9.→ The figure below shows the drain characteristics for a 2N4416 JFET transistor as displayed on a curve tracer. Determine Vp for the characteristics of the figure using IDSs and ID at some value of VGs. That is, simply substitute into Shockley's equation and solve for Vp. Compare the result to the measured value of -3 V from the characteristics. ↓ DSS=9mA DSS = 4.5 mA 2 (VGS = -0.9 V) 1 mA div 22 1 V div VGS = 0V Vertical Sens. 1 mA per div. VGS = -0.5 V Horizontal Sens. 1 V per div. -VGS = -1 V 500 mV per step. &m 2 m per div. VGS = -1.5 V VGS =-2 V Vp-3V

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9.→ The figure below shows the drain characteristics for a 2N4416 JFET transistor as displayed
on a curve tracer. Determine Vp for the characteristics of the figure using IDSs and ID at some
value of VGs. That is, simply substitute into Shockley's equation and solve for Vp. Compare
the result to the measured value of -3 V from the characteristics.
↓
DSS=9mA
DSS = 4.5 mA
2
(VGS = -0.9 V)
1 mA
div
22
1 V
div
VGS = 0V
Vertical
Sens.
1 mA
per div.
VGS = -0.5 V
Horizontal
Sens.
1 V
per div.
-VGS = -1 V
500 mV
per step.
&m
2 m
per div.
VGS = -1.5 V
VGS =-2 V
Vp-3V
Transcribed Image Text:9.→ The figure below shows the drain characteristics for a 2N4416 JFET transistor as displayed on a curve tracer. Determine Vp for the characteristics of the figure using IDSs and ID at some value of VGs. That is, simply substitute into Shockley's equation and solve for Vp. Compare the result to the measured value of -3 V from the characteristics. ↓ DSS=9mA DSS = 4.5 mA 2 (VGS = -0.9 V) 1 mA div 22 1 V div VGS = 0V Vertical Sens. 1 mA per div. VGS = -0.5 V Horizontal Sens. 1 V per div. -VGS = -1 V 500 mV per step. &m 2 m per div. VGS = -1.5 V VGS =-2 V Vp-3V
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