Light bulb and florescent tube replacement using FIPEL panels

US9497823B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9497823-B2
Application numberUS-201414571599-A
CountryUS
Kind codeB2
Filing dateDec 16, 2014
Priority dateMay 4, 2013
Publication dateNov 15, 2016
Grant dateNov 15, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A lighting device formed of a FIPEL panel driven by electrical connection. For example, a frequency generator can create a frequency that creates a light output having any frequency in the spectrum. The light emitting panel can be flexible, and can be coded along a curved surface, such as the inner surface of a light bulb.

First claim

Opening claim text (preview).

What is claimed is: 1. A lighting device, comprising a housing, having at least one surface through which light is output; an electrical connection; and a light emitting substance connected to said electrical connection, said light emitting substance extending along a curved path and outputting light of a wavelength dependent on a frequency of a driving signal received over said electrical connection, said light emitting substance emitting light in multiple directions. 2. The device as in claim 1 , wherein said light emitting substance includes a transparent conductive substrate, connected to receive said electrical connection, and another substrate, also connected to receive said electrical connection, and light-emitting polymer layers, sandwiched between said transparent conductive substrate and said another substrate. 3. The device as in claim 2 , wherein said light-emitting polymer layers emit light of a wavelength that is dependent on a frequency of said electrical connection. 4. The device as in claim 3 , further comprising a signal generator, to output a signal having a frequency to said electrical connection. 5. The device as in claim 2 , wherein said another substrate is also transparent. 6. The device as in claim 2 , wherein said another substrate is reflective, and reflects light emitted by said light emitting substance back toward said transparent substrate. 7. The device as in claim 1 , wherein said light emitting substance includes a first stack of materials including a substrate, a light-emitting polymer layer connected to said substrate, and a second substrate; and a second stack of materials, including at least one light-emitting polymer connected to said second substrate, and a third substrate, where both said first stack of materials and said second stack of materials emit light. 8. The device as in claim 7 , where said third substrate is reflective and light emitted by said second stack passes through said first stack and said substrate of said first stack. 9. The device as in claim 1 , wherein said light emitting substance is attached to said housing over a curved surface of said housing. 10. The lighting device as in claim 7 , further comprising a second signal generator producing an output that drives said second stack. 11. The light emitting device as in claim 1 , wherein said housing is spherical, and said light emitting substance is coated on a complete area of said spherical housing. 12. The light emitting device as in claim 3 , wherein a color of the emitted light is any point on a CIE index, selected by selecting said frequency. 13. A lighting device, comprising a housing, having at least one surface through which light is output, at least part of said surface being curved; an electrical connection; and a light emitting stack connected to said electrical connection, said light emitting stack including a transparent conductive substrate facing toward said housing, connected to receive said electrical connection, and another substrate, also connected to receive said electrical connection, and light-emitting polymer layers, sandwiched between said transparent conductive substrate and said another substrate, said light emitting stack outputting light of a wavelength dependent on a frequency of a driving signal received over said electrical connection, said light emitting substance emitting light in multiple directions. 14. The device as in claim 13 , further comprising a signal generator, to output a signal having a frequency to said electrical connection. 15. The device as in claim 13 , wherein said another substrate is also transparent. 16. The device as in claim 13 , wherein said another substrate is reflective, and reflects light emitted by said light emitting substance back toward said transparent substrate. 17. The device as in claim 13 , wherein said light emitting substance includes a second stack of materials, including at least one light-emitting polymer connected to said another substrate, and a third substrate, where both said first stack of materials and said second stack of materials emit light. 18. The device as in claim 17 , where said third substrate is reflective and said another substrate is transparent and light emitted by said second stack passes through said light emitting stack and said transparent conductive substrate. 19. The device as in claim 13 , wherein said light emitting substance is attached to said housing over a curved surface of said housing. 20. The lighting device as in claim 17 , further comprising a second signal generator producing an output that drives said second stack. 21. A lighting device, comprising a housing, having at least one surface through which light is output; an electrical connection; and a light emitting substance connected to said electrical connection, said light emitting substance formed of : a first stack of materials having a transparent conductive substrate, connected to receive said electrical connection, and a second transparent substrate, also connected to receive said electrical connection, and light-emitting polymer layers, sandwiched between said transparent conductive substrate and said second substrate, and a second stack of materials, including at least one light-emitting polymer connected to said second substrate, and a third substrate, where both said first stack of materials and said second stack of materials emit light, and light emitted by said second stack of materials passes through said first stack of materials to be emitted from a surface having said transparent conductive substrate. 22. The device as in claim 21 , wherein said light-emitting polymer layers emit light of a wavelength that is dependent on a frequency of said electrical connection. 23. The device as in claim 22 , further comprising a first signal generator, to output a signal having a frequency to said electrical connection to drive said first stack of materials, and a second signal generator producing an output that drives said second stack of materials. 24. The device as in claim 21 , where said third substrate is reflective. 25. The device as in claim 21 , wherein said light emitting substance is attached to said housing over a curved surface of said housing.

Assignees

Inventors

Classifications

  • Light sources of a form not covered by groups F21Y2101/00-F21Y2107/00 · CPC title

  • of translucent electrodes · CPC title

  • Light sources comprising attachment means · CPC title

  • H05B33/12Primary

    Light sources with substantially two-dimensional [2D] radiating surfaces · CPC title

  • Subject matter not provided for in other groups of this subclass · CPC title

Patent family

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Frequently asked questions

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What does patent US9497823B2 cover?
A lighting device formed of a FIPEL panel driven by electrical connection. For example, a frequency generator can create a frequency that creates a light output having any frequency in the spectrum. The light emitting panel can be flexible, and can be coded along a curved surface, such as the inner surface of a light bulb.
Who is the assignee on this patent?
Vizio Inc, Vizio Inc
What technology area does this patent fall under?
Primary CPC classification H05B33/12. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 15 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).