Of course it is possible to make an inverter with a p-MOSFET!
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That's not the role of an inverter. An inverter is used to change DC to AC, NOT to store energy. If you want to store electrical energy, consider a battery.
To make a depletion MOSFET, the channel must be doped with carriers; this is in total opposite to an enhancement MOSFET which avoids carriers in the channel at all cost. (because the carriers in the channel become the subthreshold leakage current) Since you need to pinch the channel against the substrate to guarantee to turn off the channel completely, there must be a reverse bias between the substrate and the source terminal. As a result, the source terminal of an N type depletion MOSFET must be tied to Vdd. This is also a complete opposite to enhancement MOSFET. In order to turn off the channel quickly, the carriers in the channel of depletion MOSFET are usually planted shallowly. This is a drastically different from enhancement MOSFET that carriers must be planted deeply into source terminal in order to support a large diffuse current. The construction of depletion MOSFET thus requires far less diffusion time than enhancement MOSFET.
Until you switch off!
The first thing you want to do is make sure that you have a large enough inverter for the voltage you are trying to accomplish. Do plenty of research and make sure that you know exactly what you are doing the results could be terrible. When all else fails find a local trusted electrician and have them come and hook up your inverter for you.
so you can make sun power
No, fans do not make any current. A generator, alternator or inverter make current
The inverter draws little current on its own. It is the load that is connected to the inverter. If there were no load on the inverter you could use an ampmeter to determine the no load current. One thing to consider is that a higher wattage inverter would have larger gauge wire which is of lower resistance. This could make the no load current lower for the higher wattage inverter. Bottom line is you would have to measure or have a specification on the no load current.
Most inverters will not be harmed by charging the battery [running the engine while the inverter is connected]. However, for safety [inverters are expensive] it is best that the Owner/User Manual be consulted to make sure that it is safe to charge the battery while the inverter is connected.
You can make your static inverter to maintain 400Hz by means of compare the generated frequency of your inverter with the reference buildin frequency generator which is called local oscillator or multivibrator which is fixed at 400 Hz. If your inverter generate frequency grater or less than 400Hz then the comparison between the reference frequency and the generate frequency will produce the error signal to reduce or increase the generated frequence and send it out. This is the principle operation of the Electrical Power Generation System. Post this answer by : tassana.e@thaiairways.com
A nand gate can be made from an and gate by introducing an inverter at the output of the gate.
160 amps is more than ample to run a 100 amp inverter.. what you need to look at is the required input amperage of the inverter and compare that to what's present in the circuit it's wired/plugged into. In most cases, you should be able to run up to a 400 amp inverter plugged into a 12v outlet, but again, you need to make sure.