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by Staff Writers Rolling Meadows IL (SPX) Jun 28, 2021
Northrop Grumman Corporation will install more life-saving Large Aircraft Infrared Countermeasure (LAIRCM) systems on U.S. and international fixed-wing and rotary wing aircraft under a $146 million order from the U.S. Air Force. The award is part of an existing indefinite delivery, indefinite quantity contract to Northrop Grumman for LAIRCM upgrades, modifications and installations on a wide range of aircraft, including the C-17, C-5, C-130J, P-8, CH-53K, KC-46 and platforms operated by international customers. "Northrop Grumman has been protecting U.S. Air Force platforms from missile threats for more than 25 years," said Bob Gough, vice president, navigation, targeting and survivability, Northrop Grumman. "We remain steadfast in our commitment to delivering advanced aircraft survivability systems that help ensure aircrews make it home safely." Northrop Grumman's family of countermeasure systems such as LAIRCM and the new Common Infrared Countermeasure (CIRCM) system are installed on more than 1,500 aircraft of 85 different types, providing spherical protection by detecting, tracking and jamming incoming infrared threats. The most advanced aircraft survivability equipment available, it defeats threats by directing a high-intensity laser beam into the eye of the fast-moving missile's infrared seeker. Using a range of industry best practices to achieve agility, Northrop Grumman leverages its years of infrared countermeasure expertise in a modern, modularized agile framework to continue providing capable and adaptable LAIRCM systems to the U.S. Air Force.
Developing morphogenic electrochemical interfaces Washington DC (SPX) Jun 11, 2021 Persistent battery power and anti-corrosion coatings are key to sustaining military operations. Batteries power everything from tactical radios and handheld devices to unmanned systems. Protective coatings shield flight surfaces, rotor blades, and ship hulls from corrosion caused by humidity, sand, and saltwater. A challenge to creating more persistent batteries and coatings, however, is the inability to address microscopic irregularities that form at the interfaces of electrochemical materials. D ... read more
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