OEM Laser Carbon Removal Machine Manufacturers & Company

High-Power Diode Stack Technology & Aesthetic Solid-State Laser Platforms for Global Brands

Clinical Laser Carbon Peeling and Skin Resurfacing: Macro Industry Paradigm

In the rapidly evolving medical aesthetics sector, non-invasive therapeutic platforms are seeing exponential demand. Among these, Laser Carbon Removal (commonly referred to as the "Carbon Peel" or "China Doll Peel") has emerged as a cornerstone treatment for multi-depth epidermal rejuvenation, acne control, and localized hyperpigmentation. By utilizing a medical-grade exogenous carbon suspension to penetrate deeply into follicular recesses, clinical practitioners can deploy precise nanosecond or picosecond laser energies to selectively vaporize carbon particles, micro-exfoliating the epidermis and inducing deep dermal neocollagenesis.

As an OEM/ODM industry pioneer, we engineer clinical-grade laser architectures that power these advanced skin correction platforms. By integrating robust diode stack pumps with solid-state Nd:YAG resonators, our systems maintain optimal thermal stability, high optical conversion efficiency, and exceptionally flat beam profiles. The integration of high-power diode stacks ensures maximum uptime and shot consistency—critical metrics for clinical providers managing high-throughput patient profiles.

Clinical Selectivity

Utilizes targeted photothermal action on exogenous carbon molecules, sparing adjacent dermis while ensuring complete follicular cleaning and thermal remodeling.

System Durability

Micro-channel cooled diode stacks guarantee reliable optical pumping configurations, expanding operational lifetime to more than 20-30 million shots.

OEM Scalability

Tailored physical envelopes, variable custom spot size optics, and customizable software GUI environments to align with global brand identities.

Xi'an Prima Beauty Equipment manufacturing facility

Xi'an Prima Beauty Equipment Co., Ltd.

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, research, and development of cutting-edge aesthetic technology.

Prima Beauty Laser is recognized globally for providing a wide range of high-quality systems, such as Diode hair removal laser machines, CO2 fractional laser machines, Pico laser systems, IPL lasers, and advanced Skin management platforms. Our head office integrates the research and development of high-density diode lasers and solid-state lasers, ensuring top-tier optical manufacturing and sales channels worldwide.

10+
Years of Experience
3000+
Global Spa Partners
100%
Quality Assured

Why Choose Xi'an Prima Beauty Equipment

A comprehensive system integration partner offering advanced research, manufacturing superiority, and end-to-end global service channels.

Advanced Technology

As a leading Chinese mid-to-high-end beauty equipment supplier, we prioritize customer satisfaction and offer excellent technical support. Our dedication to innovation and excellence has enabled us to integrate the R&D of laser chips, wafer packaging, optical alignment, and complete system manufacturing under one roof. This vertical integration ensures you receive the latest advancements backed by proven engineering.

Unwavering Quality

Our commitment to quality is absolute. Every laser module and machine undergoes rigorous testing, including burn-in testing, multi-hour power degradation measurements, and high-shock physical simulations. We support full customization of OEM and ODM laser units. Whether it is standard beauty equipment or specific laser chips, we customize them to suit your technical requirements.

Global OEM/ODM Services

In addition to our extensive product range, we provide deep-level OEM/ODM services, allowing clients to customize structure, shell design, software workflow, cooling performance, and branding. We also provide ongoing clinical training, remote technical support, responsive after-sales service, and CRM integrations to maximize your business potential.

Global Qualification & Certificates

Our operations and products conform to rigorous international quality management guidelines and certifications.

Qualification Certificate 1
Qualification Certificate 2
Qualification Certificate 3

Global Business & Industrial Status

The global demand for laser skin treatments has experienced significant growth over the past five years. Europe and North America remain leading markets due to established clinical networks and high consumer adoption rates. Concurrently, rapid expansion in the Asia-Pacific region, Latin America, and the Middle East has driven demand for scalable, cost-effective laser components.

In today's competitive landscape, manufacturers must provide systems that combine durability with high performance. Traditionally, Nd:YAG lasers used in carbon removal systems relied on flashlamp pumping, requiring frequent replacement. Modern medical aesthetic systems have shifted toward Diode-Pumped Solid-State (DPSS) systems. As a vertical manufacturer, we provide the high-power diode stacks and modules that power these advanced clinical systems.

Localized Application & Clinical Scenarios

Laser carbon peeling systems are designed for versatile performance across diverse clinical environments:

  • Medical Spas & Aesthetic Clinics: Delivering rapid, no-downtime procedures that address skin texture, minimize pore appearance, and regulate sebum production.
  • Dermatology Centers: Providing adjunctive therapy for mild-to-moderate acne vulgaris by targeting sebaceous glands and reducing P. acnes bacteria.
  • Multifunctional Workstations: Allowing clinics to easily switch between Q-switched Nd:YAG mode for carbon peels and targeted wavelengths for tattoo removal or vascular treatments.

Technical Roadmap & Future Outlook

Our engineering roadmap focuses on optimizing electro-optical efficiency, beam uniformity, and systemic cooling performance. The future of aesthetic lasers lies in high-power diode integration, moving away from flashlamp setups to deliver precise thermal management and extended operational life.

By developing advanced vertical stack architectures with fast-axis collimation (FAC), we deliver uniform energy distribution across the target spot. This reduces hot spots, ensuring consistent treatment outcomes and maximizing safety. Additionally, we are researching multi-wavelength stack arrays (755nm, 808nm, 940nm, and 1064nm) on a single platform to enable multi-indication treatments from a single applicator.

Phase 1: High-Density Packaging

Reducing bar-to-bar pitch in diode vertical stacks to deliver higher peak power density while maintaining efficient thermal dissipation.

Phase 2: Intelligent Monitoring

Integrating real-time temperature, power, and impedance sensors directly into the diode housing to proactively prevent thermal damage.

Phase 3: Multi-Wavelength Integration

Combining customized diode outputs within unified optical modules to enable versatility across dermatological applications.

Localized Support, Compliance & Regulatory Standards

Operating in the global medical aesthetic market requires strict compliance with regional regulations. Our manufacturing systems comply with ISO 13485 quality management standards. We assist partners throughout the regulatory submission process, providing detailed technical documentation, optical safety certifications, and electrical test data required for international clearances.

To support our global partners, we provide comprehensive training programs covering technical installation, system maintenance, and diode module refurbishment. Our diagnostic protocols help technical teams resolve operational issues quickly, minimizing downtime and maintaining service continuity.

Technical Questions & Answers (FAQ)

Expert insights regarding laser diode design, carbon removal technology, and customization processes.

Q1: How does a Q-switched Nd:YAG laser interact with carbon paste in carbon removal procedures?
During treatment, a medical-grade carbon suspension is applied to the skin, where it penetrates the pores. The Q-switched Nd:YAG laser (1064nm) targets these carbon particles. The carbon absorbs the laser energy, causing rapid photothermal vaporization. This process removes debris from the pores and stimulates collagen production in the surrounding dermis.
Q2: What are the benefits of diode-pumped systems compared to traditional flashlamp-pumped lasers?
Diode-pumped systems offer superior electro-optical efficiency, stable energy output, and significantly longer lifespans. While flashlamps typically require replacement after 1 to 3 million pulses, high-quality diode stack pumps can deliver over 20 million pulses. This reduces maintenance costs and system downtime.
Q3: Why is micro-channel cooling (MCC) important for high-power diode stacks?
Micro-channel cooling uses water channels within the diode stack to dissipate heat directly from the laser bar. This prevents thermal degradation, maintains wavelength stability, and prevents early failure under high-frequency conditions.
Q4: What customization options are available for OEM/ODM partners?
We offer extensive customization, including custom housing designs, software user interfaces, variable spot-size optics, and specific wavelength configurations. We can also develop custom diode stacks to meet specific electrical and cooling requirements.
Q5: How does Xi'an Prima assure quality across its laser product range?
Every laser module undergoes rigorous testing, including electro-optical efficiency profiling, beam quality characterization, and continuous burn-in testing. These steps ensure our products meet performance and reliability standards before shipment.