OEM Picosecond Tattoo Removal Machine Manufacturer & Supplier

Precision-Engineered Aesthetic Lasers for Global Medical & Clinical Enterprise Networks

Global Enterprise Procurement Demands

How international distributors, medical groups, and franchised spas scale their treatment delivery using industrial-grade picosecond systems.

Distributor Consolidation

Global medical supply networks demand highly customizable platforms. We provide customized software interfaces, custom chassis colors, and multiple wavelength profiles to support diverse regional regulatory mandates and market positioning.

Clinical Optimization

Medical spas and dermatology chains prioritize patient throughput and safety. Our ultra-stable articulated arm system delivers uniform power outputs to prevent epidermal scarring, lowering overall operational liability.

Efficacy & ROI

Upgrading from nanosecond Q-switched lasers to modern picosecond systems halves the treatment sessions needed for multi-color ink removal. This allows clinics to charge a premium per session while increasing patient turnaround rates.

750ps
Ultra-Short Pulse
Minimizes thermal damage to surrounding tissue
10+ Years
R&D Expertise
Continuous innovation in diode & solid-state laser chips
2.0 GW
Peak Laser Power
For rapid ink fragmentation
20,000+
Units Deployed
Trusted by clinical partners globally

The Science of Picosecond Laser Pulses

Traditional laser systems rely primarily on photothermal action, delivering laser energy in nanoseconds. This process heats the target ink pigment, causing it to melt or expand. However, the heat frequently spills over into adjacent skin cells, increasing the risk of thermal injury, post-inflammatory hyperpigmentation (PIH), and scarring.

Our industrial OEM picosecond tattoo removal systems operate via the Photoacoustic Effect. By compressing the pulse width to under 750 picoseconds, the laser light enters the dermis and hits the pigment molecules with intense mechanical force. The energy is delivered faster than the thermal relaxation time of the ink, instantly shattering it into tiny, dust-like particles. The lymphatic system then filters and flushes out these microscopic particles much more efficiently.

Clinical Benefits of Photoacoustic Fragmentation:

  • Significantly reduced thermal footprint on the surrounding skin.
  • Effective breakdown of stubborn blue, green, and black inks.
  • Safer treatments across Fitzpatrick skin types I through VI.
  • Reduced risk of localized blistering or textural changes.
Parameter / Feature Nanosecond (Q-Switched) Our OEM Picosecond System
Pulse Width 5ns – 20ns 500ps – 750ps
Primary Fragmentation Mechanism Photothermal (Heat generation) Photoacoustic (Pressure waves)
Epidermal Recovery Period 7 – 14 Days 2 – 4 Days
Typical Sessions for Complete Clearance 10 – 15 Sessions 4 – 8 Sessions
Target Ink Spectrum Limited to dark pigments Full spectrum (multi-wavelength)
Xi'an Prima Beauty Equipment Co., Ltd. Manufacturing Facility

Corporate Profile & Manufacturing Capability

Xi'an Prima Beauty Equipment Co., Ltd. is a globally recognized manufacturer and research-focused supplier of medical and cosmetic laser technology. With over 10 years of specialized manufacturing experience, our team integrates research, development, assembly, and quality control under one roof.

Our core capabilities include the fabrication of high-power diode lasers, solid-state lasers, and micro-channel cooler (MCC) laser diode stacks. By maintaining complete control over our supply chain, we deliver reliable, high-performing components to global aesthetic brand owners, clinic chains, and OEM partners.

Our catalog features a diverse range of systems, including diode hair removal lasers, CO2 fractional lasers, Q-switched and picosecond Nd:YAG lasers, and advanced IPL units, helping beauty and medical brands scale their operations worldwide.

Why Choose Us: Our Three Pillars

A look at the processes and technology that support our status as a trusted manufacturer for aesthetic and clinical systems.

Advanced Technology

By integrating chip packaging, microchannel cooling (MCC), and optoelectronic design within our production facilities, we deliver high-performance solid-state laser systems. This setup enables us to quickly implement new advancements in beauty and medical technology directly to our production lines.

Unwavering Quality

Every laser source and handle assembly undergoes rigorous pressure, thermal, and pulse reliability testing before shipping. Our products are designed for consistency, minimizing energy drop-off and keeping treatment spot delivery stable over millions of shots.

Flexible OEM/ODM

From customizable user interfaces and external styling to custom pump configurations and multi-wavelength setups, we work closely with cosmetic and medical distributors to build bespoke systems that stand out in competitive markets.

International Qualification Certificates

Our commitment to manufacturing compliant, reliable, and high-performance equipment is backed by leading industry certifications.

Qualification Certificate - ISO 13485 Compliance
Safety and Standards Compliance Certification
Manufacturing Standards Validation Documentation
CE Mark Medical Certification Document

Technical Architecture & Solutions

A closer look at how our technical designs translate into reliable, high-performance features in everyday clinical settings.

Optimized Optical Articulated Delivery Arms

A common vulnerability in medical lasers is power loss and spot distortion caused by poorly aligned internal mirrors. We use articulated optical delivery arms with precise counterweight balancing, ensuring minimal energy loss along the light path. This design maintains high energy delivery to the treatment spot regardless of the handpiece angle.

Multi-Wavelength Versatility

Our OEM picosecond devices support four key wavelengths to target various pigment types:

  • 1064nm: Highly absorbed by dark, black, and dark blue inks, while remaining safe for darker skin types.
  • 532nm: Highly absorbed by red, orange, and yellow pigments, ideal for superficial dermis treatments.
  • 755nm (Honeycomb): Works with a fractionated lens to create localized micro-injuries, stimulating collagen production for skin rejuvenation.
  • 1320nm: Used for carbon-peel treatments, balancing oil production and improving skin tone.

Advanced Microchannel Cooler (MCC) Integration

Continuous clinical operation can cause laser cavity overheating, leading to output fluctuations. Our MCC technology protects the laser source, keeping energy outputs stable during busy clinic schedules and extending the operating lifespan of the system.

Intuitive Diagnostic Control Software

The control interface features real-time pulse width adjustment, continuous spot size tracking, and automated skin impedance sensors. This makes it easier for practitioners to adjust treatment settings on the fly, improving patient safety and comfort.

Technical Roadmap & Future Outlook

How we are developing the next generation of aesthetic laser technology to improve patient care and support business growth.

Under 350ps Pulse Speeds

We are engineering shorter pulse durations to enhance the photoacoustic effect, allowing cleaner pigment fragmentation with even lower thermal risks.

AI-Assisted Energy Control

Future releases will feature integrated skin diagnostic sensors, helping operators configure target settings based on real-time skin parameters.

Green Cooling Tech

Our upcoming cooling units are built to consume less energy while keeping system temperatures stable for long treatment sessions.

Expert FAQ & Integration Guide

Get answers to common technical, commercial, and operational questions about our OEM laser platforms.

What are the key technical differences between Picosecond and Q-switched lasers?
Picosecond lasers deliver energy in short bursts, using photoacoustic action to shatter ink pigments into micro-particles. Q-switched lasers rely more on photothermal energy, which can cause higher heat dispersion and increases the risk of scarring or hypopigmentation.
How does the 755nm fractionated honeycomb handpiece improve skin quality?
The fractionated honeycomb handpiece focuses laser light into micro-spots. This energy creates tiny zones of localized breakdown in the epidermis without damaging the outer skin layers, encouraging natural collagen production to address scarring, pigmentation, and fine lines.
What OEM/ODM customization services are available?
We provide full hardware customization, including color, logos, and custom structural shells. Additionally, we can customize the user interface, install customized software presets, and adapt the laser configuration to fit specific market requirements.
What are the clinical advantages of incorporating multi-channel cooling?
Multi-channel cooling (MCC) maintains stable temperatures within the laser module. This prevents energy output drops during back-to-back treatments, protects key components, and ensures safe, uniform energy delivery throughout the day.
What is the expected operating life of the laser source?
Using premium optical crystals and high-grade pumping diodes, our picosecond platforms deliver millions of stable pulses under recommended operating conditions, minimizing maintenance down-time.