Abstract:
Methods and apparatus for bursting perforated paper stock are provided. A feed mechanism is provided for feeding perforated paper stock in a feed direction along a paper path in a printer. The perforated paper stock has sections separated by perforations. A loop area is provided in the printer for accumulating one of the sections of the perforated paper stock. A burst element is provided for bursting a perforation of the accumulated section. In order to burst the perforation of the accumulated section, the feed direction is reversed to draw the perforation of the accumulated section against the burst element, thereby separating the section from the perforated paper stock. A paper dispensing mechanism is provided for advancing the separated section out of the loop area and dispensing the section from the printer.
Abstract:
Methods are provided for driving sheets through a transaction-based printer. A sheet drive forwards a sheet through a printing station to a cutting station where the sheet is severed from a spool by a cutter. Movement of a kicker element is coordinated with that of the cutter so that the severed sheet is kicked into a bin located in the top cover of the printer. The printer can be, for example, an ink-jet, dot matrix, dye sublimation or thermal printer used to print tickets, vouchers, coupons or the like.
Abstract:
A transaction-based printer has a sheet drive for forwarding a sheet through a printing station to a cutting station where the sheet is severed from a spool by a rotary cutter. A kicker element is mounted in the cutting station. Movement of the kicker element is coordinated through the cutter drive with that of the rotary cutter so that the severed sheet is kicked into a bin located in the top cover of the printer. The printer can be, for example, an ink-jet, dot matrix, dye sublimation or thermal printer used to print tickets, vouchers, coupons or the like.
Abstract:
A system for interconnecting discrete rigid member mating components creates different stable, freestanding three-dimensional figures such as robots. The mating components are positioned in tandem employ an elastic element through bores and each mating component has at least one slot that is aligned with a corresponding slot formed on adjacent mating component or body. The arrangement of the slots and elastic element permits each mating components to be maneuvered onto an adjacent mating component and retains its position without the use of hinges or other securing devices. A reconfigurable toy is constructed by interconnecting a plurality of different sized mating components. The mating components can thus be rearranged to form different-shaped figures including a robot that is reversibly transformable between a first configuration, which can comprise a myriad of forms, and a second configuration that is a cube.
Abstract:
A system for precisely centering a workpiece within a cylindrical bore such that the center of the workpiece is coaxial with the central axis of the bore. An arbor is used within the cylindrical bore to sense and calculate the location of the central axis. The position of the workpiece is also sensed so that it can be aligned with the central axis. A computer system is used to perform the calculations and provide an indication of alignment of the workpiece and the central axis. The position of the central axis and the workpiece are found via a location determining system that may incorporate electromechanical and optical position sensing systems. For instance, a plurality of light transmitters and light receivers may be used to generate and transmit beams of light used in determining positions. The apparatus has particular application to free piston machines, and particularly free piston coolers.
Abstract:
A method and system for precisely centering a workpiece within a cylindrical bore such that the center of the workpiece is coaxial with the central axis of the bore. An arbor is used within the cylindrical bore to sense and calculate the location of the central axis. The position of the workpiece is also sensed so that it can be aligned with the central axis. A computer system is used to perform the calculations and provide an indication of alignment of the workpiece and the central axis. The position of the central axis and the workpiece are found via a location determining system that may incorporate electromechanical and optical position sensing systems. For instance, a plurality of light transmitters and light receivers may be used to generate and transmit beams of light used in determining positions. The method has particular application to free piston machines, and particularly free piston coolers.