Patent classifications
B41J2/1404
LIQUID EJECTION MODULE AND LIQUID EJECTION HEAD
Provided is a liquid ejection module capable of enhancing the strength of an orifice plate while achieving favorable ejection operation at each ejection port. To that end, the liquid ejection module includes a functional layer in which a plurality of energy generating elements are arranged, a flow channel forming layer in which pressure chambers, individual flow channels, and a common flow channel are formed, and an orifice plate having ejection ports formed therein. The functional layer, the flow channel forming layer and the orifice plate are stacked. In the flow channel forming layer, a beam is formed, extending from a flow channel wall of the common flow channel toward the individual flow channels and supporting the orifice plate in a region facing a first opening.
Liquid Droplet Discharging Head
A liquid droplet discharging head includes a channel unit having nozzles and pressure chambers in respective communication with the nozzles, and a piezoelectric element having a vibration plate arranged on an upper surface of the channel unit to cover the pressure chambers and a piezoelectric layer arranged on an upper surface of the vibration plate. The pressure chambers have a length L longer than its width, and the channel unit has the nozzles and the pressure chambers aligned at a density of 300 dpi or higher in a conveyance direction. The length L of the pressure chambers and the diameter D of nozzle holes of the nozzles satisfy this relation or condition: 35≤L/D≤50.
UNSUPPORTED TOP HAT LAYERS IN PRINTHEAD DIES
In example implementations, a printhead die is provided. The printhead die includes a substrate, a chamber layer formed on the substrate, a plurality of printing fluid ejection chambers coupled to opposite sides of the chamber layer and along a length of the chamber layer, and a top hat layer formed on the chamber layer and the plurality of printing fluid ejection chambers. The chamber layer includes a void to store printing fluid. The top hat layer includes an initial unsupported top hat layer portion over the void, wherein the initial unsupported top hat layer portion comprises a first end that is narrower than a second end.
Printing apparatus
A printing apparatus includes a print head provided with a discharge port that discharges liquid and a pressure chamber filled with the liquid to be discharged from the discharge port, and configured to perform a printing operation by discharging the liquid from the discharge port based on print data, includes a circulation unit that performs circulation of the liquid in a circulation passage including the pressure chamber in a state where the printing operation is performed, and includes a control unit that controls the circulation unit to continue the circulation for a predetermined time after the printing operation is completed.
CIRCULATION PATH FOR BUBBLER
In some examples, a fluid dispensing device includes an inner chamber to contain a fluid. The fluid dispensing device further includes an orifice layer comprising a bubbler orifice to draw air through a bubbler chamber to the inner chamber responsive to a pressure satisfying a criterion, the bubbler chamber being adjacent the bubbler orifice. A circulation path circulates fluid drawn through a feed hole through the bubbler chamber.
LIQUID EJECTION HEAD AND MANUFACTURING METHOD OF LIQUID EJECTION HEAD
A liquid ejection head includes ejection orifices for ejecting liquid, common liquid chambers connected to the ejection orifices, common flow passages, and pitch conversion flow passages that connects the common flow passages and liquid chambers to each other. The pitch conversion flow passages includes a periphery formed with resin. In a case where a number of pitch conversion flow passages in a group is minimum on a condition that one or more of the pitch conversion flow passages are respectively included in the group, the pitch conversion flow passages have a repeating pattern in which the group is repeatedly arranged. At least one of two pitch conversion flow passages adjoining an m-th pitch conversion flow passage (m is all integers from 1 to n−2, where n is an integer of 3 or more) is one of first to (m+1)-th pitch conversion flow passages.
Liquid ejection head
A liquid ejection head includes a flow channel structure, a supply channel structure, and a particular heater. The flow channel structure defines an ejection channel that leads liquid toward a plurality of nozzles arranged in a nozzle row along a first direction. The supply channel structure defines a supply channel configured to allow liquid to flow therefrom to the ejection channel. The particular heater is configured to heat liquid. The flow channel structure is made of inorganic material having a higher thermal conductivity than material used for the supply channel structure. The flow channel structure includes an end portion protruding outward relative to a side surface of the supply channel structure. The particular heater is disposed at the end portion of the flow channel structure.
Liquid ejection head
A liquid ejection head includes an ejection orifice forming member having a liquid ejection orifice and a substrate having a liquid flow path such that a liquid circulation flow path is formed between the ejection orifice forming member and the substrate. The liquid circulation flow path includes a bubble generation chamber facing the liquid ejection orifice and is branched from the liquid flow path so as to pass through the bubble generation chamber and join the liquid flow path. The substrate has an ejection energy generation element arranged to face the bubble generation chamber and a circulation energy generation element arranged at a different position to face the liquid circulation flow path. The gap between the ejection energy generation element and the ejection orifice forming member is different from the gap between the circulation energy generation element and the ejection orifice forming member.
LIQUID EJECTION HEAD, METHOD OF OPERATING LIQUID EJECTING HEAD, AND LIQUID EJECTION APPARATUS
A liquid ejection head includes a plurality of flow paths. The plurality of flow paths includes a first flow path through which a first liquid flows and a second flow path disposed adjacent to the first flow path. A second liquid, having higher average spectral reflectance at a wavelength in a visible light region than the first liquid, flows through the second flow path. When pressure is applied to the first liquid, the pressure applied to the first liquid in the first flow path is lower than pressure applied to the second liquid in the second flow path.
Fluid recirculation channels
A fluid recirculation channel for dispensing a plurality of fluid drop weights includes a number of sub-channels. The sub-channels include at least one pump channel, and a plurality of drop generator channels fluidically coupled to the at least one pump channel. The fluid recirculation channel further includes a number of pump generators incorporated into the at least one pump channel, a number of drop generators incorporated into drop generator channels, and a plurality of nozzles defined within the drop generator channels, the nozzles being at least as numerous as the number of drop generators.