Figure (284)
Figure (284)
How it is written
- (284) 8× with (284) Lens
Drawings 6
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Page 120 · Light Guide Lens
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FIGS. 347, 348, 349, and 350 Illustrates an overall view in pictorial of transparent solid material lightguide-stem light-guide lens configurations. · Light Guide Lens
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Page 171 · Light Guide Lens
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Page 172 · Light Guide Lens
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Page 175 · Light Guide Lens
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Page 176 · Light Guide Lens
On this figure 8
- 30 Wall Lens
- 31 Lenses
- 32 Lenses
- 33 Lens-Plate
- 34 Lens-Plate
- 35 Incident Light
- 36 Incident Light
- 38 Focal Region
Where it is named · 8
Light Guide Lens 8×
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FIG. 284 Illustrates schematically a side view crosssection of a unitary array cylindrical-shaped light-guide lens embodiment operable to angularly displaced incident light radiation focused to circular convergentangularly convergent displaced light radiation.
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Light-guide lens 20 of FIG. 283, light-guide lens 30 of FIG. 284, light-guide lens 40A of FIG. …
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with conical lens 20 of FIG. 283, with V-shaped lens 90 of FIG. 285, and with angular surface lens 120 of FIG. 288. Light-guide stem 144X can be used in wall lens 30 of FIG. 284. Light-guide stem 144Z of FIG. 17 can be used in place of any light-guide stem configuration-by simply arcing or curving the stem surface to the desired transmission angle.
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Referring now to FIG. 284, there is illustrated an arrangement of light-steering lenses that utilize the aforementioned control principles. In this embodiment the light-steering lenses 31a xxx 31n and 32a xxx 32n are also at an angle intermediate between the vertical and the horizontal. The lens-plate 33 and 34 are placed upright to direct the incident light 35a xxx 35n and 36a
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… The embodiment of light-steering lenses 35a xxx 35n and 36a xxx 36n of FIG. 284 is effective to control to focal region 38 the incident light from a source having opposing directions intermediate of the vertical and horizontal. …
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… The incident light 35a xxx 35n and incident light 36a xxx 36n of FIG. 284 may emanate from a pair of alternately positioned light sources. …
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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.