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January 7, 2020 | International, Aerospace

L3 Technologies to upgrade Greek F-16s in $28M contract

ByEd Adamczyk

Jan. 6 (UPI) -- L3 Technologies will upgrade the F-16 fighter plane training system of Greek Air Force F-16 in a $28 million contract announced by the U.S. Defense Department.

The Texas-based company will improve Aircrew Training Devices for conversion of Hellenic Air Force F-16s to the new F-16V configuration. The new variant includes add-ons which include electronically scanned array radar, a new mission computer and electronic warfare suite, automated ground collision avoidance system, and various cockpit improvements.

The package can be retrofitted to most F-16s.

The aircraft, in service since 1978 and known as the Fighting Falcon, has been built by General Dynamics and Lockheed Martin. Over 4,600 F-16s, in use by 25 countries, have been built. The "V" suffix indicates the "Viper" package of improvements. The Hellenic Air Force has 154 F-16s in three variants, with the upgrades planned for 84 of the planes.

Work will be performed at L3's Arlington, Texas, facility, and is expected to be completed by Dec. 31, 2027, the Defense Department said Friday in a statement. The award completely involves Foreign Military Sales to Greece.

The statement by the Pentagon comes two weeks after Greek Ministry of Defense announced that seven-year maintenance contracts with French companies Dassault Aviation, Safran Military Engines and Thales were signed to similarly upgrade the Mirage 2000-5 combat aircraft by the Hellenic Air Force. Those contracts were valued at $290.8 million.

https://www.upi.com/Defense-News/2020/01/06/L3-Technologies-to-upgrade-Greek-F-16s-in-28M-contract/5451578328820

On the same subject

  • Companies line up to deliver Turkey hundreds of micro drones

    November 8, 2018 | International, Aerospace

    Companies line up to deliver Turkey hundreds of micro drones

    By: Burak Ege Bekdil ANKARA — The Turkish government has launched a competition to buy hundreds of multi-rotor micro drones, with scores of local companies having already expressed interest. SSB, Turkey's procurement authority, has said that the planned drones would be used in homeland security missions like search and rescue, surveillance and reconnaissance, remote sensing and mapping. An SSB official said all drone programs come with a “priority” tag. Under the multi-rotor micro drone program, SSB will procure a total of 499 units. Twenty-two companies have replied to SSB's Request for Proposal (RfP). “The level of interest [in the contract] and potential competition during the race reflects the vibrancy of Turkey's fast-growing drone industry,” said Özgür Ekşi, an analyst with C4Defense.com, a defense industry specialist. “Especially when you think that only a decade ago there was not a single drone maker in the country.” Turkey has long prioritized developmental and operation of unmanned systems for its military and for export. The Turkish military was largely dependent on the Israeli-made Heron unmanned aerial vehicles in its fight with Kurdish insurgents in early 2000s when the government-controlled Tusas Turkish Aerospace Industries (TAI) started working on the Anka, Turkey's first indigenous drone. In 2013 TAI won a contract from the Turkish government to supply 10 Ankas and ground control stations. The Anka, a medium-altitude, long-endurance drone, can fly at an altitude of 30,000 feet for 24 hours and can carry up to 200 kg payload. TAI later developed the armed and satellite-controlled versions of the Anka as the country's dependency on drones in its asymmetrical warfare against Kurdish insurgency deepened. The Anka has paved the way for the entry into the market of private sector players. Kale-Baykar, a consortium, has successfully developed the Bayraktar TB-2, a drone system that comes in unarmed and armed versions, and delivered to the military six systems in 2017. The Bayraktar uses the MAM-L and MAM-C, two mini smart munitions developed and produced by state-controlled missile specialist Roketsan. Turkey's local industry also is developing BSI-101, a SIGINT system, for the Bayraktar to end Turkey's dependence on U.S.-made SIGINT systems for drones. The Bayraktar can fly at a maximum altitude of 24,000 feet. Its communications range is 150 kilometers. The aircraft can carry up to 55 kilograms of payload. “We encourage private companies to spend more on drone R&D and come up with solutions cut for our specific (mostly asymmetrical) requirements,” said one procurement official. “there is a lot of activity going on and the market will deepen in quantity and quality in the years ahead.” Ekşi from C4Defence.com said: “Twenty-two local bidders in a relatively small drone competition is a sign that the market, infant by age, will flourish soon.” https://www.defensenews.com/global/europe/2018/11/07/companies-line-up-to-deliver-turkey-hundreds-of-micro-drones

  • General Atomics' Sparrowhawk Drone-Launched Drone Breaks Cover

    September 28, 2020 | International, C4ISR

    General Atomics' Sparrowhawk Drone-Launched Drone Breaks Cover

    This low-cost unmanned demonstrator could give larger drones, such as the MQ-9 Reaper, game-changing new capabilities. BY JOSEPH TREVITHICK General Atomics says that it has conducted captive carry tests of its Sparrowhawk, a new small drone that will be able to be launched and recovered in flight. The company says that Sparrowhawk is a demonstrator and was developed specifically to work with other larger unmanned aircraft that it builds, such as the MQ-9 Reaper and MQ-1C Gray Eagle, offering an important stepping stone to all-new capabilities on those existing designs, as well as future ones. The California-based drone's maker said the captive carry tests, in which the drone was carried aloft by an MQ-9, but was not launched, took place between Sept. 16 and 17, 2020. This kind of testing is done to gather data on how a system, as well as the launch platform in many cases, handles the stress of flight. A picture of Sparrowhawk that General Atomics released to The War Zone shows that the drone features a large main wing that is stowed parallel with the main fuselage before launch, after which is swings 90 degrees into a deployed position. The drone also has a v-tail and there appears to be at least one air intake for the propulsion system on the right side. It's unclear what type of powerplant powers the air-launched drone. Sparrowhawk concept art that General Atomics posted on Twitter earlier in September showed a similar configuration, but with two fans at the rear of the fuselage. The company has said that the small drone will offer a reduced acoustic signature, as well as a visual one, compared to its larger designs, such as the MQ-9. It's not clear yet how General Atomics is planning to recover Sparrowhawk in flight and whether unmanned platforms, such as the MQ-9, will be able to carry out this task. "Sparrowhawk iterates on the DARPA Gremlins Program," according to the company. Dynetics, now a subsidiary of Leidos, beat out General Atomics, among others, to build the experimental Gremlins drone, now also designed the X-61A, as well as the airborne recovery system, which is presently mounted on a C-130 Hercules transport aircraft. You can read more about Gremlins and the recovery concept, which includes the drone catching the end of a cable in flight and then being reeled in, in these past War Zone pieces. It's hard overstate how significant Sparrowhawk, and any further developments it spurs, could be for both General Atomics existing product lines and future unmanned designs. The ability of a large drone to launch smaller ones, all potentially working together semi-autonomously or even as part of a fully-autonomous swarm, could open the door to all kinds of new capabilities, while reducing the risk to the launch platform. “Sparrowhawk extends and multiplies MQ-9-based sensors, reduces manpower and increases ISR [intelligence, surveillance, and reconnaissance] coverage,” David Alexander, President of General Atomics Aeronautical Systems, Inc. (GA-ASI), said in a statement. Beyond providing far more flexible ISR over a larger geographical area, Sparrowhawks may also provide valuable stand-in electronic warfare jamming or even act as decoys to blind and confuse enemy integrated air defenses, which could drastically increase the survivability of the launch platform and even help clear a path for other manned and unmanned aircraft, as well as stand-off missile strikes. Sparrowhawks could potentially carry out their own kinetic strikes if they can be equipped with traditional explosive warheads, although there is no official information yet if arming these unmanned aircraft is a possibility. If it is indeed the case, these drones might able to act as loitering munitions, which would be able to conduct persistent surveillance of designated areas before then carrying out strikes on targets of opportunity or return for recovery and re-launch. General Atomics says that Sparrowhawk is intended to be an attritable platform, as well, despite being designed to be recovered and reused. Attritable designs are those that are low cost enough that commanders can employ them in higher-risk environments that would be off-limits to more expensive exquisite types. “With attritableONE technology that is survivable and precise, Sparrowhawk is a true game changer,” GS-ASI's President Alexander said. This program is part of the U.S. Air Force's expansive Advanced Battle Management System (ABMS) program, which is seeking to develop a host of new highly-networked technologies that will expand the service's ability to gather information and then rapidly analyze and disseminate it, including targeting data that can then be passed to other U.S. military units in the air, on the ground, and at sea. As the name implies, attritableONE is focused on developing new attritable unmanned aircraft. In a recent major demonstration of various ABMS capabilities and associated technologies, an MQ-1C Gray Eagle launched an Area-I Air-Launched, Tube-Integrated, Unmanned System 600 (ALTIUS 600) small drone, acting as an attritableONE testbed. The ALTIUS 600 then positively identified a target that the MQ-1C's onboard sensors had first identified. The U.S. Army has also been experimenting with the ALTIUS 600 as part of its Air Launch Effects (ALE) effort, which also envisions fleets of small drones performing various ISR, deception, and other tasks, which you can read about in more detail in this past War Zone piece. During the recent ABMS demonstration, a General Atomics MQ-9 also carried a Rosetta Echo Advanced Payload (REAP) communications and datalink pod, which includes technology developed under gatewayONE and meshONE, which are also part of the broader ABMS effort. "The REAP pod has been developed under contract from the Air National Guard and demonstrated a communications relay capability for both Link-16 and the Silvus meshONE network providing seamless connectivity between air and ground participants in the demonstration area," according to General Atomics. All told, the Sparrowhawk looks to be an extremely exciting development. It also comes at a time when the U.S. Air Force, the largest operator of MQ-9s, is looking to stop buying those drones due to concerns that they are simply too vulnerable to be useful during a high-end conflict. The ability of Reapers to launch and recover smaller, attritable drones and, by extension, perform a wider array of tasks over a larger geographical area, even in contested environments, could breathe new life into that design. We at The War Zone are very eager to learn more about Sparrowhawk and what it can do. https://www.thedrive.com/the-war-zone/36747/general-atomics-sparrowhawk-drone-launched-drone-breaks-cover

  • Airbus: Eurodrone project ready for takeoff '€“ as soon as the contract is signed

    December 3, 2021 | International, Aerospace

    Airbus: Eurodrone project ready for takeoff '€“ as soon as the contract is signed

    '€œWe have the green light from Germany, from Italy and from France, and we are in the waiting phase, basically every day now, on Spain,'€ one company executive said.

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