Designed to address the growing need for an assured, agile munition that can be easily integrated across platforms and systems, BlackThorn is tailored to meet the demands of modern conflict whilst also being capable of rapid manufacture at scale and low cost.
As a mark of confidence in this emerging capability, BlackThorn has been selected as the first new generation warhead to be integrated into Frankenburg’s Mark I short range air defence missile. This follows the collaboration agreement signed between the companies earlier this year.
BlackThorn combines decades of expertise in warhead design, energetic materials and fuzing with our proven experience in delivering high-volume munitions to demonstrate a new way of thinking about payloads for a range of platforms that meet the demands of the modern battlefield. This innovation provides an advanced, affordable solution that meets the evolving needs of our customers and delivers multi-role warheads for the next generation of attritable platforms, missiles, autonomous platforms and counter drone capability at pace to stay ahead of emerging threats.Scott JamiesonManaging Director of BAE Systems’ Maritime and Land Defence Solutions
Frankenburg was founded to deliver affordable mass at the speed demanded by modern warfare. Our collaboration with BAE Systems brings together advanced UK warhead technology and low-cost missile manufacturing to create a scalable interceptor capability. Together, we are proving that effective air defence can be delivered quickly, at scale, and at a price point that enables mass deployment.Dan HallettManaging Director of Frankenburg Technologies UK
BlackThorn is adaptable and scalable by design, it comprises various warhead options, including 40mm, 70mm and 120mm which can be integrated across different platforms. Through its modular architecture – blast, fragmentation, multi-purpose effects and anti-armour provides a flexible, mission-ready payload without the need for multiple types of weapon systems.
It has been developed in an accelerated timescale through extensive use of modelling, simulation and digital engineering followed by validation through a wide programme of testing.
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