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ORSPI4 датащи(PDF) 108 Page - Lattice Semiconductor |
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ORSPI4 датащи(HTML) 108 Page - Lattice Semiconductor |
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108 / 263 page ![]() Lattice Semiconductor ORCA ORSPI4 Data Sheet 108 Figure 49. Basic Logic Blocks, Transmit Path, Single Channel (Typical Reference Clock Frequency) SERDES/FPGA Logic Interface and 4:1 Multiplexer These blocks provide the data formatting and transmit data and clock signal transfers between the SERDES and the FPGA Logic. Control and status registers in the FPGA portion of the chip control the transmit logic and record status. These bits are passed to the core using the FPGA System Bus and are described in later sections of this data sheet. The low-speed transmit interface consists of a clock and 4 data bytes, each with an accompanying control bit. The data bytes are conveyed to the MUX via the TWDx[31:0] ports (where x represents the channel label [A,B,C or D]. The control bits are TCOMMAx[3:0] which define whether the input byte is to be interpreted as data or as a special character and TBIT9x[3:0] which are used to force a negative disparity present state. The data and control signals are synchronized to the transmit clock, TSYS_CLK_x. Both the data and control are strobed into the core on the rising edge of TSYS_CLK_x. Note that each TBIT9x[3:0] controls the disparity of the encoded version of its corre- sponding data byte. Setting bit TBIT9C[3] to “1”, for instance, will force the 8b/10b encoder to asserts a current neg- ative running disparity state. This will cause it to encode TWDC[31:24] positively (more “1”'s than “0”'s). Setting TBIT9x to 0 will leave the encoder free to alternate between positive and negative encoding to maintain a zero run- ning disparity. The MUX is responsible for taking 40 bits of data/control at the low-speed transmit interface and up-converting it to 10 bits of data/control at the SERDES transmit interface. The MUX has two clock domains - one based on the clock received from the SERDES block and a second that comes from the FPGA at 1/4 the frequency of the SERDES clock. The time sequence of interleaving data/control values is shown in Figure 50. ÷ 4 FIFO 4:1 MUX (x9) PLL PRBS Gen. CML Buffer with Pre- emphasis 10:1 MUX 8B/10B Encoder (with bypass) Interface and MUX Block TX SERDES Block STBD_x[7:0] STBD_x[8] STBD_x[9] STBC311_x 8 8-bit data K-control Force-ve disparity 312.5 MHz HDOUTP_x HDOUTN_x REFCLKP REFCLKN CML Buffer Backplane Serial Link FPGA Logic TWDx[31:0] 32 TCOMMAx[3:0] 4 TBIT9x[3:0] 4 TSYS_CLK_x MUX TCK78 78.125 MHz TCKSEL[0:1] Logic Common to Quad From other 3 channels To other 3 channels From Control Register { Note: x= [A, B, ... D] 156.25 MHz |
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