For this question : https://www.bartleby.com/questions-and-answers/i-need-a-circuit-that-will-do-normal-am-modulation-using-diode-switching-and-then-demodulate-it-enve/b8317fe9-a8b5-4b96-8fb7-1fb978c62717 I used the circuit in the provided photo And i got wrong values, the output should be the message signal but i got another ouput. I provided a photo after the circuit photo that shows the result in the time domain.
MOSFET (Metal Oxide Semiconductor Field Effect Transistor)
MOSFET stands for Metal Oxide Silicone Field Effect Transistor or Metal Oxide Semiconductor Field Effect Transistor. It is a type of IGFET, which means Insulated Gate Field Effect Transistor. A MOSFET has four-terminals namely gate (G), drain (D), source (S), and body (B). The body of the MOSFET is connected to the source terminal and it forms a three-terminal device. It is used in both the analog and digital circuits.
Power MOSFET
The power MOSFET transistor structures are enhancement types. The voltage rating is enhanced in the enhancement-mode MOSFETs by the use of a drift layer. The MOSFET generally contains four layers. The middle layer is the p-type layer also known as the body, whereas the n-type layer is called the drift layer or region. The drift region decides the breakdown voltage, and hence it is the lightly doped region in power MOSFETs. The first and last layers are the n+ layers. The first layer and the last layers are the source and drain layers. The structure of N-channel MOSFET (e-MOSFET) is n+ p n- n+, but the shape of p-channel is the opposite doping shape.
![V3
V4
R8
www
1k
R10
www
1k
R6
1k
D3
D1N4148
W
C5 1n
253.3m
L1
D4
D1N4148
C7
70n
TR14 1k](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d77b2ec-8bae-471c-b19a-385d569618f1%2F99ca20d1-089a-4368-8719-434b14333333%2Fv40f326_processed.jpeg&w=3840&q=75)
![巴拉
$422 Schematic2
11
3母Q 【魟美目|冷或肥心传彩的学识|
100nU
50nU
DU
-50nU+
05
□ U(R14:2,0)
Schematic2 (
Circuit read in and checked, no enors
Calculating bias point
Bias point calculated
Calculating bias point for Transient Analysis
Bias point calculated
Transient Analysis
Transient Analysis finished
Simulation complete
51°F
Mostly cloudy
F1
4
@
F2
0.2ns
F3
#
-
F4
—
A
x
0.4ns
F5
*-
06
Q Search
F6
0.6ms
11
*+
F7
08
0.8ms
Time step 6.022E-06 Time 2.000E-03
F8
KI Analysis Watch Devices/
✈
1.0ms
Tine
F9
YS
F10
F11
000
1.2ns
End 2.000E-03
F12
Insert
1.4ns
51
PrtSc
1.6ms
Time: 2.000E-03
Delete
Home
►/11
ENG
1.8ms
100%
End
4
2.0ns
8:08 PM
1/11/2024
PgUp
144
—
PgDn
MA](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9d77b2ec-8bae-471c-b19a-385d569618f1%2F99ca20d1-089a-4368-8719-434b14333333%2Fdvwrtg_processed.jpeg&w=3840&q=75)
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