Skip to product information
1 of 2

0.17 CT. T.W. Champagne and White Composite Natural Diamond Swirl Ring in Solid 10K Rose Gold

0.17 CT. T.W. Champagne and White Composite Natural Diamond Swirl Ring in Solid 10K Rose Gold

Regular price £559.99
Regular price £1,400.00 Sale price £559.99
Sold out
Tax included. Shipping calculated at checkout.
Bring a sparkle to her eyes with this stunning diamond ring. Made from exquisite 10K rose gold, this beautiful piece showcases a round composite of captivating champagne diamonds hugged by...
15 people are viewing this right now

Availability : Hand Made to Order (7-12 Business Days to Manufacture)

SKU: GLD-TA-134220
Category: Rings

Free Shipping

It takes 7-9 business days to process a transaction and 3-5 business days for shipping. As soon as your order has been shipped, you’ll receive an email notification along with the tracking number. All orders are specifically made for you only!

Best Price Guarantee

We are the direct manufacturer of these gorgeous pieces. You are guaranteed to be buying directly from the source that is why our prices are really low as there are no middle man, no additional mark up to the prices.

View full product details
Bring a sparkle to her eyes with this stunning diamond ring. Made from exquisite 10K rose gold, this beautiful piece showcases a round composite of captivating champagne diamonds hugged by a delicate swirl of white diamonds. Shimmering with 1/6 ct. t.w. of diamonds and a polished finish, this ring is a true reflection of your love and affection. A precious addition to any jewelry collection that is sure to leave a lasting impression.

The perfect complement to any elegant style this ring will be hand-made exclusively to your order by our skilled jewelers. Please allow 7-9 business days for processing.

Product ID: GLD-TA-134220
Precious Metal Type: 10K Rose Gold
Metal Finish: Polished
Rhodium: Yes
Ring Style: Fashion
Color: J/K
Clarity: I2/I3
Stone Type: Diamond
Stone Color: Champagne
Stone Shape: Round
Stone Carat Range: Under 0.25