Integrated Charging Lamp Housing With Partitioned Heat Dissipation
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Solution Overview
Problem
Existing outdoor mobile lighting solutions for camping do not provide wireless charging capabilities, leading to battery life issues in smartphones when users forget or lose charging cables.
Innovation Solution
An electronic device with a housing containing separate accommodating grooves for a wireless charging module and a lighting module, along with heat dissipation holes for thermal management, allowing for simultaneous lighting and wireless charging.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a lighting lamp is added to the outdoor mobile power supply, then the lighting function is improved, but the device complexity increases
Solution Approach 1:
The patent combines the lighting module and wireless charging module into a single integrated electronic device housing, merging multiple functions (lighting, wireless charging, and smartphone charging) into one unit. This reduces overall system complexity compared to having separate devices for each function.
Solution Approach 2:
The electronic device is designed with multi-functionality, serving as both a mobile power supply and a lighting device. The housing accommodates multiple modules that provide different functions (lighting, wireless charging, cable charging), making the device universally applicable for various outdoor needs.
2Adaptability or versatility
If wireless charging module and lighting module are placed in the same housing, then the versatility is improved, but the heat dissipation becomes more difficult
Solution Approach 1:
The housing is divided into multiple independent accommodating grooves (first accommodating groove for wireless charging module, second accommodating groove for lighting module, third accommodating groove for cable charging module). This segmentation physically separates heat-generating components, allowing each module to dissipate heat independently through dedicated heat dissipation holes, thus managing thermal loads effectively while maintaining versatility.
3Adaptability or versatility
If multiple modules are integrated in separate accommodating grooves, then the functionality is improved, but the manufacturing complexity increases
Solution Approach 1:
The housing is designed with separate accommodating grooves for each module, which can be manufactured as independent components and then assembled into the final device. This modular approach allows for specialized manufacturing of each module using optimal processes while simplifying the overall assembly process, balancing functionality with ease of manufacture.
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 effectively extends smartphone battery life by enabling wireless charging and improves the service life of the electronic device through efficient heat dissipation.
Implementation Method 1
A heat dissipation hole is opened along the outer circumference of the housing, and connected with the first accommodating groove and/or the second accommodating groove... it plays a role in heat dissipation, which is conducive to discharging the heat generated when the lighting module and the wireless charging module are working
Implementation Method 2
A heat dissipation hole is opened along the outer circumference of the housing, and connected with the first accommodating groove and/or the second accommodating groove... discharging the heat generated when the lighting module and the wireless charging module are working
Data Source
AI summary
An electronic device includes a housing, a wireless charging module and a lighting module. The housing has an accommodating cavity open at both ends and is provided with a partition. The partition separates the accommodating cavity to form a first accommodating groove and a second accommodating groove; the wireless charging module is arranged in the first accommodating groove; and the lighting module is arranged in the second accommodating groove; wherein, a heat dissipation hole is opened along the outer circumference of the housing, and connected with the first accommodating groove and/or the second accommodating groove.


