endolaser machine

Picosecond Laser 755nm 1064nm 532nm For Tattoo Removal ODM Product

I am excited to present the Picosecond Laser 755nm 1064nm 532nm For Tattoo Removal, a tri-wavelength, 2-in-1 pico laser engineered for high-throughput clinics. With 755, 1064, and 532 nm channels, it shatters tattoos with minimal collateral damage, delivering uniform pigment fragmentation and faster clearance. The ultra-short picosecond pulses minimize heat buildup, while intelligent cooling and built-in safety locks protect clients and operators. A compact, tunnel-tested console integrates intuitive controls and real-time performance metrics, lowering training time for technicians. We support {ODM} partnerships to tailor branding, control software, and cosmetic enclosures, turning this into a true private-label {Product} for your distribution network. The system ships ready for deployment, with stable output, batch traceability, and comprehensive service plans. If you want to expand into tattoo removal with a proven, scalable laser platform, this {Product} is designed to meet your growth targets and exceed patient expectations.

Hot Selling Product

Picosecond Laser 755nm 1064nm 532nm For Tattoo Removal in 2025 Custom Solutions,

Global demand for tattoo removal is rising in 2025, driving clinics and distributors to seek versatile, multi-wavelength systems. A single platform with picosecond pulses at 755 nm, 1064 nm, and 532 nm can target black, blue, green, and red inks with high efficiency. Short pulses maximize photoacoustic fragmentation while minimizing thermal spread, supporting faster clearance and safer treatments for diverse skin tones. Intelligent pulse control and real-time cooling further enhance throughput in busy practices. For international buyers, the value lies in customizable configurations, scalable support, and reliable supply chains. Tailor software, handpieces, and service packages to regional requirements, while ensuring spare parts availability and training across regions. With strong manufacturing standards and global service networks, orders can be fulfilled with predictable lead times, reducing downtime and boosting return on investment in 2025.

{ Picosecond Laser 755nm 1064nm 532nm For Tattoo Removal in 2025 Custom Solutions,}

Variant Wavelengths (nm) Pulse Duration (ps) Repetition Rate (Hz) Energy per Pulse (mJ) Typical Applications Safety & Skin Type Lead Time (Weeks) Notes
Entry-Level 3-Wavelength Pico 755 / 1064 / 532 350–420 10–20 0.8–1.5 Pigmented lesions; multi-color tattoo removal Fitzpatrick I–IV 6–8 User-friendly interface; built-in cooling
Balanced 3-Wavelength Pico Pro 755 / 1064 / 532 320–380 15–25 1.0–1.8 Multicolor tattoos; pigment correction Fitzpatrick I–IV 8–10 Higher repetition for faster treatments
High-Energy 3-Wavelength Pico 755 / 1064 / 532 300–350 15–25 1.6–2.5 Dense pigment removal; stubborn inks Fitzpatrick I–V 8–12 Enhanced energy; operator training recommended
Ultra-Compact Desktop Pico 755 / 1064 380–420 10–18 0.9–1.4 Portability-focused tattoo and pigment work Fitzpatrick I–IV 6–9 Smaller footprint; optional handheld design
Customizable Multi-Platform Pico 755 / 1064 / 532 330–420 12–22 0.9–1.7 Advanced multi-color tattoos; pigment scar revision Fitzpatrick I–VI Custom upon request Fully configurable energy and wavelength; optional handpiece

Related Products

banner1 (3)

Picosecond Laser 755nm 1064nm 532nm For Tattoo Removal Ahead of the Curve Guarantees Peak Performance

Data Dimension: Wavelength-Specific Efficacy in Tattoo Removal

Wavelength-Specific Efficacy in Tattoo Removal 100 80 60 40 20 0 755 nm 1064 nm 532 nm Efficacy (%)

This chart illustrates a data dimension called "Wavelength-Specific Efficacy in Tattoo Removal." The three bars represent a synthetic dataset showing the average ink clearance percentage associated with three common picosecond wavelengths (755 nm, 1064 nm, and 532 nm) under a standardized treatment protocol. Each value reflects a theoretical mean across multiple ink colors and skin types, designed to demonstrate plausible performance trends rather than to report real clinical results. In this example, 1064 nm shows the highest average clearance (about 82%), followed closely by 755 nm (about 78%), while 532 nm shows a noticeably lower clearance (~60%). The differences align with known pigment-targeting characteristics: deeper-penetrating wavelengths like 1064 nm are generally more effective for dark and mixed inks, while 532 nm is more pigment-specific and more sensitive to ink color distribution and scattering effects in skin. It is important to acknowledge several caveats. This dataset is synthetic and aggregated across several ink colors and skin types; actual performance depends on ink hue, depth, saturation, skin phototype, fluence, pulse duration, and the number of treatment sessions. Real-world outcomes vary widely, and practitioners tailor wavelength selections and treatment sequences to the ink profile of each tattoo. For a more robust understanding, future data should incorporate granular details such as individual ink colors, pigment concentration, treatment intervals, and device parameters, enabling a multi-factor analysis that can drive personalized, wavelength-and-ink-specific removal plans.

Top Selling Products