32 Wedgetail TCDE REV01

32 : Wedgetail TCDE REV01

Design render

How it works

Wedgetail is a project that is part of my PhD thesis. This particular design is for Test, Calibration and Design Exploration (TCDE), to assess the effectiveness of the project on real silicon.

The design consists of a configurable array of ring oscillators, a Digital Phase Locked Loop (DPLL), and an SPI register file generated with SystemRDL.

The intent is to:

  • Verify the correctness of all of these components on real silicon; particularly the SPI and ring oscillator array
  • Design and verify the fun logo-stamping workflow

How to test

Ring Oscillator Mux

The first 4 pins, ROSC SEL[3:0], are a 4-bit mux that can be used to select a particular ring oscillator test.

Currently, the selectable options are:

Binary value Name Description
0 ROSC_NONE No output
1 ROSC_32_1 First 32 stage osc
2 ROSC_32_2 Second 32 stage osc
3 ROSC_64 64 stage osc
4 ROSC_16 16 stage osc
5 ROSC_32_OR ROSC_32_1 and ROSC_32_2 OR'd together
6 ROSC_31 31 stage osc
7 ROSC_128 128 stage osc
8 ROSC_32_AND ROSC_32_1 and ROSC_32_2 AND'ed together
9 ROSC_32_DRIVE_8 32 stage osc with 8x drive current inverter
10 ROSC_32_DRIVE_16 32 stage osc with 16x drive current inverter

Note: Before you get mad at me for saying it won't oscillate because it's even, in all of these designs, there is an extra +1 inverter from the feedback tap. So a 32-stage oscillator has 32 inverters in the loop, plus 1 feedback inverter, making a 33-stage design. This was confirmed with full parasitics GDS-level SPICE simulation to oscillate. On the other hand, the 31-stage oscillator has +1 = 32 inverters total, so may not oscillate.

DPLL

A digital-phased lock loop is included, written by jsloan256. Clock the main module at 2 MHz, then pass a 300 KHz signal into the DPLL CLK 300 KHz input port. The output port DPLL CLK will have the signal passing through the DPLL, and the port DPLL CLK FMULT will have the signal passing through an 8x frequency multiplier.

SPI

A simple SPI interface and register file (generated with SystemRDL) is included.

Specifications:

  • Rated frequency: 2 MHz
  • Absolute maximum frequency: 33 MHz
  • CS: Active low
  • Clock pin: Same as system clock

For the register file documentation, see the end of this document.

SPI Programmable Ring Oscillator

A ring oscillator is included that can be programmed on the fly by SPI. Write to the ROSC_EN_SEL register to configure the "coding" of the ring oscillator. In this coding, each bit in ROSC_EN_SEL represents two inverters in the ring oscillator. For example, if ROSC_EN_SEL[0] == 1, then inverter[0] AND inverter[1] will be powered on.

The ring oscillator output is routed to ROSC SPI OUT.

LFSR

The pin LFSR is the 1-bit output of a 16-bit LFSR. It cannot be turned off, lol, sorry. But you can reset it with the TinyTapeout system reset.

Warnings

  • Do not test the DPLL and SPI at the same time, as they run off the same clock.

External hardware

  • None required

wedgetail_spi address map

  • Absolute Address: 0x0
  • Base Offset: 0x0
  • Size: 0x4

<p>Wedgetail SPI interface for Wedgetail TCDE REV01</p>

Offset Identifier Name
0x0 SYS_CTRL Reset
0x1 ECHO1 ECHO1
0x2 ECHO2 ECHO2
0x3 ROSC_EN_SEL Ring Oscillator Enable Select

SYS_CTRL register

  • Absolute Address: 0x0
  • Base Offset: 0x0
  • Size: 0x1
Bits Identifier Access Reset Name
7:0 RESET w 0x0
RESET field

<p>When any value is written to this register, a power on reset will be performed on the entire device</p>

ECHO1 register

  • Absolute Address: 0x1
  • Base Offset: 0x1
  • Size: 0x1
Bits Identifier Access Reset Name
7:0 DATA rw 0x0
DATA field

<p>Read/write echo register, for SPI debugging</p>

ECHO2 register

  • Absolute Address: 0x2
  • Base Offset: 0x2
  • Size: 0x1
Bits Identifier Access Reset Name
7:0 DATA rw 0x0
DATA field

<p>Read/write echo register, for SPI debugging</p>

ROSC_EN_SEL register

  • Absolute Address: 0x3
  • Base Offset: 0x3
  • Size: 0x1
Bits Identifier Access Reset Name
7:0 DATA rw
DATA field

<p>Select the bits enabled by the configurable ring oscillator.</p>

IO

#InputOutputBidirectional
0ROSC SEL 0ROSC MUX OUT
1ROSC SEL 1LFSR
2ROSC SEL 2ROSC 32 NO MUX
3ROSC SEL 3DPLL CLK
4DPLL CLK 300 KHzDPLL CLK FMULT
5MOSIMISO
6CSROSC SPI OUT
7

Chip location

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