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What is N+ and N in Mosfet?

What is N+ and N in Mosfet?

4. All regions of MOSFET become N layer (from drain side: “N+”-”N-”-”inversion layer(N)”– “N+”) due to inversion mentioned in 3. As a result, MOSFET works as a resistor, and drain current determined by applied VDS and load flows.

What are N and p-type semiconductor?

When a trivalent impurity is added, the semiconductor is termed as P-type whereas it is called N-type if the pentavalent impurity is added. Impurities such as Arsenic, Antimony, Phosphorous and Bismuth (elements having five valence electrons) are added in N-type semiconductors.

What is the meaning of N+ p junction?

The “p” (positive) side contains an excess of holes, while the “n” (negative) side contains an excess of electrons in the outer shells of the electrically neutral atoms there. This allows electrical current to pass through the junction only in one direction.

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What is P+ region?

When doping is done it is classified as n and p types. When you dope with excess electrons it is n+ When you dope with excess holes it is p+ When you dope with VERY LESS electrons it is n- When you dope with VERY LESS holes it is p-

How does N channel mosfet work?

The working of the n-channel MOSFET is based on the majority of the carriers that are electrons. These electrons move in the channel is responsible for the flow of current in the transistor. The p-substrate material is required in the formation of the gate terminals.

What are examples of p-type semiconductor?

Examples. Boron doped Silicon, Aluminum doped Silicon, Boron doped Germanium etc. are the examples of p-type semiconductors.

What is majority and minority carriers?

The more abundant charge carriers are called majority carriers, which are primarily responsible for current transport in a piece of semiconductor. The less abundant charge carriers are called minority carriers; in n-type semiconductors they are holes, while in p-type semiconductors they are electrons.

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What are semiconductors explain n-type and p-type semiconductors with example?

N- type :- When we use a pentavalent impurity for doping then we get a n-type semiconductor. Example of pentavalent impuritie are phosphorus or arsenic. P-type :- When we use trivalent impurities for doping then we get a p-type semiconductor. Example of trivalent inpurities are aluminium or boron.