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Medium-Range Surface-to-Air Missile (MRSAM), India

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http://www.airforce-technology.com/projects/medium-range-surface-to-air-missile-mrsam/


The Medium-Range Surface-to-Air Missile (MRSAM) is being developed by India's Defence Research and Development Organisation (DRDO) in collaboration with Israel Aerospace Industries (IAI). It is expected to enter service with the Indian Air Force (IAF) in 2017.

The missile is designed to provide the armed forces with air defence capability against a variety of aerial threats at medium ranges.

MRSAM development and testing
A contract for the MRSAM programme was signed in February 2009. The IAF will buy 450 MRSAMs and 18 firing units at a value of more than $2bn.

The IAF ordered one MRSAM regiment including 16 firing units and associated fire control systems and surveillance systems.

IAI and DRDO conducted three flight tests of the MRSAM weapon system at the Integrated Test Range off Odisha Coast, India, in July 2016, to validate all missile components. The missile successfully intercepted a moving aerial target in all the three tests.

MRSAM design and features

Each MRSAM weapon system comprises of one command and control system, one tracking radar, missiles, and mobile launcher systems.

The mobile launcher is used to transport, emplace and launch up to eight canisterised missiles in two stacks. It can fire the missiles in single or ripple firing modes from the vertical firing position.

The combat management system simplifies the process of engaging a variety of threats. It identifies and tracks the threat using tracking radar. The system calculates the distance between the target and the launcher, and then determines if the identified target is a friend or a foe. The target information is, then, transmitted to the mobile launcher.

The weapon is 4.5m-long, weighs approximately 276kg, and is equipped with canards and fins for control and manoeuvrability.


Guidance and warhead

The MRSAM missile is equipped with an advanced active radar radio frequency (RF) seeker, advanced rotating phased array radar and a bidirectional data link. The RF seeker, located in the front section of the missile, is used to detect moving targets in all weather conditions.

"The missile's explosive warhead, featuring a self-destruct fuse, provides high-probability of kill against enemy targets with minimal collateral damage."

The phased array radar provides a high-quality air situation picture, while the bidirectional data link is used for relaying mid course guidance and target information to the missile.

The missile's explosive warhead, featuring a self-destruct fuse, provides high-probability of kill against enemy targets with minimal collateral damage.


Performance of MRSAM weapon

The MRSAM surface-to-air missile is powered by a dual-pulse solid propulsion system developed by DRDO.

The propulsion system, coupled with a thrust vector control system, allows the missile to move at a maximum speed of Mach 2. The weapon has the ability to engage multiple targets simultaneously at ranges of 70km.



Contractors involved

Under a contract with DRDO, Tata Advanced Systems designed and manufactured combat management systems for the MRSAM programme at its research and development (R&D) facility in New Delhi, India.

Bharat Dynamics (BDL) was the lead integrator for the MRSAM missile systems. BDL established a new production facility in Hyderabad with an investment of $100m to manufacture both MRSAM and LRSAM missiles. When operational, the facility will have the capacity to produce 100 missiles a year.

Other contractors involved in the development of the MRSAM include Bharath Electronics (BEL), L&T, Elta, Rafael, and other private industries.
 
With the following (crucial) RF seeker, India is close to develop its own long range "Carrier Killer" :


The MRSAM missile is equipped with an advanced active radar radio frequency (RF) seeker, advanced rotating phased array radar and a bidirectional data link. The RF seeker, located in the front section of the missile, is used to detect moving targets in all weather conditions.
 

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