Directional wireless infrastructure
Ubiquiti airMAX AC RocketDish RD-5G in Dubai, UAE
Plan a focused 5 GHz point-to-point link with a high-gain RocketDish antenna selected for the required distance, mounting environment and compatible Ubiquiti radio. FourTeck helps buyers distinguish the RD-5G variants, confirm the supporting bill of materials and coordinate a suitable quotation.
Start with the link requirement
Share the endpoint distance, required throughput, mounting height, existing radio platform and deployment location.
For focused outdoor links
Exact model must be confirmed
Designed for compatible MIMO radios
Alignment and structure matter
Direct answer for buyers
The Ubiquiti RD-5G is a RocketDish antenna range for creating highly directional 5 GHz outdoor wireless links when paired with a suitable Ubiquiti radio. It is mainly used for point-to-point connections between buildings, towers, compounds or remote sites where a clear line of sight can be established. It may suit service providers, integrators, enterprises, farms, industrial operations and hospitality groups that require a dedicated wireless backhaul path. Before proceeding, confirm the exact RD-5G variant, link distance, required capacity, radio compatibility, permitted frequency use, mounting strength, wind loading, grounding, surge protection and installation access.
What the RocketDish does
A RocketDish concentrates radio energy into a narrow beam rather than distributing it broadly like an omnidirectional antenna. This focused pattern can support longer wireless paths and improve signal control when the antenna is correctly aligned. The antenna itself does not create the network connection; it must be paired with a compatible outdoor radio, appropriate cabling and a properly engineered installation.
The RD-5G family is therefore best understood as one component in a complete link. The final result depends on both endpoints, radio configuration, channel width, interference conditions, regulatory power limits, Fresnel-zone clearance and physical installation quality.
Who should consider it
The RD-5G range may be appropriate where two fixed sites need a directional wireless bridge. Typical buyers include wireless internet service providers, multi-building businesses, warehouses, logistics yards, construction compounds, schools, resorts, remote offices, utilities and surveillance projects that need network transport between separated locations.
It is not a complete indoor Wi-Fi solution, a mobile 5G cellular antenna or a plug-and-play substitute for a site survey. Buyers who cannot achieve clear line of sight, suitable mounting height or stable structural support should review alternative link technologies before ordering.
Business challenges the RD-5G can help address
A directional wireless link can solve specific connectivity gaps, but only when the physical path and technical design are suitable.
Separated buildings
Connect offices, workshops or accommodation blocks across a property without trenching a new cable route, subject to line-of-sight and regulatory checks.
Remote site backhaul
Carry network traffic from a remote gate, camera cluster, field office or operations point back to the main network.
Temporary project links
Support construction or event environments where a fixed cable may be unavailable, while recognising that mounting and interference conditions can change.
Provider infrastructure
Build focused point-to-point paths in an airMAX network where compatible radios, spectrum planning and operational monitoring are already in place.
Core capabilities buyers should understand
High directional gain
The 30 dBi and 34 dBi variants focus energy into narrow beamwidths. Higher gain may support longer paths, but demands more precise alignment and suitable mounting.
Dual-linear polarisation
Horizontal and vertical polarisation supports compatible 2×2 MIMO radio operation. The complete radio-and-antenna combination must be validated.
Outdoor mechanical design
The dishes are intended for outdoor use, with published wind loading and survivability values. The supporting pole, tower and brackets must be engineered accordingly.
Radio-ready mounting
The platform is designed for integration with compatible Ubiquiti radios. Exact brackets, jumpers and included components depend on the model and current package.
Verified RD-5G specification guidance
Ubiquiti presents RD-5G as a RocketDish range with 30 dBi and 34 dBi options. Because the variants differ materially in dimensions, gain and wind loading, the quotation should identify the exact part number rather than using RD-5G as the only ordering reference.
| Field | RD-5G30 guidance | RD-5G34 guidance |
|---|---|---|
| Brand | Ubiquiti | Ubiquiti |
| Product type | 5 GHz directional RocketDish antenna | 5 GHz directional RocketDish antenna |
| Frequency range | Official current range page indicates 4.9–5.8 GHz; regional and radio limits apply | Official current range page indicates 4.9–5.8 GHz; regional and radio limits apply |
| Gain | Approximately 26 dBi at 4.9 GHz and 30 dBi across the stated 5 GHz range, according to current Ubiquiti technical data | 30 dBi at 4.9 GHz and 34 dBi across the stated 5–5.8 GHz range, according to current Ubiquiti technical data |
| Beamwidth | About 5.8° HPOL and VPOL at 3 dB | About 3° HPOL and VPOL at 3 dB |
| Polarisation | Dual-linear | Dual-linear |
| Cross-polar isolation | 35 dB minimum | 35 dB minimum |
| Dimensions | Approximately 650 × 650 × 304 mm for the current RD-5G30 listing; confirm revision | Approximately 1050 × 1050 × 421 mm |
| Weight | Approximately 9.8 kg in the current RD-5G range data; confirm supplied revision | Approximately 13.5 kg |
| Wind survivability | Up to 200 km/h under published test conditions | Up to 200 km/h under published test conditions |
| Wind loading | Approximately 790 N at 200 km/h | Approximately 1,779 N at 200 km/h |
| Radio included | Not confirmed; antenna should be quoted separately from the compatible radio unless the bundle states otherwise | Not confirmed; antenna should be quoted separately from the compatible radio unless the bundle states otherwise |
| Availability | Contact FourTeck for current UAE model and revision options | Contact FourTeck for current UAE model and revision options |
Compatibility and dependency notice
The RocketDish is a passive antenna and does not include routing, switching, power or wireless management functions by itself. A compatible Ubiquiti outdoor radio, suitable power supply or PoE injector, shielded outdoor Ethernet cable, grounding method, surge protection and mounting hardware may be required. Compatibility can vary by radio generation, bracket type and package revision. Frequency availability, channel use and maximum transmit power are region dependent. FourTeck should review the exact radio model and deployment country before the bill of materials is finalised.
A practical purchase and deployment journey
Define the link
Document both endpoints, path distance, expected traffic, service priority, target availability and whether the connection is primary, backup or temporary.
Check the path
Review line of sight, Fresnel-zone clearance, terrain, rooftop obstructions, crane activity, future construction and suitable mounting heights.
Select antenna and radio
Choose the RD-5G variant and compatible radio using the link budget, spectrum conditions, throughput requirement and structural constraints.
Plan installation
Confirm poles, brackets, grounding, cable route, power, safe access, lifting needs, alignment tools and responsibility for civil or tower work.
Configure and validate
Align both ends, set region and frequency parameters correctly, test signal quality, verify throughput and record the final configuration.
Operate and maintain
Monitor link health, document changes, inspect mounts after severe weather and maintain access to configuration backups and replacement planning.
Directional gain, distance and alignment accuracy
The main reason to choose a RocketDish is directional gain. By focusing the radio signal into a narrower path, the antenna can improve the link budget between two fixed endpoints. This does not mean that every installation will achieve the same distance or capacity. Link performance is determined by transmit power, receiver sensitivity, antenna gain at both ends, cable and connector losses, path loss, channel width, modulation rate, interference and regulatory limits.
The 34 dBi model has a narrower published beamwidth than the 30 dBi model. A narrow beam can help concentrate the link and reduce reception from unwanted directions, but it also makes physical alignment more sensitive. A small movement at the mounting point may cause a larger signal change over a long distance. For that reason, the mast should be rigid, the mounting surface should be stable and installers should have safe access for fine adjustment.
Buyers should not select the largest dish automatically. A properly engineered 30 dBi solution may be more suitable where the path is shorter, the mount has limited loading capacity or easier alignment is valuable. Conversely, a longer path may justify the additional gain of the 34 dBi version, provided the site can support its larger dimensions and higher wind loading. FourTeck can use the endpoint details to help identify which variant belongs in the quotation.
Mechanical strength and rooftop planning
Outdoor wireless antennas are mechanical as well as radio-frequency components. The RD-5G34 is physically larger and has substantially greater wind loading than the 30 dBi dish. That difference affects pole diameter, bracket choice, mast strength, rooftop structure, tower capacity and safe installation method. Published wind survivability is not a substitute for structural assessment. Local building conditions, mounting height, gust exposure, corrosion, existing equipment and maintenance access all matter.
In Dubai and other Gulf environments, heat, dust, salt exposure near coastal locations and strong seasonal winds should be considered during planning. Fasteners, cable ties, grounding conductors and external cable jackets should be suitable for the environment. Cable routes should avoid sharp bends, standing water, heat sources and locations where maintenance teams may damage them. The antenna should not be mounted to a weak handrail, temporary pole or flexible support merely because the radio signal looks acceptable during an initial test.
The installation scope should state who supplies the pole, who approves rooftop penetration, who provides safe access, who is responsible for lightning and electrical grounding, and whether the work requires permits or landlord approval. Clarifying these items early prevents a product-only quotation from being mistaken for a complete installed project.
Radio pairing, spectrum and operational control
The antenna must be matched with a radio that supports the required frequency range, connector arrangement and mounting method. Ubiquiti has produced several generations of Rocket and airMAX radios, and compatibility should be checked against the exact model rather than assumed from the brand name. Software support, regional firmware behaviour and management platform requirements may also differ between generations.
Spectrum planning is equally important. The 5 GHz band is shared with many outdoor and indoor systems. A site that appears clear at one time may experience interference during busy periods or after new neighbouring networks are installed. A professional design considers channel availability, local regulations, radar-detection requirements where applicable, expected noise floor and the effect of channel width on capacity and resilience. Wider channels can offer more throughput under good conditions but may be harder to place in a congested band.
Operational teams should decide how the link will be monitored, who is allowed to change radio parameters and how configuration backups are maintained. A wireless bridge carrying business-critical traffic should have documented IP addressing, management access, passwords, firmware policy, alerting and escalation procedures. The antenna does not provide these controls itself, but the overall design should include them.
Ideal environments and practical use cases
Campus building links
Connect administration, teaching, residential or service buildings where a clear rooftop path exists. Confirm required capacity and whether the link will carry voice, video, access control or general data.
Industrial and logistics sites
Extend connectivity to yards, gates, warehouses or remote control points. Consider vehicle movement, cranes, metal structures, vibration and harsh environmental exposure.
Hospitality properties
Link separated resort facilities, staff areas or service buildings. The design should account for landscaping growth, guest-area aesthetics and maintenance access.
Surveillance backhaul
Transport traffic from remote camera locations when bandwidth, latency and resilience requirements have been calculated. Power and UPS planning remain separate considerations.
Service-provider links
Use as part of a managed airMAX network where RF planning, monitoring, spares, tower procedures and customer service levels are already defined.
Temporary operations
Support construction compounds or project offices when temporary mounts are engineered safely and the expected operating period, relocation plan and support responsibility are clear.
Integration and operational considerations
A point-to-point bridge usually connects into switches, routers, firewalls, VLANs and monitoring systems at both ends. Buyers should identify whether the wireless link will be a transparent Layer 2 bridge, part of a routed design or connected to a dedicated management network. Loop prevention, VLAN tagging, quality of service and spanning-tree behaviour may need review, especially when the link is added to an existing campus network.
Power is provided to the radio, not the passive dish. The correct PoE method must be confirmed for the selected radio. Outdoor shielded cabling and surge protection are normally important parts of the design. The Ethernet cable length, route and termination quality can affect reliability. Grounding should follow the radio manufacturer guidance and applicable electrical practices.
Where the link carries security cameras or access-control traffic, calculate peak bandwidth rather than using only average usage. Where it carries business applications, define acceptable outage time and determine whether a secondary path is required. A high-gain antenna improves the radio path but does not create automatic redundancy. Backup connectivity may require a second wireless route, fibre, mobile service or another independent technology.
Management should be restricted to authorised administrators. Default credentials should be changed, management interfaces should not be exposed unnecessarily and firmware should be handled under a controlled maintenance process. The exact radio platform determines the available security and management features.
Questions to resolve before requesting a quotation
What is the exact path distance?
Provide coordinates or an accurate site-to-site measurement. An approximate statement such as “far away” is not enough for link planning.
Is line of sight genuinely clear?
Include terrain, trees, buildings, cranes and planned construction. Fresnel clearance may require more height than visual line of sight alone.
What capacity is required?
State expected throughput in each direction and the applications that will use the link. Capacity depends on the complete radio design, not antenna gain alone.
Which radio will be installed?
Share the exact radio model if it already exists. FourTeck can then check bracket, connector and platform compatibility.
Can the structure carry the dish?
Confirm mast dimensions, roof or tower approval, wind exposure and safe access, particularly for the larger RD-5G34.
What services belong in the scope?
Clarify whether the quotation should include supply only, installation, alignment, cabling, configuration, testing, documentation and support.
Procurement checklist for RD-5G projects
☐ Exact antenna variant: RD-5G30, RD-5G30-LW or RD-5G34
☐ Required quantity and whether both link ends are included
☐ Compatible Ubiquiti radio model for each endpoint
☐ Approximate path distance and endpoint coordinates
☐ Clear line of sight and Fresnel-zone assessment
☐ Required throughput, latency and traffic type
☐ Permitted frequency range and country configuration
☐ Pole, tower or rooftop mounting details
☐ Wind loading and structural approval
☐ Outdoor cable, grounding and surge protection
☐ PoE injector or power requirement for the selected radio
☐ Installation, alignment and testing scope
☐ Documentation, monitoring and support expectations
☐ Delivery destination and preferred project schedule
How FourTeck can assist
FourTeck can help turn a broad request for “RD-5G” into a clearer bill of materials. The first step is identifying whether the project needs the 30 dBi or 34 dBi dish, and whether the buyer is requesting the antenna only or a complete radio link. This avoids a quotation that omits radios, PoE, cabling, surge protection, mounting items or professional services.
Requirement review can include endpoint distance, target capacity, existing Ubiquiti equipment, mounting conditions and expected operational role. Where a detailed radio survey or structural assessment is required, that work should be defined separately. FourTeck can also discuss installation and configuration scope, including physical mounting coordination, cable routing, radio setup, alignment, basic performance checks and handover documentation, subject to the final site conditions.
For broader network projects, buyers can review FourTeck technology products, explore available installation and configuration services, or send endpoint details through the FourTeck contact page. The quotation can then distinguish hardware, accessories, project work and any ongoing support requirements.
UAE availability and support guidance
Contact FourTeck to confirm current UAE availability for the exact RD-5G variant. Availability may depend on model, hardware revision, quantity and vendor lead time. A request that states only “RD-5G” may need clarification because the 30 dBi and 34 dBi dishes have different mechanical and radio characteristics. Delivery and project coordination can be discussed after the exact requirement is confirmed.
For deployments in Dubai, Abu Dhabi, Sharjah and Ajman, FourTeck can review the destination, mounting environment, radio pairing and requested services as one coordinated requirement. Installation and configuration scope should be included in the quotation when required. Rooftop permissions, tower access, structural work, civil work, electrical work and third-party approvals may remain customer or site-owner responsibilities unless specifically included.
Warranty terms should be confirmed against the supplied item and seller documentation at quotation stage. Buyers should also ask whether the quoted package contains only the antenna or includes brackets, RF jumpers, radio, PoE equipment or protective accessories. Clear package definition is particularly important when replacing an existing unit because older installations may use different mounting arrangements.
GCC Availability
FourTeck can assist organisations planning Ubiquiti RocketDish links across GCC markets by reviewing the required antenna variant, compatible radio, quantity, destination and deployment scope before quotation. Projects in the United Arab Emirates, Saudi Arabia, Kuwait, Qatar, Bahrain and Oman may have different frequency rules, import arrangements, site-access requirements and service conditions. Product availability, radio configuration, delivery schedules, installation visits and vendor lead times can therefore vary by country, model and quantity. Buyers should provide the destination country, exact RD-5G variant if known, endpoint distance, required throughput, radio preference, mounting environment and preferred project timeline. FourTeck can then coordinate product selection, quotation planning, accessories, configuration scope and installation requirements where applicable. For Kuwait-focused enquiries, the FourTeck Kuwait information portal may also help route the requirement. No local stock, fixed delivery schedule or country-specific approval should be assumed until confirmed in the quotation.
Africa Availability
Organisations planning outdoor wireless links in Africa can contact FourTeck for assistance with antenna selection, radio pairing, accessories, deployment planning and regional procurement coordination. Requirements differ widely between urban rooftops, remote industrial sites, campuses, agricultural locations and service-provider towers. Availability and fulfilment may depend on the destination, exact model, quantity, permitted frequency use, power arrangements, mounting conditions, shipping plan, vendor lead time and local installation capability. Buyers should share the destination country, endpoint coordinates, expected link distance, target capacity, quantity, preferred deployment schedule and any requirement for installation or support. FourTeck can help review these details before preparing a suitable quotation. Information for selected regional projects is available through FourTeck Africa, FourTeck Kenya and FourTeck Uganda. Local inventory, customs outcomes, immediate shipment and country-wide onsite coverage are not implied and must be confirmed for the specific project.
Related products, services and alternatives to review
Compatible airMAX radio
The antenna requires a suitable outdoor radio. The exact Rocket or airMAX model should be selected for the required capacity, software generation and regional settings.
RD-5G30-LW option
The lightweight 30 dBi RocketDish is a separate model with different dimensions and weight. It may be relevant where installation handling and structural loading are priorities.
Radome or isolation accessory
Environmental or co-location accessories may be considered where supported by the exact antenna model. Compatibility must be confirmed rather than assumed.
Surge protection and outdoor cabling
Shielded Ethernet cable, grounding and compatible surge protection are common supporting items for outdoor radios and should be included in the design.
Wireless link installation
Professional mounting, alignment, configuration and testing can be scoped separately from hardware supply based on access and site conditions.
Alternative backhaul technologies
Where line of sight is unavailable or the resilience target is higher, fibre, licensed wireless, 60 GHz or cellular solutions may deserve comparison.
Why businesses contact FourTeck for this requirement
A RocketDish purchase often begins with a model name but becomes a wider engineering and procurement question. FourTeck can help clarify whether the requested item is the antenna only, which gain level is suitable, which radio is compatible and which accessories belong in the bill of materials. This practical review helps procurement teams compare like-for-like quotations and reduces the risk of missing power, cabling, mounting or protection components.
Businesses also contact FourTeck to discuss installation planning, configuration scope, link-alignment responsibilities and regional delivery coordination. The objective is not to promise a result before the path is assessed, but to make dependencies visible. Buyers receive clearer questions to answer, a better-defined scope and a quotation that can separate equipment from project services. More information about the company is available on the FourTeck company page.
Frequently asked questions
Is RD-5G one exact antenna model?
No. Ubiquiti uses RD-5G for a RocketDish range that includes 30 dBi and 34 dBi variants. The exact part number should appear in the quotation.
Does the RocketDish include the wireless radio?
The RD-5G is an antenna. A compatible outdoor radio is required. Package contents can vary, so the quotation should state whether a radio, bracket, RF jumpers, PoE equipment and accessories are included.
Should I choose 30 dBi or 34 dBi?
The decision depends on path distance, link budget, beamwidth, interference, mounting strength, wind loading and alignment access. The larger number is not automatically the better choice for every site.
Can it be used for mobile 5G service?
No. The product name refers to operation in the 5 GHz wireless band. It is not a cellular 5G modem antenna.
What information is needed for link sizing?
Provide endpoint coordinates, distance, required throughput, mounting heights, line-of-sight conditions, existing radio models, deployment country and service expectations.
Is a clear visual path enough?
Not always. A workable link also needs adequate Fresnel-zone clearance, manageable interference and a suitable link budget. Terrain and future obstructions should be considered.
Can FourTeck include installation and configuration?
Installation, alignment, configuration and testing can be discussed as a separate scope. Site access, structural work, cable routes and customer responsibilities must be confirmed.
Is the RD-5G currently available in Dubai?
Contact FourTeck to confirm current UAE availability. Supply can vary by exact model, quantity, revision and vendor lead time.
What warranty applies?
Warranty guidance should be confirmed in the formal quotation and supplied documentation. No specific warranty term should be assumed from the product family name alone.
What should a complete quotation contain?
It should identify the exact antenna, quantity, compatible radios, power equipment, cabling, surge protection, mounts, delivery destination and any installation, configuration or support services.
Confirm the correct RocketDish variant before ordering
Send the endpoint distance, required capacity, mounting details, preferred radio and delivery location. FourTeck can review the requirement and coordinate a model-specific quotation.


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