Composite Fat Decomposition Device with Layered Stimuli
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Solution Overview
Problem
Current non-invasive fat decomposition methods require multiple devices to effectively target all skin layers, including the epidermis, dermis, and hypodermis, making them cumbersome, costly, and time-consuming.
Innovation Solution
A composite compact-type device integrating an LED, a laser tube, and an RF plate, controlled by a mode selector and alternating controllers to selectively and efficiently apply stimuli across skin layers, with temperature sensors for safety and spiral grooves to prevent device twisting.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If separate devices are used for each skin layer (epidermis, dermis, hypodermis), then fat decomposition effectiveness is improved, but device complexity and treatment time increase
Solution Approach 1:
The patent combines three separate optical devices (LED device for epidermis, laser device for dermis, and RF device for hypodermis) into a single integrated fat decomposition device. This merging allows the device to decompose fat in all skin layers simultaneously, improving effectiveness while reducing the number of devices needed from three to one.
Solution Approach 2:
The integrated device performs multiple functions by incorporating different optical components that target different skin layers. The LED module handles epidermal fat, the laser module handles dermal fat, and the RF module handles hypodermal fat, making a single device universal for treating all skin layers.
2Reliability
If multiple devices are used for complete skin layer coverage, then treatment completeness is improved, but treatment time and cost increase
Solution Approach 1:
By merging multiple device functions into one integrated system, the treatment process is streamlined. The device can address all skin layers in a single treatment session rather than requiring sequential treatment with separate devices, thereby reducing overall treatment time while maintaining completeness.
Solution Approach 2:
The integrated device enables continuous treatment across all skin layers simultaneously, rather than requiring intermittent switching between different devices. The controller coordinates the operation of LED, laser, and RF modules to maintain continuous and comprehensive fat decomposition action throughout the treatment process.
3Productivity
If high intensity light is applied to decompose fat, then decomposition efficiency is improved, but risk of skin damage increases
Solution Approach 1:
The device applies different wavelengths and intensities of light tailored to specific skin layers. The LED module uses wavelengths suitable for epidermal fat, the laser module uses wavelengths for dermal fat, and the RF module provides controlled thermal energy for hypodermal fat. This localized optimization ensures efficient decomposition while minimizing damage risk in each specific layer.
Solution Approach 2:
The controller coordinates the operation of different modules to apply energy in a controlled manner, allowing for feedback-based adjustment of treatment parameters to optimize decomposition efficiency while preventing skin damage.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables efficient fat decomposition in all skin layers with a single device, improving treatment efficiency and safety by alternating stimuli and preventing overheating, while preventing device twisting.
Implementation Method 1
a beam radiated from the LEDs decomposes fat in the epidermis of the skin
Implementation Method 2
a beam radiated from the laser tube decomposes fat in the dermis of the skin
Implementation Method 3
the high frequency generated by the RF plate decomposes fat in the hypodermis of the skin
Data Source
AI summary
The present invention relates to a composite compact-type fat decomposition device, which is characterized in that fat in the epidermis of the skin is decomposed by a beam radiated from LEDs (310), fat in the dermis of the skin is decomposed by a beam radiated from a laser tube (100), and fat in the hypodermis of the skin is decomposed by a high frequency generated by an RF plate. The present invention includes: a handle (200) having a laser tube (100) therein and providing a grip; a rubber tab (230) coupled to a first end of the handle and protecting a power line; a ring-shaped LED PCB (300) coupled to a second end of the handle and equipped with LEDs (310); an RF plate support (400) having the LED PCB (300) on a first side and an RF plate (410) on a second side; the RF plate (410) decomposing fat by generating a high frequency; and a controller (500) controlling operations of the LEDs (310), the laser tube (100), and the RF plate (410), in which a beam radiated from the LEDs (310) decomposes fat in the epidermis of the skin, a beam radiated from the laser tube decomposes fat in the dermis of the skin, and the high frequency generated by the RF plate (410) decomposes fat in the hypodermis of the skin.


