Medical Laser Technology

  

FOR PRECISE, MINIMALLY INVASIVE TREATMENTS

Turning Laser Physics into Clinical Precision

Where Our Medical Lasers Create the Most Value

ENT & Minimally Invasive Surgery

What it enables:

  • Precise cutting and coagulation in soft and hard tissue.
  • Fiber‑coupled delivery for minimally invasive access.
  • Pulse control for selective ablation and bleeding reduction.

Why it matters:

Better surgical control in confined anatomical spaces.

 

Dentistry & Oral Surgery

What it enables:

  • Precise cutting of hard and soft tissue.
  • Cold ablation with minimal thermal impact.
  • Preservation of healthy tooth structure.
  • Reduced vibration and patient discomfort.

Why it matters:

Faster procedures, improved healing and higher patient acceptance compared to conventional tools.

 

Dermatology & Aesthetic Medicine

What it enables:

  • Controlled skin ablation and resurfacing.
  • Adjustable thermal impact for rejuvenation.
  • Reduced downtime and faster wound healing.

Why it matters:

High treatment precision with predictable clinical outcomes.

 

More Than a Laser Source – A Certified Development Partner

Pantec combines high‑performance medical laser technology with advanecd development and manufacturing.

 

We support medical device companies from feasibility and simulation through system development, certification and zero‑series manufacturing.


Highlights

 

  • ISO 13485‑certified development & production.
  • Proven Er:YAG, Tm:YAG and Er:YLF platforms.
  • Customizable wavelengths, pulse parameters and fiber delivery.
  • Scalable from prototype to zero‑series.

Optimized Laser Technology for Medical Use

  • Diode‑pumped solid‑state lasers.
  • Wavelengths optimized for tissue interaction (2–3 µm).
  • Precise pulse control for cold and thermal ablation.
  • Fiber‑coupled or free‑beam configurations.

3m.i.k.r.o.n.TM is the technology platform for compact, efficient, fast and reliable lasers for a wide range of potential applications in the field of medical engineering. It enables a new generation of innovative mid-IR lasers based on diode-pumped solid-state technology, operating at wavelengths of (2 - 3) μm using different types of laser crystals (e.g. Er:YAG, Er:YLF, Tm:YAG).