MICROELECTRONIC CIRCUITS W/LAB MAN >P<
MICROELECTRONIC CIRCUITS W/LAB MAN >P<
8th Edition
ISBN: 9780197529362
Author: SEDRA
Publisher: OXF
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Chapter 2.6, Problem 2.24E
To determine

The value of the dc offset voltage at the output along with the value of the resistor R3 placed in series with the non-inverting input so that the output offset voltage can be minimized. The new value of the output offset voltage Vo .

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Vcc=-12 V;R1=33 kΩ;RC=1.8 kΩ;βDC = 150;RE=560Ω;R2=5.6 k Ω確定圖5-38中的I1、I2和IB。 課本給的答案A: I1=315μA;I2=288μA ;IB=27μA,請教我計算過程
Consider the following circuit, assuming the switch has been in the same position for a long period of time before t = 0: Vx L iL R3 R2 R₁ Is + Vo - コロ >Where Is = 100 mA,R=2202, R2 = 4702,R3 =4702,L= 1 mH. As indicated on the diagram, before t = 0, the switch is closed, after t = 0 the switch is open. 1. What are Ve and Vo before the switch shown opens (answer to within 1% accuracy)? Vx = V, Vo = V 2. What is the T of the RL circuit after the switch operates (answer to within 1% accuracy)? T= μs 3. Complete the derivation for the inductor current in (t) differential equation below by filling in the blank coefficients (answer to within 1% accuracy): diy(1) dt di (0) + iz (t)+ = 0 4. Hence or otherwise, find the time domain expression for Vo(t) (answer to within 1% accuracy): Vo(t)= exp(
確定圖5-38中的I1、I2和IB。 Vcc=-12 V;R1=33 kN;RC=1.8 kN;βDC = 150;RE=560;R2=5.6 kN  圖 5-38

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