Ubiquiti airMAX Sector 2.4 GHz Titanium AM-V2G-Ti in Dubai, UAE
Plan a directional point-to-multipoint coverage sector with adjustable 60°, 90° or 120° beamwidth, dual-linear polarization and a mounting system developed for compatible 2.4 GHz Rocket radios. FourTeck helps buyers verify the exact model, radio pairing, antenna angle, mast conditions and complete bill of materials before quotation.
Prepare an accurate requirement
Share the required quantity, proposed tower or pole location, preferred sector width, compatible radio model, installation height and destination. This allows a more useful availability and quotation review.
2.3 to 2.6 GHz
60°, 90° or 120°
17, 16 or 15 dBi
Two weatherproof RP-SMA connectors
Pole-mount kit included
Direct answer for buyers
The AM-V2G-Ti is a configurable 2.4 GHz sector antenna for outdoor point-to-multipoint base-station designs. It is mainly used to shape coverage across a defined sector rather than radiating equally in every direction. Wireless service providers, estates, campuses, industrial operators and remote-site network teams may consider it when they need a compatible 2.4 GHz Rocket radio and a choice of three sector widths. Before proceeding, confirm the required azimuth coverage, link distances, client distribution, interference environment, permitted frequencies, mast strength, wind exposure, cable and grounding plan, and whether the radio, PoE equipment and surge protection are included separately.
What the AM-V2G-Ti does
A sector antenna concentrates radio energy into a chosen horizontal area. Compared with an omnidirectional antenna, this approach can help a designer serve clients within a planned direction while limiting unnecessary radiation behind the antenna. The AM-V2G-Ti adds adjustable beamwidth deflectors, allowing the same antenna body to be configured for approximately 60°, 90° or 120° sector coverage. The narrower arrangement provides the highest listed gain, while the wider arrangement distributes coverage across a broader angle with lower gain.
It is a passive antenna, not a complete wireless access point. A compatible 2.4 GHz Rocket radio supplies the active RF, Ethernet, software and power functions. This distinction matters for procurement because the antenna, radio, PoE injector, shielded cable, surge protection, mast hardware beyond the included kit and installation services may appear as separate line items.
Who should consider it
The antenna is relevant to organisations building or maintaining 2.4 GHz point-to-multipoint outdoor networks. Typical buyers include wireless internet service providers, system integrators, mining or construction operators, logistics yards, agricultural sites, hospitality estates, education campuses and organisations linking distributed buildings or remote endpoints.
It is not automatically the right choice for every deployment. Dense urban environments may have significant 2.4 GHz interference. Some projects are better served by a different frequency, narrower horn antenna, fixed-beam sector, 5 GHz design or another platform. A site survey and spectrum review are therefore more valuable than selecting an antenna by gain alone.
Business challenges this antenna can help address
Uneven client distribution
Subscriber or device locations are rarely spread evenly. The selectable beamwidth lets a designer align sector coverage more closely with where endpoints are actually located, reducing the need to purchase separate fixed-angle antenna models for every planned sector.
Co-location interference
Multiple radios installed on the same tower can affect one another. The Titanium sector design emphasises RF isolation and has a typical front-to-back ratio of 30 dB and typical cross-polar isolation of 25 dB. Actual network performance still depends on channel planning, physical separation, radio configuration and the broader RF environment.
Changing coverage plans
A network may begin with a broad client area and later be divided into narrower sectors as demand grows. An adjustable antenna gives planners more flexibility, although any reconfiguration should be followed by alignment checks, link validation and review of the associated radio settings.
Outdoor structural demands
The supplied pole-mount arrangement and listed 200 km/h wind survivability support outdoor infrastructure planning. The structure, pole diameter, tower engineering, fasteners, grounding and local wind-load requirements must still be reviewed by a competent installer or engineer.
Core capabilities at a glance
Configure the antenna for 60°, 90° or 120° horizontal coverage according to the network design.
Supports the two-polarity arrangement used with compatible 2×2 MIMO Rocket deployments.
The design includes a Rocket mounting arrangement and protective shroud concept for compatible radios.
A listed 4° electrical downtilt helps direct the coverage pattern downward from elevated mounting positions.
Product-fit decision matrix
| Requirement | Suitable when | Confirm before ordering |
|---|---|---|
| Defined outdoor sector | Endpoints sit mainly within one directional coverage area. | Azimuth, elevation, site map and line-of-sight conditions. |
| Adjustable beamwidth | The design may require 60°, 90° or 120° coverage. | Expected gain and edge coverage at the selected angle. |
| 2.4 GHz Rocket deployment | The selected radio is explicitly compatible with this antenna and legal in the destination region. | Exact radio model, firmware, connector arrangement and regional settings. |
| Tower co-location | Several sectors or radios share a structure and RF isolation is an important design concern. | Channel plan, physical spacing, synchronization strategy and interference survey. |
| Exposed outdoor installation | The pole, brackets and mounting location can safely support the antenna and wind load. | Structural approval, grounding, lightning protection and safe installation access. |
Verified technical information
The table below is based on the exact AM-V2G-Ti model information published by Ubiquiti. Specifications can be revised by the manufacturer, so the current data sheet and regional product information should be checked when a formal bill of materials is prepared.
| Brand | Ubiquiti |
|---|---|
| Product name | airMAX Sector 2.4 GHz Titanium |
| Model | AM-V2G-Ti |
| Product type | Outdoor variable-beamwidth sector antenna |
| Frequency range | 2.3 to 2.6 GHz; permitted operating channels depend on local regulations and radio configuration. |
| Beamwidth options | 60°, 90° and 120° |
| Antenna gain | 17 dBi at 60°, 16 dBi at 90°, 15 dBi at 120° |
| Elevation beamwidth | 9° |
| Electrical downtilt | 4° |
| Polarization | Dual linear |
| RF connectors | Two weatherproof RP-SMA connectors |
| Maximum VSWR | 1.5:1 |
| Front-to-back ratio | 30 dB typical |
| Cross-polar isolation | 25 dB typical |
| Compatible radios | Ubiquiti lists RocketM2 Titanium and RocketM2 on the current store page. Confirm exact availability and revision before ordering. |
| Dimensions | 773 × 372 × 120 mm |
| Weight with mount | 6.4 kg |
| Wind survivability | 200 km/h |
| Wind loading | 640.5 N at 200 km/h |
| Mounting | Pole mount; kit included |
| ETSI specification | EN 302 326 DN2 |
| Certifications listed by manufacturer | CE, FCC and IC |
| Availability | Contact FourTeck for current UAE quantity, lead-time and regional quotation guidance. |
Compatibility and dependency notice
The AM-V2G-Ti is only one part of a working wireless sector. It does not contain an Ethernet port, operating system, power supply or network-management controller. A compatible radio must be selected and powered correctly. The project may also require shielded outdoor Ethernet cable, surge protection, grounding conductors, PoE equipment, a suitable mast, weather-resistant cable routing, client radios, switching, backhaul capacity and management access.
Radio compatibility should never be assumed from connector appearance alone. Confirm the exact Rocket model, frequency band, regulatory domain, mechanical fit and software support. The manufacturer currently identifies RocketM2 Titanium and RocketM2 as compatible radios. Product availability and lifecycle position can vary by region, and an older installed radio may require a different replacement strategy. FourTeck can help review the intended combination, but final RF design and regulatory compliance remain dependent on the actual site and destination.
Purchase and deployment journey
Map the service area
Identify client locations, distances, elevations, obstacles and the intended mounting point. Mark the desired sector boundaries rather than selecting an angle by guesswork.
Review the RF environment
Survey 2.4 GHz usage, noise levels and likely interference. Consider whether the band is appropriate for the required capacity and reliability.
Select beamwidth and radio
Choose 60°, 90° or 120° coverage and verify the compatible radio, channel width, power settings and regulatory limits.
Build the bill of materials
List the antenna, radio, mounting needs, PoE, cables, protection, grounding, client equipment and any professional services.
Install and align
Use trained personnel, safe access procedures and appropriate structural methods. Set the antenna angle and verify all weatherproofing and grounding.
Test and document
Measure links at the centre and edges of the sector, validate client performance and record the final configuration for support and maintenance.
Adjustable beamwidth and practical coverage planning
Beamwidth is one of the most important reasons to consider the AM-V2G-Ti. A 60° sector concentrates the antenna pattern into a narrower horizontal area and provides the listed 17 dBi gain. This arrangement can suit a corridor-like service area, a focused group of subscribers or a network plan using more sectors around a tower. A 90° configuration balances angular coverage and gain at 16 dBi. The 120° position covers the broadest horizontal angle and is listed at 15 dBi, which can be useful where a smaller number of wide sectors is preferred.
These figures are not a promise of range or throughput. Link distance depends on transmit power, receiver sensitivity, client antenna gain, channel width, noise floor, obstruction, Fresnel-zone clearance, cable condition, alignment and permitted effective radiated power. A wider beam also means that more potential interferers and clients may fall within the antenna pattern. The best angle therefore comes from a complete network design rather than a simple preference for wider coverage.
The 4° electrical downtilt is also relevant. When the antenna is installed high above the service area, downtilt helps direct energy toward users below the horizon. Mounting height and terrain still need to be modelled because too much height or incorrect mechanical alignment can cause nearby clients to sit outside the strongest part of the vertical pattern. FourTeck can help buyers organise the information needed for a design review, including site coordinates, tower height, target client areas and expected link lengths.
RF isolation, polarization and co-location planning
Outdoor base stations often place several radios and antennas on one mast. Without careful planning, energy from one sector can enter another radio, raise the noise floor or reduce usable capacity. Ubiquiti positions the Titanium sector design for improved RF isolation in co-location environments. The AM-V2G-Ti has a listed typical front-to-back ratio of 30 dB, helping reduce radiation behind the main coverage direction, and typical cross-polar isolation of 25 dB.
Those antenna properties are only one layer of an interference-control strategy. Installers should still consider vertical and horizontal separation, channel reuse, transmit power, antenna orientation, cable routing and the behavior of other equipment on the structure. Nearby cellular, broadcast, telemetry or private wireless systems may impose additional constraints. A spectrum scan performed at ground level may not reflect conditions at the final tower height.
Dual-linear polarization allows the paired radio chains of a compatible 2×2 MIMO system to use separate polarizations. For the expected benefit, both the base-station and client equipment must be aligned and configured correctly. Damaged connectors, moisture ingress, poorly seated cables or rotated client antennas can reduce isolation and link quality. Maintenance plans should include physical inspection, connector checks, signal comparison and review of any gradual change in noise or modulation performance.
Mechanical installation and long-term operation
The AM-V2G-Ti measures 773 × 372 × 120 mm and weighs 6.4 kg with its mount. The listed wind loading is 640.5 N at 200 km/h. These values must be included in structural planning, especially where several antennas are mounted on the same pole or tower. Wind load accumulates across all equipment, and the effect on the structure depends on mounting height, orientation and local design standards.
The included pole-mount kit simplifies procurement but does not remove the need to verify pole diameter, corrosion condition, bracket torque and access safety. Coastal and industrial locations may expose hardware to salt, dust, chemicals or vibration. The installer should use suitable materials, seal cable entries, create drip loops and prevent connectors from carrying cable weight. Grounding and surge protection should follow the radio manufacturer’s guidance and applicable local electrical practices.
A maintainable installation also needs clear labeling. Record the sector name, beamwidth setting, azimuth, tilt, radio identity, IP address, channel, cable path and grounding point. Photographs taken after installation can help future technicians confirm whether anything has moved. In projects with many towers, consistent documentation reduces troubleshooting time and helps procurement teams order the correct replacement part rather than a visually similar antenna.
Ideal environments and use cases
Wireless service-provider sectors
A WISP may use the antenna to serve multiple fixed subscribers from a tower or rooftop. The adjustable angle can support sector redesign as the subscriber footprint changes, provided the selected radio platform and capacity plan remain appropriate.
Large estates and campuses
Education, hospitality or residential estates may need directional outdoor coverage between buildings or toward remote areas. The solution should be designed as a managed network with suitable backhaul, security and client equipment.
Industrial and logistics locations
Yards, warehouses, construction zones and utility sites may use sector coverage for fixed data endpoints. Environmental exposure, moving obstructions and electromagnetic noise should be assessed before deployment.
Agriculture and remote facilities
Farms or remote operations can connect distributed locations where cabling is difficult. Clear line of sight, solar or backup power, mast access and maintenance logistics become important project variables.
Temporary project networks
A temporary site may need rapid sector coverage, but temporary does not mean unengineered. Safe mounting, frequency compliance, interference checks and weather protection are still required.
Replacement and expansion
Existing airMAX operators may use the model for like-for-like replacement or sector expansion after confirming radio compatibility, hardware revision, beamwidth and network lifecycle plans.
Integration and operational considerations
Antenna selection should be coordinated with the full data path. The base-station radio needs adequate Ethernet capacity, a stable power source and a secure management network. Upstream switching and backhaul must support the aggregate traffic expected from all clients. When the sector is used for business-critical services, consider redundancy in power, backhaul and network monitoring rather than relying on a single outdoor link without alarms.
Security is provided mainly by the radio and network architecture, not by the passive antenna. Administrators should manage credentials, firmware, access policies, management exposure, logging and client isolation according to the application. Remote management can reduce site visits, but access should be protected and documented. Confirm whether the installed radio is still supported and whether its management method fits the organisation’s operational standards.
Capacity planning should include the number of clients, busy-hour traffic, service-level expectations and channel conditions. An antenna with higher gain does not create unlimited capacity. Every connected client shares airtime, and weaker edge links can consume more airtime than strong links. The network designer may decide that several narrower sectors are more appropriate than one wide sector, or that another frequency and platform should be used.
Buyer questions to resolve before requesting a quote
Procurement checklist
☐ Confirm the exact model as AM-V2G-Ti.
☐ State the required quantity and destination.
☐ Choose the intended 60°, 90° or 120° configuration.
☐ Confirm the compatible 2.4 GHz Rocket radio model.
☐ Identify whether radios are new, existing or replacement units.
☐ Review mast dimensions, condition and available loading capacity.
☐ Include PoE, outdoor cable and surge protection where needed.
☐ Confirm grounding and lightning-protection responsibilities.
☐ Provide approximate link distances and client distribution.
☐ State whether site survey or spectrum analysis is required.
☐ Define installation, alignment and configuration scope.
☐ Request current warranty guidance for the destination and supply route.
☐ Confirm delivery coordination and required project timeline.
☐ Record any documentation, handover or support expectations.
How FourTeck can assist
FourTeck can help turn a product name into a more complete purchasing requirement. Assistance may include confirming the exact AM-V2G-Ti model, reviewing the intended beamwidth, identifying compatible radio and accessory requirements, discussing installation constraints and coordinating a quotation. This is especially useful when the buyer is replacing an older sector or preparing a multi-site bill of materials.
For projects that require more than supply, describe the expected service scope clearly. Site assessment, RF planning, installation, configuration, testing, documentation and support are separate activities and should be listed in the request. FourTeck can discuss appropriate next steps through its technology services team, provide access to the broader network product portfolio, or review a project through the FourTeck contact desk.
UAE availability and project coordination
Contact FourTeck to confirm current UAE availability for the Ubiquiti AM-V2G-Ti. Availability can depend on quantity, supply route, hardware revision and vendor lead time. A quotation should identify whether it covers the antenna only or includes compatible radios, PoE equipment, outdoor cabling, surge protection, installation or configuration services.
FourTeck can coordinate requirements for organisations in Dubai, Abu Dhabi, Sharjah and Ajman through one combined discussion. Share the deployment address, number of sectors, proposed radio model and preferred project schedule. Delivery and service planning can then be reviewed against the actual scope. No installation date, stock position or delivery period should be assumed until confirmed in the quotation.
GCC Availability
Businesses planning AM-V2G-Ti deployments elsewhere in the GCC can ask FourTeck to review the requirement before procurement. This may include confirming the exact antenna model, proposed Rocket radio, sector quantity, beamwidth selection, mounting environment, accessories and any requested configuration or installation scope. Projects in the United Arab Emirates, Saudi Arabia, Kuwait, Qatar, Bahrain or Oman can have different regulatory, logistics and service conditions. Product availability, permitted frequencies, regional radio settings, delivery schedules, service visits and vendor lead times may vary by country and quantity. To receive practical guidance, provide the destination country, deployment site, required units, expected timeline, radio details and whether the request covers supply only or a wider project. For Kuwait-related coordination, buyers may also review the FourTeck Kuwait resource.
Africa Availability
FourTeck can also assist organisations evaluating the AM-V2G-Ti for selected projects across Africa. Regional procurement should account for the destination, exact model, quantity, compatible-radio availability, local 2.4 GHz rules, mast and power conditions, shipping arrangements, vendor lead time and the practical ability to install and support outdoor equipment. Buyers in East Africa and other regions should share the proposed site, number of sectors, client footprint, required accessories and desired deployment schedule so the requirement can be reviewed properly. Installation or onsite support is not automatically included and depends on location and agreed scope. Useful regional starting points include FourTeck Africa, FourTeck Kenya and FourTeck Uganda.
Related products and services to consider
Compatible 2.4 GHz Rocket radio
The active radio must match the antenna mechanically and electrically. Confirm the exact RocketM2 version, availability, lifecycle position and regional settings.
Outdoor cable and surge protection
Shielded cabling, grounding and protection components help create a maintainable outdoor installation. Selection depends on cable length and site conditions.
Fixed-beam 2.4 GHz sectors
A fixed 90° or 120° sector may be suitable where adjustable coverage is unnecessary. Compare gain, dimensions, cost and installation requirements.
Site survey and RF planning
A survey can identify interference, obstructions, tower constraints and client distribution before equipment is ordered.
Installation and alignment support
Professional mounting, alignment, weatherproofing and link testing can be included as a separately defined project scope.
Alternative frequency designs
Where 2.4 GHz congestion is severe, a different band or platform may be more appropriate, subject to link requirements and regulation.
Why businesses contact FourTeck
Procurement teams often need more than a part number. They need confidence that the antenna matches the intended radio, the coverage angle is sensible, the mounting environment has been considered and the quotation includes the necessary supporting items. FourTeck can assist with requirement clarification, bill-of-material preparation, compatibility discussion, quotation coordination and planning for installation or configuration support. The objective is to reduce avoidable gaps between product selection and deployment without making assumptions about stock, performance or project timing. Learn more about the company through the FourTeck company profile.
Frequently asked questions
Is the AM-V2G-Ti a complete wireless access point?
No. It is a passive sector antenna. A compatible 2.4 GHz Rocket radio, PoE power arrangement, Ethernet cabling and network configuration are required to create an operating base station.
Which beamwidth provides the highest gain?
The listed gain is 17 dBi at 60°, 16 dBi at 90° and 15 dBi at 120°. The narrowest setting has the highest gain, but the correct choice depends on where clients are located and how sectors are planned.
Which radios are compatible?
Ubiquiti currently lists RocketM2 Titanium and RocketM2 on its product page. Confirm the exact radio revision, regional availability and mechanical compatibility before purchase.
Is the pole-mount kit included?
The manufacturer lists a pole-mount kit as included. The pole, tower, additional structural hardware and installation labor are not automatically included unless stated in the quotation.
Can it be used in a high-interference area?
The antenna is designed with RF-isolation considerations, but no antenna can remove all external interference. A spectrum survey, channel plan, correct separation and suitable radio configuration are still necessary.
Does it support outdoor deployment?
Yes, it is an outdoor sector antenna with weatherproof RF connectors and a listed wind survivability of 200 km/h. The complete installation must still be structurally safe, grounded and weatherproofed.
How should I choose between 60°, 90° and 120°?
Use a site map and client distribution to define the required horizontal sector. Also consider edge signal, frequency reuse, capacity, interference and the number of sectors planned around the site.
Is a site survey necessary?
A survey is strongly advisable for new or important deployments because it can identify obstructions, noise, mounting constraints, cable routes and grounding requirements before equipment is ordered.
Can FourTeck include installation and configuration?
Installation, alignment, radio configuration, testing and documentation can be discussed as a defined service scope. They are not assumed to be included with the product unless specified in the quotation.
What information is needed for a quotation?
Provide quantity, destination, preferred beamwidth, radio model, mounting location, required accessories, service scope and target schedule. Include existing equipment details when the request is for expansion or replacement.
Confirm the antenna, radio and deployment scope together
Request a FourTeck review for the Ubiquiti AM-V2G-Ti in Dubai or another supported region. Include your sector plan, quantity, compatible radio requirement, mounting details and any installation expectations so the quotation can reflect the actual project rather than the antenna alone.


