Description
- 7.2-ounce, 66/34 poly/ring spun cotton French terry
- Classic fit
- Tear-away label
- V-notch detail
- Natural back neck tape
- Flat drawcord
- Raglan sleeves
- Kangaroo pocket
- Stretch collar, cuffs and hem
Weight | N/A |
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An easy-to-layer, easy care essential designed to complement your work-life style features a perfect weight knit that maintains its shape regardless of wear. Rib detailing and a smart cadet collar exude a modern sophistication for work or play. Fabric+Weight 90/9/1 cotton/nylon/spandex Features+Benefits Rib collar, cuffs and hem Cadet collar Dyed-to-match coil zipper with black pull […]
Rock out in warmth and layerability.| 7.8-ounce, 50/50 cotton/poly fleece Tear-away label Black jersey hood lining , twill back neck tape, flat drawcords, YKK zipper and zipper tape 2×2 rib knit cuffs and hem
With long 22-in. handles to make carrying a breeze, this roomy tote is an easy way to bypass paper and plastic grocery bags. | Durable 10-ounce, 100% cotton twill Cotton web handles with reinforced stitching Dimensions:15″h x 13.5″w x 7.25″d; Approx. 1,800 cubic inches Note: Bags not intended for use by children 12 and under. […]
A versatile top that can fit in anywhere, with just about everything. Made from a stretch crepe fabric and designed with simple, sophisticated features, this crew can be worn alone or layered for polished comfort and effortless style. Fabric+Weight 4.3-ounce, 95/5 poly/spandex Features+Benefits Crew neck with back keyhole button closure Dolman sleeves Rounded drop tail […]
100% cotton twill Structured High-profile 7 panels Slightly curved bill 7-position adjustable snapback closure
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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