Difference between revisions of "EE 220"
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references and translinear circuits. Discrete-time signals. Switched-capacitor circuits. Co-req: CoE 143 or equiv. 6h (3 lec, 3 lab) 4 u. | references and translinear circuits. Discrete-time signals. Switched-capacitor circuits. Co-req: CoE 143 or equiv. 6h (3 lec, 3 lab) 4 u. | ||
− | == | + | == Syllabus == |
{| class="wikitable" | {| class="wikitable" | ||
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|- | |- | ||
| 6 | | 6 | ||
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+ | Operational Transconductance Amplifiers (OTAs) | ||
+ | * Op-Amps vs. OTAs | ||
+ | * Switched-Capacitor Feedback | ||
+ | | | ||
+ | * Differentiate between operational amplifiers (Op-Amps) and operational transconductance amplifiers (OTAs). | ||
+ | * Analyze OTA circuits with capacitive feedback. | ||
+ | * Verify the behavior of these circuits via simulation. | ||
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|- | |- | ||
| 7 | | 7 | ||
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+ | Differential Circuits | ||
+ | * Differential-Mode | ||
+ | * Common-Mode | ||
+ | * CMRR, PSRR | ||
+ | * Baluns | ||
+ | | | ||
+ | * Differentiate and identify the advantages/disadvantages and cost-benefit trade-offs between fully-differential circuits vis-a-vis single-ended circuits. | ||
+ | * Model and analyze the behavior of fully-differential circuits. | ||
+ | * Verify the behavior of these circuits via simulation. | ||
| | | | ||
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|- | |- | ||
| 8 | | 8 | ||
− | |||
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+ | Current Mirrors | ||
+ | * Cascoding | ||
+ | * Common-Mode Feedback | ||
+ | | | ||
+ | * Model, analyze, and design current mirror circuits for biasing fully-differential and single-ended OTAs. | ||
+ | * Model, analyze, and design common-mode feedback (CMFB) circuits in differential OTAs. | ||
+ | * Verify the behavior of these circuits via simulation. | ||
| | | | ||
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|- | |- | ||
| 9 | | 9 | ||
− | |||
| | | | ||
+ | The Folded-Cascode Amplifier | ||
+ | * DC Characteristics | ||
+ | * Small-signal Characteristics | ||
+ | * Noise | ||
+ | | | ||
+ | * Identify the advantages and disadvantages of a folded-cascode OTA. | ||
+ | * Model and analyze the DC and small-signal characteristics of a folded-cascode OTA. | ||
+ | * Verify the behavior of these characteristics via simulation. | ||
| | | | ||
| | | | ||
|- | |- | ||
| 10 | | 10 | ||
− | |||
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+ | Feedback and Stability | ||
+ | * Loop Gain | ||
+ | * Phase and Gain Margins | ||
+ | * Compensation | ||
+ | | | ||
+ | * Model and analyze the DC and small-signal characteristics of a folded-cascode OTA with feedback. | ||
+ | * Verify the behavior of these characteristics via simulation. | ||
| | | | ||
| | | | ||
|- | |- | ||
| 11 | | 11 | ||
− | |||
| | | | ||
+ | Settling | ||
+ | * Linear settling | ||
+ | * Slewing | ||
+ | | | ||
+ | * Model and analyze the noise and settling characteristics of a folded-cascode OTA with feedback. | ||
+ | * Verify the behavior of these characteristics via simulation. | ||
| | | | ||
| | | | ||
|- | |- | ||
| 12 | | 12 | ||
− | |||
| | | | ||
+ | A Design Example | ||
+ | | | ||
+ | * Design a fully-differential OTA with capacitive feedback. | ||
+ | * Verify the OTA characteristics via simulation. | ||
| | | | ||
| | | | ||
|- | |- | ||
| 13 | | 13 | ||
− | |||
| | | | ||
+ | Project Consultations | ||
+ | * Halfway Status | ||
+ | | | ||
+ | * Design a fully-differential OTA with capacitive feedback. | ||
+ | * Verify the OTA characteristics via simulation. | ||
| | | | ||
| | | | ||
|- | |- | ||
| 14 | | 14 | ||
− | |||
| | | | ||
+ | Project Consultations | ||
+ | * Submissions | ||
+ | | | ||
+ | * Design a fully-differential OTA with capacitive feedback. | ||
+ | * Verify the OTA characteristics via simulation. | ||
| | | | ||
| | | |
Revision as of 23:15, 29 July 2020
- Analog Integrated Circuits
- Semester Offered: 1st semester
- Course Credit: Lecture: 4 units (3 units lecture, 1 unit lab)
Catalog Description
Integrated circuit devices and modeling. Noise analysis and modeling. Review of basic operational amplifier design and compensation. Advanced current mirrors and operational amplifiers. Operational transconductance amplifiers. Common-mode feedback circuits. Comparators. Sample and holds. Voltage references and translinear circuits. Discrete-time signals. Switched-capacitor circuits. Co-req: CoE 143 or equiv. 6h (3 lec, 3 lab) 4 u.
Syllabus
Module | Topics | Outcomes | Resources | Activities |
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1 |
CMOS Technology and Fabrication
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2 | Passive CMOS Devices
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3 |
MOS Transistors
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4 |
Model-Based Design |
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5 |
Electronic Noise
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6 |
Operational Transconductance Amplifiers (OTAs)
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7 |
Differential Circuits
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8 |
Current Mirrors
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9 |
The Folded-Cascode Amplifier
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10 |
Feedback and Stability
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11 |
Settling
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12 |
A Design Example |
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13 |
Project Consultations
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14 |
Project Consultations
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References
- Gray, Hurst, Lewis, Meyer, Analysis & Design of Analog Integrated Circuits, Wiley 2001.
- Johns, Martin, Analog Integrated Circuit Design, Wiley 1997.
- Design of Analog CMOS Integrated Circuits, Behzad Razavi, McGraw-Hill, 2000.
- The Design of CMOS Radio-Frequency Integrated Circuits, Thomas H. Lee, 2nd Ed., Cambridge University Press, 2003.
- The Designers Guide to SPICE & SPECTRE, K. S. Kundert, Kluwer Academic Press, 1995.
- Operation and Modeling of the MOS Transistor, Y. Tsividis, McGraw-Hill, 2nd Edition, 1999.