This document presents a dynamic model of a zeta converter, a type of fourth-order DC-DC converter capable of stepping up or down input voltage, with a focus on implementing a full-state feedback controller. Using the state-space averaging technique, the paper details the modeling and simulation to enhance accuracy and regulate output voltage amidst input and load disturbances. The implementation and results validate the effectiveness of the proposed modeling in maintaining stable performance in electronic systems reliant on varying battery input.