AAC $10.07 ACHR $5.61 -1.58% ▼ AERO $15.82 +1.54% ▲ AIN $60.98 +0.56% ▲ AIR $116.11 -3.69% ▼ AM $20.93 -1.41% ▼ AMP $493.00 +2.43% ▲ AMTM $19.19 -1.08% ▼ APH $84.09 +1.39% ▲ ASB $29.37 +1.00% ▲ ATI $185.48 -0.39% ▼ ATRO $69.22 +0.10% ▲ AVAV $152.05 -3.82% ▼ AVNW $20.09 +0.70% ▲ AXON $430.11 -3.15% ▼ BAB $25.50 BAH $72.95 -1.29% ▼ BBAI $2.80 +0.00% ▲ BDL $45.12 +1.58% ▲ BELFB $252.69 +0.69% ▲ BHE $82.52 +0.45% ▲ BKSY $23.25 -0.16% ▼ BWXT $138.47 -0.38% ▼ CACI $618.32 +0.24% ▲ CAE $24.86 +0.97% ▲ CDRE $26.39 +0.69% ▲ CICN $0.00 CMTL $1.39 -1.42% ▼ CNC $61.82 -0.13% ▼ CODA $10.78 +0.65% ▲ AAC $10.07 ACHR $5.61 -1.58% ▼ AERO $15.82 +1.54% ▲ AIN $60.98 +0.56% ▲ AIR $116.11 -3.69% ▼ AM $20.93 -1.41% ▼ AMP $493.00 +2.43% ▲ AMTM $19.19 -1.08% ▼ APH $84.09 +1.39% ▲ ASB $29.37 +1.00% ▲ ATI $185.48 -0.39% ▼ ATRO $69.22 +0.10% ▲ AVAV $152.05 -3.82% ▼ AVNW $20.09 +0.70% ▲ AXON $430.11 -3.15% ▼ BAB $25.50 BAH $72.95 -1.29% ▼ BBAI $2.80 +0.00% ▲ BDL $45.12 +1.58% ▲ BELFB $252.69 +0.69% ▲ BHE $82.52 +0.45% ▲ BKSY $23.25 -0.16% ▼ BWXT $138.47 -0.38% ▼ CACI $618.32 +0.24% ▲ CAE $24.86 +0.97% ▲ CDRE $26.39 +0.69% ▲ CICN $0.00 CMTL $1.39 -1.42% ▼ CNC $61.82 -0.13% ▼ CODA $10.78 +0.65% ▲

Marines Rushing To Equip Amphibious Combat Vehicles With New Anti-Drone Jammers

September 26, 2026 · by DPW Pipeline

The U.S. Marine Corps is buying Anduril Pulsar-L electronic warfare jammers to meet an urgent operational need to better protect its 8×8 wheeled Amphibious Combat Vehicles (ACV) from drones. This is part of broader efforts the service is pursuing to boost the ACV’s defenses against uncrewed aerial attackers, as well as incoming anti-tank guided missiles and other threats. Drone threats are real now and have notably sidelined even the most advanced heavy armor in Ukraine.

Marine Corps Systems Command (MARCORSYSCOM) announced it had awarded a sole-source deal to Anduril, valued at $15,711,445.50, for an unspecified number of Pulsar-Ls, yesterday. This follows a statement of intent the Command put out last month. Anduril first unveiled Pulsar-L, a lightweight addition to its larger Pulsar family of electronic warfare systems, in April 2025.

The Marine Corps had 150 baseline personnel carrier variants of the ACV (or ACV-Ps), as well as 21 command-and-control ACV-C versions, in inventory as of April 2026. The default armament for ACV-P currently is just a single .50 caliber M2 machine gun in a remote weapon station on top of the hull. The service’s goal is to eventually acquire 389 ACV-Ps and 33 ACV-Cs, as well as 152 ACV-30s with new 30mm cannon-armed turrets and 34 ACV-R armored recovery vehicle variants. The ACV family has already supplanted the Marine Corps’ previous fleet of tracked Assault Amphibious Vehicles (AAV).

From left to right, an Amphibious Combat Vehicle command and control variant (ACV-C), a 30mm cannon-armed ACV-30, and a standard ACV personnel carrier version (ACV-P). The ACV-R recovery variant is not shown here. USMC/Sgt. Alexis Sanchez

“The Anduril Pulsar-L system is a platform-integrated omni-directional SK C-UAS [soft-kill counter-uncrewed aerial systems] with a combined sensor/jammer package that detects, tracks, identifies, and defeats radio frequency-dependent Group 1 and Group 2 Unmanned Aerial Systems (UASs),” MARCORSYSCOM wrote in a justification for the sole-source contract, which was also released yesterday. “Additionally, the system provides counter positioning, navigation, and timing capabilities.”

The U.S. military definition of a Group 1 drone is any design weighing up to 20 pounds, that is able to fly up to an altitude of 1,200 feet, and that can reach speeds of up to 100 knots. Group 2 is the next tier up, encompassing types with gross weights between 21 and 55 pounds, that can get up to an altitude of 3,500 feet, and hit top speeds of up to 250 knots. Kamikaze drones and other small weaponized types that fall into Groups 1 and 2 are used on a daily basis in Ukraine to attack armored vehicles, as well as unarmored vehicles and personnel. These are threats that have been steadily expanding to other hotspots globally, and that we will come back to later on.

Furthermore, “the Pulsar-L is the only solution capable of being mounted on the ACV to provide a mobile and organic means to effectively and simultaneously execute the entire kill-chain against hostile UASs in the deployed land and maritime/littoral environment while not exceeding the limited ACV space, weight, and power claim allotted to the SK C-UAS solution,” according to MARCORSYSCOM. “This will provide the ACV with an essential defensive capability, directly contributing to increased survivability and force protection while not sacrificing the mobility and operational tempo of the ACV.”

A row of Marine ACVs seen during training. USMC

Pulsar-L is already “in use by the Special Operations Command due to the system’s low weight, proven performance in engaging multiple UASs, and simultaneous execution of the full kill-chain while static or on the move,” the justification document adds. “Additionally, it is the only known commercially available system that meets the minimum requirement to rapidly identify and respond to emerging UAS technologies and tactics without frequent updates to predefined threat data libraries. The Pulsar-L is the only solution that uses machine based learning to continually adapt to these ever-changing threats without requiring vendor updates, allowing the warfighters to continually be effective in the fight.”

The latter point here is a particularly important consideration for electronic warfare systems, in general, which need to be able to accurately detect, categorize, and respond to different waveforms to be most effective. The emergence of new waveforms, as well as changes to how existing ones are emitted, together with new tactics, techniques, and procedures, can all negatively impact a system’s performance. Historically, the process of responding to those developments with updates to built-in threat libraries has been lengthy and complex. The conflict in Ukraine has shown that the cycle of new developments in the electromagnetic spectrum and then the need for new countermeasures can be regularly measured in weeks.

The U.S. military has been heavily investing in so-called cognitive electronic warfare capabilities to help automate and otherwise accelerate various aspects of this process. The ability of a particular electronic warfare suite to adapt autonomously in real-time, even in the middle of operations, has been viewed as the absolute ‘holy grail’ of this concept, which you can read more about here. How exactly Pulsar-L leverages machine-learning and artificial intelligence to this end, and the speed with which it can adapt to changing threats, is still not entirely clear.

Regardless, “there is an unusual and compelling need for the rapid deployment of SK C-UASs

Source: www.twz.com — article syndicated from the publisher’s feed; all rights remain with the original publisher.