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OR2C04A 数据表(PDF) 13 Page - List of Unclassifed Manufacturers |
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OR2C04A 数据表(HTML) 13 Page - List of Unclassifed Manufacturers |
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13 / 192 page ![]() Lucent Technologies Inc. 13 Data Sheet June 1999 ORCA Series 2 FPGAs Programmable Logic Cells (continued) Synchronous Memory Modes—SSPM and SDPM The MA/MB asynchronous memory modes described previously allow the PFU to perform as a 16 x 4 (64 bits) single-port RAM. Synchronously writing to this RAM requires the write-enable control signal to be gated with the clock in another PFU to create a write pulse. To simplify this functionality, the Series 2 devices contain a synchronous single-port memory (SSPM) mode, where the generation of the write pulse is done in each PFU. With SSPM mode, the entire LUT becomes a 16 x 4 RAM, as shown in Figure 14. In this mode, the input ports are write enable (WE), write-port enable (WPE), read/write address (A[3:0]), and write data (WD[3:0]). To synchronously write the RAM, WE (input into a4) and WPE (input into either C0 or CIN) are latched and ANDed together. The result of this AND function is sent to a pulse generator in the LUT, which writes the RAM synchronous to the RAM clock. This RAM clock is the same one sent to the PFU latches/FFs; however, if nec- essary, it can be programmably inverted. 5-4642(F).r1 Figure 14. SSPM Mode—16 x 4 Synchronous Single-Port Memory The write address (WA[3:0]) and write data (WD[3:0]) are also latched by the RAM clock in order to simplify the timing. Reading data from the RAM is done asyn- chronously; thus, the read address (RA[3:0]) is not latched. The result from the read operation is placed on the LUT outputs (F[3:0]). The F[3:0] data outputs can be routed out of the PFU or sent to the latch/FF D[3:0] inputs. There are two ways to use the latches/FFs in conjunc- tion with the SSPM. If the phase of the latch/FF clock and the RAM clock are the same, only a read address or write address can be supplied to the RAM that meets the synchronous timing requirements of both the RAM clock and latch/FF clock. Therefore, either a write to the RAM or a read from the RAM can be done in each clock cycle, but not both. If the RAM clock is inverted from the latch/FF clock, then both a write to the RAM and a read from the RAM can occur in each clock cycle. This is done by adding an external write address/read address multiplexer as shown in Figure 15. The write address is supplied on the phase of the clock that allows for setup to the RAM clock, and the read address is supplied on the phase of the clock that allows the read data to be set up to the latch/FF clock. If a higher-speed RAM is required that allows both a read and write in each clock cycle, the synchronous dual-port memory mode (SDPM) can be used, since it does not require the use of an external multiplexer. 5-4644(F).r1 Figure 15. SSPM with Read/Write per Clock Cycle WE WPE A4 DQ DQ CIN, C0 A[3:0] WD[3:0] WR WA[3:0] RA[3:0] WD[3:2] HLUTA F3 F2 DQ DQ WR WA[3:0] RA[3:0] WD[1:0] HLUTB F1 F0 WRITE PULSE GENERATOR A[3:0], B[3:0] WD[3:0] WE A WD RAM CLK WRITE ADDRESS READ ADDRESS 0 1 WPE SSPM CLOCK DQ PFU |
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