Explore our clinical-grade aesthetic hardware platforms. Designed in-house by Beijing Sano Laser Development S&T Co., Ltd., each system undergoes rigorous burn-in testing, optical alignment, and energy verification.
The global medical aesthetic sector is undergoing a fundamental clinical paradigm shift. For decades, traditional nanosecond Q-switched lasers (operating at pulse durations of $10^{-9}$ seconds) served as the primary technology for dermatological pigment clearance and tattoo removal. However, nanosecond pulses rely predominantly on photothermal action—generating substantial localized heat that risks epidermal thermal damage, post-inflammatory hyperpigmentation (PIH), and extended patient downtime, particularly across Fitzpatrick skin types IV through VI.
As a premier OEM pico laser equipment supplier and factory, Beijing Sano Laser Development S&T Co., Ltd. manufactures advanced sub-nanosecond systems operating in the ultra-short picosecond pulse regime ($10^{-12}$ seconds). By delivering light energy in trillionths of a second, our picosecond platforms trigger a stress confinement threshold where photomechanical energy completely outpaces thermal diffusion. This mechanism, known as Pressure-Induced Photo-Acoustic Shockwave Fragmentation, shatters targeted skin chromophores and ink particles into microscopic "dust-like" granules without burning adjacent dermal architecture.
The international market for non-invasive aesthetic procedures is expanding at an unprecedented compound annual growth rate (CAGR). High demand for body contouring, hair removal, skin resurfacing, and pigment removal has forced medical equipment distributors to seek reliable OEM/ODM partners capable of delivering medical-grade performance at scalable manufacturing costs.
Demand is heavily concentrated on multi-wavelength picosecond platforms capable of removing multi-color ink (including stubborn green and blue pigments) while serving as non-ablative skin rejuvenation platforms via specialized fractional lens arrays.
Stringent compliance under EU Medical MDR 2017/745 mandates validated safety dossiers. European clinics prioritize platforms that combine picosecond lasers with integrated cooling accessories (such as our ICOOL-III air chillers) to maximize patient safety.
High prevalence of melasma, nevus of Ota, and post-acne hyperpigmentation requires precise energy calibration and spot-size auto-detection to treat skin types III to V safely without post-treatment rebound.
By eliminating intermediary trading markups, SANO Laser offers clinical equipment distributors direct factory pricing. This enables medical facilities to recover hardware capital expenditure (CapEx) within 3 to 6 months of active clinical operation. Furthermore, our robust engineering build reduces operational expenditure (OpEx) through durable components such as sealed metal RF CO2 tubes, imported purple laser rods, and long-life flash lamps rated for over 10 million pulses.
As a dedicated OEM pico laser equipment supplier and factory, SANO Laser’s engineering office in Shunyi District, Beijing, oversees the entire R&D and assembly lifecycle. Our picosecond hardware architecture incorporates industrial-grade components engineered for continuous operation in high-volume clinics.
Unlike budget single-rod systems that struggle with energy decay at higher repetition rates, SANO picosecond systems utilize dual purple laser rods configured in series. Driven by a 2000W OPT modular power supply, this setup produces ultra-uniform beam profiles (Top-Hat beam distribution) that prevent localized hot spots and epidermal tissue burns.
Optical energy transmission is maintained via a premium imported Korean 7-joint articulated arm. Featuring 360-degree rotation and precision weight balancing, it reduces hand fatigue for practitioners during extended procedures. Integrated optical sensors auto-detect handpiece spot sizes (2-10mm) and sync parameter defaults to the UI.
Employs high-pressure Japanese water pumps combined with custom copper radiators and TEC thermoelectric cooling plates to maintain laser rod water temperatures strictly between 20°C and 25°C.
Our software engineering team builds custom Android/Linux touchscreen interfaces featuring client log storage, localized multi-language suites, and private label branding.
Designed for swift technical servicing. Modular internal sub-assemblies (power supply, liquid circulation, optics, mainboard) allow rapid plug-and-play part replacements.
Importing medical aesthetic equipment requires rigorous regulatory compliance, electrical safety certifications, and robust post-sale support. SANO Laser operates under ISO 13485 quality management systems, ensuring every production batch matches strict international standards.
We supply complete technical documentation to support local medical device registration for international importers:
Transform standard equipment into your proprietary brand line with our comprehensive OEM/ODM workflow:
Picosecond lasers are versatile workhorses capable of delivering multiple revenue-generating treatments across different patient demographics. Below is a breakdown of clinical protocols engineered for SANO picosecond devices:
Utilizing dual-wavelength (1064nm & 532nm) and optional dye handpieces (585nm & 650nm), the picosecond photomechanical shockwave shatters dark black, blue, red, green, and yellow inks into microscopic fragments cleared by macrophages.
Low-fluence picosecond toning gentle protocols disperse epidermal and dermal melanin (Nevus of Ota, Hori's nevus, solar lentigines) without provoking melanocyte hyperactivity or post-treatment hyperpigmentation.
Equipped with a Micro-Lens Array (MLA) Focus Handpiece, the laser induces Laser-Induced Optical Breakdown (LIOB) in the dermis. This creates intra-epidermal cavities that stimulate collagen and elastin neocollagenesis for scar remodeling.
SANO Laser continues to push the boundaries of biomedical optics. Our forward R&D roadmap focuses on next-generation clinical optimizations designed to keep distributor portfolios ahead of market competition:
Next-generation cavity designs aim to push pulse durations down from 600ps to sub-300ps. Shortening the pulse width further increases peak photomechanical pressure while reducing photothermal side effects to near zero, unlocking safer treatment profiles for dark Fitzpatrick skin types.
Integrating real-time optical sensors inside the handpiece to analyze skin reflectance, melanin concentration, and ink depth prior to pulse emission. The on-board AI system dynamically auto-adjusts fluence, pulse rate, and cooling power to maximize efficacy and eliminate operator error.
Direct responses from our engineering and export office regarding OEM customization, clinical technology, ordering procedures, and warranty coverage:
Explore additional aesthetic systems manufactured by Beijing Sano Laser, spanning multi-wavelength DPL, diode laser hair removal, EMS body sculpting, vacuum microneedling RF, and Zimmer-style cold air cooling devices.
Expand your aesthetic equipment catalog with factory-direct pricing, custom engineering, and certified biomedical reliability. Contact our engineering export team in Beijing today to request technical specs, OEM quotes, or factory tour schedules.