Ubiquiti airMAX LiteBeam 5AC Extreme-Range LBE-5AC-XR Dubai

Ubiquiti airMAX LiteBeam 5AC Extreme-Range for Dubai Links

The Ubiquiti airMAX LiteBeam 5AC Extreme-Range LBE-5AC-XR is an outdoor 5 GHz wireless CPE designed for high-capacity point-to-point and point-to-multipoint links where distance, antenna gain and careful alignment matter. Its 29 dBi integrated antenna, Gigabit Ethernet interface, passive PoE power and airMAX AC platform make it relevant to wireless internet providers, industrial sites, remote facilities, campuses, farms, construction projects and organisations extending network connectivity between separated buildings. Buyers should confirm clear line of sight, local frequency rules, expected link distance, channel planning, mounting conditions and whether a matching airMAX AC radio is required at the other end. Environmental exposure, pole size, surge protection and cable routing should also be included in the design rather than treated as afterthoughts. FourTeck can assist with model confirmation, link-planning questions, compatible radio selection, bill-of-material guidance, configuration scope and quotation coordination. Availability in Dubai and the wider UAE can vary by quantity, regional version and vendor lead time, so current supply should be checked before committing to a deployment schedule. Contact FourTeck with the two site locations, required throughput, mounting details and quantity to request a suitable quotation and implementation discussion.

SKU: UBIQUITI-LBE-5AC-XR-DUBAI Category:

Extreme-range 5 GHz wireless CPE

Ubiquiti airMAX LiteBeam 5AC Extreme-Range LBE-5AC-XR in Dubai, UAE

The LBE-5AC-XR is built for outdoor wireless links where a narrow, high-gain antenna and disciplined RF planning are needed to connect distant sites. It combines an integrated 29 dBi antenna, airMAX AC radio, Gigabit Ethernet and weather-resistant construction in one pole-mounted unit. For business buyers, the key decision is not simply whether the radio has sufficient range; it is whether both endpoints, line of sight, interference conditions, mounting structures, power arrangements and regulatory settings support the intended link.

Plan the link before ordering

Share the site coordinates, link distance, target throughput, mounting height and quantity. FourTeck can help review the requirement and prepare a suitable quotation.

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29 dBi antennaNarrow-beam directional design
450+ MbpsManufacturer-rated total throughput
PtP and PtMPFlexible airMAX operating modes
IPX6 enclosureOutdoor deployment design

Direct answer for buyers

The Ubiquiti LBE-5AC-XR is a 5 GHz outdoor wireless station intended for long-distance airMAX AC links. It is mainly used to bridge networks between remote buildings, connect customer premises to a wireless service provider, or create high-capacity links where trenching fibre is impractical. It should be considered by WISPs, industrial operators, farms, campuses, contractors and multi-site organisations with clear line of sight. Before proceeding, confirm the exact endpoint radios, expected link distance, local permitted frequencies, channel width, interference level, pole structure, wind exposure, Ethernet surge protection, power source and target throughput. Long-range performance is always design dependent, so a link budget and site survey remain essential.

What the LBE-5AC-XR does

The device sends and receives Ethernet traffic over a directional 5 GHz wireless link. Its integrated dish focuses radio energy into a narrow beam, which is useful when the two endpoints are separated by a substantial distance and broad-coverage antennas would waste signal or collect excessive interference. The radio can be configured for point-to-point bridging or point-to-multipoint operation within the airMAX ecosystem, depending on network design and compatible counterpart equipment.

In a business deployment, the LBE-5AC-XR may replace or supplement a wired connection between buildings, provide last-mile connectivity to a remote subscriber, carry surveillance traffic from an outlying location, connect temporary project sites, or support operational networks in locations where cable installation is costly or physically difficult. It is not a general indoor Wi-Fi access point and should not be selected as a direct substitute for ordinary client Wi-Fi.

Who it suits

The product is most relevant to organisations that can establish clear or near-clear line of sight between fixed outdoor points. Wireless internet service providers may use it as customer premises equipment or as part of long-distance access designs. Enterprises may use paired radios for building-to-building connectivity. Farms, quarries, logistics yards, utilities, resorts, schools, warehouses and construction operations may also benefit where remote buildings or equipment areas need Ethernet connectivity.

It is less suitable when terrain, trees, cranes or buildings block the Fresnel zone; where mounting points move or vibrate; where local spectrum conditions are severely congested; or where guaranteed fibre-like service levels are required without redundancy. In these cases, buyers should assess alternative frequencies, licensed wireless, fibre, microwave backhaul, 60 GHz links or a redesigned route.

Business challenge map

Distant buildings without fibre

A directional wireless bridge can move network traffic across open space without civil works, subject to line-of-sight and performance validation.

Remote subscriber connectivity

The high-gain CPE may support extended reach from a compatible airMAX access point where sector design and capacity planning are appropriate.

Temporary operational sites

Project offices, construction compounds and event locations may use wireless backhaul when fast physical deployment is more practical than permanent cabling.

Outdoor surveillance transport

Remote camera clusters can be linked to a central network, provided the design accounts for aggregate bit rate, latency, power, switching and weather protection.

Core capabilities that influence the buying decision

High-gain integrated antenna

A 29 dBi antenna supports focused long-distance links. Alignment accuracy becomes increasingly important as link length grows.

Gigabit Ethernet handoff

The single GbE RJ45 interface connects the radio to the local switch, router or injector. Cable quality and surge protection must be planned.

Passive PoE

The included 24 V, 0.5 A Gigabit PoE adapter powers the unit over Ethernet. Confirm distance, earthing and compatibility before deployment.

airOS management

Web management, SNMP, SSH, airView, alignment tools, remote logging and diagnostics support commissioning and ongoing operation.

Product-fit matrix

RequirementSuitable whenConfirm before ordering
Long-distance fixed linkBoth endpoints have stable mounting and clear line of sight.Path profile, Fresnel clearance, link budget and legal EIRP.
Building-to-building bridgeThe required traffic fits within realistic wireless capacity.Paired radios, VLAN plan, redundancy and surge protection.
WISP customer connectionA compatible airMAX AC access point serves the sector.Sector capacity, modulation target, subscriber count and channel plan.
Remote camera networkAggregate video traffic and uplink design have been calculated.Camera bit rate, switch power, storage path and failover needs.
Harsh outdoor deploymentMounting, wind exposure and enclosure limits are suitable.Pole diameter, structural loading, grounding and maintenance access.

Verified technical information

BrandUbiquiti
Product nameairMAX LiteBeam 5AC Extreme-Range
ModelLBE-5AC-XR
Product typeOutdoor 5 GHz airMAX AC CPE / wireless bridge
Operating modesPoint-to-point and point-to-multipoint
Total throughput450+ Mbps manufacturer rating; actual results depend on link conditions and configuration
Frequency range5.15 to 5.85 GHz, region dependent
Channel widths10 / 20 / 30 / 40 / 50 / 60 / 80 MHz
Antenna gain29 dBi
BeamwidthHPOL / VPOL / elevation: 5.5° at 3 dB and 7.5° at 6 dB
Maximum conducted transmit power25 dBm, subject to regional regulation
Network interfaceOne Gigabit Ethernet RJ45 port
Power method24 V passive PoE, two-pair
Included power supply24 V DC, 0.5 A Gigabit PoE adapter
Supported voltage22 to 27 V DC
Maximum power consumption7 W
Dimensions747 × 525 × 347 mm
Weight3.2 kg
MountingIntegrated pole mount for poles approximately 35 to 60 mm diameter
WeatherproofingIPX6
Operating temperature-40°C to 70°C
Operating humidity5% to 95% non-condensing
ManagementRadio web interface, dedicated 2.4 GHz management radio, SNMP, SSH, remote log, airView and diagnostics

Compatibility and dependency notice

The LBE-5AC-XR belongs to the airMAX platform and should be planned with compatible airMAX equipment at the opposite endpoint or serving access point. It is not intended to act as an ordinary Wi-Fi access point for laptops and phones. Available frequencies, maximum transmit power and channel choices are region dependent, and the final configuration must comply with local regulations. Link performance depends on distance, obstruction, Fresnel-zone clearance, interference, antenna alignment, channel width, modulation, rain conditions, Ethernet path and the capability of the peer radio. The 450+ Mbps figure is a platform throughput rating rather than a guaranteed application speed. Buyers requiring predictable service levels should build in capacity margin, monitoring and possibly a redundant path.

Deployment and purchase journey

1

Define the traffic need

Estimate average and peak throughput, latency sensitivity, VLANs, surveillance streams and growth allowance.

2

Survey the path

Review coordinates, elevation profile, line of sight, Fresnel clearance, obstruction risk and interference.

3

Confirm the bill of materials

Select endpoint radios, mounts, shielded cable, surge protection, grounding and switching or routing equipment.

4

Install and align

Use stable mounts, weatherproof cable entry, correct polarisation, accurate azimuth and elevation alignment.

5

Commission and monitor

Validate signal, noise floor, modulation, capacity, packet loss, failover and management access before handover.

Focused RF performance over distance

The main reason to choose the LBE-5AC-XR is its combination of an airMAX AC radio and a 29 dBi directional antenna. A narrow beam can improve the desired signal at the far end while reducing reception of signals arriving from other directions. This can be valuable in busy wireless environments, but it also means alignment tolerances are tighter than with a wide-beam antenna. Installers should not treat rough visual aiming as sufficient for a long path. The radio’s alignment tools, received signal levels, noise floor and modulation statistics should be used together, followed by traffic testing under realistic load.

Antenna gain alone does not determine range. The path must be assessed for curvature, terrain, rooftop structures, vegetation growth, planned construction and Fresnel-zone clearance. Even when the two radios are visually visible, objects inside the Fresnel zone can introduce loss and instability. For desert or coastal environments, installers should also consider heat, salt, dust, wind and the long-term stability of brackets and poles. The device supports a broad operating temperature range, but the entire installation—including PoE adapter, cable, connector protection and cabinet—must also suit the site.

Channel width is another key trade-off. Wider channels can support higher peak throughput but require more clean spectrum and may be more vulnerable to interference. Narrower channels can improve robustness and spectral efficiency in congested conditions, though with lower peak capacity. A professional design should select the narrowest channel that still meets the business requirement, leaving reasonable fade and interference margin. FourTeck can discuss the target capacity and the information needed for a practical link review.

Management, diagnostics and operational visibility

The LBE-5AC-XR provides a browser-based management interface and a dedicated 2.4 GHz management radio for setup through the UISP mobile workflow. This arrangement can simplify initial access near the installed radio, particularly when the Ethernet network is not yet fully commissioned. The management radio is not the production backhaul path; it is a setup convenience and should be handled according to the organisation’s access-control practices.

For ongoing monitoring, the platform includes services such as SNMP, SSH, dynamic DNS, remote logging and ping watchdog. Diagnostic tools include airView spectrum analysis, antenna alignment, discovery, ping, traceroute, speed test and constellation information. These tools can help an operator distinguish between alignment issues, interference, Ethernet problems and upstream network constraints. However, they are most useful when the organisation has defined baseline values and alert thresholds. Recording signal strength, noise, modulation, capacity and packet-loss results at handover gives the support team a reference point for future troubleshooting.

Management security should be included in deployment planning. Change default credentials, restrict administration access, place management traffic in the appropriate network segment and keep firmware under a controlled update process. Remote access should be permitted only through approved methods. Where the radio carries important operational traffic, monitoring should cover both wireless quality and end-to-end service availability rather than relying on a single device-up indicator.

Power, mounting and outdoor resilience

The unit is powered by 24 V passive PoE through its Gigabit Ethernet connection, with a matching 0.5 A adapter included according to the manufacturer specification. Passive PoE requires careful handling because it does not negotiate power in the same way as standard 802.3af, 802.3at or 802.3bt PoE. The injector, polarity and voltage must be compatible. Connecting passive PoE to unsuitable equipment may damage hardware, so power arrangements should be documented clearly for installers and support staff.

Outdoor Ethernet cable should be UV-resistant and suitably shielded where required by the installation design. Surge protection and grounding are important because a rooftop or mast-mounted radio can be exposed to electrostatic discharge and nearby lightning events. The Ethernet route should avoid sharp bends, water traps and unsupported cable spans. Entry points into buildings or cabinets should be sealed correctly, while drip loops should be used where appropriate.

The integrated pole mount accepts poles in the manufacturer-stated diameter range of approximately 35 to 60 mm. Structural suitability matters because the device presents a significant wind load. A pole that is adequate for a small access point may flex excessively with a larger dish, causing signal variation or mechanical risk. Mounting height should provide the required path clearance while remaining serviceable. The IPX6 rating supports outdoor use, but it does not remove the need for correct assembly, cable protection, regular inspection and suitable enclosure for indoor power components.

Ideal business environments and practical use cases

Wireless internet service providers

As a high-gain subscriber station, the LBE-5AC-XR may extend service to remote customer locations from a compatible airMAX AC sector. Sector capacity, subscriber density and frequency reuse still need to be engineered.

Industrial and utility sites

Remote substations, pump stations, yards and process areas may need Ethernet connectivity for monitoring, control or security. Environmental and redundancy requirements should be reviewed carefully.

Campuses and multi-building facilities

Schools, warehouses, resorts and compounds can use a point-to-point link to extend LAN services without opening roads or installing new ducts, subject to capacity and policy requirements.

Construction and temporary projects

Site offices and operational zones can be connected during a project phase. Mounting stability, crane movement, changing obstructions and relocation plans should be anticipated.

Agriculture and remote estates

Farm buildings, irrigation controls, gate systems and cameras may be linked over large properties where fibre is unavailable. Solar or remote power design may be needed at isolated points.

Video surveillance backhaul

The radio can transport aggregated camera traffic from a remote switch. Designers should calculate total bit rate, retention architecture, multicast requirements and outage impact.

Integration and operational considerations

A wireless bridge becomes part of the wider network, so its role should be defined beyond the RF link. Confirm whether the link will carry a flat Layer 2 network, routed traffic, tagged VLANs, voice, video, access-control data or management traffic. The connected switches and routers must support the required design. Spanning Tree behaviour, broadcast domains, DHCP boundaries and failure handling should be reviewed, especially if the wireless path is added as a backup to an existing wired link.

The device has one Ethernet port, so local aggregation generally occurs on an external switch. For camera deployments, this switch may also provide PoE to cameras, meaning the site power budget must include the switch and all endpoints rather than only the radio. For remote sites, consider UPS runtime, generator support or solar capacity. If power is unstable, repeated radio restarts can create intermittent service that resembles an RF problem.

Security teams should decide how management access is separated from user traffic and how logs are collected. Firmware maintenance, configuration backups and credential ownership should be assigned before handover. In regulated or operational environments, the installation may require change records, acceptance testing and diagrams. A simple wireless link can become business critical, so support ownership and escalation paths should be explicit.

Buyer questions to resolve before ordering

What is the exact distance?

Provide endpoint coordinates or a measured path length. Distance affects path loss, Fresnel clearance, expected modulation and mounting height.

Is line of sight truly clear?

Visual visibility is not enough. A path profile should identify terrain, rooftop structures, trees and future obstruction risk.

What throughput is required?

State actual application demand rather than only internet package speed. Include future growth and peak simultaneous traffic.

What is the peer radio?

Confirm the exact model and firmware family at the other end or on the serving sector to avoid platform mismatch.

How will the unit be powered?

Review the passive PoE injector location, cable length, UPS requirements, grounding and safe maintenance procedure.

What support is expected?

Clarify whether the requirement is supply only, remote configuration, site survey, installation, alignment, testing or ongoing monitoring.

Procurement checklist

  • Confirm the exact LBE-5AC-XR model and regional variant.
  • State the required quantity and whether radios are needed at both endpoints.
  • Provide endpoint coordinates, link distance and mounting heights.
  • Define required average and peak throughput.
  • Confirm the opposite-end airMAX model or access-point sector.
  • Review pole diameter, structural strength and wind exposure.
  • Include shielded outdoor cable, surge protection and grounding where required.
  • Confirm passive PoE placement and UPS expectations.
  • Document VLAN, switching, routing and management requirements.
  • Specify installation, alignment, configuration and testing scope.
  • Request current availability, lead time and warranty guidance.
  • Agree on documentation, handover and support responsibilities.

How FourTeck can assist

FourTeck can help buyers turn a product request into a more complete wireless requirement. This may include reviewing the intended application, confirming whether the LBE-5AC-XR is the right class of radio, identifying the matching endpoint equipment, discussing link-planning inputs and preparing a bill of materials. Where required, the quotation can also account for outdoor Ethernet cable, surge protection, mounting accessories, switching, routing, power backup and configuration services.

For organisations comparing options, FourTeck can discuss whether a higher-gain airMAX product, a different frequency, an LTU platform, 60 GHz equipment, fibre or another architecture would better match the path and performance target. This guidance depends on the information supplied; a reliable recommendation cannot be made from distance alone. Buyers should share coordinates, photographs, tower or rooftop heights, known obstructions, desired capacity, existing network equipment and service expectations.

Visit the FourTeck product catalogue, review available technology services, or contact the Dubai sales and consultation team to discuss a specific deployment.

UAE availability and support guidance

Contact FourTeck to confirm current UAE availability for the Ubiquiti LBE-5AC-XR. Supply may vary by regional model, quantity, vendor channel and lead time. Delivery and project coordination can be discussed after the exact requirement is confirmed. Where installation is required, the quotation should state whether it includes site survey, mounting, cable work, surge protection, configuration, alignment, testing and documentation. Warranty terms should also be confirmed against the supplied regional product and current vendor policy rather than assumed from a listing.

For projects across Dubai, Abu Dhabi, Sharjah and Ajman, FourTeck can review the requirement and coordinate product, configuration and deployment discussions as applicable. Site conditions differ considerably between rooftops, industrial yards, towers, villas, warehouses and remote compounds, so the same equipment list may not suit every location. Buyers should provide access constraints, working-height requirements, power availability and the expected project schedule before finalising the scope.

GCC Availability

FourTeck can assist organisations planning Ubiquiti airMAX wireless links in GCC markets, including the United Arab Emirates, Saudi Arabia, Kuwait, Qatar, Bahrain and Oman. Support can begin with requirement review, selection of the correct radio pair or access-point architecture, quotation coordination, delivery planning and discussion of installation or configuration scope. For the LBE-5AC-XR, buyers should confirm the destination country, exact model, quantity, frequency requirements, deployment locations and desired timeline. Product availability, permitted channels, power limits, warranty handling, vendor lead times and service logistics can vary by market and project. A regional design should therefore be based on the actual site coordinates, regulatory domain and local installation conditions. For Kuwait-related coordination, buyers may also review FourTeck Kuwait technology support. No assumption should be made about local stock, customs clearance or fixed delivery dates until the complete requirement has been reviewed.

Africa Availability

FourTeck can support buyers evaluating the LBE-5AC-XR and related wireless infrastructure for projects in Africa. Organisations in East Africa and other regions may request assistance with model selection, link-planning inputs, accessories, power design, configuration scope, support expectations and procurement coordination. Availability and fulfilment can depend on the destination, regional product variant, quantity, shipping arrangements, vendor lead time, local frequency rules, power requirements and the practical conditions at the installation site. Buyers should share the destination country, endpoint coordinates, required throughput, quantity, preferred deployment schedule and whether installation or remote configuration is expected. FourTeck’s Africa technology solutions team, Kenya support channel and Uganda support channel can be used for regional enquiries. Local inventory, customs outcomes, onsite reach and guaranteed delivery should not be assumed without project-specific confirmation.

Related options and supporting services

Matching airMAX AC endpoint

A compatible peer radio or access point is required. The correct model depends on path length, topology, antenna pattern and sector capacity.

Outdoor surge protection

Ethernet surge protection and grounding should be considered for exposed rooftop and mast installations.

Shielded outdoor cabling

UV-resistant, properly terminated cable supports dependable power and data delivery between the injector and radio.

Wireless link planning

Path review, Fresnel-zone assessment, link budget and channel planning help determine whether the intended design is practical.

Installation and alignment

Professional mounting and alignment can reduce avoidable signal loss and improve long-term mechanical stability.

Network integration

Switching, routing, VLAN, monitoring and security configuration may be included where the radio is part of a wider project.

Why businesses contact FourTeck

Technology buyers often need more than a unit price. They need confidence that the selected model suits the path, works with the proposed peer equipment, can be powered safely, and includes the accessories and services required for a complete installation. FourTeck can help clarify the requirement, identify missing bill-of-material items, discuss compatibility, coordinate quotations and define installation or configuration scope.

This approach is useful for procurement teams that receive a model request without site details, IT teams comparing wireless and wired alternatives, and project managers coordinating multiple contractors. FourTeck does not assume that one radio suits every link. The recommendation should reflect distance, obstruction, capacity, spectrum, mounting, support and operational risk. Learn more about FourTeck or use the business technology contact page for broader infrastructure enquiries.

Frequently asked questions

What is the Ubiquiti LBE-5AC-XR used for?

It is used for outdoor 5 GHz airMAX AC links, including point-to-point building bridges and point-to-multipoint subscriber connections. It is designed for fixed directional links rather than ordinary indoor Wi-Fi access.

Does one unit create a complete point-to-point link?

No. A complete point-to-point bridge normally requires compatible radio equipment at both ends. The exact peer model should be selected according to path length, gain, topology and capacity requirements.

Can phones and laptops connect directly to it?

The production 5 GHz radio is intended for the airMAX platform, not general client Wi-Fi. The dedicated 2.4 GHz management radio is for setup and administration rather than normal user access.

Is 450+ Mbps guaranteed?

No. The figure is the manufacturer’s total throughput rating. Real performance depends on signal quality, interference, channel width, distance, alignment, peer equipment and network overhead.

What power supply does it use?

The radio uses 24 V passive PoE and is specified with a 24 V, 0.5 A Gigabit PoE adapter. Passive PoE compatibility must be confirmed before connecting alternative injectors or switches.

Is the LBE-5AC-XR suitable for UAE outdoor conditions?

The unit is designed for outdoor use and carries an IPX6 weatherproofing rating, but the complete installation must account for heat, wind, dust, cable protection, grounding and safe mounting.

Do I need a site survey?

A path review is strongly recommended, especially for long links or business-critical use. Coordinates, elevations, obstructions, Fresnel clearance and spectrum conditions should be assessed.

Can FourTeck help with installation and configuration?

Installation, alignment, configuration and testing can be discussed as part of the quotation. Scope depends on site access, mounting, cabling, power and project location.

How do I request a quotation?

Provide the model, quantity, endpoint coordinates, link distance, target throughput, peer equipment, mounting details and required services. FourTeck can then review availability and prepare a more accurate quotation.

Confirm the radio pair, path and project scope

Send FourTeck your link distance, site coordinates, throughput target and quantity for product selection and quotation assistance.

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