本课程为精品课,您可以登录eeworld继续观看: Razavi Electronics2 Lec14- Small-Signal Analysis of MOS Differential Pair继续观看 课时1:Electronics 1, Lec 1, Intro., Charge Carriers, Doping 课时2:Lec 2. Doping, Drift 课时3:Lec 3. Diffusion, Intro. to PN Junction 课时4:Lec 4, PN Junction in Equilibrium & Reverse Bias 课时5:Lec 5, PN Junction in Forward Bias, Intro. to Diodes 课时6:Lec 6, Diode Models 课时7:Lec 7, Analysis of Diode Circuits I 课时8:Lec 8, Analysis of Diode Circuits II 课时9:Lec 9, Other Examples of Diode Circuits, Half-Wave Rectifier 课时10:Lec 10, Half-Wave Rectifier with Different Loads 课时11:Lec 11, Full-Wave Rectifier 课时12:Lec 12, Limiters and Voltage Doublers 课时13:Lec 13, Bipolar Transistor Structure & Operation 课时14:Lec 14, Bipolar Transistor Characteristics, Intro. to Biasing 课时15:Lec 15, Transistor Biasing, Transconductance 课时16:Lec 16, Large-Signal & Small-Signal Operation 课时17:Lec 17, Bipolar Small-Signal Model, Early Effect 课时18:Lec 18, PNP Transistor 课时19:Lec 19, Evolution of Ampifiers 课时20:Lec 20, Common-Emitter Stage 课时21:Lec 21, Input & Output Impedances 课时22:Lec 22, Common-Emitter Stage with Degeneration 课时23:Lec 23, More on Emitter Degeneration 课时24:Lec 24, Biasing Techniques I 课时25:Lec 25, Biasing Techniques II 课时26:Lec 26, Common-Base Stage 课时27:Lec 27, Emitter Followers 课时28:Lec 28, Emitter Follower & Summary 课时29:Lec 29, Intro. to MOSFETs 课时30: Lec 30, MOS Characteristics I 课时31:Lec 31, MOS Characteristics II 课时32:Lec 32, Biasing, Transconductance 课时33:Lec 33, Large-Signal & Small-Signal Operation 课时34:Lec 34, MOS Small-Signal Model, PMOS Device 课时35:Lec 35, Common-Source Stage I 课时36:Lec 36, Common-Source Stage II 课时37:Lec 37, Common-Source Variants 课时38:Lec 38, Common-Source Stage with Degeneration 课时39:Lec 39, Biasing Techniques, Intro. to Common-Gate Stage 课时40:Lec 40, Common-Gate Stage 课时41: Lec 41, Source Followers & Summary 课时42:Lec 42, Op Amp Circuits 1 课时43:Lec 43, Op Amp Circuits II 课时44:Lec 44, Nonlinear Op Amp Circuits, Op Amp Nonidealities I 课时45:Lec 45, Op Amp Nonidealities II 课时46:Razavi Basic EE Lec 1_2 课时47:Razavi Basic EE Lec 1_2 课时48:Test Video 课时49:Razavi Electronics2 Lec1- Introduction, Cascode Current Sources 课时50:Razavi Electronics2 Lec2- MOS and Bipolar Cascode Current Sources, Intro. to Cascode Amplifiers 课时51:Razavi Electronics2 Lec3- MOS and Bipolar Cascode Amplifiers 课时52:Razavi Electronics2 Lec4- Additional Cascode Examples, Cascode Amp with PMOS Input 课时53:Razavi Electronics2 Lec5- Problem of Biasing; Intro. to Current Mirrors 课时54:Razavi Electronics2 Lec6- Current Mirror Examples, Proper Scaling, Bipolar Current Mirrors 课时55:Razavi Electronics2 Lec7- Problem of Noise Coupling, Intro. To Differential Pair 课时56:Razavi Electronics2 Lec8- Intuitive Study of Bipolar Diff. Pair, CM and Diff. Characs 课时57:Razavi Electronics2 Lec9- Large-Signal Analysis of Bipolar Differential Pair 课时58:Razavi Electronics2 Lec10. Small-Signal Analysis of Bipolar Differential Pair 课时59:Razavi Electronics2 Lec 11- Additional Examples of Bipolar Diff Pairs 课时60:Razavi Electronics2 Lec12- Large-Signal Analysis of MOS Differential Pair 课时61:Razavi Electronics2 Lec13- Additional Analysis of MOS Differential Pair 课时62:Razavi Electronics2 Lec14- Small-Signal Analysis of MOS Differential Pair 课时63:Razavi Electronics2 Lec15- High-Gain Differential Pairs, Intro. to Diff. Pair with Active Load 课时64:Razavi Electronics2 Lec16- Small-Signal Behavior of Diff. Pair with Active Load 课时65:Razavi Electronics2 Lec17- Introduction to Frequency Response- Basic Concepts 课时66:Razavi Electronics2 Lec18- Useful Frequency Response Concepts, Finding Poles by Inspection 课时67:Razavi Electronics2 Lec19- Miller Effect, High-Frequency Model of Bipolar Transistors 课时68:Razavi Electronics2 Lec20- Examples of Capacitances in Bipolar Circuits, High-Freq. Model of MOSFETs 课时69:Razavi Electronics2 Lec21- Computation of Freq. Resp., Freq. Resp. of Common-Emitter-Source Stages 课时70:Razavi Electronics2 Lec22- Dominant-Pole Approx., Resp. of CE-CS & Common-Base-Gate Stage 课时71:Razavi Electronics2 Lec23- Examples of High-Speed Circuits, Response of Common-Base-Gate Stage 课时72:Razavi Electronics2 Lec24- Response of Emitter-Source Followers, Input & Output Impedances 课时73:Razavi Electronics2 Lec25- Output Imp. of Followers, Freq. Resp. of Cascodes and Diff. Pairs; ft 课时74:Razavi Electronics2 Lec26- Additional Examples of Frequency Response, Cascaded Stages 课时75:Razavi Electronics2 Lec27- Intro. To Feedback, General Feedback System 课时76:Razavi Electronics2 Lec28- Feedback Examples, Concept of Loop Gain 课时77:Razavi Electronics2 Lec29- Application Examples of Feedback, Properties of Feedback Systems 课时78:Razavi Electronics2 Lec30- A Closer Look at Properties of Feedback Systems 课时79:Razavi Electronics2 Lec31- Foundations for Feedback Analysis- Types of Amplifiers 课时80:Razavi Electronics2 Lec32- Foundations for Feedback Analysis- Sense & Return Mechanisms 课时81:Razavi Electronics2 Lec33- Feedback Circuit Examples, Sign of Feedback 课时82:Razavi Electronics2 Lec34- Four Feedback Topologies, Voltage-Voltage (Shunt-Series) Feedback 课时83:Razavi Electronics2 Lec35- Examples of Voltage-Voltage Feedback 课时84:Razavi Electronics2 Lec36- Additional Examples of Voltage-Voltage Feedback 课时85:Razavi Electronics2 Lec37- Voltage-Current (Shunt-Shunt) Feedback 课时86:Razavi Electronics2 Lec38- Examples of Voltage-Current Feeback, Current-Voltage-Feedback 课时87:Razavi Electronics2 Lec39- Application Examples of Feedback, More on Current-Voltage Feedback 课时88:Razavi Electronics2 Lec40- Current-Current Feedback, App. of Feedback in Power Management 课时89:Razavi Electronics2 Lec41- Effect of Loading in Feedback, Opening the Loop Properly 课时90:Razavi Electronics2 Lec42- Accurate Analysis of Feedback Circuits 课时91:Razavi Electronics2 Lec43- Intro. To Instability in Feedback Systems 课时92:Razavi Electronics2 Lec44- Bode’s Rules, Stability Condition, Circuit Examples 课时93:Razavi Electronics2 Lec45- Additional Stability Examples, Phase Margin, Freq. Compensation 课程介绍共计93课时,3天13小时10分11秒 拉扎维模拟集成电路教程(英语字幕) 模拟电路设计的圣经,由模电大师拉扎维亲自讲授! Fundamentals Of Microelectronics http://download.eeworld.com.cn/detail/CMOS/604061 传感器建模设计问题制造和实际应用的发展 http://download.eeworld.com.cn/detail/CMOS/604060 上传者:JFET 猜你喜欢 动画解析各种电动机工作原理 低功耗MCU的比较:nanoWatt XLP与MSP430 通信原理(北京邮电大学,更新中) 数字图像处理(MATLAB)山东大学(江铭炎) MAX14850演示板 英飞凌用于风力发电的功率组件 SOC系统级芯片设计实验 具有bootloader功能和闪烁LED的CapSense触摸感应项目 热门下载 基于FPGA的全数字化交流变频调速系统 印制导线温升与导线宽度及负载电流关系 基于范畴论的本体集成描述 教你如何实现ping操作。提供了详细的代码 "So, You Wanna Be anEmbedded Engineer" book! 单片机和THB6128构成的步进电机控制器设计 RC4加密解密算法 期刊论文:一种语音端点检测方法的探究 2440-core尺寸封装示意图.pdf 第04章 机器人动力学 53页 0.6M.ppt 热门帖子 hrPWM和PWM 在产生正弦信号时,hrPWM和PWM哪种好?他两的适用范围是不是就是产生信号的频率高低?哪位高手介绍下它两的区别。hrPWM和PWM所谓HR是HighResolution的缩写,即高分辨率,刚看了一下TI的官方资料,高分辨率技术是通过一种叫做微边沿定位器(microedgepositioner(MEP))的技术来实现在相同系统时钟的情况下把PWM的分辨率提高,TI给的资料里介绍此技术是相当于把计数器时钟提高80倍而提到的,TI给出的数据如下:在100MHz系统时钟的情况下,如 votex威 单片机C语言关于while(1)问题解惑 前一阵曾经在论坛看到一个帖子,http://bbs.eeworld.com.cn/viewthread.php?tid=95022&highlight=关于讨论单片机C语言中while(1)的问题,说是如果不加while(1)会出现什么情况,近期在金沙滩工作室的网站上看到了小宋老师实际把这个问题给解决了,现在将文章转载于此。尊重别人的成果,注明出处:http://www.kingst.org/cms/user/d...01003142044107.html单片机C语言 tiankai001 TE Connectivity利用传感和连接解决方案,赋能电动汽车发展 推进电动化未来我们正在设计电动汽车相关技术,打造一个更安全、可持续、高效和互连的世界,因为我们的未来依赖于此。进入TE专题:TEConnectivity利用传感和连接解决方案,赋能电动汽车发展活动时间:即日起――2021年4月30日活动流程:1、浏览TE专题内容、观看TE视频2、认真填写问卷,提交表单3、活动结束后,我们随机选取35名网友送出充电宝、耳机礼品。新能源时代已来汽车电动化掣电而行全球气候变化仍是地球面临的最 EEWORLD社区 嵌入式C编程经验细谈 一个的设备程序如果完美库化,它意味着: 1.所有工程师在移植或创建该设备驱动时,花费的代价超小。 2.随着使用者的增多,它饱经考验,不断趋于稳定,变为当之无愧的公共代码。 3.库对外的接口(函数名及其参数声明)是不变的,当所有常用设备都实现库化时,它带来另外一个好处,应用层的移植、创建、修改维护的时间耗费也会剧烈减少。应用层的跨平台无缝移植不是传说,当它所依赖的所有外围设备通通在不同平台库化的时候,应用层的实现,就像在写java代码一样。 4.库意味这公司核心代码的安全 Aguilera 蓝牙模块加到IMX6上要接哪些引脚 A:咨询下蓝牙模块加到IMX6上要接哪些引脚B:核心板和WIFI+蓝牙模块通过USB通讯,用HOST就可以了蓝牙模块加到IMX6上要接哪些引脚 明远智睿Lan 关于linux下的mapinfo地图使用 现在在做一个导航系统是基于linux的,然后现在能得到的地图只有mapinfo的我想问下那个在linux下是否可以像在windows下一样正常使用mapinfo?各位有经验的帮忙下`谢谢关于linux下的mapinfo地图使用这一版块,太没人气了,是不是大家都成大侠了如果成大侠了,也常回家看看嘛,家里太冷清了据说努力顶帖也是一种美德,但我只想大家常回家看看毕竟每天都有新手需要帮忙,而我能帮的只能是把帖子顶起来这个简单啊,网上搜一下就得到答案了. luotuo52 网友正在看 开关电源之Buck变换器的环路分析与补偿 evaluating-overfitting-via-training-test-split LabVIEW 网络讲坛 第一季之星罗密布-合理布局你的界面 第九讲 输出型外设与51的IO口中--力天手把手教你学单片机之实战篇 2010全球电子峰会:Altera公司 数模混合信号电路设计 循环综合案例 DC diagnostics in automotive audio applications