Figure 1 shows the transfer curve of a network with an unknown channel Junction Field Effect Transistor (JFET). (1) Identify the channel of the JFET; justify your answer. (1) Given the supply voltage of 16 V, design a voltage divider network using the JFET in (i) above. Take R1 = 1400R; R2 = 180R; and Vo = 10 v. Please use the nearest standard resistor values. (iii) With the obtained standard resistance values in (ii) above, determine the new Ipo and V Gso, using the mathematical approach only.

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I, (mA)
8 (Ipss)
7
6.
5
3.
Q-point
= 2.4 mA
Ioa
2
Ip=1.21 mA(VGs =0 V)
-4
-3
-2 -1
12
VG =1.82 V
(Ip=0 mA)
3
(V)
Vaso =-1.8 V
Transcribed Image Text:I, (mA) 8 (Ipss) 7 6. 5 3. Q-point = 2.4 mA Ioa 2 Ip=1.21 mA(VGs =0 V) -4 -3 -2 -1 12 VG =1.82 V (Ip=0 mA) 3 (V) Vaso =-1.8 V
Figure 1 shows the transfer curve of a network with an unknown channel
Junction Field Effect Transistor (JFET).
(1)
Identify the channel of the JFET; justify your answer.
(ii)
Given the supply voltage of 16 V, design a voltage divider network using
the JFET in (i) above. Take R1 =
1400; R2 = 180 Rs; and Vo = 10 V.
Please use the nearest standard resistor values.
(ii)
With the obtained standard resistance values in (ii) above, determine the
newIpą and V GsQ, using the mathematical approach only.
Transcribed Image Text:Figure 1 shows the transfer curve of a network with an unknown channel Junction Field Effect Transistor (JFET). (1) Identify the channel of the JFET; justify your answer. (ii) Given the supply voltage of 16 V, design a voltage divider network using the JFET in (i) above. Take R1 = 1400; R2 = 180 Rs; and Vo = 10 V. Please use the nearest standard resistor values. (ii) With the obtained standard resistance values in (ii) above, determine the newIpą and V GsQ, using the mathematical approach only.
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