Description
- 4.6-ounce, 60/40 ring spun cotton/polyester
- Tearaway label
- High stitch density for a smoother printing surface
- Seamed 5/8″ neck
- Taped neck and shoulders
- Double-needle sleeves and hem
- Tubular body
- Classic fit
Weight | N/A |
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An ideal canvas for decorators, this soft fleece is everything and more at an unbeatable value. 8.3-ounce, 65/35 ring spun cotton/polyester 100% ring spun cotton face (Solids, Light Heather Grey) 60/40 ring spun cotton/ polyester (Heathers) Drop shoulder Self-fabric lined hood Dyed-to-match drawcords with stitched buttonholes Shoulder to shoulder back neck tape Side seamed 1×1 […]
Soft and lightweight, this hoodie works year-round. 6.5-ounce, 55/45 combed ring spun cotton/poly fleece Cowl neck converts to hood Dyed-to-match drawcords Coverstitch details Back neck tape Slightly longer length 2×2 rib knit cuffs and hem Please note: This product is transitioning from woven labels to tear-away labels. Your order may contain a combination of both […]
4.3-ounce, 60/40 combed ring spun cotton/poly, 32 singles CVC blend 1×1 rib knit neck Shoulder to shoulder taping Tear-away label Side seamed
This classic, go-anywhere tote is perfect for the beach, market and beyond. | 600 denier polyester canvas Self-fabric handles Dimensions: 14″h x 14″w x 5.5″d; Approx. 1,078 cubic inches Note: Bags not intended for use by children 12 and under. Includes a California Prop 65 and social responsibility hangtag.
With a subtle heather texture and moisture-wicking technology, this henley will help you achieve all your performance endeavors. 4.4-ounce, 100% polyester Tag-free label 6-button placket Scalloped hem
LAYERABLE WARMTHSTRETCHFLATLOCK SEAMS FOR COMFORTREFLECTIVE DETAILS| 7.4-ounce, 95/5 poly/spandex jersey Reflective OGIO heat transfer label for tag-free comfort Zip-through cadet collar Reflective O heat transfer at back neck Reflective welding around zippered chest pocket Tonal embossed O pattern at side panels Lower front zippered pockets Set-in sleeves with shaped cuffs Reflective O heat transfer at […]
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