Rae Climate Control Moisturizing Mineral Tint 15% Cream
Product Images NDC 84645-172
View Photos of Packaging, Regulatory Labels, and Product Appearance
Product Visual Gallery
This gallery contains 3 technical images submitted to the FDA as part of the official labeling for Rae Climate Control Moisturizing Mineral Tint 15% (NDC 84645-172). Unlike standard consumer photos, these assets often include clinical data figures, molecular chemical structures, and official manufacturer packaging layouts.
As provided by Rae Cosmetics, these visuals offer a comprehensive scientific overview of the product's physical and chemical identity, aiding pharmacists and researchers in product verification and study.
Product Images & Figures Index
Pdp (Man 220 Bfs 0000d Mineral Sheer Tint Spf 20 (insert) Page 0001 (1))
The text provided is a description for a Mineral Sheer Tint with Broad Spectrum SPF 20. It includes drug facts, directions for use, warnings, sun protection measures, active and inactive ingredients, and other information. The product is designed to help prevent sunburn and decrease the risk of skin cancer and premature skin aging. The Mineral Sheer Tint is made in the USA and has a final size of 3.375” x 4.75”. The project description mentions the use of Helvetica Neue font and white insert stock substrate. For additional information, contact [email protected].*
Light 1 (Man 240 Jal Bfsb Mineral Sheer Tint (screen) Page 0001)
The text provides information on a Mana product, the "MINERAL SHEER TINT SPF 20 TUBE," which includes details about the brand, job number, fonts used, substrate, production method, ingredient list, dielines, and contact information for inquiries. The mineral-based foundation in the tube provides a sheer, natural look while moisturizing and protecting against UV damage. The product is paraben-free and offers broad-spectrum SPF 20 protection. It is noted to leave the skin looking flawless and radiant. For further information or proofs, contact dan [email protected].*
* These product label images have been analyzed using experimental machine learning. Please verify findings with the primary label text.