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January 11, 2024 | International, Land, C4ISR

Bell awards CAE contract for U.S. Army Future Long Range Assault Aircraft program

Washington, DC, January 9, 2023 – (NYSE: CAE; TSX: CAE) - CAE today announced that CAE Defense & Security is under contract with Bell Textron Inc. to support the U.S....

https://www.epicos.com/article/785897/bell-awards-cae-contract-us-army-future-long-range-assault-aircraft-program

On the same subject

  • Enabling Revolutionary Nondestructive Inspection Capability

    June 17, 2019 | International, Other Defence

    Enabling Revolutionary Nondestructive Inspection Capability

    X-rays and gamma rays have a wide range of applications including scanning suspicious maritime shipping containers for illicit materials, industrial inspection of materials and processes, and medical diagnostic and therapeutic procedures. Current technologies, however, are not ideal. X-rays produce a continuum of energies that limit their inspection and diagnostic performance, and gamma rays can only be produced at specific energies unique to a given radioactive isotope. DARPA today announced its Gamma Ray Inspection Technology (GRIT) program. GRIT seeks novel approaches to achieve high-intensity, tunable, and narrow-bandwidth sources of gamma ray radiation in a compact, transportable form factor that would enable a wide range of national security, industrial, and medical applications. A Proposers Day webinar describing the goals of the program is scheduled for July 8, 2019. “What we're trying to do in GRIT is transform the use of x-rays and gamma rays,” said Mark Wrobel, program manager in DARPA's Defense Sciences Office. “Current sources of gamma rays, like Cobalt-60 or Cesium-137, are not very flexible. They require special licenses to possess and only emit gamma rays at very specific energies. What we desire is a source of very high-energy photons that we can tune to match the application we need. This ranges from more effective detection of illicit cargo, to a more informative medical x-ray.” GRIT aims to provide a source of tunable, pure x-rays and gamma rays from tens of keV (kilo-electron volts) up through over ten MeV (mega-electron volts). Currently, tunable and narrow bandwidth gamma ray sources only exist at highly specialized user facilities best suited for basic research and are not able to support broad practical applications. Shrinking these photon sources to a transportable system is a major goal and challenge of the GRIT program. GRIT technology could make possible a range of new inspection and diagnostic protocols. In medical and industrial radiography, for example, GRIT could enable revealing specific elemental and material content, such as calcium in bones or specific metals in cargo. A typical x-ray only shows differences in density in the object being inspected – whether a piece of luggage at an airport, or an individual at a doctor's office. If successful, a GRIT x-ray source could be tuned to detect and quantify the concentration of specific elements of interest, such as the amount of calcium in a given bone x-ray, enabling radiologists to actually see bone composition. Tuning energy between 10s of keV to over 100 hundred keV would allow detection of specific elements that might be of interest in characterizing novel materials and processes at micron scales. These techniques would be relevant to defense applications including non-destruction inspection of novel additively manufactured materials and alloys for their elemental composition. At energy levels in the MeV range, gamma ray photons have high enough energy to actually interact with the nuclei of atoms. Whereas x-rays work by interacting with the shells of atoms, GRIT would be able to stimulate the nucleus of an atom to bring about an effect called nuclear resonance fluorescence, a sort of “fingerprint” that is unique to each isotope on the periodic table. “With GRIT, you could probe and detect specific isotopes of interest by fine-tuning the photon energy to minimize background noise and take advantage of the nuclear resonance fluorescence phenomenon,” Wrobel said. “Those isotopes could be rare-earth elements of interest or special nuclear materials. To be able to definitively say, ‘Yes, there's highly enriched uranium in this object' and be able to characterize how much is present would be a significant leap forward over our current capabilities.” DARPA is seeking expertise in a range of technologies on the GRIT program including advanced accelerator technology, high-energy laser systems, novel control systems, and new x-ray and gamma ray detector technology. To register for the GRIT Proposers Day webinar, visit: https://go.usa.gov/xmh28. GRIT's focus on new, compact photon sources for inspection complements DARPA's Intense and Compact Neutron Sources (ICONS) program, which is developing compact neutron sources. The two technologies would work in tandem, yielding a very robust inspection capability. Caption: The Gamma Ray Inspection Technology (GRIT) program seeks tunable gamma ray sources for a host of national security, industrial, and medical applications. https://www.darpa.mil/news-events/2019-06-14

  • Lockheed Martin Celebrates FBM Headquarters Move To Florida's Space Coast

    July 30, 2019 | International, Naval

    Lockheed Martin Celebrates FBM Headquarters Move To Florida's Space Coast

    TITUSVILLE, Fla., July 30, 2019 /PRNewswire/ -- Today Lockheed Martin (NYSE: LMT) celebrated the move of the Fleet Ballistic Missile (FBM) Headquarters from Sunnyvale, California to Florida's Space Coast during an official flag-raising event. Establishing this new site is one milestone in the larger move of more than 300 jobs to the Space Coast area, expanding Lockheed Martin's already significant presence. Titusville was selected as the FBM Headquarters to house this critical mission. It allows for continued partnership with the Navy and a solid foundation for the next chapters of the program. "We are thrilled and grateful to call Titusville our new home," said Sarah Hiza, vice president for Fleet Ballistic Missile programs at Lockheed Martin Space. "This region plays a prominent role in the defense industry. I am very proud to represent our program headquarters in this community and continue to provide the highest level of support to our Navy customer. What they do for our nation is critical, and we deeply appreciate the men and women who serve." Many distinguished guests joined Rick Ambrose, executive vice president for Lockheed Martin Space, and Scott Keller, vice president and general manager for Strategic and Missile Defense Systems, to recognize this milestone. They included Vice Admiral Johnny Wolfe, director Navy Strategic Systems Programs, Florida Senator Tom Wright, Congressmen Thad Altman, Tyler Sirois and Randy Fine, and Lynda Weatherman, president and CEO of the Economic Development Commission of Florida's Space Coast. For more than 60 years, Lockheed Martin has contributed to the FBM program with the US Navy. In 2017, the FBM program announced portions of the program would relocate from Sunnyvale, California to other locations to include Colorado. Lockheed Martin has developed, built and sustained six generations of submarine-launched ballistic missiles under the FBM program. The current generation of missiles, designated Trident II D5, are carried aboard the US Navy's Ohio-class submarines and make up the sea-based leg of the nation's nuclear triad. They are also carried aboard the United Kingdom's Vanguard-class submarine as their nation's sole nuclear deterrent. For additional information, visit our website: http://www.lockheedmartin.com/FBM https://news.lockheedmartin.com/2019-07-30-Lockheed-Martin-Celebrates-FBM-Headquarters-Move-To-Floridas-Space-Coast

  • Lockheed Martin Awarded $184 Million To Continue Providing The U.S. Navy With Electronic Warfare Systems

    February 11, 2019 | International, Naval, C4ISR

    Lockheed Martin Awarded $184 Million To Continue Providing The U.S. Navy With Electronic Warfare Systems

    SYRACUSE, N.Y., Feb. 11, 2019 – Lockheed Martin (NYSE: LMT) continues to support the U.S. Navy's aircraft carriers, cruisers, destroyers and warships with advanced electronic warfare capabilities. The Navy awarded Lockheed Martin a $184 million firm-fixed-price modification to exercise options for full rate production of Surface Electronic Warfare Improvement Program (SEWIP) Block 2 systems. “We are honored to continue to provide this critical fleet defense capability that our warfighters rely on while they perform their mission worldwide,” said Joe Ottaviano, Integrated Electronic Warfare program director, Rotary and Mission Systems. “Threats are changing and evolving faster with advanced technologies and the SEWIP system will give the U.S. Navy the advantage of remaining one step ahead of our adversaries.” SEWIP is an evolutionary acquisition and incremental development program to upgrade the existing AN/SLQ-32(V) electronic warfare system. SEWIP Block 2 will expand upon the receiver/antenna group necessary to keep capabilities current with the pace of the threat and to yield improved system integration. Under this full-rate production contract, Lockheed Martin will continue providing and upgrading the AN/SLQ-32 systems on U.S. aircraft carriers, cruisers, destroyers and other warships with key capabilities that determine if the electronic sensors of potential foes are tracking the ship. The U.S. Navy awarded the company an initial $148.9 million contract for full rate production of SEWIP Block 2 systems in 2016 with four additional option years to upgrade the fleet's electronic warfare capabilities so warfighters can respond to evolving threats. Lockheed Martin has provided the U.S. Navy with SEWIP Block 2 development, production and engineering services since 2009 and has been delivering and supporting the installation of SEWIP Block 2 systems as the Navy upgrades electronic warfare defenses against anti-ship missile threats fleet wide. Additionally, AN/SLQ-32(V)6 Design Agent Engineering Services are being performed at the Electronic Warfare Center of Excellence in the Syracuse, New York, facility. For additional information, visit www.lockheedmartin.com/ew. https://news.lockheedmartin.com/2019-02-11-Lockheed-Martin-Awarded-184-Million-to-Continue-Providing-the

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