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| Advanced Digital Integrated Circuits -- Electrical Engineering (EL ENG) W241 [3 units] | ||||
| Course Format: Three hours of web-based lecture per week. | ||||
| Prerequisites: W141; MAS-IC students only. | ||||
| Credit option: Students will receive no credit for W241 after taking 241. | ||||
| Description: Analysis and design of MOS and bipolar large-scale integrated circuits at the circuit level. Fabrication processes, device characteristics, parasitic effects static and dynamic digital circuits for logic and memory functions. Calculation of speed and power consumption from layout and fabrication parameters. ROM, RAM, EEPROM circuit design. Use of SPICE and other computer aids. | ||||
| (F,SP) Nikolic,Rabaey |
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| Introduction to Digital Integrated Circuits -- Electrical Engineering (EL ENG) 241A [4 units] | ||||
| Course Format: Three hours of lecture, one hour of discussion, and three hours of laboratory per week. | ||||
| Prerequisites: Electrical Engineering 40; Electrical Engineering 105 and Computer Science 150 recommended. | ||||
| Credit option: Students will receive no credit for Electrical Engineering 241A after taking Electrical Engineering 141. | ||||
| Description: CMOS devices and deep sub-micron manufacturing technology. CMOS inverters and complex gates. Modeling of interconnect wires. Optimization of designs with respect to a number of metrics: cost, reliability, performance, and power dissipation. Sequential circuits, timing considerations, and clocking approaches. Design of large system blocks, including arithmetic, interconnect, memories, and programmable logic arrays. Introduction to design methodologies, including hands-on experience. | ||||
| (F,SP) Alon, Rabaey |
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| Advanced Digital Integrated Circuits -- Electrical Engineering (EL ENG) 241B [3 units] | ||||
| Course Format: Three hours of lecture per week. | ||||
| Prerequisites: 141. | ||||
| Formerly Electrical Engineering 241 | ||||
| Description: Analysis and design of MOS and bipolar large-scale integrated circuits at the circuit level. Fabrication processes, device characteristics, parasitic effects static and dynamic digital circuits for logic and memory functions. Calculation of speed and power consumption from layout and fabrication parameters. ROM, RAM, EEPROM circuit design. Use of SPICE and other computer aids. | ||||
| (SP) Nikolic, Rabaey |
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