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Thulium Laser 65

The Thulium laser is an advanced solid-state or fiber-based laser system that operates primarily in the wavelength range of around 1940–2010 nanometers. It is used in various medical fields, especially urology, ENT, and surgery, for its precision, safety, and soft-tissue handling capabilities.

Thulium laser treatment involves the use of a Thulium:YAG or Thulium Fiber Laser, which emits a continuous or pulsed laser beam. This laser is used to cut, vaporize, or enucleate excess prostate tissue through the urethra, without any external incision.

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Model Name PulseTFL65
Average power Up to 65 WATTS
Repetition rate 1 Hz-2500 Hz
Energy per pulse 0.02 J-7J
Wavelength 1940 nm
Pulse Duration Adjustable
Peak Pluse Power 500W in Pulse Mode
Laser Type Thulium Fiber Laser
Beam delivery 200, 276, 365, 550, 800, and 1000 µm Fiber
Aiming beam 532 nm (adjustable <5 mW) -Class 3R
Activation Double footswitch
Cooling Air cooling system
Electrical requirements 100-240 Vac; 50/60 Hz: 1000VA
Screen Size & Resolution 7.8 Inch & 1280×800
Weight 35 kg

LASER LITHOTRIPSY

Calculi in the bladder, ureter or kidney are fragmented by rapid evaporation of residual water inside the stone upon absorption of the laser radiation. At the long pulse setting the ARPhotoniccs Holmium laser does not apply external kinetic force, thus preve nting the calculi from being pushed further inside the ureter.

The ARPhotoniccs Flexible reusable laser fiber insertion sheath provides protection of the flexible scope against damage during insertion of the laser fiber. Please refer to our laser fiber brochure.

Soft Tissues

A comparison of penetration depths for lasers with various wavelengths indicates that thulium fiber lasers exhibit minimal penetration depth, making them more controllable and safer for surgical procedures in urology.

Radiation at a wavelength of 1940 nm penetrates in tissues to a depth of approximately 100 µm³, which is 4.5 times less than that of Ho:YAG lasers. This characteristic enables maximum controlled removal of biological tissue down to the prostate capsule. Additionally, this wavelength offers excellent hemostatic properties, minimizing blood loss during soft tissue surgeries. Consequently, adapting to, BPH laser enucleation becomes straightforward and efficient.

LASER FIBER

  • Standard Fibers : For general use in stone and soft tissue treatments
  • Ball Tip Fibers : Strongly simplify the insertion in already bent scopes
  • Performance Fibers : Designed to deliver great power even with small fibers
  • Gastro Fibers : For general use in stone and soft tissue treatments

Dual Pedal Foot Switch

Orange and blue pedals can be used to easily switch for example between "Power Fragmentation" and "Popcoming". An additional standby function allows the user to activate/deactivate the laser as needed.

  • Urology
  • Gynecology
  • Oral Surgery
  • Arthroscopy
  • Gastroenterology
  • ENT
  • Dermatology
  • General Surgery
  • Vascular Surgery
  • Thoracic Surgery
  • Orthopedics
  • Plastic Surgery
  • Compact design vs. solid-state lasers, easy to carry, fits in small spaces
  • Lowest Maintenance cost
  • No special connection needed plugs directly into a standard power socket
  • Efficient air cooling and reduced weight

High Efficiency

The unique wavelength of 1940 nm corresponds to the maximum abortion spectrum of Water, resulting in highest efficiency but lower risk.

Outstanding Performance

  • Wide range of pulse duration and frequency adjustments
  • High reliability with an almost unlimited laser source lifespan
  • Compact and lightweight design
  • Highly visible green pilot beam, spot-on blood-saturated tissue
  • Ergonomic design for ease of use
  • No need for regular maintenance.

Functionality

  • Capability to store personalised user settings
  • Easy-to-use interface with a large, vibrant colour display
  • Touchscreen functionality for smooth operation
  • Case-saving option for convenient data handling

Accuracy of Exposure

  • A portable and streamlined laser system designed for easy integration into an endoscope rack
  • Reduced penetration depth of emission into soft tissue guarantees optimal precision
  • Well-suited for use with endoscopic impact control technology

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