Skip to content
Port & Company LPC450VLS t shirt - 100% Ring-Spun Cotton fabric and 4.5 oz weight, DTG compatible

Port & Company LPC450VLS

Women's Long Sleeve Fan Favorite V-Neck Tee

Compare supplier prices

Shipping to United StatesUSDBase plan
SupplierTotal

Closest available product alternatives

Destination
Plan

Updated Jul 14, 2026

Keep comparing

Description

About this product

Port & Company LPC450VLS Women's Long Sleeve Fan Favorite V-Neck Tee is a women's and t shirt with 100% Ring-Spun Cotton fabric, 4.5 oz weight, slim fit, and v neck neckline and long sleeve. DTG is listed for decoration. Ring-spun yarn supports a smoother print surface than open-end yarn.

At a glance

What to know

  • 100% Ring-Spun Cotton fabric product specification
  • 4.5 oz weight and slim fit product specification
  • v neck neckline and long sleeve
  • ring spun yarn and tear away label

Product notes

More details

Product Specs

Port & Company LPC450VLS Women's Long Sleeve Fan Favorite V-Neck Tee is a women's and t shirt. The specs list 100% Ring-Spun Cotton fabric, 4.5 oz weight, slim fit, v neck neckline and long sleeve, ring spun yarn, and tear away label. Ring-spun yarn supports a smoother print surface than open-end yarn.

Decoration Context

DTG is listed for decoration. DTG applies pigment ink directly to compatible garment fibers. The cotton content gives DTG ink a natural-fiber substrate.

Buyer FAQ

Common questions

What is the Port & Company LPC450VLS made of?
100% Ring-Spun Cotton. Use the listed fabric blend when evaluating print compatibility.
What print methods work with the Port & Company LPC450VLS?
DTG is listed for this product. DTG applies pigment ink directly to compatible garment fibers.
How heavy is the Port & Company LPC450VLS?
4.5 oz. Use that weight with the fabric field to compare this garment against lighter or heavier blanks.
What fit does the Port & Company LPC450VLS have?
Slim fit. v neck neckline and long sleeve.
What yarn type does the Port & Company LPC450VLS use?
Ring Spun yarn. Yarn construction helps explain surface feel and print-surface smoothness when comparing apparel blanks.