E L F Camo Semi Matte Cc Spf 30 Tan 400 W Cream
Product Images NDC 76354-535

View Photos of Packaging, Regulatory Labels, and Product Appearance

Product Visual Gallery

This gallery contains 2 technical images submitted to the FDA as part of the official labeling for E L F Camo Semi Matte Cc Spf 30 Tan 400 W (NDC 76354-535). Unlike standard consumer photos, these assets often include clinical data figures, molecular chemical structures, and official manufacturer packaging layouts.

As provided by E.l.f. Cosmetics, Inc., these visuals offer a comprehensive scientific overview of the product's physical and chemical identity, aiding pharmacists and researchers in product verification and study.

FDA Label Image

Inner Package6.jpg (Inner Package6)

Inner Package6.jpg (Inner Package6)
This is a description of e.l.f.'s CAMO CC Cream with full coverage, long-lasting formula, and a semi-matte finish. The CC cream contains active ingredients such as Zinc Oxide, Titanium Dioxide, Homosalate, Octisalate, and Octocrylene while also providing broad-spectrum SPF 30 sunscreen protection. The product comes with directions for application and warnings about usage on damaged skin. It is suitable for external use only and contact with eyes should be avoided. The cream is designed in the USA and made in China.*
FDA Label Image

Outer Package6.jpg (Outer Package6)

Outer Package6.jpg (Outer Package6)
This is information about an Elf CC Cream with SPF 30 that provides full coverage color correction with a semi-matte finish. It contains hyaluronic acid and niacinamide to protect and even out the skin tone. The cream comes with directions on how to apply it for the best results. The product is also described as helping to prevent sunburn due to its sunscreen properties. Additionally, there are warnings provided and the details of active ingredients like Zinc Oxide and Titanium Dioxide. The cream is labeled as fair trade and the packaging indicates it is designed in the USA and made in China.*

* These product label images have been analyzed using experimental machine learning. Please verify findings with the primary label text.