IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0968178
(2013-08-15)
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등록번호 |
US-8629982
(2014-01-14)
|
발명자
/ 주소 |
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
2 인용 특허 :
160 |
초록
▼
In various embodiments of the invention, a unique construction for Light Emitting Diodes (LEDs) with at least one luminescent rod and extracting optical elements used to generate a variety of high brightness light sources with different emission spectra. In an embodiment of the invention, forced air
In various embodiments of the invention, a unique construction for Light Emitting Diodes (LEDs) with at least one luminescent rod and extracting optical elements used to generate a variety of high brightness light sources with different emission spectra. In an embodiment of the invention, forced air cooling is used to cool the luminescent rod. In an embodiment of the invention, totally internal reflected light can be redirected outward and refocused. In another embodiment of the invention, light emitted by the luminescent rod is out-coupled for use in a variety of applications.
대표청구항
▼
1. A light engine for generating white light for endoscopy or microscopy, the light engine comprising: a first light source, wherein the first light source includes a plurality of first Light Emitting Diodes (LEDs) and a first concentrator, wherein the first light source emits a first light beam of
1. A light engine for generating white light for endoscopy or microscopy, the light engine comprising: a first light source, wherein the first light source includes a plurality of first Light Emitting Diodes (LEDs) and a first concentrator, wherein the first light source emits a first light beam of a first color;wherein said plurality of first Light Emitting Diodes (LEDs) of said first light source emit light of an excitation color different than said first color, and wherein said first light source further comprises a luminescent rod comprising a luminescent material which absorbs said light of said excitation color and, in response, emits light of said first color which passes through said first concentrator to generate said first light beam of said first color;a second light source, wherein the second light source includes a second Light Emitting Diode (LED) and a second concentrator, wherein the second light source emits a second light beam of a second color different than the first color;a third light source, wherein the third light source includes a third Light Emitting Diode (LED) and a third concentrator, wherein the third light source emits a third light beam of a third color different than the first color and second color;a plurality of reflective optical components positioned so as to combine the first light beam of the first color, the second light beam of the second color, the third light beam of the third color, on a main optical axis of the light engine to generate a beam of white light; andan output system including one or more lens for focusing the beam of white light into a light guide for transmission to a microscope or endoscope. 2. The light engine of claim 1, wherein the light engine has the ability to control correlated color temperature (CCT) of the beam of white light. 3. The light engine of claim 1, wherein the light engine has the ability to control the color rendering index (CRI) of the beam of white light. 4. The light engine of claim 1, wherein the beam of white light has a color rendering index (CRI) of at least 85. 5. The light engine of claim 1, wherein the light engine has the ability to modulate the light output in synchronization with a camera shutter. 6. The light engine of claim 1, in combination with a light guide positioned to receive said beam of white light from said lens, wherein the light guide is adapted to transport said beam of white light to said microscope or endoscope. 7. The light engine of claim 1, wherein said plurality of reflective elements comprise a plurality of dichroic reflective elements. 8. The light engine of claim 1, wherein air is directed at a surface of the luminescent rod in order to cool the luminescent rod. 9. The light engine of claim 1, wherein the luminescent rod comprises one of a single crystal Ce:YAG and a sintered ceramic Ce:YAG. 10. The light engine of claim 1 wherein the output system further comprises a lens stop to prevent color fringe effects. 11. The light engine of claim 1, wherein the first color is green, the second color is blue, the third color is red, and the excitation color is blue. 12. A light engine for generating white light for an optical instrument, the light engine comprising: a first light source, wherein the first light source includes a plurality of first Light Emitting Diodes (LEDs) and a first concentrator, wherein the first light source emits a first light beam of a first color;wherein said plurality of first Light Emitting Diodes (LEDs) of said first light source emit light of an excitation color different than said first color, and wherein said first light source further comprises a luminescent rod comprising a luminescent material which absorbs said light of said excitation color and, in response, emits light of said first color which passes through said first concentrator to generate said first light beam of said first color;a second light source, wherein the second light source includes a second Light Emitting Diode (LED) and a second concentrator, wherein the second light source emits a second light beam of a second color different than the first color;a third light source, wherein the third light source includes a third Light Emitting Diode (LED) and a third concentrator, wherein the third light source emits a third light beam of a third color different than the first color and second color;a plurality of reflective optical components positioned so as to combine the first light beam of the first color, the second light beam of the second color, the third light beam of the third color, on a main optical axis of the light engine to generate a beam of white light; andan output system including one or more lens for focusing the beam of white light into a light guide for transmission to said optical instrument. 13. The light engine of claim 12, wherein the beam of white light has a color rendering index (CRI) of at least 85. 14. The light engine of claim 13, wherein said plurality of reflective elements comprise a plurality of dichroic reflective elements. 15. The light engine of claim 13, wherein the luminescent rod comprises one of a single crystal Ce:YAG and a sintered ceramic Ce:YAG. 16. The light engine of claim 13, wherein the light engine has the ability to modulate the light output in synchronization with a camera shutter. 17. The light engine of claim 13, wherein air is directed at a surface of the luminescent rod in order to cool the luminescent rod. 18. The light engine of claim 12, wherein the light engine has the ability to control correlated color temperature (CCT) of the beam of white light. 19. The light engine of claim 12, wherein the light engine has the ability to control the color rendering index (CRI) of the beam of white light. 20. A light engine for generating white light for endoscopy or microscopy, the light engine comprising: a first light source, wherein the first light source includes a plurality of first Light Emitting Diodes (LEDs) and a first concentrator, wherein the first light source emits a first light beam of a first color;wherein said plurality of first Light Emitting Diodes (LEDs) of said first light source emit light of an excitation color different than said first color, and wherein said first light source further comprises a luminescent rod comprising a luminescent material which absorbs said light of said excitation color and, in response, emits light of said first color which passes through said first concentrator to generate said first light beam of said first color;a second light source, wherein the second light source includes a second Light Emitting Diode (LED) and a second concentrator, wherein the second light source emits a second light beam of a second color different than the first color;a third light source, wherein the third light source includes a third Light Emitting Diode (LED) and a third concentrator, wherein the third light source emits a third light beam of a third color different than the first color and second color;a plurality of reflective optical components positioned so as to combine the first light beam of the first color, the second light beam of the second color, the third light beam of the third color, on a main optical axis of the light engine to generate a beam of white light;a light guide adapted to couple the light engine to an endoscope or microscope, andan output system including one or more lens for focusing the beam of white light into said light guide for transmission to said endoscope or microscope. 21. The light engine of claim 20, wherein the beam of white light has a color rendering index (CRI) of at least 85. 22. The light engine of claim 20, wherein said plurality of reflective elements comprise a plurality of dichroic reflective elements. 23. The light engine of claim 20, wherein the luminescent rod comprises one of a single crystal Ce:YAG and a sintered ceramic Ce:YAG. 24. The light engine of claim 20, wherein the light engine has the ability to modulate the light output in synchronization with a camera shutter. 25. The light engine of claim 20, wherein the light engine has the ability to control correlated color temperature (CCT) of the beam of white light. 26. The light engine of claim 20, wherein the light engine has the ability to control the color rendering index (CRI) of the beam of white light. 27. The light engine of claim 13, in combination with a light guide positioned to receive said beam of white light from said lens, wherein the light guide is adapted to transport said beam of white light to said microscope or endoscope.
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