Shoe light device capable of flashing in different modes and driving method thereof
US-12035442-B2 · Jul 9, 2024 · US
US2021396366A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2021396366-A1 |
| Application number | US-201917288195-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 6, 2019 |
| Priority date | Nov 20, 2018 |
| Publication date | Dec 23, 2021 |
| Grant date | — |
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To improve design of a lighting device. A lighting device includes optically transparent glass plates provided on side faces and placed on an optical path of light emitted from a light source, where some or all of the optically transparent glass plates contain an optically transparent battery adapted to drive the light source; and an optically transparent glass plate that contains a transparent conductive film by being provided on a bottom face, wherein the optically transparent battery is placed in contact with a pair of transparent conductive film layers, which are connected to the light source. The pair of transparent conductive film layers are formed in a pair of parallel linear grooves formed in a surface of the optically transparent glass plate on the bottom face, and a tabular positive tab and negative tab of the optically transparent battery fit in respective ones of the pair of grooves.
Opening claim text (preview).
1 . A lighting device comprising an optically transparent lamp frame that is placed on an optical path of light emitted from a light source and contains an optically transparent battery in part or all of the lamp frame, where the battery drives the light source. 2 . The lighting device according to claim 1 , further comprising a conductive film-coated lamp frame including a transparent conductive film, wherein the optically transparent battery is placed in contact with the transparent conductive film, and the transparent conductive film is connected to the light source. 3 . The lighting device according to claim 2 , wherein: the transparent conductive film is formed in a pair of linear grooves formed in parallel in a surface of the conductive film-coated lamp frame; and the optically transparent battery has a tabular shape and a tabular positive terminal and a tabular negative terminal protrude from a same side of the optically transparent battery and fit in respective ones of the pair of grooves. 4 . The lighting device according to claim 2 , wherein: the transparent conductive film is formed in a pair of grooves formed in parallel in a surface of the conductive film-coated lamp frame, the pair of grooves drawing n-sided polygons (n is an integer equal to or larger than 3); and there are n optically transparent batteries, each of which has a tabular shape, and a tabular positive terminal and a tabular negative terminal protrude from a same side of each of the optically transparent batteries, and fit in respective ones of the pair of grooves, forming an n-sided polygonal prism. 5 . The lighting device according to claim 4 , wherein of the n optically transparent batteries, all positive terminals are fitted in one of the pair of grooves and all negative terminals are fitted in another one of the pair of grooves, or the positive terminals and the negative terminals alternate grooves to fit in. 6 . The lighting device according to claim 2 , wherein there are n optically transparent batteries (n is an integer equal to or larger than 3), which make up side faces of the lighting device; and the conductive film-coated lamp frame is an n-sided polygon, making up a bottom face of the lighting device. 7 . The lighting device according to claim 1 , wherein the optically transparent lamp frame is made of glass. 8 . The lighting device according to claim 3 , wherein there are n optically transparent batteries (n is an integer equal to or larger than 3), which make up side faces of the lighting device; and the conductive film-coated lamp frame is an n-sided polygon, making up a bottom face of the lighting device. 9 . The lighting device according to claim 4 , wherein there are n optically transparent batteries (n is an integer equal to or larger than 3), which make up side faces of the lighting device; and the conductive film-coated lamp frame is an n-sided polygon, making up a bottom face of the lighting device. 10 . The lighting device according to claim 5 , wherein there are n optically transparent batteries (n is an integer equal to or larger than 3), which make up side faces of the lighting device; and the conductive film-coated lamp frame is an n-sided polygon, making up a bottom face of the lighting device. 11 . The lighting device according to claim 2 , wherein the optically transparent lamp frame is made of glass. 12 . The lighting device according to claim 3 , wherein the optically transparent lamp frame is made of glass. 13 . The lighting device according to claim 4 , wherein the optically transparent lamp frame is made of glass. 14 . The lighting device according to claim 5 , wherein the optically transparent lamp frame is made of glass. 15 . The lighting device according to claim 6 , wherein the optically transparent lamp frame is made of glass.
Window-shaped terminals · CPC title
adapted for prismatic or rectangular cells (H01M50/216 takes precedence) · CPC title
adapted for specific cells, e.g. electrochemical cells operating at high temperature · CPC title
Inorganic material · CPC title
characterised by their shape or physical structure · CPC title
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