Patent classifications
B41J29/12
SUPPLY DEVICE, PROCESSING DEVICE, CONTROL METHOD AND PROGRAM
A supply device configured to supply a medium to a processing unit configured to perform processing on the medium, the supply device including an accommodating unit configured to accommodate a plurality of the media in a state of being stacked therein and a vibration imparting unit configured to contact ends of the plurality of media accommodated in the accommodating unit to impart vibration to the medium.
FLOATING PRINTHEAD SHIELD
Examples for of a floating printhead shield for a printing device are described herein. In some examples, a printhead shield may be located between a printhead and a print zone. When in a printing position the printhead shield may engage the printhead. When in a retracted position the printhead shield may separate from the printhead.
WORK SYSTEM AND RECORDING APPARATUS
A work system includes a recording apparatus including a transport belt that is provided with an adhesive configured for attachment of a medium, and is configured to transport the medium, and a main body portion in which a recording portion configured to perform recording on the medium is accommodated, a cover that covers at least a part of an exposed part of the transport belt exposed from the main body portion, and a removing portion configured to remove gas in a space covered with the cover.
PRINTER
A printer includes: a board including a connector unit that includes at least a power supply connector into which a power cable is to be removably inserted; and a housing including: a housing main body that accommodates the board and includes a cable connection groove through which the power cable is inserted in an inserting and removing direction of the power cable; and a connector cover configured to cover the cable connection groove, wherein the connector cover includes: a cover main body including a power supply opening portion passing through the cover main body in the inserting and removing direction, and a first interface opening portion passing through the cover main body in the inserting and removing direction; and a first opening cover portion configured to cover at least a part of the first interface opening portion, wherein the first opening cover portion includes a first coupling portion configured to couple the first opening cover portion and the cover main body to each other.
Recording apparatus
A recording apparatus includes a carriage having a recording head and an ink tank that stores ink to be supplied to the recording head, which are mounted on the carriage, wherein the ink tank has an inlet port provided in an upper part of the ink tank, and a prism provided in a lower part of the ink tank, the recording apparatus includes a sensor located under the carriage and having a light-emitting portion that emits light toward the prism and a light-receiving portion that receives light reflected by the prism, and, when the carriage is located at an ink replenishment position where the ink in the ink tank is replenished via the inlet port, the sensor is disposed at a position hidden by the carriage in plan view of the carriage as viewed from above the carriage.
Climate control of direct printing machines
The present disclosure relates to a device for climate control of an interior of a machine in a food and beverage industry. The device includes an air discharge system for discharging air from the interior of the machine. The air discharge system includes a first air extraction duct configured for first selective extraction of contaminated air or second selective extraction of high-temperature air or at least two separate air extraction ducts including a first air extraction duct configured for the first selective extraction of the contaminated air and a second air extraction duct configured for the second selective extraction of the high-temperature air. The device further includes an air supply system for supplying air to the interior of the machine. The supplied air includes at least one of fresh air or purified extracted air.
Climate control of direct printing machines
The present disclosure relates to a device for climate control of an interior of a machine in a food and beverage industry. The device includes an air discharge system for discharging air from the interior of the machine. The air discharge system includes a first air extraction duct configured for first selective extraction of contaminated air or second selective extraction of high-temperature air or at least two separate air extraction ducts including a first air extraction duct configured for the first selective extraction of the contaminated air and a second air extraction duct configured for the second selective extraction of the high-temperature air. The device further includes an air supply system for supplying air to the interior of the machine. The supplied air includes at least one of fresh air or purified extracted air.
Dummy Cartridge
A dummy cartridge includes a body having an external shape dimensioned to be received in a cartridge pocket, and a handle integrated into the body, with cavities provided in the body on two opposite sides of the handle; wherein the cavities are dimensioned to allow insertion of a human thumb and/or finger on the two opposite sides of the handle for gripping the handle.
Dummy Cartridge
A dummy cartridge includes a body having an external shape dimensioned to be received in a cartridge pocket, and a handle integrated into the body, with cavities provided in the body on two opposite sides of the handle; wherein the cavities are dimensioned to allow insertion of a human thumb and/or finger on the two opposite sides of the handle for gripping the handle.
Printer
A printer includes, a printing portion configured to print on a print medium, a ribbon supply shaft configured to hold an ink ribbon to be supplied to the printing portion, a ribbon roll up shaft configured to roll up the ink ribbon used in the printing portion, a partition member provided swingably, the partition member partitioning the ink ribbon and the print medium; and a ribbon supply shaft lock mechanism configured to regulate rotation of the ribbon supply shaft, wherein the ribbon supply shaft lock mechanism is switched between a lock state where the rotation of the ribbon supply shaft is regulated and a non-lock state where the rotation of the ribbon supply shaft is permitted in conjunction with swing actions of the partition member.