V-MAX Pencilbeam is a HIFU-based facial and body lifting device, equipped with a 3.0mm and 4.5mm depth facial handpiece, and a 9.0mm depth body handpiece (optional).
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HIFU handpiece
It is composed of a 3.0mm and 4.5mm depth facial handpiece and a 9.0mm depth body handpiece (optional), allowing it to cover both the dermis and fat layers.
Additionally, the pen-type design allows for precise treatments, even in localized areas.
· HIFU (High-Intensity Focused Ultrasound)
HIFU refers to a technology that focuses ultrasound energy in one point and uses high heat of 65 to 100 degrees Celsius generated at the focus to burn tissue. In aesthetic medicine, the target is the SMAS and fat layer.
The main purpose of using HIFU is facial lifting and fat decomposition.
· Pencil Beam Technology
V-MAX Pencilbeam emits enormous energy to deliver ultrasonic cohesive energy in a real linear method.
Compared to the like linear method that switches (On & Off) according to frequency, V-MAX Pencilbeam with higher output is required, which means shortening the treatment time and maximizing the treatment effect.
· 18,000 minutes of treatment with a single handpiece
The water circulation structure inside the handpiece relieves the heat generated during transducer vibrations.
This water cooling design maintains the performance of the transducer even during extended use.
Therefore, the handpiece can be used for a long duration without the need for cartridge replacement.
02
V-MAX Pencilbeam is Real Lineal HIFU
Compared to the like linear method that switches (On & Off) according to frequency,
V-MAX Pencilbeam with higher output is required, which means shortening the treatment
time and maximizing the treatment effect.
Like Linear
General HIFU
rEAL Linear
V-MAX Pencilbeam HIFU
User Interface
Through the convenient UI,
you can easily select desired treatment parameters such as intensity and time.
Feature
Semi permanent use of handpiece with cooling water circulation system.
Pen-type handpiece design allows for thorough treatment of local areas.
Maximized treatment effect by applying Real Linier method.