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TC Camel

High-Performance Satin Pearl for Elegant Warm Tones

INCI Name: Mica, Titanium Dioxide, Iron Oxides, Carmine

Achieve a sophisticated, luminous look with TC Camel, a natural mica-based pearl pigment. Its fine 10-60 μm particle size creates an intensely smooth satin effect with attractive, warm bronze tones. This versatile powder provides excellent payoff and a creamy feel, making it an ideal choice for premium eyeshadows, blushes, and lip color formulations.

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Perfect For These Applications

Other cosmetic uses possible—contact us for formulation guidance.

Pressed Powder Eyeshadow & Blushes
Provides a smooth, creamy texture and superior press-ability, ensuring high-adhesion powders with a luxurious satin finish.
Cream-to-Powder Foundations & Concealers
Imparts a subtle luminosity and soft-focus effect that enhances skin tone without visible sparkle.
Luminous Liquid & Stick Lipsticks
Delivers a rich, satiny color and comfortable feel, creating the appearance of fuller, more radiant lips.
Satin Finish Nail Lacquers & Gels
Offers excellent suspension in nail formulas, creating a smooth, elegant pearl finish with consistent color.
Anhydrous 'Putty' & Cream Blushes
Blends seamlessly into anhydrous bases to create a buildable, radiant flush of color with a silky skin feel.
Loose Finishing & Dusting Powders
Adds a touch of warmth and a subtle, light-reflecting glow for an overall radiant complexion.

Performance & Formulation Insights for TC Camel

Achieving a Sophisticated Satin Luster

TC Camel is engineered on a natural mica substrate, coated with Titanium Dioxide and Iron Oxides to produce its signature warm bronze color. A precise amount of Carmine is added to introduce a subtle pink undertone, resulting in a complex, flesh-toned shade.

The controlled particle size of 10-60 μm is critical for its satin effect, providing a smooth, continuous luster that is more refined than a shimmer yet more radiant than a matte.

Technical Formulation Advantages

The fine particle size distribution of TC Camel ensures a remarkably smooth and creamy texture in finished products. This enhances blendability in powder formulations and promotes a uniform, homogenous dispersion in liquid and cream systems.

Its composition is optimized for excellent skin adhesion, leading to long-wearing cosmetics with consistent color payoff and a luxurious feel.

Key Formulation Benefits

  • Elegant Satin Finish: Creates a smooth, pearlescent effect that delivers luminosity without heavy sparkle, ideal for sophisticated product lines.
  • Warm Bronze Tone: The blend of iron oxides and carmine produces a versatile warm tan shade suitable for a wide range of skin tones.
  • Enhanced Texture & Feel: The fine mica base provides a uniquely smooth and creamy texture, improving the sensory experience of any formula.
  • Broad Application Use: Approved for use in eye, face, lip, and nail formulations, offering excellent versatility for color cosmetic collections.
Heading #1
Line/Series
TC
INCI Name
Mica, Titanium Dioxide, Iron Oxides, Carmine
Physical Product Color
Brown
Color Effect
Gold/Bronze, Nude
Effect Type
Satin
Material Type
Natural Mica, Powder
Certifications
Natural (ISO16128)
Particle Size
10-60 μm
Applications
Eye, Face, Lip, Nail

Frequently Asked Questions About TC Camel

TC Camel’s warm bronze tone is created by a precise blend of iron oxides and carmine layered over a mica and titanium dioxide base, giving it a complex, skin-flattering hue.
Yes. TC Camel is formulated with Carmine (CI 75470) and is FDA compliant for use in lip products in the USA, making it ideal for creating satin-finish lipsticks and glosses.
This range produces a classic satin or pearl effect—a smooth, uniform luster that provides radiance without the distinct sparkle of larger particles.
Absolutely. Its fine particle size and satin luster help to diffuse light subtly, which can minimize the appearance of fine lines and create a soft-focus, airbrushed look.
It is based on natural mica. However, it is not certified 100% natural under ISO 16128 due to the inclusion of nature-identical and synthetic components used for coatings.
No. The particle size range is 10-60 micrometers (μm), which is well above the 100-nanometer threshold for nanoparticles.

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TC Camel

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