Jul 292011
 
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First F-35 Catapult Launch

Courtesy: Navy Visual News Service.

NAVAL AIR SYSTEMS COMMAND, LAKEHURST, N.J. — Navy test pilot Lt. Christopher Tabert takes to the sky July 27 in an F-35C test aircraft launched by a steam catapult for the first time. CF-3 is the designated carrier suitability testing aircraft, and is in Lakehurst for catapult and jet blast deflector testing. The F-35C is the carrier variant of the F-35 Joint Strike Fighter, and is distinct from the F-35A and F-35B variants. It has larger wing surfaces and reinforced landing gear for slower catapult launch and landing approach speeds and deck impacts associated with the demanding carrier take-off and landing environment. The F-35C is undergoing test and evaluation at NAS Patuxent River prior to eventual delivery to the fleet.

 
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Courtesy: Lockheed Martin

Highlights of the F-35 vertical landing with commentary from the lead STOVL pilot Graham Tomlinson.

 
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Courtesy: Lockheed Martin

Video clip has takeoff, hover and vertical landing.

A supersonic Lockheed Martin (NYSE:LMT – News) F-35B Lightning II stealth fighter rode more than 41,000 pounds of thrust to a vertical landing today for the first time, confirming its required ability to land in confined areas both ashore and afloat.

“Today’s vertical landing onto a 95-foot square pad showed that we have the thrust and the control to maneuver accurately both in free air and in the descent through ground effect,” said F-35 Lead STOVL Pilot Graham Tomlinson.

Tomlinson performed an 80-knot (93 miles per hour) short takeoff from Naval Air Station Patuxent River, Md., at 1:09 p.m. EDT. About 13 minutes into the flight, he positioned the aircraft 150 feet above the airfield, where he commanded the F-35 to hover for approximately one minute then descend to the runway.

“The low workload in the cockpit contrasted sharply with legacy short takeoff/vertical landing (STOVL) platforms,” said Tomlinson, a retired Royal Air Force fighter pilot and a BAE Systems employee since 1986. “Together with the work already completed for slow-speed handling and landings, this provides a robust platform to expand the fleet’s STOVL capabilities.”

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