
Disaster Response
Rapid delivery of emergency supplies, medical essentials and critical payloads to areas affected by disasters or disrupted ground access.
Faster Delivery
Reduction in time
Reduction in Distance
Lower Logistics Cost
[Applications / Logistics & Delivery]
Drone-enabled logistics provides a direct aerial supply route for last-mile delivery and heavy logistics where road access is limited, disrupted, or impractical. It enables high-altitude resupply and transport of critical cargo to remote locations, supporting defence logistics, disaster response, and industrial operations where terrain and accessibility make conventional transport challenging.
SABAL enables these missions as a heavy-payload logistics drone, using a variable-pitch tandem-rotor architecture engineered for stable heavy-lift operations, gust-prone environments and autonomous point-to-point cargo delivery.
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[Last-Mile Delivery]
Traditional defence logistics relies on trucks, rail and manual convoys. In remote areas, porters and ponies are also used to move supplies. In high-altitude or disaster-affected terrain, damaged roads and long detours can delay critical defence resupply.
[logistics]
Helicopters and manned aircraft extend logistics beyond the road network, but require trained crews, fuel, support infrastructure and mission coordination. For frequent last-mile resupply, this increases operating cost, complexity and personnel exposure.
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[Disaster Relief]
Autonomous logistics drones establish direct aerial routes between origin and destination, enabling cargo delivery across remote, high-altitude and disaster-affected regions while reducing dependence on road networks, ground convoys and intermediate transfer points.
[Defence Logistics]
A heavy-payload logistics drone designed to transport ammunition, essential goods, medical supplies, and other critical cargo for defence resupply and emergency operations. It enables reliable delivery across harsh and high-altitude terrain.
[Solutions]
Advanced UAV logistics solutions for heavy-payload movement across remote, time-critical, and infrastructure constrained applications.

Rapid delivery of emergency supplies, medical essentials and critical payloads to areas affected by disasters or disrupted ground access.

Transport of tools, equipment and essential materials across large or difficult-to-access construction and infrastructure sites.

Movement of essential supplies and equipment to remote or forward locations where conventional ground-based logistics can be constrained.

UAV-enabled logistics for conductor stringing, insulator cleaning, and maintenance operations across transmission lines, particularly in difficult to access terrain.
[Recommended Platforms]
Heavy-Lift Logistics
A compact tandem-rotor logistics UAV designed for rapid cargo delivery across demanding terrain. Built for defence resupply, emergency response, and critical supply missions
20 kg
Payload
Up to 10 km
Range
40 min
Endurance
Heavy-Payload Logistics
A heavy-lift logistics UAV designed for high-altitude cargo transport across demanding terrain. Built for defence resupply, medical supplies and industrial logistics.
30–70 kg
Payload
Up to 10 km
Range
30 min
Endurance
[Why EndureAir]
Variable-pitch propulsion enables precise control and efficient lift management for demanding logistics operations across varied terrain.
Integrated parachute systems provide an additional layer of safety, supporting controlled recovery in the event of a critical system failure.
Designed for logistics operations in high-altitude environments, supporting reliable cargo movement where terrain and elevation create operational challenges.
Built to transport heavy and critical cargo, including defence supplies, ammunition, medical supplies, and essential goods across demanding terrain.
Modular payload configurations allow the platform to carry different cargo systems based on mission requirements, from supply boxes to medical and specialised equipment.
It enables autonomous mission planning and route execution, allowing logistics missions to be planned and managed with minimal operator intervention.
[Other Applications]