Abstract:
The present invention relates to an aqueous sublimation transfer ink composition. The sublimation transfer ink composition comprises a polysaccharide. The present invention further relates to a method of preparing said ink composition. The present invention also relates to a method for providing an image onto a receiving medium.
Abstract:
In order to enable simple and easy handling of a large number of large format sheets, an output assembly is provided. The output assembly comprises a lower output tray element for receiving the sheets. In order to reliably transport and deposit a large format sheet from the printing device onto the lower output tray element, a guide element is provided just below an output opening of the printing device such to guide a leading edge of the sheet onto the lower output tray element. Once the leading edge is supported by the lower output tray element, the guide element is retracted such to enable a trailing edge to be deposited on the lower output tray element.
Abstract:
In a method for printing a functional pattern using a printing apparatus, the printing apparatus applying a recording material on a substrate, the method includes determining a first part and a second part of the functional pattern, and controlling the printing apparatus such to apply a first amount of the recording material per unit area on the substrate to cover the first part and a second amount of the recording material per unit area on the substrate to cover the second part, wherein the first amount is larger than or equal to an amount sufficient to cover the substrate per unit area and the second amount is larger than the first amount. A printing apparatus includes a print head and a control unit. The control unit is configured to have the printing apparatus to execute the method for printing.
Abstract:
A print head mounting assembly for mounting and positioning an inkjet print head on a print head support structure includes a first clamping mechanism for clamping the inkjet print head in a first direction and a second clamping mechanism for clamping the inkjet print head in a second direction, the second direction being substantially perpendicular to the first direction. In order to ease adjustment of the position of the print head, the second clamping mechanism includes an adjustment mechanism for adjusting the position of the print head in the second direction and a release mechanism for releasing the first clamping mechanism, the release mechanism being arranged that the release mechanism is to be operated for operating the adjustment mechanism.
Abstract:
A droplet ejection device includes a pressure chamber; a nozzle orifice arranged in fluid connection with the pressure chamber; an actuator system for generating a pressure wave in a liquid present in the pressure chamber; and an obstruction member arranged in the pressure chamber in a position opposite to the nozzle orifice. The obstruction member comprises a first surface facing the nozzle orifice and rigidly coupled to a wall of the pressure chamber via a support. The support is arranged near the first surface of the obstruction member. The droplet ejection device according to the present invention may further comprise a structured nozzle inflow means which provides a gradual transition from the hollow shaped liquid passage to the nozzle orifice. The droplet ejection device prevents or at least mitigates air entrapment in dead volumes present in the interior of the droplet ejection device.
Abstract:
A method for displaying a plurality of individual digital images to be printed on a roll of media includes constructing a composed digital image representing the roll and including a plurality of representations of the individual digital images to be printed on the roll in a sequence order corresponding to the time sequence order of printing the plurality of individual digital images on the roll, constructing a time line along the composed digital image, the time line indicating a start time and/or a completion time and/or a time duration of the printing of an image of the plurality of individual digital images on the roll, and displaying at least a part of the composed digital image on the user interface. The composed digital image is scrollable on a user interface in order to scroll through the plurality of representations of the individual digital images, and each displayed representation of an individual digital image of the composed digital image is displayed wholly along a part of the time line, which part starts at the start time of printing of the individual digital image on the roll and ends at the completion time of printing of the individual digital image on the roll. A printing system is configured to apply the method.
Abstract:
A printer and a method of printing by depositing liquid droplets (26) onto a substrate (12), wherein a line is printed in a printing direction (B), wherein the droplets (26) forming the line are continuously printed wet-on-wet, and wherein, at least in a middle part of said line, the droplets (26) are printed according to a regular droplet pattern, and wherein, at least in one end part of the line, at least an outermost droplet (26) of the line is printed deviating from the regular droplet pattern, thereby adapting the continuously wet-on-wet printed line for compensating for ink flow behavior which causes deviation from the image to be printed.
Abstract:
A computer implemented method is provided for managing a plurality of image processing devices, the method comprising the steps of: an image processing device sending a status update to a monitoring device, the monitoring device having a first location; determining a second location of a mobile device; determining a monitoring distance between the second location of the mobile device and the first location of the monitoring device; and determining in response to the monitoring distance whether to issue a warning on the mobile device concerning the status update of the image processing device. The method provides that the mobile device is not overwhelmed by warnings regarding status updates from the image processing devices.
Abstract:
The invention relates to a hot melt ink composition, the hot melt ink composition being solid at room temperature and in a liquid state at an elevated temperature, comprising a binder, a colorant, a crystalline material, and a crystallization retardant, wherein the crystalline material is a di-substituted compound and the crystallization retardant is a mono-substituted derivative of the crystalline material. The invention further relates to a method for preparing such hot melt compositions and to use of a hot melt ink composition.
Abstract:
A substrate plate is provided for at least one MEMS device to be mounted thereon. The MEMS device has a certain footprint on the substrate plate, and the substrate plate has a pattern of electrically conductive leads to be connected to electric components of the MEMS device. The pattern forms contact pads within the footprint of the MEMS device and includes at least one lead structure that extends on the substrate plate outside of the footprint of the MEMS device and connects a number of the contact pads to an extra contact pad. The lead structure is a shunt bar that interconnects a plurality of contact pads of the MEMS device and is arranged to be removed by means of a dicing cut separating the substrate plate into a plurality of chip-sized units. At least a major part of the extra contact pad is formed within the footprint of one of the MEMS devices.