User's Manual
Table Of Contents
- FCC and IC Statement
- Getting started
- 1.1. Document structure
- 1.2. Abbreviations
- 1.3. Document marks
- System Description
- 2.1. Introducing InfiLINK XG
- 2.2. Hardware Description
- 2.3. InfiLINK XG Specifications
- Installation
- 3.1. Installation Requirements
- 3.2. Equipment Positioning Guidelines
- 3.3. Installing the Outdoor Units
- 3.4. Installing the Indoor Unit
- Commissioning
- 4.1. Introduction
- 4.2. Step by step procedure
- Operation & Administration
- 5.1. Introduction
- 5.2. InfiLINK XG unit access
- 5.3. Status
- 5.3.1. Interface Statistics
- 5.3.2. Wireless Link Statistics
- 5.4. Antenna alignment
- 5.5. Maintenance
- 5.5.1. Firmware
- 5.5.2. Upload
- 5.5.3. Download
- 5.5.4. Bottom section of the page
- 5.6. Settings
- 5.6.1. General
- 5.6.2. Network Access
- 5.6.3. Radio
- 5.6.4. Switch
- 5.6.5. VLAN Switching
- 5.6.6. SNMP
- 5.6.7. Apply and Try buttons for the configuration
- 5.6.8. Configuring QoS
- 5.6.9. Configuring per-VLAN 802.1p priority assignment
- Troubleshooting
- 5
- 6.1. Introduction
- 6.2. The wireless link is down (it got lost)
- 6.3. No access to the local unit
- 6.4. Expected capacity is not met
- 6.5. Errors on the wireless link, throughput fluctuations
- 6.6. No data is being transferred
- 6.7. The management of the unit is lost
- 6.7.1. ERConsole recovery procedure
- 6.7.2. Restore to factory settings using ERConsole
Chapter 3 - Installation
Technical User Manual
InfiLINK XG
25
Figure 6 - Pole mounting
3.2.2.2. Poles with Stretching
Usually this kind of poles are used when installing antennas on a flat surface and
allow the installer to raise the antenna to a significant height for providing optimal
conditions for signal propagation.
3.2.2.3. Wall Mounting
This kind of mounting is used when there is no need to elevate the antenna above
the rooftop and there is the possibility of mounting it on a wall. This installation is
significantly simpler than the implementation with poles.
3.2.2.4. Pole Requirements
Easy access and sufficient mechanical durability of the pole should provide quick
and reliable fastening in conditions of high wind loads. Poles should have a round
profile for ease of azimuth adjustment. Typical pole diameter is 30 to 85 mm.