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Small Signal Model

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Small Signal Model MOS Field-Effect Transistors (MOSFETs) * Quiz No 3 DE 27 (CE) MOSFET Analysis Small Signal Models Single Stage MOS Amplifier Common Source ... – PowerPoint PPT presentation

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Title: Small Signal Model


1
Small Signal Model MOS Field-Effect Transistors
(MOSFETs)
1
2
Quiz No 3 DE 27 (CE)
20-03-07
Rout.
  1. Draw small signal model (4)
  2. Find expression for Rout (2)
  3. Prove vo/vsig (ß1a2RC)/(Rsigrp) (4).

3
Figure 4.2 The enhancement-type NMOS transistor
with a positive voltage applied to the gate. An n
channel is induced at the top of the substrate
beneath the gate.
4
Enhancement-type NMOS transistor
5
MOSFET Analysis
iD iS, iG 0
6
Large-signal equivalent-circuit model of an
n-channel MOSFET Operating in the saturation
region.
7
Large-signal equivalent-circuit model of an
p-channel MOSFET Operating in the saturation
region.
8
Large Signal Model MOSFET
9
Transfer characteristic of an amplifier
10
Conceptual circuit utilized to study the
operation of the MOSFET as a small-signal
amplifier.
The DC BIAS POINT
To Ensure Saturation-region Operation
11
Signal Current in Drain Terminal
12
Figure 4.35 Small-signal operation of the
enhancement MOSFET amplifier.
13
Total instantaneous voltages vGS and vD
14
Small-signal p models for the MOSFET
15
Common Source amplifier circuit Example 4-10
16
Small Signal T Model NMOSFET
17
Small Signal Models
T Model
18
Single Stage MOS Amplifier
19
Amplifiers Configurations
20
Common Source Amplifier (CS) Configuration
21
Common Source Amplifier (CS)
  • Most widely used
  • Signal ground or an ac earth is at the source
    through a bypass capacitor
  • Not to disturb dc bias current voltages
    coupling capacitors are used to pass the signal
    voltages to the input terminal of the amplifier
    or to the Load Resistance
  • CS circuit is unilateral
  • Rin does not depend on RL and vice versa

22
Small Signal Hybrid p Model (CS)
23
Small Signal Hybrid p Model (CS)
24
Small-signal analysis performed directly on the
amplifier circuit with the MOSFET model
implicitly utilized.
25
Common Source Amplifier (CS) Summary
  • Input Resistance is infinite (Ri8)
  • Output Resistance RD
  • Voltage Gain is substantial

26
Common-source amplifier with a resistance RS in
the source lead
27
The Common Source Amplifier with a Source
Resistance
  • The T Model is preferred, whenever a resistance
    is connected to the source terminal.
  • ro (output resistance due to Early Effect) is not
    included, as it would make the amplifier non
    unilateral effect of using ro in model would be
    studied in Chapter 6

28
Small-signal equivalent circuit with ro neglected.
29
Small-signal Analysis.
30
Voltage Gain CS with RS
31
  • Source Resistance can be used to control the
    magnitude of the signal vgs thus ensure that
    vgs does not become too large to cause non-linear
    distortion
  • vgs ltlt 2(VGS-Vt) ltlt VOV

32
Common Source Configuration with Rs
  • Rs causes a negative feedback thus improving the
    stability of drain current of the circuit but at
    the cost of voltage gain
  • Rs reduces id by the factor
  • (1gmRs) Amount of feedback
  • Rs is called Source degeneration resistance as it
    reduces the gain

33
Small-signal equivalent circuit directly on
Circuit
34
A common-gate amplifier based on the circuit
35
Common Gate (CG) Amplifier
  • The input signal is applied to the source
  • Output is taken from the drain
  • The gate is formed as a common input output
    port.
  • T Model is more Convenient
  • ro is neglected

36
A small-signal equivalent circuit
37
A small-signal Analusis CG
38
A small-signal Analusis CG
39
Small signal analysis directly on circuit
40
The common-gate amplifier fed with a
current-signal input.
41
Summary CG
  • 4. CG has much higher output Resistance
  • CG is unity current Gain amplifier or a Current
    Buffer
  • CG has superior High Frequency Response.

42
Common Gate
  • Rin in independent of RL Rin 1/gm gm in
    order of mA/V.
  • Input resistance of the CG Amplifier is
    relatively low (in order of 1kv) than CS
    Amplifier
  • Loss of signal
  • CG is acts as Unity gain current amplifier
    current buffer useful for a Cascade circuitry

43
A common-drain or source-follower amplifier.
44
Small-signal equivalent-circuit model
45
Small-signal Analysis CD
46
(a) A common-drain or source-follower amplifier
output resistance Rout of the source follower.
47
(a) A common-drain or source-follower amplifier.
Small-signal analysis performed directly on the
circuit.
48
Common Source Circuit (CS)
49
Common Source Circuit (CS) With RS
50
Common Gate Circuit (CG) Current Follower
51
Common Drain Circuit (CD) Source Follower
52
Summary Comparison
53
Quiz No 4
27-03-07
  • Draw/Write the Following

BJT BJT MOSFET MOSFET
Types npn pnp nMOS pMOS
Symbols
p Model
T Model
gm
Re/rs
rp/rg

54
(No Transcript)
55
(No Transcript)
56
Problem 5-44
57
SOLUTION DC Analysis
58
SOLUTION DC Analysis
IE
Check for Active Mode
IB
59
Solution Small Signal Analysis
60
Solution Small Signal Analysis
61
Solution Small Signal Analysis Input Resistance
ib

vb
-
Rin
62
Solution Small Signal Analysis Output Resistance
Itest
IE
IRC
IE/(1ß)
Rout
63
Solution Small Signal Analysis Voltage Gain

veb
-
-
Vo


vi
-
64
Solution Small Signal Analysis Voltage gain

veb
-

vi
-
65
Solution Small Signal Analysis Voltage Gain

vi
-
66
Solution Small Signal Analysis Voltage Gain
67
Solution Small Signal Analysis Voltage Gain
-
Vo


vi
-
68
Problem
69
Small Signal Model MOSFET CD
70
Solution Small Signal Analysis
71
Solution Small Signal Analysis Input Resistance
Ig0
Rin
72
Solution Small Signal Analysis Output Resistance
Itest
ID
IRD
Vtest
IG0
Rout
73
Solution Small Signal Analysis Voltage Gain

vsg
-
-


vi
-
74
Solution Small Signal Analysis Voltage gain

vsg
-

vi
-
75
Solution Small Signal Analysis Voltage Gain

vi
-
76
Solution Small Signal Analysis Voltage Gain
77
Solution Small Signal Analysis Voltage Gain
-


vi
-
78
Solution Small Signal Analysis
79
Problem 6-127(e)
80
Transistor Pairings Amplifiers
  • Common Emitter Common Base (CE-CB)
  • Common Emitter Common Collector (CE-CC)
  • Common Collector - Common Emitter (CC-CE)
  • Common Collector - Common Base (CC-CB)

81
DC Analysis 6-127(e)
82
Small Signal Model
83
Small Signal Model
84
Small Signal Model
Rin
Rout
85
Problem6-127(f)Replacing BJT with MOSFET
86
Small Signal Model
87
Small Signal Model
88
Small Signal Model
Rin
Rout
89
(No Transcript)
90
Problem 6-127(f)
91
Solution P6-127(f)

vbe2
-

veb1
-
92
Solution P6-127(f)
93
Problem 6-127(f) with MOSFET
94
Solution P6-127(f)

vgs2
-

vsg1
-
95
Solution P6-127(f)
ig10

vi
-
96
Comparison BJT/MOSFET Cct
97
Small Signal Model
98
Problem 6-123
VBE0.7 V ß 200 Kn(W/L)2mA/V2 Vt1V
Figure P6.123
99
DC Analysis
Figure P6.123
100
DC Analysis
VBE0.7 V ß 200 Kn(W/L)2mA/V2 Vt11V Vt225mV
1mA
2V
0.7V
IG0
I0.7/6.80.1mA
101
Small Signal Model
102
Small Signal Model
103
Small Signal Model Voltage Gain
ig0


vi
vbe2
-
-
104
Small Signal Model Input Resistance
ii
ig0

vi
-
Rin
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