Description
- 100% cotton twill with 100% polyester soft mesh
- Unstructured
- Low profile
- Hook and loop closure
Weight | N/A |
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This heathered style is sure to be a contender for your favorite moisture-wicking, snag-resistant polo. Lightweight and breathable, it excels at sports or casual events and it’s an exceptional value. | 3.8-ounce, 100% polyester jersey Tag-free label Self-fabric collar Taped neck Open Y-placket Set-in, open hem sleeves *Due to the nature of 100% polyester performance […]
By mixing heather with a solid color and adding reflective hits, this moisture-wicking pullover has a technical look plus plenty of stretch for easy movement. 6.8-ounce, 90/10 poly/spandex jersey Soft-brushed backing Tag-free label Reflective details on right sleeve and lower back Feminine curved and blocked design details on back Cadet collar Reverse coil zipper Princess […]
5.3-ounce, 100% US cotton 50/50 cotton/poly (Graphite Heather, Safety Green) 90/10 cotton/poly (Sport Grey) Taped neck and shoulders Tearaway label Non-topstitched, classic width, rib collar Left chest pocket Classic fit, seamless body
Large capacity for the gym or light travel. The cavernous interior easily holds a complete change of clothes and shoes. | 600D poly/420D dobby poly Front zippered pocket Ventilated shoe compartment with grab handle Detachable, adjustable, padded shoulder strap Fabric-wrapped handle Dimensions: 14″h x 21″w x 12″d Capacity: 3,528 cu.in./55.7L Weight: 1.8 lbs./0.8kg Note: Bags […]
A timeless design with a soft, brushed feel. | Fabric: 100% brushed cotton twill Structure: Unstructured Profile: Low Closure: Hidden tuck-in with hook and loop
LAYERABLE WARMTHSTRETCHFLATLOCK SEAMS FOR COMFORTREFLECTIVE DETAILS 6.8-ounce, 90/10 poly/spandex Zip-through cadet collar Ruching at collar Reflective OGIO heat transfer label for tag-free comfort Tonal printed O pattern on heathered yarn-dyed fabric Reflective O heat transfer at back left panel Rubber-wrapped O zipper pull Set-in sleeves Mitten cuffs for warmth Front pockets Reflective O heat transfer […]
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