Rotating Wireless Charging Base for Multi-Device Auto Positioning
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Solution Overview
Problem
Existing wireless charging devices are limited to charging a single electronic device and lack versatility to meet diverse user needs.
Innovation Solution
An electric wireless charging device with a rotating charging base and a driving component that allows for the charging of multiple electronic devices by automatically positioning the charging base for optimal placement, utilizing a driving shaft and body to rotate the base and toothed parts for independent movement of charging components.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a wireless charging device charges only one electronic device, then the device structure remains simple, but the functionality and versatility are limited
Solution Approach 1:
The charging dock is designed with multiple charging parts (first charging part and second charging part) that can simultaneously charge different types of electronic devices such as mobile phones and wireless earphones, transforming a single-function device into a multi-functional charging station
2Ease of operation
If manual adjustment is required for charging base positioning, then device structure remains simple, but user operation convenience deteriorates
Solution Approach 1:
The charging base is transformed from a static structure to a dynamic one by adding a rotating mechanism driven by a driving component, allowing the charging base to automatically rotate and position itself according to the type of electronic device being charged, thereby improving ease of operation
Solution Approach 2:
The driving component automatically determines the charging device type and rotates the charging base to the appropriate position without requiring manual intervention from the user, making the system self-serving and improving operational convenience
3Adaptability or versatility
If multiple charging parts are added to the charging dock, then charging versatility improves, but device complexity increases
Solution Approach 1:
The charging dock is segmented into multiple independent charging parts (first charging part for mobile phones, second charging part for wireless earphones), each capable of charging different device types simultaneously, thereby improving versatility while maintaining modular structure
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
Enhances the functionality of wireless charging by enabling the simultaneous charging of different electronic devices without manual adjustment, improving user convenience and reducing manufacturing costs through automated positioning and reduced manual intervention.
Implementation Method 1
the driving body is rotatably connected with the driving shaft, and the rotation of the driving body relative to the driving shaft is suitable for driving the rotating charging base to rotate
Implementation Method 2
A wireless charging device achieves wireless transmission of electric energy by using electromagnetic induction, magnetic resonance, or electric field coupling
Implementation Method 3
A wireless charging device achieves wireless transmission of electric energy by using electromagnetic induction, magnetic resonance, or electric field coupling
Implementation Method 4
A wireless charging device achieves wireless transmission of electric energy by using electromagnetic induction, magnetic resonance, or electric field coupling
Data Source
AI summary
Provided is an electric wireless charging device, including a charging dock, a rotating charging base, and a first driving component. The first driving component includes a driving body and a driving shaft; the driving shaft is connected with the charging dock, and the driving body is connected with the rotating charging base; and the driving body is rotatably connected with the driving shaft, and the rotation of the driving body relative to the driving shaft is suitable for driving the rotating charging base to rotate. In this way, the electric wireless charging device may charge different electronic devices respectively through the charging dock and the rotating charging base. Furthermore, the driving body may drive the rotating charging base to rotate, whereby the rotating charging base may rotate automatically to an appropriate position, which is convenient for a user to place the electronic device in an appropriate position for charging.


