IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0926681
(2013-06-25)
|
등록번호 |
US-8625097
(2014-01-07)
|
발명자
/ 주소 |
- Brukilacchio, Thomas J.
- Conner, Arlie R.
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
6 인용 특허 :
160 |
초록
▼
The present invention provides a light engine having four LED light sources in combination with one or more laser light sources. A combination of collimators, bandpass filters, dichroic mirrors, and other elements is operative to direct light from the light sources onto a main optical axis from wher
The present invention provides a light engine having four LED light sources in combination with one or more laser light sources. A combination of collimators, bandpass filters, dichroic mirrors, and other elements is operative to direct light from the light sources onto a main optical axis from where it may be focused into a light guide for transport to a instrument or device. Particular embodiments of the invention provide for computer control, intensity control, color control, and light source modulation. The light engine provides light suitable for applications in microscopy, endoscopy, and/or bioanalytical instrumentation.
대표청구항
▼
1. A light engine, comprising: a first light source, wherein the first light source includes a first Light Emitting Diode (LED), a first bandpass filter, and a first collimator, wherein the first light source emits a first collimated light beam of a first color;a second light source, wherein the sec
1. A light engine, comprising: a first light source, wherein the first light source includes a first Light Emitting Diode (LED), a first bandpass filter, and a first collimator, wherein the first light source emits a first collimated light beam of a first color;a second light source, wherein the second light source includes a second Light Emitting Diode (LED), a second bandpass filter, and a second collimator, wherein the second light source emits a second collimated 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), a third bandpass filter, and a third collimator, wherein the third light source emits a third collimated light beam of a third color different than the first color and second color;a fourth light source, wherein the fourth light source includes a fourth Light Emitting Diode (LED), a fourth bandpass filter, and a fourth collimator, wherein the fourth light source emits a fourth collimated light beam of a fourth color different than the first color, second color, and third color;a first laser light source, wherein the first laser light source emits a first coherent light beam of a first wavelength;a plurality of reflective optical components positioned so as to direct the first collimated light beam of the first color, the second collimated light beam of the second color, the third collimated light beam of the third color, the fourth collimated light beam of the fourth color, and the first coherent light beam onto a main optical axis of the light engine; anda light guide positioned to receive said light beams directed onto the main optical axis of the light engine for transport to a device to be illuminated. 2. The light engine of claim 1, wherein the first laser light source is adapted to be directly modulated at high speed. 3. The light engine of claim 1, comprising a vibrating element mounted to one of said reflective optical components wherein said vibrating element is adapted to reduce speckle and increase uniformity in the first coherent light beam. 4. The light engine of claim 1, further comprising a second laser light source, wherein the second laser light source emits a second coherent light beam of a second wavelength, and wherein the plurality of reflective optical components also direct the second coherent light beam onto the main optical axis. 5. The light engine of claim 4, wherein the first laser light source and the second laser light source are each adapted to be directly modulated at high speed. 6. The light engine of claim 1, further comprising a second laser light source, wherein the second laser light source emits a second coherent light beam of a second wavelength different than the first wavelength, and wherein the plurality of reflective optical components also direct the second coherent light beam onto the main optical axis. 7. The light engine of claim 1, wherein the light guide is adapted to be coupled to a microscope, such that wherein the light guide is adapted to transport beams of light directed onto the main optical axis of the light engine to the microscope. 8. The light engine of claim 1, wherein the light engine is computer controllable. 9. The light engine of claim 1, wherein the light engine is adapted to provide output light of one or more of the first color, second color, third color and fourth color. 10. The light engine of claim 9, wherein the output light is spectrally tunable. 11. The light engine of claim 1, wherein the light engine is adapted to provide white output light. 12. The light engine of claim 1, further comprising a lens for focusing the first collimated light beam of the first color, the second collimated light beam of the second color, the third collimated light beam of the third color, the fourth collimated light beam of the fourth color, and the first coherent light beam from the main optical axis of the light engine into the light guide. 13. The light engine of claim 1, wherein the light guide is a liquid light guide. 14. The light engine of claim 1, wherein each of the first light source, the second light source, the third light source, the fourth light source, and laser light source has an adjustable intensity.
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