Description
Foldable Stretcher Two-Fold Aluminum Orange (SST2FALO) – The Industry Standard for Lightweight Emergency Rescue
In the demanding world of emergency medical services, the Shanti Foldable Stretcher Two-Fold Aluminum Orange (SST2FALO) represents the gold standard for portable patient transport. Engineered to bridge the gap between heavy-duty strength and effortless mobility, this stretcher is a vital tool for paramedics, fire departments, and corporate safety teams.
The SST2FALO combines a high-grade aluminum alloy frame with a high-visibility orange finish, ensuring that your rescue team can operate with speed and precision in any environment.
| Feature | Details |
| Model Number | SST2FALO |
| Frame Material | High-Strength Aerospace-Grade Aluminum Alloy |
| Folding Mechanism | Two-Fold (Lengthwise Bi-fold) |
| Color | High-Visibility International Orange |
| Fabric | High-Tenacity, Washable, Fire-Retardant Synthetic |
| Weight Capacity | 150 kg (Approx.) |
| Portability | Ergonomic Handles; Lightweight Frame |
With decades of experience in medical furniture manufacturing, Shanti products are synonymous with reliability. The SST2FALO undergoes rigorous stress testing to ensure the hinges and support bars can handle maximum weight capacity repeatedly, providing peace of mind for both the operator and the patient.
1. Superior Strength-to-Weight Ratio
The core of the SST2FALO is its aerospace-grade aluminum frame. Unlike traditional steel stretchers, this aluminum model offers significant weight reduction without sacrificing load-bearing capacity. This allows rescuers to navigate stairs, narrow hallways, and rough terrain with significantly less physical exertion.
2. High-Visibility Safety Orange
Designed for chaotic emergency scenes, the “International Orange” color ensures the stretcher is instantly identifiable. The powder-coated finish is not only for visibility but also provides a protective barrier against oxidation, chemicals, and blood-borne pathogens.
3. Rapid Bi-Fold Deployment
The SST2FALO features a precision-engineered two-fold mechanism. It can be deployed from its stored state in seconds, locking securely into place to provide a rigid, flat surface for patient stabilization. This simplicity is crucial in high-stress scenarios where mechanical failure is not an option.






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