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VLSI CAD Part I: Logic

VLSI CAD Part I: Logic

A modern VLSI chip has a zillion parts -- logic, control, memory, interconnect, etc. How do we design these complex chips? Answer: CAD software tools. Learn how to build thesA modern VLSI chip is a remarkably complex beast: billions of transistors, millions of logic gates deployed for computation and control, big blocks of memory, embedded blocks of pre-designed functions designed by third parties (called “intellectual property” or IP blocks). How do people manage to design these complicated chips?

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Internet Giants: The Law and Economics of Media Platforms

Internet Giants: The Law and Economics of Media Platforms

This seven-week course will explore the relationship between law and technology with a strong focus on the law of the United States with some comparisons to laws around the world, especially in Europe. Tech progress is an important source of economic growth and raises broader questions about the human condition, including how culture evolves and who controls that evolution.

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  • 60 ساعات
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Introduction to Electronics

Introduction to Electronics

This course introduces students to the basic components of electronics: diodes, transistors, and op amps. It covers the basic operation and some common applications.

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  • 46 ساعات
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Transistor - Field Effect Transistor and Bipolar Junction Transistor

Transistor - Field Effect Transistor and Bipolar Junction Transistor

This course can also be taken for academic credit as ECEA 5632, part of CU Boulder’s Master of Science in Electrical Engineering degree. This course presents in-depth discussion and analysis of metal-oxide-semiconductor field effect transistors (MOSFETs) and bipolar junction transistors (BJTs) including the equilibrium characteristics, modes of operation, switching and current amplifying behaviors. At the end of this course learners will be able to: 1. Understand and analyze metal-oxide-semiconductor (MOS) device 2. Understand and analyze MOS field effect transistor (MOSFET) 3.

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  • 12 ساعات
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Electrónica Digital Bit a Bit: Diseñando en Verilog para FPGA

Electrónica Digital Bit a Bit: Diseñando en Verilog para FPGA

Los circuitos digitales más complejos como memorias y procesadores, que contienen millones de transistores gracias a su reducido tamaño, pueden ser divididos en circuitos más simples ya conocidos para facilitar su diseño e implementación. Lo mismo podemos realizar utilizando Verilog para diseñar circuitos digitales complejos que realizan muchas funciones o cuentan con un gran número de entradas y salidas.

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Circuitos con SPICE: Sistemas trifásicos y análisis avanzado

Circuitos con SPICE: Sistemas trifásicos y análisis avanzado

Los circuitos eléctricos han respaldado el desarrollo científico y tecnológico de la humanidad, ostentando un rol clave en los últimos 50 años.

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Electrónica Digital Bit a Bit: Fundamentos, Verilog y FPGA

Electrónica Digital Bit a Bit: Fundamentos, Verilog y FPGA

Es desafiante y hasta atemorizante entender un circuito digital cuando observamos la cantidad de transistores que puede contener, y aún más difícil diseñarlo eficientemente para su implementación en un circuito integrado o una FPGA.

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Cómo entrenar a tus electrones 1: Fundamentos de la electrónica analógica

Cómo entrenar a tus electrones 1: Fundamentos de la electrónica analógica

La electrónica ha respaldado el desarrollo científico y tecnológico de la humanidad, ostentando un rol clave en los últimos 50 años.

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Circuitos con SPICE: Fundamentos de los circuitos eléctricos

Circuitos con SPICE: Fundamentos de los circuitos eléctricos

Los circuitos eléctricos han respaldado el desarrollo científico y tecnológico de la humanidad, ostentando un rol clave en los últimos 50 años.

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Circuitos con SPICE: Análisis en el tiempo y la frecuencia

Circuitos con SPICE: Análisis en el tiempo y la frecuencia

Los circuitos eléctricos han respaldado el desarrollo científico y tecnológico de la humanidad, ostentando un rol clave en los últimos 50 años.

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Cómo entrenar a tus electrones 2: Diodos y Transistores

Cómo entrenar a tus electrones 2: Diodos y Transistores

La electrónica ha respaldado el desarrollo científico y tecnológico de la humanidad, ostentando un rol clave en los últimos 50 años.

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Cómo entrenar a tus electrones 3: Aplicaciones interesantes

Cómo entrenar a tus electrones 3: Aplicaciones interesantes

La electrónica ha respaldado el desarrollo científico y tecnológico de la humanidad, ostentando un rol clave en los últimos 50 años.

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VLSI CAD Part II: Layout

VLSI CAD Part II: Layout

You should complete the VLSI CAD Part I: Logic course before beginning this course. A modern VLSI chip is a remarkably complex beast: billions of transistors, millions of logic gates deployed for computation and control, big blocks of memory, embedded blocks of pre-designed functions designed by third parties (called “intellectual property” or IP blocks). How do people manage to design these complicated chips? Answer: a sequence of computer aided design (CAD) tools takes an abstract description of the chip, and refines it step-wise to a final design.

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  • 24 ساعات
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Introduction to Semiconductor Devices 2

Introduction to Semiconductor Devices 2

This course aims to provide a general understanding of semiconductor devices. This coures covers the Metal-Semiconductor Contact, Metal-Oxide-Semiconductor (MOS) capapcitor, Metal-Oxide-Semiconductor Field Effect Transistors(MOSFETs), CMOS, Metal-Semiconductor Field Effect Transistors(MESFETs), Memory and Bipolar Junction Transistor (BJT) to improve the overall knowledge of semiconductor industry. The lecture notes can be downloaded with registration, that helps students watch the videos.

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  • 10 ساعات
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Introduction to Semiconductors, PN Junctions and Bipolar Junction Transistors

Introduction to Semiconductors, PN Junctions and Bipolar Junction Transistors

This online course uses engaging animations to help you visualize the operating principles of many common semiconductor devices. The course covers PN junctions, photodiodes, solar cells, light-emitting diodes, metal-semiconductor contact, and Bipolar Junction Transistors.

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MOS Transistors

MOS Transistors

PLEASE NOTE: This version of the course has been formed from an earlier version, which was actively run by the instructor and his teaching assistants. Some of what is mentioned in the video lectures and the accompanying material regarding logistics, book availability and method of grading may no longer be relevant to the present version. Neither the instructor nor the original teaching assistants are running this version of the course. There will be no certificate offered for this course. Learn how MOS transistors work, and how to model them.

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  • 19 ساعات
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Introduction to Semiconductor Devices 1

Introduction to Semiconductor Devices 1

This course aims to provide a general understanding of semiconductor devices. This course explores the principles and the operation mechanism of semiconductor, such as charge transfer, p-n junction, junction capacitors, and Metal-Oxide-Semiconductor Field Effect Transistors(MOSFETs). The lecture notes can be downloaded with registration, that helps students watch the videos. It is recommeded to print them in two pages in one A4 sheet and take notes during lectures for better understanding. Also, there are quiz problems to check your understanding of the lectures each week.

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  • 12 ساعات
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Plastic electronics

Plastic electronics

Plastic electronics is a concept that emerged forty years ago, with the discovery of electrically conductive polymers. Ten years later, the first electronic devices using organic solids in place of the ubiquitous inorganic semiconductors were realised. The best achievement of plastic electronics is constituted by Organic Light-Emitting Diodes (OLEDs) that equip the display of many smartphones, and even TV sets. The objective of this course is to provide a comprehensive overview of the physics of plastic electronic devices.

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  • 6 ساعات
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Recent Advances in Freeform Electronics

Recent Advances in Freeform Electronics

In this course, the learners will understand fundamental basic backgrounds of p-n junctions, diodes and MOSFETs (Metal Oxide Semiconductor Field Effect Transistors). Also, recent approaches on flexible / stretchable electronics, transparent optoelectronics, and printed electronics using one dimensional or two dimensional nanomaterials will be introduced. Furthermore, the formation of high-performance, transparent thin films or conductors using novel materials such as cellulose nanofibers or metal nanofibers is included for course materials.

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  • 12 ساعات
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Introduction to Semiconductor Packaging

Introduction to Semiconductor Packaging

This course will cover various aspects of microelectronics and nanoelectronics. This field aims to advance and improve the functionality of electronic devices by scaling transistors to smaller feature sizes. The course will introduce you to essential concepts such as length scales, transistor actions, and feature sizes of integrated circuits. The course will also look at historical observations and trends using Moore’s Law, which currently guides and predict development of the Semiconductor industry. Most importantly, our goal is to highlight why packaging is so important and relevant today.

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  • 10 ساعات
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Semiconductor Devices

Semiconductor Devices

The courses in this specialization can also be taken for academic credit as ECEA 5630-5632, part of CU Boulder’s Master of Science in Electrical Engineering degree. Enroll here. This Semiconductor Devices specialization is designed to be a deep dive into the fundamentals of the electronic devices that form the backbone of our current integrated circuits technology.

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Basics of Field Effect Transistors and Technology Scaling

Basics of Field Effect Transistors and Technology Scaling

This online course uses engaging animations to help you visualize the operating principles of many common semiconductor devices. The course covers MOSFET, MOS capacitors, charge-coupled devices, CMOS Active Pixel Sensor, FinFET, nanowire transistors, gate-all-around MOSFET and 2D transistors.

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