Rotatable Lamp Arm with Detachable Light for Adjustable Height
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Solution Overview
Problem
Current lamp devices for displays lack adjustability in lighting height and are inconvenient for portability, as they are typically fixed and not easily carried.
Innovation Solution
A lamp device with a rotatable arm component and a detachable light component that can be adjusted to different heights and positions, including a magnetic attraction module for easy storage, allowing for multiple use states and convenient portability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If the lamp device uses a fixed structure, then the structure is simple, but the lighting height cannot be adjusted
Solution Approach 1:
The lamp arm component is designed to be rotatable relative to the lamp main body, allowing the lighting height to be adjusted dynamically. The rotation mechanism enables the lamp light component to move between different positions (first position for first height, second position for second height) while maintaining structural simplicity through controlled mobility rather than fixed rigidity.
2Ease of operation
If the lamp device is fixed and non-portable, then the stability is high, but the portability is poor
Solution Approach 1:
The lamp device is divided into separable components: the lamp main body and the lamp light component connected via the rotatable lamp arm. This segmentation allows the device to be disassembled for easy portability while maintaining stability when assembled for use. The magnetic attraction module further enables easy attachment and detachment of the lamp light component, facilitating portability without compromising operational stability.
3Adaptability or versatility
If the lamp light component is fixed on the lamp arm, then the structure is simple, but the adaptability to different use scenarios is limited
Solution Approach 1:
The lamp light component is detachably connected to the lamp arm component, allowing it to be removed and reattached. This dynamic connection enables the lamp light component to be positioned at different locations (first position, second position, or detached completely) to adapt to various use scenarios such as different lighting heights or portable storage, while the magnetic attraction module simplifies the connection mechanism.
4Ease of operation
If the lamp device lacks a storage mechanism, then the structure is simpler, but the convenience for portability is reduced
Solution Approach 1:
The magnetic attraction module enables the lamp light component to be automatically attracted to and held by the lamp main body when not in use, providing self-service storage functionality. This simple magnetic mechanism eliminates the need for complex storage structures while enhancing portability convenience, as the components naturally organize themselves during storage without requiring additional mechanical fasteners or storage compartments.
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 lamp device provides adjustable lighting heights and convenient portability by allowing the light component to be easily switched between different use states and stored when not in use, meeting user needs for various lighting scenarios.
Implementation Method 1
the lamp light component is detached from the lamp arm component and then is attracted to the lamp main body, so that the lamp device presents a storage state, wherein the lamp light component and the lamp main body respectively include a magnetic attraction module
Data Source
AI summary
A lamp device applicable to a display includes a lamp main body, a lamp arm component, a lamp light component and a fixing base. The fixing base is arranged on the back surface of the display, so that the lamp main body can be positioned on the fixing base to be arranged on the back surface. When the lamp arm component is rotated to the first position relative to the lamp main body, the lamp light component has a first height relative to the display, so that a first use state is provided. When the lamp arm component is rotated to the second position relative to the lamp main body, the lamp light component can be detached from the lamp arm component and then reversely installed thereon. The lamp light component has a second height different relative to the display, so that a second use state is provided.


