Abstract:
A portable low-cost copier comprises a housing having a bottom surface at which a photosensitized sheet and an original can be disposed. Disposed within the housing is a chemical flashlamp which is ignited to make the copy.
Abstract:
A light coupling and distribution system includes a plurality of light sources are used to generate light. The lighting system further has an optical fiber and a light coupler optically coupling the light sources to the fiber. The light coupler has a body and a plurality of lenslets corresponding to a respective light source. Each lenslet directs light through the body to the optical fiber.
Abstract:
A lighting system for night vision applications including a near infrared light source, a visible light source, a beamsplitter and an optical element. The beamsplitter is arranged to reflect light emitting from either the near infrared light source or the visible light source and transmit light emitting from the other of the near infrared light source or visible light source so as to produce a color-corrected light source. The optical element is disposed a predetermined distance from the color-corrected light source. The optical element includes an input surface for receiving light from the color-corrected light source and an output surface for emitting the received light in a desired emission pattern. In one embodiment, each of the near infrared light source and visible light source is associated with respective first and second optical elements. The first and second optical elements are arranged such that the emission patterns of each optical element are substantially identical and overlapping to form a single color-corrected light emission pattern.
Abstract:
An optical element, a lighting system utilizing the optical element and a method of manipulating light from a source to provide an illumination pattern suitable for use in a night vision system and exterior lighting applications is disclosed. The optical element has an input surface and an output surface disposed at approximately perpendicular to the input surface. A stepped surface angles between the input surface and the output surface intersecting the light inside the optical element. Multiple facets are formed in the stepped surface to reflect the light towards the output surface. The input, stepped and output surfaces are arranged such that the light reflects only from the stepped surface. The optical element has a rectangular shape in one embodiment and a wedge shape in a second embodiment.
Abstract:
A vehicle lighting system includes a light source for generating light and a unitary optical element having a light collimating surface, a plurality of stepped surfaces projecting from the collimating surface, each stepped surface having a reflective surface angled with respect to the collimating surface for receiving collimated light, a dispersal surface angled with respect to the stepped surfaces, the dispersal surface having a plurality of dimples aligned with respect to the reflective surfaces for dispersing collimated light, and a kicker adjacent the surface having a plurality of reflective facets adapted to receive and redirect the dispersed light.
Abstract:
A tri-color lamp for use as an element in the optical presentation of information. The lamp includes a sealed envelope having a common envelope member and a plurality (e.g., three) of longitudinally extending leg members. A common electrode is located within the common envelope member and is spacedly located from opposing electrodes located within each of the leg members. A phosphor layer within the sealed envelope subtends at least the major body portion of each of the leg members such that the surface brightness of the phosphor layer as viewed through the end portions of the lamp is greater than the intensity of the external surface brightness of the phosphor layer on the major body portion. In the presentation of color information, each of the leg members is coated with respective phosphors emitting the primary colors red, green and blue.
Abstract:
A photoflash lamp unit having an array of eight flash lamps located on each of two opposing sides thereof. Each array comprises two regions, upper and lower, of four lamps. A pivotal mounting device at a lower end of the unit permits the four lamps in one upper region to be fired after which the entire unit is rotated and the four lamps in the remaining, opposing upper region are fired. The unit is then inverted and the eight lamps in the two previously lower regions are fired in the manner described above.
Abstract:
An elongated flash lamp assembly which is sequentially advanced through a camera to permit each of the lamps within the assembly to become aligned with the camera's fixed reflector. Several heat-responsive (e.g. fusible) covers are located on the assembly's housing to permit the above advancement only after each cover has become physically deformed by the heat from the respective flash lamp located adjacent thereto. A mechanism for advancing the assembly is also disclosed.
Abstract:
A flash lamp assembly for use with a camera and the power source associated therewith. The assembly includes several leadless, capacitively-ignited flash lamps retained within a longitudinal, light-transmitting housing and activated by the passage of electrical energy through the housing either in the form of a capacitive discharge or by direct connection to a pair of resilient contacts. Spaced conductive means located about each flash lamp receive the energy and capacitively ignite the lamp. Means for electrically connecting each lamp to the above power source are also described and include a mechanism for sequentially advancing the assembly's housing therein.
Abstract:
A light manifold assembly 10 having a relatively thin and low profile manifold 30 which is selectively placed within the frame 16 of a back window 14 and which receives light and/or laser energy 44 which is generated by a source 18 which is remotely located from the manifold 30.