Abstract:
A recording apparatus includes a light irradiation unit including a light emitting element row having therein a plurality of light emitting elements aligned in the same direction as a nozzle row, and a fault detection unit that detects whether there is a fault in each of the light emitting elements. The light emitting elements apply light to a photoreactive liquid discharged onto a recording target material. The light irradiation unit includes a plurality of the light emitting element rows arranged therein. When the fault detection unit detects a fault in a light emitting element, operation enters a fault mode where the light emitting element row to which the faulty light emitting element belongs is turned off and recording is performed with the remaining light emitting element rows.
Abstract:
The invention provides a fluid ejecting apparatus that includes: an apparatus body; and a plurality of fluid ejecting heads that can eject fluid onto a fluid ejection target medium. In the configuration of the fluid ejecting apparatus according to an aspect of the invention, at least one of the plurality of fluid ejecting heads can move in a predetermined direction that intersects the transport direction of the fluid ejection target medium so as to change the relative positions of the plurality of fluid ejecting heads as viewed in the predetermined direction that intersects the transport direction of the fluid ejection target medium.
Abstract:
A fluid ejecting apparatus includes a fluid ejecting head having nozzle rows formed by a plurality of nozzles, in which a fluid is ejected from the nozzle rows. The fluid ejecting apparatus includes a linear absorbing member which extends along the nozzle row, is installed so as to move from one side of the nozzle row to the other side, and absorbs the fluid ejected from the nozzles, the linear shaped absorbing member absorbing the fluid ejected from the nozzles, a running mechanism which runs the absorbing member from the one side of the nozzle row to the other side, a detection mechanism which detects a running speed of the absorbing member run by the running mechanism, and an adjustment unit which adjusts the running speed of the absorbing member run by the running mechanism based on the running speed of the absorbing member detected by the detection mechanism.
Abstract:
Provided is a fluid ejecting apparatus including: a fluid ejecting head; a receiving member which is linear; a support member which supports the receiving member so as to extend in a linear shape; a support member movement unit which moves the support member between first and second positions so that the receiving member is located at a receiving position capable of receiving the fluid ejected from the nozzles at the first position, and the receiving member is located at a retreat position deviating from the receiving position at the second position; and a contact member which comes into contact with the receiving member while moving in a direction intersecting the extension direction of the receiving member relative to the receiving member when the support member movement unit moves the support member from the second position to the first position.
Abstract:
A fluid ejecting apparatus includes a fluid ejecting head that ejects fluid from a nozzle opening of a nozzle. The fluid ejecting apparatus also has a cap that is operable to move away from or contact the fluid ejecting head. A cap suction means sucks a cap internal space formed between the fluid ejecting head and an inner wall of the cap in a state where the cap is in contact with the fluid ejecting head. A control means measures a pressure in the cap internal space sucked by the cap suction means and determines whether there is a negative pressure equal to or higher than a predetermined value. The control means instructs the cap sliding means to perform a sliding action when the control means determines that the negative pressure that is equal to or higher than the predetermined value is not generated in the cap internal space.
Abstract:
Provided is a fluid ejecting apparatus including: a fluid ejecting head which includes nozzles ejecting a fluid; a receiving member which is capable of receiving the fluid ejected from the nozzles; a pair of support members which supports the receiving member so as to extend in a linear shape; and a support member movement unit which moves the support member between first and second positions so that the receiving member is located at a receiving position capable of receiving the fluid ejected from the nozzles at the first position, and the receiving member is located at a retreat position deviating from the receiving position at the second position, wherein the support member movement unit allows the pair of support members to reach the first position at different timings.
Abstract:
A platen unit includes a supporting member that is grounded and is made of a metal, a platen supporting member that is provided on the supporting member, includes an inner space, is formed of a conductive resin, and includes a first contact point, a platen that is provided on the platen supporting member, is formed of a conductive resin, and includes a second contact point which contacts the first contact point, and a seal member that is provided between the platen supporting member and the platen.
Abstract:
Provided is a fluid ejecting apparatus including: a fluid ejecting head; a receiving member which is linear; a support member which supports the receiving member; a support member movement unit which moves the support member between a first position and a second position so that the receiving member is located at a receiving position capable of receiving the fluid ejected from the nozzles at the first position, and the receiving member is located at a retreat position deviating from the receiving position at the second position; and a tensile force changing unit which is capable of changing tensile force changing unit changes the tensile force applied to the receiving member from a first tensile force to a second tensile force smaller than the first tensile force when the support member movement unit moves the support member from the second position to the first position.
Abstract:
A fluid discharging apparatus including a head that has a nozzle which discharges fluid from the nozzle and a sheet shaped wiping member for wiping a nozzle surface of the head. The wiping member is moved relative to the nozzle surface so that portions of the wiping member are sequentially in contact with the nozzle surface in order to wipe the nozzle surface.