Explore our top-tier laser diode engines, vertical stacks, and high-power OEM modules engineered for professional aesthetic laser machines.
Welcome to Xi’an Prima Beauty Equipment Co., Ltd., your trusted partner in the world of high-quality beauty equipment. With over 10 years of experience in manufacturing laser beauty equipment, we take pride in being a leading beauty equipment factory, specializing in the production and research and development of cutting-edge beauty technology.
Prima Beauty Laser is known for providing a wide range of high-quality beauty equipment, such as Diode hair removal laser machine, CO2 fractional laser machine, Pico laser machine, IPL laser machine, Skin management machine, etc. With more than 10 years of aesthetic and laser experience, its head office integrates the research and development of diode lasers and solid-state lasers, including the production and manufacturer of beauty equipment sales.
We combine vertical industrial integration, premium laser chip development, and stringent quality assurance to support your brand's growth.
As a Chinese mid-to-high-end beauty equipment supplier, we prioritize customer satisfaction and offer excellent after-sales support. Our dedication to innovation and excellence has enabled us to integrate the research and development of laser chips, production, manufacturing, and sales of beauty equipment under one roof. This ensures that our customers receive the latest advancements in beauty technology, backed by our expertise and industry-leading support.
Our commitment to quality is unwavering. Every device undergoes rigorous testing to ensure it meets our high standards before it reaches your hands. We also support the customization of OEM or ODM. Whether it's beauty equipment or laser chips, we can customize it to fit your needs. We are always a step ahead in developing new and improved beauty equipment that caters to evolving market demands.
In addition to our extensive product range, we also provide OEM/ODM services, allowing our clients to customize and brand our beauty equipment to meet their specific requirements. Whether you are looking to enhance your beauty salon or medical beauty hospital with state-of-the-art equipment, we have the solutions to elevate your business and exceed your clients’ expectations.
Our systems comply with major global medical, safety, and operational standards.




An authoritative technical breakdown of energy-based aesthetic systems, laser micro-channel dynamics, global procurement pipelines, and clinical-grade development standards.
Laser skin resurfacing technology has advanced beyond simple mechanical dermabrasion. Historically, continuous-wave carbon dioxide (CO2) lasers were used to strip the epidermal layer entirely, which frequently resulted in significant downtime, prolonged erythema, and a high risk of post-inflammatory hyperpigmentation (PIH). Today, modern energy-based medical devices operate on the principle of fractional photothermolysis. By creating microscopic treatment zones (MTZs) surrounded by viable, untreated tissue, the body's natural healing cascade is accelerated, leading to rapid re-epithelialization and collagen neogenesis.
Critical to the design of these platforms is the choice of wavelength and optical engine. Modern premium platforms rely on solid-state laser chips, micro-channel cooled (MCC) diode stacks, and multi-wavelength lasers (ranging from 755nm, 808nm, 940nm to 1064nm). These modules serve as the essential energy source for both high-power selective photothermolysis (such as laser epilation) and non-ablative or ablative fractional treatments. By integrating high-power laser modules, OEMs can configure systems to deliver short pulse widths with high peak power, target distinct chromophores (water, melanin, oxyhemoglobin), and optimize the balance of thermal damage and structural recovery.
"The threshold of thermal injury is governed by the Thermal Relaxation Time (TRT). When the pulse duration is kept shorter than the TRT of the target tissue, energy is confined without thermal dissipation, minimizing collateral damage to the surrounding dermis."
Global B2B medical beauty distributors, private label brands, and dermatological clinics face complex challenges when sourcing laser machinery. The primary business considerations go beyond initial cost to focus on operational uptime, handpiece duty-cycle lifetimes, and compliance with local regulatory frameworks (such as US FDA, EU MDR CE, and ISO 13485).
Procurement teams look for specific hardware capabilities to justify large capital investments:
China's medical-aesthetic manufacturing sector has transitioned from simple assembly lines to highly automated Factory 4.0 ecosystems. Factories like Xi'an Prima Beauty Equipment utilize automated optoelectronic alignment, class 10,000 cleanrooms for semiconductor packaging, and robotic testing arrays that simulate lifetime wear-and-tear.
This manufacturing ecosystem offers key benefits to international buyers:
Aesthetic practices vary by region, requiring versatile hardware platforms:
Answers to common engineering, logistics, and quality questions from B2B buyers and aesthetic manufacturers.
Micro-channel cooling uses individual, micro-engineered water paths directly underneath each laser diode bar. This design offers a much higher heat transfer coefficient than macro-channel designs, keeping the semiconductor junction temperature low. This prevents thermal degradation and allows the system to output high peak power continuously.
Combining wavelengths allows practitioners to target different anatomical depths and pigments simultaneously. The 755nm wavelength targets melanin for light skin and fine hair; the 808nm is the industry standard for fast coverage; the 940nm targets blood vessels to reduce nutrient supply to hair follicles; and the 1064nm penetrates deep safely for darker skin tones (Fitzpatrick skin types V and VI).
Our vertical integration covers everything from diode laser chip design, vertical stack mounting, and handpiece shell design to complete chassis engineering, customized software GUIs, and regulatory compliance assistance.
MCC systems require deionized (DI) water because the micro-channels can clog with mineral deposits if normal water is used. Deionized water helps prevent corrosion and scaling, keeping heat transfer efficient and protecting the laser diodes.
Every module undergoes continuous aging tests under load, thermal camera inspections to find hot spots, and output power verification using precision power meters. This ensures the output power remains stable over the lifetime of the module.
Yes, our modules are frequently used for handpiece repair and refurbishment for major global brands. We offer customized mechanical adapters, power matching, and water fitting layouts to fit a variety of chassis.
Industrial-grade modules, multi-wavelength stacks, and high-power replacement parts designed for B2B integrators and maintenance services.