Abstract:
A laser marker includes: a base including: a first guide portion; and a restriction part; a laser oscillator configured to emit laser light, the laser oscillator being removably mounted to the base by sliding in a mounting direction with being placed on the base, the laser oscillator including: a second guide portion extending in the mounting direction, the second guide portion being configured to be engaged with the first guide portion; a contact part configured to be in contact with the restriction part in a case the laser oscillator is mounted to the base; and an expander; and a scanner having an insertion part, the expander being inserted into the insertion part in a case the laser oscillator is mounted to the scanner, and the scanner being configured to scan the laser light emitted from the laser oscillator.
Abstract:
A printing apparatus includes: a liquid storage part; a conveying unit; an image recording unit including a platen; a cutting unit; and a controller, wherein the controller cuts a recording medium by moving the cutting unit to an outer side of the platen in a scanning direction intersecting a conveying direction of the recording medium, wherein, on the outer side of the platen in the scanning direction, a standby position for the cutting unit to stand by is arranged adjacent to the liquid storage part in a front-rear direction of the printing apparatus, and wherein at least a part of the cutting unit at the standby position is disposed such that a position thereof in a width direction of the printing apparatus overlaps the liquid storage part in a plan view of the printing apparatus as viewed from front.
Abstract:
In a laser machining apparatus, a scanner is configured to scan a laser beam emitted from a laser beam emission device. A first part of a workpiece is exposed through an opening formed in the workpiece. A controller is configured to perform: acquiring shape data indicative of a shape of the workpiece; acquiring machining pattern data indicative of a machining pattern to be machined on the first part; acquiring a length of the machining pattern based on the machining pattern data; calculating an unmachinable position on a setting surface using the length and the shape data, the unmachinable position resulting from a second part of the workpiece hindering the laser beam reaching the first part, at least a part of the machining pattern being unmachinable on the first part in a state where the workpiece is set on the unmachinable position; and displaying the unmachinable position on a display.
Abstract:
A supply apparatus includes a tank having a front wall, and an inlet via which liquid is poured into the tank; and a cover covering a part of the tank including the front wall, and being formed with an opening to partially expose the front wall of the tank. When the supply apparatus is viewed from the front wall side of the tank, the inlet of the tank and the opening of the cover are arranged to align in an up/down direction. The cover has a first liquid flow channel formed at a periphery of the opening in an inner surface facing the front wall of the tank, and the first liquid flow channel is arranged between the inlet and the opening in the up/down direction.
Abstract:
A multi-function apparatus includes a body, an image reading unit, a document cover and a locking member. The image reading unit is movable between a closed position and an opened position. The document cover is movable between a closed position and an opened position. The locking member is movable to a first position and a second position and includes a first engagement portion and a second engagement portion. In response to a movement of the document cover to the opened position, the locking member moves to the first position and locks the image reading unit to the closed position. In response to a movement of the image reading unit to the opened position, the locking member moves to the second position and locks the document cover to the closed position.
Abstract:
An image recording apparatus includes an operation panel, a sheet conveyor, a print head, a cutting device, and a sheet discharge port. The operation panel is disposed at a first-side face of a housing in a particular direction that extends from a first side to a second side of the image recording apparatus. The sheet conveyor is configured to convey a sheet along a conveyance path in a conveyance direction. The print head is disposed downstream of the sheet conveyor in the conveyance direction. The cutting device has a cutter for cutting the sheet. The sheet discharge port is open at the first-side face of the housing. At least a part of the sheet passes through the sheet discharge port when the sheet is discharged from the conveyance path. The cutter positioned below the operation panel is exposed to an outside of the housing through the sheet discharge port.
Abstract:
A laser machining apparatus includes: a laser beam emission device; a visible laser beam emission device; a scanner; and a controller. The controller is configured to perform: generating machining data including coordinate data representing a machining pattern to be machined on a workpiece; machining the workpiece with a laser beam according to the machining data by controlling the laser beam emission device and the scanner; generating, in response to receiving a resuming command after the machining has been halted at a stopping position, a guide pattern based on a stopping point coordinate and the machining data, the guide pattern being used for resuming the machining from the stopping position, the stopping point coordinate indicating the stopping position and being determined by the coordinate data; and projecting the guide pattern onto the workpiece with a visible laser beam by controlling the visible laser beam emission device and the scanner.
Abstract:
An inkjet recording apparatus, including an ink cartridge, an ink cartridge container, a tray with a supporting surface, and a slider member, is provided. The slider member is slidable on the supporting surface along a first direction, which is an orientation from a front side toward a rear side of the inkjet recording apparatus, or a second direction, which is an orientation orthogonal to the first direction. The ink cartridge container includes a container compartment to contain the ink cartridge in a position on at least one of an upstream side and a downstream side of the slider member with regard to the second direction, and a bridging section connected with the container compartment and placed on an upstream side of the slider member with regard to the first direction in a position to spread over the slider member with regard to the second direction.
Abstract:
An image recording apparatus includes a housing, an operation panel, a sheet conveyor, a recording device, and a cutting device. The operation panel is disposed at a first-side face of the housing in a first direction. The first direction is orthogonal to a vertical direction and extends from a first side to a second side of the image recording apparatus. In the first direction, the cutting device is closer to the first side of the image recording apparatus than the recording device is and closer to the second side of the image recording apparatus than the operation panel is. The cutting device includes a cutter, and a cutter carriage to move with the cutter mounted thereon along a second direction orthogonal to the first direction and the vertical direction. The operation panel overlaps a movable area of the cutter carriage when viewed in the first direction.
Abstract:
An image recording apparatus includes a recording unit, first and second rollers, a guide member, and a cutting unit. The recording unit performs image recording on a sheet conveyed in a conveying direction on a first conveyance path. The first roller is located further downstream than the recording unit in the first conveyance path. The second roller is located further downstream than the first roller in the first conveyance path. The guide member has a guide surface that forms a second conveyance path extending from a connection position of the first conveyance path between the first roller and the second roller. The cutting unit is located between the connection position and the second roller, cuts a sheet, and has a cutter. The guide member changes in posture between a first posture for forming the second conveyance path and a second posture for opening the second conveyance path.