DLPU140A May 2024 – September 2025 DLP160AP , DLP160CP , DLP2000 , DLP2010 , DLP2010LC , DLP2010NIR , DLP2021-Q1 , DLP230GP , DLP230KP , DLP230NP , DLP300S , DLP3010 , DLP3010LC , DLP301S , DLP3020-Q1 , DLP3021-Q1 , DLP3030-Q1 , DLP3034-Q1 , DLP3310 , DLP4500 , DLP4500NIR , DLP4620S-Q1 , DLP4621-Q1 , DLP470NE , DLP470TE , DLP4710 , DLP4710LC , DLP471NE , DLP471TE , DLP471TP , DLP480RE , DLP500YX , DLP5500 , DLP550HE , DLP550JE , DLP5530-Q1 , DLP5530S-Q1 , DLP5531-Q1 , DLP5531A-Q1 , DLP5532-Q1 , DLP5533A-Q1 , DLP5534-Q1 , DLP6500FLQ , DLP6500FYE , DLP650LE , DLP650LNIR , DLP650NE , DLP650TE , DLP651LE , DLP651NE , DLP660TE , DLP670RE , DLP670S , DLP7000 , DLP7000UV , DLP780NE , DLP780TE , DLP781NE , DLP781TE , DLP800RE , DLP801RE , DLP801XE , DLP9000 , DLP9000X , DLP9000XUV , DLP9500 , DLP9500UV
This section is going to provide specific examples of the TI DLP Diffraction Modeling application functionality. Each example displays the diffraction pattern (left) and the diffraction efficiency curve (right) with the input parameters (bottom). The results closely follow the interface that the user interacts with and can offer intuition for the applications capabilities.
High F/Number Illumination demonstrates diffraction modeling using illumination and projection ƒ/#'s that are relatively large compared to traditional DMD ƒ/#. Figure 5-1, Figure 5-2, and Figure 5-3 illustrate the tilt angle variation range from 11º to 13º and how the tilt angle effects the diffraction efficiency for high ƒ/#. Figure 5-4 is going to demonstrates how to sweep parameters and overlay diffraction efficiency curves with varying device parameters.