Art Deco Filigree Scrolls and Flowers Carved Low Profile 3/4 Carat Diamond Engagement Ring Setting in White Gold - 14K or 18K
$54.68
$0.00
Save: $
Metal:
14KWhiteGold
18KWhiteGold
Size:
500
ChooseYourRingSize
850
825
800
775
750
725
700
675
650
625
600
575
550
525
Unavailable
Please select combo product attributes
The combo subtotal is $,SAVE$
Product Details
Timeless in its design, this exquisite antique inspired Art Deco 3/4 carat diamond filigree engagement ring setting is crafted in white gold featuring a low profile 6 prong flush illusion setting.
Embedded into the sides of the band are 6 shimmering white round brilliant cut diamonds of F/G color and VS clarity totaling 0.27 carat. A delicate filigree flower and scrolls design adorns the 2 outward facing sides at the top of the ring, with a romantic wheat pattern on all 3 outward facing sides of the band. Elegant shimmery milgrain beaded edging completes the design.
This unforgettable classic ring semimount features a low profile design which makes it an excellent choice for anyone who would like an heirloom quality engagement ring with plenty of antique detail, which will not "catch" on things and get in the way of a busy daily routine. The ultimate statement of your love, this stunning Art Deco filigree diamond engagement ring setting is crafted to order in your choice of 14K or 18K white gold.
PLEASE NOTE: This semimount ring setting is shown set with a center diamond for illustration purposes, and is sold WITHOUT a center stone, for customers who already have their own diamond or gemstone. If you do not have a center stone for this ring, you can add a diamond to your order above.
A round brilliant cut diamond or gemstone of 5.3 - 5.8 millimeters in diameter and approximately 0.75 carat in weight will fit perfectly in this ring - note that millimeter measurements are most important in determining whether a diamond or gemstone can be accommodated securely in this ring.
This vintage inspired Art Deco ring setting is also available in other center gemstone sizes and in other metals.