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DSP56303 датащи(PDF) 30 Page - Freescale Semiconductor, Inc |
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DSP56303 датащи(HTML) 30 Page - Freescale Semiconductor, Inc |
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30 / 292 page ![]() DSP56303 User’s Manual, Rev. 2 2-6 Freescale Semiconductor Signals/Connections 2.5.2 External Data Bus 2.5.3 External Bus Control Table 2-7. External Data Bus Signals Signal Name Type State During Reset, Stop, or Wait Signal Description D[0–23] Input/Output Tri-stated Data Bus When the DSP is the bus master, D[0–23] provide the bidirectional data bus for external program and data memory accesses. Otherwise, D[0–23] are tri-stated. Table 2-8. External Bus Control Signals Signal Name Type State During Reset, Stop, or Wait Signal Description AA0/RAS0– AA3/RAS3 Output Tri-stated Address Attribute or Row Address Strobe As AA, these signals function as chip selects or additional address lines. Unlike address lines, however, the AA lines do not hold their state after a read or write operation. As RAS, these signals can be used for Dynamic Random Access Memory (DRAM) interface. These signals have programmable polarity. RD Output Tri-stated Read Enable When the DSP is the bus master, RD is asserted to read external memory on the data bus (D[0–23]). Otherwise, RD is tri-stated. WR Output Tri-stated Write Enable When the DSP is the bus master, WR is asserted to write external memory on the data bus (D[0–23]). Otherwise, WR is tri-stated. TA Input Ignored Input Transfer Acknowledge If the DSP56303 is the bus master and there is no external bus activity, or the DSP56303 is not the bus master, the TA input is ignored. The TA input is a Data Transfer Acknowledge (DTACK) function that can extend an external bus cycle indefinitely. Any number of wait states (1, 2,..., infinity) can be added to the wait states inserted by the BCR by keeping TA deasserted. In typical operation, TA is deasserted at the start of a bus cycle, asserted to enable completion of the bus cycle, and deasserted before the next bus cycle. The current bus cycle completes one clock period after TA is asserted synchronous to CLKOUT. The number of wait states is determined by the TA input or by the Bus Control Register (BCR), whichever is longer. The BCR can set the minimum number of wait states in external bus cycles. To use the TA functionality, the BCR must be programmed to at least one wait state. A zero wait state access cannot be extended by TA deassertion; otherwise improper operation may result. TA can operate synchronously or asynchronously, depending on the setting of the TAS bit in the Operating Mode Register (OMR). TA functionality cannot be used during DRAM-type accesses; otherwise improper operation may result. |
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