2 n channel mosfet configured as high side switch you can quite easily see the difference between the high side configuration and the low side configuration.
N channel mosfet high side switch.
While you can use a jfet for this circuit an enhancement mode mosfet works better.
The main problem in using an n channel mosfet in a high side switch is that in order for the mosfet to switch off once it has been switched on is that the voltage on the gate terminal of the mosfet must be made higher than the supply voltage.
2 n channel mosfet configured as high side switch you can quite easily see the difference between the high side configuration and the low side configuration.
Then the p channel mosfet is used to switch the positive supply to the motor for forward direction high side switching while the n channel mosfet is used to switch the negative supply to the motor for reverse direction low side switching.
Although the p channel mosfet cannot complement the n channel in both on resistance and capacitance simultaneously such combinations as the low threshold p channel tp0610 and the n channel 2n7000.
The opposite of the low side switch is the high side switch.
This transistor connects between v and the load.
To switch v with a p channel mosfet.
In order to do this the gate voltage must be magnified in some way.
Used as a high side switch a p channel mosfet in a totem pole arrangement with an n channel mosfet will simulate a high current high power cmos complementary mos arrangement.
In the low side configuration the load is connected between the drain and v while the source is connected to ground.
In the low side configuration the load is connected between the drain and v while the source is connected to ground.
The higher the voltage the more the mosfet can conduct.
N channel mosfets can also switch v in certain configurations with drain being vin and source being switched vout.
For an n channel mosfet the source connects to ground and the drain connects to the negative side of the load.