Friday 2 March 2018

Putin Unveals Russia’s New Weapons: Hypersonic Missiles, Nuclear Unmanned Underwater Vehicles And Laser Weapons (Videos)

On March 1, President Vladimir Putin gave his annual state-of-the-nation address to Russia’s Federal Assembly unvealing the country’s priorities and state of the art weapon systems.

Kinzhal high-precision hypersonic aircraft missile system

Countries with high research potential and advanced technology are known to be actively developing so-called hypersonic weapons. The speed of sound is usually measured in Mach numbers in honour of Austrian scientist Ernst Mach who is known for his research in this field. One Mach is equal to 1,062 kilometres per hour at an altitude of 11 kilometres. The speed of sound is Mach 1, speeds between Mach 1 and Mach 5 is called supersonic, and hypersonic is above Mach 5. Of course, this kind of weapon provides substantial advantages in an armed conflict. Military experts believe that it would be extremely powerful, and that its speed makes it invulnerable to current missile and air defence systems, since interceptor missiles are, simply put, not fast enough. In this regard, it is quite understandable why the leading armies of the world seek to possess such an ideal weapon.
Friends, Russia already has such a weapon.
The most important stage in the development of modern weapons systems was the creation of a high-precision hypersonic aircraft missile system; as you already know for sure, it is the only one of its kind in the world. Its tests have been successfully completed, and, moreover, on December 1 of last year, these systems began their trial service at the airfields of the Southern Military District.
The unique flight characteristics of the high-speed carrier aircraft allow the missile to be delivered to the point of discharge within minutes. The missile flying at a hypersonic speed, 10 times faster than the speed of sound, can also manoeuvre at all phases of its flight trajectory, which also allows it to overcome all existing and, I think, prospective anti-aircraft and anti-missile defence systems, delivering nuclear and conventional warheads in a range of over 2,000 kilometres. We called this system Kinzhal (Dagger).

Avangard strategic hypersonic missile system

A real technological breakthrough is the development of a strategic missile system with fundamentally new combat equipment – a gliding wing unit, which has also been successfully tested.
Unlike existing types of combat equipment, this system is capable of intercontinental flight at supersonic speeds in excess of Mach 20.
As I said in 2004, in moving to its target, the missile’s gliding cruise bloc engages in intensive manoeuvring – both lateral (by several thousand km) and vertical. This is what makes it absolutely invulnerable to any air or missile defence system. The use of new composite materials has made it possible to enable the gliding cruise bloc to make a long-distance guided flight practically in conditions of plasma formation. It flies to its target like a meteorite, like a ball of fire. The temperature on its surface reaches 1,600–2,000 degrees Celsius but the cruise bloc is reliably guided.
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For obvious reasons we cannot show the outer appearance of this system here. This is still very important. I hope everyone understands this. But let me assure you that we have all this and it is working well. Moreover, Russian industrial enterprises have embarked on the development of another new type of strategic weapon. We called it the Avangard.

X-101 air-launched missile carrying a nuclear warhead

Russia’s advanced arms are based on the cutting-edge, unique achievements of our scientists, designers and engineers. One of them is a small-scale heavy-duty nuclear energy unit that can be installed in a missile like our latest X-101 air-launched missile or the American Tomahawk missile – a similar type but with a range dozens of times longer, dozens, basically an unlimited range. It is a low-flying stealth missile carrying a nuclear warhead, with almost an unlimited range, unpredictable trajectory and ability to bypass interception boundaries. It is invincible against all existing and prospective missile defence and counter-air defence systems. I will repeat this several times today.
In late 2017, Russia successfully launched its latest nuclear-powered missile at the Central training ground. During its flight, the nuclear-powered engine reached its design capacity and provided the necessary propulsion.
Now that the missile launch and ground tests were successful, we can begin developing a completely new type of weapon, a strategic nuclear weapons system with a nuclear-powered missile.

Nuclear unmanned underwater vehicle

“Now, we all know that the design and development of unmanned weapon systems is another common trend in the world. As concerns Russia, we have developed unmanned submersible vehicles that can move at great depths (I would say extreme depths) intercontinentally, at a speed multiple times higher than the speed of submarines, cutting-edge torpedoes and all kinds of surface vessels, including some of the fastest. It is really fantastic. They are quiet, highly manoeuvrable and have hardly any vulnerabilities for the enemy to exploit. There is simply nothing in the world capable of withstanding them.
Unmanned underwater vehicles can carry either conventional or nuclear warheads, which enables them to engage various targets, including aircraft groups, coastal fortifications and infrastructure.
In December 2017, an innovative nuclear power unit for this unmanned underwater vehicle completed a test cycle that lasted many years. The nuclear power unit is unique for its small size while offering an amazing power-weight ratio. It is a hundred times smaller than the units that power modern submarines, but is still more powerful and can switch into combat mode, that is to say, reach maximum capacity, 200 times faster.
The tests that were conducted enabled us to begin developing a new type of strategic weapon that would carry massive nuclear ordnance.”

Sarmat ICBM

In addition, we have embarked on the development of the next generation of missiles. For example, the Defence Ministry and enterprises of the missile and aerospace industry are in the active phase of testing a new missile system with a heavy intercontinental missile. We called it Sarmat.
Sarmat will replace the Voevoda system made in the USSR. Its immense power was universally recognized. Our foreign colleagues even gave it a fairly threatening name.
That said, the capabilities of the Sarmat missile are much higher. Weighing over 200 tonnes, it has a short boost phase, which makes it more difficult to intercept for missile defence systems. The range of the new heavy missile, the number and power of its combat blocs is bigger than Voevoda’s. Sarmat will be equipped with a broad range of powerful nuclear warheads, including hypersonic, and the most modern means of evading missile defence. The high degree of protection of missile launchers and significant energy capabilities the system offers will make it possible to use it in any conditions.
Voevoda’s range is 11,000 km while Sarmat has practically no range restrictions.
As the video clips show, it can attack targets both via the North and South poles.
Sarmat is a formidable missile and, owing to its characteristics, is untroubled by even the most advanced missile defence systems.

Laser weapons

We are well aware that a number of other countries are developing advanced weapons with new physical properties. We have every reason to believe that we are one step ahead there as well – at any rate, in the most essential areas.
We have achieved significant progress in laser weapons. It is not just a concept or a plan any more. It is not even in the early production stages. Since last year, our troops have been armed with laser weapons.
I do not want to reveal more details. It is not the time yet. But experts will understand that with such weaponry, Russia’s defence capacity has multiplied.
Those interested in military equipment are welcome to suggest a name for this new weaponry, this cutting-edge system.
Of course, we will be refining this state-of-the-art technology. Obviously, there is far more in development than I have mentioned today. But this is enough for now.

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