SCANNED LINEAR ILLUMINATION OF DISTANT OBJECTS
First Claim
1. A system for projecting a linear beam of light on a distant object, the system comprising:
- A laser diode bar having one or more laser diodes distributed along a common transverse axis, each of the one or more of laser diodes configured to emit a beam of light in an emission direction orthogonal to the transverse axis, the emitted beam diverging at a first divergence angle in a fast-axis direction orthogonal to both the transverse axis and the emission direction, and diverging in a slow-axis direction at a second divergence angle less than the first divergence angle, the slow-axis direction parallel to the transverse axis;
a first cylindrical lens configured to collimate and/or focus, in a fast-axis direction, the beam of light emitted by each of the one or more laser diodes; and
a second cylindrical lens configured to diverge, in a slow-axis direction, the beam of light emitted by each of the one or more of laser diodes such that the beams of light emitted by the one or more laser diodes overlap one another in the slow-axis direction.
1 Assignment
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Accused Products
Abstract
Apparatus and associated methods relate to projecting a linear beam onto a distant object. One or more laser diodes are configured to emit one or more elliptical beams of light in an emission direction. If more than one laser diodes are used, they are aligned so as to have coplanar emission facets and common slow-axis and fast-axis directions, which are perpendicular to one another and to the emission direction. A first cylindrical lens is configured to receive the emitted beam(s) and to collimate the emitted beam(s) in the fast-axis direction perpendicular to a slow-axis direction. A second cylindrical lens is configured to receive the emitted beam(s) and to diverge the emitted beam(s) in the slow-axis direction such that if more than one beams are emitted, they are diverged so as to overlap one another in the slow-axis direction.
8 Citations
20 Claims
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1. A system for projecting a linear beam of light on a distant object, the system comprising:
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A laser diode bar having one or more laser diodes distributed along a common transverse axis, each of the one or more of laser diodes configured to emit a beam of light in an emission direction orthogonal to the transverse axis, the emitted beam diverging at a first divergence angle in a fast-axis direction orthogonal to both the transverse axis and the emission direction, and diverging in a slow-axis direction at a second divergence angle less than the first divergence angle, the slow-axis direction parallel to the transverse axis; a first cylindrical lens configured to collimate and/or focus, in a fast-axis direction, the beam of light emitted by each of the one or more laser diodes; and a second cylindrical lens configured to diverge, in a slow-axis direction, the beam of light emitted by each of the one or more of laser diodes such that the beams of light emitted by the one or more laser diodes overlap one another in the slow-axis direction. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12)
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13. A method for projecting a linear beam of light on a distant object, the method comprising:
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emitting, by each of one or more laser diodes distributed along a common transverse axis, a beam of light in an emission direction; collimating and/or focusing, in a fast-axis direction orthogonal to both the transverse axis and the emission direction, each of the plurality of beams of light so as to span a first divergence angle; and diverging, in a slow-axis direction parallel to the transverse axis, each of the plurality of beams of light so as to span a second divergence angle less than the first divergence angle, wherein each of the diverged beams of light overlap one another in the slow-axis direction. - View Dependent Claims (14, 15, 16, 17, 19)
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18. The method of 16, wherein controllably pivoting the linear beam of light about a pivot axis comprising energizing a particular laser diode bar of an array of laser diode bars.
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20. A system for projecting a linear beam of light on a distant object, the system comprising:
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at least one laser diode, each configured to emit light in an emission direction, the emitted light diverging in a first transverse direction at a first divergence angle and diverging in a second transverse direction at a second divergence angle greater than the first divergence angle, the first and second transverse directions perpendicular both to the emission direction and to each other; and optics in operable communication with the at least one laser diode and configured to direct, in a projection direction, the light emitted by the at least one laser diode into a beam having a FWHM beam dimension in the first transverse direction is greater than 100 times a FWHM beam dimension in the second transverse direction as measured at a predetermined distance from the system.
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Specification