Wholesale Skin Care Beauty Machine Suppliers & Companies

Global Industrial Laser Solutions, Epitaxial Stack Packaging, and Advanced Laser Diode Modules for Medical and Aesthetic OEMs

The Evolution of the Global Aesthetic Energy-Based Device (EBD) Industry

The global medical aesthetics market is undergoing a rapid transition toward energy-based devices. Driven by innovations in semiconductor lasers, clinical environments require more precise, efficient, and reliable solid-state and diode assemblies. From standard 808nm single-wavelength hair removal units to advanced multi-wavelength systems (755nm Alexandrite, 808nm Diode, and 1064nm Nd:YAG), raw diode efficiency determines therapeutic speed, safety profiles, and cost of ownership.

As global compliance structures (such as FDA approvals, CE Medical Device Regulation - MDR, and MDSAP) tighten, professional distributors and medical device manufacturers must secure supply chains capable of delivering certified, stable semiconductor components. Our vertical integration of high-power laser stacks meets this demand directly, bridging the gap between raw chip manufacturing and clinical handpiece integration.

10+
Years R&D
4800W
Max Stack Power
98%+
Epitaxial Yield
50M+
Shots Lifespan

Semiconductor Laser Architecture & Packaging

An engineering-level overview of our packaging technologies, thermal management, and optical alignment systems.

Gold-Tin (AuSn) Eutectic Bonding

Traditional indium bonding suffers from solder migration and thermal fatigue over extended operational cycles. By incorporating AuSn eutectic hard solder, our laser modules achieve superior thermal conductivity, higher oxidation resistance, and eliminate the risk of electrochemical migration under continuous high-power density pulsing.

Micro-Channel Coolers (MCC)

Effective thermal dissipation is critical to prevent wavelength red-shift. Our MCC structures use high-purity copper substrate with internal micro-structured channels. This reduces thermal resistance down to less than 0.2K/W, maintaining optimal junction temperature under duty cycles exceeding 10Hz.

Fast Axis Collimation (FAC) Lens

To achieve high fluence for skin rejuvenation and deep follicle destruction, raw laser divergence must be corrected. Integrating customized micro-lens arrays for Fast Axis Collimation (FAC) compresses the beam divergence angle to < 2 degrees, delivering uniform energy distributions and minimizing collateral thermal damage.

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

Xi'an Prima Beauty Equipment Co., Ltd.

Welcome to Xi’an Prima Beauty Equipment Co., Ltd., your trusted partner in high-performance aesthetic technology. With over 10 years of manufacturing and R&D experience, we specialize in high-power diode hair removal systems, CO2 fractional lasers, Q-Switched Pico lasers, IPL platforms, and advanced skin management equipment.

Our manufacturing capabilities integrate the complete aesthetic value chain: from optical chip packaging and modular laser stack assemblies (diode stacks and solid-state modules) to complete skin care platform manufacturing. As a vertically integrated supplier, we maintain stringent control over epitaxial packaging, optical alignment, and system integration.

By offering both standardized products and comprehensive OEM/ODM customization services, we support clinics, distributors, and global brands in building compliant, reliable, and clinically effective aesthetic platforms.

Custom OEM/ODM Integration Solutions

End-to-end services designed to help medical brands go from prototype to clinical validation.

1. Component-Level Customization

Adjust stack geometries, optical wavelengths (755/808/940/1064nm), and bar counts (from 1 bar to 70 bars). Custom packaging includes gold-tin soldering and macro/micro cooling configurations designed to fit existing handpiece housings.

2. Handpiece Retrofitting & Repair

Refurbish damaged or degraded laser handpieces from global manufacturers. Swap depleted stacks with high-reliability LT modules, restoring optical power density to original factory specifications.

3. Full Platform Manufacturing

Develop complete systems incorporating advanced cooling controls, GUI touchscreen software, smart RF skin sensors, and multi-wavelength output modules, fully customized to meet your target brand guidelines.

Engineering Excellence and Support

Discover why medical device distributors and aesthetic platforms trust Xi'an Prima Beauty Equipment.

Advanced Technology

As a leading supplier of mid-to-high-end beauty equipment, we integrate the development of laser chips, packaging, manufacturing, and sales under one roof. This allows us to rapidly implement the latest optoelectronic innovations in our standard product lines.

Quality Control

Our commitment to quality is absolute. Every laser module and cosmetic device undergoes rigorous high-current aging tests, spectral testing, and water leakage inspections to ensure stable performance and long operational lifetimes before delivery.

OEM & ODM Services

We provide customization support for complete aesthetic devices, laser stacks, and specialized interfaces. Our services are tailored to help medical salons, dermatology clinics, and brands establish unique, high-performance product portfolios.

Qualification Certificates

Our manufacturing processes are certified to meet international medical device standards.

Medical Device Quality Certificate 1
Medical Device Quality Certificate 2
Medical Device Quality Certificate 3
Medical Device Quality Certificate 4

Industry Questions & Answers

Technical and business insights into semiconductor laser technology and sourcing.

Why is the 808nm wavelength the industry standard for hair removal?
The 808nm diode wavelength offers a balanced absorption profile for melanin while minimizing water absorption. This allows the laser energy to penetrate deeply into the dermis to target the hair follicle matrix and bulb without damaging the surrounding epidermis. For comprehensive skin profiles (Fitzpatrick types I-VI), modern systems often combine 755nm (high melanin absorption) and 1064nm (deep penetration, safe for darker skin) in a single stack.
How does a Micro-Channel Cooler (MCC) stack compare to a Macro-Channel Cooler (MCM)?
Micro-Channel Coolers (MCC) feature miniature micro-channels directly beneath each laser bar, maximizing thermal dissipation. This design is ideal for high-power stacks (up to 4800W) but requires deionized water to prevent channel clogging. Macro-Channel Coolers (MCM) feature larger channels, allowing the use of standard distilled water. While MCM is easier to maintain, its thermal dissipation limit is lower, making it suitable for lower-wattage applications.
What are the advantages of Gold-Tin (AuSn) bonding over Indium solder?
Indium solder is prone to oxidation, electromigration, and thermal fatigue at high operating temperatures. This degradation can lead to dark line defects (DLDs) and eventual diode failure. In contrast, Gold-Tin (AuSn) eutectic bonding uses a high-melting-point hard solder. This ensures high structural integrity, excellent thermal conductivity, and prevents solder migration under continuous, high-current pulses, extending stack lifespans to over 50 million shots.
What customizations are available through OEM/ODM services?
We provide component-level customization, including custom optical wavelengths (755nm, 808nm, 940nm, 1064nm), variable output powers (300W to 4800W), and specified micro-lens integrations (like FAC). We also offer system-level customization, including custom handpiece housings, specialized interface software, and branded enclosures for medical-grade and commercial platforms.