Abstract:
A container is disclosed that includes a pre-formed tear line defining a dispensing aperture that tears with appropriate mechanical manipulation, to form a dispensing aperture with the container portion corresponding to the dispensing aperture being bent inside the container; and a filter attached to the inside of the container and located at least partly adjacent the dispensing aperture such that the filter allows egress of fluid through the dispensing aperture whilst preventing ingress of contaminants. In one embodiment, the filter comprises a safety portion which makes it impossible for the filter to fall through the dispensing aperture. In another embodiment, the filter is resilient and deforms during the bending of the container portion corresponding to the dispensing aperture, and subsequently returns to its initial configuration; and wherein the filter includes at least two limbs which may deform independently so to assist the filter in returning to its initial configuration.
Abstract:
An optical interrogation system is described herein that can interrogate a label-independent-detection (LID) biosensor and monitor a biological event on top of the biosensor without suffering from problematical parasitic reflections and/or problematical pixelation effects. In one embodiment, the optical interrogation system is capable of interrogating a biosensor and using a low pass filter algorithm to digitally remove problematic parasitic reflections contained in the spectrum of an optical resonance which makes it easier to determine whether or not a biological event occurred on the biosensor. In another embodiment, the optical interrogation system is capable of interrogating a biosensor and using an oversampling/smoothing algorithm to reduce oscillations in the estimated location of an optical resonance caused by the problematical pixelation effect which makes it easier to determine whether or not a biological event occurred on the biosensor.
Abstract:
A pagewidth inkjet printer is provided having a pagewidth printhead which has a plurality of printhead modules mounted end to end on a carrier to extend across a pagewidth with each printhead module incorporating a plurality of inkjet nozzles and the nozzles of at least one of the printhead modules being rotationally displaced relative to the carrier, and a printer controller for communicating ink dot data to the inkjet nozzles in accordance with a cumulative correction factor for each printhead module. The printer controller measures the amount of rotational displacement of the rotationally displaced printhead module to determine the cumulative correction factor to at least partially compensate for the rotational displacement.
Abstract:
A printhead is provided having elongate printhead modules arranged parallel to each other to extend across a pagewidth and controllers for processing print data into dot data and for controlling the printhead modules in accordance with the dot data. Each printhead module has plural ink ejection nozzles. At least one of the printhead modules is longer than the other printhead modules. The controllers control ink ejection of the nozzles of the printhead modules in accordance with the dot data. At least one of the controllers is arranged to control all of the printhead modules and at least one other of the controllers is arranged to control only one of the printhead modules. Each controller has serial outputs for supplying the dot data for channels of the associated printhead module or modules.
Abstract:
A printhead is provided which has a plurality of rows of print nozzles. Each row has first and second drive circuitry for each nozzle respectively positioned at opposite sides of each nozzle with respect to the row. The respective positions of the first and second circuitry of each nozzle of each row are rotated 180 degrees relative to the respective positions of the first and second circuitry of each nozzle in each adjacent row.
Abstract:
A hand-operated printer includes a body, a printhead mounted to the body, a target sight mounted to the body, and a display device mounted to the body. The display device is configured to display an image and a representation of the target sight in relation to the image, and wherein the relation between the representation of the target sight and the image that are displayed on the display device corresponds to a relationship between the target sight and a print position for the image.
Abstract:
An inkjet printhead is provided having elongate printhead modules arranged to successively abut one another at respective longitudinal ends with a vertical offset and controllers for controlling the printhead modules. Each module has a plurality of ink ejection nozzles. A first controller is configured to receive and process print data to generate first ink dot data and a second controller is configured to receive and process print data to generate second ink dot data and to generate third ink dot data including the second dot data and at least some of the first dot data. The first controller is arranged to output the first dot data to at least a first printhead module and the second controller. The second controller is arranged to output the third dot data to at least a second printhead module which abuts the first printhead module.
Abstract:
An optical reader system is described herein that uses a scanned optical beam to interrogate a biosensor to determine if a biomolecular binding event occurred on a surface of the biosensor. In one embodiment, the optical reader system includes a light source, a detector and a processor (e.g., computer, DSP). The light source outputs an optical beam which is scanned across a moving biosensor and while this is happening the detector collects the optical beam which is reflected from the biosensor. The computer processes the collected optical beam and records the resulting raw spectral or angle data which is a function of a position (and possibly time) on the biosensor. The processor can then analyze the raw data to create a spatial map of resonant wavelength (peak position) or resonant angle which indicates whether or not a biomolecular binding event occurred on the biosensor. Several other uses of the raw data are also described herein.
Abstract:
A printer controller for supplying print data to at least one printhead module capable of printing a maximum of n of channels of print data, the at least one printhead module being configurable into: a first mode, in which the printhead module is configured to receive data for a first number of the channels; and a second mode, in which the printhead module is configured to receive print data for a second number of the channels, wherein the first number is greater than the second number; wherein the printer controller is selectively configurable to supply dot data for the first and second modes.