Co2 Fractional Laser Machine
Co2 Fractional Laser Machine
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Product Description
The CO₂ Fractional Laser System is an advanced aesthetic and dermatological device designed to perform precise, controlled laser-based procedures. It operates using a carbon dioxide laser with a wavelength of 10,600 nm, which is highly absorbed by human tissue regardless of skin tone. This characteristic allows for consistent interaction with targeted areas during treatment.
The system emits a micropulsed laser beam that can be adjusted to act at a highly controlled scale, enabling operators to define treatment depth and coverage according to specific procedural requirements.
Operating Principle
Fractional CO₂ Laser Technology
The device utilizes fractional laser technology combined with photothermal effects. The emitted laser energy is delivered in micro-pulses to targeted tissue, generating controlled thermal interaction. This process enables:
- Precise ablation and micro-perforation of tissue
- Controlled thermal stimulation of the treated area
- Minimal impact on surrounding tissue due to focused energy delivery
The laser operates with stable and uniform energy output, ensuring consistency during procedures. Additionally, a red semiconductor guide beam is integrated to assist with accurate positioning during operation.
Tissue Interaction Mechanism
The CO₂ laser produces both thermal and electromagnetic effects, which are used in procedures such as:
- Non-blood or low-blood cutting
- Tissue cauterization
- Vaporization (gasification)
- Micro-level surgical applications
During application, optical-thermal interaction induces biological responses in the treated area, including stimulation of cellular activity and structural tissue processes. The system is designed to allow controlled exfoliation and regeneration at the treated surface.
Vaginal Treatment Technology
Functional Principle
The system incorporates a fractional CO₂ laser mode designed for procedures involving vaginal tissue. The laser energy interacts with:
- Vaginal mucosa
- Lamina propria
- Muscle layers
This interaction stimulates fibroblast activity and affects collagen and elastic fiber structure. The process involves controlled thermal stimulation and microvascular interaction at the treatment site.
Tissue Response
Laser application at the microvascular level contributes to:
- Increased localized blood flow
- Enhanced cellular metabolic activity
- Activation of tissue response mechanisms
The system is designed to influence structural characteristics of the tissue through controlled thermal exposure.
Applications
The CO₂ Fractional Laser System is used in procedures involving:
- Vaginal tissue tightening procedures
- Support of lubrication-related treatments
- Procedures targeting tissue responsiveness
- General vaginal tissue condition management
Note: Applications are based on device functionality and intended use. No specific outcomes are implied.
Technical Specifications
| Parameter | Specification |
|---|---|
| Laser Type | Carbon Dioxide Fractional Laser |
| Laser Wavelength | 10,600 nm |
| Laser Power | 30W – 60W (optional) |
| Light Delivery System | 7-joint articulated arm |
| Pulse Duration | 100 – 5000 µs |
| Spot Mode | Single mode |
| Beam Diameter (Focused) | 0.25 mm |
| Focal Area | 0.05 mm |
| Output Modes | Ultra Pulse, Fractional |
| Scanning Modes | Sequential, Random, Parallel (switchable) |
| Scanning Shapes | Triangle, square, rectangle, round, oval, hexagon, linear |
| Max Scanning Area | ≤ 20 mm × 20 mm |
| Display | 8.4-inch color touch screen |
| Cooling System | Air cooling + water cooling |
| Power Supply | AC 230V ±10%, 50Hz / AC 110V ±10%, 60Hz |
| Work Mode | Intermittent operation |
Key Features
- Adjustable fractional scanning patterns and shapes
- Dual cooling system (air and water) for device stability
- Multiple output modes for procedural flexibility
- High-precision beam control with small focal diameter
- Articulated arm system for accurate laser delivery
- Integrated user interface via color touch screen
What Does the System Include?
- CO₂ fractional laser main unit
- Articulated arm delivery system
- Touchscreen control interface
- Integrated cooling systems (air and water)
- Red light positioning guide
