Birchwood Casey 33901 Target Spots - 1" Self-Adhesive Paper Bullseye Targets (Black/Orange, 360-Pack)
Birchwood Casey
Pro-Shot 1" orange self-adhesive peel and stick target dots are a no-fuss way to turn plain paper, cardboard, or other surfaces into quick, repeatable shooting targets. Whether you're zeroing a rifle at the range, working through a function check with a handgun, or setting up reactive targets for defensive drills, these adhesive dots stick fast and peel clean without leaving residue behind. The 10-sheet pack gives you 360 individual targets, making them economical for high-volume practice sessions or club events where you need to refresh targets quickly between shooters.
The 1-inch orange dot provides a bright aiming point that contrasts well in most lighting conditions, and the self-adhesive backing means you skip the staple gun and tape. Just peel and press onto your backer, and you're ready to shoot. Orange stays visible downrange, even at distance, so you can spot hits and misses without walking forward between rounds. This simple approach works for sighting-in duties, transition drills, zeroing corrections, and anywhere you want a consistent, repeatable aiming reference without the setup of traditional bullseye targets.
Stock a few packs in your range bag. They're light, compact, and replaceable—perfect for mobile range days, informal practice, or when you're training and tearing through targets faster than you'd burn through a box of factory loads.
The self-adhesive backing works on paper, cardboard, plywood, and most porous or semi-porous materials. They're designed for standard range backboards and DIY targets, though adhesion will vary by surface texture and cleanliness.
Yes. The dots peel cleanly without leaving sticky residue, so you can apply fresh dots to the same cardboard or backer board and shoot again.
Each pack contains 360 individual 1-inch orange dots across 10 sheets of 36 dots per sheet.
Each dot is 1 inch in diameter and orange, providing good visibility for aiming and spotting impacts at typical range distances.