Explore our FDA, CE MDR, and ISO 13485 certified optical systems for dermatological resurfacing, hair removal, body sculpting, and tattoo removal.
Analyzing the evolution of 10.6μm gas and RF-excited lasers in professional aesthetics, gynaecology, and minimally invasive surgical sub-specialties.
The global demand for high-precision thermal tissue ablation has elevated the 10,600 nm Carbon Dioxide (CO2) laser to the gold standard in aesthetic dermatology, scar remodeling, and gynaecological rejuvenation. Driven by rapid breakthroughs in fractional photothermolysis, RF-excited metal tube resonator design, and dynamic galvanometric scanner electronics, the market for medical CO2 laser systems is projected to exceed $1.8 Billion globally within the next decade.
As healthcare providers and distributor networks demand turnkey solutions tailored to distinct regional clinical requirements, opting for an experienced ODM (Original Design Manufacturer) CO2 laser manufacturer has become the strategic path to market leadership. Beijing UNT Technology Co., Ltd. delivers high-gain engineering, end-to-end component customization, rigorous regulatory compliance, and scalable production infrastructure to empower global brands.
Peak Water Absorption Wavelength
Beijing Manufacturing Base
Medical Device QMS Certification
Annual Production Capability
Understanding optical resonators, RF modulation, fractional scanners, and customized soft-tissue ablation profiles.
Our ODM solutions integrate ultra-durable RF-excited metal tubes featuring laser pulse frequencies up to 20 kHz. Compared to traditional glass tubes, RF excitation yields a tightly focused Gaussian beam (M² < 1.2), rapid rise/fall pulse symmetry, and an operational lifespan exceeding 20,000 hours without gas replenishment.
Integrated dual-axis high-speed galvanometers achieve scan densities up to 400 micro-beams/cm². Customizable scan shapes (square, circle, hexagon, ellipse, rectangle, triangle) minimize overlapping thermal zones, significantly reducing post-inflammatory hyperpigmentation (PIH) risks.
Pioneering Android-based UI integration into medical lasers. Our customized operating system supports multi-user database storage, cloud telemetry diagnostics, customized GUI branding, real-time impedance monitoring, and automated parameter preset calculations based on patient Fitzpatrick skin type.
| Performance Parameter | Standard OEM Configuration | Advanced ODM Customization Options |
|---|---|---|
| Wavelength | 10,600 nm (Far-Infrared Spectrum) | Dual Wavelength Integration (10.6μm + 1540nm Non-Ablative) |
| Laser Type | RF-Excited Sealed Metal Tube / Glass Tube | Coherent / Synrad High-Peak Power RF Excitation Module |
| Output Power | 30W / 40W Continuous Wave Peak | 60W / 100W Ultra-Pulse High Intensity Output |
| Operating Modes | Fractional, Surgical Cutting, Gynaecological | Customized Micro-Pulse, SuperPulse, CW, Vulvovaginal Tightening |
| Pulse Duration | 0.1ms – 10ms Adjustable | Sub-microsecond Ultra-Pulse Technology (0.01ms resolution) |
| Scanner Shapes | Square, Circle, Rectangle | Freehand Draw, Polygon, Micro-Dot Matrix, Dynamic Random Scan |
Tailored treatment protocols engineered to meet regional clinical regulations and patient demographic requirements across global markets.
Micro-ablative fractional ablation creates targeted Microscopic Thermal Zones (MTZs) extending into the deep dermis. This triggers rapid tissue regeneration, neocollagenesis, and elastin fiber contraction. Ideal for treating deep rhytids, hypertrophic acne scars, actinic keratosis, and uneven texture across Caucasian, Mediterranean, and Asian skin types.
Equipped with sub-millimeter surgical focal handpieces, our high-power CO2 laser systems allow precise tissue vaporization without collateral thermal necrosis. Extensively used in post-surgical scar revision, keloid flattening, burn scar reconstruction, and benign dermatological lesion excision with minimal bleeding due to micro-vascular coagulation.
Featuring specialized 360-degree cylindrical and 90-degree reflective gold-plated vaginal probes. Controlled non-ablative photothermal heating stimulates collagen cross-linking within the vaginal mucosa, delivering non-surgical solutions for Genitourinary Syndrome of Menopause (GSM), stress urinary incontinence (SUI), and vaginal atrophy.
Integrating articulate optical delivery arms (7-joint light guide arms) paired with micro-manipulators. Enables micro-surgical ablation in Otolaryngology (ENT), oral maxillofacial surgery, and proctology, offering ultra-fine spatial resolution and reduced post-operative patient downtime.
Leveraging Beijing's optoelectronic industrial base to deliver unmatched cost efficiency, scale, and technical precision.
Beijing UNT Technology Co., Ltd. operates a 6,000 square meter standardized manufacturing facility equipped with an ISO Class 7 cleanroom assembly line. Our localized supply chain resilience stems from complete control over core manufacturing stages:
Advanced CNC machining and laser alignment benches ensure optical component tolerances within micrometer thresholds.
Over 13 years of non-invasive and minimally invasive aesthetic equipment development, creating market-ready clinical innovations.
End-to-end laser portfolio spanning 10.6μm CO2, 808nm/755nm/1064nm Diode, Picosecond, and Q-Switched Nd:YAG systems.
Designing medical equipment engineered for optimal clinical efficacy, patient safety, rapid recovery, and minimal discomfort.
A decade of rapid technical evolution, international quality certifications, and localized customer support networks.
Every ODM unit manufactured by UNT undergoes rigorous quality audits conforming to global regulatory bodies including US FDA, EU MDR, Australian TGA, and ISO 13485 frameworks.








Rapid international fulfillment backed by local European service centers and next-generation optoelectronic innovations.
We understand that equipment uptime is vital for medical clinics and distributors. UNT Technology guarantees end-to-end support infrastructure across global markets:
Incorporating hyperspectral optical cameras onto laser scanning heads to dynamically read tissue hydration and epidermal thickness, automatically fine-tuning energy fluences in real time.
Developing ultra-short sub-nanosecond pulse width CO2 resonators designed to induce targeted photo-acoustic shockwaves alongside precise photo-thermal ablation for scarless tissue remodeling.
Empowering distributor networks with IoT telemetry to perform remote diagnostic health checks, beam alignment verification, and automated software updates over-the-air (OTA).
Addressing core technical, regulatory, operational, and commercial questions for B2B medical aesthetic buyers.
Our scalable manufacturing facility supports prototype initial orders starting from as few as 50 units for customized shell designs and software UIs, scaling up to 50,000+ units annually for global brand distributors.
RF-excited metal tubes offer vastly superior beam spot quality (M² < 1.2), faster pulse response rates (up to 20kHz), lower voltage operation, and an extended operational lifespan exceeding 20,000 hours without gas refills, drastically reducing warranty claims.
We provide full technical documentation packages including CB test reports, IEC 60601-1 / IEC 60601-2-22 safety certificates, ISO 13485 QMS audit files, and clinical trial evaluation reports to accelerate your local registration.
All devices include a 2-year factory warranty and lifetime maintenance support. European clients benefit from our APEX Customer Service Center in the Netherlands, providing localized machine demonstrations, rapid replacement parts, and direct on-site technician service.
Explore additional high-performance aesthetic systems manufactured in our Beijing facility.