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ORSPI4 데이터시트(PDF) 42 Page - Lattice Semiconductor

부품명 ORSPI4
상세설명  Dual SPI4 Interface and High-Speed SERDES FPSC
PDF  263 Pages
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제조업체  LATTICE [Lattice Semiconductor]
홈페이지  http://www.latticesemi.com
Logo LATTICE - Lattice Semiconductor

ORSPI4 데이터시트(HTML) 42 Page - Lattice Semiconductor

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Lattice Semiconductor
ORCA ORSPI4 Data Sheet
42
• The SOP must always be written into the first byte location of the 16-byte DPRAM word. (Shown in Figure 7 for
the 32-bit interface mode.) With the Lattice SPI4 interface, the EOP may occur during any of the four 4-byte
mode writes to fill the 16-byte DPRAM, and will be associated with the correct 128-bit line within the partition
memory.
The next two figures show the 64-bit write protocol from the FPGA to the TX DPRAMs. It is functionally identical to
the 32-bit mode, except two writes are required to fill an address line within a FIFO partition instead of four. Figure
13 shows the basic interface signals for 64-bit mode of operation.
Figure 13. Basic 64-Bit Data Write Protocol to DPRAM
During Clock cycle 1, the FPGA asserts the partition Address, which indicates which partition within the DPRAM
the data and control signals are to be written to. The Write Enable signal is also asserted, qualifying all data and
control signals. From the figure, this is the start of a packet, so the SOP signal is also asserted. Data is presented
to the interface, as well as the Byte Enable (BE) and Port ID signals. The BE vector is used to qualify which Bytes
on the SPI4 transmit link are valid data. When operating in 64-bit mode, there are 8 BE bits. During clock cycle 6
the BE bits are set to 0xFE, indicating 7 of the eight Bytes contain valid packet data.
As with 32-bit mode, the Port ID signal should be asserted during an entire write sequence, although as a minimum
it must be asserted at least during the second write to the current DPRAM address line. In the figure above, the
Port ID must be asserted during clock cycles 2, 4, and 6.
During clock cycle 6, the FPGA indicates an End of Packet condition for the current selected Port. Asserting the
EOP signal causes the internal logic to terminate writes to the current Port. Also, the internal DPRAM pointer logic
is advanced after every second write to the DPRAM when in 64-bit aggregation mode.
As with the 32-bit aggregation mode, the “internal DPRAM Write Ptr” advances to the next valid address within par-
tition range, but after every 2 writes when in 64-bit aggregation mode. This is because two 64-bit writes fill an entire
128-bit DPRAM line entry. The same interface logic in the FPGA can also be used as described in 32-bit mode, but
the counter implemented in FPGA logic is simply a one-bit toggle FF.
SPIA_TX64_CLK
SPIA_TX64_WD_CNT_RST
12
345
6
7
SPIA_TX64_ADDR[2:0]
SPIA_TX64_WE
SPIA_TX64_DATA[63:0]
SPIA_TX64_SOP
SPIA_TX64_EOP
SPIA_TX64_PORT[7:0]
SPIA_TX64_BE[7:0]
Note SPIB is identical to SPIA
Port 3
Port 3
0xFF
0xFF
0xFF
0xFE
0xFF
0xFF
Partition Addr 'k'
Port 3



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