Rechargeable Wall Lamp Placement Flexibility
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Solution Overview
Problem
Existing wall lamps are limited by the distribution of sockets, restricting their flexible placement and use.
Innovation Solution
A rechargeable wall lamp design that incorporates a rechargeable battery as a power source, allowing for flexible placement without reliance on socket positions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If wall lamps are connected to sockets for power supply, then stable power is provided, but placement flexibility is limited by socket distribution
Solution Approach 1:
The patent extracts the power supply function from the fixed socket infrastructure and relocates it into a portable rechargeable battery integrated within the wall lamp itself. This allows the lamp to operate independently without being constrained by socket locations, directly resolving the placement flexibility limitation while maintaining stable power through the battery's rechargeable capacity.
2Adaptability or versatility
If rechargeable battery is used as power supply, then placement flexibility is improved, but device complexity increases
Solution Approach 1:
The wall lamp is designed with multi-functionality by integrating both lighting and rechargeable battery power supply functions into a single device. The battery serves dual purposes: providing portable power for flexible placement and enabling repeated recharging through the charging socket interface. This universal design approach manages device complexity by consolidating functions rather than adding separate systems.
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 the rechargeable wall lamp to be placed flexibly without being limited by socket positions, providing enhanced usability and installation options.
Implementation Method 1
a rechargeable battery, connected to a circuit board
Implementation Method 2
a light emitting component, provided on one side of the carrier plate facing a notch of the translucent recess
Data Source
AI summary
A rechargeable wall lamp is provided, which includes a front shell, a rear cover, a rechargeable battery, a carrier plate, a light emitting component, and a circuit board; an interior of the front shell includes an accommodation space, a front side of the front shell is provided with a translucent recess, a bottom of the translucent recess is hollowed out to communicate with the accommodation space, the rear cover is fixed to a rear side of the front shell to cover the accommodation space; the carrier plate is fixed to the front shell and located in a bottom hollow area of the translucent recess. The light emitting component is provided on one side of the carrier plate facing a notch of the translucent recess. The rechargeable battery and the circuit board are provided in the accommodation space. The rechargeable battery is connected to the circuit board.


