1. A panel carrier at least comprising:
a box, wherein interior lateral surfaces of the box have a plurality of cannelures; and
a plurality of separate attaching elements, each attaching element comprising a plate and two opposing ends, wherein the two opposing ends of each attaching element are independently receivable into any of the corresponding cannelures on the two opposing interior lateral surfaces to partition the interior of the box into a plurality of compartments of various sizes, and at least one side of the plate comprises a plurality of protruding edges such that any pair of the neighboring protruding edges of adjacently disposed attaching elements constitutes a slot for accommodating a panel.
2. The panel carrier of claim 1, wherein one side of the plate of at least one attaching element has a plurality of clamping sections for engaging with the corresponding cannelures of the interior surfaces of the box.
3. The panel carrier of claim 2, wherein the clamping section comprises a crow-footed base.
4. The panel carrier of claim 1, wherein the box is fabricated using a material harder than the attaching elements.
5. The panel carrier of claim 1, wherein the box further comprises a plurality of bottom cannelures corresponding to the cannelures on the two opposing interior lateral surfaces, and each attaching element further comprises a bottom end receivable in the bottom cannelure corresponding to the cannelures on the two opposing interior lateral surfaces in which the attaching element is received.
6. The panel carrier of claim 1, wherein the cannelures have a saw-tooth-like profile.
7. The panel carrier of claim 3, wherein each attaching element has a saw-tooth-like profile that matches the saw-tooth-like cannelures on the interior surface of the box.
8. The panel carrier of claim 1, wherein the interior lateral surfaces of the box furthermore comprises a plurality of dovetail grooves.
9. The panel carrier of claim 1, wherein both sides of the plate of at least one attaching elements have a plurality of protruding edges.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A controlling system for outputting multi-byte image data, comprising:
an inverse discrete cosine transform (IDCT) unit for processing a plurality of image data;
a plurality of buffers for receiving said plurality of image data processed by said inverse discrete cosine transform (IDCT) unit;
a multiplexer connected to said plurality of buffers;
a control circuit connected to said multiplexer for utilizing said multiplexer to move said image data from said buffers to said control circuit; and
a processor, connected to said control circuit, for receiving said image data from said control circuit simultaneously.
2. The controlling system according to claim 1, further comprising a data bus for transmitting data from said control circuit to said processor, wherein the bit number of said data bus is not less than the total bit number of said buffers.
3. The controlling system according to claim 1, when said processor is being idle, said buffers transmit said plurality of image data through said multiplexer to said control circuit, and when said processor is reading, said processor reads a plurality of said image data from said control circuit directly.
4. The controlling system according to claim 1, wherein said multiplexer controls said image data transmitted between said buffers and said control circuit, and at the same time, only one said buffer transmits data to said control circuit and other said buffers receive said image data processed by said inverse discrete cosine transform (IDCT) unit.
5. The controlling system according to claim 1, when any said buffer is full of data, said control circuit moves data of said filled buffer to said control circuit for enabling said buffer to receive data from said inverse discrete cosine transform (IDCT) unit.
6. The controlling system according to claim 1, when said control circuit is full of data, said IDCT unit sends a signal to said processor for informing said processor to read said control circuit.
7. A controlling system for outputting multi-byte image data, comprising:
an inverse discrete cosine transform (IDCT) unit for processing a plurality of image data;
a plurality of buffers for receiving said plurality of image data processed by said inverse discrete cosine transform (IDCT) unit;
a multiplexer connected to said plurality of buffers;
a control circuit connected to said multiplexer for utilizing said multiplexer to move said image data from said buffers to said control circuit and including:
a plurality of memory units, each said memory unit receiving and storing a plurality of bit image data, wherein said plurality of memory units simultaneously and correspondingly output said plurality of bit image data, and the sum of said plurality of said bit image data equal to a plurality of byte image data; and
a plurality of control signal units for generating a plurality of writing enable signals, said plurality of writing enable signals being corresponding to said plurality of memory units, respectively, wherein said plurality of writing enable signals control said plurality of memory units to be stored in said plurality of bit image data in sequence; and
a processor, connected to said control circuit, for receiving said image data from said control circuit simultaneously.