
84CC295-V: Preciosa Crystal Dia Violet 5x5mm-144PC
These 5x5mm machine-cut crystal diamond beads from Preciosa Ornela come 144 pieces to a pack, giving you a solid working quantity of a genuinely versatile shape. The diamond silhouette catches light from multiple faceted angles, making it a strong choice when you want geometry with sparkle.
Dia Violet is a transparent purple glass crystal — fully see-through, so your stringing material and any layered beads beneath will read right through the bead, becoming part of the finished look.
Specifications
- Size: 05mm
- Color: Crystal Dia Violet (transparent)
- Finish: Transparent
- Shape: Diamond
- Material: Glass Crystal, made in Bohemia, Czechia
- Quantity: 144 Pieces
What to make with them
The diamond shape works especially well in earrings and pendants where the pointed profile can hang freely and rotate to catch light, and it lends itself to right-angle weave or other off-loom stitches where the angular geometry locks neatly into structured grids.
Original: $10.35
-65%$10.35
$3.62Product Information
Product Information
Shipping & Returns
Shipping & Returns
Description
These 5x5mm machine-cut crystal diamond beads from Preciosa Ornela come 144 pieces to a pack, giving you a solid working quantity of a genuinely versatile shape. The diamond silhouette catches light from multiple faceted angles, making it a strong choice when you want geometry with sparkle.
Dia Violet is a transparent purple glass crystal — fully see-through, so your stringing material and any layered beads beneath will read right through the bead, becoming part of the finished look.
Specifications
- Size: 05mm
- Color: Crystal Dia Violet (transparent)
- Finish: Transparent
- Shape: Diamond
- Material: Glass Crystal, made in Bohemia, Czechia
- Quantity: 144 Pieces
What to make with them
The diamond shape works especially well in earrings and pendants where the pointed profile can hang freely and rotate to catch light, and it lends itself to right-angle weave or other off-loom stitches where the angular geometry locks neatly into structured grids.











