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
We recommend the use of protective eyewear whenever using or near the use of this item.
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.
Shipping Restriction: Currently we are not able to ship this product to the following state(s).