Electronics (III) Academic Year 112 | Department of Electrophysics Prof. Jenn-Fang Chen

This course is provided by  NYCU Electrophysics .

Chapter 7 Differential Amplifiers
7.1 MOS amplifier with biasing problems, Constant-current biasing, Replace the bypassing capacitor by a CG
7.2 MOS Differential amplifiers, DC biasing, Differential gain, CM gain, Practical current source
7.3 Improved constant-current source, Input CM range, Cascode differential amplifier
7.4 Constant-current load, Cascode differential amplifier, Folded cascode, Large-signal operations
7.5 Current-mirror load, Direct solving, Short-circuit current and Rout, Input CM range, A two-stage OP
7.6 Feedback OP circuits, Effect of the input offset voltage, BJT differential amplifiers, BJT cascode amplifiers
7.7 BJT current-mirror load, Input CM range, DC offset, BJT two-stage OP, BJT cascode current-mirror load
7.8 BJT cascode current-mirror load, Offset problems, Wilson load, Another BJT OP, DC biasing and AC gain

 

Chapter 8 Negative Feedback
8.1 Voltage-voltage feedback, Virtual short circuit, Bandwidth
8.2 Voltage-current feedback, Laser driver, Direct solving, Using Feedback theory, Improved output resistance
8.3 Current-voltage feedback, Model for the feedback network, Two-stage OP, Current-current feedback
8.4 Current-current feedback, the loop gain, Internal capacitance of MOS and BJT, A CS amplifier

 

Textbook:Microelectronic circuits by Sedra/ Smith.
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Instructor(s) Department of Electrophysics Prof. Jenn-Fang Chen 
Course Credits 3 Credits
Academic Year 112 Academic Year
Level College Students
Prior Knowledge Electronic (1) and Electronic (2) are required
Related Resources Course Video  

WeekCourse ContentCourse Video
Chapter 7 Differential Amplifiers
7.1.1 MOS amplifier with biasing problems
7.1.2 Constant-current biasing
7.1.3 Replace the bypassing capacitor by a CG
Watch Online
7.2.1 MOS Differential amplifiers
7.2.2 DC biasing
7.2.3 Differential gain
7.2.4 Common-mode gain
7.2.5 Practical current source
7.2.6 Complementary outputs
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7.3.1 Improved constant-current source
7.3.2 Input common-mode range
7.3.3 Cascode differential amplifier with cascode load
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7.4.1 MOS differential amplifier with constant-current load
7.4.2 Cascode differential amplifier with cascode load
7.4.3 Output resistance of the cascode load
7.4.4 Folded cascode differential amplifier
7.4.5 Expand the linear region
7.4.6 Large-signal operations
7.4.7 Differential amplifier with current-mirror load (1)
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7.5.1 Differential amplifier with current-mirror load (2)
7.5.2 Direct solving the differential gain
7.5.3 Short-circuit current and output resistance
7.5.4 Common-mode gain
7.5.5 Input common-mode range
7.5.6 A two-stage OP
7.5.7 OP model
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7.6.1 Feedback OP circuits
7.6.2 DC offset problems
7.6.3 Effect of the input offset voltage
7.6.4 BJT differential amplifiers
7.6.5 Input common-mode range
7.6.6 BJT cascode amplifiers
7.6.7 BJT cascode amplifier with cascode load
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7.7.1 BJT current-mirror load
7.7.2 Common-mode gain
7.7.3 Input common-mode range
7.7.4 DC offset
7.7.5 BJT two-stage OP
7.7.6 BJT cascode current-mirror load (1)
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7.8.1 BJT cascode current-mirror load (2)
7.8.2 Offset problems
7.8.3 Wilson load
7.8.4 Another BJT OP
7.8.5 DC biasing and AC gain
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Chapter 8 Negative feedback circuits
8.1.1 Voltage-voltage feedback
8.1.2 Virtual short circuit
8.1.3 Bandwidth
Watch Online
8.2.1 Voltage-current feedback
8.2.2 Laser driver
8.2.3 Direct solving
8.2.4 Using Feedback theory
8.2.5 Improved output resistance
Watch Online
8.3.1 Current-voltage feedback
8.3.2 Equivalent circuit of the feedback network
8.3.3 Direct solving
8.3.4 Two-stage OP with current-voltage feedback
8.3.5 Current-current feedback
8.3.6 Equivalent circuit of the feedback network
8.3.7 OP current-current feedback
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8.4.1 Current-current feedback example
8.4.2 Find the loop gain
8.4.3 Internal capacitance of MOS and BJT
8.4.4 Frequency response of a CS amplifier
8.4.5 Frequency response of a voltage-voltage feedback
8.4.6 Bode plots
8.4.7 Condition for oscillation
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