Abstract:
A system for correcting human vision includes a mobile device in wireless communication with a vision correction device. The vision correction device includes lenses that are positioned to correct a user's vision. The mobile device generates adjustment information in response to receiving input information from a user. The mobile device wirelessly transmits the adjustment information to the vision correction device. The vision correction device adjusts a focal length of the lenses in response to receiving the adjustment information. The mobile device can be a smartphone or tablet computer. The input information from the user can be based on one or more of a user's finger interaction with a touchscreen and an image captured by the mobile device.
Abstract:
A device for sorting particles. The device may include a channel structure that defines a channel having an inlet and first and second outlets. The device also may include first and second transport mechanisms. The first transport mechanism may be configured to create a particle stream of first particles and one or more second particles. Each particle may move along the channel from the inlet toward the first outlet and may be disposed in a fluid supported by the channel structure. The second transport mechanism may be configured to be pulse-activated to selectively move at least one of the second particles from the particle stream and toward the second outlet.
Abstract:
A silicon die having an orifice layer with plural openings formed therein defines a drop ejection device for use in a handheld inhaler. An underlying control layer defines fluid chambers, each carrying a heat transducer. A control system energizes selected heat transducers to heat fluid in the chambers, vaporizing the fluid, which is ejected through the orifices in small droplets.
Abstract:
Disclosed are embodiments of a system and method for processing an image. An image processing unit includes a processor unit and a control unit. The processor unit is configured to receive an incoming video signal. The control unit is configured to generate first control signals that define bit planes manifested on a spatial light modulator. The control unit is further configured to generate second control signals that define on and off states for a solid state light source. The first control signals impart a reset motion sequence for mirror elements of the spatial light modulator. The second control signals maintain the solid state light source in the off state during at least part of the reset motion.
Abstract:
A biochip device for electrical analysis of biological membranes. The device may include a substrate assembly defining an array of apertures and including thin-film devices configured to sense an electrical property of biological membranes that seal the apertures. The device also may include an electrical interface coupled electrically to the thin-film devices and configured to electrically couple the thin-film devices to a control apparatus. The electrical interface may define a plurality of interface elements, and the apertures may be in excess over the interface elements.
Abstract:
A color image is produced from image data. Color image bit-planes are generated from the image data. Each color image bit-plane represents a time increment for displaying one color of a plurality of colors for each pixel of the color image. For each of the colors, color patterns are displayed in a plurality of image sub-frame locations. The color patterns represent the color image bit-planes. At least the least significant color image bit-planes are displayed in less than all of the image sub-frame locations.
Abstract:
A filter for a display system is provided which includes a fluid chamber having a selectively moveable filtering fluid, plural electrodes being coupled with the fluid chamber to accommodate establishment of an electric field whereby the filtering fluid may be selectively positioned in an optical path.
Abstract:
A system for correcting human vision includes a mobile device in wireless communication with a vision correction device. The vision correction device includes lenses that are positioned to correct a user's vision. The mobile device generates adjustment information in response to receiving input information from a user. The mobile device wirelessly transmits the adjustment information to the vision correction device. The vision correction device adjusts a focal length of the lenses in response to receiving the adjustment information. The mobile device can be a smartphone or tablet computer. The input information from the user can be based on one or more of a user's finger interaction with a touchscreen and an image captured by the mobile device.
Abstract:
A system for projecting an image onto a viewing surface comprises a light engine for generating an image-bearing light beam in response to control signals from an image processing unit. The system further includes an attenuating spatial light modulator configured to be selectively positioned in a path of the light beam and further configured to selectively attenuate at least a portion of the light beam when positioned in the path.