Meet Chirok: Russia's Unique Hybrid Amphibious Drone

© Photo : RostecThe Chirok, a Russian hybrid amphibious UAV vehicle developed by a subsidiary of state technology corporation Rostec
The Chirok, a Russian hybrid amphibious UAV vehicle developed by a subsidiary of state technology corporation Rostec - Sputnik International
Subscribe
A subsidiary of Russia's state technology corporation Rostec has unveiled the first photo of the Chirok, an amphibious reconnaissance and strike UAV outfitted with an air cushion, ahead of the MAKS-2015 international air show slated to be held near Moscow in late August.

The hardware could be operated in both manned and unpiloted modes. The multipurpose UAV is meant for conducting reconnaissance, monitoring and freight missions, including transporting people to remote areas. The military could fit it with missiles, rockets or bombs to use as a combat vehicle.

Armata main battle tank - Sputnik International
Russia's 'Secret Weapon of War' Holds the Key to Armata's Future
The Chirok (Teal), manufactured by the United Instrument Manufacturing Corporation (UIMC), has a maxim range of 1550 miles and could reach an altitude of nearly 20,000 feet. It has a maximum effective payload of 300 kilograms.

The drone is made out of composite materials which make it hard to detect the aircraft. "In addition, the UAV equipped with a reciprocating engine with controllable-pitch propellers is almost noiseless," the UIMC explained.

Developed by the Moscow Radio Engineering Research Institute, the air cushion design allows the Chirok to take off and land in virtually any conditions – from uneven surfaces, to sand or snow-covered and wetland territories, to water surfaces. The air cushion is retractable during flight.

The Chirok prototype was unveiled in mid-2014. In early 2015, the UIMC announced that two full-sized drones were ready for tests.

Russia's one of a kind drone is expected to enter production in 2006.

Newsfeed
0
To participate in the discussion
log in or register
loader
Chats
Заголовок открываемого материала