| Category | Specification |
|---|
| Dimensions (H x W x D) | Radio: 22.2 x 12.4 x 4.5 cm (8.75 x 4.9 x 1.75 in) without brackets |
|---|
| 重量 | .7 kg (1.5 lbs) without brackets |
|---|
| Temperature | -30°C (-22°F) to +55°C (131°F) |
|---|
| Wind loading | 118 mph (190 kph) maximum. See ePMP 2000 Access Point with Intelligent Filtering and Sync wind loading on page 41 for a full description. |
|---|
| Humidity | 95% condensing |
|---|
| Environmental | IP55 |
|---|
| Initial Temperature | Startup time (from power on to operatio nal) |
|---|
| -22° F (-30° C) | 20 H4141414141414141414141414141414141414141414141414141414141414141414141414141414141414141 minutes 414141414141414141414141414141414141414141414141414141414141414141414141414141414141414141 41414141414141414141414141414141414141414141414141414141414141414141414141 |
|---|
| -4° F (-20° C) | 6 minutes 14° F (-10° C) 2 minutes, seconds |
|---|
| • | The equipment is high enough to achieve the best radio path. |
|---|
| Where: | Is: |
|---|
| a | surface area in square meters |
|---|
| V | wind speed in meters per second Force (in pounds) = 0.0042Av2 |
|---|
| A | surface area in square feet |
|---|
| v | wind speed in miles per hour |
|---|
| Type of ePMP device | Largest Wind speed (meters per second) surface area (square |
|---|
| meters) | 30 40 50 60 70 |
|---|
| Connectorized with | 0.09 8.5 Kg 15 Kg 23.5 Kg 33.9 Kg 46.1 Kg Sector Antenna |
|---|
| feet) | 80 100 120 140 150 |
|---|
| Connectorized with Sector | 1 26.9 lb 42 lb 60.1 lb 82.32 lb 107.5 lb Antenna |
|---|
| Cambium part | Antenna Type Gain (dBi) number |
|---|
| C050900D021A | 5 GHz Sector Antenna – 90/120 degree 18 |
|---|
| C050900D020A | Smart Antenna (complimentary to Sector Antenna, does not replace - Sector Antenna) |
|---|
| Cambium description | Cambium part number |
|---|
| ePMP GPS, Conn - 2.4 GHz - US power cord | C024900A011A ePMP GPS, Conn - 2.5 GHz – no power cord – Brazil only C025900A611A ePMP GPS, Conn - 5 GHz - no power cord – ROW version C050900A011A ePMP GPS, Conn - 5 GHz – no power cord – EU version C050900A013A ePMP GPS, Conn - 5 GHz - US power cord – FCC version C058900A112A ePMP GPS, Conn – 6.4 GHz – no power cord – ROW version C060900A211A GPS Sync AP License Key – ePMP 1000 GPS Sync AP Licens |
|---|
| Antenna port V | Ethernet GPS |
|---|
| Name | Connector Interface Description |
|---|
| Antenna port | Antenna, |
|---|
| RP-SMA, female | To/from H polarized antenna port |
|---|
| H | H polarization |
|---|
| Ethernet | RJ45 10/100/1000 Base- Management and data TX Ethernet |
|---|
| GPS | SMA, female Antenna, GPS To/from GPS antenna For resetting the radio and for setting the radio back to its |
|---|
| Reset Button | Physical button N/A factory default configuration. See Using the device external reset button on page 304. |
|---|
| LED | Function |
|---|
| 供電 | Green: Power is applied to the device Unlit: No power is applied to the device or improper power source |
|---|
| GPS SYNC | Orange: AP has acquired a 1PPS GPS synchronization pulse either from the internal GPS module and antenna or from a connected CMM Unlit: 1PPS GPS not acquired, or Synchronization Source set to Internal (AP operates without sync) No LEDs lit: Three or less satellites tracked One LED lit (bottom): Four or five satellites tracked Two LEDs lit (bottom two): Six or seven satellites tracked All LEDs lit: |
|---|
| ETH | Once lit, blinking indicates Ethernet activity Red: 10BaseTX link Green: 100BaseTX link Orange: 1000BaseTX link Unlit: No Ethernet link established |
|---|
| Connectorized | 0.13 12.2 Kg 21.7 Kg 34 Kg 49 Kg 66.6 Kg |
|---|
| C050900D003A | 5 GHz Sector Antenna – 90 degree 15 |
|---|
| C050900D002A | 5 GHz Sector Antenna – 120 degree 15 |
|---|
| C024900D004A | 2.4 GHz Sector Antenna - 90 /120 degree 15 |
|---|
| ePMP Integrated - 2.4 GHz - US power cord | C024900C031A |
|---|
| Port name | Connector Interface Description Proprietary power over Ethernet (PoE) twisted pair PoE input |
|---|
| Primary Ethernet | RJ45 (for powering via CMM3/CMM4) 10/100 Base-TX Ethernet Management and data Cambium proprietary |
|---|
| Auxiliary Ethernet | Proprietary 30V PoE output for auxiliary devices |
|---|
| RJ45 | PoE output, data (future release) (not 802.3af standard PoE) bridging |
|---|
| ETH 1 | Once lit, blinking indicates Ethernet activity Green: 10/100BaseTX link Auxiliary/Secondary Ethernet port indicator |
|---|
| ETH 2 | Once lit, blinking indicates Ethernet activity Green: 10/100BaseTX link Radio scanning: LEDs light in an ascending sequence to indicate that the radio is scanning Radio registered: LEDs light to indicate the RSSI level at the device. |
|---|
| RSSI | -70 dBm -80 dBm RSSI |
|---|
| > -60 | < RSSI ≤≤ < RSSI ≤ ≤ -80 dBm |
|---|
| dBm | -60 dBm -70 dBm |
|---|
| Type of ePMP | Largest Wind speed (meters per second) |
|---|
| module | surface area (square |
|---|
| Integrated | 0.042 4 Kg 7 Kg 11 Kg 15.8 Kg 21.6 Kg |
|---|
| ePMP Conn – 2.4 GHz – US power cord | C024900A021A ePMP Conn – 2.5 GHz – no power cord – Brazil only C025900A611A ePMP Conn – 5 GHz – no power cord – ROW version C050900A021A ePMP Conn – 5 GHz – EU power cord – EU version C050900A023A ePMP Conn – 5 GHz – US power cord – FCC version C058900A122A ePMP Conn – 6.4 GHz – no power cord – ROW version C060900A221A |
|---|
| Antenna port H | RP-SMA, female To/from H polarized antenna port H polarization Antenna, |
|---|
| Auxiliary | Cambium |
|---|
| release) | bridging For resetting the radio and for resetting the radio back to its |
|---|
| Cambium part number | Antenna Type Gain (dBi) |
|---|
| ePMP 2.4 GHz Force 130 SM (ROW) (no cord) | C024900C603A |
|---|
| ePMP 2.4 GHz Force 130 SM (ROW) (US cord) | C024900C604A |
|---|
| ePMP 2.4 GHz Force 130 SM (ROW) (EU cord) | C024900C605A |
|---|
| ePMP 2.4 GHz Force 130 SM (ROW) (UK cord) | C024900C606A ePMP 2.4 GHz Force 130 SM (ROW) (India cord) C024900C607A ePMP 2.4 GHz Force 130 SM (ROW) (China cord) C024900C609A ePMP 2.4 GHz Force 130 SM (ROW) (Brazil cord) C024900C610A ePMP 2.4 GHz Force 130 SM (ROW) (Argentina cord) C024900C611A ePMP 2.4 GHz Force 130 SM (ROW) (ANZ cord) C024900C612A ePMP 2.4 GHz Force 130 SM (ROW) (South Africa cord) C024900C613A |
|---|
| ePMP 2.4 GHz Force 130 SM (ROW) (No PSU) | C024900C614A |
|---|
| ePMP 5 GHz Force 130 SM (ROW) (ANZ cord) | C050900C513A |
|---|
| ePMP 5 GHz Force 130 SM (EU) (EU cord) | C050900C502A |
|---|
| ePMP 5 GHz Force 130 SM (EU) (UK cord) | C050900C503A |
|---|
| ePMP 5 GHz Force 130 SM (ROW) (no cord) | C050900C504A |
|---|
| ePMP 5 GHz Force 130 SM (ROW) (US cord) | C050900C505A |
|---|
| ePMP 5 GHz Force 130 SM (ROW) (EU cord) | C050900C506A |
|---|
| ePMP 5 GHz Force 130 SM (ROW) (UK cord) | C050900C507A ePMP 5 GHz Force 130 SM (ROW) (India cord) C050900C508A ePMP 5 GHz Force 130 SM (India) (India cord) C050900C509A ePMP 5 GHz Force 130 SM (ROW) (China cord) C050900C510A ePMP 5 GHz Force 130 SM (ROW) (Brazil cord) C050900C511A ePMP 5 GHz Force 130 SM (ROW) (Argentina cord) C050900C512A |
|---|
| ePMP 5 GHz Force 130 SM (ROW) (No PSU) | C050900C515A Figure 20 Force 130 module mounting The Force 130 module is designed to be pole-mounted using the mounting straps provided in the box with the radio. Ethernet |
|---|
| WiFi | XXX |
|---|
| LAN | XXX Radio scanning: LEDs light in an ascending sequence to indicate that the radio is scanning Radio registered: LEDs light to indicate the RSSI level at the device. |
|---|
| Surge Suppression | 1 Joule Integrated |
|---|
| Environment | IP55 |
|---|
| 功耗 | 8 W Maximum, 5 W Typical |
|---|
| Input Voltage | 24 V; uses standard passive PoE injectors at 24V. Not compatible with 29V supplies |
|---|
| ARQ | Yes |
|---|
| Nominal Receive Sensitivity (w/FEC) | MCS0 -88 dBm to MCS15 = -70 dBm at MCS7 for 20 MHz @20 MHz Channe |
|---|
| Modulation Levels(Adaptive) | MCS0 (BPSK) to MCS15 (64QAM 5/6) |
|---|
| Quality of Service | Three level priority (Voice, High, Low) with packet classification by DSCP, COS, VLAN ID, IP & MAC Address, Broadcast, Multicast and Station Priority |
|---|
| Transmit Power Range | +3 to 31 dBm (combined, to regional EIRP limit) (1 dB interval) |
|---|
| 天線增益 | 12 dBi |
|---|
| Security Encryption | 128-bit AES (CCMP mode) |
|---|
| Frequency Range | 2402 – 2472 MHz |
|---|
| Antenna Type | Flat pane |
|---|
| Peak Gain | 12 dBi 3dB Beamwidth-Azimuth 45 degrees 3dB Beamwidth-Elevation 15 degrees |
|---|
| PoE input | pinouts (V+ = 7 & 8, Return = 4 & 5) and Standard |
|---|
| Force 180 | 0.031 3 Kg 5.2 Kg 8.2 Kg 11.8 Kg 16 Kg |
|---|
| o | Power Cord (if applicable) |
|---|
| Dimensions (Dia x Depth) | 35 x 28 cm (13.5 x 11.2 in) |
|---|
| Type of ePMP module | Largest Wind speed (meters per second) surface area (square |
|---|
| Force 190 | 0.12 2.8 Kg 7.8 Kg 15.3 Kg 25.4 Kg 37.9 Kg |
|---|
| ePMP Force 200 Radome | N000900L021A Figure 31 Force 200 mounting bracket (side) The Force 200 module is designed to be pole-mounted using the mounting bracket and clamp assembly provided in the box with the radio. Figure 32 Force 200 mounting bracket (back) Ethernet Reset Button |
|---|
| Force 200 | 0.13 12.3 Kg 22 Kg 34.4 Kg 49.5 Kg 67.4 Kg |
|---|
| POWER SUPPLY, 30W, 56V – Gbps support | N000000L034 |
|---|
| input | Data Gigabit Data + Power |
|---|
| 接口 | Function |
|---|
| Power input | Mains power input. |
|---|
| Gigabit Data + Power | RJ45 socket for connecting Cat5e cable to radio |
|---|
| Gigabit Data | RJ45 socket for connecting Cat5e cable to network. |
|---|
| Power (green) | Power supply detection |
|---|
| Ambient Operating Temperature | 0° C to +40° C |
|---|
| AC Input | 100 to 240 VAC |
|---|
| Efficiency | Meets Energy Level 6 |
|---|
| Over Current Protection | Short circuit, with auto recovery |
|---|
| Hold up time | 10 ms minimum at maximum load, 120 VAC |
|---|
| Part number | Description Maximum cable length (*1) |
|---|
| N000000L034 | POWER SUPPLY, 30W, 56V – Gbps 330 feet (100m) support |
|---|
| N000900L001B | Power Supply for Radio with Gigabit 330 feet (100m) Ethernet (no cord) |
|---|
| N000900L002A | Power Supply for Radio with 100Mbit 330 feet (100m) Ethernet (no cord) |
|---|
| Industrial Grade RJ45 Connector 100 Pack | C000000L109A Termination Tool for C000000L109A RJ45 C000000L110A connectors Lightning-prone installations can be improved by: |
|---|
| preferential solid path. | 1. Installing a 600SS surge suppressor near the device (transient surge suppression) |
|---|
| Gigabit Surge Suppressor (30V) | C000000L065A |
|---|
| Gigabit Surge Suppressor (56V) | C000000L033A Note Choose the 30V or 56V surge suppressor option based on your installed device power rating. Installing a 30V surge suppressor for a 56V device or a 56V surge suppressor for a 30V device may result in inadequate surge protection. |
|---|
| Item | Specification |
|---|
| 選頻 | Automatic and Manual selection (fixed frequency). |
|---|
| Manual power control | To avoid interference to other users of the band, maximum power can be set lower than the default power limit. |
|---|
| Integrated device antenna type | Patch antenna |
|---|
| Duplex scheme | Adaptive TDD (with optional Standard 802.11n Wi-Fi on SM) |
|---|
| Range | 21 mi (5 MHz channel bandwidth) 17 mi (10 MHz channel bandwidth) 13 mi (20 MHz channel bandwidth) 9 mi (40 MHz channel bandwidth) |
|---|
| Over-the-air encryption | AES |
|---|
| Error Correction | FEC |
|---|
| RF band (GHz) | 5150 - 5970 MHz |
|---|
| Channel bandwidth | 5 MHz, 10 MHz, 20 MHz or 40 MHz |
|---|
| Typical antenna | Connectorized antenna – 18 dBi gain |
|---|
| MHz | 40 MHz MHz |
|---|
| dBi | Connectorized antenna - |
|---|
| gain | dBi 15 dBi |
|---|
| Integrated patch antenna - 11 | Integrated patch antenna – Reflector dish antenna – 8 |
|---|
| Reflector dish antenna – 8 dBi | Reflector dish antenna – 6 dBi |
|---|
| Antenna beamwidth | 24° azimuth, 12° elevation 24° azimuth, 12° elevation 24° azimuth, 12° elevation (Integrated) |
|---|
| L free _ space | Free Space Path Loss (dB) |
|---|
| Lexcess | Excess Path Loss (dB) |
|---|
| L fade | Fade Margin Required (dB) |
|---|
| Lseasonal | Seasonal Fading (dB) |
|---|
| Lcapability | Equipment Capability (dB) System Operating Margin (fade margin) dB = Rx signal level (dB) – Rx sensitivity (dB) Maximum Power Level (dBm) = Allowed EIRP (dBm) – Antenna Gain (dBi) + Cable Loss (dB) |
|---|
| Maximum Power Level | the highest permissible setting of the Maximum Power Level attribute in the (dBm) Step 2: Wireless Configuration page, |
|---|
| Allowed EIRP (dBm) | the EIRP limit allowed by the regulations, |
|---|
| Antenna Gain (dBi) | the gain of the chosen antenna, |
|---|
| Cable Loss (dB) | the loss of the RF cable connecting the AP to the antenna. |
|---|
| Operating bandwidth (MHz) | Allowed EIRP Allowed EIRP Allowed EIRP Allowed EIRP Allowed EIRP (dBm) at 2.4 (dBm) at 2.5 (dBm) at 5.2 (dBm) at 5.4 (dBm) at 5.8 |
|---|
| GHz | GHz GHz GHz GHz 5, 10, 20, 40 36 N/A 24 - 30 24 - 30 36 |
|---|
| Antenna | Maximum Operating Transmitter Output Power parameter setting (dBm) |
|---|
| available | bandwidth |
|---|
| antenna | (MHz) gain (dBi) 2.4 GHz 2.5 GHz 5.2 GHz 5.4 GHz 5.8 GHz |
|---|
| ePMP 2000 Conn. | 18 5, 10, 20, 40 N/A N/A 12 12 18 module Sector antenna |
|---|
| ePMP 1000 Conn. | 15 5, 10, 20, 40 21 27 15 15 21 module Sector antenna Note Calculations under Table 78 are on the basis of 0.5 dB cable loss and the highest gain antennas per size of which Cambium Networks are aware. At these operating frequencies, antenna cable losses even with short cables are unlikely to ever be below 0.5 dB for practical installations and cable diameters. |
|---|
| Ethernet Bridging | Specification |
|---|
| Protocol | 10BASE-Te/100BASE-Tx/1000BASE-T IEEE 802.3 IEEE 802.3at (PoE) IEEE802.3u compliant Auto-negotiation |
|---|
| QoS | Proprietary QoS |
|---|
| Data Rates | See Data throughput tables on page 477. |
|---|
| Maximum Ethernet Frame Size | 1700 bytes |
|---|
| Service classes for bridged traffic | 3 classes |
|---|
| Icon | Attribute Meaning |
|---|
| Cambium Networks logo | Hyperlink to the Cambium Networks website. |
|---|
| Login Level indicator | Displays the current user login level. Green indicates that the AP has IP connectivity to the configured DNS server. Grey indicates that the AP has no IP connectivity to the configured DNS server. Internet Connectivity Indicator Note The Internet Connectivity Indicator state is determined by receipt of ping responses from the configured DNS server. Green indicates that the AP is receiving a valid |
|---|
| Notifications Button | successfully saved) Grey: Informational message (i.e. tips regarding GUI operation) Blue: Operations information message (i.e. Initializing upgrade…) Orange: Warning message (i.e. Login session has expired) Red: Error message (i.e. Software update file download failed) When the mouse pointer is hovered over this indicator, it |
|---|
| Active Users Indicator | displays the number of active Read-Only and Read-Write users currently logged into the radio. The Undo button may be used to undo changes prior to a Save |
|---|
| Undo Button | operation. All changes made on any section of the GUI are undone. The Save button is used to commit configuration changes to the device. When configuration changes are made, the outer area of Save Button the icon is highlighted blue to indicate that a save operation is required. |
|---|
| Attribute | Meaning |
|---|
| Copyright | Copyright information. |
|---|
| Version | The current software version is reported in the footer bar and may be clicked to navigate to the Cambium Networks software support website. |
|---|
| Support | Hyperlink to the Cambium Networks support website. |
|---|
| Community Forum | Hyperlink to the Cambium Community Forum website. |
|---|
| Device Name | The configured device name of the AP, used for identifying the device in an NMS such as the Cambium Network Services Server (CNSS). |
|---|
| SSID | The current configured name/SSID of the AP. |
|---|
| Operating Frequency | The current frequency carrier used for radio transmission, based on the configuration of the Frequency Carrier parameter (in DFS regions, if a radar has been detected, this field may display either DFS Alternate Frequency Carrier 1 or DFS Alternate Frequency Carrier 2). |
|---|
| Operating Channel | The current channel bandwidth used for radio transmission, based on the configuration of the |
|---|
| Bandwidth | Channel Bandwidth parameter. |
|---|
| Transmitter Output Power | The current operating transmit power of the AP. |
|---|
| Country | The current configured country code, which has an effect on DFS operation and transmit power restrictions. Registered Subscriber Modules will inherit this country code when registration is complete (unless SM is locked to US region). |
|---|
| Access Point Mode | TDD: The Access Point is operating in point-to-multipoint (PMP) mode using TDD scheduling. The AP is able to GPS synchronize in this mode (except when in Flexible mode). ePTP Master: The Access Point is operating as a Master in point-to-point mode. The AP does not support GPS Synchronization in this mode but is able to provide significantly lower latency than other modes. QoS (MIR and traffic prio |
|---|
| Downlink/Uplink Frame | The current configured schedule of downlink traffic to uplink traffic on the radio link. In other |
|---|
| Ratio | words, this ratio represents the amount of the total radio link’s aggregate throughput that will be used for downlink resources and the amount of the total radio link’s aggregate throughput that will be used for uplink resources. |
|---|
| Wireless Security | The current configured authentication type used for radio link encryption as well as SM authentication. |
|---|
| cnMaestro Remote | Indicates whether the device is currently configured to be managed by the Cambium cloud |
|---|
| Management | management system – cnMaestro™. |
|---|
| cnMaestro Connection | The current management status of the device with respect to the Cambium Cloud Server. |
|---|
| Status | When Enabled under Configuration->System, the device will be managed by the Cambium Remote Management System, which allows all Cambium devices to be managed from the Cambium Cloud Server. |
|---|
| cnMaestro Account ID | The ID that the device is currently using to be managed by the Cambium Cloud Server. |
|---|
| Wireless MAC Address | The MAC address of the device wireless interface. |
|---|
| Ethernet MAC Address | The MAC address of the device Ethernet (LAN) interface. |
|---|
| IP Address | The current configured device IP address (LAN) used for management access. |
|---|
| IPv6 Link Local Address | A link-local address is required for the IPv6-enabled interface (applications may rely on the link-local address even when there is no IPv6 routing). The IPv6 link-local address is comparable to the auto-configured IPv4 address 169.254.0.0/16. |
|---|
| IPv6 Address | The IPv6 address for device management. |
|---|
| Date and Time | The current date and time on the device, subject to the configuration of parameter Time Zone. |
|---|
| System Uptime | The total uptime of the radio since the last reset. |
|---|
| System Description | The current configured system description. |
|---|
| Sync Source Status | Displays the current source (GPS, CMM or Internal) of sync timing for the AP. |
|---|
| Device Coordinates | The current configured Latitude and Longitude coordinates in decimal format. |
|---|
| DFS Status | Current DFS operational status. |
|---|
| Ethernet Status | Up: The Ethernet (LAN) interface is functioning properly. This also displays the current port speed and duplex mode to which the Ethernet port has auto-negotiated to or configured for. Down: The Ethernet (LAN) interface is either disconnected or it has encountered an error and is not servicing traffic. |
|---|
| Wireless Status | Up: The radio (WAN) interface is functioning properly Down: The radio (WAN) interface has encountered an error and is not servicing traffic. |
|---|
| Registered Subscriber | The total number of SMs currently registered to the AP. Modules |
|---|
| Smart Antenna | Beginning with Software Release 3.4, the ePMP 2000 unit automatically detects when the (ePMP 2000 only) Smart Antenna is connected or disconnected (without requiring a reboot). Smart Antenna is Connected, Power On: ePMP 2000 is communicating with the Smart Antenna, and a proper power supply is in use Smart Antenna is Connected, Power Off:: ePMP 2000 established communication with the Smart Antenna |
|---|
| Subscriber Module Mode | TDD: The SM is operating in the proprietary TDD mode and will only connect to another ePMP Access Point. Standard WiFi: The SM is operating in the Standard 802.11n WiFi mode and will be able to connect to any Access Point operating in standard WiFi mode. ePTP Slave: The SM is operating as a Slave in point-to-point mode. The AP and the system do not support GPS Synchronization in this mode but are |
|---|
| Subscriber Module Priority | The configured priority of the SM in the sector. |
|---|
| Network Mode | Bridge: The SM acts as a switch, and packets are forwarded or filtered based on their MAC destination address. NAT: The SM acts as a router, and packets are forwarded or filtered based on their IP header (source or destination) which can be grouped into subnets for finer granularity. Router: The SM acts as a router and packets are forwarded or filtered based on their IP header (source or destinati |
|---|
| Downlink RSSI | The Received Signal Strength Indicator, which is a measurement of the power level being received by the SM’s antenna. |
|---|
| Downlink SNR | The Signal to Noise Ratio, which is an expression of the carrier signal quality with respect to signal noise and co-channel interference (or both). |
|---|
| Uplink MCS | Modulation and Coding Scheme – indicates the modulation mode used for the radio uplink, based on radio conditions (MCS 1-7, 9-15). |
|---|
| Downlink MCS | Modulation and Coding Scheme – indicates the modulation mode used for the radio downlink, based on radio conditions (MCS 1-7, 9-15). |
|---|
| Wireless IP Address | The current configured device IP address (Wireless interface), when the SM is in Router (NAT) mode. |
|---|
| Separate Wireless | The current configured device IP address (Separate Wireless Management interface) used for |
|---|
| Management IP Address | management access, when the SM is in Router (NAT) mode. |
|---|
| Registered AP SSID | The AP SSID of the AP to which the SM is registered. |
|---|
| Registered AP MAC | The Wireless MAC Address of the AP to which the SM is registered. Address |
|---|
| Link Quality (Uplink) | The Uplink quality based on the current MCS and Packet Error Rate (PER). |
|---|
| Link Capacity (Uplink) | The uplink capacity based on the current MCS with respect to the highest supported MCS (MCS15). |
|---|
| IP Assignment | DHCP |
|---|
| Subnet Mask | 255.255.255.0 |
|---|
| Management Access | Ethernet |
|---|
| Ethernet MTU | 1500 bytes |
|---|
| Port Setting | Auto-Negotiate |
|---|
| VLANs | Disabled |
|---|
| Spanning Tree Protocol | Disabled |
|---|
| SM Traffic Isolation | Disabled |
|---|
| DHCP Option 82 | Disabled |
|---|
| LLDP | Enabled(Receive and Transmit) |
|---|
| Driver Mode | TDD |
|---|
| Country Code | None / United States / Generic ETSI (ROW / FCC / ETSI device type, respectively) ROW devices do not transmit with Country Code set to None |
|---|
| Default SSID | Cambium-AP |
|---|
| ACS | Enabled |
|---|
| Channel Bandwidth | 20 MHz |
|---|
| Downlink/Uplink Ratio | Flexible |
|---|
| Frame Size | 5 ms |
|---|
| Max Range | 3 Miles |
|---|
| Max Registrations Allowed | 10/120 (Lite Devices / Full Capacity Devices, respectively) |
|---|
| Subscriber Module Receive | -60/-55 (ePMP 1000 / ePMP 2000, respectively) Level |
|---|
| Downlink Max Rage | MCS15 |
|---|
| Management Traffic Rate | MCS1 |
|---|
| Colocation Mode | Disabled |
|---|
| Synchronization Mode | Disabled |
|---|
| Uplink Antenna Selection | Auto (ePMP 2000 with Smart Antenna only) |
|---|
| WPA2 Security | Enabled (default value Cam39-Tai!wdmv) |
|---|
| L2/L3 Firewall | Disabled |
|---|
| Wireless MAC Address Filtering | Disabled |
|---|
| SNMPv2 | Enabled (with default Community Strings) Read-Only Community String – public Read-Write Community String – private Trap Community String – cambiumtrap |
|---|
| Management VLAN | Disabled |
|---|
| Data VLAN | Disabled |
|---|
| Membership VLANs | Disabled |
|---|
| IPv6 | Disabled |
|---|
| ARP-NAT | Disabled |
|---|
| DHCP Server Below SM | Disabled |
|---|
| Ethernet Port Security | Disabled |
|---|
| Scanning List | All available frequencies selected for 20 MHz and 40 MHz channel bandwidths |
|---|
| Network Entry RSSI Threshold | -90 dBm |
|---|
| Network Entry SNR Threshold | 0 dB |
|---|
| Uplink Max Rate | MCS15 |
|---|
| Max Tx Power | Auto (Automatic Transmit Power Control and Regulatory-controlled) |
|---|
| RADIUS | Enabled (default EAP-TTLS credentials username: subscriber1, password: cambium) |
|---|
| WPA2 | Enabled (default value Cam39-Tai!wdmv) |
|---|
| Menu option | Menu Details |
|---|
| Quick Start | Configuring connectorized radios using the Quick Start menu on page 125 |
|---|
| Configuration | AP Configure menu on page 133 |
|---|
| Radio | AP Radio page on page 134 |
|---|
| System | AP System page on page 147 |
|---|
| Network | AP Network page on page 153 |
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| 安全 | AP Security page on page 158 |
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| Monitor | AP Monitor menu on page 161 |
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| Performance | AP Performance page on page 162 |
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| Wireless | AP Wireless page on page 170 |
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| Throughput Chart | AP Throughput Chart page on page 173 |
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| 系統日誌 | AP System Log page on page 179 |
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| Tools | AP Tools menu on page 180 |
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| Software Upgrade | AP Software Upgrade page on page 181 |
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| Backup / Restore | AP Backup/Restore page on page 183 License Management AP License Management page on page 183 |
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| eDetect | AP eDetect page on page 183 |
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| Spectrum Analyzer | AP Spectrum Analyzer page on page 189 |
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| Automatic Channel Selection | AP Automatic Channel Selection page on page 192 |
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| eAlign | AP eAlign page on page 194 |
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| Wireless Link Test | AP Wireless Link Test page on page 196 |
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| Ping | AP Ping page on page 197 |
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| Traceroute | AP Traceroute page on page 199 |
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| Radio Mode | This parameter controls the function of the device – All ePMP devices may be configured to operate as an Access Point (AP), Subscriber Module (SM) or as a Spectrum Analyzer. For initial link bring-up, choose AP. |
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| Point-to-Point Access | First Subscriber Module: The system is configured to accept only the 1st registered SM. Network entry is denied for all subsequent SM network entry requests. MAC Filtering: The system is configured to accept only one SM registration, and this registration is limited by SM MAC Address (the SM Wireless MAC Address). |
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| Subscriber Module | Configure the Wireless MAC Address of the sole SM which is granted registration to the AP. All |
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| Wireless MAC | other network entry attempts are rejected by the AP. The SM’s Preferred AP List may be configured with the destination point-to-point AP to ensure that the SM connects with the intended AP. |
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| Range Unit | Miles: The Max Range setting and resulting frame calculations are configured in units of miles. Kilometers: The Kilometers setting and resulting frame calculations are configured in units of kilometers. Access Point Configuration |
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| Max Registrations | Based on sector/network planning and SM service level implementations, this parameter allows |
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| Allowed | the user to set the maximum number of SMs that are allowed to register/network entry. The maximum number of SMs allowed for each channel bandwidth is as follows: 20/40 MHz : 120 subscribers 10 MHz : 60 subscribers 5 MHz: 30 subscribers Default value is 60. For DFS regions, the max number of SMs will be limited based on the channel bandwidth of the current operating channel, i.e. Frequency Carrier, |
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| WLAN | When the Access Point Mode is set to Standard WiFi, configure this parameter: Enabled: The ePMP AP operates as WLAN device and allows any 802.11 client to connect to it within a 100 meter radius. Disabled: The ePMP AP operates in Standard WiFi mode to allow outdoor 802.11n clients to connect to it at longer distances and is typically used to migrate non-Cambium SMs to ePMP SMs. |
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| Automatic Channel | Enabled – This enables the Automatic Channel Selection (ACS) feature. ACS allows the radio to |
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| Selection | scan the entire band (governed by the Country setting) and chooses a channel with the lowest channel occupancy i.e. lowest interference level. To run the ACS feature (once enabled), the radio will have to be rebooted or manually triggered using Tools->Automatic Channel Selection. When ACS is running, the radio measures the occupancy level of the channel (measured in terms of an internal interferen |
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| Frequency Carrier | Configure the frequency carrier for RF transmission. This list is dynamically adjusted to the regional restrictions based on the setting of the Country Code parameter. |
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| Frequency Reuse | The Frequency Reuse Mode parameter allows operators to define which APs are co- located (or within radio range) with other APs. This definition results in an automatic radio network modification such that self-interference is reduced amongst the co- located sectors. A network in which two frequencies “F1” and “F2” are reused throughout the installation in shown in Figure 39. Figure 42 Frequency re |
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| F1 | F1 |
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| F2 | F2 F2 |
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| FR: Back | FR: Back |
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| SYNC Source = CMM3 | SYNC Source = GPS/CMM4 SYNC Source = CMM3 Figure 45 Example 2 - Frequency Reuse Configuration with Mixture of GPS sources SYNC Source = GPS/CMM4 SYNC Source = GPS/CMM4 |
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| SYNC Source = GPS/CMM4 | SYNC Source = CMM3 SYNC Source = CMM3 The rules in selecting the APs to configure Frequency Reuse Mode to Frequency Reuse Mode to Frequency-Reuse-Front or Frequency-Reuse-Back in a mixture of sync sources installations are: 1- Only ONE of the APs on the same tower configured with the same frequency must have Frequency Reuse Mode set to Frequency-Reuse-Back if the sync source of both APs is the sam |
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| a. | If both APs have the same sync source then only ONE of them must have the Frequency-Reuse-Back ON; the other AP shall have the Frequency-Reuse–Front ON. |
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| b. | If one AP has “onboard GPS” as sync source and the other one has CMM4 then only ONE of them must have Frequency-Reuse - Back ON; the other AP shall have Frequency-Reuse-Front ON. |
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| c. | If one AP has “onboard GPS” or CMM4 as sync source and the other one has CMM3 then: i. If the AP with CMM3 sync source has Frequency-Reuse-Back ON, then the other AP (with “onboard GPS” or CMM4 sync source) must have the Frequency-Reuse-Back ON. |
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| Alternate Frequency | Configure the first channel bandwidth configuration that will be used for RF transmission if DFS |
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| Carrier 1 Channel | detection causes the radio to switch from using the channel bandwidth configured in Channel |
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| Carrier 1 | radio to switch from using the frequency configured in Frequency Carrier. It is important to set this frequency also in the SM Scan List. |
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| Carrier 2 Channel | DFS detection causes the radio to switch from using the channel bandwidth configured in |
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| Carrier 2 | to switch from using the frequencies configured in Frequency Carrier and DFS Alternate Frequency Carrier 1. It is important to set this frequency also in the SM Scan List. Power Control |
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| Transmitter Output | This value represents the combined power of the AP’s two transmitters. This value may be |
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| Target Receive Level | power from each SM and adjusts each SM’s transmitter output power so that the received power at the AP from the SM is not greater than what is configured in SM Target Received Power Level. These automatic power adjustments ensure that the SM is not transmitting excessive energy (raising system noise level) and that the SM is able to achieve an optimal modulation state (and maximum achievable throu |
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| Uplink Antenna | Uplink Antenna Selection specifies the antenna to be used in the uplink. This parameter is |
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| Downlink Max Rate | Configure the MCS (Modulation and Coding Scheme) rate beyond which the radio’s scheduler should not exceed when transmitting data traffic on the downlink. This is useful in situations where there is high variance and unpredictability in the interference present in the environment causing packet loss. Reducing the max rate to a lower MCS (than the default MCS 15) may help in these situations. Reduc |
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| Management Traffic | MCS0: The system is configured to use MCS0 rate for all management messages. This allows for |
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| Rate | improved link stability and range in high interference environment. MCS1: The system is configured to use MCS1 rate for all management messages. This allows for slightly higher sector throughput. This is the default setting. Synchronization |
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| Co-location Mode | Disabled: The ePMP device is able to synchronize only with other ePMP Access Points. Enabled: The ePMP device can be configured to synchronize with PMP 100 or PMP 450 series of radios in addition to other ePMP Access Points. Please refer to the “ePMP and PMP 100 Co- location and Migration Recommendations Guide” for guidance on synchronizing ePMP and PMP 100. Verify that frame size (ms) is configur |
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| Synchronization Source | GPS: Synchronization timing is received via the AP’s connected GPS antenna. Co-located or in- range APs receiving synchronization via GPS or CMM transmits and receives at the same time, thereby reducing self-interference. CMM3 and CMM4: Synchronization timing is received via the AP’s Ethernet port via a connected Cambium Cluster Management Module (CMM). Co-located or in-range APs receiving synchro |
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| Synchronization Holdoff | The Synchronization Holdoff Time is designed to gracefully handle fluctuations/losses in the GPS |
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| Time | synchronization signaling. After the AP has received a reliable synchronization pulse for at least 60 seconds, if there is a loss of synchronization signal, the Synchronization Holdoff timer is started. During the holdoff interval, all SM registrations are maintained. If a valid GPS synchronization pulse is regained during the holdoff interval, then the AP continues to operate normally. If a valid |
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| Advanced | RTS/CTS (Request to Send / Clear to Send) is the optional mechanism used by the 802.11 (Standard WiFi) wireless networking protocol to reduce frame collisions introduced by the problem known as hidden node problem. Under this mechanism, specific RTS, CTS and ACK (Acknowledgement) frames are exchanged between the AP and SM to schedule transmission of packets over the wireless link. The ability to u |
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| Downlink CTS | This parameter applies to CTS mechanism for downlink data transmission. Disabled: The AP does not wait for a CTS frame from the SM/Client before it sends downlink data. Enabled: The AP simulates a CTS frame sent to itself notifying the SMs connected to it that it is going to transmits data on the downlink. |
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| Uplink CTS/RTS | This parameter applies to RTS/CTS mechanism for uplink data transmission. When Enabled, SM/Client must send an RTS frame and, only upon receiving a CTS frame from the AP can it transmit uplink data. |
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| RTS Threshold | Configure the RTS packet size threshold for downlink data transmission. Range is between 0– 2347 octets. Typically, sending RTS/CTS frames does not occur unless the packet size exceeds this threshold. If the packet size that the node wants to transmit is larger than the threshold, the RTS/CTS handshake gets triggered. Otherwise, the data frame gets sent immediately. |
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| Priority Level | ePMP Traffic Priority Label |
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| Highest Priority | VOIP (only utilized when VOIP Enable is set to Enabled) |
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| Medium Priority | High |
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| Lowest Priority | Low Caution |
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| MIR | Disabled: When disabled, RF transmission is only limited by the capacity of the link (and any active QoS classification rules). Enabled: When enabled, all downlink and uplink traffic is limited based on the profiles configured in the MIR table. |
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| MIR Profiles | The MIR (Maximum Information Rate) table is comprised of up to sixteen profiles which, after configured, may be set on the SM to employ a certain service level or data rate. |
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| Number | Assign a profile number to each row in the AP MIR table. This profile number is then set on each SM to limit data transfer rates based on the operator’s configuration of the MIR table and its profiles. |
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| Description | Assign a logical description for each service level. For example, a tiered service-level provider may deploy service levels “Gold”, “Silver” and “Bronze” or “20 Mbps”, “10 Mbps” and “5 Mbps” to offer a clear description. |
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| Downlink MIR (kbps) | Specify the downlink rate at which the AP is allowed to transmit for this configured profile. |
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| Uplink MIR (kbps) | Specify the uplink rate at which the AP is allowed to transmit for this configured profile. Traffic Priority |
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| Traffic Priority | Disabled: No traffic prioritization is performed. All traffic is treated with equal priority (low priority). Enabled: Traffic prioritization is enabled and specific types of traffic can be prioritized using the fields below. |
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| VoIP Priority | Enabled: When enabled, two entries are automatically added to the first and second rows of the QoS Classification Rules table, one with Rule Type CoS (5) and one with Rule Type DSCP (46). The addition of these rules ensures that VoIP traffic passed over the radio downlink is given highest priority. The CoS and DSCP values may be modified to accommodate non-standard VoIP equipment. Disabled: When d |
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| Broadcast Priority | Low Priority: All Broadcast traffic sent over the downlink is prioritized as low priority and is delivered to the SM after scheduled high priority and VoIP traffic. High Priority: All Broadcast traffic sent over the downlink is prioritized as high priority and is scheduled for delivery to SMs before low priority traffic but after VoIP traffic. |
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| Multicast Priority | Low Priority: All Multicast traffic sent over the downlink is prioritized as low priority, and will be delivered to the SM after scheduled high priority and VoIP traffic. High Priority: All Multicast traffic sent over the downlink is prioritized as high priority and is scheduled for delivery to SMs before low priority traffic but after VoIP traffic. |
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| QoS Classification Rules | The QoS Classification Rules table contains all of the rules enforced by the device when passing traffic over the radio downlink. Traffic passed through the device is matched against each rule in the table; when a match is made the traffic is sent over the radio link using the priority defined in column Traffic Priority. |
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| 類型 | CoS: Class of Service; traffic prioritization is based on the 3-bit header present in the 802.1Q VLAN-tagged Ethernet frame header in the packet entering the AP’s Ethernet port. VLAN ID: traffic prioritization is based on the VLAN ID of the packet entering the AP’s Ethernet port. EtherType: traffic prioritization is based on the two-octet Ethertype field in the Ethernet frame entering the AP’s Eth |
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| Details | Represents the details of the Class of Service (CoS) present in the packet entering the AP’s Ethernet port. |
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| Priority | Represents the QOS classification rule priority. |
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| Webpage Auto Update | Configure the interval for which the device retrieves system statistics for display on the management interface. For example, if this setting is configured to 5 seconds, the statistics and status parameters displayed on the management interface will be refreshed every 5 seconds (default). Webpage Auto Update is a session only configuration change. It is updated with the key and is not sava |
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| Web Access | HTTP: Access to the device management GUI is conducted via HTTP. HTTPS: Access to the device management GUI is conducted via HTTPS. |
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| HTTP Port | If Web Service is set to HTTP, configure the port which the device uses to service incoming HTTP requests for management GUI access. |
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| HTTPS Port | If Web Service is set to HTTPS, configure the port which the device uses to service incoming HTTPS requests for management GUI access. |
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| SSH Access | Disabled: If the SSH port to the device is ‘Disabled’, access to the device through SSH is not possible. Enabled: If the SSH port to the device is ‘Enabled’, Cambium engineers can access the device through SSH which enables them to login to the radio and troubleshoot. SSH port is ‘Enabled’ by default. |
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| Telnet Access | Disabled: CLI access via telnet is not allowed for the device. Enabled: CLI access via telnet is allowed for the device. |
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| MAC-Telnet Access | Disabled: Disables connections to the radio on the link layer via MAC address from RouterOS or mactelnet-enabled devices. Enabled: Enables connections to the radio on the link layer via MAC address from RouterOS or mactelnet-enabled devices. Note In order to use MAC-Telnet the first time, the Administrator account password must be changed on the GUI or the CLI. This password can then be used for M |
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| MAC-Telnet Protocol | MAC-Telnet: Use the MAC-Telnet subservice for access MAC-SSH: Use the secured MAC-SSH subservice for access Network Time Protocol |
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| Preferred NTP Server | Configure the primary NTP server IP addresses from which the device will retrieve time and date information. |
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| Alternate NTP Server | Configure an alternate or secondary NTP server IP addresses from which the device retrieves time and date information. |
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| Time Zone | The Time Zone option may be used to offset the received NTP time to match the operator’s local time zone. Location Services |
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| On-board GPS Latitude | On a GPS Synchronized ePMP radio, the field is automatically populated with the Latitude information from the on-board GPS chip. |
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| On-board GPS Longitude | On a GPS Synchronized ePMP radio, the field is automatically populated with the Longitude information from the on-board GPS chip. |
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| On-board GPS Height | On a GPS Synchronized ePMP radio, the field is automatically populated with the Height above sea level information from the on-board GPS chip. |
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| Use GPS Coordinates | On a GPS Synchronized ePMP radio, the Device coordinates can be populated using the information retrieved from the on-board GPS chip. Click the button to automatically populate the Device Latitude and Device Longitude fields using the coordinates provided by the on-board GPS chip. |
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| Device Latitude | Configure Latitude information for the device in decimal format. |
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| Device Longitude | Configure Longitude information for the device in decimal format. |
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| Device Height | Configure height above sea level for the device in meters. |
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| Device Location | Hyperlink to display the device location in Google Maps Simple Network Management Protocol (SNMP) |
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| Read-Only Community | Specify a control string that can allow a Network Management Station (NMS) such as the |
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| String | Cambium Networks Services Server (CNSS) to read SNMP information. No spaces are allowed in this string. This password will never authenticate an SNMP user or an NMS to read/write access. The Read-only Community String value is clear text and is readable by a packet monitor. |
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| Read-Write Community | Specify a control string that can allow a Network Management Station (NMS) to access SNMP |
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| System Name | Specify a string to associate with the physical module. This parameter can be polled by the Cambium Networks Services Server (CNSS) or an NMS. Special characters are supported. |
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| Traps | Disabled: SNMP traps for system events are not sent from the device. Enabled: SNMP traps for system events are sent to the servers configured in table Trap Servers. |
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| Trap Community String | Configure a SNMP Trap Community String which is processed by the servers configured in Trap Servers. This string is used by the trap server to decide whether or not to process the traps incoming from the device (i.e. for traps to successfully be received by the trap server, the community string must match). |
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| Trap Servers | The Trap Servers table is used to configure trap destinations for SNMP traps generated by the device. |
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| Server IP | Configure the IP address of each SNMP trap server target. |
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| Server Port | Configure the port to which SNMP traps are sent from the ePMP device. System Logging (Syslog) |
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| Server 1-4 | Specify up to four syslog servers to which the device sends syslog messages. |
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| SysLog Mask | Configure the levels of syslog messages which the devices send to the servers configured in parameters Server IP 1-4. Caution Choose only the syslog levels appropriate for your installation. Excessive logging can cause the device log file to fill and begin overwriting previous entries. cnMaestro |
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| Remote Management | When Enabled, the device will be managed by cnMaestro - the Cambium Remote Management System, which allows all Cambium devices to be managed in the cloud. |
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| cnMaestro URL | Configure the URL of cnMaestro. The default value is https://cloud.cambiumnetworks.com. |
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| Cambium-ID | Configure the Cambium ID that the device will use for on-boarding on to cnMaestro. |
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| Onboarding key | Configure the password/key associated with the Cambium-ID that the device will use for on- boarding on to cnMaestro. Account Management (Administrator) Username Read-only listing of available login levels. |
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| be toggled using the visibility icon | . |
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| Installer Account | Disabled: The disabled user is not granted access to the device management interface. The administrator user level cannot be disabled. Enabled: The user is granted access to the device management interface. (Installer) Username Provide the ‘Installer Username’ in this box. |
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| Home User Account | Disabled: The disabled user is not granted access to the device management interface. Enabled: The user is granted access to the device management interface (Home) User Username Provide the Home User ‘Username’ in this box. (Home) User Password Configure a custom password to secure the device in order access pertinent information for support purpose only. The password character display may be togg |
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| Read-Only Account | Disabled: The disabled user is not granted access to the device management interface, even on a ‘Read-Only’ access. Enabled: The user is granted ‘Read-Only’ access to the device management interface. (Read-Only) Username Provide the Read-Only ‘Username’ in this box. (Read-Only) Password Provide the password that can be used for ‘Read-Only’ access. Password character display |
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| may be toggled using the visibility icon | . |
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| Gateway | Configure the IP address of the device on the current network that acts as a gateway. A gateway acts as an entrance and exit to packets from and to other networks. |
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| Preferred DNS Server | Configure the primary IP address of the server used for DNS resolution. |
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| Alternate DNS Server | Configure the secondary IP address of the server used for DNS resolution. |
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| IPv6 Assignment | IPv6 Assignment specifies how the IPv6 address is obtained. Static: Device management IP addressing is configured manually in fields IPv6 Address and IPv6 Gateway. DHCPv6: Device management IP addressing (IP address and gateway) is assigned via a network DHCP server, and parameters IPv6 Address and IPv6 Gateway are unused. If the DHCPv6 server is not available previous static IPv6 address will be |
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| IPv6 Gateway | Configure the IPv6 address of the device on the current network that acts as a gateway. A gateway acts as an entrance and exit to packets from and to other networks. Virtual Local Area Network (VLAN) |
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| VLAN ID | Configure this parameter to include the device’s management traffic on a separate VLAN network. For example, if MGMT VLAN ID is set to 2, GUI access will only be allowed from IP packets tagged with VLAN ID 2. |
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| VLAN Priority | ePMP radios can prioritize VLAN traffic based on the eight priorities described in the IEEE 802.1p specification. MGMT VLAN Priority represents the VLAN Priority or Class of Service (CoS). Operators may use this prioritization field to give precedence to device management traffic. This parameter only takes effect if the MGMT VLAN parameter is enabled. Configure this parameter to set the value of t |
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| Port Speed | With “Ethernet Port Configuration” the LAN Ethernet port speed can be forced to 1000 Mbps, 100 Mbps or 10 Mbps. |
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| Port Duplex Mode | With “Ethernet Port Configuration” the LAN Ethernet port duplex mode can be forced into Full or Half. Broadcast/Multicast Traffic Shaping |
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| Broadcast Packet Limit | Enabled: This allows the user to set the Broadcast Packet Rate below. Configure this parameter to limit the amount of broadcast packets that will be allowed on the ingress of the radio’s Ethernet port. Set the packets per second value to limit the impact of events such as broadcast storms. Disabled: There is no limit on the amount of broadcast traffic that will be allowed into the ingress of the r |
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| Broadcast Packet Rate | Set the packets per second value to limit the amount of broadcast traffic that will be allowed on the ingress on the radio’s Ethernet port. The packets per second limit can be set individually on each ePMP radio. The range is 100 to 16000 packets per second. The default is 200. |
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| Reliable Multicast | Enabled: This feature allows ePMP to support IGMP capable devices. Once a multicast group is identified, the AP allows multicast traffic to be sent only to the SMs within the multicast group. The SMs support up to 5 unique multicast groups. In addition, when this option is enabled, the multicast traffic is sent to the SMs using the current Downlink MCS rate. Disabled: ePMP will still support IGMP |
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| IGMPv2 Fast Leave | Disabled: AP will not drop any IGMPv2 Leave packets |
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| IPv6 Support | Systemwide IPv6 Protocol Support. When enabled, appropriate IPv6 modules and services will be loaded. |
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| LLDP Mode | Receive and Transmit: ePMP sends and receives LLDP packets to/from its neighbors on the Ethernet/LAN interface. Receive Only: ePMP receives LLDP packets from its neighbors on the Ethernet/LAN interface and discovers them. |
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| PPPoE Intermediate | When enabled, during the PPPoE Discovery phase the AP inserts access loop identification into the PPPoE PADR packets. This mechanism helps the service Agent provider to distinguish between end hosts connected via Ethernet as an access device (typically, home routers situated below an ePMP subscriber device). On the AP, PPPoE Intermediate Agent enables subscriber line identification by tagging Ethe |
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| WPA2 Pre-shared Key | Configure this key on the AP. Then configure each of the network SMs with this key to complete the authentication configuration. This key must be between 8 to 128 symbols. RADIUS |
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| Servers | For more Radio servers, click Add. Up to 3 Radius servers can be configured on the device with the following attributes: IP Address: IP Address of the Radius server on the network. Port: The Radius server port. Default is 1812. Secret: Secret key that is used to communicate with the Radius server. |
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| Server Retries | Number of times the radio will retry authentication with the configured Radius server before it fails authentication of the SM. |
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| Server Timeout | Timeout between each retry with the configured Radius server before it fails authentication of the SM. |
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| GUI User Authentication | This applies to both the AP and its registered SMs. Device Local Only: The device’s GUI authentication is local to the device using one of the accounts configured under Configuration->System->Account Management. Remote RADIUS Server Only: The device’s GUI authentication is performed using a RADIUS server. Remote RADIUS Server and Fallback to Local: The device’s GUI authentication is performed usin |
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| Layer 2 Firewall | Disabled: Modifications to the Layer 2 Firewall Table are not allowed and rules are not enforced. Enabled: Modifications to the Layer 2 Firewall Table are allowed and rules are enforced. |
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| Firewall Rules | The Layer 2 firewall table may be used to configure rules matching layer 2 (MAC layer) traffic which result in forwarding or dropping the traffic over the radio link or Ethernet interface. |
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| Layer 3 Firewall | Disabled: Modifications to the Layer 3 Firewall Table are not allowed and rules are not enforced. Enabled: Modifications to the Layer 3 Firewall Table are allowed and rules are enforced. |
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| Wireless MAC Filter | Disabled: SMs with any MAC Address are allowed to register to the AP. Enabled: SMs with specific MAC address can be allowed (Permit) or denied (Prevent) registration with the AP as configured under the MAC Filter List. |
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| Wireless MAC Filter Policy | Prevent: All MAC Addresses configured under the MAC Filter List are denied registration to the AP. Permit: Only the MAC Addresses configured under the MAC Filter List are allowed to register to the AP. |
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| Wireless MAC Filter List | Configure the SM’s MAC addresses that will be permitted or prevented from registering to the AP. |
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| MAC Address | MAC Address of the SM |
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| Time Since Last Reset | Time since the stats were last reset. Ethernet Statistics - Transmitted |
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| Total Traffic | Total amount of traffic in Kbits transferred from the AP’s Ethernet interface. |
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| Total Packets | Total number of packets transferred from the AP’s Ethernet interface. |
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| Packet Errors | Total number of packets transmitted out of the AP’s Ethernet interface with errors due to collisions, CRC errors, or irregular packet size. |
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| Packet Drops | Total number of packets dropped prior to sending out of the AP’s Ethernet interface due to Ethernet setup or filtering issues. Total amount of multicast and broadcast traffic in Kbits sent via the AP’s Ethernet Multicast/Broadcast Traffic interface. |
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| Broadcast Packets | Total number of broadcast packets sent via the AP’s Ethernet interface. |
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| Multicast Packets | Total number of multicast packets sent via the AP’s Ethernet interface. Ethernet Statistics - Received |
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| Multicast/Broadcast Traffic | Total amount of multicast and broadcast traffic in Kbits received by the AP’s Ethernet interface. |
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| Error Drop Packets | Total number of packets dropped after transmitting out of the AP’s Wireless interface due to RF errors (No acknowledgement and other RF related packet error). |
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| Capacity Drop Packets | Total number of packets dropped after transmitting out of the AP’s Wireless interface due to capacity issues (data buffer/queue overflow or other performance or internal packet errors). |
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| Retransmission Packets | Total number of packets re-transmitted after transmitting out of the AP’s Wireless interface due to the packets not being received by the SMs. |
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| Multicast / Broadcast Traffic | Total amount of multicast and broadcast traffic transmitted out of the AP’s wireless interface in Kbits. |
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| Broadcast packets | Total number of broadcast packets received on the AP’s wireless interface. |
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| Total count of transmitted | Total count of put packets to High queue packets Total count of received Total count of get packets from High queue packets Total count of dropped Total count of dropped packets from High queue packets TDD Low Priority Queue |
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| Session Drops | Total number of SM sessions dropped on the AP. |
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| Device Reboots | Total number of reboots of the AP. |
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| Network Entry Attempts | Total number of Network Entry Attempts by all the SMs on the AP. |
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| Successful Network Attempts | Total number of successful network entry attempts. |
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| Network Entry Authentication | Total number of failed Network Entry Attempts by all the SMs on the AP. Failures |
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| Radar (DFS) Detections | Total number of DFS events that were detected by the AP. Subscriber Module Statistics |
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| Total Uplink | Total amount of traffic received via the AP’s wireless interface from this SM in Kbits. |
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| Total Uplink Packets | Total number of packets received via the AP’s wireless interface from this SM. |
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| Uplink Packet Drops | Total number of packets dropped prior to sending out of the AP’s Ethernet interface due to RF errors (packet integrity error and other RF related packet error) from this SM. |
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| Total Downlink | Total amount of traffic transmitted out of the AP’s wireless interface in Kbits. |
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| Total Downlink Packets | Total number of packets transmitted out of the AP’s wireless interface. |
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| Downlink Packet Drops | Total number of packets dropped after transmitting out of the AP’s Wireless interface due to RF errors (No acknowledgement and other RF related packet error). |
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| Downlink Capacity Packet | Total number of packets dropped after transmitting out of the AP’s Wireless interface due |
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| Drops | to capacity issues (data buffer/queue overflow or other performance or internal packet errors). |
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| Downlink Retransmitted | Total number of packets re-transmitted after transmitting out of the AP’s Wireless |
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| Packets | interface due to the packets not being received by the SM. |
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| Downlink Power | The transmit power of the AP for the downlink packets to the SM. |
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| MCS 0 through | Number of packets (and percentage of total packets) transmitted out of the AP’s wireless |
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| MCS 15 | interface for every modulation mode used by the AP’s transmitter, based on radio conditions. Uplink Packets per MCS |
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| Total Frame Time Used | Percentage of frame time used in the downlink. Uplink Frame Time |
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| Hardware Version | Board hardware version information. |
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| Serial Number (MSN) | Serial Number information. |
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| 韌體版本 | U-Boot version information. |
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| Software Version (Active | The currently operating version of software on the ePMP device. Bank) |
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| Software Version (Inactive | The backup software version on the ePMP device, used upon failure of the active bank. Two |
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| Bank) | software upgrades in sequence will update both the Active Software Bank Version and the Inactive Software Bank Version. |
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| Device-Agent Version | The operating version of the device agent, which is used for communication with cnMaestro. |
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| Read-Only Users | Displays the number of active Read-Only users logged into the radio. |
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| Read-Write Users | Displays the number of active Read-Write users logged into the radio. |
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| Factory Reset Via Power | Enabled: When Enabled under Tools->Backup/Restore->Reset Via Power Sequence, it is |
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| Sequence | possible to reset the radio’s configuration to factory defaults using the power cycle sequence explained under Resetting ePMP to factory defaults by power cycling on page 306. Disabled: When Disabled, it is not possible to factory default the radio’s configuration using the power cycle sequence. |
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| Device Initialization Status | This field indicate the status of the device initialization. Values are Successful and Error code for fail case. Please pay attention that in fail case device cannot be used in operating mode due to major hardware problem. |
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| 網絡接口 | Up: The Ethernet (LAN) interface is functioning properly. Down: The Ethernet (LAN) interface has encountered an error and is not servicing traffic. |
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| Wireless Interface | Up: The radio (WAN) interface is functioning properly. Down: The radio (WAN) interface has encountered an error and is not servicing traffic. |
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| Modules | and statistics information. Clicking this button deregisters the SM from the AP |
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| SM Distance (miles) | Distance of the SM from the AP |
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| Session Time | Time duration for which the SM has been registered and in session with the AP. |
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| RSSI (dBm) Downlink / | Current receive signal strength of the AP at the SM, in the downlink and the current receive |
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| Uplink | signal strength of the SM at the AP, in the uplink. The downlink RSSI is an estimation. For accurate downlink RSSI, please refer to the SM’s Dashboard page. |
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| SNR (dB) Downlink / Uplink | Current Signal-to-Noise of the SM in the downlink and uplink |
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| MCS Downlink / Uplink | Current MCS at which the SM is operating on the downlink and uplink |
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| Downlink Quality | The downlink quality based on the current MCS and PER (Packet Error Rate) for this SM |
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| Downlink Capacity | The downlink capacity based on the current DL MCS with respect to the highest supported MCS (MCS15). Not available in ePTP Master mode. |
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| MIR Profile | Current MIR profile assigned to this SM “SERVER” indicates that the MIR values are assigned by the RADIUS server |
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| MIR Rate (kbps) Downlink / | Current downlink and uplink MIR assigned to this SM in kbps Uplink |
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| Antenna Selected | Indicates the antenna for which uplink communication is conducted, Sector or Smart Antenna. When Smart Antenna is displayed, an indicator of the angle (in degrees) of the antenna pattern is also displayed. The V value represents vertical polarity and the H value represents horizontal polarity, both relative to boresight. |
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| Throughput Measurement | Adjust the X-axis to display throughput intervals in seconds, minutes, or hours. Period |
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| GPS Time (Greenwich Mean | On a GPS Synchronized ePMP radio, the field is automatically populated with the time from |
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| Time) | the on-board GPS chip. |
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| GPS Firmware version | On a GPS Synchronized ePMP radio, the field indicates the current firmware version of the on- board GPS chip. |
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| Satellites Tracked | On a GPS Synchronized ePMP radio, the field indicates the number of satellites current tracked by the on-board GPS chip. |
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| Satellites Visible | On a GPS Synchronized ePMP radio, the field indicates the number of satellites visible to the on-board GPS chip. |
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| Satellites | The Satellites table provides information about each satellite that is visible or tracked along with the Satellite ID and Signal to Noise Ratio (SNR) of the satellite. |
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| ID | Represents the Satellite ID. |
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| Signal-to-Noise Ratio | This is an expression of the carrier signal quality with respect to signal noise. |
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| MTU Size | The currently configured Maximum Transmission Unit for the AP’s Ethernet (LAN) interface. Larger MTU configurations can enable the network to operate with greater efficiency, but in the case of retransmissions due to packet errors, efficiency is reduced since large packets must be resent in the event of an error. |
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| IP address | Currently unused. |
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| Default Gateway | IP address that is currently assigned. Network Status |
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| DNS Server IP | Represents the IP address of the DNS Server. Enabled: ePMP inserts “remote-id” (option ID 0×2) to be SM’s MAC address and the DHCP Option 82 “circuit-id” (ID 0×01) to be the AP’s MAC address. Those two fields are used to identify the remote device and connection where the DHCP request was received and DHCP server can assign IP address accordingly. Disabled: When ‘Disabled’, AP passes the bootP tra |
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| MAC address | The hardware address of the AP. |
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| Port | The port to which the device is connected. |
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| Subscriber Module MAC | MAC Address for one of the connected SMs. |
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| Aging Timer (secs) | Time set for the MAC addresses in the Bridge table. |
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| Syslog Display | Enabled: The system log file is displayed on the management GUI. Disabled: The system log file is hidden on the management GUI. |
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| Download | Use this button to download the full system log file to a connected PC or device. |
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| Software Version | ePMP boards that do not have an onboard GPS have one bank of flash memory which contains a version of software. The version of software last upgraded onto the Flash memory is present on this bank of flash memory. This software will be used by the AP when the AP is rebooted. |
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| Upgrade Options | URL: A webserver may be used to retrieve software upgrade packages (downloaded to the device via the webserver). For example, if a webserver is running at IP address 192.168.2.1 and the software upgrade packages are located in the home directory, an operator may select option From URL and configure the Software Upgrade Source field to http://192.168.2.1/. Local File: Clic |
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| Select File | Click Browse to select a local file (located on the device accessing the web management interface) for upgrading the device software. GPS Firmware |
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| License Server Agent | Disabled: No communication with the License Server is established Enabled: Enables License Server functionality to obtain the number of allowed ePMP Elevate SMs to be connected to the AP |
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| Cloud Licensing ID | This field represents a Cambium Networks customer identification used for AP identification on the License Server. This identifier is generated upon License Entitlement activation at the Cambium Networks web-based Support Center. |
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| Connection Status | The Connection Status displays the License Server process state when License Server Agent is Enabled. This status may also be referenced on the device Home page. |
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| Enable Proxy | Disabled: The AP must have a valid internet connection to reach the license server Enabled: A proxy server is specific for license server access from a private network |
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| Proxy Server IP Address | Specify the IP address of the proxy server used for internet access from a private network |
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| Proxy Server Port | Specify the port used on the proxy server for internet access from a private network |
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| Refresh Requests Failed | The number of failed refresh (polling) requests to the License Server. The ePMP Elevate Subscriber Module Limit resets to 1 after the 3rd failed refresh request. |
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| Update Requests Failed | The number of failed update (licensing information transfer) requests to the License Server. The ePMP Elevate Subscriber Module Limit resets to 1 after the 5th failed updated request. |
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| NTP Status | Represents whether or not the current time and date have been retrieved from the configured NTP server |
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| ePMP Elevate Subscriber | The number of ePMP Elevate devices allowed to register to the AP Module Limit Fixed License Management |
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| Local License Key | The "License Key" is obtained from support.cambiumnetworks.com and must be entered into this field to enable additional functionality (registration capacity, ePMP Elevate support) of the ePMP device. |
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| Subscriber Module Limit | ePMP Lite / Force 110 devices are limited to 10 SMs in AP TDD mode. SM Limit will display Unlocked if a license is present which allows no limit of SMs to register to the device in AP TDD mode. |
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| Signature | A valid License Key must have a valid signature included. The status is displayed after a License Key is entered and saved. Licenses can only be used if the signature is valid. |
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| Detecting Device | AP: Choosing this option will collect information about interferers local to the AP. AP/SMs: Choosing this option collect information about interferers system wide i.e. interferers local to the AP as well as interferers at the SMs connected to the AP. |
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| Detection Duration | Configure the duration for which the AP (and SMs) scan for interferers. Caution During the scanning period, the AP continues servicing the SMs under it, and there is no outage (unlike running a Spectrum Analyzer). There may be a negligible degradation in overall sector throughput. |
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| Start/Stop | Use to start or stop the interference detection. |
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| Export to CSV | Choose this option to export the detection results to .csv format. |
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| Detection Results | Use the Detection Results table to monitor interferers at the AP and at the registered SMs and their key RF parameters. |
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| Device Instant Health | This is an indicator of the device’s health in terms of channel conditions in the presence of interferer(s). Green: Indicates that the channel is relatively clean and has good C/I levels (>25dB). The interference level is low. Yellow: Indicates that the channel has moderate or intermittent interference (C/I between 10dB and 25dB). Red: Indicates that the channel has high interference and poor C/I |
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| Device MAC | The MAC address of the AP and/or SMs wireless interface. |
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| Device RSSI (dBm) | The Received Signal Strength Indicator, which is a measurement of the power level being received by the device’s antenna. |
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| Device MCS | Modulation and Coding Scheme – indicates the modulation mode used for the radio’s receiver side, based on radio conditions (MCS 1-7, 9-15). |
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| Interferers’ MAC | The MAC address of the interferer’s wireless interface. |
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| Interferers’ RSSI (dBm) | The Received Signal Strength Indicator, which is a measurement of the interferer’s power level being received by the device’s antenna. |
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| Interferers’ MCS | Modulation and Coding Scheme – indicates the modulation mode used by the interferer, based on radio conditions (MCS 1-15). Note Caution |
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| Scan Channel Bandwidth | Configure the channel size for which the radio needs to scan the band. |
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| Minimum Dwell Time | Configure the minimum time in milliseconds for which the radio needs to scan a channel to measure channel occupancy or interference levels. Default is 200 ms. |
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| Maximum Dwell Time | Configure the maximum time in milliseconds for which the radio needs to scan a channel to measure channel occupancy or interference levels. Default is 300 ms. |
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| Results | Click this button to download the most recent ACS results in .csv format. Note |
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| Registered SM MAC Address | The MAC address of the SM that is registered to the AP. |
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| Current RSSI | Current RSSI value measured on the uplink by the AP’s receiver. |
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| Peak RSSI | Peak RSSI value measured by the AP’s receiver from the time the user navigated to the eAlign page. |
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| Reset Measurements | Click this button to reset all current measurements. Caution 1 On the SM, set Configuration->Radio->Power Control->Tx Power Manual Limit to Max Tx Output Power 2 Set Configuration->Radio->Power Control->Transmitter Output Power to 30 dBm (or maximum value allowed by regulations). 3 Click the Save button 4 Perform link alignment using eAlign 5 Once alignment is complete, set Configuration->Radio->P |
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| SM MAC Address | Enter the MAC Address of one of the connected SMs or simply click the Select button of the SM desired in the “Registered Subscriber Modules” list. |
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| Packet Size | Choose the Packet Size to use for the throughput test. |
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| Duration | Choose the time duration in seconds to use for the throughput test. |
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| Downlink | This field indicates the result of the throughput test on the downlink, in Mbps. |
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| Aggregate | This field indicates the result of the aggregate throughput on the link, in Mbps. Displayed only when Downlink/Uplink Ratio is set to 75/25, 50/50 or 30/70. |
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| IP Address Version | IPv4: The ping test is conducted via IPv4 protocol. IPv6: The ping test is conducted via IPv6 protocol. |
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| Number of packets (-c) | Enter the total number of ping requests to send to the target. |
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| Buffer size (-s) | Enter the number of data bytes to be sent. |
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| TTL (-t) | Set the IP Time-To-Live (TTL) for multicast packets. This flag applies if the ping target is a multicast address. |
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| Ping results | Results of the Ping test are displayed in the box. |
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| Fragmentation (-F) | ON: Allow source and target to fragment probe packets. OFF: Do not fragment probe packets (on source or target). |
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| Trace method (-l) | ICMP ECHO: Use ICMP ECHO for traceroute probes. UDP: Use UDP for traceroute probes. |
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| Display TTL (-l) | ON: Display TTL values for each hop on the route. OFF: Suppress display of TTL values for each hop on the route. |
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| Verbose (-v) | ON: ICMP packets other than TIME_EXCEEDED and UNREACHABLE are displayed in the output. OFF: Suppress display of extraneous ICMP messaging. |
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| Traceroute Results | Traceroute test results are displayed in the box. |
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| System Status | SM System page on page 251 |
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| Network Status | • SM Network page on page 256 |
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| Preferred APs | The Preferred AP List is comprised of a list of up to 16 APs to which the SM sequentially attempts registration. For each AP configured, if authentication is required, enter a Pre- shared Key associated with the configured AP SSID. When the SM is in Standard WiFi mode, the SMs will actively probe the SSIDs in this list to find APs with hidden SSIDs. Subscriber Module Scanning |
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| Click the | button to unselect all channel bandwidths. The SM will not scan for any frequencies. |
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| Network Entry RSSI | Set this parameter to the minimum Received Signal Strength Indicator (RSSI) at the SM |
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| Threshold | required for the SM to attempt registration to an AP. For example, if the AP RSSI Threshold is set to -80 dBm, and the SM is receiving the AP signal at -85 dBm (RSSI = -85 dBm), the SM will not attempt to register to the AP. |
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| Network Entry SNR | Set this parameter to the minimum Signal-to-Noise Ratio (SNR) at the SM required for the SM |
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| Fallback Country | The SM automatically inherits the Country Code setting of the AP (except for US-locked devices). Fallback Country is used by the SM if the AP does not provide a Country Code to the SM during registration and affect the radios in the following ways: |
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| Tx Power Manual Limit | Auto: The Access Point can control, using ATPC (Automatic Transmit Power Control), the TX power of the SM up to the maximum capability of the SM’s transmitter (based on regulatory limits). Max Tx Output Power: The Access Point can control the TX power of the SM up to the value configured in the Transmitter Output Power field below. |
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| Distance to AP | In Standard WiFi mode, this parameter represents cell coverage radius. SMs outside the configured radius will not achieve optimal throughput. It is recommended to configure Distance to AP to match the actual physical maximum range of the farthest subscriber. This must be configured to match the range of the farthest subscriber on all SMs under the AP regardless of their respective distance from th |
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| MIR Profile Number | Configure the desired MIR (Maximum Information Rate) profile for SM operation. This profile must be configured on the AP else the default profile (0) is used. Traffic Priority |
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| Cambium ID | Configure the Cambium ID that the device will use for on-boarding on to cnMaestro. |
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| Wireless IP Assignment | Static: Wireless IP addressing is configured manually in fields Wireless IP Address, Wireless IP Subnet Mask, Wireless Gateway IP Address, Preferred DNS IP Address and Alternate DNS IP Address. DHCP: Device management IP addressing (IP address, subnet mask, gateway and DNS server) is assigned via a network DHCP server. |
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| Wireless Subnet Mask | Defines the address range of the connected IP network. For example, if Wireless IP Address is configured to 192.168.2.1 and Wireless IP Subnet Mask is configured to 255.255.255.0, the device wireless interface will belong to subnet 192.168.2.X. |
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| Wireless Gateway | Configure the IP address of a computer on the current network that acts as a gateway. A gateway acts as an entrance and exit to packets from and to other networks. |
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| Wireless IPv6 Assignment | Wireless IPv6 Assignment specifies how the IPv6 address for the wireless interface is obtained. Static: Device management IP addressing is configured manually in fields Wireless IPv6 Address and Wireless IPv6 Gateway. DHCPv6: Device management IP addressing (IP address and gateway) is assigned via a network DHCP server, and parameters Wireless IPv6 Address and Wireless IPv6 Gateway are unused. If |
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| Wireless IPv6 Address | Internet protocol version 6 (IPv6) address. This address is used by the family of Internet protocols to uniquely identify this unit (wireless interface) on a network. IPv6 addresses are represented by eight groups of four hexadecimal digits separated by colons. |
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| Wireless IPv6 Gateway | Configure the IPv6 address of the device on the current network that acts as a gateway. A gateway acts as an entrance and exit to packets from and to other networks. |
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| Secure MAC Limit | Specify the maximum number of unique devices (MAC Addresses) that can connect via the SM’s Ethernet (LAN) port. Range is 1 – 254 devices. |
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| MAC Aging Time | Specify the aging timer in seconds. The aging timer will determine the duration for which the SM will maintain the MAC Address in its bridge table. The timer is restarted any time traffic from a specific MAC address is received on the LAN port. Once the timer expires, the MAC Address is removed from the SM’s bridge table. Ethernet Interface |
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| DHCP Server | Disabled: Use this setting when SM is in NAT mode, if there is an existing DHCP Server below the SM handing out IP Addresses or if all devices below the SM will be configured with static IP Addresses. Enabled: Use this setting when SM is in NAT mode, to use the SM’s local/onboard DHCP server to hand out IP addresses to its clients. |
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| DHCP Start IP | Configure the first address which will be issued to a DHCP client. Upon additional DHCP requests, the DHCP Start IP is incremented until Local DHCP End IP is reached. |
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| DHCP End IP | Configure the highest IP address in the DHCP pool that can be issued to a DHCP client. |
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| Preferred DHCP DNS Server | Configure the primary DNS Server IP address which will be used to configure DHCP clients (if Local DHCP Server is set to Enabled). |
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| Alternate DHCP DNS Server | Configure the secondary DNS Server IP address which will be used to configure DHCP clients (if Local DHCP Server is set to Enabled). |
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| DHCP Lease Time | Configure the time for which a DHCP IP address is leased. When the lease time expires, the DHCP client must renew IP addressing via DHCP request. |
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| DHCP Clients | The DHCP Client List table identifies hardware situated below the SM which shall be issued DHCP IP addressing information. The SM acts as a DHCP server, responding to requests from hardware connected to the SM. |
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| MAC | Configure the physical address of the device which will retrieve DHCP IP addressing information from the SM. |
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| IP | Configure the IP address which will be assigned to the device. |
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| Separate Management IP | Disabled: When disabled, the Wireless IP is the management interface for the SM. Enabled: When enabled, the IP Address below is the management interface for the SM. |
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| Separate Management VLAN | Enabled: A VLAN configuration establishes a logical group within the network. Each computer in the VLAN, regardless of initial or eventual physical location, has access to the same data based on the VLAN architecture. For the network operator, this provides flexibility in network segmentation, simpler management and enhanced security. When the SM is in NAT mode, the Separate Wireless Management VL |
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| VLAN (Management + Data) | Enabled: A VLAN configuration establishes a logical group within the network. Each computer in the VLAN, regardless of initial or eventual physical location, has access to the same data based on the VLAN architecture. For the network operator, this provides flexibility in network segmentation, simpler management and enhanced security. When the SM is in NAT or Router mode, the VLAN configuration is |
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| Ethernet Port | Disabled: The primary Ethernet port is disabled Enabled: The primary Ethernet port is enabled |
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| Auxiliary Port | Disabled: When disabled, the LAN Auxiliary port on the SM is shut down. Enabled: When enabled, LAN Auxiliary port on the SM is up and able to bridge traffic with the primary Ethernet port. Default value is Enabled. |
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| Auxiliary Port Setting | Manual: The LAN Auxiliary port speed and duplex mode can be manually configured. Auto-negotiate: The AP auto negotiates the LAN Auxiliary port speed and duplex mode with the device connected to it. |
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| Auxiliary Port Speed | With “Auxiliary Port Configuration” set to Manual, the LAN Auxiliary port speed can be forced to 1000 Mbps (only GPS Synchronized radio), 100 Mbps or 10 Mbps. |
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| Auxiliary Port Duplex Mode | With “Auxiliary Port Configuration” set to Manual, the LAN Auxiliary port duplex mode can be forced to Full or Half. |
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| Auxiliary Port PoE | Disabled: When disabled, the LAN Auxiliary port on the SM will not provide proprietary PoE out. Default value is Disabled. Enabled: When enabled, LAN Auxiliary port on the SM will provide proprietary PoE out to power external PoE devices such as another ePMP radio or a PoE camera. Port Forwarding |
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| Port Forwarding | The SM port forwarding functionality may be used to configure the SM to route external network services to an internal IP address so that end devices (situated below the SM) are reachable from external networks. Caution Opening ports for forwarding may introduce a network security risk. |
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| UPnP IGD | Universal Plug and Play (UPnP) is a set of networking protocols that permits networked devices, such as personal computers, printers, Internet gateways, Wi-Fi access points and mobile devices to seamlessly discover each other's presence on the network and establish functional network services for data sharing, communications, and entertainment. UPnP is intended primarily for residential networks w |
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| NAT PMP (PCP) | The PCP (Port Control Protocol) allows an IPv6 or IPv4 host to control how incoming IPv6 or IPv4 packets are translated and forwarded by a Network Address Translator (NAT) or simple firewall, and also allows a host to optimize its outgoing NAT keepalive messages. PCP was standardized as a successor to the NAT Port Mapping Protocol (NAT-PMP), with which it shares similar protocol concepts and packe |
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| Data Port Forwarding | The Data Port Forwarding Table is used to define which range of wireless ports that are forwarded to a LAN (SM local network) IP address below the SM. |
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| Port Begin | Configure the beginning of the range of wireless ports to match for forwarding to LAN IP. |
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| Port End | Configure the end of the range of wireless ports to match for forwarding to LAN IP. |
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| Forwarding IP | Configure the LAN IP of the device situated below the SM which receives the packets forwarded based on the Separate Management IP Port Forwarding Table configuration. |
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| Mapped Port | Configure the port of the device situated below the SM which receives the packets forwarded based on the Data Port Forwarding Table configuration. |
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| PPPoE | Point-to-Point Protocol over Ethernet: Used for Encapsulating PPP frames inside Ethernet frames. |
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| Service Name | An optional entry to set a specific service name to connect to for the PPPoE session. If this is left blank the SM accepts the first service option that comes back from the Access Concentrator specified below, if any. This is limited to 32 characters. |
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| Access Concentrator | An optional entry to set a specific Access Concentrator to connect to for the PPPoE session. If this is blank, the SM accepts the first Access Concentrator which matches the service name (if specified). This is limited to 32 characters. |
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| Authentication | ALL: This means that CHAP authentication will be attempted first, then PAP authentication. The same password is used for both types. CHAP: This means that CHAP authentication will be attempted. PAP: This means that PAP authentication will be attempted. |
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| Username | This is the CHAP/PAP username that is used. This is limited to 32 characters. |
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| Password | This is the CHAP/PAP password that is used. This is limited to 32 characters. |
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| Keep Alive Time | Configure the Keep Alive Time to allow the radio to keep the PPPoE session up after establishment. As an example, if this field is set to 5, the PPPoE client will send a keep alive message to the PPPoE server every 5 seconds. If there is no acknowledgement, it sends the ‘Keep alive’ message to the server 4 more times (for a total or 5 times) before tearing down the PPPoE session. Setting this to 1 |
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| MSS Clamping | Disabled: The SM PPPoE session allows any MTU size determined by other devices in the PPPoE session during the LCP negotiations. Enabled: The SM PPPoE session enforces a max MTU size determined by the PPPoE MTU Size setting for all devices in the PPPoE session during the LCP negotiations, unless one of the devices enforces a MTU setting that is smaller in value. De-Militarized Zone (DMZ) |
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| DMZ | Disabled: Packets arriving on the Wireless Interface destined for the Ethernet side of the network are dropped if a session does not exist between the Source IP (Wireless) and Destination IP (Ethernet). By default NAT requires the sessions to be initiated from the Ethernet side before a packet is accepted from the Wireless to the Wired side." Enabled: Any packets with an unknown destination port ( |
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| NAT Helper For SIP | Disabled: When disabled, the SM does not perform any deep packet manipulation on the SIP request packet from a SIP Client. Enabled: When enabled, the SM in NAT mode replaces the Source IP within the SIP request to the Wireless IP of the SM. Please note that this translation is often times handled by the SIP server so this option may not always be needed. |
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| Management VLAN ID | Configure this parameter to include the device’s management traffic on a separate VLAN network. For example, if MGMT VLAN ID is set to 2, GUI access will only be allowed from frames tagged with VLAN ID 2. This parameter only takes effect if the MGMT VLAN parameter is enabled. |
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| Data VLAN ID | Configure this parameter to include this VLAN tag to all untagged traffic entering on the SM’s LAN port before sending it to the AP and remove tags in the opposite direction from traffic (tagged with Data VLAN ID) entering on the SM’s WAN port before sending to the SM’s LAN port. |
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| Data VLAN Priority | ePMP radios can prioritize VLAN traffic based on the eight priorities described in the IEEE 802.1p specification. Data VLAN Priority represents the VLAN Priority or Class of Service (CoS). Operators may use this prioritization field to give precedence to device user data. This parameter only takes effect if the Data VLAN parameter is enabled. Configure this parameter to set the value of the Priori |
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| VLAN ID Begin | Configure the first VLAN ID for the VLAN range. |
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| VLAN ID End | Configure the last VLAN ID for the VLAN range. |
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| VLAN Mapping | Configure the VLAN Mapping Table to map the C-VLAN of traffic ingressing the Ethernet (LAN) port of the SM to a S-VLAN before being forwarded to the air interface on the UL. In the DL direction, the SM will automatically un-map the S-VLAN to the C-VLAN before forwarding the tagged packets to the Ethernet (LAN) interface of the SM. |
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| C-VLAN | Configure the C-VLAN ID of the tagged traffic for which the mapping needs to occur Note The C-VLAN ID must be entered in the SM VLAN Membership VLAN table. |
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| S-VLAN | Configure the S-VLAN ID to which the tagged traffic needs to be mapped to. Note The S-VLAN ID must be entered in the SM VLAN Membership VLAN table. Ethernet Port |
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| Auxiliary Port Duplex | With “Auxiliary Port Configuration” set to Manual, the LAN Auxiliary port duplex |
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| Mode | mode can be forced to Full or Half. |
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| Multicast Group Limit | Configure the maximum number of simultaneous multicast groups that the SM will allow from devices below it. The default is 3. |
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| Multicast VLAN | Enabled: A VLAN tag will be added to all untagged multicast traffic entering the SM’s LAN port before sending it to the AP and remove tags in the opposite direction from traffic (tagged with Multicast VLAN ID) entering on the SM’s WAN port before sending to the SM’s LAN port. Disabled: When disabled, no changes are made to untagged multicast traffic passing through the SM. |
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| Multicast VLAN ID | Configure this parameter to include this VLAN tag to all untagged multicast traffic entering on the SM’s LAN port before sending it to the AP and remove tags in the opposite direction from multicast traffic (tagged with Multicast VLAN ID) entering on the SM’s WAN port before sending to the SM’s LAN port. |
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| Multicast VLAN Priority | ePMP radios can prioritize VLAN traffic based on the eight priorities described in the IEEE 802.1p specification. Multicast VLAN Priority represents the VLAN Priority or Class of Service (CoS). Operators may use this prioritization field to give precedence to device multicast data. This parameter only takes effect if the Multicast VLAN parameter is enabled. Configure this parameter to set the valu |
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| DHCP Servers Below SM | Disabled: This blocks DHCP servers connected to the SM’s LAN side from handing out IP addresses to DHCP clients above the SM (wireless side). Enabled: This allows DHCP servers connected to the SM’s LAN side to assign IP addresses to DHCP clients above the SM (wireless side). This configuration is typical in PTP links. |
|---|
| Route | When Enabled, it allows the operator to create static routes that will apply to both the Wireless and Ethernet interface of the SM. This allows operators to configure a custom table of explicit paths between networks. Static routing is often used as a method to reduce the overhead of processing dynamic routes through a network when the specific path is known (or, it is simpler to define a specific |
|---|
| Target Network IP | Configure the target subnet/network’s IP address to which the SM should route the packets. |
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| IP aliases | When Enabled, IP aliases allow the operator to associate more than one IP address to the Ethernet interface of the SM. This configuration of multiple IP addresses for the SM’s Ethernet interface allows connections to multiple networks, often used as a mechanism for management access to the device from a convenient networking path. |
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| Auxiliary Port Configuration | Manual: The LAN Auxiliary port speed and duplex mode can be manually configured. Auto-negotiate: The AP auto negotiates the LAN Auxiliary port speed and duplex mode with the device connected to it. |
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| EAP-TTLS Username | Configure the EAP-TTLS Username to match the credentials on the RADIUS server being used for the network. |
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| Use Ethernet MAC Address | The device MAC Address can be used as the EAP-TTLS Username in either “:” or |
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| at EAP-TTLS Username | “-“ delimited format. |
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| EAP-TTLS Password | Configure the EAP-TTLS Password to match the credentials on the RADIUS server being used for the network. |
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| Authentication Identity | Configure this Identity string to match the credentials on the RADIUS server |
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| Realm | being used for the network. Default value for this parameter is “cambiumnetworks.com”. |
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| Default Root Certificate | Default EAP-TTLS root certificate that must match the certificate on the RADIUS server. |
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| Canopy Root Certificate | PMP 450 default EAP-TTLS root certificate to match the certificate on the RADIUS server used with current PMP 450 installations. |
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| User Provisioned Root Cert | Import a user certificate if a certificate different from the default certificates is 1 needed. |
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| Reset Stats | Resets all statistics for both Ethernet and Wireless. Ethernet Statistics - Transmitted |
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| Downlink Packets Per MCS | Number of packets (and percentage of total packets) received on the SM’s wireless interface for every modulation mode, based on radio conditions. |
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| Uplink Packets Per MCS | Number of packets (and percentage of total packets) transmitted out of the SM’s wireless interface for every modulation mode used by the SM’s transmitter, based on radio conditions. |
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| Contains FCC ID(s) | Displays listing of FCC IDs applicable to the device. |
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| SM Current GUI User | Displays the mechanism used for authentication of web management interface users. |
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| Registered AP MAC address | Wireless MAC address of the AP to which the SM is registered. |
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| Distance from AP | The distance from the AP, determined by radio signal propagation delay. |
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| Operating Channel Bandwidth | The current channel size at which the SM is transmitting and receiving. |
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| Power Control Mode from AP | Open Loop: In this mode, the SM will not receive any power change information in the Group Poll Frame. SM calculates the UL transmit power based on path loss calculations only. Closed Loop: In closed loop UL power control, Subscriber Module will get the AP actual transmit power of beacon frame and SM Target Received Power Level in the beacon. Based on these two values, SM calculates the path loss. |
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| Forced Sector Antenna | When an ePMP 2000 AP is deployed with a Sector Antenna and a Smart Antenna, this parameter forces the AP to use only Sector Antenna for all Subscriber Modules. |
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| Time since last scan | Amount of time elapsed since the last scan was completed by the SM for available APs. |
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| Registration Status | The current registration status of the SM. |
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| Available APs | The Available AP list may be referenced to view which APs are available for SM network entry, and also to view the status of the current AP to SM radio link. Add as Preferred |
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| Frequency Carrier (MHz) | The current operating frequency of the visible AP. |
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| RSSI (dBm) | The current measured Received Signal Strength Indicator at the AP. |
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| SNR (dB) | The current measured Signal-to-Noise Ratio of the SM to AP link. |
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| Registration State | The indication of the result of the SM’s network entry attempt: Successful: SM registration is successful Failed: Out of Range: The SM is out of the AP’s configured maximum range (Max Range parameter) Failed: Capacity limit reached at AP: The AP is no longer allowing SM network entry due to capacity reached Failed: No Allocation on AP: The SM to AP handshaking failed due to a misconfigured pre-sha |
|---|
| Session Time (hh:mm:ss) | This timer indicates the time elapsed since the SM registered to the AP. |
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| Meets Reg Criteria | Yes: The scanned AP meets the Network Entry criteria defined by the internal Network Algorithm. No: The scanned AP does not meet the Network Entry criteria defined by the internal Network Algorithm. |
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| Auxiliary Ethernet Status | The current status of the SM’s Auxiliary Ethernet Port. |
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| Total Multicast Groups | The current number of Multicast groups that have subscribed under this SM. ARP Table |
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| PPPoE Mode | Disabled: If this is left blank the STA will accept the first service option that comes back from the Access Concentrator specified below, if any. PPPoE is ‘Disabled’ by default. Enabled: An optional entry is ‘Enabled’ to set a specific service name to connect to the PPPoE session. This is limited to 32 characters. |
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| DHCP Server Status | Indicates if the local DHCP server on the SM in NAT mode is Enabled/Disabled. |
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| DHCP Server IP Start | The first IP address in the DHCP pool which will be issued to a DHCP client. Upon additional |
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| Address | DHCP requests, the DHCP Start IP is incremented until Local DHCP End IP is reached. |
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| DHCP Server IP End | The last/highest address IP address in the DHCP pool of addresses which is issued to a DHCP |
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| DHCP Gateway IP Address | The gateway of the local DHCP server |
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| DHCP DNS IP Address | DNS Server IP address which will be used to configure DHCP clients (if Local DHCP Server is set to Enabled under Configuration=>Network). DHCP Static MAC to IP Configuration Table |
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| Syslog file | Use this button to download the full system log file to a connected PC or device. |
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| Configuration File Format | Text (Editable): Choosing this option will download the configuration file in the .json format, and can be viewed and/or edited using a standard text editor. Binary (Secured): Choosing this option will download the configuration file in the .bin format, and cannot be viewed and/or edited using an editor. Use this format for a secure backup. Restore Configuration |
|---|
| Reset Via Power Sequence | Enabled: When Enabled, it is possible to reset the radio’s configuration to factory defaults using the power cycle sequence explained under Resetting ePMP to factory defaults by power cycling on page 306. Disabled: When Disabled, it is not possible to factory default the radio’s configuration using the power cycle sequence. When set to Enabled, then after a factory default of the radio for any rea |
|---|
| Keep Passwords | When the Keep Passwords checkbox is selected, the passwords used for GUI and CLI access will not be defaulted and will remain unchanged. This is one-time option, and it does not apply to factory default procedures completed by power cycling (Reset Via Power Sequence). |
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| Reset to Factory Defaults | Use this button to reset the device to its factory default configuration. Caution A reset to factory default configuration resets all device parameters. With the SMs in default configuration it may not be able to register to an AP configured for your network. |
|---|
| AP MAC Address | This is not an editable field. It is automatically populated with the wireless MAC address of the AP to which the SM is registered. |
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| Ping Results | Displays the ping test results. |
|---|
| ATTRIBUTE | Cambium-ePMP-ULMIR 110 integer #Max Burst Uplink Rate |
|---|
| VENDOR | Cambium 17713 # Cambium vendor-specific attributes. |
|---|
| BEGIN-VENDOR | Cambium |
|---|
| Scenario | Description |
|---|
| No MIR control via | In a scenario where Radius is not in use for MIR profiles, the GUI will be the only place to configure MIR profiles and apply them to the corresponding SMs. Configure Radius the MIR profiles in the Configure =-> Quality of Service menu option on the AP GUI and apply the corresponding profile # in the SM under the same menu option on SM. |
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| MIR control using only | In the case where only the Radius server is being used for MIR profiles, all settings in the GUI will be overridden for any SM being managed by the Radius Server. In this Radius case, create the MIR profile with Subscriber Module usernames and password on the Radius server. At the time of registration, the AP uses the radius information and applies the corresponding profile to the SM. In the wirel |
|---|
| Hybrid control using | The system also supports a hybrid mode where Radius and the GUI QOS profiles can be used simultaneously as long as the same SM does not have a profile # associated both Radius and MIR from the AP & Radius. In case where it is redundant, Radius server setting will |
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| profile on the AP GUI | override the MIR profile settings from the GUI. Creating a CA private key 1. Create a root (self-signed) certificate from our private certificate. Go to the directory where the database is stored for our certificates and start generating. 2. Create a private key CA (my own Certificate Authority). RSA key length of 2048 bits encryption algorithm 3DES. File name with a key - cambium-ca.key openssl g |
|---|
| NAT / | Valid Values Bridge |
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| Attribute Name | Number 1 Router GUI Analogue Mode 0F0F0F |
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| Cambium-ePMP- | Not 26.17713.21 Applicable Data VLAN ID 1-4094 |
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| VLIGVID | Applicable AP or SM in Bridge Mode: Management |
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| UserLevel | Management permission) 4 – User (permission only to access pertinent information for support purposes) 5 – Readonly (permission to only view the Monitor page) 0-2 |
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| STAPRI | Priority 1 – High 2 - Low 1-4094 (for each VLAN ID in the range) Example: |
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| VLANMEMSET | Applicable table Membership range from VLAN ID 256 (Begin) to VLAN ID 300 (End), in the RADIUS users file set: Cambium-ePMP- VLANMEMSET = "16777516" This decimal value in hex is 0x0100012C. In this case, the first two bytes represent the beginning of the range, 0x0100 (256 in decimal) and the last two bytes represent the end of the range, 0x012C (300 in decimal). AP or SM in Bridge Mode: Managemen |
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| VLDataPVID | Applicable Separate |
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| VLMG2VID | Applicable VLAN ID Separate |
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| VLMG2PVID | Applicable VLAN Priority |
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| VLMultiCastVID | Applicable 1-4094 (for each VLAN ID in the range) Example: To map C-VLAN 23 to S- VLAN 400, in the RADIUS users file set: Cambium-ePMP- |
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| VLMAPPING | Applicable This decimal value in hex is 0x00170190. In this case, the first two bytes represent the C- VLAN value 0x0017 (23 in decimal) and the last two bytes represent the S-VLAN value 0x0190 (400 in decimal). |
|---|
| ePMP 1000 | ePMP 1000 ePMP 2000 (1st Generation) (2nd Generation) |
|---|
| GPS Chip Type | GPS only |
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| GPS + GLONASS | GPS + GLONASS Default GPS AXN_1.51_2801 |
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| Firmware | AXN_3.20_8174 AXN_3.20_8174 |
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| Potential Issues | Occasional sync loss |
|---|
| GPS chip locked, resulting in | Occasional sync loss following following low number of (With Default loss of sync and no display low number of tracked satellites tracked satellites for |
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| Installed) | visible/tracked satellites Russia regions Russia regions Current GPS |
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| AXN_1.51_2838 | AXN_5.1._8174 AXN_5.1._8174 Firmware Corresponding |
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| ePMP Software | 2.1 3.5.1 3.5.1 Release Known issues (With Current None None None GPS Firmware) |
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| ePMP 1000 Connectorized Radio | ePMP 1000 Integrated |
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| with Sync / ePMP 1000 | Radio Reset Button Connectorized Radio Reset Button |
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| Force 180 Reset | Force 200 Reset |
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| 按鈕 | Button ePMP 2000 Access Point with Intelligent Filtering and Sync Reset Button Force 190 Reset Button Force 130 Reset Button 1 Remove the Ethernet cable from PoE jack of the power supply for at least 10 seconds. 2 Reconnect the Ethernet cable to re-supply power to the ePMP device for 3-5 seconds and disconnect cable to power off the ePMP device for 3-5 seconds. (1st power cycle) 3 Reconnect the Et |
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| V+(ON) | Power through PoE has been applied to the device |
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| Off | Power through PoE has been removed from the device |
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| ton | Time duration for which the device has been powered on. This should be 3-5 seconds. |
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| toff | Time duration for which the device has been powered off. This should be 3-5 seconds. 1 ePMP radio (non-GPS radio) with corrupted flash, i.e. there was a power interruption during a software upgrade and the device is no longer accessible or boots up. 2 The ePMP radio must have already been running Release 2.6.2 (or higher). 3 Laptop or PC with a 3rd party TFTP server (ex: http://tftpd32.jounin.net) |
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| released in 2017) | considered normal use of U-Boot, and does *not* fall under the heading of "derived work". The header files "include/image.h" and "include/asm-*/u-boot.h" define interfaces to U-Boot. Including these (unmodified) header files in another file is considered normal use of U-Boot, and does *not* fall under the heading of "derived work". Also note that the GPL below is copyrighted by the Free Software F |
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| * lib/attr.c | Netlink Attributes * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation version 2.1 * of the License. * Copyright (c) 2003-2008 Thomas Graf GNU LESSER GENERAL PUBLIC LICENSE Version 2.1, February 1999 Copyright (C) 1991, 1999 Free Software Foundation, Inc. |
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| mtd | Copyright (C) 2005-2009 Felix Fietkau < ndb@openwrt.org> # Copyright (C) 2006-2009 OpenWrt.org # This is free software, licensed under the GNU General Public License v2. See full license text on page 335. # (C) Copyright 2002-2006 # Wolfgang Denk, DENX Software Engineering, wd@denx.de. # See file CREDITS for list of people who contributed to this # project. # This program is free software; you can |
|---|
| Written by: | Philip Hazel Email local part: ph10 Email domain: cam.ac.uk University of Cambridge Computing Service, Cambridge, England. Copyright (c) 1997-2010 University of Cambridge All rights reserved THE C++ WRAPPER LIBRARY ----------------------- |
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| * | The Silver Hammer Group, Ltd. * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Library General Public * License as published by the Free Software Foundation; either * version 2 of the License, or (at your option) any later version. * Portions Copyright (c) 1985, 1993 * The Regents of the University of California. All rights reserved. * Redistri |
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| jloup@gzip.org | madler@alumni.caltech.edu This software is provided 'as-is', without any express or implied warranty. In no event will the authors be held liable for any damages arising from the use of this software. Permission is granted to anyone to use this software for any purpose, including commercial applications, and to alter it and redistribute it freely, subject to the following restrictions: 1. The orig |
|---|
| Jean-loup Gailly | Mark Adler |
|---|
| libubox | See full license text on page 335. Copyright (C) 2010-2016 Felix Fietkau Permission to use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted, provided that the above copyright notice and this permission notice appear in all copies. THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWA |
|---|
| MAC-telnet | GPLv2 See full license text on page 335. Mac-Telnet - Connect to RouterOS or mactelnetd devices via MAC address Copyright (C) 2010, Håkon Nessjøen This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any |
|---|
| odhcp6c | /** * Copyright (C) 2012-2014 Steven Barth steven@midlink.org> * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License v2 as published by * the Free Software Foundation. * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS |
|---|
| memtester | GPLv2 See full license text on page 335. * memtester version 4 * Very simple but very effective user-space memory tester. * Originally by Simon Kirby * Version 2 by Charles Cazabon * Version 3 not publicly released. * Version 4 rewrite: * Copyright (C) 2004-2010 Charles Cazabon * Licensed under the te |
|---|
| libpam | Unless otherwise *explicitly* stated the following text describes the licensed conditions under which the contents of this Linux-PAM release may be distributed: ------------------------------------------------------------------------- Redistribution and use in source and binary forms of Linux-PAM, with or without modification, are permitted provided that the following conditions are met: 1. Redist |
|---|
| lldpd | lldpd is distributed under the ISC license: > Permission to use, copy, modify, and/or distribute this software for any > purpose with or without fee is hereby granted, provided that the above > copyright notice and this permission notice appear in all copies. > THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES > WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES O |
|---|
| util-linux | GPLv2 See full license text on page 335. LGPLv2 See full license text on page 357. BSD See full license text on page 381. Public Domain |
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| Modulation | 2412- 2570- 4920-4990 4990-5080 5080- 5150-5480 5460- 5725- |
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| MCS0 | 30 30 15 19 27 27 30 30 |
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| MCS1 | 30 30 15 19 27 27 30 30 |
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| MCS2 | 29 29 15 19 27 27 29 30 |
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| MCS3 | 29 29 13 17 26 26 27 30 |
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| MCS4 | 28 28 11 15 24 24 25 30 |
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| MCS5 | 28 28 11 15 22 22 23 27 |
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| MCS6 | 27 26 10 14 20 20 21 25 |
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| MCS7 | 27 25 8 12 19 18 19 23 |
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| MCS8 | 30 30 15 19 27 27 30 30 |
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| MCS9 | 30 30 15 19 27 27 30 30 |
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| MCS10 | 29 29 15 19 27 27 29 30 |
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| MCS11 | 29 29 13 17 26 26 27 30 |
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| MCS12 | 28 28 11 15 24 24 25 30 |
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| MCS13 | 28 28 11 15 22 22 23 27 |
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| MCS14 | 27 26 10 14 20 20 21 25 |
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| MCS15 | 27 25 8 12 18 18 19 23 |
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| Region | Standard |
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| USA | UL 60950-1, 2nd Edition |
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| Canada | CSA C22.2 No.60950 2nd Edition |
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| International | International CB certified and certified to IEC 60950-1:2005 (modified) plus EN60950-1:2006 + A1:2010 |
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| Europe | ETSI EN301 489-4 |
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| S | power density in W/m2 |
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| P | maximum average transmit power capability of the radio, in W |
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| G | total Tx gain as a factor, converted from dB |
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| d | distance from point source, in m Rearranging terms to solve for distance yields: P.G 4 .S P – maximum average transmit power capability of the radio (Watt) G – total transmit gain as a factor, converted from dB S – power density (W/m2) d – minimum distance from point source (meters) R – recommended distances (meters) C – compliance factor |
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| Model Number | Part Number FCC ID Industry Canada C058900A132A |
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| C058900P132A | Z8H89FT0020 109W-0020 C058900L132A |
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| Conn | Channel P G S d R C Antenna |
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| PTP | 5 MHz Connectorized Antenna, 17 dBi 0.02 50 9.011 0.10 0.3 - PMP |
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| C058900P112A | C058900C112A Z8H89FT0006 109W-0006 |
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| PMP | 5/10 MHz Connectorized Omni, 3 dBi 0.063 2.0 9.011 0.03 0.1 99.8 |
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| C058900P122A | C058900C122A Z8H89FT0005 109W-0005 |
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| Integrated Patch Array, 13 dBi | 0.020 20.0 9.130 0.06 0.2 115.2 Integrated Patch Array, 13 dBi with |
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| Reflector Dish, 6 dBi | 0.020 79.4 9.130 0.12 0.3 65.1 |
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| Connectorized Patch Panel Array, 23 dBi | 0.020 199.5 9.130 0.19 0.4 46.1 |
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| Connectorized Dish, 30 dBi | 0.020 1000 9.130 0.42 1 57.5 |
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| C058900P072A | C058900C072A Z8H89FT0015 109W-0015 |
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| C058900P062A | C058900C062A Z8H89FT0015 109W-0015 Connection |
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| Modular Array, 17 dBi | 0.398 50.1 9.011 0.42 1 56.7 |
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| Modular Dish, 24 dBi | 0.398 251.2 9.011 0.94 2 45.3 |
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| Module Dipole, 2 dBi | 0.398 1.6 9.011 0.07 0.2 71.8 Channel |
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| C024900P161A | C024900C161A Z8H89FT0019 109W-0019 Channel |
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| C058900P082A | C058900C082A Z8H89FT0031 109W-0031 S @ 20 cm |
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| Modular Dish, 22 dBi | 0.398 158 9.011 0.75 2 125.49 |
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| Frequency band | Region Regulatory approvals 5 GHz USA FCC Part 15 Class B |
|---|
| Access Point (AP) | “Contains Transmitter Module FCC ID: Z8H89FT0020” or “Contains FCC ID: Z8H89FT0020” |
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| Device Function | Label |
|---|
| Subscriber Module (SM) | “Contains Transmitter Module FCC ID: Z8H89FT0005” or “Contains FCC ID: Z8H89FT0005” or “Contains FCC ID: Z8H89FT0031” |
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| Access Point (AP) / | “Contains Transmitter Module FCC ID: Z8H89FT0015” or “Contains FCC ID: Z8H89FT0015” Subscriber Module (SM) |
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| Valid Center | Valid Center Valid Center Frequency |
|---|
| MHz Band | MHz Band MHz Band 15 for 4920 to 4995, 4920 to 5155 4930 to 5165 4920 to 5150 every |
|---|
| Other | 4900-5150 19 for 5000 to 5080, |
|---|
| every 5MHz | every 5MHz 5MHz 27 for 5085 to 5165 |
|---|
| Frequency | Conducted |
|---|
| range | Power 20 MHz Band 40 MHz Band 5/10 MHz Band 5160-5240 5170-5230 5155-5250 |
|---|
| Armenia | 5150-5250 20 |
|---|
| every 5 MHz | every 5 MHz every 5 MHz 5160-5240 5170-5230 5155-5250 |
|---|
| Argentina | 5150-5250 20 |
|---|
| Azerbaijan | 5150-5250 20 |
|---|
| Belarus | 5150-5250 20 |
|---|
| Ecuador | 5150-5250 20 |
|---|
| Georgia | 5150-5250 20 |
|---|
| Guam | 5150-5250 20 |
|---|
| Kyrgyzstan | 5150-5250 20 |
|---|
| Kazakhstan | 5150-5250 20 |
|---|
| Moldova | 5150-5250 20 |
|---|
| Malaysia | 5150-5250 20 |
|---|
| Peru | 5150-5250 20 |
|---|
| Philippines | 5150-5250 20 |
|---|
| Puerto Rico | 5150-5250 20 |
|---|
| Russia | 5150-5250 20 |
|---|
| Tajikistan | 5150-5250 20 |
|---|
| Turkmenistan | 5150-5250 20 |
|---|
| Ukraine | 5150-5250 18 |
|---|
| Uganda | 5150-5250 27 30 |
|---|
| United States | 5150-5250 20 |
|---|
| Uzbekistan | 5150-5250 20 |
|---|
| Venezuela | 5150-5250 20 |
|---|
| U.S. Virgin Islands | 5150-5250 20 |
|---|
| Chile | 5250-5350 18 Yes |
|---|
| Colombia | 5250-5350 18 Yes |
|---|
| Ghana | 5250-5350 18 Yes |
|---|
| Hong Kong | 5250-5350 18 Yes |
|---|
| Kenya | 5250-5350 18 Yes |
|---|
| Nigeria | 5250-5350 27 36 Yes |
|---|
| Taiwan | 5250-5350 13 23 Yes |
|---|
| Thailand | 5250-5350 13 FCC |
|---|
| Australia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Austria | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Belgium | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Bosnia and | 5470-5600, every 5MHz, every 5MHz, every 5MHz, 40MHz, 27 for 10 15 ETSI |
|---|
| Herzegovina | 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Brazil | 5470-5725 16 30 FCC |
|---|
| Bulgaria | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Croatia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Cyprus | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| every 5MHz, | every 5MHz, every 5MHz, 40MHz, 27 for 10 |
|---|
| Czech Republic | 5600,5650- 15 ETSI 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 5725 |
|---|
| Denmark | 15 40M, 27 for 10M, ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 24 for 5M |
|---|
| Finland | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| France | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Generic ETSI | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Germany | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Greece | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Hungary | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Ireland | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Italy | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Latvia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Liechtenstein | 15 ETSI 5650-5725 every 5MHz, every 5MHz, every 5MHz, 40MHz, 27 for 10 Valid Center |
|---|
| Lithuania | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Luxembourg | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Macedonia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Malta | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Mauritius | 5470-5725 15 ETSI |
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| Mexico | 16 FCC 5650-5725 5660 to 5705 5670 to 5695 5655 to 5720 MHz, 24 for 5 |
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| Netherlands | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Netherlands Antilles | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Norway | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Oman | 5470-5725 15 ETSI |
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| Poland | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Portugal | 15 ETSI 5650-5725 every 5MHz, every 5MHz, every 5MHz, 40MHz, 27 for 10 Valid Center |
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| Romania | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Serbia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Slovakia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Slovenia | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| South Africa | 5470-5725 15 30 |
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| South Korea | 5470-5650 NA 16 30 ETSI |
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| Spain | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Sweden | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
|---|
| Switzerland | 15 ETSI 5650-5725 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 |
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| Turkey | 5470-5725 15 ETSI |
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| United Kingdom | 5600,5650- 15 ETSI 5660 to 5715 5670 to 5705 5655 to 5720 MHz, 24 for 5 5725 |
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| ranges | Power 20 MHz Band 40 MHz Band 4 Band3F3F3F3F3F3F 5735 to 5840 5745 to 5830 5730 to 5845 |
|---|
| Bahrain | 5725-5850 23 33 ETSI |
|---|
| Bangladesh | 5725-5825 30 None |
|---|
| Botswana | 5725-5875 23 40 No |
|---|
| and SM mode. | modes. 5735 to 5840 5745 to 5830 5730 to 5845 |
|---|
| China | 5725-5850 23 33 None |
|---|
| Iceland | 5725-5875 23 36 ETSI |
|---|
| India | 5825-5875 23 36 None |
|---|
| Indonesia | 5725-5825 NA 23 36 None |
|---|
| for PMP, | for PMP, 5735 for PMP, 5745 for PMP, 5730 |
|---|
| New Zealand | 23 36 No 5725-5825 to 5815 every 5 to 5805 every to 5820 every 5 |
|---|
| for PTP | MHz for PTP 5 MHz for PTP MHz for PTP 5740 to 5835 5750 to 5825 5730 to 5845 |
|---|
| Pakistan | 5725-5875 5735 to 5865 5745 to 5855 5730 to 5870 30 53 None |
|---|
| Seychelles | 5725-5850 23 36 ETSI |
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| Singapore | 5725-5850 23 30 ETSI |
|---|
| Vietnam | 5725-5850 23 30 None |
|---|
| Angola | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
|---|
| Bosnia | 2400-2500 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
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| Congo-Kinshasa | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
|---|
| Israel | 2400-2500 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
|---|
| Mozambique | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2487 every 2422-2477 every 2407-2492 every |
|---|
| Myanmar | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
|---|
| Namibia | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
|---|
| Swaziland | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
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| Tanzania | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
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| Freq Band , | 36 for PMP AP. 21 for 40M 30 dBm + 6 + 2412-2462 every 2427-2452 every 2407-2467 every |
|---|
| for 10M and | Gain - 6)/3) for other 5M Freq modes. Band 27 for 20M 36 for PMP AP. Freq band, 21 30 dBm + 6 + 2412-2462 every 2427-2452 every 2407-2467 every for 40M Freq |
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| Zambia | 2400-2500 27 36 5MHz 5MHz 5MHz 2412-2472 every 2422-2462 every 2407-2477 every |
|---|
| CIS Countries | 2400-2500 27 36 5MHz 5MHz 5MHz |
|---|
| Access Point (AP) / Subscriber | “Contains Transmitter Module FCC ID: Z8H89FT0015” or “Contains FCC ID: Z8H89FT0015” Module (SM) |
|---|
| Spatial | Mod. Coding 5 MHz 10 MHz 20 MHz 40 MHz MCS |
|---|
| Streams | Type Rate DL UL DL UL DL UL DL UL |
|---|
| MCS 14 | 2 64-QAM 3/4 20.8 20.2 43.6 44.2 88 83.4 182 128 |
|---|
| MCS 13 | 2 64-QAM 2/3 18.6 18.8 38.7 38.7 79.3 76.1 163 116 |
|---|
| MCS 12 | 2 16-QAM 3/4 13.7 13.7 29.1 28.7 59.6 58.1 123 61.7 |
|---|
| MCS 11 | 2 16-QAM 1/2 9.27 9.37 19.3 19.1 39.8 38.7 82.2 61.9 |
|---|
| MCS 10 | 2 QPSK 3/4 7.06 6.9 14.7 14.5 30 29.1 62.1 57.4 |
|---|
| MCS 9 | 2 QPSK 1/2 4.85 4.5 9.64 9.59 20.1 19.4 41.6 41.1 |
|---|
| MCS 7 | 1 64-QAM 5/6 11.5 11.6 24.4 24.3 49.7 48.4 103 61.8 |
|---|
| MCS 6 | 1 64-QAM 3/4 10.7 10.5 22 21.8 44.6 43.6 92.1 61.6 |
|---|
| MCS 5 | 1 64-QAM 2/3 9.3 9.37 19.3 19.3 39.9 38.7 82.1 61.6 |
|---|
| MCS 4 | 1 16-QAM 3/4 7.08 6.69 14.7 14.5 30 29.1 61.9 57.6 |
|---|
| MCS 3 | 1 16-QAM 1/2 4.85 4.56 9.67 9.64 20.1 19.4 41.5 41.2 |
|---|
| MCS 2 | 1 QPSK 3/4 3.54 3.37 7.35 7.18 15 14.4 31 30.8 |
|---|
| MCS 1 | 1 QPSK 1/2 2.56 2.25 5.01 4.75 10.2 9.67 20.8 20.5 |
|---|
| Term | Definition |
|---|
| AES | Advanced Encryption Standard |
|---|
| ANSI | American National Standards Institute |
|---|
| AP | Access Point |
|---|
| CINR | Carrier to Interference plus Noise Ratio |
|---|
| CMM | Cluster Management Module |
|---|
| CNSS | Cambium Network Services Server |
|---|
| DFS | Dynamic Frequency Selection |
|---|
| EIRP | Equivalent Isotropically Radiated Power |
|---|
| EMC | Electromagnetic Compatibility |
|---|
| EMD | Electromagnetic Discharge |
|---|
| ETSI | European Telecommunications Standards Institute |
|---|
| FCC | Federal Communications Commission |
|---|
| FEC | Forward Error Correction |
|---|
| GUI | Graphical User Interface |
|---|
| HTTP | Hypertext Transfer Protocol |
|---|
| IC | Industry Canada |
|---|
| IEEE | Institute of Electrical and Electronics Engineers |
|---|
| LOS | Line of Sight |
|---|
| MIMO | Multiple In Multiple Out |
|---|
| MTU | Maximum Transmission Unit |
|---|
| nLOS | Near Line of Sight |
|---|
| NTP | Network Time Protocol |
|---|
| OFDM | Orthogonal Frequency Division Multiplexing |
|---|
| PC | Personal Computer |
|---|
| QAM | Quadrature Amplitude Modulation |
|---|
| QPSK | Quadrature Phase Shift Keyed |
|---|
| RF | Radio Frequency |
|---|
| RMA | Return Merchandise Authorization |
|---|
| RTTT | Road Transport and Traffic Telematics |
|---|
| RX | Receive |
|---|
| SAR | Standard Absorption Rate |
|---|
| SNMP | Simple Network Management Protocol |
|---|
| SM | Subscriber Module |
|---|
| SW | Software |
|---|
| TDD | Time Division Duplex |
|---|
| TDWR | Terminal Doppler Weather Radar |
|---|
| TX | Transmit |
|---|
| UNII | Unlicensed National Information Infrastructure |
|---|
| URL | Uniform Resource Locator |
|---|