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所在平台: Udemy |
课程主页: https://www.udemy.com/course/cmos-analog-ic-design-part-1/
课程评论:没有评论
课程名称:CMOS模拟集成电路设计 - MOSFET、直流偏置和跨导 课程概述:“模拟电路设计就像下棋 - 仅仅知道棋子怎么移动并不意味着你知道怎么下棋。” - Patrick Lahey。在本课程中,您将学习MOSFET的基本原理,以及如何在三极管的三态/线性、截止和饱和区进行偏置。课程后期,您将深入了解跨导Gm,这一技术在传感器读出电路、宽带电路和高速设计中得到了广泛应用。恒跨导电路在低功耗电路设计中也非常受欢迎。该课程是“CMOS模拟电路设计 - 放大器及其解题实例”和“高速串行连接电路设计”课程的先修课程。因此,当前在传感器设计、传感器接口、WiFi(无线局域网和互联网接入)、超宽带技术(UWB)以及电源管理等多个关键领域的模拟设计职位需求正在增加。具备高速数据转换设计专业知识的设计师在多个行业中也呈现出高需求。
"Analog circuit design is like chess - just because you know how the pieces move doesn't mean you know how to play the game". - Patrick LaheyIn this course, you will learn about the fundamentals of MOSFET, the ways to bias the transistors in triode/linear, cut-off and saturation regions. Later in the course, you will learn about transconductance Gm, which is currently being used popularly in sensor read out circuits, broadband circuits and in high speed design. The Constant-Gm circuit is extremely popular in low power circuit designs. This course is a prerequisite for the course "CMOS Analog Circuit Design - Amplifiers with Solved Examples" and "Circuit Design for High Speed Serial Links". Consequently, we're seeing analog job requisitions in several key areas including Sensor Design and Sensor interfaces, WiFi (wireless LANs and Internet access), ultra wide band technology (UWB) and power management. Demand for designers with expertise in high-speed data conversion seems to be high across a variety of industries.