in mW G=Numerica Antenna Gain S=Power Density in mW/cm^2 Substituting the logarithmic form of power and gain using: P(mW)=10^(P(dBm)/10) G(numeric)=10^(G(dBi)/10) yields d=0.282*10^((P+G)/20)/√S Equation (1) and s=((0.282*10^((P+G)/20))/d)^2 Equation (2) where d=MPE distance in cm P=Power in dBm G=Antenna Gain in dBi S=Power Density in mW/cm^2 Custom EMC Test Report No: EDCS - 1186222 Page No: 79 of 80 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Equation (1) and the measured peak power are used to calculate the MPE distance. Note that for mobile or fixed location transmitters such as an access point, the minimum separation distance is 20 cm even if the calculations indicate that the MPE distance may be less. S=1mW/cm^2 maximum. The highest supported antenna gain is 6 dBi (9dBi with beamforming). Using the peak power levels recorded in the test report along with Equation 1 above, the MPE distances are calculated as follows. Frequency (MHz) Bit Rate (Mbps) Power Density (mW/cm^2) Peak Transmit Power (dBm) Antenna Gain (dBi) MPE Distance (cm) Limit (cm) Margin (cm) 526054116.79 5.44 2014.56 532054115.29 4.57 2015.43 MPE Calculations To maintain compliance, installations will assure a separation distance of at least 20cm. Using Equation 2, the MPE levels (s) at 20 cm are calculated as follows: Frequency (MHz) Bit Rate (Mbps) MPE Distance (cm) Peak Transmit Power (dBm) Antenna Gain (dBi) Power Density (mW/cm^2) Limit (mW/cm^2) Margin (mW/cm^2) 5260542016.79 0.07 10.93 5320542015.26 0.03 10.97

RF Exposure Info

Custom EMC Test Report No: EDCS - 1186224 Page No: 78 of 80 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Maximum Permissible Exposure (MPE) Calculations 15.407: U-NII devices are subject to the radio frequency radiation exposure requirements specified in Sec. 1.1307(b), Sec. 2.1091 and Sec. 2.1093 of this chapter, as appropriate. All equipment shall be considered to operate in a ``general population/uncontrolled'' environment. Applications for equipment authorization of devices operating under this section must contain a statement confirming compliance with these requirements for both fundamental emissions and unwanted emissions. Technical information showing the basis for this statement must be submitted to the Commission upon request. Given E=√(30*P*G)/d and S=E^2/3770 where E=Field Strength in Volts/meter P=Power in Watts G=Numeric Antenna Gain d=Distance in meters S=Power Density in mW/cm^2 Combine equations and rearrange the terms to express the distance as a function of the remaining variables: d=√((30*P*G)/(3770*S)) Changing to units of power in mW and distance in cm, using: P(mW)=P(W)/1000 d(cm)=100*d(m) yields d=100*√((30*(P/1000)*G)/(3770*S)) d=0.282*√(P*G/S) where d=Distance in cm P=Power in mW G=Numerica Antenna Gain S=Power Density in mW/cm^2 Substituting the logarithmic form of power and gain using: P(mW)=10^(P(dBm)/10) G(numeric)=10^(G(dBi)/10) yields d=0.282*10^((P+G)/20)/√S Equation (1) and s=((0.282*10^((P+G)/20))/d)^2 Equation (2) where d=MPE distance in cm P=Power in dBm G=Antenna Gain in dBi S=Power Density in mW/cm^2 Custom EMC Test Report No: EDCS - 1186224 Page No: 79 of 80 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Equation (1) and the measured peak power are used to calculate the MPE distance. Note that for mobile or fixed location transmitters such as an access point, the minimum separation distance is 20 cm even if the calculations indicate that the MPE distance may be less. S=1mW/cm^2 maximum. The highest supported antenna gain is 6 dBi (9dBi with beamforming). Using the peak power levels recorded in the test report along with Equation 1 above, the MPE distances are calculated as follows. Frequency (MHz) Bit Rate (Mbps) Power Density (mW/cm^2) Peak Transmit Power (dBm) Antenna Gain (dBi) MPE Distance (cm) Limit (cm) Margin (cm) 550054118.76 4.84 2015.16 558054117.06 3.98 2016.02 570054118.66 4.79 2015.21 MPE Calculations To maintain compliance, installations will assure a separation distance of at least 20cm. Using Equation 2, the MPE levels (s) at 20 cm are calculated as follows: Frequency (MHz) Bit Rate (Mbps) MPE Distance (cm) Peak Transmit Power (dBm) Antenna Gain (dBi) Power Density (mW/cm^2) Limit (mW/cm^2) Margin (mW/cm^2) 5500542018.76 0.06 10.94 5580542017.06 0.04 10.96 5700542018.66 0.06 10.94

Test Report

Custom EMC Test Report No: EDCS - 1186187 Page No: 1 of 81 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Test Report AIR-CAP1602y-A-K9 AIR-SAP1602y-A-K9 AIR-CLD1602y-A-K9 Cisco Aironet 802.11n Dual Band Access Points FCC ID: LDK102084 IC: 2461B-102084 Also covers: AIR-CAP1602y-N-K9, AIR-SAP1602y-N-K9, AIR-CLD1602y-N-K9 AIR-CAP1602y-Z-K9, AIR-SAP1602y-Z-K9, AIR-CLD1602y-Z-K9 y = E (External Antenna) or I (Internal Antenna) 5150-5250 MHz Against the following Specifications: CFR47 Part 15.407 RSS210 Cisco Systems 170 West Tasman Drive San Jose, CA 95134 Custom EMC Test Report No: EDCS - 1186187 Page No: 2 of 81 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential This test report has been electronically authorized and archived using the CISCO Engineering Document Control system. SECTION 1: OVERVIEW ....................................................................................................................................................... 3 1.1 TEST SUMMARY ................................................................................................................................................................. 3 SECTION 2: ASSESSMENT INFORMATION .................................................................................................................... 4 2.1 GENERAL ........................................................................................................................................................................... 4 2.4 TESTING FACILITIES ........................................................................................................................................................... 5 2.6 EUT DESCRIPTION ............................................................................................................................................................. 6 SECTION 4: SAMPLE DETAILS ........................................................................................................................................... 8 APPENDIX A: EMISSION TEST RESULTS ................................................................................................................ 9 TARGET MAXIMUM CHANNEL POWER .................................................................................................................................... 9 THE FOLLOWING TABLE DETAILS THE MAXIMUM SUPPORTED TOTAL CHANNEL POWER FOR ALL OPERATING MODES. ........ 9 99% AND 26DB BANDWIDTH ................................................................................................................................................ 10 PEAK OUTPUT POWER ......................................................................................................................................................... 16 POWER SPECTRAL DENSITY ................................................................................................................................................ 16 C ONDUCTED BANDEDGE 59 APPENDIX B: EMISSION TEST RESULTS .............................................................................................................. 89 RADIATED EMISSIONS ............................................................................................................................................................ 89 MAXIMUM PERMISSIBLE EXPOSURE (MPE) CALCULATIONS ............................................................................................... 96 APPENDIX C: TEST EQUIPMENT/SOFTWARE USED TO PERFORM THE TEST ............................................. 99 Custom EMC Test Report No: EDCS - 1186187 Page No: 3 of 81 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Section 1: Overview 1.1 Test Summary samples were assessed against the tests detailed in section 3 under the requirements of the following specifications: Emission Immunity CFR47 Part 15.407 RSS210 N/A The specifications listed above represent actual tests performed to demonstrate compliance against the specifications and basic standards listed on the front cover of this report. This list is not a one to one match to the front cover for one or more of the following reasons. 1. Basic standards call up many different test phenomena specifications such as the 61000-4-X series. The basic standards define which elements and levels shall be applied from these specifications and as such it is not appropriate to list the individual specifications on the front cover. 2. A Standard listed on the front cover may be required in a particular country but is not appropriate for the particular technologies included in the equipment under test. E.g. You cannot test a DC product to the mains Harmonics requirements in EN61000-3-2. See section 3.2. 3. Test results against a particular standard or specification may be included in a different test report. See section 3.2 for an EDCS reference of this data. 4. Where appropriate, Cisco may have substituted a later revision of a basic standard to those referenced in the specification on the front sheet of this test report. This decision was based upon improved test methodology and repeatability and/or where the newer revision represented a more stringent test. 5. Where relevant, testing has been carried out to the requirements of both EN and IEC Specifications. This was possible because of the similarities of the test methods involved and the Cisco EMC test procedures. 6. Testing may have been performed to an equivalent test that satisfies the requirements of the standards and specifications listed on the front cover of the report. See section 3.2. 7. Where radiated emissions testing has been performed to EN55022/CISPR22 the additional requirements of VCCI: V- 3/2006…

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Test Report

Custom EMC Test Report No: EDCS-1185191 Page No: 1 of 55 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Dynamic Frequency Selection (DFS) Test Report AIR-CAP1602y-A-K9 AIR-SAP1602y-A-K9 AIR-CLD1602y-A-K9 Cisco Aironet 802.11n Dual Band Access Points FCC ID: LDK102084 IC: 2461B-102084 Also covers: AIR-CAP1602y-T-K9, AIR-SAP1602y-T-K9, AIR-CLD1602y-T-K9 AIR-CAP1602y-Z-K9, AIR-SAP1602y-Z-K9, AIR-CLD1602y-Z-K9 y = E (External Antenna) or I (Internal Antenna) 5250-5350, 5470-5725 MHz Against the following Specifications: CFR47 Part 15.407 RSS210 Cisco Systems 170 West Tasman Drive San Jose, CA 95134 Custom EMC Test Report No: EDCS-1185191 Page No: 2 of 55 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Custom EMC Test Report No: EDCS-1185191 Page No: 3 of 55 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential This test report has been electronically authorized and archived using the CISCO Engineering Document Control system. DFS DETECTION THRESHOLDS ............................................................................................................................... 5 RADAR WAVEFORM CALIBRATION ............................................................................................................................ 9 TEST PROCEDURE/RESULTS .................................................................................................................................. 13 UNII DETECTION BANDWIDTH RESULTS, 20MHZ SIGNAL BANDWIDTH ................................................................ 16 UNII DETECTION BANDWIDTH RESULTS, 40 MHZ SIGNAL BANDWIDTH ............................................................... 22 INITIAL CHANNEL AVAILABILITY CHECK TIME ......................................................................................................... 28 CHANNEL CLOSE TIME ............................................................................................................................................. 31 CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME FOR TYPE 1 RADAR. ....................................... 32 CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME FOR TYPE 2 RADAR......................................... 32 CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME FOR TYPE 3 RADAR. ....................................... 33 CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME FOR TYPE 4 RADAR. ....................................... 33 CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME FOR TYPE 5 RADAR. ....................................... 34 CHANNEL MOVE TIME, CHANNEL CLOSING TRANSMISSION TIME FOR TYPE 6 RADAR......................................... 34 30 MINUTE NON-OCCUPANCY PERIOD (USING TYPE 1 RADAR) ........................................................................... 35 STATISTICAL PERFORMANCE CHECK ..................................................................................................................... 36 Custom EMC Test Report No: EDCS-1185191 Page No: 4 of 55 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Dynamic Frequency Selection (DFS) Test Results 15.407: U-NII devices operating in the 5.25-5.35 GHz band and the 5.47-5.725 GHz band shall employ a TPC mechanism. The U-NII device is required to have the capability to operate at least 6 dB below the mean EIRP value of 30 dBm. A TPC mechanism is not required for systems with an e.i.r.p. of less than 500 mW. U-NII devices operating in the 5.25-5.35 GHz and 5.47-5.725 GHz bands shall employ a DFS radar detection mechanism to detect the presence of radar systems and to avoid co-channel operation with radar systems. 1.0 UNII Device Description 1. The 1600 Series Cisco Aironet 802.11n Dual Band Access Points operate in the following bands: a. 5150-5250 MHz b. 5250-5350 MHz c. 5470-5725 MHz (excluding 5600-5650 MHz) d. 5725-5850 MHz 2. The maximum EIRP of the 5GHz equipment is 34 dBm, and the minimum possible EIRP is 2 dBm. Below are the available 50 ohm antenna assemblies and their corresponding gains. 0dBi gain was used to set the -63 dBm threshold level (-64dBm +1 dB) during calibration of the test setup. Frequency Part Number Antenna Type Antenna Gain (dBi) 2.4/5 GHz AIR-ANT2524DB-R Dual-resonant black dipole 2 / 4 AIR-ANT2524DW-R Dual-resonant white dipole 2 / 4 AIR-ANT2524DG-R Dual-resonant gray dipole 2 / 4 AIR-ANT2534V4C-R Dual-resonant ceiling mount omni (4-pack) 3 / 4 AIR-ANT2544V4M-R Dual-resonant omni (4-pack) 4 / 4 AIR-ANT2566P4W-R Dual-resonant "directional" antenna (4-pack) 6 / 6 Internal Dual-resonant omnidirectional 4 / 4 3. System testing was performed with the designated MPEG test file that streams full motion video at 30 frames per second from the Master to the Client IP based system. 4. The Master requires 106.5 seconds to complete its power-on cycle. 5. Information regarding the parameters of the detected Radar Waveforms is not available to the end user. 6. For the 5250-5350 MHz and 5470-5725 MHz bands, the Master device provides, on aggregate, uniform loading of the spectrum across all devices by selecting an operating channel among the available channels using a random algorithm. Custom EMC Test Report No: EDCS-1185191 Page No: 5 of 55 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential 2.0 DFS Detection Thresholds 1. Interference Threshold values, Master or Client incorporating In-Service Monitoring Maximum Transmit Power Value (see note) ≥ 200 milliwatt -64 dBm < 200 milliwatt -62 dBm Note 1: This is the level at the input of the receiv…

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Test Report

Custom EMC Test Report No: EDCS - 1186222 Page No: 1 of 80 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential Test Report AIR-CAP1602y-A-K9 AIR-SAP1602y-A-K9 AIR-CLD1602y-A-K9 Cisco Aironet 802.11n Dual Band Access Points FCC ID: LDK102084 IC: 2461B-102084 y = E (External Antenna) or I (Internal Antenna) 5250-5350 MHz Against the following Specifications: CFR47 Part 15.407 RSS210 Cisco Systems 170 West Tasman Drive San Jose, CA 95134 Custom EMC Test Report No: EDCS - 1186222 Page No: 2 of 80 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential This test report has been electronically authorized and archived using the CISCO Engineering Document Control system. SECTION 1: OVERVIEW ......................................................................................................................................... 3 1.1 TEST SUMMARY ................................................................................................................................................... 3 SECTION 2: ASSESSMENT INFORMATION ...................................................................................................... 4 2.1 GENERAL ............................................................................................................................................................. 4 2.4 TESTING FACILITIES ............................................................................................................................................. 5 2.6 EUT DESCRIPTION ...................................................................................................................................…

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Contact Information

Applicant

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

Technical Contact

Cisco Systems IncJames Nicholson
[email protected]216-849-7241

4125 Highlander Parkway · Richfield, Ohio · United States

Test Firm

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

Technical Specifications

#Rule PartsFrequency RangePower Output
415E5.66 GHz - 5.70 GHz95.00 mW
Software Defined Radio
Yes
Confidentiality
Long Term

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