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Stan’s Legacy

Figure (277)

Figure (277)

How it is written

  • (277) 10×

Drawings 2

On this figure 6

Where it is named · 10

Light Guide Lens 10×

  1. FIG. 277 Illustrates schematically a side view crosssection of unitary array flat-surface light-guide lens embodiment operable to angularly displaced incident light radiation focused to vertical displaced light radiation.

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  2. With reference to FIGS. 277 through 288, there are illustrated several other light-guide lens embodiments in an overall cross-sectional schematic view to demonstrate various functions and operations to control the transmission of light rays emanting from a source at

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  3. Light-guide lens 20 of FIG. 283, light-guide lens 30 of FIG. 284, light-guide lens 40A of FIG. 277, light-guide lens 40B of FIG. …

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  4. The light-guide stem configuration 144V, 144W, 144X, 144Y and 144Z varies in its adaptability to the particular intended use within a given light-guide lens embodiment. Most generally, light-guide stem 144V of FIG. 13 can be used with feed lens 40A of FIG. 277,

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  5. With reference to FIG. 277, there is illustrated the fundamental principle of an array of light-steering lenses 41a xxx 41n of the present invention in controlling the directivity of incident light radiation from an arc of 80 degrees. …

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  6. xxx 41n of FIG. 277 with angular stem light-steering 60

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  7. In another array of light-steering lenses, FIG. 280 illustrates FIG. 277 in combination arrangement with FIG. 278; FIG. 281 illustrates FIG. 277 in combination arrangement with FIG. 279; FIG. 282 illustrates a series combination arrangement 280; and FIG. 281 can be used in opposite orientation of FIG. 282.

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  8. In another array of light-steering lenses, FIG. 280 illustrates FIG. 277 in combination arrangement with FIG. 278; FIG. 281 illustrates FIG. 277 in combination arrangement with FIG. 279; FIG. 282 illustrates a series combination arrangement 280; and FIG. 281 can be used in opposite orientation of FIG. 282.

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  9. The angle of the incoming light 43 of the light-steering lenses 41a xxx 41n of the planar array of FIG. 277 is depicted in an arc of 80 degrees from the horizontal. …

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  10. In furtherance of the invention, light-guide lens structure 20 of FIG. 283 can be placed on top of light-guide lens structure 30 of FIG. 284 to form silo capping lens assembly (primary stage) 190 of FIG. 290 to provide a central focal region 133 for transmitted light radiation 26a xxx 26n and 37a xxx 37n. Similarly in assembly, light-guide lens sructure 40A of FIG. 277, 40B of FIG.

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