Given the following N-channel enhancement MOSFET circuit 1.5 MQ R2 75 k2 Rp Vop 10 V I MQ 39 k2 Rs The data are VOSTH =1 V and k 0.0125 mA / V. 1) The correct quadratic equation for solving Vos is i) 0.4875Vos-0.025Vos - 3.5125 0 ii) 0.4875Vos + 0.025Vos-3.5125 =0 iii) 0.4875Vos-1.975Vos - 3.5125 =0 iv) 0.4875Vos + 1.975Vos - 4.48750 2) Ip is i) ii) iii) iv) 34.39 µA 172.05 µA 19.36 µA 68.78 µA 3) Vos is i) ii) iii) iv) 2.16 V 8.76 V 6.08 V 7.52 V

Introductory Circuit Analysis (13th Edition)
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Given the following N-channel enhancement MOSFET circuit
1.5 MQ
R2
75 k2
Rp
D
Vop
10 V
I M2
39 k2
Rs
The data are VGSTH =1 V and k= 0.0125 mA / V.
%3D
%3D
1) The correct quadratic equation for solving VGs is
i)
0.4875VGS-0.025VGS- 3.5125 = 0
ii)
0.4875VGS + 0.025VGS - 3.5125 = 0
0.4875Ves- 1.975Ves- 3.5125 = 0
iv)
0.4875Ves + 1.975Ves - 4.4875 = 0
iii)
2) Ip is
34.39 µA
172.05 µA
19.36 µA
68.78 µA
ii)
111
iv)
3) Vos is
i)
ii)
ii)
iv)
2.16 V
8.76 V
6.08 V
7.52 V
Transcribed Image Text:Given the following N-channel enhancement MOSFET circuit 1.5 MQ R2 75 k2 Rp D Vop 10 V I M2 39 k2 Rs The data are VGSTH =1 V and k= 0.0125 mA / V. %3D %3D 1) The correct quadratic equation for solving VGs is i) 0.4875VGS-0.025VGS- 3.5125 = 0 ii) 0.4875VGS + 0.025VGS - 3.5125 = 0 0.4875Ves- 1.975Ves- 3.5125 = 0 iv) 0.4875Ves + 1.975Ves - 4.4875 = 0 iii) 2) Ip is 34.39 µA 172.05 µA 19.36 µA 68.78 µA ii) 111 iv) 3) Vos is i) ii) ii) iv) 2.16 V 8.76 V 6.08 V 7.52 V
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