SumIntegrateTwoReset

SumIntegrateTwo with voltage-controlled reset.

Parameters

scale_factor_input1

scale_factor_input2

Options
input1_polarity \( \in \{ \) NONINVERTING \( , \) INVERTING \( , \) INPUT_DISABLED \( \} \)

input2_polarity \( \in \{ \) NONINVERTING \( , \) INVERTING \( , \) INPUT_DISABLED \( \} \)

output_phase \( \in \{ \) PHASE1 \( , \) PHASE2 \( \} \)

compare_to \( \in \{ \) GROUND \( , \) SECOND_INPUT \( , \) VARIABLE_REFERENCE \( \} \)

control_signal_polarity \( \in \{ \) ACTIVE_HIGH \( , \) ACTIVE_LOW \( \} \)

opamp_mode \( \in \{ \) DEFAULT \( , \) CHOPPER_STABILIZED \( \} \)

Inputs

input1 Half-Cycle

input2 Half-Cycle

control Half-Cycle

Outputs

output Continuous

reset_out Continuous

Transfer Function

$$ \frac{\Delta V_{out}}{\Delta t} = \sum_{i=1}^{2} \pm K_i V_{i} \\ \text{reset if $V_{ctrl} > V_{ref}$} $$

Analog Resource Usage

$$ \begin{array}{|c|c|} \hline \text{Opamps} & \text{1 of 8} \\ \hline \text{Comparators} & \text{1 of 4} \\ \hline \text{Capacitors} & \text{3 of 32} \\ \hline \end{array} $$

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