Airframe: The F-22 Raptor (2024)

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  • Published
  • By Bennie J. Davis III
  • Airman Magazine
Fort Meade, MD --


The F-22A Raptor is a fifth-generation fighter incorporating fourth-generation stealth technology, radical maneuvering capabilities, the ability to fly at supersonic speed without afterburners and unprecedented pilot situational awareness, making it the most dominant and advanced air superiority fighter in the world.


Airframe: The F-22 Raptor (5)

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The Raptor’s sophisticated aerodynamic design, advanced flight controls and thrust vectoring allows it to outmaneuver any known aircraft. A combination of sensor capability, integrated avionics, situational awareness and weapons provides F-22 pilots with a first-look, first-shot, first-kill advantage over adversaries.

The F-22 possesses a sophisticated sensor suite allowing the pilot to track, identify, shoot and kill air-to-air threats before being detected. Significant advances in co*ckpit design and sensor fusion improve the pilot’s situational awareness.

The F-22A Raptor was introduced Dec. 15, 2005, and a total of 187 operational aircraft were built. The last airframe was delivered to the Air Force in 2012.

Development and Design

The Raptor was developed through the Advanced Tactical Fighter program, which was initially requested by the Air Force in the 1970s to produce conceptual designs of an air-to-ground fighter to complement the air-to-air F-15 Eagle.

The Air Force needed the F-22 as a solution to emerging threats of the Soviet Su-27 Flanker, MiG 29 Fulcrum and the Chinese Shenyang J-11 multi-role fighter aircraft, to maintain air superiority after the Cold War and into the future.

Thus, the request was amended with the advancements in stealth technology and the ATF program was then charged with creating a fighter with the capabilities of speed, agility, electronic warfare and signal intelligence into a stealth airframe which could also provide precision long-rage air-to-air and air-to-ground weaponry.

The Air Force selected the two proposals of contract teams Lockheed/Boeing/General Dynamics and Northrop/McDonnell Douglas, to produce prototypes for flight testing, the YF-22 and the YF-23. The Lockheed YF-22 was ultimately selected in 1991 with the first F-22A being delivered for flight testing in 1997.

The Raptor is equipped with two Pratt & Whitney F119-PW-100 afterburning turbofan engines producing 35,000 pounds of thrust each, more than any current fighter. The jet is capable of Mach 1.82 during supercruise, or sustained supersonic flight without afterburners, and able to reach speeds over Mach 2 with afterburners.

In the air-to-air configuration the Raptor carries six AIM-120 AMRAAMs and two AIM-9 Sidewinders. The Raptor also has an internally mounted M61A Vulcan 20 mm-rotary canon embedded inside the right wing.

The Raptor’s ability to collect and share tactical information with legacy aircraft enables U.S. and allied forces to engage targets with unmatched battlespace awareness. With the data processed with the Raptor’s advanced avionics sensors and radars, the aircraft can even designate targets for allies.

The radar emissions of the F-22 can also be focused to overload enemy sensors as an electronic-attack capability.

During the F-22’s first Operational Readiness Inspection the aircraft was rated excellent in all categories with a 221-0 kill ratio against opposing aircraft.

The F-22 has a significant capability to attack surface targets from high cruise speeds and altitudes. In the air-to-ground configuration the aircraft can carry two 1,000-pound GBU-32 Joint Direct Attack Munitions internally.

The Raptor has the ability to deploy 1,000-pound bombs from 50,000 feet while cruising at Mach 1.5, and can strike a moving target 24 miles away.

Airframe: The F-22 Raptor (6)

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Airframe: The F-22 Raptor (2024)

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