Abstract:
A portable data processing system includes a handheld communication device and a signal input/output device. The signal input/output device includes a casing, communication module, an input module, an output module and a bridging unit. The input module is used for generating and outputting a control command. When the handheld communication device is accommodated within the receiving space and connected with the communication module, the handheld communication device is operated according to the control command. The output module is used for outputting a data signal generated by the handheld communication device in real time.
Abstract:
A docking station module for portable communication device is disclosed. The docking station module includes a main module configured to connect to a portable communication device and supply power to the portable communication device, and at least one peripheral device adapter module detachably connected to the main module and a peripheral device for allowing the data to be transferred between the portable communication device and the peripheral device in an one-way manner or in a two-way manner and enabling the peripheral device adapter module to execute an extension function.
Abstract:
A paper output mechanism for an automatic document feeder, including: a seat; a connecting shaft, passed through the seat; and a paper feeding roller, placed around the connecting shaft, and including: a shaft portion; a roller portion, placed around the shaft portion; and adapted to convey a document, and an elastic element, placed around the shaft portion, and one end thereof being connected to the seat.
Abstract:
A support mechanism is adapted to support an upper body of an electronic element, and the upper body can be turned pivotally relative to a lower body of the electronic device. The support mechanism includes a base, a plate, a transmission shaft and a torsional force generating device, in which the base is fixed on the lower body and the plate is fixed on the upper body. Furthermore, the transmission shaft is passed through and installed on the base and the torsional force generating device is wound around the transmission shaft. One end of the torsional force generating device is extended outward and fixed on the plate so as to couple the base to the plate and process a pivotal turn.
Abstract:
A supporting plate for an automatic document feeder, adapted to configure a plurality of paper feeding rollers installed correspondingly to a plurality of transmission wheels, and used for transmitting a document to a paper output tray, the supporting plate including a plate body, including a plurality of accepting holes and adapted to install the plurality of paper feeding rollers, the plurality of paper feeding rollers and the plurality of transmission wheels drive the document move along a paper output direction toward the paper output tray; and a plurality of supporting portions, disposed at sides of the plurality of accepting holes along the paper output direction, and used for supporting the document to cause the document to form a curved body while being moved. A paper output mechanism using the aforementioned supporting plate is also disclosed here.
Abstract:
A paper feeding and sheet separating differential device comprises a rotating shaft, a first roller, a second roller and an insertion pin, in which the first roller is installed on one end of the rotating shaft and comprises a first outer frame and a first raised mass disposed on an inner side of the first outer frame; the second roller is put around the rotating shaft and comprises a second outer frame, an accepting hole disposed inside the second outer frame and used for receiving the rotating shaft, a groove extended axially from the accepting hole to the second outer frame and the second raised mass disposed on an circumference of the accepting hole and used for propping against the first raised mass. Furthermore, the insertion pin is passed through the rotating shaft and then received in the groove.
Abstract:
A paper pickup structure of a paper feeding device is provided. The paper pickup structure includes a rotating arm, including a connection portion, a base, and a combination member, in which the connection portion and the combination member are located on the base, a first gear, combined with the connection portion to be switched between a forward rotation state and a reverse rotation state, so as to drive the rotating arm to rotate, a limiting member, located on the rotating arm, in which one end of the limiting member is combined with the combination member of the rotating arm, or one end of the limiting member is separated from the combination member through the rotation of the rotating arm, a second gear, located on the base, and a third gear, driven by the second gear to rotate when the rotating arm rotates to a predetermined position.
Abstract:
An image capturing device includes: a first base, including a first side edge and a second side edge opposite to each other; a first light-emitting element, located at the first side edge, for emitting a first light source to illuminate a document; a first compensator, located at the second side edge; a first sensing element, located between the first light-emitting element and the first compensator; a first transparent sheet, covering the first compensator; a second base, including a third side edge and a fourth side edge opposite to each other; a second light-emitting element, located at the third side edge, for emitting a second light source to illuminate the document; a second compensator, located at the fourth side edge; a second sensing element, located between the second light-emitting element and the second compensator; and a second transparent sheet, covering the second compensator.
Abstract:
A calibrating and positioning structure of a scanning apparatus is provided. The scanning apparatus includes a scanning platform and a scanning window. The scanning window has a wide edge. The calibrating and positioning structure includes a calibrating part and at least one positioning part. The calibrating part is disposed on the scanning platform, and aligned with the wide edge of the scanning window. The at least one positioning part is partially overlapped with the calibrating part, wherein the positioning part is not aligned with the wide edge of the scanning window.
Abstract:
A contact-type image scanner includes an illumination unit, a control unit and a photo-sensing unit. The illumination unit includes a first, a second and a third light source for respectively emitting different color light beams on an original surface. The control unit is in communication with the illumination unit for controlling on durations of the light sources. In response to a first start pulse and a second start pulse, the first light source and the second light source are turned on for a first on duration and a second on duration respectively, wherein the second light source is turned on immediately after the first light source is turned off or after the first light source is turned off for a delaying time. In response to a third start pulse, the first, second and third light sources are simultaneously turned on for a first minor on duration, a second minor on duration and a third minor on duration, respectively. The photo-sensing unit obtains a first image data value during the first on duration, obtains a second image data value during a second on duration and obtains a third image data during the first, second and third minor on durations.