Enhance your carbine's capabilities with the Otter Creek Labs Polonium K 5.56mm Suppressor. Maintain a short, fast-handling rifle profile thanks to the 4.8-inch "Kurz" length, which minimizes overall footprint without sacrificing duty-grade durability. This 11.5-ounce silencer allows for rapid transitions between targets, while specialized 6mm overbore geometry helps reduce gas blowback during high-volume range sessions. Customizing your mounting setup becomes a simple process using the industry-standard 1.375x24 HUB rear threads. These threads allow you to utilize the included 1/2x28 direct thread adapter or a preferred quick-attach system. Navigating tight timber on a hunt or focusing on groups at the range becomes more comfortable with this compact design. Thermal resistance remains a top priority for shooters who demand high-performance signature reduction in a small package. Every detail is optimized for the modern enthusiast using the Otter Creek Labs Polonium K 5.56mm Suppressor.
Features and Benefits
Lightweight and compact design keeps you moving
Flash suppression helps you stay hidden in low-light conditions
1.375x24 rear threads offer universal compatibility with various setups
Noise suppression won't startle game
17-4 stainless steel construction offers lasting durability
Full-auto rating helps you down deer
Specifications
Product Type: Suppressors
Activity: Recreational Shooting
Product length: 4.8"
What's in the Box
Otter Creek Labs Polonium K 5.56mm Suppressor
1/2x28 Direct Thread Adapter
Tube Clamp
Owner's manual
Important Product and Safety Information
Firearms purchased online are shipped to your local Academy Sports + Outdoors as selected in the checkout process.
Please note that all firearm purchases require valid US government issued ID and related firearm paperwork.
You must be a resident of the state selected for pickup.
We recommend the use of protective eyewear whenever using or near the use of this item.
Shipping Restriction: Currently we are not able to ship this product to the following state(s).