512 SPI Slave with 8-Register File

512 : SPI Slave with 8-Register File

Design render

SPI Slave with 8-Register File

How it works

This design implements a standard 4-wire SPI (Serial Peripheral Interface) slave targeting the GlobalFoundries 180nm platform. It contains a synchronous Finite State Machine (FSM) that decodes incoming SPI transactions on SCLK, MOSI, and CS_N.

The core features an internal 8-byte register file. Transactions consist of a 1-byte command phase (specifying a Read/Write bit and a 3-bit register address) followed by a 1-byte data transfer phase. On a write transaction, data is sampled from MOSI and written to the selected register. On a read transaction, data from the internal register is driven out onto MISO. The content of Register 0 is continuously driven out to the dedicated output pins (uo_out) for real-time hardware monitoring.

How to test

To test this design, keep CS_N high initially. Toggle SCLK and ensure MISO remains in a high-impedance or idle state.

  1. Pull CS_N low to initiate a transaction.
  2. Stream 8 bits on MOSI synchronized to SCLK rising edges: Set the first bit to 0 (Write command) followed by 0000000 (Address 0).
  3. Immediately stream another 8 bits containing the data payload (e.g., 0xA5) on MOSI.
  4. Pull CS_N back high to commit the byte.
  5. Verify that the external output pins uo_out[7:0] update to show 0xA5.

IO

#InputOutputBidirectional
0unusedreg0_out[0]SCLK (Input)
1unusedreg0_out[1]MOSI (Input)
2unusedreg0_out[2]CS_N (Input)
3unusedreg0_out[3]MISO (Output)
4unusedreg0_out[4]unused
5unusedreg0_out[5]unused
6unusedreg0_out[6]unused
7unusedreg0_out[7]unused

Chip location

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