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This module is adapted from the Connexions module entitled Basic MOS Structure by Bill Wilson.

[link] shows the basic steps necessary to make the MOS structure. It will help us in our understanding if we now rotateour picture so that it is pointing sideways in our next few drawings. [link] shows the rotated structure. Note that in the p-silicon we have positively chargedmobile holes, and negatively charged, fixed acceptors. Because we will need it later, we have also shown the band diagram forthe semiconductor below the sketch of the device. Note that since the substrate is p-type, the Fermi level is located downclose to the valance band.

Formation of the metal-oxide-semiconductor (MOS) structure.
Basic metal-oxide-semiconductor (MOS) structure.

Let us now place a potential between the gate and the silicon substrate. Suppose we make the gate negative with respect to thesubstrate. Since the substrate is p-type, it has a lot of mobile, positively charged holes in it. Some of them will beattracted to the negative charge on the gate, and move over to the surface of the substrate. This is also reflected in the banddiagram shown in [link] . Remember that the density of holes is exponentially proportional to how close the Fermi level is tothe valence band edge. We see that the band diagram has been bent up slightly near the surface to reflect the extra holeswhich have accumulated there.

Applying a negative gate voltage to a basic metal-oxide-semiconductor (MOS) structure.

An electric field will develop between the positive holes and the negative gate charge. Note that the gate and the substrateform a kind of parallel plate capacitor, with the oxide acting as the insulating layer in-between them. The oxide is quite thincompared to the area of the device, and so it is quite appropriate to assume that the electric field inside the oxideis a uniform one. (We will ignore fringing at the edges.) The integral of the electric field is just the applied gate voltage V g . If the oxide has a thickness x ox then since E ox is uniform, it is given by, [link] .

E ox V g x ox

If we focus in on a small part of the gate, we can make a little "pill" box which extends from somewhere in the oxide, across theoxide/gate interface and ends up inside the gate material someplace. The pill-box will have an area Δ s . Now we will invoke Gauss' law which we reviewed earlier. Gauss' law simply says that the surface integral over aclosed surface of the displacement vector D (which is, of course, ε x E ) is equal to the total charge enclosed by that surface. We will assume that there is a surfacecharge density -Q g Coulombs/cm 2 on the surface of the gate electrode ( [link] ). The integral form of Gauss' Law is just:

S ε ox E Q encl
Finding the surface charge density.

Note that we have used ε ox E in place of D . In this particular set-up the integral is easy to perform, since theelectric field is uniform, and only pointing in through one surface - it terminates on the negative surface charge insidethe pill-box. The charge enclosed in the pill box is just -( Qg Δ s ), and so we have (keeping in mind that the surface integral of a vectorpointing into the surface is negative), [link] , or [link] .

Questions & Answers

differentiate between demand and supply giving examples
Lambiv Reply
differentiated between demand and supply using examples
Lambiv
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Lambiv
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Venny Reply
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Eliyee
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WARKISA
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Lambiv
multiple choice question
Aster Reply
appreciation
Eliyee
explain perfect market
Lindiwe Reply
In economics, a perfect market refers to a theoretical construct where all participants have perfect information, goods are homogenous, there are no barriers to entry or exit, and prices are determined solely by supply and demand. It's an idealized model used for analysis,
Ezea
What is ceteris paribus?
Shukri Reply
other things being equal
AI-Robot
When MP₁ becomes negative, TP start to decline. Extuples Suppose that the short-run production function of certain cut-flower firm is given by: Q=4KL-0.6K2 - 0.112 • Where is quantity of cut flower produced, I is labour input and K is fixed capital input (K-5). Determine the average product of lab
Kelo
Extuples Suppose that the short-run production function of certain cut-flower firm is given by: Q=4KL-0.6K2 - 0.112 • Where is quantity of cut flower produced, I is labour input and K is fixed capital input (K-5). Determine the average product of labour (APL) and marginal product of labour (MPL)
Kelo
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Shukri
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Shukri
what is monopoly mean?
Habtamu Reply
What is different between quantity demand and demand?
Shukri Reply
Quantity demanded refers to the specific amount of a good or service that consumers are willing and able to purchase at a give price and within a specific time period. Demand, on the other hand, is a broader concept that encompasses the entire relationship between price and quantity demanded
Ezea
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Shukri
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Lilia Reply
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Fiker Reply
Economic growth as an increase in the production and consumption of goods and services within an economy.but Economic development as a broader concept that encompasses not only economic growth but also social & human well being.
Shukri
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Jabir
What do you think is more important to focus on when considering inequality ?
Abdisa Reply
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Awais Reply
sir...I just want to ask one question... Define the term contract curve? if you are free please help me to find this answer 🙏
Asui
it is a curve that we get after connecting the pareto optimal combinations of two consumers after their mutually beneficial trade offs
Awais
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Asui
In economics, the contract curve refers to the set of points in an Edgeworth box diagram where both parties involved in a trade cannot be made better off without making one of them worse off. It represents the Pareto efficient allocations of goods between two individuals or entities, where neither p
Cornelius
In economics, the contract curve refers to the set of points in an Edgeworth box diagram where both parties involved in a trade cannot be made better off without making one of them worse off. It represents the Pareto efficient allocations of goods between two individuals or entities,
Cornelius
Suppose a consumer consuming two commodities X and Y has The following utility function u=X0.4 Y0.6. If the price of the X and Y are 2 and 3 respectively and income Constraint is birr 50. A,Calculate quantities of x and y which maximize utility. B,Calculate value of Lagrange multiplier. C,Calculate quantities of X and Y consumed with a given price. D,alculate optimum level of output .
Feyisa Reply
Answer
Feyisa
c
Jabir
the market for lemon has 10 potential consumers, each having an individual demand curve p=101-10Qi, where p is price in dollar's per cup and Qi is the number of cups demanded per week by the i th consumer.Find the market demand curve using algebra. Draw an individual demand curve and the market dema
Gsbwnw Reply
suppose the production function is given by ( L, K)=L¼K¾.assuming capital is fixed find APL and MPL. consider the following short run production function:Q=6L²-0.4L³ a) find the value of L that maximizes output b)find the value of L that maximizes marginal product
Abdureman
types of unemployment
Yomi Reply
What is the difference between perfect competition and monopolistic competition?
Mohammed
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Source:  OpenStax, Chemistry of electronic materials. OpenStax CNX. Aug 09, 2011 Download for free at http://cnx.org/content/col10719/1.9
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