HPE Aruba WiFi Coverage Planning in Dubai, UAE
Good wireless design begins before access points are mounted. HPE Aruba WiFi coverage planning helps translate floor plans, user demand, building conditions, application expectations and Aruba platform choices into a practical wireless design that can be reviewed before procurement and installation.
Planning a new or refreshed WLAN?
Share your floor plans, expected user numbers, critical applications and known coverage concerns. FourTeck can help define the planning and survey scope.
Direct answer: what does WiFi coverage planning achieve?
HPE Aruba WiFi coverage planning is the design work used to decide how an Aruba wireless LAN should cover a specific building or outdoor area. It is mainly used to estimate access-point positions and quantities, understand expected RF coverage, plan for client density and roaming, and identify where building materials or interference could affect service. It should be considered by organisations planning a new Aruba deployment, refreshing an existing WLAN, expanding into a new area, or investigating recurring coverage complaints. Before proceeding, a buyer should confirm the latest floor plan, site scale, user and device counts, critical applications, expected wireless bands, existing network details, mounting restrictions, cabling availability and whether predictive planning must be supplemented by an on-site or post-deployment validation survey.
What the planning service does
Coverage planning turns a physical site and a set of business requirements into an RF design. The work may begin with drawings or measured floor plans, then model walls, open areas, ceilings, high-density spaces and known obstacles. The designer considers where users will actually work, move, scan, call, collaborate or connect operational devices rather than treating every square metre as identical.
For an Aruba environment, the outcome may be used to support access-point selection, estimated AP counts, proposed mounting locations, band planning, cable and switch-port preparation, and a better-defined bill of materials. Where an existing WLAN is already live, the work can also be shaped around observed complaints and validation goals rather than only greenfield design.
Who should consider it
The service is useful for IT managers, infrastructure teams, fit-out contractors, consultants, facility owners, system integrators and procurement teams that need a defensible design basis before ordering wireless hardware. It is particularly important when voice, video, handheld scanners, mobile workstations, guest access, collaboration applications or high client densities make simple coverage estimates inadequate.
Offices, hospitality properties, education sites, healthcare facilities, logistics buildings, warehouses, retail environments, multi-floor premises and mixed indoor-outdoor sites can all have very different RF behaviour. The correct survey method and deliverables should therefore be agreed for the actual site rather than copied from another project.
Business challenges the design should address
Coverage gaps
Rooms, corners, stairwells, meeting areas or service zones may receive a weaker signal because of walls, doors, lift cores, shelving or unsuitable AP placement. Planning helps expose likely weak areas before mounting locations are fixed.
Too many clients in one area
Coverage alone does not prove capacity. Conference rooms, training halls, classrooms, hotel public areas and waiting zones may require design decisions based on simultaneous devices and application demand.
Roaming inconsistency
Mobile workers, voice devices and scanners may move between AP cells. The design should consider the overlap and RF conditions needed for the intended client behaviour, while recognising that final roaming also depends on client capabilities and WLAN configuration.
Interference and attenuation
Neighbouring WLANs, non-WiFi RF sources, thick walls, metal racks, glass, machinery and changing inventory can alter wireless performance. A complex environment may require physical measurements rather than predictive modelling alone.
Core planning outcomes
Expected RF reach across the required areas, interpreted by band and environmental assumptions.
Proposed locations that balance coverage, capacity, installation practicality and client use patterns.
Design consideration for user concentrations, device counts and applications instead of area alone.
Information that can guide cable drops, PoE planning, mounting coordination and a later validation survey.
Is this planning approach suitable for your project?
| Business situation | Relevant assistance | Scope dependency |
|---|---|---|
| New office or fit-out | Predictive RF design, AP positioning and coverage review | Accurate scaled floor plans and expected room use |
| Existing Aruba WLAN with weak areas | Survey, measurement and redesign guidance | Live network access, current AP map and complaint details |
| Warehouse or industrial facility | RF planning plus physical assessment where required | Racking, ceiling height, inventory, device and movement patterns |
| High-density room or venue | Capacity-led design and AP placement review | Peak simultaneous clients, application mix and client capabilities |
| Post-installation assurance | Validation survey and comparison against design expectations | Installed AP locations, configuration and agreed acceptance targets |
Buyer information for HPE Aruba WiFi coverage planning
| Topic | HPE Aruba WiFi Coverage Planning |
|---|---|
| Main purpose | Plan and validate wireless coverage, capacity and AP placement for an Aruba WLAN |
| Suitable for | New sites, network refreshes, expansions, high-density areas and troubleshooting projects |
| Typical environments | Offices, hotels, schools, healthcare, retail, logistics, warehouses, campuses and mixed indoor/outdoor sites |
| Assessment support | Requirement review, drawing review, existing-network information and coverage concerns |
| Planning support | Predictive RF planning, AP positioning concept, capacity considerations and band-aware coverage review as agreed in scope |
| Validation support | On-site, passive, active or post-installation validation may be included where the project requires it |
| Management platform considerations | Aruba Central and other Aruba management choices should be confirmed for the selected architecture |
| Customer inputs required | Scaled plans, area purpose, occupancy, device types, applications, existing infrastructure and installation constraints |
| Availability guidance | Contact FourTeck to confirm current UAE service availability, site-visit requirements and scheduling |
| Important notes | Final scope, AP model, licensing, installation, measurements and acceptance criteria depend on the project and must be confirmed before quotation |
Planning assumptions and dependencies matter
A predictive design is only as useful as its inputs. A floor plan with the wrong scale, missing partitions, unknown ceiling heights or outdated room layouts can lead to misleading AP locations. Similarly, a design based on general internet browsing cannot account for the actual mix of laptops, phones, scanners, IoT devices or voice endpoints expected at the site. The planning process should therefore document assumptions and distinguish confirmed information from estimates.
Wireless band choice also affects coverage. 2.4 GHz, 5 GHz and 6 GHz do not propagate identically, and client support varies. If the project uses Wi-Fi 6E or later Aruba access points with 6 GHz capability, the design should explicitly consider 6 GHz coverage rather than assuming a 5 GHz cell automatically provides the same result. Licensing, Aruba Central subscriptions, switching, PoE, antennas, mounting accessories and software features should be confirmed separately for the selected Aruba architecture.
A practical engagement journey
Define the requirement
Identify business areas, floor count, occupancy, devices, applications, mobility patterns, guest needs, expected growth and known trouble spots. Decide whether this is a new design, refresh or diagnostic project.
Prepare site information
Provide accurate floor plans, dimensions, wall materials, ceiling heights, restricted mounting locations, switch rooms, cabling paths and any existing AP or switch information that may influence the design.
Model or measure RF
Carry out predictive design and, where justified, on-site measurements. Complex sites may need physical validation to account for RF conditions that a drawing cannot fully represent.
Review design outputs
Assess AP placement, quantity, band coverage, capacity assumptions and implementation constraints. Resolve locations that conflict with ceilings, aesthetics, power, cable reach or operational restrictions.
Build the project scope
Convert the design into a procurement and implementation scope covering Aruba APs, licenses or subscriptions, switching and PoE, mounting, cabling, configuration, installation and project documentation as required.
Validate after installation
Where acceptance criteria require it, perform a post-deployment survey and verify that the installed network aligns with the agreed design goals. Remediation can then be based on measurements rather than assumptions.
Coverage and capacity are different design questions
A network can show signal coverage and still perform poorly if too many active clients contend for airtime in one area. That distinction is central to enterprise wireless design. A general office floor with distributed users may need a different AP layout from a training room where hundreds of devices appear at the same time, even if both spaces have similar dimensions.
Planning should therefore ask what users will do, not only where they will stand. Video meetings, voice calls, cloud applications, handheld scanners and guest internet access place different demands on the WLAN. Device capabilities, channel width choices, available spectrum and the intended Aruba AP family also influence the outcome. The design should capture peak demand and define which areas are coverage-led versus capacity-led.
This is also why a simple square-metre-to-AP calculator is not a substitute for RF planning. A preliminary quantity estimate may help budgeting, but it should not be treated as a final design until the physical site and usage model are reviewed.
Floor plans are engineering inputs, not decoration
A predictive wireless model places the building into software so that RF behaviour can be estimated across the site. The plan must be scaled correctly, and wall types should be represented with reasonable accuracy. Concrete, blockwork, glass, lightweight partitions, lift shafts, fire doors, metal storage and machinery can affect signal differently.
For fit-out projects, the latest approved drawing is preferable to an early concept plan. If furniture or partition layouts are still changing, that uncertainty should be recorded. In warehouses, rack locations and expected product storage can matter. In hospitality, room walls and corridor geometry are relevant. In campuses, atriums, staircases and outdoor transitions may need separate attention.
FourTeck can review the information available and identify where a planning assumption is too uncertain to rely on without a site check. This helps avoid turning an inaccurate drawing into an apparently precise heatmap.
Planning for 2.4 GHz, 5 GHz and 6 GHz
Modern Aruba WLANs may operate across multiple bands, but the design should not assume that all clients use all bands or that signal behaves identically on each one. 2.4 GHz can travel differently through a site from 5 GHz, while 6 GHz introduces another propagation profile and depends on compatible client devices and regulatory support. Aruba Central floor-plan views can present heatmap coverage by band, which reinforces the need to understand each band separately when reviewing a design.
For a refresh from an older dual-band WLAN to a Wi-Fi 6E or Wi-Fi 7 architecture, a buyer should ask whether the existing AP grid remains appropriate. In some environments, a design created around 5 GHz coverage may not provide the same 6 GHz experience through dense walls. Conversely, adding APs without analysing channel reuse and capacity can create unnecessary contention. The correct approach is to define the performance objective, client mix and priority band, then validate the proposed AP density for the actual building.
The selected Aruba AP model, antenna type, mounting height, transmit power strategy and local regulatory domain also matter. Coverage planning should support these product decisions rather than happen after hardware is already ordered.
Where HPE Aruba coverage planning is particularly useful
Corporate offices
Plan coverage for open offices, meeting rooms, executive areas, collaboration spaces, reception, pantries and high-density rooms while considering roaming and the reality of laptop-and-phone use.
Hotels and hospitality
Guest rooms, corridors, conference facilities, restaurants, back-of-house areas and outdoor spaces can have different wall attenuation and density patterns. A single AP spacing rule is rarely enough.
Education and training
Classrooms, labs, libraries and auditoriums can create concentrated device demand. Planning can separate normal coverage needs from capacity hotspots and roaming paths.
Warehouses and logistics
High ceilings, metal racks, moving inventory, scanners and vehicles create a changing RF environment. HPE guidance treats warehouses as a specialist design case, so physical survey work may be appropriate.
Healthcare environments
Mobile clinical devices, voice, telemetry-related workflows and restricted rooms can make application and mobility requirements more important than simple internet access coverage.
Retail and public areas
Customer WiFi, payment-related connectivity, staff devices, scanners and busy public zones can create mixed coverage and density requirements that should be mapped before installation.
Integration and operational considerations
Wireless coverage is only one part of the access network. The AP plan must also fit the wired infrastructure that powers and carries traffic from the access points. Before finalising locations, the project team should review PoE capability, switch-port availability, cable distances, pathways, ceiling access, mounting surfaces and any requirement for outdoor-rated hardware. A theoretically excellent AP location may be impractical if cabling cannot reach it or the ceiling type prevents the intended mount.
The WLAN design should also align with VLANs, IP addressing, authentication, guest access, policy, firewalling, DHCP, DNS, internet capacity and upstream switching. These items may be outside a pure RF planning scope, but they influence deployment success and should not be left unresolved. Aruba Central subscriptions or other management and licensing elements must be confirmed for the chosen architecture; the planning service does not imply that a license is included with hardware.
Operational teams should decide who will monitor the WLAN, respond to user complaints, manage AP firmware, review alerts and coordinate future moves or expansions. If the site changes significantly after installation, the RF design may also need to be revisited. New partitions, added warehouse racks, higher occupancy, changed application demand or new neighbouring wireless systems can alter conditions over time.
Questions to resolve before requesting a quotation
The required survey type is different when the goal is to design before installation versus diagnose or validate an operational WLAN.
Confirm drawing scale, recent partition changes, ceiling heights, wall types and whether multiple floors or outdoor zones are included.
Identify laptops, phones, scanners, voice endpoints, tablets, IoT and any application that has a strict mobility or latency expectation.
Average headcount is not enough for classrooms, event areas or meeting spaces. Peak density should be captured by zone.
Share proposed AP family, management platform, existing Aruba assets and licensing assumptions if they are already known.
Agree whether the project ends with a predictive design or includes on-site verification and acceptance reporting after deployment.
Procurement and planning checklist
How FourTeck can assist
FourTeck can help turn the initial requirement into a defined planning scope. That may include reviewing building drawings, discussing user density and application behaviour, identifying whether a predictive survey is appropriate, coordinating an on-site assessment where required, and translating the design into hardware, licensing, installation and configuration requirements.
For buyers who already have an Aruba design, FourTeck can also help review the information needed for a quotation and identify missing procurement inputs such as mounting accessories, switch ports, PoE capacity, subscriptions, implementation services or validation activity. Visit the FourTeck services overview for related technical assistance or explore the business technology product range when the project moves into procurement.
What to expect from a scoped design engagement
The exact deliverables depend on the quotation. A basic predictive design may focus on floor-plan modelling, proposed AP locations and coverage views. A broader engagement may add site inspection, RF measurements, validation, design review meetings, implementation notes or post-deployment testing. Buyers should ask for the deliverable list to be written into the scope rather than assume every activity is included.
FourTeck can coordinate the commercial and technical discussion so that the RF planning output supports a buildable solution. For organisation background and contact routes, see about FourTeck or use the Dubai contact page to share project details.
UAE availability and support guidance
Contact FourTeck to confirm current UAE availability for HPE Aruba WiFi coverage planning. The ability to perform desktop planning, arrange an on-site visit, coordinate installation or provide post-deployment validation can depend on the building location, project size, floor count, security requirements, working-hour restrictions and the information available from the customer. If hardware procurement is part of the project, product availability may additionally depend on the exact Aruba AP model, quantity, licenses or subscriptions, accessories and vendor lead time.
For an accurate quotation, share the Dubai site address, latest floor plans, number of floors, approximate area, required coverage zones, expected occupancy, existing Aruba infrastructure and desired project schedule. Installation and configuration scope should be included in the quotation when required rather than assumed to be part of the planning service.
Dubai, Abu Dhabi, Sharjah and Ajman project coordination
FourTeck can discuss Aruba wireless planning requirements for organisations with sites in Dubai, Abu Dhabi, Sharjah and Ajman as one coordinated UAE engagement. This is useful when a business wants a consistent design approach across several branches but still needs each building to be assessed on its own floor plan, occupancy, construction and operational constraints. A multi-site project should not assume one AP count or one heatmap applies everywhere. Share the location, site type, floor count, user demand and desired scope for each premises so the quotation can distinguish common design standards from location-specific survey, travel, installation or validation requirements.
GCC Availability
Organisations planning Aruba wireless networks across the Gulf can ask FourTeck to review project requirements beyond a single UAE site. Coverage-planning assistance can be discussed for GCC projects involving the United Arab Emirates, Saudi Arabia, Kuwait, Qatar, Bahrain or Oman, with the exact commercial and technical scope defined for each destination. FourTeck can help collect site drawings, compare wireless requirements, clarify likely survey methods, prepare model and license questions, coordinate quotations, and align installation or validation needs with the wider procurement plan. Product availability, licensing rules, delivery schedules, service visits, project access and vendor lead times can vary by country, model, quantity and requirement. Buyers should therefore share the destination country, exact Aruba products or service need, quantity, license term, deployment location and expected project schedule before relying on a budget or design assumption. For Kuwait-related technology enquiries, the FourTeck Kuwait resource may also help route the discussion.
Africa Availability
FourTeck can also discuss HPE Aruba wireless planning and related procurement requirements for organisations working across African markets. A regional project may involve new offices, education sites, hospitality properties, warehouses or branch networks that need a common design framework but different site-specific RF assumptions. FourTeck can help buyers organise the information needed to evaluate access points, licenses, subscriptions, switching, mounting, deployment scope, support expectations and post-installation validation. Availability and fulfilment may depend on destination, exact model, quantity, license region, power and regulatory requirements, shipping arrangements, vendor lead time and local project conditions. Buyers should provide the destination country, exact requirement, quantity, preferred deployment schedule and any installation or support expectations before a quotation is finalised. For East Africa enquiries, see FourTeck resources for Kenya technology projects and Uganda technology requirements; broader regional requests can begin through the FourTeck Africa portal.
Related options and project components
HPE Aruba access points
The final AP family should be selected after coverage, capacity, client and environmental requirements are understood. Indoor, outdoor and specialist models have different roles.
Aruba Central planning
Management and subscription requirements should be confirmed for the selected architecture. Floor-plan and heatmap functions can support operational visibility after deployment.
PoE switching and cabling
AP placement creates wired requirements. Switch capacity, power budget, port speed, cable routes and rack locations should be checked before installation.
Wireless installation
Mounting, patching, labelling, AP adoption and configuration can be quoted as separate implementation activities when required by the project.
Post-deployment validation
A validation survey can compare installed performance against agreed design criteria and identify areas requiring adjustment after the WLAN goes live.
Existing WLAN troubleshooting
Where users already report drops, low throughput or unreliable roaming, measured diagnostics may be more valuable than a design-only exercise.
What buyers are really trying to solve before installing Aruba WiFi
Many wireless projects begin with the question, “How many access points do we need?” That is understandable for budgeting, but the useful answer depends on more than floor area. Current buyer research around WiFi heatmaps, predictive surveys and Aruba design repeatedly centres on AP placement, floor-plan quality, coverage versus capacity, survey types, 6 GHz behaviour, interference and post-installation validation. The better starting question is therefore: what service level does each part of the building need, and what site facts affect the RF design?
Do not buy AP quantity from area alone
Square metres can support an early budget estimate, but two buildings of the same size can need different designs. Concrete partitions, glazing, ceiling height, room density, user behaviour and application requirements can change AP positions and quantities. High-density rooms may need more capacity even where signal strength looks adequate. Warehouses can need specialist treatment because metal racks, inventory and height affect propagation.
A heatmap is a model or measurement, not a promise
A predictive heatmap estimates how signal should propagate based on the information entered into the planning tool. A measured heatmap reflects the network and RF conditions observed during an on-site survey. Both are useful, but they answer different questions. Buyers should ask whether a report is predictive, passive, active, validation-based or a combination, because the method affects what conclusions can reasonably be drawn.
For a new Dubai office with reliable architectural drawings and ordinary enterprise use, predictive planning may provide a strong starting point for AP placement and bill-of-material preparation. HPE Aruba guidance notes that predictive tools can provide reliable AP location estimates in typical environments such as offices, schools and hotels. For manufacturing, warehousing or other complex RF spaces, the same guidance recognises that physical survey activity may be needed to measure WiFi and non-WiFi interference. This distinction matters because a buyer should not pay for unnecessary field work, but should also not rely on a desktop model where the environment is too uncertain.
Another recurring question is whether an existing Wi-Fi 5 or Wi-Fi 6 AP layout can simply be reused for 6 GHz. That decision should be made carefully. The 6 GHz band gives compatible clients access to additional spectrum, but propagation and wall loss are not identical to lower bands. If a project is moving to Wi-Fi 6E or Wi-Fi 7 capability, the design should explicitly examine where 6 GHz service is expected and which client devices can use it. In dense buildings, thick materials may influence how many AP cells are required for the desired 6 GHz experience.
Buyer insight: define acceptance before the survey
A useful survey brief states what the network is expected to support. Instead of requesting “full coverage,” specify important zones, client types, application behaviour, roaming expectations and whether the organisation has a preferred minimum signal or quality target. The final thresholds should be agreed for the project rather than copied blindly from another WLAN. This makes the design report easier to interpret and the later validation survey easier to judge.
Buyers also search for the difference between predictive, passive and active surveys. Predictive planning happens before a live network is required and uses a digital model of the site. A passive survey listens to the RF environment and can map observed signal, noise and channel conditions without necessarily joining the network. An active survey associates to the WLAN and can examine user-path behaviour such as throughput, loss or responsiveness. Post-deployment validation often combines measurements and design review to answer a practical question: did the installed network achieve the agreed objective?
The most common mistake is to treat the wireless designer as isolated from the construction and wired-network teams. Proposed AP locations must be buildable. Ceiling access, mounting hardware, cable containment, PoE switch capacity, cable distance, rack positions and aesthetics can force changes. A good workflow catches those conflicts before installation. For a fit-out, it is useful to review the WiFi plan alongside electrical, low-current and interior drawings rather than after the ceilings are closed.
When preparing a quotation request, the buyer can accelerate the process by sending the latest scaled drawings, approximate area, floor count, room use, peak headcount, important devices, expected Aruba architecture, existing AP and switch list, known dead zones, preferred project schedule and whether onsite validation is required. FourTeck can then help identify what is still missing and separate RF planning from hardware, licensing, cabling, installation and configuration costs. That separation gives procurement teams a clearer comparison between quotations and reduces assumptions hidden inside a single project price.
Practical questions to answer before you approve the design
Can a predictive design replace an on-site survey?
Sometimes, but not universally. If the environment is typical and the drawings accurately represent walls, dimensions and usage, predictive planning can be an efficient way to design AP locations before installation. If the site contains complex RF obstacles, uncertain construction, heavy machinery, very high ceilings or unexplained interference, physical measurements may be needed. The choice should follow site risk and acceptance requirements rather than a fixed rule.
How should we estimate the number of Aruba access points?
Use floor area only as an early budgeting input. Final AP count should reflect wall attenuation, occupancy, device density, required bands, application demand, mounting height, antenna characteristics and capacity hotspots. The best count is the quantity needed to meet the stated design objective with sensible channel reuse and buildable locations. FourTeck can use the planning stage to turn these inputs into a more defensible quantity for procurement.
Do we need separate planning for 6 GHz?
If 6 GHz service is part of the WLAN objective, it should be reviewed explicitly. Compatible Aruba APs may support 6 GHz, but client support and propagation differ from lower bands. The design should show where 6 GHz is expected to be usable and avoid assuming that an older 5 GHz cell pattern automatically delivers the same experience. Dense walls and special rooms may influence the AP grid.
What information does FourTeck need from our facilities team?
The most valuable inputs are current scaled plans, wall and ceiling information, room purpose, floor count, equipment rooms, cable routes, ceiling restrictions, restricted areas and any construction changes not shown on the drawing. For warehouses, rack layout and storage height may matter. For fit-outs, planned partitions and furniture density can help prevent a design from being based on an empty shell that will not match the finished site.
Should the quotation include installation and configuration?
Only if you want those services included. Coverage planning can be quoted as a standalone design activity, while AP mounting, cabling, switching, Aruba Central setup, SSID configuration, authentication, policy work and validation can be separate scope items. Ask the supplier to state what is included so procurement can compare like with like and avoid assuming that a heatmap includes implementation.
When is a post-installation validation worth adding?
Validation is especially useful when the WLAN supports critical mobility, high-density areas, voice, operational scanners, guest-service expectations or a formal acceptance process. It provides measured evidence after APs are mounted and the building is closer to normal operating conditions. If results differ from the predictive model, the project team can investigate configuration, mounting, power, interference or environmental factors before sign-off.
Why businesses contact FourTeck for Aruba wireless planning
The practical value is not a generic claim about better WiFi. Buyers usually need help connecting several decisions that are owned by different teams. Facilities may own floor plans and ceiling restrictions. IT may own Aruba architecture, authentication and switching. Procurement may need exact quantities, subscriptions and installation costs. A fit-out contractor may need cable-drop coordinates before ceilings are closed. The planning exercise creates a common technical basis for those discussions.
FourTeck can help clarify requirements, review whether the selected Aruba product direction fits the site, identify licensing or management questions that still need confirmation, coordinate survey and design scope, assist with bill-of-material preparation, and include installation or validation work in the quotation when requested. This is intended to reduce assumptions before ordering, not to guarantee a particular RF outcome without the required site information and verification.
Frequently asked questions
What is HPE Aruba WiFi coverage planning?
It is the process of designing or assessing an Aruba wireless LAN against the physical site and business requirements. It can include floor-plan modelling, RF coverage prediction, capacity considerations, AP placement, survey work and post-installation validation depending on scope.
Can FourTeck plan coverage before the access points are purchased?
Yes. Predictive planning is commonly used before installation to estimate AP placement and coverage from scaled drawings and project assumptions. Exact deliverables and whether a physical site survey is also required should be confirmed first.
Does a heatmap guarantee wireless performance?
No. A predictive heatmap is a model based on assumptions, while a measured heatmap reflects observed conditions during a survey. Real performance also depends on clients, configuration, interference, applications and the final installation.
What floor-plan information is required?
Provide the latest scaled plan where possible, including floor dimensions, partitions, room use, ceiling heights and unusual materials or obstacles. Warehouses should also share rack and storage details when relevant.
Is predictive planning enough for a warehouse?
It may be a useful starting point, but warehouses can be complex because of metal racks, changing inventory, high ceilings and mobile operational devices. A physical survey or validation activity may be appropriate depending on the site.
Can the design include 6 GHz coverage?
Yes, where the selected Aruba architecture and client requirements include 6 GHz. Coverage should be evaluated separately because propagation and device support differ from 2.4 GHz and 5 GHz.
Are Aruba licenses or subscriptions included in the planning service?
Not automatically. Licensing and subscriptions depend on the selected Aruba products, management architecture and quotation. FourTeck can help identify what needs to be confirmed for procurement.
Can installation and configuration be included?
They can be discussed as part of the project scope. AP mounting, cabling, switching, configuration, Aruba Central setup and validation should be explicitly listed in the quotation when required.
How do we request a Dubai quotation?
Send the site location, floor plans, area or floor count, user and device estimates, key applications, current Aruba equipment if any, desired timeline and whether on-site survey or post-installation validation is required.
Build the Aruba WLAN from verified site requirements
Share your drawings, expected users, critical applications and deployment constraints. FourTeck can help define the appropriate coverage-planning scope, identify the information needed for accurate AP sizing, and prepare a quotation for the Dubai project.