Timeless Elegance Inspired by Nature
Capture the essence of purity and sweetness with our signature Jasmine Bloom Pearl Earrings. Inspired by the delicate jasmine flower, this design features a stunning 10mm genuine freshwater pearl, gently cradled by golden petals. The perfect blend of floral charm and natural sophistication, these earrings are designed to brighten your everyday look or add a touch of grace to special occasions.
Why You’ll Love It:
• Exquisite Design: The brass base is crafted into a blooming jasmine flower, adding depth and dimension to the classic pearl stud.
• Natural Beauty: Features a hand-selected 10mm freshwater pearl. Since these are genuine pearls, each one has a unique, deep luster and smooth surface.
• Radiant Finish: Plated in a rich 18K Gold Color, providing a luxurious, warm glow that complements the creamy white pearl.
• Comfortable Fit: Secure stud backing ensures they stay in place comfortably all day long.
What’s in the Box:
We want your unboxing experience to be special. Every order includes:
• 1 Pair of Jasmine Bloom Freshwater Pearl Earrings
• Hinkik Jewelry Box: Packaging, perfect for gifting or storage.
• Jewelry Cloth: Soft fabric to keep your jewelry shining.
• Care Instruction Card: Tips to help your jewelry last a lifetime.
Specifications:
• Brand: Hinkik Jewelry
• Material: Brass
• Finish: 18K Gold Color Plating
• Gemstone: Freshwater Pearl (10mm)
• Type: Stud Earrings
⚠️ Care Instructions (Important):
Freshwater pearls are organic gems and require special care:
• NO ALCOHOL: Strictly avoid contact with alcohol (including hand sanitizers and alcohol wipes). Alcohol can permanently damage the pearl's luster (nacre) and strip the gold color finish.
• Avoid Chemicals: Keep away from perfumes, hairsprays, and lotions. Apply these products before putting on your jewelry.
• Clean Gently: After wearing, gently wipe the earrings with the provided polishing cloth to remove oils and dust.
• Proper Storage: Store in the provided jewelry box when not in use to prevent scratches and oxidation.