B65H2404/1531

Sheet conveying device and image reading device

A sheet conveying device includes a conveyor, a supporting section which supports a sheet to be fed to the conveyor and a guide section which is provided on the supporting section and configured to guide a sheet to the conveyor. The supporting section includes a first support region and a second support region which support a sheet. The first support region is provided at a position on an upstream side from the second support region in a sheet conveyance direction. The first support region extends substantially horizontally, and the second support region is inclined in a lower direction toward the downstream side in the conveyance direction. The guide section includes a first portion which extends substantially horizontally along the first support region, and a second portion which is connected to the first portion and extends obliquely in the lower direction along the second support region.

DRYING DEVICE AND LIQUID DISCHARGE APPARATUS INCORPORATING SAME

A drying device includes a drum, a contact conveyance roller, and a cooling device. The drum heats a continuous medium while conveying the continuous medium. The continuous medium is wound around a circumferential surface of the drum. The contact conveyance roller contacts the drum at a downstream end of a portion of the continuous medium wound around the circumferential surface of the drum in a conveyance direction of the continuous medium. Further, the contact conveyance roller conveys the continuous medium separated from the drum. The continuous medium is wound around the contact conveyance roller. The cooling device cools the contact conveyance roller.

Scanner apparatus

A scanner apparatus includes a housing including an insertion port into which a medium is inserted, a discharge port from which the medium is discharged, a conveying roller configured to convey the medium inserted from the scanning insertion port, and a scanning unit configured to scan the medium conveyed by the conveying roller. The scanning insertion port and the discharge port are provided on a +Y direction side of the housing. The housing includes a placement face extending in a −Y direction from the scanning insertion port. The placement face, when a first end of the medium is inserted into the scanning insertion port, is able to support a portion of the medium on a second end side opposite to the first end. The first end of the medium is discharged from the discharge port in a direction on the +Y direction side or in a −Z direction.

SHEET HANDLING APPARATUS
20210201616 · 2021-07-01 · ·

A sheet handling apparatus includes a transport path that includes a first path, a second path, and a curved portion connecting the first path and the second path, the transport path circularly transports a sheet along the transport path in a forward direction or a backward direction. The sheet handling apparatus further includes a rolling body that is disposed at the curved portion and rotates clockwise and counterclockwise, and a plurality of rollers that are opposed to the rolling body and sandwich the sheet between each of the plurality of rollers and the rolling body along the curved portion of the transport path. The rolling body transports the sheet in the forward direction by rotating clockwise and transports the sheet in the backward direction by rotating counterclockwise.

Sheet folding based on a single folding roller

A sheet folding apparatus including a folding roller, a positioning member, a push member, and a shift member. The folding roller including a pair of rollers to rotatably engage with each other to form a folding nip. The positioning member to support a first end of a printing medium which is fed along a folding path and to arrange the printing medium in an initial folding location. The push member to move to an insertion location to push the printing medium on the folding path into the folding nip, and to move to a retreat location. The shift member, located at an exit of the folding nip, to selectively guide the printing medium to a guide path to return the printing medium having passed through the folding nip to the folding path, the guide path being provided around at least one of the pair of rollers.

Recording device
10875332 · 2020-12-29 · ·

A recording device includes a recording unit; an inverting path that inverts a medium that recording has been performed on and sends the medium back to the recording unit; a feeding roller an outer circumferential surface of which is in contact with the medium at both a first position in the inverting path before inverting the medium and a second position in the inverting path after inverting the medium; and a cleaning unit that cleans the outer circumferential surface of the feeding roller; in which the cleaning unit, before a contact portion on the outer circumferential surface of the feeding roller in contact with the medium at the first position reaches the second position with rotation of the feeding roller, is disposed at a position in contact with the contact portion.

SCANNER APPARATUS
20200296240 · 2020-09-17 ·

A scanner apparatus includes a housing including an insertion port into which a medium is inserted, a discharge port from which the medium is discharged, a conveying roller configured to convey the medium inserted from the scanning insertion port, and a scanning unit configured to scan the medium conveyed by the conveying roller. The scanning insertion port and the discharge port are provided on a +Y direction side of the housing. The housing includes a placement face extending in a Y direction from the scanning insertion port. The placement face, when a first end of the medium is inserted into the scanning insertion port, is able to support a portion of the medium on a second end side opposite to the first end. The first end of the medium is discharged from the discharge port in a direction on the +Y direction side or in a Z direction.

Method and device for correcting deviation of paper medium, and financial self-service device

A paper medium skew correcting device includes: a support including a pair of fixed stop plates arranged in parallel; a skew correcting tapered roller assembly including a tapered roller, a reference plate located at a large end face of the tapered roller and a transmission shaft; a tapered cover plate covering on the tapered roller with a skew correcting passage formed between an inner wall of the tapered cover plate and an outer wall of the tapered roller, an auxiliary pressure roller mechanism is mounted on an outer wall of the tapered cover plate and is configured to press a paper medium against the outer wall of the tapered roller tightly, the tapered cover plate is provided with an opening; and a driving transmission assembly. The device fully uses combined action of centrifugal force and friction force to realize skew correction and conveying of the paper medium.

Scanner apparatus

A scanner apparatus includes a housing including an insertion port into which a medium is inserted, a discharge port from which the medium is discharged, a conveying roller configured to convey the medium inserted from the scanning insertion port, and a scanning unit configured to scan the medium conveyed by the conveying roller. The scanning insertion port and the discharge port are provided on a +Y direction side of the housing. The housing includes a placement face extending in a Y direction from the scanning insertion port. The placement face, when a first end of the medium is inserted into the scanning insertion port, is able to support a portion of the medium on a second end side opposite to the first end. The first end of the medium is discharged from the discharge port in a direction on the +Y direction side or in a Z direction.

SHEET FOLDING BASED ON A SINGLE FOLDING ROLLER

A sheet folding apparatus including a folding roller, a positioning member, a push member, and a shift member. The folding roller including a pair of rollers to rotatably engage with each other to form a folding nip. The positioning member to support a first end of a printing medium which is fed along a folding path and to arrange the printing medium in an initial folding location. The push member to move to an insertion location to push the printing medium on the folding path into the folding nip, and to move to a retreat location. The shift member, located at an exit of the folding nip, to selectively guide the printing medium to a guide path to return the printing medium having passed through the folding nip to the folding path, the guide path being provided around at least one of the pair of rollers.