As optical design leaders, our manufacturing heritage extends from high-power diode laser stacks (supporting 300W to 4800W configurations) to complete state-of-the-art fractional CO2 laser consoles. Browse our premium core components below.
As clinical spaces face optimization pressures, the requirement for high-density, portable optical technologies has surged. Xi’an Prima Beauty Equipment Co., Ltd. leads the engineering movement by migrating large-chassis RF (Radio Frequency) metal-tube and glass-tube CO2 lasers into compact, high-output portable designs without sacrificing thermal dissipation, beam quality, or pulse duration parameters.
Carbon Dioxide (CO2) lasers emit at a wavelength of 10,600 nm, which targets intracellular water molecules with high precision. When operated in a fractional modality, the laser beam is divided into hundreds of microscopic treatment zones (MTZs). This leaves surrounding tissues completely intact, leading to accelerated re-epithelialization, deep collagen remodeling, and significantly reduced downtimes compared to traditional fully ablative resurfacing.
For medical spa operators, clinical aesthetic institutions, and wholesale medical equipment distributors, procuring directly from a manufacturer with vertical integration (laser chip level design through completed system enclosure) ensures lower baseline acquisition costs, guaranteed availability of modular spare parts, and strict adherence to international safety metrics.
Welcome to Xi’an Prima Beauty Equipment Co., Ltd., your trusted global partner in the research, design, and manufacturing of high-energy medical and cosmetic laser equipment. With more than a decade of focused industry expertise, our head office strategically integrates the full chain of optoelectronics—from semiconductor chip-level engineering of diode laser stacks to completed medical laser systems.
Prima Beauty Laser is widely recognized across international medical communities for our extensive portfolio. We provide Diode hair removal laser systems, CO2 fractional laser systems, Picosecond aesthetic lasers, intense pulsed light (IPL) arrays, and advanced transdermal skin management units. Our integrated manufacturing layout allows us to design high-power diode stacks (ranging from 300W up to 4800W) alongside complex medical scanners under one roof, guaranteeing component-level quality control.
Choosing an optoelectronics manufacturing partner requires evaluation of technical capabilities, safety protocols, and customization options. Below is how we deliver reliable competitive advantage.
As an established mid-to-high-end manufacturer, we develop our systems beginning at the semiconductor substrate level. By integrating high-power laser chip assembly with precision mechanical scans, we create highly concentrated micro-laser spots. This guarantees optimized energy density and stable output for advanced dermatological therapies.
Every console undergoes rigorous stress testing. Our quality control encompasses laser beam profiling, thermal imaging, power stability monitoring, and mechanical durability of the articulated arm. This ensures that every portable laser system functions reliably under continuous medical clinic operations.
We offer comprehensive branding and hardware configuration options. From localized user interface designs to customized external housings, spot size modifications, and varied scanning patterns (e.g. square, circle, linear, or customized fractional shapes), we help you create unique market products.
The international market for aesthetic medical devices has shifted towards versatile, high-ROI systems. While traditional stationary CO2 lasers are restricted to specialized hospital settings, portable CO2 fractional laser systems are increasingly purchased by multi-branch medspas, mobile aesthetic clinics, and outpatient clinics.
This shift is driven by three main factors:
A compact, lightweight chassis allows clinics to optimize room utilization and share high-value devices across multiple locations, raising the utility rate and accelerating return on investment.
Modern portable CO2 fractional lasers utilize RF metal tubes, which feature longer operating life and require less calibration compared to traditional glass-tube variants.
These systems perform a wide range of procedures: skin resurfacing, acne scar revision, pigmentation treatment, and soft-tissue incision, all managed from a single portable unit.
To understand why our CO2 fractional laser systems maintain high precision in a portable configuration, it is helpful to look at the underlying optoelectronic design.
Most entry-level portable CO2 lasers utilize high-voltage DC-excited glass tubes, which have a limited lifespan and require water-cooling systems that add weight and bulk.
Our high-end portable systems utilize radio-frequency (RF) metal tube technology. The RF excitation process generates extremely short pulse widths with minimal thermal damage to surrounding tissue. This enables high peak power, producing clean micro-thermal zones while reducing pain and downtime for patients.
Our fractional scanners employ balanced galvanic mirrors to distribute energy in diverse scan patterns: rectangle, circle, square, hexagon, triangle, and linear paths. The energy is delivered through a balanced, lightweight 7-joint articulated optical arm, maintaining beam alignment and minimal power loss along the optical path.
We manufacture in compliance with ISO 13485 quality management systems, ensuring all medical-grade aesthetic devices satisfy strict safety requirements for global markets.
Here are detailed, technical answers to common questions about portable fractional CO2 laser systems.
Explore our high-output diode laser components, designed for integration into hair removal handles and industrial pumping applications.