Abstract:
An optical reader system and method are described herein that can detect a lateral and/or angular misalignment of one or more biosensors so that the biosensors can be properly re-located after being removed from and then reinserted into the optical reader system. In one embodiment, the biosensors are incorporated within the wells of a microplate.
Abstract:
A printhead module comprising a plurality of rows, each of the rows comprising a plurality of nozzles for ejecting ink, wherein the printhead module includes at least first and second rows configured to print ink of a similar type or color, and being configured such that, in the event a nozzle in the first row is faulty, a corresponding nozzle in the second row prints an ink dot at a position on print media at or adjacent a position where the faulty nozzle would otherwise have printed it.
Abstract:
A printhead module including: at least one row of print nozzles; at least first and second shift registers for shifting in dot data supplied from a data source, wherein each shift register feeds dot data to a group of nozzles, and wherein each of the groups of the nozzles is interleaved with at least one of the other groups of the nozzles.
Abstract:
A method of manufacturing a plurality of printhead modules, at least some of which are capable of being combined in pairs to form bilithic pagewidth printheads, the method comprising the step of laying out each of the plurality of printhead modules on a wafer substrate, wherein at least one of the printhead modules is right-handed and at least another is left-handed.
Abstract:
A method of expelling ink from a printhead module including at least one row that comprises a plurality of sets of n adjacent nozzles, each of the nozzles being configured to expel ink in response to a fire signal, the method comprising the steps of: (a) providing a fire signal to nozzles at a first and nth position in each set of nozzles; (b) providing a fire signal to the next inward pair of nozzles in each set; (c) in the event n is an even number, repeating step (b) until all of the nozzles in each set has been fired; and (d) in the event n is an odd number, repeating step (b) until all of the nozzles but a central nozzle in each set have been fired, and then firing the central nozzle.
Abstract:
A method of wirelessly transmitting or receiving a packet of information, and an apparatus to wirelessly transmit or receive a packet of information. In the case of transmitting, the method includes streaming a data element, including at least some of the contents of the packet, over a network link during transmit time, including encrypting the data element during the streaming in real time prior to the transfer over the network link. In the case of receiving, the method includes streaming a data element, including at least some of the contents of the received packet, over a network link during receive time, including decrypting the data element during the streaming in real time after to the transfer over the network link. The transmitting or receiving is by a station of a wireless network and the streaming is to or from the station from or to a network device coupled to the station by the network link.
Abstract:
A method of wirelessly transmitting or receiving a packet of information, and an apparatus to wirelessly transmit or receive a packet of information. In the case of transmitting, the method includes streaming a data element, including at least some of the contents of the packet, over a network link during transmit time. In the case of receiving, the method includes streaming a data element, including at least some of the contents of the received packet, over a network link during receive time. The transmitting or receiving is by a station of a wireless network and the streaming is to or from the station from or to a network device coupled to the station by the network link.
Abstract:
A wearable audio device in the form of eyeglasses includes actuators disposed the ear stems. The actuators, which can be in the form of buttons, and/or the ear stems, are configured to enhance the comfort of the users. For example, the buttons can be disposed on the upper surface of the ear stems with the lower surface having an enlarged surface so as to allow the user to pinch the ear stem to thereby counter-balance the actuation force used to depress the button.
Abstract:
A collating conveyor (4, 6) receives products (2) sequentially from a delivery point and collates them into groups (8). A pusher (9) transfers groups (8) of products from the collating conveyor (4, 6) to a receiving trough (10), where they are turned through a predetermined angle B. The collating conveyor (4, 6) is inclined to the horizontal and is provided with lugs (5, 7), each of which supports a stack (8) of products under the effect of gravity. A pick-and-place head (11) picks up a group (8) of products from the trough (10) by gripping and clamping the products (2) together.
Abstract:
An electric lock for remote access control to a container wherein a U-shaped latch is mounted on a door in alignment with a slot in a housing mounted in the container. Upon closure, the latch enters the housing to engage a slotted keeper therein and causes rotation of the keeper. Rotation of the keeper causes a release lever to engage a stepped protrusion on the keeper and secures the keeper and latch. Activation of a solenoid or drive motor coupled to the release lever permits withdrawal of the latch from the housing. The axes of rotation of the keeper and release lever are located to greatly reduce the impact of pre-release forces to the door.