
Apply an input current injection to the IF neuron using switches. This gets added to a membrane potential. If the membrane potential exceeds the threshold, then it triggers a spike.
An 8-bit input current is applied to the IF neuron through the designated input (i.e., uio_in). The membrane potential of the IF neuron will respond to the applied input current. Larger currents will lead to a higher membrane potential. The neuron is designed to generate a spike when the membrane potential exceeds a certain threshold.

| # | Input | Output | Bidirectional |
|---|---|---|---|
| 0 | current bit 11 | membrane potential bit a | spike bit 0 |
| 1 | current bit 12 | membrane potential bit b | unspecified |
| 2 | current bit 13 | membrane potential bit c | unspecified |
| 3 | current bit 14 | membrane potential bit d | unspecified |
| 4 | current bit 15 | membrane potential bit e | unspecified |
| 5 | current bit 16 | membrane potential bit f | unspecified |
| 6 | current bit 17 | membrane potential bit g | unspecified |
| 7 | current bit 18 | membrane potential bit h | unspecified |