China Laser Picosecond Suppliers & Company

Precision Optoelectronic Integration & OEM/ODM Manufacturing Excellence for Global Medical and Aesthetic Laser Systems

Leading Edge of Medical Laser Architecture

The evolution of aesthetic medicine has shifted drastically from photothermal principles to precise photomechanical effects. Picosecond laser systems represent the pinnacle of this revolution, delivering ultra-short pulses of energy in trillionths of a second to shatter target chromophores without thermal collateral damage.

For global B2B buyers, sourcing these advanced systems requires a reliable partner who integrates wafer-level diode pack manufacturing with complete solid-state laser cavity assembly. Xi'an Prima Beauty Equipment Co., Ltd. fills this critical gap, providing both standard modules and customized OEM/ODM platforms built upon high-power laser (HPL) micro-channel cooled arrays.

This technical guide details the hardware engineering, manufacturing resilience, and regulatory compliance that establish Xi'an Prima as a premier partner in the medical laser supply chain.

Xi'an Prima Beauty Equipment Manufacturing Facility

Corporate Profile & Optoelectronic Capabilities

Xi'an Prima Beauty Equipment Co., Ltd. — A Decennial Leader in Laser Packaging & Aesthetic Systems

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.

Unlike standard trading operations or simple assemblers, our structural advantage lies in the vertical integration of the laser packaging line. By maintaining proprietary packaging lines for high-power diode bars (ranging from 300W to 4800W configurations), we dictate the raw quality of the optical pumps that drive picosecond Nd:YAG solid-state laser resonators. This level of control minimizes insertion losses, ensures high wavelength stability, and extends diode operational lifespans past 40 million pulses.

10+
Years R&D Experience
4,800W
Max Diode Stack Power
Class 10k
Cleanroom Environment
50+
Global Distribution Hubs

Strategic Operational Advantages

Why top-tier medical device brands and clinical distributors choose Xi'an Prima

Technology & Silicon-Level Integration

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.

Rigorous Optical Quality Assurance

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.

Industrial OEM/ODM Programs

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.

Laser Picosecond Technical Roadmap & Future Outlook

Decentralizing thermal mechanics for maximum cellular breakdown efficiency

Modern clinical dermatology requires targeted destruction of dermal pigments (such as tattoo inks, melasma, and Ota's nevus) without compromising adjacent epidermal layers. The physical key to this selective process lies in the pulse duration. Traditional Q-switched lasers operate on a nanosecond timeline ($10^{-9}$ seconds), creating a hybrid photothermal-photomechanical action. Picosecond systems ($10^{-12}$ seconds) push the pulse duration far below the thermal relaxation time of melanin and standard ink particles (typically 10 to 50 nanoseconds).

1. Sub-500ps Pulse Architectures

Our current generation of solid-state picosecond engines targets pulse widths of 450ps at 1064nm. This extreme brevity produces high-intensity peak power, inducing localized Laser-Induced Optical Breakdown (LIOB). This mechanics creates high-pressure acoustic shockwaves that break pigments into micro-particles, which are easily cleared by the patient's lymphatic system.

2. Multi-Wavelength Arrays (532/755/1064/585/650nm)

Our roadmap prioritizes the expansion of dye-impregnated or frequency-doubled handpieces. While 1064nm serves as the foundation for deep pigment clearance and dark tattoos, the 532nm wavelength handles epidermal targets. By integrating optional 755nm Alexandrite-like solid-state crystals and handpiece-mounted dye convertors (585nm and 650nm), we ensure operators can target the complete color spectrum of tattoo pigments.

3. Artificial Intelligence Power Calibration

Future iterations of our picosecond platforms feature real-time fluence feedback. Sensors integrated within the articulating arm continuously monitor target output energy against optical path deterioration. Dynamic software auto-compensates for energy losses, ensuring stable energy delivery at the patient's skin and eliminating typical clinical energy drift.

Macro Industry Solutions: Integrated Aesthetic Workstations

Bridging component hardware manufacturing with global clinical applications

Global clinical marketplaces demand unified laser systems capable of multi-tasking. Xi'an Prima addresses this demand by utilizing its core diode and crystal research to construct comprehensive clinical workhorses.

Clinical Pigmentation Solutions

Our picosecond platforms are equipped with micro-lens array (MLA) fractional handpieces. These lenses focus laser energy into tiny spots, creating tiny cavities under the skin called LIOBs, while keeping the outer layer of skin intact. This stimulates collagen production and remodels skin tissue with minimal downtime, offering a highly effective treatment for acne scars, fine lines, and stubborn pigment issues.

Industrial Optical Sub-Assembly Supply

Beyond completed medical consoles, we act as a principal sub-assembly supplier to other global medical laser brands. Our product portfolio includes high-power micro-channel cooled (MCC) vertical stacks (e.g., 808nm, 2400W–4800W) used to repair and upgrade handles from major aesthetic brands. We also provide high-reliability pump diode modules for industrial green and ultraviolet laser systems.

China Factory 4.0: Supply Chain Resilience & Optoelectronic Prowess

How our advanced manufacturing line ensures cost stability and premium optical yields

Xi'an is the cradle of Chinese optical science, housing prestigious research institutes and academic bases. Leveraging this localized expertise, Xi'an Prima has built a highly efficient manufacturing facility that ensures quality and scalability.

Micro-Channel Cooler (MCC) Packaging

We pack diode laser chips in-house using high-reliability Indium or Gold-Tin (AuSn) bonding technology. Micro-channel cooling (MCC) channels are built directly under the diode bars, allowing thermal dissipation up to several hundred watts per square centimeter, protecting the diode bars from thermal fatigue.

Automated Optical Alignment

Precision is everything in high-power optics. We use automated alignment machines to set fast-axis collimation (FAC) lenses on each diode bar. This keeps the laser beam divergence down to less than 1 degree, maximizing coupling efficiency into fibers or solid-state laser rods.

Vertical Supply Integration

By producing diode stacks, manufacturing housings, assembling power supplies, and designing control software under one roof, we eliminate third-party margins and component matching issues. This resilience translates directly to stable pricing and rapid lead times for our clients.

Compliance, Quality & International Certifications

Navigating the global regulatory landscape is a core concern for medical device importers. At Xi'an Prima, we ensure our manufacturing processes align with international quality standards. Our facility operates under the ISO 13485 Medical Devices Quality Management System, and our key aesthetic workstations hold active CE, RoHS, and local medical clearance certificates.

Our quality control process includes:

  • Incoming component testing (spectrometric bar verification).
  • High-pressure water loop leakage tests for micro-channel stacks.
  • 72-hour continuous burning/aging tests under thermal stress.
  • Final optical power, beam quality, and wavelength validation.

Qualification Certificates

Qualification Certificate 1
Qualification Certificate 2
Qualification Certificate 3
Qualification Certificate 4

Global Enterprise Procurement Matrix & After-Sales Network

A B2B structure optimized for medical distributors, repair centers, and system integrators

OEM/ODM Customization Capabilities

We offer extensive customization options, including custom housing molds, customized user interface (UI) software, localized language translations, and integration of custom wavelengths. Our R&D team works closely with your engineering group to deliver market-ready, branded clinical systems.

Repair & Refurbishment Supply Chains

Aesthetic devices suffer wear over time, particularly the diode laser stacks inside the handles. Rather than replacing the entire handpiece at high cost, global repair firms send modules to us. We swap out the damaged diode bars and rebuild the stack with high-power gold-tin elements, extending the handle's lifespan at a fraction of the cost.

Technical FAQ & Procurement Guidance

Expert answers to common technical and logistical questions for global buyers

What is the main difference between Micro-Channel Cooler (MCC) and Macro-Channel Cooler (MCM) diode stacks?
The difference lies in thermal dissipation capacity and cooling water quality requirements. Micro-Channel Coolers (MCC) have tiny cooling micro-channels (often copper) located directly beneath each laser diode bar. This design offers a low thermal resistance, allowing MCC stacks to run at higher duty cycles and power densities. However, MCC requires deionized water to prevent channel clogging and corrosion. Macro-Channel Coolers (MCM) feature larger water cooling channels. They are more forgiving with water purity, but have a higher thermal resistance, meaning they are typically suited for lower power densities.
How does Xi'an Prima handle custom wavelength configurations for OEM orders?
For hair removal systems, we can combine different laser diode bars (e.g., 755nm, 808nm, 940nm, 1064nm) within a single stack during assembly. For picosecond systems, we use Nd:YAG crystals as the active medium to generate a 1064nm fundamental wavelength, which is then frequency-doubled via KTP crystals to produce 532nm. We can also integrate dye handpieces or solid-state crystals to output 755nm and other target wavelengths.
What is the expected pulse lifespan of your high-power diode stacks?
Under proper operating conditions—including clean, deionized cooling water, correct flow rate, and stable electrical currents—our gold-tin packaged diode stacks can achieve a lifespan of 40 million to 50 million pulses. Standard indium-soldered stacks typically offer around 10 million to 20 million pulses.
Can you repair or refurbish laser handles from other aesthetic device brands?
Yes. We offer professional laser diode stack refurbishment services. Importers and clinical service providers can ship damaged handpieces (such as Alma Soprano, Lumenis Lightsheer, or generic models) to our factory. We disassemble the module, clean the structure, replace worn diode bars, align the micro-optics, and return the repaired unit after verification testing.
How does the picosecond laser achieve pigment shattering compared to nanosecond systems?
A nanosecond laser relies on a photothermal effect, heating target pigment particles until they expand and fragment. This process can heat surrounding tissue, increasing the risk of hyperpigmentation or scarring. A picosecond laser delivers energy in a much shorter pulse duration, generating intense peak power that creates a photomechanical shockwave. This shatters the pigment into tiny particles without heating the surrounding tissue, leading to more efficient clearance with fewer treatments.