Vaporizable Material Storage Device Power Adjustment via Detection Apparatus
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Solution Overview
Problem
Existing electronic vaporization devices lack the ability to provide varying power levels to vaporizable materials, limiting user experience and flavor intensity during vaping.
Innovation Solution
An electronic vaporization device with a vaporizable material storage device and a body that includes a processing circuit, power supply, and detection apparatus, where the power supply provides different electric power levels based on a power adjustment signal triggered by the detection apparatus, allowing for adjustable vaporization.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a fixed power supply is used to vaporize the vaporizable material, then the device structure is simple, but the user experience and flavor intensity are limited
Solution Approach 1:
The power supply mode is changed from fixed to dynamic adjustable. The detection apparatus detects connection states and triggers the processing circuit to adjust the power supply output, enabling the device to adapt to different vaping needs while maintaining a relatively simple overall structure.
Solution Approach 2:
The electrical parameter (power output) of the power supply is made variable based on detection signals. The processing circuit adjusts the power supply parameters in response to connection states detected by the detection apparatus, allowing flexible power adjustment without significantly increasing device complexity.
2Ease of operation
If the detection apparatus is added to detect connection states, then power adjustment is enabled, but the device complexity increases
Solution Approach 1:
The detection apparatus automatically detects the connection state between the vaporizable material storage device and the body, and triggers the processing circuit accordingly. This self-detecting mechanism eliminates the need for manual user input while providing enhanced user experience through automatic power adjustment.
Solution Approach 2:
The detection apparatus provides feedback about the connection state to the processing circuit, which then adjusts the power supply output based on this feedback. This closed-loop control system enables automatic adaptation to different connection states, improving ease of operation without requiring complex manual controls.
3Temperature
If different electric power levels are provided based on connection state, then flavor intensity and vapor production are enhanced, but the energy consumption increases
Solution Approach 1:
The vaporization temperature is dynamically adjusted based on the connection state detected by the detection apparatus. The processing circuit controls the power supply to provide different power levels, allowing the device to achieve higher temperatures for enhanced flavor when needed, while consuming more energy only during high-power operation rather than continuously.
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 users to customize their vaping experience by providing different electric power levels, enhancing flavor and vapor production, depending on the connection and interaction between the vaporizable material storage device and the electronic vaporization device body.
Implementation Method 1
the processing circuit controls the power supply to provide first electric power to the vaporizable material storage device to vaporize the vaporizable material
Data Source
AI summary
An electronic vaporization device including a vaporizable material storage device and a body is provided. The vaporizable material storage device stores a vaporizable material. The body detachably connects to the vaporizable material storage device. The body includes a processing circuit, a power supply, and a detection apparatus. The power supply electrically connects to the processing circuit, where the processing circuit controls the power supply to provide first electric power to the vaporizable material storage device to vaporize the vaporizable material. The detection apparatus electrically connects to the processing circuit. When the vaporizable material storage device triggers the detection apparatus, the detection apparatus provides a power adjustment signal to the processing circuit, where the processing circuit controls, in response to the power adjustment signal, the power supply to provide second electric power to the vaporizable material storage device, the second electric power being different from the first electric power.


