Fallene Cotz SPF 58 Water Resistant UVB/UVA Sunscreen is extra gentle, and dermatologist recommended for sensitive skin. No chemical sunscreen filters. Dries clear and PABA free. Contains only Titanium and Zinc, and has UVB/UVA protection. Water resistant and fragrance free.
UVB is the cause of early skin redness experienced during initial sun exposure. UVA (320nm-400nm) is responsible for deeper skin damage, and many of the long term destructive changes that are harmful to the skin. Unfortunately there is no official rating system, to date, that measure s a products UVA protection.
UVA radiation, unlike UVB, is consistently the same all day long, all month long and all year long. UVA rays present almost the saM.D.amaging effects to the skin in December at 9am, as they do in July at 4 p.m. UVA radiation is consistently damaging, and in fact, enters deeper into the skin than UVB. Since UVA damage is cumulative and penetrates through glass, everyone requires daily, year round protection. Made in USA.Fallene Cotz SPF 58 is a mineral-based sunscreen that utilizes ultra-micronized titanium dioxide, zinc oxide, and iron oxide for effective protection from the sun s harmful rays. Cotz is dye-, oil-, PABA- and fragrance-free, offering full-spectrum protection without any "chemical sunscreen" ingredients. This product is ideal for light-sensitive and pediatric uses, but it is also an excellent sunscreen choice for just about anyone with sensitive skin. In addition, this sunscreen offers significant water-resistant properties, which makes it an ideal choice for active people and outdoor activities. Cotz SPF 58 will leave your skin soft, smooth, and, most importantly, protected from harmful UVA and UVB rays.
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The Cotz SPF 58, as well as the other Fallene products, are specially designed for photo-sensitive individuals, but are perfect for anyone concerned about maintaining healthy skin and promoting the integrity of their immune system.
The Dangers of UVB Wavelengths
SPF rating does not adequately measure protection from all the damaging radiation effects of light. SPF is only a determination of protection from one specific wavelength of ultraviolet radiation, the UVB (290nm - 320nm). Unfortunately, there is no currently approved standard to rate the quality of a sunscreen s UVA protective capabilities. UVA (320nm - 400nm) is the deeper penetrating wavelength that is more often associated with skin changes, such as wrinkling, pigmentation, and long term damage. The SPF rating system does not accurately or completely define a sunscreen s protective capabilities from harmful ultraviolet radiation, except the UVB wavelength.
UVB creates a red, painful irritation first experienced during early sun exposure, but UVB is not the only ultraviolet wavelength damaging to the skin. In fact, UVB has only a minimal effect upon the deeper depth of skin. UVB and UVA radiation are both recognized as causing skin cancer, and SPF 30 protection is just not enough.
Direct Physical Photoblockers Benefits
Most of the physical photoblockers are naturally occurring metal compounds (iron, chromium, zinc, titanium, etc), although some, such as bismuth, are man-made. In addition to their photo-protective attributes, these substances also assist in preventing windburns and skin damage from wind-driven micro-particles, such as dirt and grime. These physical blockers also offer a substantial defense against infrared rays in two ways.
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Titanium Dioxide: Absorbs Light and Protects Skin
This white-pigment powder is widely used in cosmetics. Products containing large-particle titanium have a greater opacity, which means they have greater lightening or whitening qualities. Opaque titanium dioxide is highly reflective and strongly scatters all UV and visible rays. It also reflects much of the skin-damaging infrared waves, keeping skin cooler and reducing "heat" damage that causes unwanted photo-aging.
To photo-stabilize titanium dioxide it must be micro-coated with a protectant, such as silicone or aluminum oxide. Since titanium dioxide spreads poorly on the skin, another way to inhibit its breakdown is to incorporate titanium dioxide with other blockers. To achieve cosmetic elegance and usefulness, microcoating the titanium dioxide assures a good, even application to the skin. A downside of large-particle titanium dioxide products is that they produce a white, opaque appearance on the skin when applied. However, submicronizing the titanium dioxide powder, as Fallene does, creates small particles that absorb visible light and protect the skin, but they re still invisible on the skin, so you re not covered in embarrassing white salve.
Transparent (sub-micronized) titanium dioxide works by absorbing, reflecting and scattering UVB and some UVA rays. However, protection against UV, visible and infrared is significantly limited when submicronized titanium dioxide is the primary protectant.
Zinc Oxide: Extends Photo-Protection
Zinc Oxide has been known and used topically for centuries as a skin protectant and wound-healing adjuvant and is also recognized as a mild antimicrobial agent. More than 50 years ago, zinc oxide was indicated as a block for ultraviolet light (UVB/UVA). It also reflects infrared from the skin, as does titanium dioxide. However, its ability to protect in the long UVA range (300nn - 400nm) is much higher than titanium dioxide. Zinc oxide absorbs, rather than scatters, most UVA, while titanium dioxide primarily scatters these wavelengths. Thus, formulated in combination with titanium dioxide, ultra-fine zinc oxide "closes the window" in the UVA range. Zinc oxide works to both complement titanium dioxide s protection and extend photo-protection to the skin where titanium dioxide is insufficient. The optimal particle size range for ultraviolet blocking zinc oxide (without blocking visible wavelengths) is approximately 80 to 150 nanometers (1,000 nanometers = 1 micron).
Iron Oxides: Adds Color and Complements Primary UV Blocking Agents
Iron oxide is used in a wide array of cosmetics to provide cover-up color. Cosmetic iron oxides are manufactured to a high purity, desired color and particle size.
Iron oxide pigments for cosmetic use are micronized powders. They are available in a number of shades and tones of red, yellow, black and brown. These cosmetic pigments, if incorporated at adequate concentration and properly dispersed, not only add color, but they also provide significant skin protection from multiple wavelengths of light.
Ultra-submicronized iron oxides protect against visible light waves, but also add a little color to the finished product. This allows for the addition of higher levels of infrared protecting iron oxides, while retaining the cosmetic elegance and shade of the final preparation. Submicronized iron oxides block ultraviolet rays, which is a great complement to the primary UV blocking agents.
What s in the Box
Fallene Cotz SPF 58 water-resistant sunscreen tube (2.5-ounces).
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