Abstract:
An image reading apparatus comprises an original placement portion on which an original is to be placed, optical unit for optically scanning the original on the original placement portion while moving relative to the original placement portion and a guide member that guides movement of the optical unit. The optical unit includes a sliding member having a screw portion that slides in contact with the guide member and a screw hole portion to which the sliding member is mounted. The screw portion of the sliding member is plastically deformable and screwed into the screw hole portion while being plastically deformed.
Abstract:
An enhanced reading device that which secures written material in a fixed location and moves a video camera across the written text or images for the purpose of automatically registering the video camera at the beginning of each new line. The device uses a manually operated transmission to move a camera across a line at a speed controlled by the user. The video camera is also stepped to the next line under control of the user. Optional embodiments permit the transmission to be powered and control by push buttons for automatic registration at the beginning of new lines. The device also has a document tray assembly to control vertical movement of the document in relation to the video camera under control of the user. The document tray assembly can also be optionally powered rather than manually operated.
Abstract:
A linear guiding apparatus at least has a shaft and a shaft holding apparatus. The shaft holding apparatus is adapted to slide along the shaft. The shaft holding apparatus includes a body, an elastic member and an adjusting member. The body has a V-shape supporting surface, wherein the V-shape supporting surface is along the axis direction of the shaft and supports on outer edge of the shaft. The elastic member is mounted on the body, wherein the elastic member is elastically contacted the outer edge of the shaft, and the shaft is clipped between the elastic member and the V-shape supporting surface. The adjusting member is mounted on the body and contacted the elastic member, wherein the adjusting member is utilized to adjust the position of the elastic member. Therefore, a shaft of any diameter can be clipped between the elastic member and the V-shape supporting surface.
Abstract:
A platform scanner is proposed to serve for a learning aid tool for kids of school age to learn words or painting. The platform scanner comprises a housing and a scanning carrier, in which an opaque handwriting board is disposed on an outside portion of the housing, and the scanning carrier is located on the handwriting board. Moreover, a transmission shaft is arranged in a direction parallel with the handwriting board, and one end of the scanning carrier is mounted on the transmission shaft so that the scanning carrier can be horizontally moved along the transmission shaft for scanning and reading data on the handwriting board.
Abstract:
The present invention provides for an optical scanning apparatus having a scanner body and a self-propelled light bar assembly supported within the scanner body. In one example the scanning apparatus further includes a drive track supported within the scanner body, and the light bar assembly includes a drive wheel in contact with the drive track. This configuration allows the drive wheel to propel the light bar assembly with respect to the scanner body. In a second example the scanner has a scanner body and a magnet-track portion of a linear electric motor fixedly supported within the scanner body. The light bar assembly includes a slider portion of a linear electric motor, and the light bar assembly is supported in the scanner body to place the magnet-track portion in proximity to the slider portion to thereby allow the light bar assembly to be driven along the magnet-track portion.
Abstract:
The present invention relates to an image scanning apparatus having a scanning module, a transmission belt, a speed-change gear module, and a driving device. The driving device drives the transmission belt by using the speed-change gear module so as to drive the scanning module positioned on the transmission belt to scan an image. The speed-change gear module provides various speed-change ratios so that the driving device may drive the transmission belt at different speeds under the same speed of the driving device. In the embodiment, the speed-change gear module has a switching platform for accommodating the speed-change gear module. The stepping motor serving as the driving device is connected with the speed-change gear module by the motor gear. The transmission belt is connected with the speed-change gear module by the belt wheel. When moving or rotating the switching platform to switch between the deceleration ratios, a first set of deceleration gear and a second set of deceleration gear selectively engages with a motor gear.
Abstract:
The present invention relates to a driving device for a scanning module. An active gear wheel and a passive gear wheel are disposed respectively on two rigid frames. These two rigid frames are connected by a rigid component to avoid relative displacement between the two wheels due to external force or change of temperature. The rigid component of the present invention may also be adopted as a guiding track for the scanning module.
Abstract:
The present invention relates to a driving device for a scanning module. An active gear wheel and a passive gear wheel are disposed respectively on two rigid frames. These two rigid frames are connected by a rigid component to avoid relative displacement between the two wheels due to external force or change of temperature. A spring is disposed on the rigid component to adjust the position of the passive gear wheel while the active gear wheel stays still. It allows the driving belt to automatically offset the strain according to its fatigue condition. The rigid component of the present invention may also be adopted as a guiding track for the scanning module.
Abstract:
A feeding device comprises a pair of guide shafts, and a film holder which is movably supported by the guide shafts. A slide-mount, which holds a film, is attached to the film holder. Guide members are formed on side surfaces of the film holder, and are slidably engaged with the guide shafts. Each of the guide members has a first bearing member and a second bearing member. The first bearing member and the second bearing member are offset in a direction in which the guide members extend. The first bearing member is engaged with an upper surface of the guide shafts, and the second bearing member is engaged with a lower surface of the guide shafts.
Abstract:
A book scanner includes a scanning table assembly having a full-speed scanning table and a half-speed scanning table moving on a pair of rails in association with each other. A first mirror mounted on the full-speed scanning table reflects light from a document to second and third mirrors to be incident on a CCD unit. The full-speed and half-speed scanning tables are supported at three points of the rails whereas some of the mirrors are supported at four points of a corresponding table. A stable image can be obtained due to substantially no distortion in the mirror surface which results from the stable posture of the tables supported at three points thereof.