all | frequencies |
|
|
|
exhibits | applications |
---|---|---|---|---|---|---|
manual | photo | label |
app s | submitted / available | |||||||
---|---|---|---|---|---|---|---|---|
1 2 3 4 |
|
User Manual | Users Manual | 2.30 MiB | October 25 2019 / April 23 2020 | delayed release | ||
1 2 3 4 |
|
Int Photos | Internal Photos | 549.52 KiB | October 21 2020 / April 19 2021 | delayed release | ||
1 2 3 4 |
|
FCC ID Label | ID Label/Location Info | 162.40 KiB | October 21 2020 | |||
1 2 3 4 |
|
Authorized Signature Letter | Cover Letter(s) | 48.26 KiB | October 21 2020 | |||
1 2 3 4 |
|
C2PC Letter | Cover Letter(s) | 71.38 KiB | October 21 2020 | |||
1 2 3 4 |
|
Confidentiality Letter | Cover Letter(s) | 95.70 KiB | October 21 2020 | |||
1 2 3 4 | PAG Re-Use Letter | Operational Description | October 21 2020 | confidential | ||||
1 2 3 4 | Schematics | Schematics | October 21 2020 | confidential | ||||
1 2 3 4 |
|
Setup Photos (Conducted) | Test Setup Photos | 203.47 KiB | October 21 2020 / April 19 2021 | delayed release | ||
1 2 3 4 |
|
Setup Photos (Radiated) | Test Setup Photos | 190.30 KiB | October 21 2020 / April 19 2021 | delayed release | ||
1 2 3 4 |
|
Test Report (Conducted) W52 | Test Report | 1.02 MiB | October 21 2020 | |||
1 2 3 4 |
|
Test Report (Conducted) W53 | Test Report | 1.03 MiB | October 21 2020 | |||
1 2 3 4 |
|
Test Report (Conducted) W56 | Test Report | 1.06 MiB | October 21 2020 | |||
1 2 3 4 |
|
Test Report (Conducted) W58 | Test Report | 1.02 MiB | October 21 2020 | |||
1 2 3 4 |
|
Test Report (Radiated) | Test Report | 3.07 MiB | October 21 2020 | |||
1 2 3 4 |
|
Test Report (Conducted) | Test Report | 2.17 MiB | October 21 2020 | |||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Cover Letter(s) | October 25 2019 | ||||||
1 2 3 4 | Block Diagram | Block Diagram | October 25 2019 | confidential | ||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Ext Photos | External Photos | October 25 2019 / April 23 2020 | delayed release | ||||
1 2 3 4 | Operation Description | Operational Description | October 25 2019 | confidential | ||||
1 2 3 4 | PAG Re-Use | Operational Description | October 25 2019 | confidential | ||||
1 2 3 4 | RF Exposure Info | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Setup Photos (DFS) | Test Setup Photos | October 25 2019 / April 23 2020 | delayed release | ||||
1 2 3 4 | Software Security Declaration | Operational Description | October 25 2019 | confidential | ||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 | ||||||
1 2 3 4 | Test Report | October 25 2019 |
1 2 3 4 | User Manual | Users Manual | 2.30 MiB | October 25 2019 / April 23 2020 | delayed release |
GETTING STARTED GUIDE Cisco Catalyst 9120AX Series Access Points First Published: June 21, 2019 Last Updated: October 30, 2019 Cisco Systems, Inc. www.cisco.com 1 Cisco Catalyst 9120AX Series Access Points 1 About this Guide 2 About the Access Point 3 Safety Instructions 4 Unpacking 5 AP Views, Ports, and Connectors 6 Preparing the AP for Installation 7 Installation Overview 8 Performing a Pre-Installation Configuration 9 Mounting the Access Point 10 Grounding the Access Point 12 Configuring and Deploying the Access Point 14 Checking the Access Point LEDs 15 Miscellaneous Usage and Configuration Guidelines 17 Related Documentation 18 Declarations of Conformity and Regulatory Information Communications, Services, and Additional Information Cisco Bug Search Tool 2 Cisco Catalyst 9120AX Series Access Points 1 About this Guide This guide provides instructions on how to install your Cisco Catalyst 9120AX series access points and provides links to resources which can help you configure the access point. This guide provides mounting instructions and limited troubleshooting procedures. The 9120AX series access point is referred to as access point or AP in this document. 2 About the Access Point The Cisco Catalyst 9120AX series wireless access point is a dual band, dual concurrent, enterprise 802.11ax (Wi-Fi 6) AP. This AP series has three models, one with integrated antennas and the other two with external antennas, which are designed to use both 2.4 GHz and the 5 GHz bands. This access point supports a greater overall High Density Experience
(HDX) which provides a more predictable performance for advanced applications such as 4K or 8K video, high-density and high-definition collaboration applications, all-wireless offices and Internet-of-Things (IoT). The access point supports full interoperability with leading 802.11ax and 802.11ac clients, and supports a mixed deployment with other access points and controllers. These APs provide integrated security, resiliency and operational flexibility as well as increased network intelligence. A full listing of the access point's features and specifications are provided in the Cisco Catalyst 9120AX Series Access Point Data Sheet, at the following URL:
https://www.cisco.com/c/en/us/products/collateral/wireless/catalyst-9120ax-series-access-points/datasheet-c78-7 42115.html Access Point Features The 9120AX series access point is a wireless controller-based product and supports:
Four dual-band integrated internal antennas, omni directional in azimuth for both 2.4 GHz and 5 GHz on the 9120AXI access point models (C9120AXI-x and C9120AXI-EWC-x) Note The x in the model numbers represents the regulatory domain. For information on supported regulatory domains, see theAP Model Numbers and Regulatory Domains section on page 5. External antennas on the 9120AXE and 9120AXP AP models (C9120AXE-x, C9120AXE-EWC-x, C9120AXP-x and C9120AXP-EWC-x). Four radiosa 4x4 XOR radio for 2.4 GHz or 5 GHz, a single band 4x4 radio for 5 GHz, a 2.4 GHz radio that can be used with BLE, Zigbee, Thread and other 802.15.4 protocol devices, and an auxiliary radio for 2.4 GHz and 5 GHz. Simultaneous 4x4 MIMO with four spatial streams for both 2.4 GHz and 5 GHz bands Multiuser Multiple-Input Multiple-Output (MU-MIMO) technology with 4 spatial streams for downlink. Orthogonal Frequency Division Multiple Access (OFDMA)-based scheduling for both downlink and uplink The following hardware external interfaces:
1x100/1000/2500 Multigigabit Ethernet (RJ-45) RS-232 Console Interface through RJ-45 Recovery push button (enables partial or full system configuration recovery) 3 Cisco Catalyst 9120AX Series Access Points USB 2.0 Port One multi-color LED Status indicator. see the Checking the Access Point LEDs section on page 21 for information on the colors of the LED status indicator. Integrated Bluetooth Low Energy (BLE) radio to enable IoT use cases such as location tracking and wayfinding. Cisco RF ASIC, a fully integrated Software Defined Radio (SDR), that can perform advanced RF spectrum analysis and delivers features like CleanAir, Wireless Intrusion Prevention System (WIPS), and DFS detection. Intelligent Capture probes the network and provides Cisco DNA Center with deep analysis. Spatial Reuse (also known as Basic Service Set (BSS) coloring) which allows APs and their clients to differentiate between BSSs, thus permitting more simultaneous transmissions. New power savings mode called Target Wake Time (TWT) which allows the client to stay asleep and wake up only at pre-scheduled (target) times to exchange data with the AP. This provides significant energy savings for battery-operated devices. Cisco Digital Network Architecture (DNA) support enables Cisco Connected Mobile Experiences, Apple FastLane and Cisco Identity Services Engine. fastest data rate available. Optimized AP Roaming for ensuring that client devices associate with the AP in their coverage range that offers the Cisco CleanAir technology enhanced with 160MHz channel support. CleanAir delivers proactive, high-speed spectrum intelligence across 20-, 40-, and 80-, and 160-MHz-wide channels to combat performance problems arising from wireless interference. The AP supports both Cisco Embedded Wireless Controller and lightweight deployments (using Cisco Wireless Controllers). The AP also supports the following operating modes:
LocalThis is the default mode for the Cisco AP. In this mode, the AP serves clients. FlexConnectFlexConnect mode for the Cisco AP. MonitorThis is the monitor-only mode for the Cisco AP. SnifferIn the wireless sniffer mode, the AP starts sniffing the air on a given channel. It captures and forwards all the packets from the clients on that channel to a remote machine that runs Airopeek or Wireshark (packet analyzers for IEEE 802.11 wireless LANs). This includes information on the time stamp, signal strength, packet size, etc. Note In the sniffer mode, the server to which the data is sent should be on the same VLAN as the wireless controller management VLAN otherwise an error will be displayed. 4 Cisco Catalyst 9120AX Series Access Points AP Model Numbers and Regulatory Domains AP Type Access Point for indoor environments, with internal antennas Model Number C9120AXI-x C9120AXI-EWC-x Details Dual-band, controller-based 802.11ax C9120AXI-x with a Cisco Embedded Wireless Controller software image Access Point for indoor environments, with external antennas Access Point for professional indoor environments, with external antennas C9120AXE-x Dual-band, controller-based 802.11ax C9120AXE-EWC-x C9120AXE-x with a Cisco Embedded Wireless Controller software image C9120AXP-x Dual-band, controller-based 802.11ax C9120AXP-EWC-x C9120AXP-x with a Cisco Embedded Wireless Controller software image You need to verify whether the AP model you have is approved for use in your country. To verify approval and to identify the regulatory domain that corresponds to a particular country, visit http://www.cisco.com/go/aironet/compliance. Not all regulatory domains have been approved. As and when they are approved, this compliance list will be updated. Antennas and Radios The 9120AX series access point contains a dedicated 2.4 GHz radio and a 5 GHz radio. The access point configurations are:
C9120AXI-x C9120AXI-EWC-x C9120AXE-x C9120AXE-EWC-x C9120AXP-x C9120AXP-EWC-x Internal Antennas External Antennas The 9120AXI models (C9120AXI-x and C9120AXI-EWC-x) have four integrated, internal, dual-band antennas and four single-band 5 GHz antennas which are used when these APs are configured for dual 5 GHz mode, one 2.4 GHz antenna for IoT, and one dual band antenna for the auxiliary radio. The 9120AXE (C9120AXE-x and C9120AXE-EWC-x) and 9120AXP models (C9120AXP-x and C9120AXP-EWC-x) support four external, dual-band RP-TNC connectors. Note Always connect the external antennas to the 9120AXE and 9120AXP models before powering the AP up. Enabling the AP radios without connecting the antennas can result in damage to the AP. The 9120AXE and 9120AXP models have a 4-port Smart Antenna (DART) connector. External antennas including the Self Identifying Antennas (SIA) can be connected to this Smart Antenna connector using the 4-port DART cable connector (AIR-CAB002-DART-R=). Both the 9120AXE and 9120AXP also support Smart antennas. 5 Cisco Catalyst 9120AX Series Access Points For more information on Self Identifying Antennas, see What are Self Identifying Antennas? section. The radio and antennas support frequency bands 24002500 MHz and 51005900 MHz. Table 1 Part Number Description List of External Antennas Supported on C9120AXE and C9120AXP AIR-ANT2524DB-R/=
Dipole Antenna, Black, with RP-TNC connectors. AIR-ANT2524DG-R/=
Dipole Antenna, Gray, with RP-TNC connectors. AIR-ANT2524DW-R/=
Dipole Antenna, White, with RP-TNC connectors. Gain 2 dBi (2.4 GHz) 4 dBi (5 GHz) 2 dBi (2.4 GHz) 4 dBi (5 GHz) 2 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2524DW-RS=
AIR-ANT2524V4C-R=
Dipole Self-Identifying Antenna, White, with RP-TNC connectors. 2 dBi (2.4 GHz) 4 dBi (5 GHz) Ceiling Mount Omni Antenna, 4-port, with RP-TNC connectors. 2 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2524V4C-RS=
Ceiling Mount Omni Self-Identifying Antenna, 4-port, with RP-TNC connectors. 2 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2535SDW-R=
Low Profile Antenna, White, with RP-TNC connectors. 3 dBi (2.4 GHz) 5 dBi (5 GHz) AIR-ANT2535SDW-RS=
Low Profile Self-Identifying Antenna, White, with RP-TNC connectors. 3 dBi (2.4 GHz) 5 dBi (5 GHz) AIR-ANT2544V4M-R=
Wall Mount Omni Antenna, 4-port, with RP-TNC connectors. 4 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2544V4M-RS=
Wall Mount Omni Self-Identifying Antenna, 4-port, with RP-TNC connectors. 4 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2566D4M-R=
60 Patch Antenna, 4-port, with RP-TNC connectors. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566D4M-RS=
60 Patch Self-Identifying Antenna, 4-port, with RP-TNC connectors. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566D4M-DS=
60 Patch Self-Identifying Antenna, 4-port, with 4DART connector. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566P4W-DS=
Directional Self-Identifying Antenna, 4-port, with 4DART connector. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566P4W-R=
Directional Antenna, 4-port, with RP-TNC connector. AIR-ANT2566P4W-RS=
AIR-ANT2513P4M-N=
Directional Self-Identifying Antenna, 4-port, with RP-TNC connectors. Patch Antenna, 4-port, with N connectors.1 1. Supported on the 9120AXP model only. 6 dBi (2.4 GHz) 6 dBi (5 GHz) 6 dBi (2.4 GHz) 6 dBi (5 GHz) 13 dBi (2.4 GHz) 13 dBi (5 GHz) Cisco also provides the following external antenna accessories:
5 ft Low Loss RF cable with RP-TNC and N connectors (4 cables required) (AIR-CAB005LL-R-N/=) 2 ft Smart Antenna Connector to RP-TNC Connectors (AIR-CAB002-DART-R=) 6 Cisco Catalyst 9120AX Series Access Points 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 Catalyst Access Points, which is available on Cisco.com. Warning IMPORTANT SAFETY INSTRUCTIONS This warning symbol means danger. You are in a situation that could cause bodily injury. Before you work on any equipment, be aware of the hazards involved with electrical circuitry and be familiar with standard practices for preventing accidents. Use the statement number provided at the end of each warning to locate its translation in the translated safety warnings that accompanied this device. SAVE THESE INSTRUCTIONS Statement 1071 Warning Read the installation instructions before using, installing or connecting the system to the power source. Statement 1004 Warning Installation of the equipment must comply with local and national electrical codes. Statement 1074 Warning In order to comply with FCC radio frequency (RF) exposure limits, antennas should be located at a minimum of 12 inches (30 cm) or more from the body of all persons. Statement 332 Warning Ultimate disposal of this product should be handled according to all national laws and regulations. Statement 1040 Warning This equipment is suitable for use in environment air spaces (plenums) 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, CSA C22.2. External power supply, power adapter and/or power injector, if provided, are not suitable for installation in air spaces. Statement 440 Warning This product relies on the buildings installation for short-circuit (overcurrent) protection. Ensure that the protective device is rated not greater than:
20A. Statement 1005 Caution The 9120AX AP series is intended for indoor operation. While using the C9120AXE or C9120AXP AP models, if the external antenna is placed outdoors, you must ground the AP. For more information, see Grounding the Access Point section. 7 Cisco Catalyst 9120AX Series Access Points 4 Unpacking To unpack the access point, follow these steps:
Step 1 Unpack and remove the access point and the accessory kit from the shipping box. Step 2 Return any packing material to the shipping container and save it for future use. Step 3 Verify 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 AP Views, Ports, and Connectors Figure 1 Face of the 9120AXI Model Location of the ports and connectors on the head of the AP. 1 2 3 USB 2.0 port Status LED 8 Cisco Catalyst 9120AX Series Access Points Figure 2 Ports and Connectors on the Head of the 9120AXI Model 2.5GbE port RJ-45 console port 1 2 3 USB 2.0 port, under a mylar cover 4 Mode button 5 Security hasp for padlocking AP to mounting bracket 9 Cisco Catalyst 9120AX Series Access Points Figure 3 Face of the 9120AXE and 9120AXE Models 1 2 3 4 Location of the 4-port Smart Antenna (DART) connector, under a mylar cover USB 2.0 port, under a mylar cover Location of the ports and connectors on the head of the AP. 6 RP-TNC antenna connector port (Dual-band A)1 Status LED RP-TNC antenna connector port (Dual-band C) RP-TNC antenna connector port (Dual-band B) RP-TNC antenna connector port (Dual-band D) 5 7 8 1. Self Identifying Antenna compatible RP-TNC connector port. For more information on Self Identifying Antennas, see What are Self Identifying Antennas? section. 10 Cisco Catalyst 9120AX Series Access Points The ports and connections on the bottom of the access point are shown in Figure 4. Figure 4 Ports and Connections on the Head of the 9120AXE and 9120AXP Models 4-port Smart Antenna (DART) connector port, under a mylar cover1 For more information, see What is a Smart Antenna connector? section. Security hasp for padlocking AP to mounting bracket 4 5 1 2 3 RJ-45 console port USB 2.0 port, under a mylar cover 2.5 GbE port 6 Mode button For more information, see Using the Mode Button section. 1. Only external antennas with the 4-port DART cable can be connected to this AP. 11 Cisco Catalyst 9120AX Series Access Points 6 Preparing the AP for Installation Before you mount and deploy your access point, we recommend that you perform a site survey (or use the site planning tool) to determine the best location to install your access point. You should have the following information about your wireless network available:
Access point locations. Access point mounting options: below a suspended ceiling, on a flat horizontal surface, or on a desk top. Note You can mount the access point above a suspended ceiling but you must purchase additional mounting hardware: See Mounting the Access Point section on page 15 for additional information. Access point power options: 802.3at (PoE+) (Cisco Power Injector AIR-PWRINJ6=) or 802.3af (Cisco Power Injector AIR-PWRINJ5=). Note If 802.3af is used, both the 2.4 GHz and 5 GHz radios will be reduced to 1x1 and Ethernet will be downgraded to 1 GbE. The USB port will also be off. Operating temperature For 9120AXI model: 32122F (050C) Note When installing the 9120AXI model in an environment where the ambient temperature is in the range of 104122F (>4050C), the AP must be configured to 2x2 on both the 2.4 GHz and 5 GHz radios, 1GbE Ethernet. Also, there should be no load on the USB port. For 9120AXE and 9120AXP model: -4122F (-2050C) Cisco recommends that you make a site map showing access point locations so that you can record the device MAC addresses from each location and return them to the person who is planning or managing your wireless network. 7 Installation Overview Installing the access point involves these operations:
Step 1 Performing a Pre-Installation Configuration, page 13 (optional) Step 2 Mounting the Access Point, page 15 Step 3 Grounding the Access Point, page 17 Step 4 Preparing the AP for Installation, page 12 12 Cisco Catalyst 9120AX Series Access Points 8 Performing a Pre-Installation Configuration The following procedures ensure that your access point installation and initial operation go as expected. This procedure is optional. Note Performing a pre-installation configuration is an optional procedure. If your network controller is properly configured, you can install your access point in its final location and connect it to the network from there. See the Deploying the Access Point on the Wireless Network section on page 19 for details. The pre-installation configuration setup is illustrated in Figure 5. Figure 5 Pre-Installation Configuration Setup 13 Cisco Catalyst 9120AX Series Access Points To perform pre-installation configuration, perform the following steps:
Step 1 Make sure that the Cisco Wireless Controller DS port is connected to the network. Use the procedure for CLI or web-browser interface as described in the appropriate Cisco Wireless Controller guide. a. Make sure that access points have Layer 3 connectivity to the Cisco Wireless Controller Management and AP-Manager Interface. b. Configure the switch to which your access point is to attach. See the Cisco Wireless Controller Configuration Guide for the release you are using, for additional information. c. Set the Cisco Wireless Controller as the master so that new access points always join with it. d. Make sure DHCP is enabled on the network. The access point must receive its IP address through DHCP. Note An 802.11ax Cisco AP will be assigned an IP address from the DHCP server only if a default router
(gateway) is configured on the DHCP server (enabling the AP to receive its gateway IP address) and the gateway ARP is resolved. e. CAPWAP UDP ports must not be blocked in the network. f. The access point must be able to find the IP address of the controller. This can be accomplished using DHCP, DNS, or IP subnet broadcast. This guide describes the DHCP method to convey the controller IP address. For other methods, refer to the product documentation. See also the Configuring DHCP Option 43 section on page 23 for more information. Note The access point requires a gigabit Ethernet (GbE) link to prevent the Ethernet port from becoming a bottleneck for traffic because wireless traffic speeds exceed transmit speeds of a 10/100 Ethernet port. Step 2 Apply power to the access point. See Grounding the Access Point, page 17. a. As the access point attempts to connect to the controller, the LEDs cycle through a green, red, and blue sequence, which can take up to 5 minutes. Note If the access point remains in this mode for more than five minutes, the access point is unable to find the Master Cisco Wireless Controller. Check the connection between the access point and the Cisco Wireless Controller and be sure that they are on the same subnet. b. If the access point shuts down, check the power source. c. After the access point finds the Cisco Wireless Controller, it attempts to download the new operating system code if the access point code version differs from the Cisco Wireless Controller code version. While this is happening, the Status LED blinks blue. d. If the operating system download is successful, the access point reboots. Step 3 Configure the access point if required. Use the controller CLI, controller GUI, or Cisco Prime Infrastructure to customize the access-point-specific 802.11ac network settings. Step 4 If the pre-installation configuration is successful, the Status LED is green indicating normal operation. Disconnect the access point and mount it at the location at which you intend to deploy it on the wireless network. Step 5 If your access point does not indicate normal operation, turn it off and repeat the pre-installation configuration. 14 Cisco Catalyst 9120AX Series Access Points Note When you are installing a Layer 3 AP on a different subnet than the Cisco Wireless Controller, be sure that a DHCP server is reachable from the subnet on which you will be installing the AP, and that the subnet has a route back to the Cisco Wireless Controller. Also be sure that the route back to the Cisco Wireless Controller has destination UDP ports 5246 and 5247 open for CAPWAP communications. Ensure that the route back to the primary, secondary, and tertiary controller allows IP packet fragments. Finally, be sure that if address translation is used, that the AP and the Cisco Wireless Controller have a static 1-to-1 NAT to an outside address. (Port Address Translation is not supported.) 9 Mounting the Access Point Cisco Catalyst 9120AX series access points can be mounted in several configurations on a suspended ceiling, on a hard ceiling or wall, on an electrical or network box, and above a suspended ceiling. For access point mounting instructions, go to the following URL:
http://www.cisco.com/c/en/us/td/docs/wireless/access_point/mounting/guide/apmount.html The standard mounting hardware supported by the AP is listed in Table 2. Table 2 Brackets and Clips for Mounting the AP Part Number Description Brackets123 AIR-AP-BRACKET-1 Low-profile ceiling bracket (default) AIR-AP-BRACKET-2 Universal bracket (electrical box or wall mounting) Clips Ceiling Grid Clip (Recessed mounting) (default) AIR-AP-T-RAIL-R AIR-AP-T-RAIL-F Ceiling Grid Clip (Flush mounting) AIR-CHNL-ADAPTER Optional adapter for channel-rail ceiling grid profile. 1. Mount the AP using no less than four screw holes on a bracket. 2. AIR-AP-BRACKET-3 is not compatible for use with Cisco Catalyst 9120AX series access points. 3. You can also use in-tile mounting options available from third parties. For more information, visit the access point data sheet available on Cisco.com at https://www.cisco.com/c/en/us/products/collateral/wireless/catalyst-9100ax-access-points/guide-c07-742311.html. When mounting the AP in areas where there is a possibility of the AP being knocked off the mounting bracket, use the lock hasp or a plastic tie on the back of the AP (see Figure 6) to lock it to the bracket. 15 Cisco Catalyst 9120AX Series Access Points Figure 6 Locking the AP to the Bracket 1 Position of the hasps for the locks on the back of the 9120AXI model 16 Cisco Catalyst 9120AX Series Access Points 10 Grounding the Access Point Warning Only trained and qualified personnel should be allowed to install, replace, or service this equipment. Statement 1030 Grounding is not always required for indoor installations. However, while using the C9120AXE or C9120AXP AP models, if the external antenna is placed outdoors, you must ground the AP before connecting power. For supported external antennas, see List of External Antennas Supported on C9120AXE and C9120AXP. The following user-supplied tools and materials are required for grounding the AP:
Copper ground wire (minimum 18AWG)
Grounding O-ring connector (M3 stud size)
Crimping tool
Wire stripping tool
Phillips screwdriver (Number 2) Warning To reduce the risk of electric shock, the chassis of this equipment needs to be connected to permanent earth ground during normal use. Statement 445 If grounding is required for your C9120AXE or C9120AXP AP installation, follow these steps after mounting the AP:
Step 1 Find a suitable building grounding point as close to the AP as possible. Step 2 Connect the ground wire to the building grounding point. Step 3 Route the other end of the ground wire to the AP. Step 4 Use the wire stripping tool to strip the ground wire to 0.22 inches (5.56mm). Step 5 Insert the ground wire into the open end of the connector. Figure 7 Grounding O-ring connector Step 6 Crimp the connectors wire receptacle carefully around the wire. This ensures a proper mechanical connection. Step 7 Locate the chassis ground connector on the AP. 17 Cisco Catalyst 9120AX Series Access Points Figure 8 Grounding Label on the Head of the 9120AXE and 9120AXP Models 1 Grounding label Step 8 Secure the connector to the AP using the connectors washer and screw. Use the screwdriver to carefully tighten the screws until the connector is held firmly to the chassis. Do not over tighten the screws. Caution Connect the power cable to the AP after the AP is grounded. The outdoor antenna connection must be grounded in accordance with the ANSI/NFPA 70, the National Electrical code
(NEC), Article 800, Grounding of Outer Conductive Shield of a Coaxial Cable. Warning To reduce the risk of electric shock, the shield of the coaxial cable must be connected to the building earth. Statement 1094 11 Powering the Access Point While using C9120AXE or C9120AXP AP models, ensure that the external antennas are connected to the AP before you apply power to the AP. The AP can be powered only through Power-over-Ethernet (PoE) using the following:
802.3at (PoE+): Any 802.3at (30.0 W) compliant switch port or Cisco Power Injector AIR-PWRINJ6=
802.3af: Any 802.3af (15.4 W) compliant switch port or Cisco Power Injector AIR-PWRINJ5=
18 Cisco Catalyst 9120AX Series Access Points Note If 802.3af is used, both the 2.4 GHz and 5 GHz radios will be reduced to 1x1 and Ethernet will be downgraded to 1 GbE. The USB port will also be off. 12 Configuring and Deploying the Access Point This section describes how to connect the access point to a controller. Because the configuration process takes place on the controller, see the Cisco Wireless Controller Configuration Guide for additional information. The Controller Discovery Process Note
The controller must be running release 8.9.111.0 as it supports 9120AX series access points. For more information, visit the access point data sheet available on Cisco.com at https://www.cisco.com/c/en/us/products/collateral/wireless/catalyst-9100ax-access-points/guide-c07-742311. html.
You cannot edit or query any access point using the controller CLI if the name of the access point contains a space.
Make sure that the controller is set to the current time. If the controller is set to a time that has already occurred, the access point might not join the controller because its certificate may not be valid for that time. Access points must be discovered by a controller before they can become an active part of the network. The access point supports these controller discovery processes:
Locally stored controller IP address discoveryIf the access point was previously joined to a controller, the IP addresses of the primary, secondary, and tertiary controllers are stored in the access point non-volatile memory. This process of storing controller IP addresses on an access point for later deployment is called priming the access point. For more information about priming, see the Performing a Pre-Installation Configuration section on page 13. DHCP server discoveryThis feature uses DHCP option 43 to provide controller IP addresses to the access points. Cisco switches support a DHCP server option that is typically used for this capability. For more information about DHCP option 43, see the Configuring DHCP Option 43 section on page 23. DNS discoveryThe access point can discover controllers through your domain name server (DNS). For the access point to do so, you must configure your DNS to return controller IP addresses in response to CISCO-CAPWAP-CONTROLLER.localdomain, where localdomain is the access point domain name. Configuring the CISCO-CAPWAP-CONTROLLER provides backwards compatibility in an existing customer deployment. When an access point receives an IP address and DNS information from a DHCP server, it contacts the DNS to resolve CISCO-CAPWAP-CONTROLLER.localdomain. When the DNS sends a list of controller IP addresses, the access point sends discovery requests to the controllers. Deploying the Access Point on the Wireless Network After you have mounted the access point, follow these steps to deploy it on the wireless network:
Step 1 Connect and power up the access point. 19 Cisco Catalyst 9120AX Series Access Points Step 2 Observe the access point LED (for LED descriptions, see Checking the Access Point LEDs section on page 21). b. c. a. When you power up the access point, it begins a power-up sequence that you can verify by observing the access point LED. If the power-up sequence is successful, the discovery and join process begins. During this process, the LED blinks sequentially green, red, and off. When the access point has joined a controller, the LED is chirping green if no clients are associated or green if one or more clients are associated. If the LED is not on, the access point is most likely not receiving power. If the LED blinks sequentially for more than 5 minutes, the access point is unable to find its primary, secondary, and tertiary Cisco Wireless Controller. Check the connection between the access point and the Cisco Wireless Controller, and be sure the access point and the Cisco Wireless Controller are either on the same subnet or that the access point has a route back to its primary, secondary, and tertiary Cisco Wireless Controller. Also, if the access point is not on the same subnet as the Cisco Wireless Controller, be sure that there is a properly configured DHCP server on the same subnet as the access point. See the Configuring DHCP Option 43 section on page 23 for additional information. Step 3 Reconfigure the Cisco Wireless Controller so that it is not the master. Note A master Cisco Wireless Controller should be used only for configuring access points and not in a working network. 13 Self-Identifying Antennas The 9120AXE and 9120AXP APs support Self-Identifying Antennas. Self-Identifying Antennas with RP-TNC connectors have a purple band or label indicating the applicable connector. Ensure this labeled connector of the antenna is connected to dual-band port A on the 9120AXE or 9120AXP AP. This AP port can also be identified by the purple text around the RP-TNC connector. The remaining dual-band RP-TNC ports that do not support Self-Identifying Antennas can be differentiated by the standard orange color text around the connector. Self-Identifying Antennas can be used on any of the RP-TNC ports of the AP. However, only port A will read the antenna as a Self-Identifying Antenna. Note Always connect the external antennas to the 9120AXE and 9120AXP models before powering the AP up. Enabling the AP radios without connecting the antennas can result in damage to the AP. When the 9120AXE or 9120AXP AP is powered up with a Self-Identifying Antenna connected to it, the APs circuitry reads the EEPROM in the Self-Identifying Antenna. This enables the AP to automatically configure the antenna gain and beam-width. However, if supported legacy antennas (see List of External Antennas Supported on C9120AXE and C9120AXP) are used with this AP, the antenna parameters must be manually configured in the wireless controller as with older APs. 20 Cisco Catalyst 9120AX Series Access Points 14 Checking the Access Point LEDs The location of the access point status LED is shown in Figure 2. Note Regarding LED status colors, it is expected that there will be small variations in color intensity and hue from unit to unit. This is within the normal range of the LED manufacturers specifications and is not a defect. However, the intensity of the LED can be changed through the controller. The access point status LED indicates various conditions and are described in Table 3. Table 3 LED Status Indications Message Type LED State Message Meaning Association status Green Blue Normal operating condition, but no wireless client associated Normal operating condition, at least one wireless client association Boot loader status Green Executing boot loader Boot loader error Blinking Green Boot loader signing verification failure Operating status Blinking Blue Software upgrade in progress Alternating between Green and Red Discovery/join process in progress Cycling through Red-Off-Green-Off-Blue-Off Access point location command invoked from controller web interface. Access point operating system errors Cycling through Blue-Red-Green-Off General warning; insufficient inline power 15 Miscellaneous Usage and Configuration Guidelines Using the Mode Button Using the Mode button (see Figure 2) you can:
Reset the AP to the default factory-shipped configuration. Clear the AP internal storage, including all configuration files. To use the mode button, press, and keep pressed, the mode button on the access point during the AP boot cycle. Wait until the AP status LED changes to Blue. During this, the AP console shows a seconds counter, counting the number of seconds the mode button is pressed. Then:
To reset the AP to the default factory-shipped configuration, keep the mode button pressed for less than 20 seconds. The AP configuration files are cleared. This resets all configuration settings to factory defaults, including passwords, WEP keys, the IP address, and the SSID. To clear the AP internal storage, including all configuration files and the regulatory domain configuration, keep the mode button pressed for more than 20 seconds, but less than 60 seconds. 21 Cisco Catalyst 9120AX Series Access Points The AP status LED changes from Blue to Red, and all the files in the AP storage directory are cleared. If you keep the mode button pressed for more than 60 seconds, the mode button is assumed faulty and no changes are made. Troubleshooting the Access Point to Cisco Controller Join Process Note Ensure that your controller is running controller software Release 8.9.111.0 or later as specified in see the Cisco Wireless Solutions Software Compatibility Matrix. Access points can fail to join a controller for many reasons: a RADIUS authorization is pending; self-signed certificates are not enabled on the controller; the access point and the controller regulatory domains dont match, and so on. Controller software enables you to configure the access points to send all CAPWAP-related errors to a syslog server. You do not need to enable any debug commands on the controller because all of the CAPWAP error messages can be viewed from the syslog server itself. The state of the access point is not maintained on the controller until it receives a CAPWAP join request from the access point. Therefore, it can be difficult to determine why the CAPWAP discovery request from a certain access point was rejected. In order to troubleshoot such joining problems without enabling CAPWAP debug commands on the controller, the controller collects information for all access points that send a discovery message to it and maintains information for any access points that have successfully joined it. The controller collects all join-related information for each access point that sends a CAPWAP discovery request to the controller. Collection begins with the first discovery message received from the access point and ends with the last configuration payload sent from the controller to the access point. When the controller is maintaining join-related information for the maximum number of access points, it does not collect information for any more access points. An access point sends all syslog messages to IP address 255.255.255.255 by default when any of the following conditions are met:
An access point running software release 8.2.110.0 or later has been newly deployed. An existing access point running software release 8.2.110.0 or later has been reset after clearing the configuration. If any of these conditions are met and the access point has not yet joined a controller, you can also configure a DHCP server to return a syslog server IP address to the access point using option 7 on the server. The access point then starts sending all syslog messages to this IP address. When the access point joins a controller for the first time, the controller sends the global syslog server IP address (the default is 255.255.255.255) to the access point. After that, the access point sends all syslog messages to this IP address until it is overridden by one of the following scenarios:
The access point is still connected to the same controller, and the global syslog server IP address configuration on the controller has been changed using the config ap syslog host global syslog_server_IP_address command. In this case, the controller sends the new global syslog server IP address to the access point. The access point is still connected to the same controller, and a specific syslog server IP address has been configured for the access point on the controller using the config ap syslog host specific Cisco_AP syslog_server_IP_address command. In this case, the controller sends the new specific syslog server IP address to the access point. The access point is disconnected from the controller and joins another controller. In this case, the new controller sends its global syslog server IP address to the access point. 22 Cisco Catalyst 9120AX Series Access Points Whenever a new syslog server IP address overrides the existing syslog server IP address, the old address is erased from persistent storage, and the new address is stored in its place. The access point also starts sending all syslog messages to the new IP address provided the access point can reach the syslog server IP address. You can configure the syslog server for access points and view the access point join information only from the controller CLI. Important Information for Controller-based Deployments Keep these guidelines in mind when you use 9120AX series access point:
The access point can only communicate with Cisco wireless controllers. The access point does not support Wireless Domain Services (WDS) and cannot communicate with WDS devices. However, the controller provides functionality equivalent to WDS when the access point joins it. CAPWAP does not support Layer 2. The access point must get an IP address and discover the controller using Layer 3, DHCP, DNS, or IP subnet broadcast. The access point console port is enabled for monitoring and debug purposes. All configuration commands are disabled when the access point is connected to a controller. Configuring DHCP Option 43 You can use DHCP Option 43 to provide a list of controller IP addresses to the access points, enabling them to find and join a controller. The following is a DHCP Option 43 configuration example on a Windows 2003 Enterprise DHCP server for use with Cisco Catalyst lightweight access points. For other DHCP server implementations, consult product documentation for configuring DHCP Option 43. In Option 43, you should use the IP address of the controller management interface. Note DHCP Option 43 is limited to one access point type per DHCP pool. You must configure a separate DHCP pool for each access point type. The 9120AX series access point uses the type-length-value (TLV) format for DHCP Option 43. DHCP servers must be programmed to return the option based on the access point DHCP Vendor Class Identifier (VCI) string (DHCP Option 43). The VCI string for the 9120AX series access point is:
Cisco AP C9120AX The format of the TLV block is listed below:
Type0xf1 (decimal 241) LengthNumber of controller IP addresses * 4 ValueIP addresses of the WLC management interfaces listed sequentially in hex To configure DHCP Option 43 in the embedded Cisco IOS DHCP server, follow these steps:
Step 1 Enter configuration mode at the Cisco IOS CLI. Step 2 Create the DHCP pool, including the necessary parameters such as default router and name server. A DHCP scope example is as follows:
ip dhcp pool <pool name>
23 Cisco Catalyst 9120AX Series Access Points network <IP Network> <Netmask>
default-router <Default router>
dns-server <DNS Server>
Where:
<pool name> is the name of the DHCP pool, such as AP9120AX
<IP Network> is the network IP address where the controller resides, such as 10.0.15.1
<Netmask> is the subnet mask, such as 255.255.255.0
<Default router> is the IP address of the default router, such as 10.0.0.1
<DNS Server> is the IP address of the DNS server, such as 10.0.10.2 Step 3 Add the option 43 line using the following syntax:
option 43 hex <hex string>
The hex string is assembled by concatenating the TLV values shown below:
Type + Length + Value For example, suppose that there are two controllers with management interface IP addresses, 10.126.126.2 and 10.127.127.2. The type is f1(hex). The length is 2 * 4 = 8 = 08 (hex). The IP addresses translate to 0a7e7e02 and 0a7f7f02. Assembling the string then yields f1080a7e7e020a7f7f02. The resulting Cisco IOS command added to the DHCP scope is option 43 hex f1080a7e7e020a7f7f02. 16 FAQs What is 802.11ax?
The IEEE 802.11ax standard, also known as the High-Efficiency Wireless (HEW) or Wi-Fi 6, builds off of the 802.11ac and delivers a better experience in typical environments, and a more predictable performance for advanced applications such as 4K or 8K video, high-density high-definition collaboration applications, all-wireless offices and Internet-of-Things (IoT). 802.11ax is designed to use both 2.4Ghz and the 5GHz bands, unlike prior standards. What are Self Identifying Antennas?
Self Identifying Antennas are a new set of external, dual-band antennas that are supported with specific 802.11ax APs like the 9120AXE and 9120AXP models. These new antennas are based on currently existing Cisco antennas. Before the introduction of Self Identifying Antennas, the wireless controller and network management system had to be manually provisioned with antenna details like the type of antenna connected to the AP and the antennas gain values. With these new antennas, the AP can automatically detect and identify the external antenna and configure these values without user intervention. What is Flexible Radio Assignment?
The Flexible Radio Assignment (FRA) feature automatically detects when a high number of devices are connected to a network and changes the dual radios in the access point from 2.4 GHz/5 GHz to 5 GHz/5 GHz to serve more clients. The access point performs this function while still monitoring the network for security threats and RF Interference that may affect performance. Flexible Radio Assignment improves mobile user experience for high-density networks. FRA has the different modes of operation:
Default operating modeServing Clients on both 2.4 GHz and 5 GHz 24 Cisco Catalyst 9120AX Series Access Points Dual 5 GHz ModeServing clients on both 5 GHz Radios Wireless Security MonitoringScanning both 2.4 GHz and 5 GHz for security threats while also serving 5 GHz clients What is a Smart Antenna connector?
The 9120AXE and 9120AXP models have a Smart antenna connector (see Figure 10), which is connected directly to the flexible radio. Without a supported external antenna connected to the Smart Antenna connector, the flexible radio can stay only in 2.4 GHz mode. If an external antenna is connected, the flexible radio can be used in the full Flexible Radio Assignment mode, allowing dual 5 GHz and Wireless Security Monitoring modes. To connect to any supported RP-TNC connector-type external antenna to the Smart antenna connector, use the DART cable connector AIR-CAB002-DART-R= (see Figure 10), which is to be procured separately from Cisco. Figure 9 Smart Antenna Connector C9120AXE and C9120AXP Models Figure 10 AIR-CAB002-DART-R= DART Connector What is Cisco Multigigabit Ethernet?
Cisco Multigigabit Ethernet (mGig) is a unique Cisco innovation also available in the Cisco Catalyst 9120AX series access point. With the increasing popularity of 802.11ax and new wireless applications, wireless devices now require more network bandwidth. Hence, there is a need for a technology that supports speeds higher than 1 Gbps on all cabling infrastructure. Cisco Multigigabit technology allows you to achieve bandwidth speeds from 1 to 10 Gbps over traditional Cat 5e cabling or newer. The 9120AX AP supports up to 2.5 Gbps using mGig. For more information see the following Cisco Multigigabit FAQ document:
http://www.cisco.com/c/dam/en/us/solutions/collateral/enterprise-networks/catalyst-multigigabit-switching/multigiga bit-ethernet-technology.pdf 25 Cisco Catalyst 9120AX Series Access Points 17 Related Documentation All user documentation for the Cisco Catalyst 9120AX series access point is available at the following URL:
http://www.cisco.com/c/en/us/support/wireless/aironet-9120AX-series-access-points/tsd-products-support-series-
home.html For detailed information and guidelines for configuring and deploying your access point in a wireless network, see the following documentation:
Cisco Wireless Controller Configuration Guide, Release 8.9, at the following URL:
http://www.cisco.com/c/en/us/td/docs/wireless/controller/8-9/config-guide/b_cg89.html Cisco Catalyst 9120AX Series Access Point Deployment Guide, at the following URL:
https://www.cisco.com/c/en/us/products/collateral/wireless/catalyst-9100ax-access-points/guide-c07-742311. html 18 Declarations of Conformity and Regulatory Information This section provides declarations of conformity and regulatory information for the Cisco Catalyst 9120AX Series Access Points. You can find additional information at this URL:
www.cisco.com/go/aironet/compliance Manufacturers Federal Communication Commission Declaration of Conformity Statement Access Point Models Certification Number LDKVCVER1937 LDKEDAC92157 LDKROFSN2177 C9120AXI-B C9120AXE-B C9120AXP-B Manufacturer:
Cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134-1706 USA This device complies with Part 15 rules. Operation is subject to the following two conditions:
1. This device may not cause harmful interference, and 2. This device must accept any interference received, including interference that may cause undesired operation. 26 Cisco Catalyst 9120AX Series Access Points This equipment has been tested and found to comply with the limits of a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a residential environment. This equipment generates, uses, and radiates radio frequency energy, and if not installed and used in accordance with the instructions, may cause harmful interference. However, there is no guarantee that interference will not occur. If this equipment does cause interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to correct the interference by one of the following measures:
Reorient or relocate the receiving antenna. Increase separation between the equipment and receiver. Connect the equipment to an outlet on a circuit different from which the receiver is connected. Consult the dealer or an experienced radio/TV technician. Caution The Part 15 radio device operates on a non-interference basis with other devices operating at this frequency when using the integrated antennas. Any changes or modification to the product not expressly approved by Cisco could void the users authority to operate this device. VCCI Statement for Japan Warning This is a Class B product based on the standard of the Voluntary Control Council for Interference from Information Technology Equipment (VCCI). If this is used near a radio or television receiver in a domestic environment, it may cause radio interference. Install and use the equipment according to the instruction manual. 27 Cisco Catalyst 9120AX Series Access Points Guidelines for Operating Cisco Catalyst Access Points in Japan This section provides guidelines for avoiding interference when operating Cisco Catalyst access points in Japan. These guidelines are provided in both Japanese and English. Japanese Translation 03-6434-6500 7 9 6 8 0 2 English Translation This equipment operates in the same frequency bandwidth as industrial, scientific, and medical devices such as microwave ovens and mobile object identification (RF-ID) systems (licensed premises radio stations and unlicensed specified low-power radio stations) used in factory production lines. 1. Before using this equipment, make sure that no premises radio stations or specified low-power radio stations of RF-ID are used in the vicinity. 2. If this equipment causes RF interference to a premises radio station of RF-ID, promptly change the frequency or stop using the device; contact the number below and ask for recommendations on avoiding radio interference, such as setting partitions. 3. If this equipment causes RF interference to a specified low-power radio station of RF-ID, contact the number below. Contact Number: 03-6434-6500 28 Cisco Catalyst 9120AX Series Access Points Statement 371Power Cable and AC Adapter English Translation When installing the product, please use the provided or designated connection cables/power cables/AC adaptors. Using any other cables/adaptors could cause a malfunction or a fire. Electrical Appliance and Material Safety Law prohibits the use of UL-certified cables (that have the UL shown on the code) for any other electrical devices than products designated by CISCO. The use of cables that are certified by Electrical Appliance and Material Safety Law (that have PSE shown on the code) is not limited to CISCO-designated products. Industry Canada Access Point Models C9120AXI-A C9120AXE-A C9120AXP-A Certification Number 2461N-VCVER1937 2461N-EDAC92157 2461N-ROFSN2177 Canadian Compliance Statement This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Le prsent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est autorise aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout brouillage radiolectrique subi, mme si le brouillage est susceptible d'en compromettre le fonctionnement. Under Industry Canada regulations, this radio transmitter may only operate using an antenna of a type and maximum (or lesser) gain approved for the transmitter by Industry Canada. To reduce potential radio interference to other users, the antenna type and its gain should be so chosen that the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary for successful communication. Conformment la rglementation d'Industrie Canada, le prsent metteur radio peut fonctionner avec une antenne d'un type et d'un gain maximal (ou infrieur) approuv pour l'metteur par Industrie Canada. Dans le but de rduire les risques de brouillage radiolectrique l'intention des autres utilisateurs, il faut choisir le type d'antenne et son gain de sorte que la puissance isotrope rayonne quivalente (p.i.r.e.) ne dpasse pas l'intensit ncessaire l'tablissement d'une communication satisfaisante. This radio transmitter has been approved by Industry Canada to operate with the antenna types listed below with the maximum permissible gain and required antenna impedance for each antenna type indicated. Antenna types not included in this list, having a gain greater than the maximum gain indicated for that type, are strictly prohibited for use with this device. Le prsent metteur radio a t approuv par Industrie Canada pour fonctionner avec les types d'antenne numrs 29 Cisco Catalyst 9120AX Series Access Points ci-dessous et ayant un gain admissible maximal et l'impdance requise pour chaque type d'antenne. Les types d'antenne non inclus dans cette liste, ou dont le gain est suprieur au gain maximal indiqu, sont strictement interdits pour l'exploitation de l'metteur. Table 4 List of Internal Antennas Supported on C9120AXI Antenna Type Antenna Gain Antenna Impedance Single-band Omni Dual-band Omni Dual-band Omni Single-Band HPOL 3 dBi 3/5 dBi 4/5 dBi 5 dBi 50 ohms 50 ohms 50 ohms 50 ohms Table 5 Part Number Description List of External Antennas Supported on C9120AXE and C9120AXP AIR-ANT2524DB-R/=
Dipole Antenna, Black, with RP-TNC connectors. AIR-ANT2524DG-R/=
Dipole Antenna, Gray, with RP-TNC connectors. AIR-ANT2524DW-R/=
Dipole Antenna, White, with RP-TNC connectors. Gain 2 dBi (2.4 GHz) 4 dBi (5 GHz) 2 dBi (2.4 GHz) 4 dBi (5 GHz) 2 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2524DW-RS=
AIR-ANT2524V4C-R=
Dipole Self-Identifying Antenna, White, with RP-TNC connectors. 2 dBi (2.4 GHz) 4 dBi (5 GHz) Ceiling Mount Omni Antenna, 4-port, with RP-TNC connectors. 2 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2524V4C-RS=
Ceiling Mount Omni Self-Identifying Antenna, 4-port, with RP-TNC connectors. 2 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2535SDW-R=
Low Profile Antenna, White, with RP-TNC connectors. 3 dBi (2.4 GHz) 5 dBi (5 GHz) AIR-ANT2535SDW-RS=
Low Profile Self-Identifying Antenna, White, with RP-TNC connectors. 3 dBi (2.4 GHz) 5 dBi (5 GHz) AIR-ANT2544V4M-R=
Wall Mount Omni Antenna, 4-port, with RP-TNC connectors. 4 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2544V4M-RS=
Wall Mount Omni Self-Identifying Antenna, 4-port, with RP-TNC connectors. 4 dBi (2.4 GHz) 4 dBi (5 GHz) AIR-ANT2566D4M-R=
60 Patch Antenna, 4-port, with RP-TNC connectors. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566D4M-RS=
60 Patch Self-Identifying Antenna, 4-port, with RP-TNC connectors. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566D4M-DS=
60 Patch Self-Identifying Antenna, 4-port, with 4DART connector. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566P4W-DS=
Directional Self-Identifying Antenna, 4-port, with 4DART connector. 6 dBi (2.4 GHz) 6 dBi (5 GHz) AIR-ANT2566P4W-R=
Directional Antenna, 4-port, with RP-TNC connector. AIR-ANT2566P4W-RS=
Directional Self-Identifying Antenna, 4-port, with RP-TNC connectors. AIR-ANT2513P4M-N=
Patch Antenna, 4-port, with N connectors.
(Supported on the 9120AXP model only.) 6 dBi (2.4 GHz) 6 dBi (5 GHz) 6 dBi (2.4 GHz) 6 dBi (5 GHz) 13 dBi (2.4 GHz) 13 dBi (5 GHz) 30 Cisco Catalyst 9120AX Series Access Points Operation in the band 5150-5250 MHz is only for indoor use to reduce the potential for harmful interference to co-channel mobile satellite systems. La bande 5 150-5 250 MHz est rservs uniquement pour une utilisation l'intrieur afin de rduire les risques de brouillage prjudiciable aux systmes de satellites mobiles utilisant les mmes canaux. Users are advised that high-power radars are allocated as primary users (i.e. priority users) of the bands 5250-5350 MHz and 5650-5850 MHz and that these radars could cause interference and/or damage to LE-LAN devices. Les utilisateurs tes aviss que les utilisateurs de radars de haute puissance sont dsigns utilisateurs principaux
(c.--d., qu'ils ont la priorit) pour les bandes 5 250-5 350 MHz et 5 650-5 850 MHz et que ces radars pourraient causer du brouillage et/ou des dommages aux dispositifs LAN-EL. European Community, Switzerland, Norway, Iceland, and Liechtenstein Access Point Models:
C9120AXI-E C9120AXE-E C9120AXP-E Note This equipment is intended to be used in all EU and EFTA countries. Outdoor use may be restricted to certain frequencies and/or may require a license for operation. For more details, contact Cisco Corporate Compliance. The product carries the CE Mark:
Declaration of Conformity for RF Exposure This section contains information on compliance with guidelines related to RF exposure. Generic Discussion on RF Exposure The Cisco products are designed to comply with the following national and international standards on Human Exposure to Radio Frequencies:
US 47 Code of Federal Regulations Part 2 Subpart J American National Standards Institute (ANSI) / Institute of Electrical and Electronic Engineers / IEEE C 95.1 (99) International Commission on Non Ionizing Radiation Protection (ICNIRP) 98 Ministry of Health (Canada) Safety Code 6. Limits on Human Exposure to Radio Frequency Fields in the range from 3kHz to 300 GHz Australia Radiation Protection Standard To ensure compliance with various national and international Electromagnetic Field (EMF) standards, the system should only be operated with Cisco approved antennas and accessories. 31 Cisco Catalyst 9120AX Series Access Points This Device Meets International Guidelines for Exposure to Radio Waves The 9120AX series device includes a radio transmitter and receiver. It is designed not to exceed the limits for exposure to radio waves (radio frequency electromagnetic fields) recommended by international guidelines. The guidelines were developed by an independent scientific organization (ICNIRP) and include a substantial safety margin designed to ensure the safety of all persons, regardless of age and health. As such the systems are designed to be operated as to avoid contact with the antennas by the end user. It is recommended to set the system in a location where the antennas can remain at least a minimum distance as specified from the user in accordance to the regulatory guidelines which are designed to reduce the overall exposure of the user or operator. Separation Distance MPE 0.2611 mW/cm2 Distance 30 cm (12 inches) Limit 1.00 mW/cm2 The World Health Organization has stated that present scientific information does not indicate the need for any special precautions for the use of wireless devices. They recommend that if you are interested in further reducing your exposure then you can easily do so by reorienting antennas away from the user or placing he antennas at a greater separation distance then recommended. This Device Meets FCC Guidelines for Exposure to Radio Waves The 9120AX series device includes a radio transmitter and receiver. It is designed not to exceed the limits for exposure to radio waves (radio frequency electromagnetic fields) as referenced in FCC Part 1.1310. The guidelines are based on IEEE ANSI C 95.1 (92) and include a substantial safety margin designed to ensure the safety of all persons, regardless of age and health. As such the systems are designed to be operated as to avoid contact with the antennas by the end user. It is recommended to set the system in a location where the antennas can remain at least a minimum distance as specified from the user in accordance to the regulatory guidelines which are designed to reduce the overall exposure of the user or operator. The device has been tested and found compliant with the applicable regulations as part of the radio certification process. Separation Distance MPE 0.2611 mW/cm2 Distance 30 cm (12 inches) Limit 1.00 mW/cm2 The US Food and Drug Administration has stated that present scientific information does not indicate the need for any special precautions for the use of wireless devices. The FCC recommends that if you are interested in further reducing your exposure then you can easily do so by reorienting antennas away from the user or placing the antennas at a greater separation distance then recommended or lowering the transmitter power output. This Device Meets the Industry Canada Guidelines for Exposure to Radio Waves The 9120AX series device includes a radio transmitter and receiver. It is designed not to exceed the limits for exposure to radio waves (radio frequency electromagnetic fields) as referenced in Health Canada Safety Code 6. The guidelines include a substantial safety margin designed into the limit to ensure the safety of all persons, regardless of age and health. 32 Cisco Catalyst 9120AX Series Access Points As such the systems are designed to be operated as to avoid contact with the antennas by the end user. It is recommended to set the system in a location where the antennas can remain at least a minimum distance as specified from the user in accordance to the regulatory guidelines which are designed to reduce the overall exposure of the user or operator. Frequency 2.4 GHz 5 GHz MPE 1.72 W/m2 2.55 W/m2 Separation Distance Distance 30 cm (12 inches) Limit 5.4 W/m2 9.2 W/m2 Health Canada states that present scientific information does not indicate the need for any special precautions for the use of wireless devices. They recommend that if you are interested in further reducing your exposure you can easily do so by reorienting antennas away from the user, placing the antennas at a greater separation distance than recommended, or lowering the transmitter power output. Cet appareil est conforme aux directives internationales en matire d'exposition aux frquences radiolectriques Cet appareil de la gamme 9120AX comprend un metteur-rcepteur radio. Il a t conu de manire respecter les limites en matire d'exposition aux frquences radiolectriques (champs lectromagntiques de frquence radio), recommandes dans le code de scurit 6 de Sant Canada. Ces directives intgrent une marge de scurit importante destine assurer la scurit de tous, indpendamment de l'ge et de la sant. Par consquent, les systmes sont conus pour tre exploits en vitant que l'utilisateur n'entre en contact avec les antennes. Il est recommand de poser le systme l o les antennes sont une distance minimale telle que prcise par l'utilisateur conformment aux directives rglementaires qui sont conues pour rduire l'exposition gnrale de l'utilisateur ou de l'oprateur. Distance d'loignement Frquence Distance Limite MPE 1.72 W/m2 2.55 W/m2 30 cm (12 inches) 5.4 W/m2 9.2 W/m2 2.4 GHz 5 GHz Sant Canada affirme que la littrature scientifique actuelle n'indique pas qu'il faille prendre des prcautions particulires lors de l'utilisation d'un appareil sans fil. Si vous voulez rduire votre exposition encore davantage, selon l'agence, vous pouvez facilement le faire en rorientant les antennes afin qu'elles soient diriges l'cart de l'utilisateur, en les plaant une distance d'loignement suprieure celle recommande ou en rduisant la puissance de sortie de l'metteur. Additional Information on RF Exposure You can find additional information on the subject at the following links:
Cisco Systems Spread Spectrum Radios and RF Safety white paper at this URL:
http://www.cisco.com/warp/public/cc/pd/witc/ao340ap/prodlit/rfhr_wi.htm FCC Bulletin 56: Questions and Answers about Biological Effects and Potential Hazards of Radio Frequency Electromagnetic Fields Electromagnetic Fields FCC Bulletin 65: Evaluating Compliance with the FCC guidelines for Human Exposure to Radio Frequency 33 Cisco Catalyst 9120AX Series Access Points You can obtain additional information from the following organizations:
World Health Organization Internal Commission on Non-Ionizing Radiation Protection at this URL: www.who.int/emf United Kingdom, National Radiological Protection Board at this URL: www.nrpb.org.uk Cellular Telecommunications Association at this URL: www.wow-com.com The Mobile Manufacturers Forum at this URL: www.mmfai.org Administrative Rules for Cisco Catalyst Access Points in Taiwan This section provides administrative rules for operating Cisco Catalyst access points in Taiwan. The rules for all access points are provided in both Chinese and English. Chinese Translation English Translation Administrative Rules for Low-power Radio-Frequency Devices Article 12 Article 14 For those low-power radio-frequency devices that have already received a type-approval, companies, business units or users should not change its frequencies, increase its power or change its original features and functions. The operation of the low-power radio-frequency devices is subject to the conditions that no harmful interference is caused to aviation safety and authorized radio station; and if interference is caused, the user must stop operating the device immediately and can't re-operate it until the harmful interference is clear. The authorized radio station means a radio-communication service operating in accordance with the Communication Act. 34 Cisco Catalyst 9120AX Series Access Points The operation of the low-power radio-frequency devices is subject to the interference caused by the operation of an authorized radio station, by another intentional or unintentional radiator, by industrial, scientific and medical (ISM) equipment, or by an incidental radiator. Chinese Translation English Translation Low-power Radio-frequency Devices Technical Specifications 4.7 Unlicensed National Information Infrastructure 4.7.5 4.7.6 4.7.7 Within the 5.25-5.35 GHz band, U-NII devices will be restricted to indoor operations to reduce any potential for harmful interference to co-channel MSS operations. The U-NII devices shall accept any interference from legal communications and shall not interfere the legal communications. If interference is caused, the user must stop operating the device immediately and can't re-operate it until the harmful interference is clear. Manufacturers of U-NII devices are responsible for ensuring frequency stability such that an emission is maintained within the band of operation under all conditions of normal operation as specified in the user manual. Operation of Cisco Catalyst Access Points in Brazil This section contains special information for operation of Cisco Catalyst access points in Brazil. Access Point Models:
C9120AXI-Z 35 Cisco Catalyst 9120AX Series Access Points Communications, Services, and Additional Information C9120AXE-Z C9120AXP-Z Figure 11 Brazil Regulatory Information Este equipamento no tem direito proteo contra interferncia prejudicial e no pode causar interferncia em sistemas devidamente autorizados. Portuguese Translation English Translation This equipment is not entitled to the protection from harmful interference and may not cause interference with duly authorized systems. Declaration of Conformity Statements All the Declaration of Conformity statements related to this product can be found at the following location:
http://www.ciscofax.com Communications, Services, and Additional Information To receive timely, relevant information from Cisco, sign up at Cisco Profile Manager. To get the business impact youre looking for with the technologies that matter, visit Cisco Services. To submit a service request, visit Cisco Support. To discover and browse secure, validated enterprise-class apps, products, solutions and services, visit Cisco Marketplace. To obtain general networking, training, and certification titles, visit Cisco Press. To find warranty information for a specific product or product family, access Cisco Warranty Finder. 36 Cisco Catalyst 9120AX Series Access Points Cisco Bug Search Tool Cisco Bug Search Tool Cisco Bug Search Tool (BST) is a web-based tool that acts as a gateway to the Cisco bug tracking system that maintains a comprehensive list of defects and vulnerabilities in Cisco products and software. BST provides you with detailed defect information about your products and software. 2019 Cisco Systems, Inc. All rights reserved. Cisco and the Cisco logo are trademarks or registered trademarks of Cisco and/or its affiliates in the U.S. and other countries. To view a list of Cisco trademarks, go to this URL:
www.cisco.com/go/trademarks. Third-party trademarks mentioned are the property of their respective owners. The use of the word partner does not imply a partnership relationship between Cisco and any other company. (1721R) 37 Cisco Catalyst 9120AX Series Access Points Cisco Bug Search Tool 38
1 2 3 4 | Int Photos | Internal Photos | 549.52 KiB | October 21 2020 / April 19 2021 | delayed release |
1 2 3 4 | FCC ID Label | ID Label/Location Info | 162.40 KiB | October 21 2020 |
Model: C9120AXE-B Cisco Catalyst 9120AX Series Wi-Fi 6 Access Points Input: 42.5-57 V === 600-447 mA FC FCC ID: LDKEDAC92157 Wi GS) CERTIFIED Gus LISTED LTE. 145632 47-105202-01_A0
[This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions:
1) this device may not cause harmful interference and 2) this device must accept any interference received, including interference that may cause undesired operation. SEE MANUAL BEFORE USE 20 http://cisco-returns.com|
Cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134 USA
1 2 3 4 | Authorized Signature Letter | Cover Letter(s) | 48.26 KiB | October 21 2020 |
02/15/18 Subject : Authorized signatures The following people are authorized by Cisco Systems to sign documents for FCC product approval under FCC Grantee code LDK, and ISED product approval under ISED registration 2461N on behalf of the company. Further this right is extended to any regular Cisco employee as deemed necessary. David A, Case Louie Castro Howard Ji Jose Aguirre Lisa Bevington Andy Griffin Mark King Allan Beecroft Steve Granzella Adam Walb Rekha Simha Guangmin Ouyang Marie Higa Rochelle Jacobsen Regards Gerard Thorpe Cisco Systems EDCS-1216337 11/23/2016 Guidance from ISED in regards to Signatures on Forms In regards to filing an application for radio certification, a CB has told us that only the Canada Rep can sign the forms. This is in conflict with information I received via my discussions with ISED at and what was done in the past . Our document clearly list the Canada rep but the applications are processed by our certification group responsible for addressing worldwide approvals. Please pride clarification as to allow us to address with the CB David A. Case ___________________________________________________________ Good morning David, The test report and Annex A/B of RSS-102 are to be signed by the person who evaluated the device or supervised the evaluation of the device which is generally the Testing Lab. For Annex C, the statement is similar but the evaluation in this case could be done by the applicant for exemption, therefore the form could be signed by the applicant or the test lab. The other documents such as Appendix A/B of RSP-100, letter of confidentiality, listing agreement letter can be signed by any designated person from the Applicant's company. He/she does not need to be the actual contact person registered with IC. Appendix B can also be signed by the test lab. Also, the Applicant company can authorize an agent to sign on their behalf. If the agent authorization letter is attached with the application documents, then IC will accept the agent's signature on behalf of the Applicant's company as well. However, please keep in mind that there are some documents such as the Canadian Representative letter and Authorization letters for Multiple Listing and Transfer of TAC that must be signed by appropriate companies and not the applicant. Regards, Certification and Engineering Bureau, Engineering, Planning and Standards Branch Innovation, Science and Economic Development Canada / Government of Canada (26) ic.certificationbureau-bureauhomologation.ic@canada.ca Tel.: 613-990-4218 / ATS 1-866-694-8389 Bureau d'homologation et services techniques, Direction gnrale du gnie, de la planification et des normes Innovation, Sciences et Dveloppement conomique Canada / Government of Canada/ Gouvernement du Canada (26) ic.certificationbureau-bureauhomologation.ic@canada.ca Tl.: 613-990-4218 / TTY 1-866-694-8389 EDCS-1216337
1 2 3 4 | C2PC Letter | Cover Letter(s) | 71.38 KiB | October 21 2020 |
(2020/09/30) FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Description of Permissive Change Dear Sir/Madam, We, Cisco Systems, Inc. hereby authorize Bay Area Compliance laboratory Corp to act as a laboratory for testing and test report generation for the following project(s):
FCC ID: LDKEDAC92157, Model: C9120AXE-B This project is a Permissive Change II submission. Please refer to following items we adjusted:
CW integration on the mainboard Remove the mini-PCIe connector for CW Add the shieldings for CW on top and bottom side PCB We affirm that between BACL and Cisco Systems, Inc., any difference in understanding, including test plan, measurement methods, applicable standards and relevant procedures and processes have been resolved prior to commencement of testing activities. This authorization is valid until further written notice from the applicant. Sincerely Yours, Clients signature Louie Castro, Compliance Manager 125 West Tasman Dr, San Jose, CA. 95134 QA-FR-174-A
1 2 3 4 | Confidentiality Letter | Cover Letter(s) | 95.70 KiB | October 21 2020 |
FCC Confidential Authorization
(2020/09/30) FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request regarding application for certification of FCC ID: LDKEDAC92157 In accordance with Sections 0.457 and 0.459 of the Commissions Rules, Cisco Systems, Inc. hereby requests long-term confidential treatment of information accompanying this application as outlined below:
Schematics As well as short-term (180 days) confidential treatment of information accompanying this application as outlined below:
Internal Photos Test Set-up Photos The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely, Clients signature Louie Castro Compliance Manager 125 W Tasman Drive San Jose, CA 95134 QA-FR-172-A
1 2 3 4 | Setup Photos (Conducted) | Test Setup Photos | 203.47 KiB | October 21 2020 / April 19 2021 | delayed release |
1 2 3 4 | Setup Photos (Radiated) | Test Setup Photos | 190.30 KiB | October 21 2020 / April 19 2021 | delayed release |
frequency | equipment class | purpose | ||
---|---|---|---|---|
1 | 2020-10-21 | 5745 ~ 5825 | NII - Unlicensed National Information Infrastructure TX | Class II Permissive Change |
2 | 2412 ~ 2462 | DTS - Digital Transmission System | ||
3 | 2019-10-25 | 5745 ~ 5825 | NII - Unlicensed National Information Infrastructure TX | Original Equipment |
4 | 2412 ~ 2462 | DTS - Digital Transmission System |
app s | Applicant Information | |||||
---|---|---|---|---|---|---|
1 2 3 4 | Effective |
2020-10-21
|
||||
1 2 3 4 |
2019-10-25
|
|||||
1 2 3 4 | Applicant's complete, legal business name |
Cisco Systems Inc
|
||||
1 2 3 4 | FCC Registration Number (FRN) |
0004968939
|
||||
1 2 3 4 | Physical Address |
125 West Tasman Drive
|
||||
1 2 3 4 |
San Jose, CA
|
|||||
1 2 3 4 |
United States
|
|||||
app s | TCB Information | |||||
1 2 3 4 | TCB Application Email Address |
b******@baclcorp.com
|
||||
1 2 3 4 | TCB Scope |
A4: UNII devices & low power transmitters using spread spectrum techniques
|
||||
app s | FCC ID | |||||
1 2 3 4 | Grantee Code |
LDK
|
||||
1 2 3 4 | Equipment Product Code |
EDAC92157
|
||||
app s | Person at the applicant's address to receive grant or for contact | |||||
1 2 3 4 | Name |
S**** K********
|
||||
1 2 3 4 |
G**** T********
|
|||||
1 2 3 4 | Title |
Manager, Engineering
|
||||
1 2 3 4 | Telephone Number |
408-5********
|
||||
1 2 3 4 |
408-5********
|
|||||
1 2 3 4 | Fax Number |
408-5********
|
||||
1 2 3 4 |
408-5********
|
|||||
1 2 3 4 |
s******@cisco.com
|
|||||
1 2 3 4 |
g******@cisco.com
|
|||||
app s | Technical Contact | |||||
n/a | ||||||
app s | Non Technical Contact | |||||
n/a | ||||||
app s | Confidentiality (long or short term) | |||||
1 2 3 4 | Does this application include a request for confidentiality for any portion(s) of the data contained in this application pursuant to 47 CFR § 0.459 of the Commission Rules?: | Yes | ||||
1 2 3 4 | Long-Term Confidentiality Does this application include a request for confidentiality for any portion(s) of the data contained in this application pursuant to 47 CFR § 0.459 of the Commission Rules?: | Yes | ||||
1 2 3 4 | If so, specify the short-term confidentiality release date (MM/DD/YYYY format) | 04/19/2021 | ||||
1 2 3 4 | 04/23/2020 | |||||
if no date is supplied, the release date will be set to 45 calendar days past the date of grant. | ||||||
app s | Cognitive Radio & Software Defined Radio, Class, etc | |||||
1 2 3 4 | Is this application for software defined/cognitive radio authorization? | No | ||||
1 2 3 4 | Equipment Class | NII - Unlicensed National Information Infrastructure TX | ||||
1 2 3 4 | DTS - Digital Transmission System | |||||
1 2 3 4 | Description of product as it is marketed: (NOTE: This text will appear below the equipment class on the grant) | Cisco Catalyst 9120AX Series | ||||
1 2 3 4 | Related OET KnowledgeDataBase Inquiry: Is there a KDB inquiry associated with this application? | Yes | ||||
1 2 3 4 | No | |||||
1 2 3 4 | Modular Equipment Type | Does not apply | ||||
1 2 3 4 | Purpose / Application is for | Class II Permissive Change | ||||
1 2 3 4 | Original Equipment | |||||
1 2 3 4 | Composite Equipment: Is the equipment in this application a composite device subject to an additional equipment authorization? | Yes | ||||
1 2 3 4 | Related Equipment: Is the equipment in this application part of a system that operates with, or is marketed with, another device that requires an equipment authorization? | No | ||||
1 2 3 4 | Grant Comments | Class II Permissive Change described in this filing. Output power listed is conducted. Device supports 20/40/80/160 MHz bandwidth modes and 4x4 MIMO. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 30 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installations and transmitter operating conditions for satisfying RF exposure compliance. | ||||
1 2 3 4 | Class II Permissive Change described in this filing. Output power listed is conducted. Device supports 20 MHz bandwidth and 4x4 MIMO. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 30 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installations and transmitter operating conditions for satisfying RF exposure compliance. | |||||
1 2 3 4 | Output power listed is conducted. Device supports 20/40/80/160 MHz bandwidth modes and 4x4 MIMO. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 30 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installations and transmitter operating conditions for satisfying RF exposure compliance. | |||||
1 2 3 4 | Output power listed is conducted. Device supports 20 MHz bandwidth and 4x4 MIMO. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 30 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installations and transmitter operating conditions for satisfying RF exposure compliance. | |||||
1 2 3 4 | Is there an equipment authorization waiver associated with this application? | No | ||||
1 2 3 4 | If there is an equipment authorization waiver associated with this application, has the associated waiver been approved and all information uploaded? | No | ||||
app s | Test Firm Name and Contact Information | |||||
1 2 3 4 | Firm Name |
Cisco Systems, Inc.
|
||||
1 2 3 4 |
Bay Area Compliance Laboratories Corporation
|
|||||
1 2 3 4 | Name |
G****** T******
|
||||
1 2 3 4 |
L**** T****
|
|||||
1 2 3 4 | Telephone Number |
408-5********
|
||||
1 2 3 4 |
408-7******** Extension:
|
|||||
1 2 3 4 | Fax Number |
40852********
|
||||
1 2 3 4 |
408 7********
|
|||||
1 2 3 4 |
g******@cisco.com
|
|||||
1 2 3 4 |
l******@baclcorp.com
|
|||||
Equipment Specifications | |||||||||||||||||||||||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
1 | 1 | 15E | CC MO | 5180 | 5240 | 0.209 | |||||||||||||||||||||||||||||||||||
1 | 2 | 15E | CC MO ND | 5250 | 5250 | 0.098 | |||||||||||||||||||||||||||||||||||
1 | 3 | 15E | CC MO ND | 5260 | 5320 | 0.155 | |||||||||||||||||||||||||||||||||||
1 | 4 | 15E | CC MO ND | 5270 | 5310 | 0.204 | |||||||||||||||||||||||||||||||||||
1 | 5 | 15E | CC MO ND | 5500 | 5720 | 0.162 | |||||||||||||||||||||||||||||||||||
1 | 6 | 15E | CC MO ND | 5510 | 5710 | 0.204 | |||||||||||||||||||||||||||||||||||
1 | 7 | 15E | CC MO ND | 5530 | 5690 | 0.209 | |||||||||||||||||||||||||||||||||||
1 | 8 | 15E | CC MO | 5745 | 5825 | 0.251 | |||||||||||||||||||||||||||||||||||
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
2 | 1 | 15C | CC | 2402 | 2480 | 0.002 | |||||||||||||||||||||||||||||||||||
2 | 2 | 15C | CC MO | 2412 | 2462 | 0.282 | |||||||||||||||||||||||||||||||||||
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
3 | 1 | 15E | CC MO | 5180 | 5240 | 0.209 | |||||||||||||||||||||||||||||||||||
3 | 2 | 15E | CC MO ND | 5250 | 5250 | 0.098 | |||||||||||||||||||||||||||||||||||
3 | 3 | 15E | CC MO ND | 5260 | 5320 | 0.155 | |||||||||||||||||||||||||||||||||||
3 | 4 | 15E | CC MO ND | 5270 | 5310 | 0.204 | |||||||||||||||||||||||||||||||||||
3 | 5 | 15E | CC MO ND | 5500 | 5720 | 0.162 | |||||||||||||||||||||||||||||||||||
3 | 6 | 15E | CC MO ND | 5510 | 5710 | 0.204 | |||||||||||||||||||||||||||||||||||
3 | 7 | 15E | CC MO ND | 5530 | 5690 | 0.209 | |||||||||||||||||||||||||||||||||||
3 | 8 | 15E | CC MO | 5745 | 5825 | 0.251 | |||||||||||||||||||||||||||||||||||
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
4 | 1 | 15C | CC | 2402 | 2480 | 0.002 | |||||||||||||||||||||||||||||||||||
4 | 2 | 15C | CC MO | 2412 | 2462 | 0.282 |
some individual PII (Personally Identifiable Information) available on the public forms may be redacted, original source may include additional details
This product uses the FCC Data API but is not endorsed or certified by the FCC