Multisource beam shaping system
Described is an improved automated multisource LED array luminaire with an array-wide, rotating beam shaper.
1. An automated luminaire comprising:
a plurality of light sources configured in a multisource array to produce a plurality of beams of light corresponding to the plurality of light sources; and
a transmissive beam shaper spanning the multisource array, the transmissive beam shaper configured for rotation, the transmissive beam shaper comprising an array of ribbed lenses, each ribbed lens extending across the transmissive beam shaper and receiving light simultaneously from more than one of the beams of light.
2. The automated luminaire of claim 1 , wherein the plurality of light sources in the multisource array are Light Emitting Diodes (LEDs).
3. The automated luminaire of claim 1 , further comprising control electronics configured to control a rotation of the transmissive beam shaper in response to signals received via a data link from an external device.
4. The automated luminaire of claim 1 , wherein the array of ribbed lenses comprises a linear array of prisms.
5. The automated luminaire of claim 4 where the array of prisms comprises prisms with varying angles.
6. The automated luminaire of claim 1 , wherein the transmissive beam shaper is removably mounted in the automated luminaire.
7. The automated luminaire of claim 1 , further comprising:
a rotatable frame in which is mounted the transmissive beam shaper, the rotatable frame comprising a ring gear facing towards an inner side of the rotatable frame; and
a pinion gear configured to engage with the ring gear and drive a rotation of the rotatable frame.
8. The automated luminaire of claim 7 , wherein the motor-driven pinion gear is located adjacent to two of the plurality of light sources.
9. The automated luminaire of claim 7 , wherein the rotatable frame is configured to rotate within a plurality of bearings that are mounted to a fixed frame of the automated luminaire.
10. The automated luminaire of claim 7 , wherein the rotatable frame is configured to rotate continuously.
11. The automated luminaire of claim 7 , further comprising a motor configured to rotate the pinion gear.
12. The automated luminaire of claim 11 , wherein the motor is a stepper motor.
13. The automated luminaire of claim 11 , wherein the motor is electrically coupled to control electronics configured to control a rotation of the motor in response to signals received via a data link from an external device.