High Current MOSFET Toggle Switch with Debounced Push Button. circuit
6,466
This circuit is beneficial for applications where a load must be activated from one location and deactivated from another. Multiple momentary normally open (N/O) switches or push buttons can be connected in parallel.
The circuit described facilitates remote control of a load, allowing for flexibility in operation from various locations. The implementation typically involves a relay or a solid-state switch that responds to the momentary contacts of the N/O switches. When a switch is pressed, it completes the circuit, energizing the relay coil and allowing current to flow to the load, thereby turning it on. Releasing the switch interrupts the circuit, but if multiple switches are connected in parallel, any one of them can activate the load.
In practical applications, this configuration is often used in lighting control systems, where switches may be installed at different points within a room or corridor. The wiring must ensure that all switches are connected in parallel to the relay, allowing for simultaneous control. The relay should be rated appropriately for the load it will switch, considering both the current and voltage specifications.
Additionally, it is essential to include protective components such as diodes across the relay coil to prevent back EMF from damaging the circuit when the relay is de-energized. This arrangement provides a reliable and efficient means of controlling loads from multiple locations, enhancing convenience and functionality in various electronic applications.It is useful where the load needs to be switched on from one location and switched off from another. Any number of momentary (N/O) switches or push buttons can be connected in parallel.. 🔗 External reference
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