Vibration type self-generating LED lamp
A LED lamp and self-generating technology, which is applied to electronic lighting with built-in generators, electric light sources, etc., can solve problems such as difficult identification and driving of light-emitting devices, limited application range, and complex structure, etc., to achieve The effect of expanding the application range, compact structure, and reducing loss
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0023] refer to Figure 1-Figure 3 As shown, a vibrating self-generating LED lamp includes a power generating component 1 and an integrated light emitting component 2. The power generating component 1 is connected to the integrated light emitting component 2. The power generating component 1 includes a housing 11, an electromagnetic induction Coil 12, permanent magnet 13, micro-electric energy collection and release module 14. The housing 11 includes an upper housing 111 and a lower housing 112 that are relatively connected. The lower housing 112 is provided with a coil seat 1121, and the coil seat 1121 encloses the active chamber 3 and the upper housing 111. A coil protection cavity 4 is formed between the inner walls, and the electromagnetic induction coil 12 is arranged in the coil protection cavity 4 and tightly wound outside the coil seat 1121 . The permanent magnet 13 includes a first permanent magnet 131 and a second permanent magnet 132, the first permanent magnet 131...
Embodiment 2
[0028] refer to Figure 4 As shown, a vibrating self-generating LED lamp includes a power generation component 1 and a wire-connected light-emitting component 2. The power generation component 1 is connected to the wire-connected light-emitting component 2. The power generation component 1 includes a housing 11, Electromagnetic induction coil 12, permanent magnet 13, and micro-electric energy collection and release module 14. The housing 11 includes an upper housing 111 and a lower housing 112 that are relatively connected. The lower housing 112 is provided with a coil seat 1121, and the coil seat 1121 encloses the active chamber 3 and the upper housing 111. A coil protection cavity 4 is formed between the inner walls, and the electromagnetic induction coil 12 is arranged in the coil protection cavity 4 and tightly wound outside the coil seat 1121 . The permanent magnet 13 includes a first permanent magnet 131 and a second permanent magnet 132, the first permanent magnet 131 ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


