Difference between revisions of "EEE 143 2s2425"

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# EEE 143 2s2425
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* Semester Offered: 2nd semester
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* Course Credit: Lecture: 3 units
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* Prerequisite: None
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== Course Description ==
 +
Fundamental concepts in Boolean Algebra for analyzing and designing logic circuits using Boolean expressions, logic gates, digital integrated circuit building blocks and hardware description language.
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== Resources ==
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{| class="wikitable"
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|-
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! scope="col"| Week
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! scope="col"| Date
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! scope="col"| Resources
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! scope="col"| Hours
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|-
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| style="text-align:center;" | 1
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|
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Module 1
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|
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* [https://drive.google.com/file/d/1I-GAwgzq8ZEglGMNBLarx3Nvwm1sUldI/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/15ay-dib5nJRn-liu0PudewcOHrAyypqS/view?usp=sharing Orientation]
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* [https://drive.google.com/file/d/1qUlq53DVBqTUmmk_9OzCMHqNrGT_lPcH/view?usp=sharing Introduction]
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* [https://drive.google.com/file/d/1PS7mytQDjRS_VTSrWI4OycRlfSwgQCMY/view?usp=sharing Number Systems]
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* [https://drive.google.com/file/d/1-DvrJjD2ltzo5PcYwW-GUugumCcDL_9D/view?usp=sharing Floating Point]
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* [https://drive.google.com/file/d/1bAo9UqxwZryTmMcwF6EksNQyHstW8qde/view?usp=sharing Practice Problems]
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| style="text-align:center;" | 3
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|-
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| style="text-align:center;" | 2
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|
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Module 2
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|
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* [https://drive.google.com/file/d/1x2I2h4I-0NLgtRxymcE3oA5EpZ5dcjc8/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/1_6_3qWkIcrQCiUnDKDL1C-f9MR9qswxq/view?usp=sharing Boolean Algebra]
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* [https://drive.google.com/file/d/137WSJcmBmkb6ndH3dD8-dxT4J6ms0rI9/view?usp=sharing Logic and Expression]
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* [https://drive.google.com/file/d/1Snje-j3JFkrQ89edEfLlkvFgagQ6dyaG/view?usp=sharing Practice Problems]
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| style="text-align:center;" | 3
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|-
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| style="text-align:center;" | 3
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|
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Module 3
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|
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* [https://drive.google.com/file/d/1VvMDpUUGiv9iRnzvhzV6Twug0_4cT1tT/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/1rg23ITbAPPWsThUneuxJ-1DOxDZM2z_N/view?usp=sharing Logic Gates]
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* [https://drive.google.com/file/d/1fR8tgU9KIiwstK7gaIBc8j-mknSxkVlS/view?usp=sharing All-NAND and All-NOR]
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| style="text-align:center;" | 3
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|-
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| style="text-align:center;" | 4
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|
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Module 4
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|
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* [https://drive.google.com/file/d/1mD2EBoCgpLgjvUJNkWwd_bHEDKCzb0za/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/19u9-pErf4Dt1ymXayWBV_rHgBJtrI7fy/view?usp=sharing K-Maps]
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* [https://drive.google.com/file/d/1Z4vmQD236IRliKsCp9-OaaFXHoTjA9qD/view?usp=sharing Incompletely Specified Functions]
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| style="text-align:center;" | 3
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|-
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| style="text-align:center;" colspan="4" | ''Problem Set #1''
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|-
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| style="text-align:center;" | 5-6
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|
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Module 6
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|
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* [https://drive.google.com/file/d/1LMMZ7-xzs5-5bc_kuZlNLIcmVbgY4WGM/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/1yxwXmFFOHMfj2ftWmpsOmblzMHtH2P3Q/view?usp=sharing Computer Arithmetic]
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* [https://drive.google.com/file/d/1he1jB-hs9OapgOy7o2f0j_RZQWWH0xsb/view?usp=sharing Narrative]
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* [https://drive.google.com/file/d/1Y9KXJmq7u1BXTMLn2yh8JjAluvubLgzw/view?usp=sharing Multiplication]
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* [https://drive.google.com/file/d/1arUyLhGe1doDxCWFv8cQKSvyJ7t5A_ot/view?usp=sharing Division]
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| style="text-align:center;" | 6
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|-
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| style="text-align:center;" | 7
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|
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Module 7
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|
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* [https://drive.google.com/file/d/1Ou3qQA87CtlHk2uuSY56IOA72kLrvrmx/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/1NbPPU_2JMR9cajWfngVuXSae7_j1NFo4/view?usp=sharing Encoders and Decoders]
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* [https://drive.google.com/file/d/1NfW3YZzAptw5V1Mz0_z2Z2ahMnJ_BKPb/view?usp=sharing Data Selectors]
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* [https://drive.google.com/file/d/1NhldjURy1GNSw35MnuDWbnIa3Y2k_Fh5/view?usp=sharing HDLs (optional)]
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| style="text-align:center;" | 3
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|-
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| style="text-align:center;" | 8
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|
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Module 8
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|
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* [https://drive.google.com/file/d/1SUIxiPKcvMSfO8dsnORuN9bZW2S4FBSM/view?usp=sharing Study Guide]
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* [https://drive.google.com/file/d/1SVJj709J48kd9Qo_AD_idLtr4XI2xIIn/view?usp=sharing Programmable Devices]
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* [https://drive.google.com/file/d/1SVgKVpy2nzUA65kQyDA6Ca1KYcDG249O/view?usp=sharing Non-idealities (optional)]
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| style="text-align:center;" | 3
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|-
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| style="text-align:center;" colspan="4" | ''Problem Set #2''
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|-
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|}
 +
 
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== Logisim Exercises ==
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* [[Lab 0: Introduction to Logisim]]

Latest revision as of 17:39, 23 January 2025

  • Semester Offered: 2nd semester
  • Course Credit: Lecture: 3 units
  • Prerequisite: None

Course Description

Fundamental concepts in Boolean Algebra for analyzing and designing logic circuits using Boolean expressions, logic gates, digital integrated circuit building blocks and hardware description language.

Resources

Week Date Resources Hours
1

Module 1

3
2

Module 2

3
3

Module 3

3
4

Module 4

3
Problem Set #1
5-6

Module 6

6
7

Module 7

3
8

Module 8

3
Problem Set #2

Logisim Exercises