Two-in-one wall lamp with segmented cavities for adjustable light angles
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current wall lamps have limited light output angles and fixed color temperature and power settings, making them unsuitable for various applications and venues, and require additional functional components for light sensing, which are inconvenient to use.
Innovation Solution
A two-in-one wall lamp design featuring a lamp body with two accommodating cavities for different lamp panels, a full cut-off lens, and a half cut-off lampshade, along with integrated function control panels for switching color temperature, angle lighting, power, and light sensing, allowing for flexible light output and energy management.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a single lamp panel is used in traditional wall lamps, then the structure is simple, but the light output angle is limited and cannot meet different venue requirements
Solution Approach 1:
The wall lamp is divided into two separate accommodating cavities (first and second accommodating cavities), each housing a独立的 lamp panel (first lamp panel and second lamp panel). This segmentation allows each lamp panel to provide light at different angles independently, with the first lamp panel providing downward light and the second lamp panel providing forward-downward light, thereby meeting diverse lighting angle requirements without excessive structural complexity.
Solution Approach 2:
The lamp body is designed with multi-functionality by integrating two different lighting functions into one device. The first lamp panel with full cut-off lens provides one lighting angle, while the second lamp panel with half cut-off lampshade provides another lighting angle, making the wall lamp universally applicable to different venues and lighting needs.
2Adaptability or versatility
If traditional wall lamps use fixed color temperature and power settings, then the manufacturing is simple, but the lamp cannot be flexibly switched for different applications
Solution Approach 1:
The wall lamp incorporates dynamic control capabilities by integrating control circuits that allow flexible switching of color temperature and power settings. The first and second lamp panels can be independently controlled to adjust color temperature and power output, enabling the lamp to adapt to different application scenarios such as reading, ambient lighting, or energy-saving modes.
Solution Approach 2:
The lamp enables parameter changes by allowing users to adjust color temperature and power levels of the lamp panels. The control system permits switching between different color temperatures (e.g., warm white, cool white) and power levels, providing flexibility for different venues and applications while maintaining manageable device complexity through integrated control circuits.
3Ease of operation
If additional functional components are added for light sensing in traditional wall lamps, then the lighting control capability is improved, but the device becomes more complex and inconvenient to use
Solution Approach 1:
The wall lamp merges the light sensing function with the existing control circuits by integrating photosensitive sensors into the control system. This combination allows the lamp to automatically sense ambient light levels and adjust its operation accordingly, providing convenient lighting control without adding separate, complex functional components. The integrated approach maintains ease of operation while avoiding excessive device complexity.
Data Source
AI summary
A two-in-one wall lamp is disclosed, including a lamp body, a first lamp panel, a second lamp panel, a lens, and a lampshade. Bottom of the lamp body is configured with a first accommodating cavity having an opening downward, and the first accommodating cavity has a horizontal plane facing downward. A front side of the lamp body is configured with a second accommodating cavity having an opening forward, and the second accommodating cavity has an inclined plane facing lower forward. The first lamp panel is affixed to the horizontal plane for fixation and also located in the first accommodating cavity, and the second lamp panel is affixed to the inclined plane for fixation and also located in the second accommodating cavity. The two-in-one wall lamp can switch different angles of light output, which not only easy to operate and use, but also to meet lighting angle requirements.


