
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
CHAPTER CISCO CONFIDENTIAL - Draft 1 1-1 Cisco Aironet 1520 Series Outdoor Mesh Access Point Hardware Installation Guide OL-12632-01 1 Overview The Cisco Aironet 1520 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. It is a self-contained outdoor unit that can be configured with a wired backhaul connection to an Ethernet segment for a rooftop deployment or can be configured with a wireless backhaul for a pole-top deployment. The access point can be installed where power is available without the need for a wired network connection. The access point is available in two models: LAP1522 (supports 2.4-GHz and 5-GHz radios) and LAP1521 (supports a 2.4-GHz radio).The access point provides client access and wireless mesh backhaul that supports 6 to 54 Mbps data rates without the need for a license. The LAP1522 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 LAP1521 model uses the 2.4- or 5-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: •Main Hardware Features, page 2 •Network Configuration Examples, page 6 2 Overview OL-12632-01 Main Hardware Features Some of the access point’s main hardware features are listed below: •One or two radios (2.4- and 5-GHz)—see the “Single or Dual Radio Operation” section on page 3 •External radio antennas—see the “External Antennas” section on page 3 •Multiple power sources—see the “Multiple Power Sources” section on page 4 •Rugged metal enclosure—see the “Metal Enclosure” section on page 5 •Optional Ethernet ports—see the “Ethernet Ports” section on page 5 •Optional cable modem—see the •Optional hardware—see the “Optional Hardware” section on page 6 –Cable strand mount kit –Pole mount kit –150 ft (45.72 m) Ethernet outdoor cable •Optional battery backup—future availability Figure 1 shows the access point connectors. Figure 1Access Point Connectors 14 25 36 Connectors The optional featues of the access point support these connectors (see Figure 1): •Ethernet (PoE) uplink connector—(type RJ45 with TBD for waterproofing) •Ethernet downlink connector—(type RJ45 with TBD for waterproofing) •Three Type N antenna connectors (2.4-GHz radio) •One Type N antenna connector (5-GHz radio) •Fiber-optic connector—Small form factor pluggable (SFP) •Power-over-cable (POC) connector—(TBD) •AC power connector Single or Dual Radio Operation The access point is available in two models: LAP1522 (supports 2.4-GHz and 5-GHz radios) and LAP1521 (supports a 2.4- or 5-GHz radio). The radios use external antennas (see “External Antennas”). The LAP1522 model supports simultaneous dual-radio operation using a 2.4-GHz 802.11b/g radio and a 5-GHz 802.11a radio. The LAP1521 model supports both mesh backhaul operation and wireless clients using a single 2.4- or 5-GHz 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. NoteThe 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 2.4-GHz radio supports three antennas for multi-input, single output (MISO) operation. The radio uses three receivers to support maximum ratio combining (MRC) to enhance receiver performance. MRC is a technique that combines the signals from multiple receivers in a manner to optimize the signals. MRC can provide up to 3 dB of increased receive signal strength. The access point does not support both radios configured for backhaul support External Antennas The access point is equipped with three N-type radio frequency (RF) connector on the top of the unit for external 2.4-GHz antennas to support multiple input single output (MISO) operation. The LAP1522 model also has one to three N-type RF connectors on the bottom of the unit for external 5-GHz antennas (see Figure 1). When using the optional Cisco compact omnidirectional antennas, the 2.4- and 5-GHz antennas connect directly to the access point. The Cisco omnidirectional antennas use vertical polarization. The access point can also be equipped with specific third-party external antennas (see Table 1 and Table 2), subject to l…
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Jim Nicholson EMC Compliance Engineer Cisco Systems, Inc. 4125 Highlander Parkway Richfield, OH 44286 Phone: (330) 523-2094 Fax: (330) 523-2002 E-Mail: [email protected] April 12, 2007 Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 Subject: Request for Confidentiality FCC ID: LDK102064 To Whom It May Concern: Pursuant to the provisions of Sections 0.457 and 0.459 of the Commission’s rules (47 CFR §§ 0.457, 0.459), we are requesting the Commission to withhold the following attachments as confidential documents from public disclosure indefinitely. Schematic Diagram Block Diagram Hardware Theory of Operation Best Regards, Jim Nicholson EMC Compliance Engineer
Jim Nicholson EMC Compliance Engineer Cisco Systems, Inc. 4125 Highlander Parkway Richfield, OH 44286 Phone: (330) 523-2094 Fax: (330) 523-2002 E-Mail: [email protected] April 12, 2007 Federal Communications Commission Equipment Authorization branch 7435 Oakland Mills Road Columbia, MD 21046 Re: FCC ID LDK102064: Request for Limited Modular Transmitter Approval To Whom It May Concern: Cisco Systems, Inc. hereby requests Modular Transmitter Approval for the above listed FCC submittal. In support of this request, please note the declarations listed below. 1. The modular transmitter has its own RF shielding and does not rely upon the shielding provided by the device into which it is installed in order to comply with Part 15 limits. 2. The modular transmitter has buffered modulation/data inputs and will comply with Part 15 requirements under conditions of excessive data rates or over-modulation. 3. The modular transmitter has its own power supply regulation, and will comply with Part 15 requirements regardless of the design of the power supplying circuitry in the device into which the module is installed. 4. The modular transmitter complies with the antenna requirements of Section 15.203 and 15.204(c). The modular transmitter employs a “unique” antenna coupler, and all antennas used with the module are being approved with the module. 5. The modular transmitter was tested in the access point in which it will solely operate. 6. The modular transmitter will be labeled with its own FCC ID number, and the outside of the device into which the module is installed will also display a label referring to the enclosed module. 7. The modular transmitter complies with the rules and operating requirements defined by Part 15.247. 8. The modular transmitter complies with all applicable RF exposure requirements. Best Regards, Jim Nicholson EMC Compliance Engineer Cisco Systems, Inc.
http://mail.google.com/mail/?view=page&name=gp&ver=sh3fib53pgpk answer: Cisco Systems, Inc., FCC ID: LDK102064, Assessment NO.: AN07T6755, Notice#1 Inbox Reply from Claire Hoque <[email protected]> hide details Apr 30 (2 days ago) to "Timothy M. Dwyer" <[email protected]> date Apr 30, 2007 12:17 PM subject answer: Cisco Systems, Inc., FCC ID: LDK102064, Assessment NO.: AN07T6755, Notice#1 Hi Tim, Pls see answers below, pls note the defer date is June 15, 2007. Thanks, Claire Hoque -----Original Message----- From: Timothy M. Dwyer Sent: Friday, April 27, 2007 2:55 PM To: Claire Hoque Cc: Timothy M. Dwyer Subject: Cisco Systems, Inc., FCC ID: LDK102064, Assessment NO.: AN07T6755, Notice#1 Hello Claire, The review is complete and there are only minor items as shown below. I am sending this to you instead of applicant as yourequested. Please email if you have questions. Q1: Current FCC rules for modular approval require the device to be tested in a "stand-alone" configuration. Since this test was carried out in a host device, the grant would normally be issued as a Limited Modular Approval, which appears to be consistent with the intent of the modular request letter. However, FCC 07-56 ET Docket No. 03-201 released April 23, 2007, but not yet published in the FR, provides for a new modular approval known as a Split Modular Approval. If it is Cisco's intent to apply for a Split Modular Approval, please consult the new rulemaking and revise the modular approval request to include the additional information required by the newly added section 15.212(a)(iv). Note that the revised rules become effective 3o days after publication in the FR. <answer>Cisco prefers to have the grant listed as a limited modular approval. Q2: The test report must specify the measurement procedures used. Please refer to the list of measurement procedures at http://www. fcc.gov/oet/ea/eameasurements.html and revise or amend the test report to specify the test procedures used. At minimum the test report must state that the procedures of ANSI C63.4:2003 were used. Specific reference to "Measurement of Digital Transmission Systems Operating under Section 15.247", March 23, 2005 is recommended as well. <answer>The procedures of ANSI C63.4:2003 and "Measurement of Digital Transmission Systems Operating under Section 15.247", March 23, 2005 were used. Best regards, Tim Dwyer The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information within 30 days of the original e-mail date may result in application dismissal and forfeiture of the filing fee. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the e-mail address listed below the name of the sender. http://mail.google.com/mail/?view=page&name=gp&ver=sh3fib53pgpk 5/2/2007 1:23:37 PM
External Photos AIR-RM1520G Shielded Top AIR-RM1520G Bottom AIR-RM1520G Bottom with Heat Sink AIR-RM1520G Regulatory Label AIR-RM1520G Installed in AIR-LAP1522AG Housing AIR-LAP1522AG Assembled Housing AIR-LAP1522AG Regulatory Label Location AIR-LAP1522AG Regulatory Label
AIR-RM1520G Bottom with Heat Sink AIR-RM1520G Regulatory Label AIR-LAP1522AG Regulatory Label Location AIR-LAP1522AG Regulatory Label
Internal Photos AIR-RM1520G Unshielded Top AIR-RM1520G Unshielded Bottom
2/27/2007 Huck Jr. 2.4 GHz, 5 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 1 of 1 Company Confidential Document Number: EDCS-527066 Revision: 1.0 Author: Steve Saliga Manager: Fred Anderson Huck Jr. 2.4 GHz, Direct Mount 5 dBi Omni-directional Antenna Specification AIR-ANT2450V-N Headline This document outlines the technical requirements for a 2.4 GHz, vertical 5 dBi omni- directional antenna to be used with the Cisco Huck Jr. product and similar future products. This antenna mounts directly to the Huck Jr. platform with no cable. 2/27/2007 Huck Jr. 2.4 GHz, 5 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 2 of 2 Company Confidential Approvals Name/Title Signature Date Fred Anderson Manager, RF Engineering Jim Mass Manager, Mechanical Engineering Reviewers Name/Title Signature Date Jim Nicholson EMC Compliance Engineer Tom Dirrig New Product Introduction Engineer Revision History Rev Date Author Comment 1.0 2/27/2007 Steve Saliga Initial Release 2/27/2007 Huck Jr. 2.4 GHz, 5 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 3 of 3 Company Confidential 1. Introduction This document describes the basic set of required specifications for an omni- directional antenna for use in the 2.4 GHz band specifically to support the Huck Jr. product. The basic features of this antenna are as follows: • Omni-directional antenna for outdoor use • To be direct mounted with no cable to the Huck Jr product, pointing either up or down as required • Additionally mountable to a mast • No more than 11 inches in length • Antenna is terminated in an N-male connector for direct mounting • Operates over 2400 MHz through 2500 MHz • Peak gain is approximately 5 dBi across the 2.4 GHz band. In general, this antenna will be housed in a white polycarbonate (or similar material) tube and have an appearance similar to Cisco’s existing antenna family. The specifications for this antenna will be presented sequentially with Electrical Specifications first, followed by Mechanical/Environmental Specifications and General Specifications. 2. Physical Appearance The antenna should look similar to other antennas in the Cisco line. It should have a metal base suitable for mast mounting the antenna and a white/off-white “plastic” tube with an end cap. The entire antenna and enclosure should be no more than 11 inches long including the connector. Figure 2.1 shows a photograph of this antenna. Figure 2.1 Photo of the Huck Jr. 2.4 GHz, 5 dBi Omni 2/27/2007 Huck Jr. 2.4 GHz, 5 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 4 of 4 Company Confidential 3. 5 dBi Omni Specifications, AIR-ANT2450V-N This section contains both the electrical and mechanical specs for the AIR- ANT2450V-N 2.4 GHz, 5 dBi omni-directional antenna. This antenna should be housed in a tubular radome built directly on an N-male connector. The antenna will be mounted directly to the Huck Jr. platform. Depending on how the Huck Jr. product is mounted, the antenna could be pointing up or down. In addition, provision should be made to allow this antenna to be mast mounted as well. The antenna is designed to be used outdoors with any drainage mechanism to be built into the unit to accommodate either mounting orientation, up or down. It is highly desirable to design the proper drainage so this function does not have to be configured by the user. If this functionality cannot be designed in, a configurable drainage system will be allowable with the default drainage being that for the “upside-down” mounting method. 2/27/2007 Huck Jr. 2.4 GHz, 5 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 5 of 5 Company Confidential 3.1. AIR-ANT2450V-N, Antenna Electrical Specifications The electrical specifications for this antenna are summarized in Table 3.1.1 below. All the manufacturer’s specifications should be reported in data sheet format. AIR-ANT2450V-N, 2.4 GHz, 5 dBi Omni- directional Antenna Electrical Specifications Parameter Design Goal Minimum Maximum 1 Antenna Type Omni- directional (Co- linear Array) 2 Operating Frequency Range 2400MHz – 2484 MHz 3 Nominal Input Impedance 50 Ω 4 1.7:1 VSWR Bandwidth 2400 MHz – 2484 MHz 5 Gain 5 dBi 6 Polarization Linear, vertical 8 E-Plane 3 dB Beamwidth 30-degrees 25-degrees 9 H-Plane 3dB Beamwidth Omni- directional 10 H-Plane Ripple 1 dB 11 1 st Sidelobe Level -10 dBc Table 3.1.1 AIR-ANT2450V-N 2.4 GHz, 5 dBi Omni-directional Antenna, Electrical Specifications 2/27/2007 Huck Jr. 2.4 GHz, 5 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 6 of 6 Company Confidential 3.2. AIR-ANT2450V-N Antenna Mechanical and Environmental Specifications The mechanical specifications will cover the physical appearance of the antenna as well as all mounting, cable and connectors. The mechanical and environmental specs are summarized in Table 3.2.1. AIR-ANT2450V-N, 2.4 GHz, 5 dBi Omni-directional Antenna Mechanical /Environmental Specifications Parameter Design Goal Minimum Acceptable Max Acceptable Notes 1 Length 11 inches 11 inches Including connector scheme 2 Diameter 1 inch 3 Weight 6 ounces 4 Radome Material Polycarbonate Or similar 5 Radome Color White/Off-white 6 Cable Type None 7 Cable Color NA 8 Cable Length NA 9 Connector Type N-Male 10 Mounting Options • Direct Mount with Male-N connector • Mast Mount (hardware not included) 11 Drainage location(s) Default drainage scenario is pointing up. “Upside-down” mounting drainage must be provided. Preferably, drain mechanism should be “built in” and not have to be configured by the user. 13 Environment Outdoor 14 Operating Temperature Range -30 C to +70 C-30 C to +70 C 15 Storage Temperature -4…
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1/29/2007 Sky Captain 8 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 1 of 1 Company Confidential Document Number: EDCS-527100 Revision: 1.0 Author: Steve Saliga Manager: Fred Anderson 2.4 GHz, Direct Mount 8 dBi, Omnidirectional Antenna Specification AIR-ANT2480V-N Headline This document outlines the technical requirements for a 2.4 GHz, vertical 8 dBi omnidirectional antenna to be used with the Cisco outdoor bridges and access points. 1/29/2007 Sky Captain 8 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 2 of 2 Company Confidential Approvals Name/Title Signature Date Fred Anderson Manager, RF Engineering Jim Mass Manager, Mechanical Engineering Reviewers Name/Title Signature Date Jim Nicholson EMC Compliance Engineer Tom Dirrig New Product Introduction Engineer Revision History Rev Date Author Comment 1.0 1/29/2007 Steve Saliga Initial Release 1/29/2007 Sky Captain 8 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 3 of 3 Company Confidential 1. Introduction This document describes the basic set of required specifications for an omni- directional antenna for use in the 2.4 GHz band specifically to support the Sky Captain and Huck Jr. products. The basic features of this antenna are as follows: • Omnidirectional antenna for outdoor use • Direct mounted with no cable to the Sky Captain and Huck Jr. products, pointing either up or down as required • Additionally mountable to a mast • Approximately 20 inches in length • Antenna is terminated in an N-male connector for direct mounting • Operates over 2400 MHz through 2500 MHz • Peak gain is 8 dBi across the 2.4 GHz band. The specifications for this antenna will be presented sequentially with Electrical Specifications first, followed by Mechanical/Environmental Specifications and General Specifications. 2. Physical Appearance The antenna will have a metal base suitable for mast mounting the antenna and a white/off-white fiberglass tube with an end cap. The entire antenna and enclosure will be approximately 20 inches long including the connector. A photo of the antenna appears in Figure 2.1 below. Figure 2.1 8 dBi Omnidirectional Antenna for 2.4 GHz 1/29/2007 Sky Captain 8 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 4 of 4 Company Confidential 3. 8 dBi Omni Specifications, AIR-ANT2480V-N This section contains both the electrical and mechanical specs for the AIR- ANT2480V-N 2.4 GHz, 8 dBi omnidirectional antenna. This antenna should be housed in a tubular radome built directly on an N-male connector. The antenna will be mounted directly to the Sky Captain and Huck Jr. platforms. Depending on how these products are mounted, the antenna could be pointing up or down. In addition, provision should be made to allow this antenna to be mast mounted as well. The antenna is designed to be used outdoors with any drainage mechanism to be built into the unit to accommodate either mounting orientation, up or down. It is highly desirable to design the proper drainage so this function does not have to be configured by the user. If this functionality cannot be designed in, a configurable drainage system will be allowable with the default drainage being that for the “upside-down” mounting method. 1/29/2007 Sky Captain 8 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 5 of 5 Company Confidential 3.1. AIR-ANT2480V-N, Antenna Electrical Specifications The electrical specifications for this antenna are summarized in Table 3.1.1 below. All the manufacturer’s specifications should be reported in data sheet format. AIR-ANT2480V-N, 2.4 GHz, 8 dBi Omni- directional Antenna Electrical Specifications Parameter Design Goal Minimum Maximum 1 Antenna Type Omni- directional (Co- linear Array) 2 Operating Frequency Range 2400MHz – 2484 MHz 3 Nominal Input Impedance 50 Ω 4 1.7:1 VSWR Bandwidth 2400 MHz – 2484 MHz 5 Gain 8 dBi 6 Polarization Linear, vertical 8 E-Plane 3 dB Beamwidth 10-degrees 9 H-Plane 3dB Beamwidth Omni- directional 10 H-Plane Ripple 1 dB 1.5 dB 11 1 st Sidelobe Level -8 dBc Table 3.1.1 AIR-ANT2480V-N 2.4 GHz, 8 dBi Omnidirectional Antenna, Electrical Specifications 1/29/2007 Sky Captain 8 dBi Omni Technical Specification A printed version of this document is an uncontrolled copy. Cisco Systems, Inc. Page 6 of 6 Company Confidential 3.2. AIR-ANT2480V-N Antenna Mechanical and Environmental Specifications The mechanical specifications will cover the physical appearance of the antenna as well as all mounting, cable and connectors. The mechanical and environmental specs are summarized in Table 3.2.1. AIR-ANT2480V-N, 2.4 GHz, 8 dBi Omnidirectional Antenna Mechanical /Environmental Specifications Parameter Design Goal Minimum Acceptable Max Acceptable Notes 1 Length 19-1/2” inches Including connector scheme 2 Diameter 0.75 inch 3 Weight < 0.5 lb Without mast mounting hardware 4 Radome Material Fiberglass 5 Radome Color White/Off-white 6 Cable Type None 7 Cable Color NA 8 Cable Length NA 9 Connector Type N-Male 10 Mounting Options • Direct Mount with Male-N connector • Mast Mount (hardware included), 1” to 2-1/8” diameter mast 11 Drainage location(s) Default drainage scenario is pointing up. “Upside-down” mounting drainage must also be provided. Drain mechanism should be “built in” and not have to be configured by the user. 13 Environment Outdoor 14 Operating Temperature Range -30 C to +70 C-30 C to +70 C 15 Storage Temperature -40 C to +85 C 16 Wind Rating/Load 100 mph operational, 165 mph gusts 17 Water Tightness Test IEC 60529, Code IP-54 (minor dust intrusion, withstand splashing water) 18 Salt Mist Test MIL-STD-810F, Method 509.4, 5% salt solution. VSWR still as specified. 19 Vibration Test (non-operational) Mil…
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Custom EMC Test Report No: EDCS - 587700 Page No: 1 of 50 This document is uncontrolled. Please refer to the electronic copy within EDCS for the most up to date version. Cisco Systems, Inc. Company Confidential ISM Test Report AIR-RM1520G-A-K9 802.11b/g Radio Module FCC ID: LDK102064 Against the following Specifications: CFR47 Part 15.247 RSS210 Cisco Systems 170 West Tasman Drive San Jose, CA 95134 Author: James Nicholson Approved By: Title: Custom EMC Test Report No: EDCS - 587700 Page No: 2 of 50 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.................................................................................................................................... 5 SECTION 3: SAMPLE DETAILS.............................................................................................................................6 APPENDIX A: CONDUCTED EMISSION TEST RESULTS........................................................................7 APPENDIX B: RADIATED EMISSION TEST RESULTS ..........................................................................29 APPENDIX C: ABBREVIATION KEY AND DEFINITIONS ......................................................................48 APPENDIX E: TEST EQUIPMENT/SOFTWARE USED TO PERFORM THE TEST ............................49 Custom EMC Test Report No: EDCS - 587700 Page No: 3 of 50 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 15.247(a) CFR47 Part 15.247(a)(2) CFR47 Part 15.247a3 (RSS210) CFR47 Part 15: 2005 CFR47 Part 15: 2005 (CAN/CSA-CISPR 22-02) 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- 3/2006.04, EN55022: 1994 +A1/2 and CAN/CSA- CISPR 22-02 have also been evaluated unless otherwise stated. 8. Testing to the requirements of CFR47 Part 15 was performed against the CISPR22 limits. The results are therefore deemed satisfactory evidence of compliance with Industry Canada Interference Causing Equipment Standard ICES-003. 9. Where assessment has been performed to CISPR24, all the applicable test requirements may have not been covered. Refer to the results section for the tests performed. Notes: 1) Where a specification listed on the front cover of this report has deviations from the basic standards listed above, the additional technical requirements of the specification were also assessed. 2) 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. 3) 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. Custom EMC Test Report No: EDCS - 587700 Page No: 4 of 50 This document is uncontrolled. Please…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 676.00 mW |

Wireless Phone
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterWi-Fi 6E Outdoor Access Point
Equipment Class
6SD - 15E 6 GHz Standard Power Access PointWi-Fi 6E Outdoor Access Point
Equipment Class
6SD - 15E 6 GHz Standard Power Access PointCisco Headset USB-C Adapter
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterUC Phone
Equipment Class
NII - Unlicensed National Information Infrastructure TX