Chanel Sunglasses
Chanel Oval Sunglasses with Glitter - Infused Gray Acetate & Black CHANEL Temples (Model: CH5520)
$69.99
Description
Brand: Chanel, the iconic French luxury house renowned for timeless elegance, heritage craftsmanship, and signature design codes since 1910.
Model: CH5520 — A glamorou
SKU 1-1016864
- Brand: Chanel, the iconic French luxury house renowned for timeless elegance, heritage craftsmanship, and signature design codes since 1910.
- Model: CH5520 — A glamorous oval - framed sunglass design blending glitter - infused gray acetate, gradient dark lenses, and bold black “CHANEL” lettering on temples, embodying avant - garde sophistication.
- Material:
- Frame: Glitter - infused gray acetate (durable, lightweight, and shimmering for a luxurious finish).
- Temples: Black - toned “CHANEL” lettering (crafted from premium resin or metal, ensuring wear - resistance), paired with subtle metal hinges.
- Lenses: Gradient dark lenses (blocks 100% UVA/UVB rays for optimal eye protection and glare reduction).
- Design & Craftsmanship:
- Silhouette: A classic oval shape that flatters diverse face shapes, merging retro charm with contemporary glitter - accented allure.
- Detailing: Bold black “CHANEL” lettering on temples — a statement of the brand’s iconic identity, crafted with Italian artisanal precision (“MADE IN ITALY” authenticity).
- Finish: High - gloss glitter - infused gray acetate frame + gradient dark lenses, exuding refined glamour with a modern edge.
- Function:
- UV Protection: Full UVA/UVB shielding ensures eye safety in various light conditions.
- Glare Reduction: Gradient lenses minimize reflections, enhancing visibility for daily wear and outdoor activities.
- Care:
- Clean lenses with a microfiber cloth (avoid abrasives to protect acetate, temple lettering, and lenses).
- Store in the original Chanel case to shield from dust, impacts, and moisture (preserve the frame’s glitter finish and temple detailing).
- Avoid contact with perfumes, lotions, or extreme heat to maintain the frame’s finish and structural integrity.