Modular Plasma Generator With Detachable Control And Supply Modules
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Solution Overview
Problem
Conventional plasma generating devices are hindered by the large size and limited portability of gas bombs, making them difficult to carry and use effectively in various settings.
Innovation Solution
A compact plasma generating device with a detachable and attachable control module and supply module, featuring a small gas bomb and a mounting guide member for pressure regulation, allowing for button control or dial control modes depending on the connection configuration, enhancing portability and usability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a general gas bombe is used to supply gas for plasma generation, then plasma generation function is achieved, but the device size becomes large and portability is reduced
Solution Approach 1:
The device is divided into separate modules: a supply module containing the gas bombe, a control module, and a handset. This segmentation allows the gas bombe to be compact while maintaining functionality, as each module can be optimized independently for its specific function.
Solution Approach 2:
The control module and supply module can be detachably connected or separated, allowing the device configuration to dynamically adapt to different usage scenarios. This enables portability when modules are separated and functional completeness when connected.
2Adaptability or versatility
If the control module and supply module are detachably connected, then portability and adaptability are improved, but control precision and gas flow management become more complex
Solution Approach 1:
The control module is designed to function in multiple modes: it can control gas flow when connected to the supply module, or operate independently when the modules are separated. The pressure regulating member and display member provide universal functionality across different connection configurations.
Solution Approach 2:
The supply module includes a pressure regulating member and display member that automatically monitor and regulate gas pressure from the gas bombe. This self-regulating mechanism reduces the complexity of external control systems while maintaining precise gas flow management.
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
The device provides improved portability and convenience by allowing for easy attachment and detachment of modules, enabling precise control over plasma flow and intensity, and reducing the device's size while maintaining structural stability and ease of use.
Implementation Method 1
a first electrode 30 with a hollow disposed on the other side of the insulator 10, that penetrates the insulator 10 to communicate with the gas injection tube 20 and receive electric current, a second electrode 40 disposed on the other side of the insulator 10, that holds the first electrode 30 inside, has a spray hole at a position corresponding to a front end of the first electrode 30, and is grounded to generate plasma by interacting with the first electrode 30
Data Source
AI summary
A plasma generating device includes: a supply module for supplying gas; a handset for generating plasma from the supplied gas; and a control module attachable to or detachable from the supply module, wherein the plasma generating device switches to a button control mode or a dial control mode depending on the manner in which the handset is connected to the control module and the supply module.


