Hydrogen Rich Water Cup Wireless Power Integration
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Solution Overview
Problem
Current hydrogen rich water generation equipment is bulky, costly, and inconvenient to carry due to its complex structure and reliance on traditional power sources, limiting its widespread use.
Innovation Solution
A hydrogen rich water cup with an integrated wireless power socket and hydrogen rich water generation module, where the module is powered via wireless charging, simplifying the design, reducing manufacturing costs, and enhancing portability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional electrolysis equipment is used, then hydrogen production function is achieved, but the equipment becomes bulky and inconvenient to carry
Solution Approach 1:
The patent divides the traditional bulky electrolysis equipment into a compact integrated module that can be embedded within a water cup. The electrolysis function is segmented and integrated into a small-scale system with electrodes, power supply, and control components arranged in a compact configuration suitable for portable use.
Solution Approach 2:
The electrolysis module is nested within the water cup structure, with the hydrogen production components embedded inside the cup body. This nesting approach allows the equipment to be portable while maintaining the hydrogen production function, as the module fits within the existing cup form factor.
2Reliability
If complete set of electrolysis equipment is used, then hydrogen production capability is ensured, but manufacturing cost increases
Solution Approach 1:
The water cup is designed with multi-functionality, serving both as a drinking vessel and as a hydrogen production device. The cup structure itself becomes part of the electrolysis system, eliminating the need for separate equipment and reducing manufacturing costs while maintaining hydrogen production capability.
Solution Approach 2:
The patent merges the water cup and electrolysis equipment into a single integrated product. The cup body, lid, and internal components are combined to form a unified system that performs both drinking and hydrogen generation functions, simplifying manufacturing and reducing overall cost.
3Device complexity
If wireless power socket is integrated, then structure is simplified and cost reduced, but power connection stability must be maintained
Solution Approach 1:
The patent replaces traditional mechanical power connections (plugs and sockets requiring physical insertion) with a wireless power transmission system. This substitution simplifies the structure by eliminating mechanical connection components while maintaining reliable power delivery through electromagnetic field-based wireless charging technology.
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 solution provides a cost-effective, portable, and aesthetically pleasing hydrogen rich water cup that is easier to use and manufacture, facilitating broader application by integrating wireless charging technology and stabilizing the power connection.
Implementation Method 1
powered by a wireless power socket
Implementation Method 2
Direct current electrolysis hydrogen production (hereinafter referred to as strong electrolysis hydrogen production) technology uses precious metals such as platinum (or ruthenium iridium coating) as electrode materials, and uses direct current to conduct strong electrolysis of water to produce hydrogen
Data Source
AI summary
A convenient hydrogen rich water cup includes a water cup body, wherein the bottom of the water cup body is equipped with a built-in slot, wherein a wireless power socket is embedded. The water cup body is internally equipped with a hydrogen rich water generation module, which is electrically connected to the wireless power socket. This invention patent provides power to the hydrogen rich water generation module through a wireless power socket, simplifying the structure of the hydrogen rich water cup, and can adapt to the currently popular wireless charger to power it, greatly reducing its manufacturing cost and making it convenient to carry and use, which is conducive to the widespread application of the product. Moreover, using the embedded slot to fix the wireless power socket can improve the connection stability between the wireless power socket and the water cup body, making the product performance more stable and durable.


