Question1: In your own words, supported by figures, qualitatively describe the silicon pn junction in (a) equilibrium; (b) reverse bias; (e) forward bias. Question2: A pn junction uses NA = 2x1016 /cm and Np=9x1015 /cm. Determine the built-in voltage at room temperature (T-600k)? %3D

Introductory Circuit Analysis (13th Edition)
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Question1: In your own words, supported by figures, qualitatively describe the silicon pn
junction in (a) equilibrium; (b) reverse bias; (e) forward bias.
Question2: A pn junction uses NA = 2x1016 /cm and Np-9x1015 /cm?. Determine the built-in
voltage at room temperature (T-600k)?
Question3: Find the built-in voltage in a pn junction with acceptor concentration=1016/cm and
donor concentration=1015/cm'. Also, calculate the width of the depletion region and the
magnitude stored on each side of the junction. Use n=1.5x1010 /cm', ɛ, = 11.7 €g.
Eo=8.854x10-14 F/cm, q=1.6x10-19c
Question4: A pn junction is biased with a reverse voltage (VR) and is doped with Na = 2x1016
/cm' and ND-8x10!5 /cm Determine the capacitance of the device with (a) VR-0v; (b) VR-1v.
E, = 11.7 €0, E0-8.854x10-14 F/cm, q=1.6x10-1°c, n=1.5x1010 /cm , m=1/3, Vr=25.8mV, Cross-
section area = 2x10 cm?.
%3D
Transcribed Image Text:Question1: In your own words, supported by figures, qualitatively describe the silicon pn junction in (a) equilibrium; (b) reverse bias; (e) forward bias. Question2: A pn junction uses NA = 2x1016 /cm and Np-9x1015 /cm?. Determine the built-in voltage at room temperature (T-600k)? Question3: Find the built-in voltage in a pn junction with acceptor concentration=1016/cm and donor concentration=1015/cm'. Also, calculate the width of the depletion region and the magnitude stored on each side of the junction. Use n=1.5x1010 /cm', ɛ, = 11.7 €g. Eo=8.854x10-14 F/cm, q=1.6x10-19c Question4: A pn junction is biased with a reverse voltage (VR) and is doped with Na = 2x1016 /cm' and ND-8x10!5 /cm Determine the capacitance of the device with (a) VR-0v; (b) VR-1v. E, = 11.7 €0, E0-8.854x10-14 F/cm, q=1.6x10-1°c, n=1.5x1010 /cm , m=1/3, Vr=25.8mV, Cross- section area = 2x10 cm?. %3D
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