Integrated Atomization Module With Health and Gas Sensing
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Solution Overview
Problem
Existing atomization devices are limited to a single function, lacking diversity in functionality, which results in a poor user experience.
Innovation Solution
A multifunctional atomization device integrating a housing, atomization module, and an integrated module with blood oxygen, heart rate, and gas composition detection units, along with a conductive heating system, to provide versatile functionalities including atomization, blood oxygen detection, heart rate monitoring, and gas composition analysis.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If multiple detection units are integrated into the atomization device, then functional diversity is improved, but device complexity increases
Solution Approach 1:
The patent integrates blood oxygen detection unit, heart rate detection unit, and gas composition detection unit into a single integrated module that is disposed within the atomization cavity. This merging of multiple detection functions into one module adds versatility while managing structural complexity through unified design.
Solution Approach 2:
The atomization device is designed to perform multiple functions: atomization of liquid, blood oxygen detection, heart rate monitoring, and gas composition analysis. The integrated module enables the device to serve as both an atomizer and a health monitoring station, achieving multi-functionality.
2Volume of stationary object
If detection units are integrated into the atomization cavity, then space utilization is improved, but manufacturing complexity increases
Solution Approach 1:
The integrated module containing multiple detection units is nested within the atomization cavity, which itself is contained within the housing. This nested arrangement maximizes space utilization by placing components within existing structural voids rather than adding external attachments.
Solution Approach 2:
The device is segmented into distinct functional modules: the atomization module with liquid infiltration member and conductive heating line, and the integrated detection module. This segmentation allows for specialized manufacturing of each module that can then be assembled together, managing manufacturing complexity.
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 multifunctional device enhances user experience by offering diverse functionalities, ensuring personal safety through gas composition monitoring and timely health condition awareness, thereby improving usability and versatility.
Implementation Method 1
a conductive heating structure (222) disposed on the liquid infiltration member (21)... one end of the first electrode (221) is electrically connected to one end of the conductive heating structure (222)
Implementation Method 2
The atomization module is disposed within the atomization cavity and is configured to atomize the atomized liquid
Data Source
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AI summary
Provided is a multifunctional atomization device. The multifunctional atomization device includes a housing (1), an atomization module (2) and an integrated module (3). The housing (1) is provided with a storage cavity (13) and an atomization cavity (14), an end of the atomization cavity (14) is provided with an air outlet (121) communicating with an exterior of the housing (1), the housing (1) is further provided with a gas channel (15), one end of the gas channel (15) communicates with the exterior of the housing (1), and another end of the gas channel (15) communicates with the atomization cavity (14). The atomization module (2) is disposed within the atomization cavity (14). The integrated module (3) is disposed within the atomization cavity (14), and a blood oxygen detection unit, a heart rate detection unit and a gas composition detection unit are integrated on the integrated module (3).