When the SDA (Serial Data) lines on both the left and right lines are high (logic level 1), the circuit remains in a quiescent state, and the optoisolators IC1 and IC2 are not activated.
In this circuit, the Serial Data (SDA) lines serve as control signals that determine the operational state of the optoisolators. The quiescent state indicates that no data transmission is occurring, and as a result, both optoisolators remain inactive, preventing any signal from being transmitted through them. This configuration is essential for maintaining the integrity of the system during idle periods and ensuring that unnecessary power is not consumed.
The optoisolators, IC1 and IC2, are critical components that provide electrical isolation between different sections of the circuit. They allow signals to be transmitted while preventing high voltages or transients from affecting sensitive components. The activation of these optoisolators typically occurs when the SDA lines transition from a high state to a low state (logic level 0), indicating that data is being transmitted. When this happens, the internal light-emitting diode (LED) within the optoisolator is energized, resulting in the activation of the phototransistor on the output side, thereby allowing the signal to pass through.
In summary, the behavior of the circuit is defined by the state of the SDA lines, with a high state indicating inactivity and low state indicating active data transmission, thereby controlling the operation of optoisolators IC1 and IC2 effectively.When the SDA (Serial DAta) lines on both the left and right lines are 1, the circuit is quiescent and optoisolators IC1 and IC2 are not actuated. When the.. 🔗 External reference
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