《光电二极管及其放大电路设计》系统地讨论了光接收及放大电路的设计和解决方案中的带宽、稳定性、相位补偿、宽带放大电路、噪声抑制等问题。
上传时间: 2022-04-01
上传用户:jiabin
本文首次设计并验证了基于macom三合一芯片设计的光模块电路,该电路旨在提供一种满足SFF-8472中规定的数字诊断功能的低成本SFP+模块。电路采用激光器驱动、限幅放大器、控制器以及时钟恢复单元集成的单芯片,在保证高精度数字诊断功能基础上,实现了低成本高可靠的特点。该电路在光接收接口组件与激光器驱动和限幅放大器单元的限幅放大器部分之间接入滤波器来提高模块的灵敏度及信号质量。在控制器单元的数字电位器的引脚上采用外加电阻的方式避免出现上电不发光的故障问题。该研究结果为下一代SFP-DD光模块设计与开发工作,奠定了一定的理论与实践基础。This paper designs and validates the optical module circuit based on the MACOM Trinity chip for the first time.This circuit aims to provide a low-cost SFP module which meets the digital diagnosis function specified in SFF-8472.The circuit uses a single chip integrated with laser driver,limiting amplifier,controller and clock recovery unit.On the basis of ensuring high precision digital diagnosis function,it achieves the characteristics of low cost and high reliability.The circuit connects a filter between the optical receiving interface module and the limiting amplifier part of the laser driver and limiting amplifier unit to improve the sensitivity and signal quality of the module.The pin of the digital potentiometer in the controller unit is equipped with an external resistance to avoid the problem of power failure.The research results lay a theoretical and practical foundation for optical module design in high-speed data center.
上传时间: 2022-04-03
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实验教学一直是工科教学中不可或缺的组成部分,对培养学生的动手能力,独立思考能力,创新思维与发散思维具有重要的作用。针对目前电路教学实验中电路仿真实验与实物电路实验各自独立,无法统一问题,提出将仿真电路实验与实物电路实验有机的结合同步操作,并使用Web发布实现远程实验操作。采用Multisim作为电路实验仿真平台,NI Eiviss II作为实物电路实验硬件平台,运用LabVIEW整合Multisim电路仿真实验与实物电路实验,实现仿真与实物实验有机结合,两种实验可同步进行。学生在仿真实验中先可探索实验,然后做实物实验。同时运用LabVIEW开发出实验过程人机交互操作接口界面,使用过程中效果良好。Experimental teaching has always been an indispensable part of engineering education.And it always plays an important role in cultivating students'practical ability,independent thinking ability,innovative thinking and divergent thinking.But simulation experiment and physical experiment cannot be unified in the circuit teaching experiment at present.In order to solve this problem,this paper proposes to combine organically the simulation circuit experiment with physical circuit experiment,and synchronously operate them.This paper uses the WEB publishing to achieve remote experimental operation.Multisim is used as the circuit simulation platform,and NI Eiviss II is used as the physical circuit hardware platform.Multisim circuit simulation experiment and physical circuit experiment are implemented by LabVIEW to realize the combination of simulation experiment and physical experiment.Students do explore experiments in simulation experiment firstly,and then do physical experiment.And this paper uses LabVIEW to develop the experimental man-machine interface.
上传时间: 2022-04-05
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本书为“普通高等教育‘十一五’*规划教材”。全书共9章,主要内容包括:电路的基本概念与定律、电阻电路的一般分析方法、常用的电路定理、动态电路时域分析、正弦稳态电路分析、耦合电感与理想变压器、电路频率响应、双口网络、MATLAB用于电路分析。基本概念讲述准确透彻,常用的基本分析方法讲述步骤明确,举例类型多,结合工程实际,便于读者仿效掌握;电路定理阐述简练,应用范围、条件明确,使用中应注意的问题归纳详尽;经典内容取舍合理,新器件、新方法介绍适度;每节后配有辅助概念理解、引申问题的思考题,每章后配有小结及深浅度适中、题型搭配合理的习题,书末附有部分习题的参考答案,这些配置对教师施教、学生自学都是非常有益的。
标签: 电路分析
上传时间: 2022-04-10
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阐述了单相全桥逆变电路拓扑与工作原理,并给出其在PSpice中的仿真模型和仿真结果。仿真结果表明,单相全桥逆变电路在单极性PWM控制方式的作用下,可以得到较为理想的正弦波输出电压,仿真分析与理论分析得到的结论一致,进而也表明PSpice仿真软件可以很好地应用在电力电子教学和电力电子研究中。
上传时间: 2022-04-13
上传用户:zhaiyawei
为了提高超高频RFID系统中阅读器在低信噪比的情况下仍具有较高的识别能力,提出一种基于FPGA系统结合软件无线电方法实现超高频RFID射频前端电路方案。超高频射频识别系统必须符合EPC Class 1generation 2标准,所设计的电路系统以Xilinx公司的XC6SLX16-2CSG324FPGA芯片为硬件基础,将数字基带调制解调和中频滤波电路在FPGA系统中设计实现,重点阐述了射频前端电路的设计结构、AD/DA转换电路,以及数字滤波器的设计。实验结果表明,所设计的超高频RFID阅读器简化了前端电路系统结构,提升了稳定性,增强了抗干扰能力。该电路系统在信噪比较低的情况下,能够较好地实现915MHz频率的射频接收和发送。In order to improve the reader UHF RFID system still has a higher ability to identify,in the case of low signal-to-noise ratio.The UHF RFID systems must comply with EPC Class 1 generation 2 standard.In this paper,the design of the circuit system based on Xilinx's XC6SLX16-2CSG324 FPGA chip,and presents UHF RFID RF front-end circuit with software radio based on FPGA system.Digital baseband modem and IF filter circuit is designed and implemented in the FPGA system,and focused on designing the structure of the RF front-end circuit,AD/DA conversion circuits,and digital filter.Experimental results show that the UHF RFID reader de...
标签: 915mhz 超高频 rfid 阅读 射频 前端 电路 设计
上传时间: 2022-04-17
上传用户:shjgzh
Springer模拟电路设计丛书,《清华版双语教学用书·模拟集成电路设计精粹》作者首先对MOST和BJT两种器件模型进行了分析和比较,然后以此为两条线索,分别介绍了相应的基本单元电路和各类放大器的详细分析,随后的章节分别研究噪声、失真、滤波器、ADC/DAC和振荡器电路,每一章都结合MOST和BJT两种类型电路进行分析比较。《清华版双语教学用书·模拟集成电路设计精粹》一方面侧重于基础知识,对模拟和混合信号集成电路中的许多重要概念以直观形象的语言进行了描述。另一方面又侧重介绍与现代集成电路工艺相关的最新电路的研究方向和热点。Next-Generation ADCs, High-Performance Power Management, and Technology Considerations for Advanced Integrated Circuits
上传时间: 2022-04-19
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感应加热电源运行过程中由于负载的工作特性随温度变化,为了提高电能传输到负载的效率,保证负载工作在串联谐振状态,需要实现对负载的频率跟踪.通过对负载的频率跟踪有效地减少了功率开关器件的开关损耗,实现了零电压开通.本文首先介绍了串联谐振的感应加热电源的主电路结构,采用IGBT作为功率开关器件.其次介绍了锁相环电路,阐述了其结构和工作原理.最后提出了基于SG3525的频率跟踪电路,经过实验证明此电路工作稳定、可靠,现以投入到实际产品中.
上传时间: 2022-04-21
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介绍一种万能模拟信号输入采集电路,可以同时支持电压、电流、热电偶、热电阻等常见的工业类型信号,方便后级电路的测量。该研究成果通过不断优化和完善,已成功应用到了中控仪表的新产品中。The paper introduces a collection circuit of universal signal input. The circuit support voltage, current, thermocouple, thermal resistance and other common industrial type signal. The research results, which has been continuous optimized and improved, has been successfully applied to the new production of Zhejiang Supcon Instrument Co., Ltd.
标签: 采集电路
上传时间: 2022-04-21
上传用户:slq1234567890
随着科技的发展,人们在日常生活中使用的电器越来越多,电子设备的电磁兼容性(EMC)也越来越重要。所以,人们对电子设备的电磁兼容性的要求也越来越严格,越来越规范。而在市场竞争中,如何降低成本、减少设备体积,是各电子设备制造厂家重点研究的课题。通过对开关电源的EMI滤波电路的类别和相应的技术特点进行分析,设计出一种既能提高性能,又能降低成本的滤波电路。With the development of technology, appliances people use in their daily lives, more and more electronic devices electromagnetic compatibility ( EMC ) has become increasingly important. So, people electromagnetic compatibility requirements of electronic devices have become increasingly stringent, more and more standardized. The competition in the market, how to reduce costs, reduce equipment size, is the subject of the electronic equipment manufacturer focused on research. Through the technical characteristics of the respective category and the EMI filter circuit switching power supply is analyzed both designed to improve a performance of the filter circuit can reduce the cost.
上传时间: 2022-04-23
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