Automatic Vapor Atomizer with Sensor-Triggered Blowing Mechanism
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Solution Overview
Problem
Existing electronic atomizers require user inhalation to initiate operation and draw out the generated vapor, limiting their convenience and versatility.
Innovation Solution
An automatic vapor-emitting electronic atomizer is designed with a housing, atomization device, blowing device, cover, and sensor switch, allowing for automatic vapor delivery without user inhalation. The sensor switch activates the atomization and blowing devices when the cover is opened, exposing the vapor outlet.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If user inhalation is required to initiate operation and draw out vapor, then the device structure can be simplified, but the ease of operation and user convenience deteriorates
Solution Approach 1:
The blowing device performs preliminary action by automatically blowing gas through the atomization device and out the vapor outlet when the cover is opened, eliminating the need for user inhalation to initiate vapor delivery. This preliminary gas flow preparation enhances ease of operation.
Solution Approach 2:
The device serves itself by using the sensor switch to detect cover opening and automatically activating the blowing and atomization devices. The system performs its own vapor delivery function without requiring user inhalation action, improving convenience.
2Ease of operation
If automatic vapor emission is implemented, then the ease of operation improves, but the device complexity increases
Solution Approach 1:
The device is segmented into distinct functional modules: sensor switch for detection, blowing device for gas flow, atomization device for vapor generation, and cover for control. This modular segmentation manages complexity by organizing functions into separate, manageable components.
Solution Approach 2:
The blowing device serves multiple functions: it blows gas through the atomization device, carries vapor out through the vapor outlet, and responds to sensor trigger. This multi-functionality reduces the need for additional dedicated components, managing overall device complexity.
3Productivity
If a blowing device is added to blow vapor automatically, then the productivity improves, but the device complexity increases
Solution Approach 1:
The blowing device performs preliminary action by pre-establishing gas flow through the atomization device before and during vapor generation. This ensures immediate and efficient vapor delivery when needed, enhancing productivity.
Solution Approach 2:
The blowing device maintains continuous gas flow through the atomization device and vapor outlet during operation, ensuring uninterrupted vapor delivery. This continuous action improves productivity by eliminating delays between activation and vapor emission.
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 electronic atomizer enables convenient and automatic vapor emission, enhancing user experience and expanding its applications beyond traditional inhalation methods.
Implementation Method 1
The sensor switch includes a first sensing component, and a second sensing component that are cooperated with each other. The first sensing component is disposed on the cover, the second sensing component is disposed on the housing
Implementation Method 2
An electronic atomizer is a device that generates vapor by heating chemicals or other substances
Implementation Method 3
The blowing device is disposed on one side of the second air inlet, and configured to direct gas entering the housing via the first air inlet towards the atomization device through the second air inlet
Data Source
AI summary
An electronic atomizer includes a housing, an atomization device, a blowing device, a cover, and a sensor switch. The housing defines a second vapor outlet and a first air inlet. The atomization device is disposed within the housing, and defines a first vapor outlet, and a second air inlet. The first vapor outlet is communicated with the first vapor outlet. The blowing device is disposed on one side of the second air inlet, the blowing device is configured to direct gas entering the housing via the first air inlet towards the atomization device through the second air inlet. The cover is disposed on the housing. The sensor switch includes a first sensing component, and a second sensing component. The first sensing component is mounted on the cover, the second sensing component is mounted on the housing and is electrically connected to both the atomization device and the blowing device.


