Pioneering the next generation of aesthetic laser technology — built for clinicians who demand the best for their patients.
LASERASE was founded on a simple premise: clinicians and their patients deserve a laser platform that doesn't force a compromise between results, safety, and comfort. For too long, practitioners had to choose between aggressive outcomes and patient-friendly treatments. We built LASERASE to eliminate that choice.
Our 1927nm Thulium Fiber Laser represents the culmination of years of clinical research and engineering innovation. By operating at the precise wavelength where water absorption is optimal for dermal targeting, we've developed a system that achieves what was previously considered impossible — aggressive pigment correction and collagen remodeling, safely, across all Fitzpatrick skin types I through VI.
We partner directly with forward-thinking medical practices to ensure they have everything they need to succeed: the technology, the training, the clinical protocols, and the ongoing support to make LASERASE the centerpiece of their premium service offerings.
Every feature of LASERASE is grounded in peer-reviewed clinical research. We don't ship technology until we're confident it will deliver measurable, reproducible results for real patients.
We're not just a vendor — we're a long-term partner. From initial training to ongoing clinical support, we're invested in your practice's success every step of the way.
We built LASERASE to serve every patient, regardless of skin type. Achieving safe, effective outcomes across all Fitzpatrick types I–VI is not a bonus feature — it's a core design requirement.
The 1927nm wavelength sits at a unique point on the absorption spectrum. It is absorbed by water approximately 10x more than the 1064nm Nd:YAG and significantly more than 1550nm fractional lasers, creating precise, controlled thermal columns in the upper dermis without excessive bulk heating.
This characteristic makes it exceptionally effective at targeting chromophores responsible for pigmentation while simultaneously stimulating fibroblast activity for collagen production — a dual mechanism most laser platforms cannot achieve in a single treatment modality.
The fiber delivery system further enhances precision by maintaining a consistent Gaussian beam profile throughout the treatment, eliminating the hot spots and inconsistencies common in lens-based systems.
Contact our team to request detailed product information and schedule a live demonstration.
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