Microelectronic Circuits (The Oxford Series in Electrical and Computer Engineering) 7th edition
Microelectronic Circuits (The Oxford Series in Electrical and Computer Engineering) 7th edition
7th Edition
ISBN: 9780199339136
Author: Adel S. Sedra, Kenneth C. Smith
Publisher: Oxford University Press
Question
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Chapter 5, Problem 5.23P

(a)

To determine

Range of resistor values.

Available range if the device width is halved.

(b)

To determine

Range of resistor values.

Available range if the device length is halved.

(c)

To determine

Range of resistor values.

Available range if the device width as well as length are halved.

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Students have asked these similar questions
The PMOS transistor in the circuit below has ∣Vt∣=0.5 V, kp=20 mA/V2 , and λ=0. Also, I=0.9 mA. (i) Find vO as a function of vI assuming the transistor is operating in saturation. (ii) Find the allowable ranges of vO and vI. Assume that the minimum voltage VCS required across each current source is 0.3 V. FIND: (i) vO =_____________ (ii) allowable vO range: ______________ allowable vI range: ______________
A transistor with k = 1 mA / V2 and VTH = 1.1 V is configured so that VDS is always one fifth of VGS. If the transistor is to act as a 400 Ω resistor, what must the value of VGS be set to? Express your answer in volts, accurate to two decimal places.
(a) An n-channel MOSFET has a mobility of 600 cm2/V · s and a channel length of 1 μm. What is the transistor’s fT if VGS − VT N = 0.25 V. (b) Repeat for a PMOS device with a mobility of 250 cm2/V · s. (c) Repeat for transistors in a new technology with L = 0.1 μm. (d) Repeat for transistors in a technology with L = 25 nm.

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Microelectronic Circuits (The Oxford Series in Electrical and Computer Engineering) 7th edition

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