Direct access to high-performance laser assemblies, diode stacks, and handle modules engineered for professional aesthetic platforms.
How modern medical aesthetics are shifting towards combined modality configurations: RF skin tightening and multi-wavelength laser systems.
Radio Frequency (RF) technology has transitioned from basic Bipolar skin heating platforms to complex Fractional and Microneedle RF architectures. Clinically proven to generate controlled focal zones of coagulation within the reticular dermis, RF-induced heat triggers immediate collagen contraction and subsequent neo-collagenesis. As an OEM manufacturer, we recognize the industry's demand for high-frequency precision (ranging from 1 MHz to 5 MHz) coupled with microsecond pulse durations to limit epidermal injury.
Simultaneously, the global cosmetic market demands hybrid equipment. High-end aesthetic clinics are avoiding single-treatment platforms. Modern workstations integrate multi-polar RF engines with high-energy diode laser stacks (covering 755nm, 808nm, 940nm, and 1064nm wavelengths). This enables medical practitioners to address vascular abnormalities, dermal remodeling, and long-lasting hair removal with a unified cooling chassis, reducing clinic footprint and overhead.
Xi'an Prima Beauty Equipment Co., Ltd. - Your trusted partner in high-quality laser & radio frequency beauty hardware.
Welcome to Xi’an Prima Beauty Equipment Co., Ltd., a premier developer and producer of cutting-edge energy-based beauty devices. With more than 10 years of intensive optical, electrical, and thermal engineering experience, we serve as an integrated factory that handles everything from semiconductor laser chip packaging to fully finished aesthetic consoles.
Our primary head office links raw semiconductor R&D with custom manufacturing pipelines, producing Diode hair removal laser machines, CO2 fractional lasers, Pico second laser arrays, IPL devices, and skin management systems. By maintaining total control over diode stack assembly (offering custom configurations ranging from 300W to 4800W), we deliver unprecedented durability, ensuring our partners receive stable, high-performance systems.
As a Chinese mid-to-high-end beauty equipment supplier, we integrate laser chip packaging, structural design, mechanical casing mold design, and firmware programming under one roof.
Every component, especially micro-channel cooler (MCC) laser bars and RF generators, is subject to continuous stress testing (thermal cycles and high-current burn-in phases) before shipping.
We support custom engineering of physical enclosures, control GUIs, branding parameters, diode stacks, and handle cooling systems tailored to local regulatory requirements.
Our equipment and production facilities comply with international medical device standards, ensuring performance reliability and legal safety compliance.
Addressing global B2B procurement concerns: why sub-assembly performance dictates clinic profitability.
High-output laser systems rely on Micro-Channel Cooler (MCC) technology. By utilizing micro-structured copper plates, we pass cooling water within microns of the diode junctions, enabling extreme heat dissipation and extending bar life over 20-30 million shots.
Integrating 755nm (melanin targeting), 808nm (standard hair removal), 940nm (coagulation of feeder vessels), and 1064nm (deep follicular depth) into a single stack guarantees universal suitability for all Fitzpatrick skin types.
Instead of purchasing entirely new applicators when gold-soldered bars degrade, our OEM division provides replacement diode stacks (300W to 4800W) designed to fit third-party handles, saving clinic groups up to 60% on replacement costs.
| Performance Parameters | OEM Custom Standard Stack | Micro-Channel Cooler (MCC) Premium | Gold Tin (AuSn) Hard Solder Array |
|---|---|---|---|
| Available Wavelengths | 808nm, 1064nm Dual-Band | 755nm / 808nm / 940nm / 1064nm Quad-Band | 808nm & Custom Line Array configurations |
| Average Power Output | 300W - 1200W | 1600W - 2400W | 3000W - 4800W (High-density industrial/medical) |
| Cooling Technology | Macro-channel water flow | Deionized water micro-channel (MCC) | Advanced active cooling plate & TEC |
| Typical Lifespan | 10,000,000 Pulses | 20,000,000 - 30,000,000 Pulses | Up to 50,000,000 Pulses |
| Refurbish-ready (Repair compatibility) | Highly compatible | Semi-modular stack configuration | Fully repairable & modular alignment |
Ensuring reliable global supply chains through rigorous manufacturing standards.
The future of Radio Frequency and Diode Laser treatments lies in intelligent energy modulation. Current clinical environments demand platforms that adjust output power dynamically using real-time skin impedance sensors. This technology prevents focal overheating (hot spots) during RF sweeps and adjusts cooling intensity on the skin surface. Our future manufacturing pipeline is dedicated to creating smart handpieces with built-in sensors that transmit diagnostic data directly to the host operating system.
Additionally, raw material reliability remains paramount. By utilizing AuSn (Gold-Tin) hard solder technology for mounting laser bars, our diode stacks are resistant to thermal fatigue and oxidation. This results in stable, consistent energy output even during heavy clinic use.
For distributors, clinic chains, and medical device brands, importing aesthetic machinery requires strict adherence to regulatory standards. Xi'an Prima Beauty Equipment ensures all laser stacks, RF power supplies, and control housings meet MDD/MDR CE requirements, guaranteeing safety, EMC compatibility, and low-voltage stability.
We assist our global clients with comprehensive technical documentation, clinical validation support, and custom safety systems (interlocks, water temperature monitors, flow rate detection sensors) required for local registration with health authorities.
Addressing key technical questions from procurement departments, medical engineers, and distributors.
Browse our range of high-output modules, line arrays, and repair components optimized for commercial aesthetic systems.