Description
- Retail fit
- Tear-away label
- Side seamed
- Ribbed cuffs
- 3.8-ounce, 50/25/25 poly/Airlume combed and ring spun cotton/rayon, 40 singles
- Select colors XS-3XL
Weight | N/A |
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Designed for world globetrotting or the daily commute, this layerable blazer is the perfect fusion of OGIO good looks, easy moving stretch and water-resistant performance. 92/8 nylon/spandex with durable water-repellent (DWR) finish 100% poly micromesh lining on front panels Binding at armholes and shoulder seams Hidden snap closure Angled molded zippered pockets Interior pocket Back […]
Fabric: 67/33 cotton/poly front panels; 100% polyester mesh mid and back panelsStructure: UnstructuredProfile: Low Features: Pigment print gives an oiled leather lookClosure: Hook and loop
The affordable Re-Tee is 100% recycled fabric and never re-dyed, made from reclaimed material that otherwise could end up in a landfill. Soft. Comfy. High-quality. Doing good for the planet feels as good on the inside as it does on the outside. 5.3-ounce, 60% recycled cotton/40% recycled polyester, 24 singles 54% recycled cotton/40% recycled polyester/6% […]
A smooth face, brushed back and coverstitching make this warm fleece vest a classier alternative to more casual fleece. Can be zipped in and secured by snap attachment inside an outer Collective layer 5.9-ounce, 100% polyester fleece Dyed-to-match and contrast coverstitch Slightly longer length Molded center front zipper Front reverse-coil zippered pockets
Our mock is crafted from combed ring spun cotton for a soft hand feel. | 6.3-ounce, 100% combed ring spun cotton 1×1 rib knit collar and cuffs Double-needle collar and hem
STAY-COOL WICKINGLAYERABLE WARMTHSTRETCHFLATLOCK SEAMS FOR COMFORTREFLECTIVE DETAILS 6.7-ounce, 91/9 poly/spandex jersey with stay-cool wicking technology Lightly brushed interior Reflective OGIO heat transfer label for tag-free comfort Zip-through cadet collar with molded cord pull Reflective O heat transfer at back neck Raglan sleeves with shaped cuffs Drop tail hem with reflective stacked O heat transfers at […]
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