Air Force Museum
F-22A Raptor
The Lockheed Martin F-22A Raptor is the world's first stealthy air dominance fighter. Its radar, weapons control and electronic warfare systems work together as one integrated unit. The Raptor combines stealth, maneuverability and the ability to fly long distances at supersonic speeds -- or "supercruise" -- in performance of air superiority and air-to-ground missions. Furthermore, it requires less maintenance than older fighters.
In depth
History & service
In 1981 the U.S. Air Force needed a new air superiority fighter that would take advantage of new technologies in fighter design including composite materials, lightweight alloys, advanced flight control systems, higher power propulsion systems and stealth technology. Lockheed Martin's F-22 won the design competition in April 1991, and the rollout ceremony for the first F-22 Raptor occurred in April 1997.
The Raptor successfully completed its initial operational and test evaluation in 2004, and the program received approval for full rate production. In December 2005 operational aircraft were designated F-22As.
Production of the F-22A is a partnership between Lockheed Martin, Boeing and Pratt & Whitney. Boeing builds the Raptor's wings and aft-fuselage; the engines come from Pratt & Whitney, and Lockheed Martin builds the forward fuselage and assembles the subsections in Marietta, Ga.
On May 12, 2005, the Raptor program achieved a historic milestone with the delivery of the first combat-capable Raptor to the 27th Fighter Squadron, 1st Fighter Wing, at Langley Air Force Base, Va. In January 2006 the 27th Fighter Squadron flew the first operational mission with the F-22 in support of Operation Noble Eagle (the official name given to the defense of U.S. borders).
From the very beginning, the F-22A exceeded the USAF's expectations, and during exercises and deployments, it proved to be more than a match for any fighter opposing it.
During the highly realistic Exercise Northern Edge 2006, the F-22 proved itself against as many as 40 "enemy aircraft" during simulated battles. The Raptor pilots achieved a 108-to-zero "kill" ratio against the best F-15, F-16 and F-18 "adversaries." The stealthy F-22A also proved that it could avoid and destroy enemy surface to air missiles, and recorded an impressive 97 percent mission capability rate.
Specifically noting the Raptor's performance at Northern Edge, the National Aeronautic Association (NAA) awarded its 2006 Robert J. Collier Trophy, considered America's most prestigious award for aeronautical and space development, to the Lockheed Martin Corp.-led F-22 Raptor aircraft team "for designing, testing and operating" the Raptor. Team members included Lockheed Martin, Boeing, Pratt & Whitney, Northrop Grumman, Raytheon and BAE Systems.
This amazing aircraft was described as "the most efficient and effective fighter in history, through exceptional performance and outstanding safety features."
The aircraft in figures
Crew: One · Armament: One 20mm M-61A2 Vulcan cannon with 480 rounds; internal side weapon bays can carry two AIM-9 Sidewinder infrared missiles; and main internal weapon bays can carry either six AIM-120C radar-guided missiles (air-to-air loadout) or two AIM-120C missiles and two 1,000-lb GBU-32 JDAMs (air-to-ground loadout) · Engines: Two Pratt & Whitney F119-PW-100 turbofan engines of approx. 35,000 lbs. thrust each with afterburners and two-dimensional thrust vectoring nozzles · Maximum speed: Approx. Mach 2.0
Air power in a limited war
The Korean War brought early jet combat into the same theater as piston fighters, large bombers, helicopters, and transports. Different technologies served different needs. Fast fighters contested the air, while other aircraft attacked supply routes, supported troops, carried equipment, gathered information, and evacuated casualties. The mountainous terrain and severe weather made those tasks especially demanding.
The conflict also exposed the limits of air power used within a larger political and military struggle. Aircraft could damage bridges and transportation networks, but opposing forces adapted, repaired, dispersed, and moved under cover. Supporting troops required communications and coordination close to the ground. Maintaining operations depended on suitable bases and an extensive flow of supplies.
The surviving artifacts show why a gallery cannot be understood through jet fighters alone. A tent, vehicle, radio, flight nurse's equipment, or rescue helicopter belongs to the same operational history. The stories of individual airmen are compelling because they took place within that complicated setting. Cross-links to the Second World War and later Cold War galleries reveal both continuity and change: familiar aircraft found new roles, jet performance expanded, and rescue systems developed further. The war ended in an armistice, making its history one of service and sacrifice within an unresolved division as well as one of technological change.
