chapter03 - Chapter 3 3.1 3.3 3.6 3.10 3.13 3.17 3.20 3.21...

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3 Chapter 3 3.1 0.0373 μ m, 0.0339 μ m, 3.39 x 10 -3 μ m, 0.979 V, 5.24 x 10 5 V/cm 3.3 10 18 /cm 3 , 10 2 /cm 3 , 10 18 /cm 3 , 10 2 /cm 3 , 0.921 V, 0.0488 μ m 3.6 2.55 V, 1.05 μ m 3.10 6400 A/cm 2 3.13 1.00 x 10 21 /cm 4 3.17 290 K 3.20 312K 3.21 1.39, 3.17 pA 3.22 0.837 V; 0.768 V; 0 A; 9.43 x 10 -19 A, -1.00 x 10 -18 A 3.25 1.34 V; 1.38 V 3.28 0.518 V; 0.633 V 3.31 0.757 V; 0.721 V 3.34 1.96 mV/K 3.37 0.633 V, 0.949 μ m, 3.89 μ m, 12.0 μ m 3.39 374 V 3.41 4 V, 0 Ω 3.43 9.80 nF/cm 2 ; 188 pF 3.45 400 fF, 10 fC; 100 pF, 0.5 pC 3.49 9.97 MHz; 15.7 MHz 3.51 0.495 V, 0.668 V 3.53 0.708 V, 0.718 V 3.56 (a) Load line: (450 μ A, 0.500 V); SPICE: (443 μ A, 0.575 V) (b) Load line: (-667 μ A, -4 V); (c) Load line: (0 μ A, -3 V); 3.59 (0.600 mA, -4 V) , (0.950 mA, 0.5 V) , (-2.00 mA, -4 V) 3.65 Load line: (50 μ A, 0.5 V); Mathematical model: (49.9 μ A, 0.501 V); Ideal diode model: (100 μ A, 0 V); CVD model: (40.0 μ A, 0.6 V) 3.69 (a) 0.625 mA, 3 V; 0.625 mA, -5 V; 0 A, -5 V; 0 A, 7 V
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This note was uploaded on 01/20/2010 for the course ECE 255 taught by Professor Staff during the Spring '08 term at Purdue University-West Lafayette.

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chapter03 - Chapter 3 3.1 3.3 3.6 3.10 3.13 3.17 3.20 3.21...

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