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View: https://x.com/Defence_blog/status/2073329462431670311?s=20
BAE releases first live-fire footage of its new artillery system
https://defence-blog.com/bae-releases-first-live-fire-footage-of-its-new-artillery-system/
BAE releases first live-fire footage of its new artillery system
https://defence-blog.com/bae-releases-first-live-fire-footage-of-its-new-artillery-system/
Key Points
- BAE Systems released test footage on July 2, 2026, of its MDACS artillery system firing Hypervelocity Projectiles.
- The U.S. Army has budgeted about $646 million for MDACS development through fiscal 2027, with a battery prototype due that year.
According to BAE Systems’ own technical specifications, the projectile measures 26 inches (66 centimeters) as a complete launch package and weighs 40 pounds (18 kilograms), carrying a 15-pound (6.8-kilogram) payload designed with a low-drag aerodynamic shape that lets it achieve high velocity and maneuverability without needing a rocket motor to extend its range, unlike many guided munitions that rely on separate propulsion after leaving the barrel.
Depending on which gun system fires it, BAE Systems states the HVP can reach targets more than 40 nautical miles (74 kilometers) away from a Navy 5-inch gun, more than 70 nautical miles (130 kilometers) from the Navy’s Advanced Gun System, more than 43 nautical miles (80 kilometers) from standard 155mm tube artillery, and more than 100 nautical miles (185 kilometers) if fired from a future electromagnetic railgun, giving military planners a single common round compatible with multiple existing and future weapon platforms rather than a separate munition for each.
A complete MDACS battery, the operational unit the Army plans to field rather than a single gun, consists of eight Multi-Domain Artillery Cannons, four Multi-Function Precision Radars to detect and track incoming threats, two Multi-Domain Battle Managers to coordinate targeting and engagement decisions, and a minimum of 144 Hypervelocity Projectiles ready to fire. That structure reflects a deliberate design choice to build MDACS as a networked air defense system rather than a standalone weapon, since detecting a fast-moving drone or cruise missile early enough to intercept it requires radar coverage and automated battle management working in coordination with the guns themselves, not just a cannon capable of firing quickly.