OEM Skin Rejuvenation Machines Manufacturer & Supplier

High-Power Diode Lasers, CO2 Fractional Technologies, and Pico Laser Systems Configured for Clinical Aesthetics and Global Brand Solutions

Xi'an Prima Beauty Equipment Co., Ltd. Manufacturing Facility

Enterprise Integrity & Aesthetic Engineering Authority

Xi'an Prima Beauty Equipment Co., Ltd. stands as a premier global manufacturer and R&D force in high-power laser and solid-state aesthetic technologies. With over 10 years of pioneering experience, our vertically integrated infrastructure spans from the micro-engineering of laser diode chips to the serial assembly of complete clinical skin rejuvenation solutions.

Our comprehensive portfolio features industry-leading Diode Hair Removal Laser Machines, CO2 Fractional Lasers, Pico Lasers, IPL Systems, and Integrated Skin Management Machines. Operating under stringent ISO and international medical standards, we serve as the foundational OEM/ODM backbone for aesthetic distributors, clinics, and medical hospitals worldwide.

10+
Years R&D Expertise
3000+
Clinics Serviced
50+
Global Patents
100%
CE & QC Compliant

Global Market Dynamics & Clinical Trends

An Analysis of Non-Invasive Skin Rejuvenation Demand Across International Sectors

Expanding Market Demands

The global market for medical aesthetic skin rejuvenation machines is experiencing an unprecedented CAGR shift. The rising demand for minimal-downtime therapies (such as photo-rejuvenation, fractional skin resurfacing, and deep dermal lifting) has pushed clinical facilities to update legacy platforms to high-power, multi-wavelength diode arrays.

Vertical Supply Integration

OEM distributors now seek suppliers capable of component-level manufacturing. Producing the laser chips and diode stacks in-house enables Xi'an Prima to guarantee precise thermal control, predictable beam profiles, and longer component lifespans, eliminating the supply chain vulnerabilities common in third-party sourcing.

Regulatory & Safety Demands

Increasing safety scrutiny by clinical regulators worldwide requires medical-grade compliance. Laser platforms must now feature real-time skin impedance feedback, advanced cooling monitoring, and clinical-grade pulse shaping, making certified OEM partnerships a necessity for commercial success.

Technical Roadmap & Architectural Innovation

The Engineering Architecture Behind Our Next-Generation Skin Rejuvenation Core Platforms

Multi-Wavelength Diode Stacks

Our customized diode stacks blend 755nm (high melanin absorption), 808nm (clinical standard for photo-epilation), 940nm (targeting oxyhemoglobin), and 1064nm (deep dermal thermal stimulation) wavelengths. This spectrum enables multi-depth epidermal and dermal treatment in a single pulse.

Active Thermal Management (MCC)

Utilizing Micro-Channel Cooler (MCC) technology and Gold-Tin (AuSn) solder mounting processes, our laser diode stacks maintain high heat dissipation efficiency even during high-frequency duty cycles. This design prevents thermal degradation and extends handle life to over 100 million shots.

Fractional CO2 & Pico Lasers

Our solid-state and gas laser platforms utilize RF-excited CO2 tubes and active Q-switched resonators. These elements generate ultrashort pulse durations, producing mechanical and thermal effects that stimulate collagen production while minimizing surrounding tissue trauma.

Core Clinical System Specifications

Laser Platform Parameter Diode Stack Matrix CO2 Fractional System Pico Solid-State Laser
Operating Wavelengths 755nm, 808nm, 940nm, 1064nm 10600nm (Far-Infrared) 1064nm, 532nm, 585nm, 650nm
Peak Optical Output 300W - 4800W Custom Configurations 30W - 60W RF Metal Tube Up to 2000mJ Pulse Energy
Cooling Technology TEC Active + Sapphire contact cooling Dual Cooling Fans + Liquid Chiller Air-cooled / Closed-loop Liquid
Pulse Width Range 1 - 400ms (Adjustable) 0.1 - 10ms (Ultra-pulse mode) 450ps - 750ps (Picosecond range)
Primary Clinical Applications Skin tightening, hair removal Deep scar resurfacing, striae Melasma, tattoo pigment removal

Comprehensive OEM/ODM Engineering Services

Tailored Technical Solutions for Medical Spa Distributors and Global Brands

Full Handpiece & Optoelectronic Customization

We custom-engineer handpieces to match your brand's ergonomics, incorporating unique focal lenses, spot sizes, and cooling contact tips to differentiate your products in competitive markets.

Tailored GUI & Intelligent Firmware

Our software team develops custom user interfaces, pre-programmed clinical parameters, and multi-language support, allowing operators of all skill levels to deliver safe and consistent treatments.

Strict QA & Regulatory Support

From initial design to final assembly, every system undergoes strict validation testing. We offer documentation and test validation records to assist your regulatory filings with CE, FDA, and local medical boards.

Corporate Certificates & Compliance

Medical Aesthetic Certificate 1
Medical Aesthetic Certificate 2
Medical Aesthetic Certificate 3
Medical Aesthetic Certificate 4

Clinical & Technical Q&A

Direct Insights from Our Lead Aesthetic Laser Research Engineers

How does the integration of multi-wavelength diode stacks improve clinical skin rejuvenation outcomes?

Combining 755nm, 808nm, 940nm, and 1064nm wavelengths in a single diode array enables multi-depth epidermal and dermal treatment in a single pulse. This allows the system to target superficial melanin, shallow vascular structures, and deep water-absorbing tissues simultaneously, stimulating collagen synthesis at multiple skin layers while minimizing epidermal damage.

What are the cooling design requirements for high-power laser stacks (up to 4800W)?

High-power systems generate significant waste heat that can degrade laser diode junctions. We utilize Micro-Channel Cooler (MCC) structures alongside TEC active refrigeration. This keeps the laser bar junction below 50°C during continuous firing, stabilizing wavelength output and protecting the optical emitter from thermal runaway.

Why is Gold-Tin (AuSn) hard solder mounting preferred over Indium solder in professional handpieces?

Indium solder is prone to electromigration and thermal fatigue under high duty-cycle conditions, which can lead to rapid stack degradation. Gold-Tin hard solder provides excellent mechanical strength, high thermal conductivity, and resistance to oxidation, protecting the active laser emitters under prolonged pulse widths.

Can you custom manufacture laser modules to fit existing third-party handpieces for repair?

Yes. Our engineering facilities customize diode stack dimensions, power outputs, and backplate connectors to fit a wide range of third-party handpieces, providing cost-effective and high-quality repairs for clinical service providers globally.