How do MOSFETS work? Explain the operating principle (the fundamental physics) for asingle-electron transistor, including the criteria for making sure it works properly.
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How do MOSFETS work? Explain the operating principle (the fundamental physics) for a
single-electron transistor, including the criteria for making sure it works properly.
Step by step
Solved in 2 steps
- a) What is a Field effect transistor? Give its description and classification.b) Explain the working of n-channel / p-channel Junction Field Effect Transistor with its drain characteristics.i need the answer quicklya. We discussed in class the "two conditions" that allow current to flow through a MOSFET, and "two conditions" that would not allow current to flow. Write down what these conditions are: b. Consider a n-channel MOSFET and a p-channel MOSFET. How would you connect these two transistors in order to create a basic CMOS Inverter, as discussed in class. c. Now consider a floating gate, containing electrons. Use Gauss' Law to explain whether or not inversion can occur in the channel if a positive gate voltage were to be applied d. Depending on whether or not current flows through the channel, what does this tell you about whether or not you have stored a "0" or a “1”? e. Use principles of Coulomb's Law to explain how you would remove electrons from the floating gate (i.e. to "flash" your flash memory device)
- exist is for valence electrons to "leap" into the conduction band with the Enoiteou Question 5 pplication of sufficient energy, legving a hole, or vacancy, behind in the valence band: Valence electron leaping into conduction band Conduction band valence band With sufficient thermal energy, these electron-hole pairs will form spontaneously. Af room temperature, however, this activity is slight. we may greatly enhance charge carrier formation by adding specific impurities to the semiconducting material. The energy states of atoms having different electron configurations do not precisely "blend" with the electron bands of the parent semiconductor crystal, causing additional energy levels to form. Some types of impurities will cause extra donor electrons to lurk just beneath the main conduction band of the crystal. These types of impurities are called pentavalent, because they have 5 valence electrons per atom rather than 4 as the parent substance typically possesses: Doped with a…A silicon p-n junction consists of a p-type region containing 3x1016 cm-3 acceptors and an n- type region containing also 1017 cm-3 donors. a. Calculate the density of electrons and holes in both p-type and n-type regions under thermal equilibrium at room temperature. b. Calculate the built-in potential of the p-n junction? c. Calculate the width of the depletion layer under a reverse bias of 1.0 V. d. Based on c, calculate the junction capacitance. Note that the junction cross-session area is 1.2 mm2.A semiconductor Hall probe has a Hall coefficient (RH) of -3.75 x 105 m³/C in the temperature range of 130 K and 350 K. Its electrical conductivity is 150 (2.m)-¹. A. Deduce, with explanation, the type of carriers in the semiconductor B. Calculate the density and mobility of the charge carriers C. Give 2 examples of Hall probe application and 2 material fabrication methods for Hall effect proves.
- Describe an extrinsic semiconductor material. What is the value or the electron concentration in an n-type material, and what is the value of the hole concentration in a p-type material?Given below are two statements: Statement I: PN junction diodes can be used to function as transistor, simply by connecting two diodes, back to back, which acts as the base terminal. Statement II: In the study of transistor, the amplification factor β indicates ratio of the collector current to the base current. In the light of the above statements, choose the correct answer from the options given below. a. Statement I is false but Statement II is true. b. Both Statement I and Statement II are true. c. Statement I is true but Statement II is false. d. Both Statement I and Statement II are false.Explain how a metal-oxide semiconductor field-effect transistor (MOSFET) acts as a transistor. Explain how it functions as a transistor by describing its parts and how they work.
- A. Define the drift current in a semiconductor and give the mathematical expressions about both the current density of the electron drift current and the current density of the hole drift current. Define the diffusion current in a semiconductor and give the mathematical expressions about both the current density of the hole diffusion current and the current density of the electron diffusion current. B. P-N junction is given. Please: i) Draw the cross-section of this p-n junction and show the depletion region and the corresponding electrical field for an applied external voltage V # 0 volts if the positive terminal of the voltage source is connected to the n-side of the p-n junction and the negative terminal of the voltage source is connected to the p-side of this p-n junction. ii) Draw the cross-section of this p-n junction and show the depletion region and the corresponding electrical field for an applied external voltage V # 0 volts if the negative terminal of the voltage source is…Re 14.4 V 11.4 V Rg 8 kohm 12 kohm 12 V 20 V le(mA) A !g-1.425 mA Vee(Volt) Answer the questions given below, since they are taken from the circuit next to the output chart given above a) What common transistor configuration is the given circuit diagram? b) what type is the given transistor? NPN or PNP? SpecifyCan you please solve it?