The present invention relates to an image processing apparatus, and more particularly to a flatbed image scanner having a flat flexible cable with adjusted configuration.
In modern ages, digital information transmission is applied to more and more fields since computers and network systems become available everywhere. One of the applications is for image input/output. An image scanner is popular for processing image in a digital manner so as to be widely used at home or offices nowadays.
Please refer to
However, a problem occurs while the scanning procedure of the conventional image scanner 10 proceeds. Please refer to
The present invention provides an image processing apparatus having a flat flexible cable with adjusted configuration.
The present invention also provides a flatbed image scanner having a flat flexible cable with adjusted configuration, so no abrasion will occur due to the changed configuration of the flat flexible cable during the scanning procedure.
An image processing apparatus for obtaining digital image data of an object, comprises a casing; a carriage module disposed in the casing and movable relative to the object for picking up and converting image of the object into the digital image data; a flat flexible cable having a first end fixed at a certain location of the casing and a second end coupled to and movable with the carriage module for transmitting the digital image data from the carriage module; and a cable-adjusting device coupled to and movable with the flat flexible cable when the second end of the flat flexible cable moves with the carriage module, and having a length varying with a configuration of the flat flexible cable so as to keep stretching the flat flexible cable.
According to an embodiment of the present invention, the image processing apparatus further comprises a transport mechanism which includes: a motor; a track extending along a moving direction of the carriage module and penetrating through the carriage module to allow the carriage module to slide therealong; a roller disposed at one end of a moving path of the carriage module; and a conveyer belt fixing thereto the carriage module and driven by the motor to move around the roller so as to transmit the carriage module to move along the track.
According to the embodiment of the present invention, the flat flexible cable bends at different positions with the movement of the carriage module, and the cable-adjusting device differentially stretches the flat flexible cable at the bending positions.
For example, the cable-adjusting device comprises a ring member penetrating therethrough the flat flexible cable and differentially stretching the flat flexible cable at the bending positions when the flat flexible cable moves thereinside.
In an embodiment, the cable-adjusting device further comprises: a rope with one end fixed to the ring member; a reel concentrically mounted on and rotating with the roller for reeling in the rope to pull the ring member when the carriage module moves toward the reel and reeling off the rope to release the ring member when the carriage module moves away from the reel; and a static pulley forming an orthogonal triangle with the ring member and the reel for keeping the flat flexible cable straight and stretching the rope. Preferably, the radius of the reel is half of the radius of the roller.
In an alternative embodiment, the cable-adjusting device further comprises: a spring member with a first end fixed to the casing and a second end catching on the ring member; and a rope connecting the spring member to the ring member. In practice, the spring member deforms when the carriage module moves away from the first end of the spring member and recovers to pull the ring member when the carriage module moves toward the first end of said spring member.
In an alternative embodiment, the cable-adjusting device further comprises: a rope with one end connected to the ring member; and an automatic reel fixed to the casing and coupled to the rope. The automatic reel reels off the rope to have the ring member move when the carriage module moves away therefrom, and automatically reels in the rope to pull the ring member when the carriage module is coming closer.
According to the present invention, the flatbed image scanner includes a casing having an opening; a scanning platform lodged in the opening for supporting thereon an object to be scanned; a carriage module disposed and movable under the scanning platform in the casing for scanning the object to obtain digital image data of the object; a circuit board electrically connected to the carriage module via a flat flexible cable that transmits the digital image data; and a cable-adjusting device mounted in the casing and coupling to the flat flexible cable in a relatively movable manner for stretching the flat flexible cable in a specific direction to adjust the configuration of the flat flexible cable, thereby avoiding the contact between the flat flexible cable and the scanning platform.
In an embodiment, the circuit board is electrically connected to a digital processing system for processing the digital image data via a port arranged on the casing and a signal cable with one end connecting to the digital processing system.
According to the embodiment of the present invention, the flatbed image scanner further comprises a transport mechanism which includes: a motor; a track allowing the carriage module to slide therealong; a roller disposed at one end of a moving path of the carriage module; and a conveyer for transmitting the carriage module to move along the track.
The present invention may best be understood through the following description with reference to the accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for purpose of illustration and description only; it is not intended to be exhaustive or to be limited to the precise form disclosed.
Please refer to
A transport mechanism 5 including a motor 50, a track 51, a roller, 52, and a conveyer belt 53 is also provided in the casing 30 for transmitting the carriage module 41 to move in a direction conforming to or contrary to the direction D. The motor 50 drives the conveyer belt 53 to move around the roller 52 disposed at one end of a moving path of the carriage module 41 and rotating with the drag of the conveyer belt 53. Hence, the carriage module 41 fixed to the conveyer belt 53 is driven to slide along the track 51 extending along the moving direction of the carriage module 41 and penetrating through the carriage module 41.
The present invention provides a characteristic cable-adjusting device 6 disposed in the casing 30 and coupled to the flat flexible cable 40 in a relatively movable manner for stretching the flat flexible cable 40 in direction D as shown by an arrow in the diagram so as to adjust the configuration of the flat flexible cable 40. In this embodiment, the cable-adjusting device 6 includes a ring member 60 penetrated by the bending portion of the flat flexible cable 40, a reel 63 concentrically mounted on and rotating with the roller 52, a static pulley 62 mounted at one end of the casing 30, and a rope 61 having one end coupled to the ring member 60 and the other end is reeled in the reel 63 and sliding over the static pulley 62. The positions of the ring member 60, the static pulley 62, and the reel 63 form an orthogonal triangle wherein the right angle of the orthogonal triangle is formed at the position of the static pulley 62. The static pulley 62 is used for changing the direction for stretching the flat flexible cable 40. Hence, the cable-adjusting device 6 can include more than one static pulley if necessary. The location of the static pulley 62 can varied with the arrangement of the cable-adjusting device 6. In a preferred embodiment, the radius of the reel 63 is about half of the radius of the roller 52.
When the carriage module 41 moves toward circuit board 42 (in a reverse direction of direction D), the bending portion of the flat flexible cable 40 will move toward the circuit board 42, too. The roller 52 and the reel 63 concentrically mounted on the roller 52 rotate counterclockwise so the reel 63 reels off the rope 61. Please be advised that the specific direction such as clockwise or counterclockwise described in the specification may be modified according to the arrangement of the elements and components in the image scanner 100. Since the radius of the reel 63 is about half of the radius of the roller 52, the moving distance of the ring member 60 ringing the bending portion of the flat flexible cable 40 will be shorter than the moving distance of the carriage module 41. Hence, the rope 61 and the ring member 60 can pull the bending portion of the flat flexible cable 40 to keep it in a straight manner toward the static pulley 62. In this manner, the bending portion of the flat flexible cable 40 will not raise to touch the scanning window 31. Therefore, the abrasion problem due to the contact between the flat flexible cable 40 and the scanning window 31 is effectively overcome.
When the carriage module 41 moves in direction D, the roller 52 and the reel 63 are driven to rotate clockwise so the reel 63 reels in the rope 61. The unreeled portion of the rope 62 is shorten so as to drag the ring member 60 to move in direction D thereby stretching the flat flexible cable 40 at its bending portion. Hence, the configuration of the flat flexible cable 40 is advantageously adjusted in a straight manner to overcome the abrasion problem.
An alternative embodiment of the cable-adjusting device 6 is shown in
Another embodiment of the cable-adjusting device 6 is shown in
The present invention can be applied to not only image scanner but also any other image processing apparatus, e.g. copier, multifunction & All-In-One, or digital sender, in which a flat flexible cable has various configurations during the image-processing procedure. As described above, the cable-adjusting device is helpful to restrict the flat flexible cable within appropriate space to overcome the problem due to its changed configurations.
While the invention has been described in terms of what are presently considered to be the most practical and preferred embodiments, it is to be understood that the invention need not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
---|---|---|---|
093124115 | Aug 2004 | TW | national |