The present invention relates to an image bus structure for an LCD system, particularly to an image bus structure for an assembled LCD billboard.
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The primary objective of the present invention is to decrease the cables used in wiring an assembled LCD billboard and facilitate flexibly constructing different-size assembled LCD billboards.
The present invention proposes a cascade sequential bus structure used to provide required image data for an assembled LCD billboard. The assembled LCD billboard comprises a plurality of LCD drivers. The cascade sequential bus structure of the present invention comprises a plurality of image data buses corresponding to the plurality of LCD drivers. The image data bus includes an one-way output port, an one-way input port, and an one-way image register with two ends thereof respectively coupled to the output port and the input port. The image register connects with the LCD driver. The plurality of image data buses is cascaded via using a plurality of cascading signal cables to connect the output port of one image data bus to the input port of another image data bus. After the input port receives image data from the preceding stage, the image data is transmitted to the LCD driver and the output port via the image register. The image data is sequentially transposed in a first-in-first-out way from the output port of a front-stage image data bus to the input port of a rear-stage image data bus. The successive transposition of image data makes all the image data buses able to receive the image data.
Below, the technical contents of the present invention are described in detail in cooperation with the drawings.
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The cascade sequential bus structure of the present invention comprises a plurality of image data buses 20 each corresponding to one LCD driver 10. Each image data bus 20 provides image data for the LCD driver 10 connected thereto. Each image data bus 20 includes an one-way input port 21, an one-way output port 22, and an one-way image register 23 with two ends thereof respectively coupled to the output port 22 and the input port 21. The image register 23 connects with the LCD driver 10. The plurality of image data buses 20 is cascaded via using a plurality of cascading signal cables 15 to connect the output port 22 of one image data bus 20 to the input port 21 of another image data bus 20.
The present invention also has a plurality of enable signal cables 30 providing enable signals. The enable signal cables 30 are respectively connected to the input ports 21 and the output ports 22 of the image data buses 20. After the input port 21 receives image data and when the enable signal cable 30 provides the enable signal, the image data will be transmitted to the LCD driver 10 via the image register 23, wherein the latest piece of image data is stored into the image register 23, and the first piece of image data is pushed out of the image register 23 to the output port 22. In other words, the image data is sequentially transposed in a first-in-first-out way, whereby the image data is transferred from the output port 22 of the front-stage image data bus 20 to the input port 21 of the rear-stage image data bus 20.
The image data bus 20 also has a signal transmission cable 40. The signal transmission cable 40 connects the input port 21 and the output port 22. When the enable signal cable 30 does not provide the enable signal, the signal transmission cable 40 can directly transmit an identical piece of image data from the input port 21 to the output port 22. Thereby, the identical image data can be transmitted faster, and the picture of the assembled LCD billboard cab be reset rapidly. Further, the image data bus 20 may also have a control-data register (not shown in the drawings) providing the enable signal.
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As described above, the present invention transmits the image data to all the image data buses 20 with a transposition method. Each LCD driver 10 selects the corresponding portion of the image data to play, and all the LCD drivers 10 cooperate to present the whole image. The present invention can facilitate flexibly constructing different-size assembled LCD billboards. Further, the present invention can simplify the wiring of an assembled LCD billboard, greatly reduce the cables used in an assembled LCD billboard, and effectively lower the fabrication cost thereof.