Abstract:
An image reading apparatus includes an imaging unit, a moving mechanism moving the imaging unit between a first position and a second position, a conveyance mechanism, a sun gear, and a planetary gear that rotates by being meshed with the sun gear and having a rotation center configured to revolve around the sun gear. The apparatus also includes a first output gear meshed with the planetary gear and transmits a driving force to the moving mechanism, a second output gear meshed with the planetary gear and transmits a driving force to the conveyance mechanism, a load generation part increasing a rotational resistance of the first output gear when the imaging unit is located at the first position, and a meshing part being meshed with teeth of the planetary gear when the planetary gear revolves around the sun gear.
Abstract:
An image reading apparatus having a conveyed document reading function and a placed document reading function includes: a moving mechanism for moving an imaging unit; a hinge mechanism for swingably connecting a document cover to a document platen; a conveyance mechanism provided to the document cover for conveying a document upon operation of the conveyed document reading function; a driving force transmission mechanism for selectively transmitting a driving force generated from a driving source to the moving mechanism or the conveyance mechanism; a first gear rotatable by receiving the driving force from the driving force transmission mechanism; and a second gear rotatable with being meshed with the first gear for transmitting the driving force to the moving mechanism or the conveyance mechanism, a rotating center line of which coincides with a swinging center line of the hinge mechanism.
Abstract:
An image reading apparatus comprising: an imaging unit; a moving mechanism moving the imaging unit between a first position and a second position; a conveyance mechanism; a sun gear; a planetary gear that rotates by being meshed with the sun gear and having a rotation center configured to revolve around the sun gear; a first output gear meshed with the planetary gear and transmits a driving force to the moving mechanism; a second output gear meshed with the planetary gear and transmits a driving force to the conveyance mechanism; a load generation part increasing a rotational resistance of the first output gear when the imaging unit is located at the first position, and a meshing part being meshed with teeth of the planetary gear when the planetary gear revolves around the sun gear.
Abstract:
An image reading device is provided, which includes a controller configured to, when a carriage reaches a turn-around position in a moving direction, control a motor to once stop, then rotate in a second direction opposite to a first direction such that a planetary gear swings to a position separated from an output gear and that an intermediate gear moves to an engagement position to engage with the output gear, and thereafter again rotate in the first direction so as to transmit a driving force from the motor to the output gear via an input gear, a planetary gear, and the intermediate gear.
Abstract:
A sheet conveying device to convey a sheet in a sheet path is provided. The sheet conveying device includes a separator roller, which is arranged to be rotatably in contact with the sheet to apply conveying force to the sheet, a pad assembly including a separator pad, which is arranged to be in contact with the sheet stack to apply convey resistance to the sheet stack, and a holder, which is swingably attached to a base member and holds the separator pad, the base member being in a fixed position with respect to the separator roller, a spring, which urges the pad assembly toward the separator roller, and a slidable member, which is attached to the pad assembly to be integrally movable with the pad assembly and to be slidably in contact with a first slidable section in the base member.
Abstract:
A sheet feeding device, which is configured to feed stacked sheets one by one in a sheet feed direction, is provided with a sheet tray configured to accommodate the stacked sheets, a feed-out roller protruded from the sheet tray and configured to feed the stacked sheets from the sheet tray, a feed-out nip member arranged above and opposite to the feed-out roller, the feed-out nip member being configured to contact an uppermost sheet of the stacked sheets and bias the sheets toward the feed-out roller, a separation unit located on a downstream side, in the sheet feed direction, of the feed-out roller, the separation unit separating a lowermost sheet from the stacked sheets fed by the feed-out roller, and a friction member configured to contact the uppermost sheet of the stacked sheets at a position different from a position where the feed-out nip member contacts the uppermost sheet.
Abstract:
document feeding device comprises a document input tray, a document output tray, a feeding mechanism provided for a feeding path connecting the document input tray and the document output tray via a scanning position to feed each document from the document input tray to the scanning position and to the document output tray, a turnover mechanism provided for a turnover path connected to the feeding path to return the document after passing through the scanning position to the upstream side of the scanning position while interchanging the front end and rear end of the document, and an ejection mechanism configured so that its document ejection mode can be switched between a first ejection mode for successively ejecting each document while stacking it on documents already ejected to the document output tray and a second ejection mode for successively ejecting each document while sliding it under the already ejected documents.
Abstract:
A fan motor includes: a single-phase stepping motor including a stator excited by applying an electric current to a coil to function as a single-phase magnetic pole, and a rotor which has a permanent magnet magnetized to a single phase and rotates as the magnetic pole of the stator changes; an impeller which is rotated by a rotating shaft of the rotor; and a drive circuit for controlling an application of a current to the coil. The drive circuit applies pulse voltage to the coil and the coil constant is set so that a mean value of the current applied to the coil is 10 mA or smaller.
Abstract:
This invention provides a compact, flat axial fan which is not limited by the shape of an incorporated rotor magnet and ensures a sufficiently large air flow and wind pressure, wherein the slide (under) piece of a mold that forms the under-molding portions of the vanes of the impeller of the axial fan is pulled out while being twisted (while performing a helical motion) in the direction of central axis of the base portion of the impeller, so that the mold can be formed simple to realize a multi-cavity mold, and the vanes can be formed into an ideal form by setting vane angles depending on different rotating peripheral velocities of the vanes, so that air can be supplied form the under-molding portions of the vanes to the vanes on the outer circumferential side during rotation of the impeller, a method of manufacturing an impeller for the axial fan, and a mold for manufacturing the impeller of the axial fan. For this purpose, in an axial fan comprising an impeller integrally formed, by resin molding, with a plurality of vanes extending from a bottomed cylindrical body to which a rotary axial support shaft body is formed at a center of rotation, each of the vanes is integrally formed by resin molding with a main vane extending from an outer circumferential surface of the bottomed cylindrical body at a predetermined tilt angle.