132 4-Bit Charge-Redistribution SAR ADC Controller

132 : 4-Bit Charge-Redistribution SAR ADC Controller

Design render

How it works

This project contains three selectable 4-bit SAR ADC controllers:

  • 00 – Clean controller
  • 01 – Manual-Trojan controller
  • 10 – Automatic-Trojan controller
  • 11 – Clean/default

The controllers share a clock divider and comparator synchronizer. The selected controller drives an external capacitor DAC, sample switch, and comparator.

During each conversion, the SAR controller samples the input, tests each bit from MSB to LSB, reads the comparator, and stores the completed 4-bit result.

The live DAC-control code is available on uo_out[3:0], while the stable final ADC result is available on uio_out[3:0].

The manual Trojan is enabled with ui_in[3]. The automatic Trojan activates internally for 50 conversions after every 450 normal conversions. During an infected period, the physical DAC-control outputs are inverted.

Pin mapping

Inputs

  • ui_in[0] – Comparator output
  • ui_in[2:1] – Design selector
  • ui_in[3] – Manual Trojan enable

Outputs

  • uo_out[3:0] – Live DAC-control bits
  • uo_out[4] – Sample-switch control
  • uo_out[7:5] – FSM debug state
  • uio_out[3:0] – Stable final ADC result

uio_oe[3:0] = 1111, configuring the lower four bidirectional pins as outputs.

How to test

Connect the external comparator to ui_in[0], the DAC-control outputs to the capacitor switches, and uo_out[4] to the sample switch.

Select the desired controller using ui_in[2:1], apply reset, and provide a known analog input and reference voltage.

Read the completed conversion from:

uio_out[3:0]

For the clean controller, the expected 4-bit result is approximately:

ADC code ≈ (VIN / VREF) × 15

To test the manual Trojan, select 01 and control it with ui_in[3].

To test the automatic Trojan, select 10 and observe the outputs over multiple conversions. A logic analyzer or oscilloscope is recommended for observing the Trojan behavior.

External hardware

  • Binary-weighted capacitor array
  • CD4066 or similar analog switches
  • External comparator such as LM393
  • Sample switch
  • Comparator pull-up resistor
  • Reference-voltage source
  • Analog input source
  • Decoupling capacitors
  • Breadboard or custom PCB
  • Oscilloscope, logic analyzer, or microcontroller

IO

#InputOutputBidirectional
0Comparator outputSelected live DAC bit 0 - LSBFinal ADC result bit 0 - LSB
1Design select bit 0Selected live DAC bit 1Final ADC result bit 1
2Design select bit 1Selected live DAC bit 2Final ADC result bit 2
3Manual Trojan enableSelected live DAC bit 3 - MSBFinal ADC result bit 3 - MSB
4Selected sample switch control
5Selected FSM state bit 0
6Selected FSM state bit 1
7Selected FSM state bit 2

Chip location

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