Description
The Giant Free Fall Tower is constructed using high-yield structural steel, engineered to withstand rigorous wind loads while serving as a central, LED-illuminated architectural landmark for regional theme parks. The outward-facing, ergonomic passenger gondola is elevated via a heavy-duty, PLC-controlled industrial winch system, delivering a steady ascent before a precise, gravity-driven drop.
Mechanically, the tower prioritizes extreme redundancy and reduced operational overhead. The descent is arrested entirely by an advanced permanent magnetic braking system (Eddy Current Brakes). Unlike traditional hydraulic or friction pads, this magnetic technology requires absolutely zero physical contact. This eliminates mechanical wear on the tracks, drastically reducing routine maintenance costs and downtime. Most importantly, as a fail-safe mechanism, the magnetic deceleration functions flawlessly independent of the electrical grid, ensuring an ultra-safe passenger landing even in the event of a total site power failure.
Giant Free Fall Tower Product Specifications Overview
Note: The technical specifications below are based on our standard configuration and are for reference only. Key parameters including tower height, passenger capacity, and power requirements can be fully customized to fit your specific site conditions.

| Power Consumption | 90KW |
| Capacity | 16 persons |
| Ride Height | 24m |
| Operating Altitude | 20m |
| Speed | 6m/s |
| Area | 12m * 12m |
| Net weight | 30 tons |
| Power Requirements | 3N+PE 380V/220 50Hz |
| Led lights | included |
| Ride Time | 2 minutes |
| Material of cabin | Steel + FRP |
Product Display




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FAQ
A: The permanent magnetic braking system requires no electricity to function. It uses fail-safe eddy currents to guarantee a smooth, frictionless deceleration to the ground under any circumstances.
A: We engineer giant free fall towers ranging from 50 meters up to over 100 meters, strictly customized to your park’s master plan and local airspace regulations.
A: No. Because the magnetic fins never physically touch the drop vehicle, there is zero friction and zero mechanical wear, resulting in a practically maintenance-free braking system.
A: It requires a massive, deep-piled reinforced concrete foundation. We provide comprehensive civil engineering blueprints tailored to your specific soil conditions.
A: The control system is integrated with an anemometer. The ride will automatically halt operations if wind speeds exceed the safe threshold, ensuring absolute rider safety.




