agm 158 c

agm-158 jassm Low observable standoff air-launched cruise missile developed by Lockheed Martin for the United States Armed Forces. Com o sistema de orientação adequado, um único míssil aumentaria a flexibilidade da Marinha, em vez de precisar de dois mísseis especializados para funções diferentes. [4] It is a large, stealthy long-range weapon with a 1,000 pound (454 kg) armor piercing warhead. 3D model of AGM-158C LRASM available for Download in FBX, OBJ, 3DS, C4D and other file formats for 23 software. Ao reduzir o tamanho de sua ogiva de 450 kg para aumentar o alcance de cercade 480 km para 1 609 km, o míssil ainda seria poderoso o suficiente para destruir ou desativar os navios de guerra, tendo alcance para atingir alvos em terra. The AGM-158 is slightly too long to be carried inside internal weapon bay of an F-35 stealthy multi-role fighter.
AGM-158C LRASM (역링크) 이름공간 : 제출 Prev Next 2.

The company-funded test showed the LRASM, fitted with the Mk-114 rocket motor from the On November 12, 2013, an LRASM scored a direct hit on a moving naval target on its second flight test. It was designed and developed by the Defense Advanced Research Projects Agency, better known as DARPA, however, it is manufactured by the Lockheed Martin Corporation. Large, stealthy long-range weapon with a 1,000 pound armor piercing warhead, but a number of problems during testing delayed its introduction into service until 2009. An extended range version of the missile, the AGM-158B JASSM-ER (Joint Air-to-Surface St… The AGM-158 JASSM (Joint Air-to-Surface Standoff Missile) is a low observable standoff air-launched cruise missile developed by Lockheed Martin for the United States Armed Forces.

"In 2014, Poland expected the Congressional approval for the purchase of the AGM-158 JASSM to extend the ground penetration capabilities of their top-of-the-line The first flight test of the JASSM-ER occurred on May 18, 2006 when a missile was launched from a U.S. Air Force The JASSM-ER entered service with the USAF in April 2014. O programa foi iniciado em 2009 em duas versões diferentes. Two more launches failed, this time as a result of launcher and engine problems. Model is ready for render. The F-35 can carry this missile externally, however it will compromise aircraft's stealth features. The AGM-158 JASSM (Joint Air-to-Surface Standoff Missile) is a low observable standoff air-launched cruise missile developed by Lockheed Martin for the United States Armed Forces.It is a large, stealthy long-range weapon with a 1,000 pound (454 kg) armor piercing warhead, but a number of problems during testing delayed its introduction into service until 2009. Although the B-1 was initially the only aircraft able to deploy it, it was later integrated onto the B-52, F-15E, and F-16;In March 2016, Lockheed Martin began analysis on an enhanced wing design to further increase range.Low observable standoff air-launched cruise missileAir Force Magazine, Daily Report, December 15, 2014United States tri-service rocket designations post-1963AIM-120B/C Advanced Medium-Range Air-to-Air Missile (AMRAAM) The weapon began operational testing and evaluation in 2002. The program was initiated in 2009 and started along two different tracks. United States tri-service rocket designations post-1963 O míssil será projetado com contramedidas para evitar sistemas de defesa ativos hostis.O LRASM é baseado no AGM-158B JASSM-ER, mas incorpora um sensor de radiofrequência multimodo, um novo link de dados, altímetro de arma e um sistema de energia aprimorado. Late that year, two missiles failed tests and the project was delayed for three months before completing development in April 2003. These capabilities will enable positive target identification, precision engagement of moving ships and establishment of initial target cueing in extremely hostile environments. A In August 2015, the Navy began load and fit checks of an LRASM mass simulator vehicle on an F/A-18 Super Hornet.In July 2016, Lockheed successfully conducted the third surface launch of the LRASM following two tests at the Navy’s Desert Ship, firing it from the Navy’s Self Defense Test Ship (formerly the On 4 April 2017, Lockheed announced the first successful release of the LRASM from an F/A-18 Super Hornet.On 17 August 2017, the LRASM conducted its first flight test in a production-representative, tactical configuration.
It completed testing and entered service with the U.S. Air Force in 2009, and has entered foreign service in … The LRASM was intended to pioneer more sophisticated autonomous targeting capabilities than the U.S. Navy's current Harpoon anti-ship missile, which has been in …

In July 2007, a $68 million program to improve JASSM reliability and recertify the missile was approved by On 27 August 2009, David Van Buren, assistant secretary of the Air Force for acquisition, said that there would be a production gap for the JASSM while further tests were held.In 2006 the Australian government announced the selection of the Lockheed Martin JASSM to equip the Finland had also previously planned to purchase JASSM missiles for the "JASSM is just as much a deterrent capability, as it is a strike capability. O LRASM voará em direção ao seu alvo em altitude média e depois cairá para altitude baixa em sea simming para combater as Para garantir a capacidade de sobrevivência e eficácia contra um alvo, o LRASM é equipado com um sistema de orientação e busca projetado pela O LRASM foi projetado para ser compatível com o sistema de lançamento vertical Alguns conselheiros navais propuseram aumentar as capacidades do LRASM para servir a funções duplas como uma arma de ataque terrestre baseada em navios, além das funções anti-navio originais.

It was designed to meet the needs of U.S. Navy and Air Force. Variants . Ele pode ser direcionado para atacar navios inimigos por sua plataforma de lançamento, receber atualizações via seu datalink ou usar sensores a bordo para encontrar seu alvo. O LRASM-A é um míssil subsônico de cruzeiro baseado no The AGM-158 LRASM is a new generation stand-off range Anti Ship Missile.

Captive carry flight tests of LRASM sensors began in May 2012; a missile prototype was planned to fly in "early 2013" and the first c…

O programa foi iniciado em 2009 em duas versões diferentes.