26 In the circuit in Figure P3.26, the transistor parameters are VīN and K, = 0.5 mA/V². Calculate VGs, Ip, and Vps. = 0.8 V VDp = 10 V Rp= 4 k2 R1 = 32 k2 R2= 18 k3 Rs=2 k2 Figure P3.26

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I have seen some solutions for this problem, but there are so many different answers! How do they get 2000I_D=(2.8-2000I_D)^2? The algebra to me is not correct.

 

3.26 In the circuit in Figure P3.26, the transistor parameters are VrN = 0.8 V
and K, = 0.5 mA/V². Calculate VGS, Ip, and Vps.
VDp= 10 V
R1 = 32 k2 ·
Rp=4 k2
R2 = 18 k2:
R5=2 kQ
Figure P3.26
ww
Transcribed Image Text:3.26 In the circuit in Figure P3.26, the transistor parameters are VrN = 0.8 V and K, = 0.5 mA/V². Calculate VGS, Ip, and Vps. VDp= 10 V R1 = 32 k2 · Rp=4 k2 R2 = 18 k2: R5=2 kQ Figure P3.26 ww
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