Microphone Speaker Dazzle Lamp Dual-Lampshade Light Mixing
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Solution Overview
Problem
Existing microphone speakers with LED dazzle lamps suffer from glaring lighting effects due to direct penetration of light through the lampshade, leading to unsatisfactory mixing of light from adjacent LED chips, failing to meet user and market requirements for a better rendering effect.
Innovation Solution
A dazzle lamp structure featuring a white semi-transparent inner lampshade and a dark transparent outer lampshade, which shields strong lights and absorbs dim light, allowing each LED chip's lighting effect to be clearly visible by preventing light mixing, while the LED lamp panel is annular and surrounds the mounting base, with specific flanges and inserts for secure positioning.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Area of stationary object
If LED chips are arranged closely together to improve lighting coverage, then the lighting coverage is improved, but the lights from adjacent LED chips mix together causing unsatisfactory lighting rendering effect
Solution Approach 1:
The patent introduces a lampshade as an intermediary component between the LED chips and the external environment. The lampshade with specific optical properties (transparency, translucency, or transparency in certain areas) mediates the light transmission, allowing light from closely spaced LED chips to be individually distinguishable while maintaining good lighting coverage. This resolves the contradiction by using the lampshade to prevent light mixing while still allowing close LED arrangement.
2Illumination intensity
If LED chips emit strong light to improve visibility, then the visibility is improved, but the strong light causes glaring effect that is uncomfortable for eyes
Solution Approach 1:
The patent utilizes changes in optical properties of the lampshade material to control light transmission. By selecting materials with specific transparency, translucency, or selective transparency characteristics, the lampshade modifies the intensity and distribution of light reaching the observer. This allows strong LED emission to be softened into comfortable, non-glaring illumination while maintaining adequate visibility, directly addressing the contradiction between visibility and glare prevention.
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 solution effectively shields strong lights and enhances the clarity of each LED chip's lighting effect, resulting in a better rendering effect that meets user and market requirements.
Implementation Method 1
a white semi-transparent inner lampshade is disposed at the top of the shell and covers the LED lamp panel... the inner lampshade 6, which is a white semi-transparent lampshade and can shield strong lights
Implementation Method 2
the outer lampshade in a dark color can absorb one part of dim lights around the LED chips, so that mixing of the dim lights emitted by the adjacent LED chips is avoided
Data Source
AI summary
A dazzle lamp structure of a microphone speaker comprises a shell, a mounting base, a microphone, a microphone cover, and an LED lamp panel, wherein multiple LED chips are disposed on the LED lamp panel, a white semi-transparent inner lampshade is disposed at the top of the shell and covers the LED lamp panel, the top of the inner lampshade is covered with a dark transparent outer lampshade, and lights emitted by the LED chips sequentially penetrate through the inner lampshade and the outer lampshade to shine out. The dazzle lamp structure can shield strong lights and has a better lighting rendering effect.


