Abstract:
A system for detecting the level of a media supply in a printer has a frame having a support for seating the printer thereon. A first light source is positioned on the support and is energizable to direct a first beam of light into the printer. A first detector is positioned on the support and provides an analog signal in response to reflection of the first beam of light from within the printer. A control logic processor is in signal communication with the first detector and compares the analog signal to a stored/predetermined value and reports a low media condition according to the comparison.
Abstract:
Disclosed are a paper discharging mechanism and printing device having the same. The paper discharging mechanism includes: a frame provided with a paper outlet thereon; a swinging rack, configured to be swingable relative to the frame; a conveying roller assembly provided on the swinging rack; a first drive assembly, which is in a transmission connection with the conveying roller assembly and configured to drive the same to deliver a paper to the paper outlet; a first detection assembly, configured to detect a position of the swinging rack relative to the frame; the swinging rack swings in a direction away from the paper outlet when the paper outlet is blocked.
Abstract:
A printer apparatus includes a printer main body having a platen roller and a print head to print on recording paper, a cutter unit configured to cut the recording paper, and a presenter unit connected to the cutter unit, wherein the recording paper on which the print head has printed enters the presenter unit through the cutter unit, and comes out from a discharge slot of the presenter unit, wherein the presenter unit includes a first roller and a second roller configured to convey the recording paper placed therebetween, and a flapper disposed along a transportation path of the recording paper between the cutter unit and both the first roller and the second roller, and configured to be flipped open to an outside of the presenter unit to expose the transportation path, wherein an angle at which the flapper is open is selectively set to one of a plurality of different angles.
Abstract:
A paper money processing device is provided with: a storage unit for forming a storage space in which paper money is layered and stored; a conveyance mechanism for conveying paper money to the storage unit; and a movable piece capable of emerging and sinking the storage space, the movable piece being provided in a direction orthogonal to the conveyance direction of the paper money conveyed by the conveyance mechanism. Conveyance is stopped in a position where the trailing end part of the paper money to be conveyed to the storage unit by the conveyance mechanism is facing the moveable piece, the trailing end part of the paper money in a position facing the moveable piece is thereafter moved to the storage space side and the paper money is layered and stored in the storage space by the emerging/sinking operation of the movable piece.
Abstract:
Apparatus and methods for a stacking purge-bin (“SPB”) are provided. The SPB may be configured to rotate. The SPB may include a plurality of receiving sections. One or more tangible items retracted by the SSK may be stored in each receiving section. Rotating the SPB between each retraction may prevent tangible items from two consecutive retractions from being stored in a single receiving section. Preventing tangible items from two consecutive retractions from being stored in a single receiving section may allow each tangible item to be associated with transaction information corresponding to a retraction. The SPB may store separators. A separator may be inserted between tangible items received from two consecutive retractions. Separating between tangible items received from two consecutive retractions may allow each tangible item to be associated with transaction information corresponding to a retraction. Transaction information associated with a retraction may be marked on the separator.
Abstract:
Apparatus and methods for a stacking purge-bin (“SPB”) are provided. The SPB may be configured to rotate. The SPB may include a plurality of receiving sections. One or more tangible items retracted by the SSK may be stored in each receiving section. Rotating the SPB between each retraction may prevent tangible items from two consecutive retractions from being stored in a single receiving section. Preventing tangible items from two consecutive retractions from being stored in a single receiving section may allow each tangible item to be associated with transaction information corresponding to a retraction. The SPB may store separators. A separator may be inserted between tangible items received from two consecutive retractions. Separating between tangible items received from two consecutive retractions may allow each tangible item to be associated with transaction information corresponding to a retraction. Transaction information associated with a retraction may be marked on the separator.
Abstract:
A medium handover device is provided including: a fixed peripheral side section that covers portions of side faces enclosing a periphery of a collection space in which a paper sheet shaped medium is collected, other than at least a portion of an opposing side face opposing a medium support section supporting the medium inside the collection space, which portion is open, and other than at least a portion of an adjacent side face adjacent to the opposing side face, which portion is open; a lid section that has a shape covering portions of the side faces enclosing the periphery of the collection space that are not covered by the fixed peripheral side section; a transition section that transitions the lid section to enable the lid section to adopt a closed state with respect to the fixed peripheral side section in which the lid section is close to or abutting the fixed peripheral side section and the collection space is closed, and to adopt an open state with respect to the fixed peripheral side section in which at least a portion of the lid section is separated from the fixed peripheral side section and the collection space is opened; and a transfer section that transfers the medium between an interior and an exterior of the collection space.
Abstract:
The invention relates to a device (10, 40, 80) for dispensing notes of value (52) comprising a dispensing unit (16) for dispensing a stack of notes of value (54) and a supply transport arrangement (26) for individually supplying the notes of value (52) to be dispensed to a collecting unit (28) for collecting and stacking the notes of value (52). The collecting unit (28) comprises a stacking unit (46) and a support element (50) that is stationarily arranged, wherein the stacking unit (46) stacks the notes of value (52) onto the support element (50) to the stack of notes of value (54). Further, the collecting unit (28) comprises a press-on element (62) that is stationarily arranged and that can be swiveled and that during stacking the notes of value is arranged in a swiveled-away position, and for dispensing the stack of notes of value is arranged in a swiveled-on position.
Abstract:
A medium transport direction switching mechanism may be provided of a simple configuration which is capable of switching the transport direction of a transported information recording medium. One end may be a biasing member for biasing a pinch roller toward a transport roller engages a support shaft which supports the pinch roller, whereas the other end of the biasing member engages a retaining member which retains the support shaft. In the medium transport direction switching mechanism, rotational behavior of the pinch roller centering upon a rotational center of the transport roller is possible between a first facing position and a second facing position, wherein the pinch roller moves to the first facing position when the transport roller rotates positively, and moves to the second facing position when the transport roller rotates negatively.
Abstract:
An image forming apparatus includes: an image forming unit forming an image on a recording medium; a first transportation route that forms a transportation route for the recording medium extending to an outside of the apparatus, and that has a transportation route length longer than a maximum length in a transportation direction of the recording medium, the transportation route length being from an image formation functional unit at a most downstream portion of the image forming unit in the transportation direction to an output position of the recording medium; and a recording medium transportation unit that, upon output of a part of the recording medium from the first transportation route, stops the transportation in a state of holding a remaining part of the recording medium in the first transportation route, and outputs the recording medium to the outside in accordance with pull out operation for the stopped recording medium.