Abstract:
A 3D stereo display method and a device thereof. Two sets of shutters are disposed in a display. The shutters are complementarily interlaced with each other. The opening/closing of the two sets of shutters are controlled by time interval concept. When the display frequency is odd frequency, one set of shutters is activated. When the display frequency is even frequency, the other set of shutters is activated. The two sets of shutters are continuously opened and closed according to the variation of the frequency so that in odd and even frequencies, the left and right eyes can respectively see independent images formed of different subpixels. Therefore, a 3D display effect is presented to bare eyes without reducing resolution.
Abstract:
The invention discloses a method and device for image filtering in the field of communication technologies, the method including: acquiring image data of a pixel dot of a current row to be filtered and a corresponding pixel dot of at least one adjacent row; obtaining contrast information containing a transparency value, of the pixel dot of the current row and the pixel dot of the adjacent row respectively by resolving the image data of the pixel dot of the current row and the pixel dot of the adjacent row; generating a filter coefficient according to the transparency value of the pixel dot of the current row and the transparency value of the corresponding pixel dot of the adjacent row; and performing filtering on the pixel dot of the current row with the filter coefficient. The embodiments of the invention effectively avoid image flickering due to a difference between contrasts by adopting the method of at-least-two-row vertical filtering, and by generating the filter coefficients according to the transparencies in filtering.
Abstract:
A method of restoring a corrupted audio signal includes the steps of inputting the corrupted audio signal in a first channel, inputting one or more further correlated audio signals in one or more further channels, and restoring the corrupted audio signal using a Multi-Channel Autoregressive (AR) Model that models the corrupted signal as a linear combination of scaled time shifted portions of the further signal(s) and the corrupted signal. Embodiments are described in which the method is used to improve received audio signals in DAB receivers and mobile telephones.
Abstract:
The present invention relates to a method for purifying, modifying and immobilizing recombinant protein. The method utilizes genetic engineering to tag a DNA sequence encoding a target protein with a specific tag and express the vector to obtain a recombinant protein. The recombinant protein is then purified and modified by an affinity column and modification reagent. After exchanging the recombinant protein with a decoupling reagent, the recombinant protein is immobilized onto a specific substrate. The method, combining steps of purification, modification and immobilization, provides convenience to using recombinant protein. The omission of the use of dialysis or molecular sieve leads to a shorter period dedicating for removing excessive reagents and the increase of efficiency of recombinant protein recovery.
Abstract:
A computer user interface for use in a transport vehicle (10), which defines a virtual control panel in the upper open area of the vehicle steering wheel (12). The user enters inputs by action in appropriate sections of the virtual control panel area. A computer controlled display (20) illustrates a map to the user of locations of sections in the virtual control panel area, and information that can be input by user action with particular sections. A sensor (22) monitors the virtual control panel area, and produces electronic information corresponding to user action in the virtual control panel area. Software logic in a computer (46) analyzes the electronic information to determine if there has been user action and the location thereof, for designating an action as a particular user input. Based upon the designation, the computer produces an appropriate output, such as operating or adjusting vehicle systems.
Abstract:
A method of a method of fabricating a contact. A substrate having a plurality of gates and a plurality of lightly doped source/drain regions is provided. A dielectric layer is formed and patterned to form a self-align contact window to expose a first lightly doped source/drain region of said lightly doped source/drain regions, and to form a first spacer on a side wall of a first gate of said gates simultaneously. An ion implantation is performed by using the first spacer as a mask, so that a first heavily doped source/drain region is formed in the first lightly doped source/drain region. A doped poly-silicon layer is formed over the substrate, and a metal silicide layer is formed on the doped poly-silicon layer. The doped poly-silicon and the metal silicide layer are patterned to form a self-align contact.
Abstract:
FIG. 1 is a front perspective view of a RC dinosaur stunt car, showing my new design; FIG. 2 is a rear perspective view thereof; FIG. 3 is a front view thereof; FIG. 4 is a rear view thereof; FIG. 5 is a left side view thereof; FIG. 6 is a right side view thereof; FIG. 7 is a top view thereof; and, FIG. 8 is a bottom view thereof.
Abstract:
FIG. 1 is a front, left and top perspective view of a wagon, showing my new design; FIG. 2 is a rear, right and bottom perspective view thereof; FIG. 3 is a front view thereof; FIG. 4 is a rear view thereof; FIG. 5 is a left side view thereof; FIG. 6 is a right side view thereof; FIG. 7 is a top plan view thereof; FIG. 8 is a bottom plan view thereof; FIG. 9 is an enlarged view of portion shown in FIG. 1 thereof; FIG. 10 is an enlarged view of portion shown in FIG. 2 thereof; and, FIG. 11 is an enlarged view of portion shown in FIG. 2 thereof. The dot-dash broken lines depict the boundaries of the enlargements and form no part of the claimed design.
Abstract:
Systems and methods are disclosed for removing nano-particulates from a gas. The systems may include a chamber to contain the particulate-containing gas, a source of the gas, a source of water vapor, a source of a supersonic gas, and at least one ultrasonic transducer in contact with the chamber. The chamber may also include one or more receptacles to receive the particulates. The methods may include introducing the particulate-containing gas and the water vapor into the chamber. A gas may be introduced into the chamber at supersonic speeds thereby cooling the water vapor to form nucleating ice crystals. The ultrasonic transducers may then introduce ultrasonic power into the chamber thereby causing the particulates to contact the ice crystals. The nucleating crystals, with their attached particulates, may then fall under gravity to be captured in the receptacles.
Abstract:
A modular structural load bearing device including light-weight composite structural members each including an elongated body having at least one internal recess for a cable in the recess or series of recesses. Preassembled and presized composite support members and connectors can form a modular structure, such as a crane. When used, end pieces or other components on an end of the elongated body can secure a cable. For assembly of the structural load bearing apparatus, connectors can be used with composite structural members that are light-weight with relatively thin walls while providing enhanced benefits for resisting the combination of tension, compression and buckling forces.