Thumbnail 1 of 3, Backpack, Red And Beige Pinwheel Pattern designed and sold by pattern-archive.
Thumbnail 2 of 3, Backpack, Red And Beige Pinwheel Pattern designed and sold by pattern-archive.
Thumbnail 3 of 3, Backpack, Red And Beige Pinwheel Pattern designed and sold by pattern-archive.
Backpack, Red And Beige Pinwheel Pattern designed and sold by pattern-archive

Red And Beige Pinwheel Pattern Backpack

Designed and sold by pattern-archive
$50.99
$50.99

Product features

  • Carry your stuff, express yourself, keep your hands free, it's win-win-win
  • Bag measures 17.7 x 11.8 x 4.9in / 45 x 30 x 12.5 cm
  • Most standard laptops fit in the internal laptop pocket, which measures 13.5" x 10.5" / 34 x 27 cm
  • Durable 100% polyester shell
  • Vivid all-over design, sublimation printed for you when you order
  • External mesh pocket and adjustable padded straps
  • For a different style, check out the Drawstring Bag
  • For more space, try the Duffle Bag
  • Since every item is made just for you by your local third-party fulfiller, there may be slight variances in the product received
Artwork thumbnail, Red And Beige Pinwheel Pattern by pattern-archive
Red And Beige Pinwheel Pattern
Seamless pinwheel pattern built on a repeating layout of alternating Beige triangles arranged in rotating square formations across a Red background. The structured geometric layout creates a dynamic spinning effect with strong contrast between the base and accent colors. This seamless design follows the classic pinwheel motif used in quilt blocks, windmill patterns, checkerboard layouts, checkers patterns, and retro geometric surface designs. The repeating triangular arrangement forms a bold directional repeat suited for fabric prints, wallpaper, packaging, digital backgrounds, and modern graphic patterns. Designed for buyers searching for pinwheel pattern, windmill pattern, checkerboard pattern, checkers pattern, or geometric triangle layouts. Fits use cases in quilt inspired prints, retro decor, minimalist graphics, optical illusion designs, and structured repeating patterns.

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