7.2 Fixed-Bias Configuration 1. For the fixed-bias configuration of Fig. 7.75: a. Sketch the transfer characteristics of the device. b. Superimpose the network equation on the same graph. c. Determine Ipo and Vpsg d. Using Shockley's equation, solve for Ip and then find Vps Compare with the solutions of part (c). 1 ΜΩ, 1.5 V 14 V 1.8 ΚΩ IDQ Vosg Ipss = 12 mA Vp =-4 V FIG. 7.75 Problems 1 and 37. ID = IDss 1. - VGS Vp/

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7.2 Fixed-Bias Configuration
1. For the fixed-bias configuration of Fig. 7.75:
a. Sketch the transfer characteristics of the device.
b. Superimpose the network equation on the same graph.
c. Determine Ip and Vpsg
d. Using Shockley's equation, solve for Ip, and then find Vps Compare with the solutions of
part (c).
1 ΜΩ,
1.5 V
14 V
1.8 ΚΩ
IDQ
VDsq
Ipss = 12 mA
Vp =-4 V
FIG. 7.75
Problems 1 and 37.
VGS
ID = Ins(1 - Vas) ²
Vp
Transcribed Image Text:7.2 Fixed-Bias Configuration 1. For the fixed-bias configuration of Fig. 7.75: a. Sketch the transfer characteristics of the device. b. Superimpose the network equation on the same graph. c. Determine Ip and Vpsg d. Using Shockley's equation, solve for Ip, and then find Vps Compare with the solutions of part (c). 1 ΜΩ, 1.5 V 14 V 1.8 ΚΩ IDQ VDsq Ipss = 12 mA Vp =-4 V FIG. 7.75 Problems 1 and 37. VGS ID = Ins(1 - Vas) ² Vp
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Step 1

The fixed biased configuration circuit diagram is shown below,

Electrical Engineering homework question answer, step 1, image 1

Here,IDSS=12 mAVp=-4 V

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