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ORSPI4 Datasheet(PDF) 97 Page - Lattice Semiconductor |
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ORSPI4 Datasheet(HTML) 97 Page - Lattice Semiconductor |
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97 / 263 page ![]() Lattice Semiconductor ORCA ORSPI4 Data Sheet 97 The ORSPI4 SPI4 RX interface is also designed to operate at data rates much lower than 622 Mbps. Even though the OIF standard specifies a minimum data rate of 622 Mbits/s, the lower data rates are provided for users who wish to use the SPI4 link for applications supporting <10 Gbits/s aggregate bandwidth (STS-48, STS-3, Gb Ether- net, etc.). To enable this low speed mode, user should set the software register bit SPI4_QUARTER_RATE (Address 30915 in SPIA and 30A15 in SPIB) to ‘1’. This supports data rates in the range of 100 - 200 Mbps. This bit takes precedence over SPI4_LOW_SPEED_DATA_SEL, since setting this bit to ‘1’ will automatically reset the dynamic alignment block irrespective of SPI4_LOW_SPEED_DATA_SEL register bit setting. SPI4 Loopback Modes There are three forms of loopback supported directly by the ORSPI4 SPI4 blocks. • High-speed near end loopback: This involves looping back data from the high-speed transmit block TDO serial output to the high-speed receive block RDI serial input (See Fig. 42). All of the logic excluding the LVDS buffers is included in the loopback path. The status path is looped from the output of the RSP block to the TSP block. This mode is enabled by setting the control register bit SPI4_LOOPBK_HS to 1. • Far end loopback: This involves looping back the 128-bit output data from the RDI block to the 128-bit input of the TDO block (See Fig. 43). Data is received at the high-speed SPI4 RX interface and transmitted at the SPI4 TX interface. The status path is looped from TSTAT to RSTAT. This mode is enabled by setting control register bit SPI4_LOOPBK_FE to “1”. • Low-speed near end loopback which excludes the high-speed blocks from the loopback path: This involves sourcing data from the FPGA, looping back the output of TDP block into RDP block and observing data at the core-FPGA boundary (See Fig. 44). The status path is looped from the RSP block to the TSP block. This form of loopback will require an additional low-speed clock source (TSTCLK) and is enabled by setting control register bit SPI4_LOOPBK_LS to “1” and enabling SPI4_LOOPBK_HS. Figure 42. High-Speed Near End Loopback TDAT[15:0] TCTL TDCLK SPI4 I/F TDO TREFCLK TSTAT[1:0] TSCLK RDAT[15:0] RCTL RDCLK RDI RSTAT[1:0] RSCLK TDP 128-bit data+ctl TSP clk DPRAMs + associated logic Port write Sequencer TX RDP RSP DPRAMs + associated logic Port Status Sequencer clk 128-bit data+ctl clk RX Embedded Core |
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