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專業(yè):工程
項目類型:國外小組科研
開始時間:2025年01月11日
是否可加論文:是
項目周期:5周在線小組科研學(xué)習(xí)+2周不限時論文指導(dǎo)學(xué)習(xí)
語言:英文
有無剩余名額:名額充足
建議學(xué)生年級:大學(xué)生
是否必需面試:否
適合專業(yè):電子與計算機科學(xué)電子工程電子與通信工程信息工程電子電氣工程工程學(xué)信息與通信工程
地點:無
建議選修:EEE電子與電氣工程核心:電路與電子器件
建議具備的基礎(chǔ):電子信息工程、芯片技術(shù)、集成電路,微電子科學(xué)等專業(yè)或者希望修讀相關(guān)專業(yè)的學(xué)生;學(xué)生需要具備電路分析和模擬電路相關(guān)基礎(chǔ)
產(chǎn)出:5周在線小組科研學(xué)習(xí)+2周不限時論文指導(dǎo)學(xué)習(xí) 共125課時 項目報告 優(yōu)秀學(xué)員獲主導(dǎo)師Reference Letter EI/CPCI/Scopus/ProQuest/Crossref/EBSCO或同等級別索引國際會議全文投遞與發(fā)表指導(dǎo)(可用于申請) 結(jié)業(yè)證書 成績單
項目背景:近年來,集成電路產(chǎn)業(yè)取得了飛速發(fā)展,同時中國集成電路產(chǎn)業(yè)已經(jīng)成為全球半導(dǎo)體產(chǎn)業(yè)關(guān)注的焦點,中國集成電路產(chǎn)業(yè)已經(jīng)形成了IC設(shè)計、制造、封裝測試三業(yè)及支撐配套業(yè)共同發(fā)展的較為完善的產(chǎn)業(yè)鏈格局。2021年,全國科學(xué)技術(shù)支出0.97萬億元,同比增長7.2%,有力支持集成電路、新能源汽車等產(chǎn)業(yè)發(fā)展和關(guān)鍵核心技術(shù)。In recent years, the IC industry has achieved rapid development, while China's IC industry has become the focus of attention of the global semiconductor industry, China's IC industry has formed a more complete industry chain pattern of IC design, manufacturing, packaging and testing three industries and supporting supporting industries to develop together. 2021, the national science and technology spending 0.97 trillion yuan, an increase of 7.2% year-on-year, to strongly support Integrated circuits, new energy vehicles and other industrial development and key core technologies.
項目介紹:項目中導(dǎo)師將介紹模擬電路的概念,并側(cè)重于晶體管模型,小信號分析,電流反射鏡,單級放大器,差分放大器和運算放大器等技術(shù),需要訪問電路模擬器程序。學(xué)生們將在導(dǎo)師的指導(dǎo)下使用Multisim或Spice(例如CoolSPICE)模擬電路,并在此過程中學(xué)習(xí)到高級微電子課程中分析、設(shè)計和優(yōu)化現(xiàn)代模擬集成電路中包括建模、晶體管級電路設(shè)計和仿真等不同開發(fā)方法。并對一些應(yīng)用實例進行剖析,包括物聯(lián)網(wǎng)、生物電子、腦機接口和機器人等領(lǐng)域的應(yīng)用。學(xué)生將在項目結(jié)束時,提交項目報告,進行成果展示。The program instructors will introduce the concepts of analog circuits and focus on techniques such as transistor models, small signal analysis, current reflectors, single stage amplifiers, differential amplifiers, and operational amplifiers, requiring access to circuit simulator programs. Students will simulate circuits using Multisim or Spice (e.g. CoolSPICE) under the guidance of the instructor and in the process learn different development methods including modeling, transistor-level circuit design and simulation in the analysis, design and optimization of modern analog integrated circuits in the advanced microelectronics course. Students will submit a project report at the end of the project to present their results.
項目大綱:模擬設(shè)計、MOS晶體管結(jié)構(gòu)、工作原理和型號 Introduction to analog design, MOS transistor structure, operation and models 電流鏡像(級聯(lián)碼,低電壓配置) Current mirrors (simple, cascode, low-voltage configurations) 單級放大器(共源、共門、共汲拓撲) Single-stage amplifiers (common-source, common-gate, common-drain topologies) 差分和運算放大器Differential and operational amplifiers 模擬集成電路應(yīng)用實例分析:物聯(lián)網(wǎng)、機器人、腦機接口及生物電子 Applications of analog integrated circuits: IoT, robotics, brain machine interfaces and bioelectronics 學(xué)術(shù)研討1:教授與各組學(xué)生探討并評估個性化研究課題可行性,幫助學(xué)生明晰后續(xù)科研思路 Final Project Preparation Session I 學(xué)術(shù)研討2:學(xué)生將在本周課前完成模擬電路設(shè)計原型(prototype)及偽代碼(Pseudocode),教授將根據(jù)各組進度進行個性化指導(dǎo),確保學(xué)生優(yōu)質(zhì)的終期課題產(chǎn)出 Final Project Preparation Session II 項目成果展示 Final Presentation