Starlink High-Performance Wall Mount

Starlink High-Performance Wall Mount
Key Features
Brand: Starlink
Designed specifically for Starlink High Performance dishes
Heavy-duty construction for secure outdoor mounting
Weather-resistant coating for long-term durability
Adjustable tilt and swivel for better satellite positioning
Suitable for residential and commercial installations

1 Year Warranty

KSh 10,200.00

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Features & Compatibility

Starlink High-Performance Wall Mount
Key Features
Brand: Starlink
Designed specifically for Starlink High Performance dishes
Heavy-duty construction for secure outdoor mounting
Weather-resistant coating for long-term durability
Adjustable tilt and swivel for better satellite positioning
Suitable for residential and commercial installations

1 Year Warranty

Starlink High-Performance Wall Mount

The Starlink High-Performance Wall Mount provides maximum structural stability, severe weather resilience, and permanent exterior installation tailored for commercial shipping facilities, enterprise field offices, rural data hubs, and mobile command trailers. Built from high-gauge, weather-treated materials, the mounting framework fastens onto concrete, brick, or heavy timber using industrial anchor bolts. By holding the large, non-actuated flat phased array antenna at an optimal extension distance and angle, it ensures continuous network availability while protecting the hardware from ground-level hazards, flooding, or deep snowdrifts.

Key Features
    • Heavy-Gauge Structural Core: Built with thick-walled metal tubing and reinforced plates to handle the heavy physical footprint of high-performance dishes.
    • Extended Reach Clearance: Extends the dish outward past wall structures, preventing building overhangs, gutters, or architectural trims from blocking the wider 140-degree satellite field of view.
    • Industrial Powder-Coat Armor: Coated with a marine-grade, weather-resistant finish that prevents rust, oxidation, and structural scaling under constant exposure.
    • Precision Mechanical Swivel Joint: Outfitted with a heavy-duty pivot hinge and dual locking bolts to adjust and secure the fixed tilt angle safely.
    • Hollow-Tube Cable Management: Features an internal routing path that passes the rugged network cable through the inside of the support arm, shielding it from wind tear and UV degradation. 
    • High-Load Base Plate Assembly: Deploys an expanded, multi-point mounting footprint designed to distribute weight safely across commercial structural frames or concrete walls.


Technical Specifications

Feature Engineering Specification
Product Model Starlink High-Performance / Flat HP Wall Mount Kit
Structural Composition Powder-Coated Galvanized Steel or Marine-Grade Die-Cast Aluminum
Maximum Wind Weight Capacity Engineered to withstand continuous operational wind loads up to 175+ mph (280+ km/h)
Wall Extension Distance Typically extends 300 mm to 500 mm (~12″ to 20″) off the vertical surface
Chassis Tilt Configuration Adjustable mechanical swivel joint with integrated lock-nuts
Hardware Attachment Style Custom locking bracket interface matching the High-Performance base slot
Environmental Protection Salt-spray tested, rust-proof, and fully UV-stabilized for extreme climates
Mounting Plate Footprint Heavy-duty, reinforced 4-hole or 6-hole pattern matching structural joists
Gross Hardware Weight 3.5 kg to 5.8 kg (Depending on exact structural extension length)


High-Utility Operation Capabilities
1. Internal Cable Conduit Armor
Unlike older mounting brackets that require securing network lines to the outside of the framework using zip ties, this high-performance mount features a completely hollow interior core. The thick, pre-terminated enterprise network cable passes directly through the base plate and inside the support arm, plugging into the dish internally. This configuration completely eliminates wind flutter and protects the cable jacket from weathering, sun rot, and debris impact.
2. High-Load Aerodynamic Wind Resistance
The Starlink High-Performance dish features a much larger physical surface area than consumer models, acting as a sail that increases wind drag during storms. This mount counteracts high-wind load strain by deploying heavy-gauge metal wall plates and thick-walled support tubes. The entire assembly absorbs severe structural vibrations, preventing the microscopic movements that can cause data packet dropouts or temporary satellite disconnections. 
3. Strategic Eave and Horizon Bypass
By utilizing an elongated extension arm, the mount shifts the physical position of the flat phased array outwards from the building line. This clearance allows the wide 140-degree field of view of the high-performance antenna to look past structural gutters, downspouts, and low roof edges. This flexibility allows for low-profile mounting on side walls while maintaining a clear view of passing satellites lower on the horizon

Frequently Asked Questions
  • Can I mount this bracket onto standard residential vinyl or wood siding?
    Fastening this heavy bracket solely into thin siding or hollow backing is highly dangerous. Due to the weight of the high-performance hardware and the intense wind forces it generates, you must ensure the mounting bolts pass completely through the cosmetic exterior siding and bite directly into solid wood wall studs, structural steel frames, or concrete
  • Is this mount compatible with the standard residential Gen 2, Gen 3, or Starlink Mini dishes?
    No. This accessory features a heavy-duty retention locking plate built exclusively to match the specific physical footprint, bolt patterns, and weight metrics of the High-Performance and Flat High-Performance dishes. Consumer-grade dishes use completely different round pole stems or kickstand socket connectors.
  • How do I properly align the dish once it is locked onto the wall mount?
    Before tightening the main pivot locking bolts on the bracket hinge, open the Starlink smartphone app and select the Alignment tool. Slowly adjust the physical angle and direction of the dish by hand until the application confirms optimal alignment with the overhead LEO satellite array, then torque down the security bolts to lock it firmly in place.

Additional information