Atomizing Device with Elastic Connecting Pieces
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Solution Overview
Problem
Existing atomizing equipment lacks a controlling component or circuit structure with excellent control effect, making it difficult to use with new types of atomizing components.
Innovation Solution
An atomizing device is designed with an atomizing component, a controlling component, and a battery component, featuring an induction coil, elastic connecting pieces, and conductive protrusions, along with a controlling chip and gas flow sensor, to provide precise control over the atomizing process.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a traditional heating coil atomizer is used, then the structure is simple, but the control effect is poor and cannot accommodate new atomizing components
Solution Approach 1:
The atomizing device is divided into distinct functional modules: atomizing component (with induction coil and atomizing piece), controlling component (with substrate, elastic connecting pieces, and conductive protrusions), and battery component. This segmentation allows each module to be independently designed and optimized, enabling compatibility with new atomizing components while maintaining overall system functionality.
Solution Approach 2:
The controlling component with its substrate, elastic connecting pieces, and conductive protrusions serves as a universal interface that can accommodate different types of atomizing components. The elastic connecting pieces provide both electrical connection and mechanical coupling, allowing the same controlling structure to work with various atomizing technologies including traditional heating coils and new induction-based components.
2Reliability
If elastic connecting pieces are used to connect components, then the electrical connection is reliable, but the manufacturing precision requirements increase
Solution Approach 1:
The elastic connecting pieces are designed with inherent elasticity to compensate for manufacturing tolerances and assembly variations. The elastic nature of these connecting pieces provides a cushioning effect that absorbs dimensional deviations, ensuring reliable electrical connection without requiring extremely tight manufacturing precision. This allows for practical manufacturing tolerances while maintaining connection reliability.
3Measurement precision
If a controlling component with multiple elements is added, then the control precision improves, but the device complexity increases
Solution Approach 1:
The controlling component integrates multiple functions into a single compact unit: the substrate provides structural support and mounting, the elastic connecting pieces provide both electrical connection and mechanical coupling, and the conductive protrusions establish electrical pathways. By merging these elements into one integrated controlling component rather than separate parts, the design achieves precise control of the atomizing process while minimizing overall device 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 device operates effectively and stably, allowing for accurate control of the atomizing process through electric current, enabling efficient and uniform atomization of fillers.
Implementation Method 1
The atomizing component includes an induction coil and an atomizing piece
Implementation Method 2
the atomizer can atomize the filler in the silo to simulate the smoke of traditional cigarettes
Implementation Method 3
The first elastic connecting piece is disposed on the first surface, wherein the first elastic connecting piece is electrically connected to the atomizing piece
Data Source
AI summary
The present disclosure provides an atomizing device comprising an atomizing component, a controlling component, and a battery component. The atomizing component comprises an induction coil and an atomizing piece. The controlling component is disposed on one side of the atomizing component, wherein the controlling component comprises a substrate, a first elastic connecting piece, a second elastic connecting piece, and a first conductive protrusion. The substrate has a first surface and a second surface. The first elastic connecting piece is disposed on the first surface, wherein the first elastic connecting piece is electrically connected to the atomizing piece. The second elastic connecting piece is disposed on the first surface, wherein the second elastic connecting piece is electrically connected to the induction coil. The first conductive protrusion is disposed on the second surface. The battery component is disposed on one side of the controlling component away from the atomizing component.


