High Power 850nm 1W Infrared Laser Module for Mole& Tattoo Removal
This High Power 850nm 1W Infrared Laser Module is a professional-grade core component exclusively engineered for mole & tattoo removal in aesthetic medicine, leveraging 850nm infrared laser’s deep skin penetration and 1W high power to achieve efficient, targeted pigment decomposition—becoming a key part of professional mdeical beauty laser devices for safe, precise spot treatment.
Core Technical Advantages for Mole & Tattoo Removal
850nm Infrared Wavelength Optimization: 850nm infrared laser penetrates 1-5mm into the dermis layer, directly targeting melanin/ink pigment particles (avoiding damage to epidermis). This 850nm 1W laser module absorbs efficiently by various pigment types (black, brown, red tattoo ink; mole melanin), ensuring thorough pigment decomposition without skin irritation.
1W High Power for Efficient Treatment: The 850nm infrared laser module with stable 1W output delivers focused laser energy to break down large pigment clusters into micro-particles, which are then metabolized by the body’s lymphatic system. This shortens treatment cycles—3-5 sessions for small moles, 5-8 sessions for medium tattoos—outperforming low-power modules in efficiency.
Precise Spot & Targeted Treatment: Equipped with precision optical lenses, it generates a 0.1-0.5mm spot size. The narrow beam avoids affecting surrounding healthy skin, ensuring mole & tattoo removal is precise—critical for small moles or fine-line tattoos.
Aesthetic Medicine Scene Adaptability
Mole Removal: Ideal for congenital moles, acquired melanocytic nevi, and flat pigmented spots. The 850nm laser’s targeted absorption avoids pigment residue, ensuring clean removal while preserving skin texture.
Tattoo Removal: Effective for professional/permanent tattoos (black, blue, green, red ink) and semi-permanent makeup (eyebrows, lip liner). It breaks down ink particles of different sizes, adapting to amateur/small tattoos or large-area professional tattoos.
Multi-Pigment Compatibility: Works with common pigment types in aesthetic medicine, solving the problem of incomplete removal of stubborn pigments (e.g., deep-rooted mole melanin, red tattoo ink) that traditional lasers struggle with.













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