Abstract:
A method and an application installed in a computer system for controlling a plurality of scanners connected to the computer system being capable of feeding documents automatically. The scanners being parallel-connected to the computer system via an interface selecting from a group consisting of IEEE 1394, USB, and SCSI interfaces. The application comprises a scan code for controlling the scanners parallelly and a plurality of image files generated by the scanners scanning documents that can be transferred to the computer system, and a sort code for sorting the images files.
Abstract:
A method of generating an image of a single document includes the steps of: transporting a plurality of documents across a scan position one by one; starting reading the documents at the scan position before a first document of the documents reaches the scan position and reading the documents continuously until a last document of the documents is completely transported across the scan position to generate a multi-document analog image; converting the multi-document analog image into a multi-document digital image; and processing the multi-document digital image to generate a plurality of single-document digital images corresponding to the documents.
Abstract:
A scanning method for a scanning device communicating with a computer is provided. The scanning method comprises the following steps: executing a scanning program of a computer to connect a scanning device to the computer; initiating a scanning operation by the scanning device; performing the scanning operation by the scanning device to produce a scan image corresponding to an original; and transmitting the scan image to the computer by the scanning device.
Abstract:
A rotation mechanism of a television includes a rotation unit, a box, a frame which is connected on the box and connected with the television, and a driving unit. The driving unit has a stationary fan-shaped rack with a positioning rod and a pivot. The rack is connected to the rotation unit and box is rotated about the rack when the driving unit is activated so that the rotation unit and the frame are rotated. By this arrangement, the television is rotated with the rotation unit.
Abstract:
A method for adding scan data to a computer work area is provided. The method includes the following steps. Location information corresponding to a registered location of a pointer is received. According to the location information, an image file format is determined. A document is scanned. Next, a scan image file corresponding to the document and the image file format is produced. The scan image file is added to a work area where the pointer is located.
Abstract:
A scanner with a simplified document feeding path is provided for scanning a document. The scanner includes a paper path, a conveying mechanism, an optical module and a scan window. The conveying mechanism conveys the document along the paper path. The optical module, rotatably disposed, captures an image of the document conveyed to a first position and a second position in the paper path, wherein the optical module captures a front-side image of the document at the first position and a back-side image of the document at the second position. The scan window, mounted on the optical module, is turned toward the first position and the second position as the optical module rotates, and the optical module captures the image of the document through the scan window.
Abstract:
A Liquid Crystal Display (called LCD as following) power-driven structure comprises a rotating mechanism, a lifting mechanism and an adjusting mechanism with a power unit each. The power unit drives the gears of the rotating mechanism to adjust the lateral angle of the LCD, the gears of the lifting mechanism to adjust the height level of the LCD and the gears of the adjusting mechanism to adjust the pitch angle of the LCD. The LCD power-driven structure overcomes the drawbacks of the prior technique and accomplishes the purpose of adjusting the LCD to any required posture without manual effort for saving a user's energy and improving the convenience.
Abstract:
An anti-vibration system for an electronic device. A sensor detects vibration of the electronic device and converts the vibration to an electrical signal, and a controller connected to the sensor receives the electrical signal and transmits a control signal. An anti-vibration device is connected to the controller and activated by the control signal to cancel the vibration.
Abstract:
A light measurement system measures light characteristics of a plurality of light sources and includes a processing unit, a plurality of capturing modules, a plurality of signal conversion units, and a demultiplexing unit. The processing unit generates a control signal for controlling the capturing modules to capture the light characteristics of the light sources. After capturing the light characteristics, the capturing modules output captured frequency-related data corresponding to the light characteristics respectively. Then, the capture frequency-related data are converted into capture bit codes by the signal conversion units respectively. Under the control of the processing unit, the demultiplexing unit selectively sends the capture bit code of each of the signal conversion units to the processing unit. Accordingly, the light measurement system measures the light sources synchronously and allows the demultiplexing unit to send the capture bit code of any one of the light sources to the processing unit.
Abstract:
A scanner with a simplified document feeding path is provided for scanning a document. The scanner includes a paper path, a conveying mechanism, an optical module and a scan window. The conveying mechanism conveys the document along the paper path. The optical module, rotatably disposed, captures an image of the document conveyed to a first position and a second position in the paper path, wherein the optical module captures a front-side image of the document at the first position and a back-side image of the document at the second position. The scan window, mounted on the optical module, is turned toward the first position and the second position as the optical module rotates, and the optical module captures the image of the document through the scan window.