Explore our industrial-grade laser diode stacks and OEM/ODM systems designed for high-end aesthetic applications, including integration with professional radio frequency modules.
Modern clinical dermatology and aesthetic clinics are shifting rapidly toward integrated treatment pathways. The combination of optical energy (Diode Lasers) and high-frequency electrical current (Radio Frequency) represents the pinnacle of non-invasive body contouring, skin tightening, and deep dermal remodeling.
While diode laser wavelengths (755nm, 808nm, and 1064nm) target specific chromophores such as melanin and hemoglobin for highly localized photothermolysis, professional radio frequency technology works independently of skin pigmentation. By driving high-frequency alternating currents into the tissue, RF energy utilizes the body’s natural electrical impedance to generate thermal energy directly in the dermis and subcutaneous layers.
Welcome to Xi’an Prima Beauty Equipment Co., Ltd., your premier globally trusted partner in high-quality professional beauty equipment. With over 10 years of pioneering experience in the engineering, R&D, and manufacturing of aesthetic laser and radio frequency platforms, we are dedicated to pushing the boundaries of medical-aesthetic technology.
Prima Beauty Laser integrates the design of diode laser chips, high-power diode vertical stacks, solid-state lasers, and full-scale machine assembly. Our catalog includes state-of-the-art Diode hair removal laser systems, CO2 fractional lasers, Q-Switched Pico lasers, intense pulsed light (IPL) machines, and professional localized skin management systems. By offering both high-power components for repair and complete clinic-ready devices, we serve as the primary OEM/ODM engine for hundreds of distributors worldwide.
Combining world-class engineering with structured support to elevate your aesthetic distribution or clinic brand.
We host complete in-house packaging and testing lines for diode laser stacks, ranging from raw semiconductor chip placement to micro-channel cooling block integration. This guarantees unmatched stability, minimal thermal degradation, and extended shot cycles.
Every single module, stack, or finished system undergoes rigorous aging tests, thermal imaging tests, and power-meter audits before leaving our factory. All critical aesthetic parameters are verified to align with medical-grade CE and regulatory protocols.
From custom shell designs, localized UI system configurations, and multi-wavelength laser setups (755nm + 808nm + 940nm + 1064nm) to specialized RF impedance matching systems, we tailor solutions to elevate your brand presence.
Harnessing regional high-tech industrial ecosystems to deliver reliable, high-performance, and cost-effective clinical platforms.
The global aesthetic market demands rapid iteration cycles, superior component longevity, and competitive capital expenditure models. Choosing a China-based expert manufacturer like Xi'an Prima Beauty Equipment Co., Ltd. unlocks vital supply chain advantages:
Integrated Semiconductor Ecosystems: China has become the global hub for advanced diode manufacturing and packaging. By centralizing chip processing, gold-tin (AuSn) or indium bonding, micro-channel cooling block production, and CNC structural fabrication, we drastically compress lead times and bypass intermediate markup costs.
Rapid Prototyping & Customization: Our direct connection to state-of-the-art optical, electronic, and software engineering clusters allows us to develop customized chassis designs or localized system integrations in a fraction of the time taken by Western counterparts.
Robust Logistics Infrastructure: Backed by optimized shipping lanes, secure customs networks, and localized global warehousing partners, we ensure quick and safe dispatch of replacement modules, handpieces, and full-scale devices directly to your distribution center.
Years of Aesthetic R&D
Strict QA & Aging Test
Exporting Countries
Technical Response Time
Operating a medical aesthetic business requires stringent compliance with international safety protocols and dependable local support networks. At Xi'an Prima, we ensure our clients navigate regulatory landscapes smoothly with certified machinery and localized assistance.
Our aesthetic lasers and professional radio frequency machines are designed in strict accordance with essential safety directives. We hold comprehensive CE certifications, electromagnetic compatibility (EMC) approvals, and electrical safety standards (IEC 60601-1) to ensure trouble-free customs clearance and compliant operation in target markets.
We understand that down-time translates directly to lost revenue for clinics. That is why we provide:




Bridging cutting-edge technology with high-value clinical applications around the globe.
Future radio frequency platforms will feature dynamic real-time impedance sensing. As the device moves across different skin densities and hydration levels, the output power adjusts automatically to ensure uniform heating without hot spots.
Combining multiple laser wavelengths (such as 755nm for thin hair, 808nm for typical skin types, and 1064nm for deeper roots) into a single stack allows modern clinics to deliver universal hair removal services on all skin types with a single handpiece.
Whether optimizing systems for cooling-intensive environments in high-humidity tropical zones or configuring software languages for EU medical spas, Xi'an Prima customize devices to excel under localized market constraints.
In-depth answers to technical questions commonly raised by aesthetic system engineers, medical buyers, and clinic directors.
Micro-channel cooling (MCC) designs utilize high-density copper heat sinks with microscopic water channels directly underneath the laser bar. This allows for significantly higher heat dissipation capabilities compared to macro-channel cooling. High heat dissipation prevents the thermal breakdown of the indium or gold-tin solder layers, resulting in stable optical outputs, minimal wavelength drift, and a much longer diode stack lifespan (often up to 20–40 million pulses when operated with purified deionized water).
While laser energy depends on selective photothermolysis (targeting melanin in hair follicles or hemoglobin in vascular structures), radio frequency (RF) energy utilizes tissue electrical impedance to generate heat. When combined, the laser energy pre-heats the target structure, and the RF energy flows preferentially through the pre-heated, lower-resistance path. This allows for deeper, safer thermal targeting with lower overall optical energy, reducing the risk of epidermal burns and expanding treatment safety to darker skin types.
Buyers must prioritize three key technical parameters: 1. Output Frequency: Typically between 1 MHz and 5 MHz. Higher frequencies provide more superficial dermis targets, while lower frequencies reach deeper subcutaneous fat layers. 2. Impedance Feedback Loop: Real-time monitoring of contact impedance prevents energy spikes and burns. 3. Thermal Control/Cooling system: Contact cooling on the handpiece tip protects the epidermis, ensuring patient comfort during high-energy treatments.
We offer full-cycle ODM/OEM integration. This includes electronic control board matching, software UI design, structural chassis design, and targeted wavelength selection. For laser handpiece repair, we supply replacement stack modules customized to the mechanical and electrical specifications of major global brands, saving distributors significant maintenance costs.
For diode stacks, maintaining clean water flow is critical. Only high-purity deionized water must be used, and filters should be replaced every 3–6 months to prevent mineral scaling within the micro-channels. For RF generators, maintaining dry electrode surfaces and inspecting the insulation of connection cables regularly ensures stable current flow and prevents spark discharge.
Explore our high-performance vertical line arrays, gold-tin micro-channel modules, and custom high-power arrays tailored for industrial, aesthetic, and pump source applications.