Claims
- 1. A highly efficient LED lamp comprising:
an optical module including:
at least one light emitting diode (LED) that emits light with a wide divergence; a non-imaging optical element (NIO) that includes a refractive member located around a LED optical axis and a total internal reflection member located around the refractive member, wherein the refractive member and the total internal reflection member are integrated in a single transparent element having a mutual focal point, wherein the NIO element collects a significant amount of light emitted by the LED with wide divergence located at the focal point, to compress the collected light with high efficiency into a beam with a generally different angular spread in a horizontal plane and a vertical plane and to direct the compressed light outside of the lamp; and a transparent window to transmit light outside of the lamp; and a housing having an electrical connector connected to an outside power source, the connector electrically connected to the LED.
- 2. The highly efficient LED lamp according to claim 1, wherein the optical module further comprises a plurality of LEDs with each of the LEDs having a corresponding one of the NIO elements located on the optical axis that is located in the focal point, wherein each of the NIO elements collects light emitted by the LEDs to compress the collected light with high efficiency into the beam with a generally different angular spread in the horizontal plane and the vertical plane, and wherein each of the beams have an identical angular light distribution.
- 3. The highly efficient LED lamp according to claim 1, wherein the optical module further comprises a plurality of LEDs, wherein each of the LEDs has a corresponding one of the non-imaging optical elements located on the optical axis that is located in the focal point, wherein each of the NIO elements collects light emitted by the LEDs to compress the collected light with high efficiency into the beam with a generally different angular spread in the horizontal plane and the vertical plane, and wherein at least part of the beams has various angular light distributions.
- 4. An optical module including:
at least one light emitting diode (LED) that emits light with a wide divergence; a non-imaging optical element (NIO) that includes a refractive member located around a LED optical axis and a total internal reflection member located around the refractive member, wherein the refractive member and the total internal reflection member are integrated in a single transparent element having a mutual focal point, wherein the NIO element collects a significant amount of light emitted by the LED with wide divergence located at the focal point, to compress the collected light with high efficiency into a beam with a symmetrical angular spread in a horizontal plane and a vertical plane; a transparent window to transmit shaped light outside of the lamp, wherein the NIO element directs the compressed light towards the transparent window; and a light shaping element located between the non-imaging optical element and the transparent window.
- 5. The optical module according to claim 4, wherein the optical module further comprises a plurality of LEDs, wherein each one of the LEDs includes a corresponding one of the non-imaging optical elements located on a LED optical axis and the LED is located in a focal point of the non-imaging optical element, and each non-imaging optical element collects light emitted by the LED to compress the collected light with high efficiency into the beam with symmetrical angular spread in the horizontal plane and the vertical plane, wherein each of the beams has an identical angular light distribution and directs the compressed light towards the transparent window.
- 6. The optical module according to claim 4, wherein the light shaping element is a holographic diffuser.
- 7. A highly efficient LED lamp comprising:
an optical module including:
at least one light emitting diode (LED) that emits light with a wide divergence; a non-imaging optical element (NIO) that includes a refractive member located around a LED optical axis and a total internal reflection member located around the refractive member, wherein the refractive member and the total internal reflection member are integrated in a single transparent element having a mutual focal point, wherein the NIO element collects a significant amount of light emitted by the LED with wide divergence located at the focal point, to compress the collected light with high efficiency into a beam with a generally different angular spread in a horizontal plane and a vertical plane, and to direct the compressed light outside of the lamp; and a transparent window to transmit the light outside of the lamp; a housing having an electrical connector connected to an outside power source; and an electronic adapter/converter mounted to the housing, the adapter/converter having an electrical input and an electrical output, wherein the electrical input is connected to the electrical connector in the housing and the electrical output is connected to the LED.
- 8. The highly efficient LED lamp according to claim 7, wherein the dimensions of the housing, the shape of the housing and the type of electrical connector in the housing are identical to conventional lamps.
- 9. The highly efficient LED lamp according to claim 8, wherein the non-imaging optical element compresses the collected light with high efficiency into a beam with a symmetrical angular spread in the horizontal plane and the vertical plane.
- 10. The highly efficient LED lamp according to claim 8, wherein the optical module further comprises a plurality of LEDs, wherein each one of the LEDs includes one of the non-imaging optical elements located on a LED optical axis and the LED is located in a focal point of the non-imaging optical element, and each non-imaging optical element collects light emitted by the LED to compress the collected light with high efficiency into the beam with symmetrical angular spread in the horizontal plane and the vertical plane, wherein each of the beams have an identical angular light distribution and directs the compressed light towards the transparent window.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 10/277,230 filed Oct. 21, 2002 which is a continuation-in-part application of U.S. application Ser. No. 09/566,521 filed May 8, 2000 (allowed Sep. 24, 2002).
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
10277230 |
Oct 2002 |
US |
Child |
10316642 |
Dec 2002 |
US |
Parent |
09566521 |
May 2000 |
US |
Child |
10277230 |
Oct 2002 |
US |