The PW2606B is a front-end over voltage and over current protection device. It achieves wide inputvoltage range from 2.5VDC to 40VDC. The over voltage threshold can be programmed externally orset to internal default setting. The low resistance of integrated power Path nFET switch ensures betterperformance for battery charging system applications. It can deliver up to 1A current to satisfy thebattery supply system. It integrates the over-temperature protection shutdown and auto-recoverycircuit with hysteresis to protect against over current events
标签: pw2606b
上传时间: 2022-02-11
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研究一种智能扫地机器人。从硬件系统控制模块设计到主要技术调试进行了较详细的阐述。以STM32单片机为控制核心与电机驱动、红外线路径识别模块等相互协调应用。进行电路搭建和程序编写。实现了智能扫地机器人红外线避障和自动扫地功能,其清扫面积能达到约70%,清扫率约60%,很大程度受到自身机械机构的限制,后期将对小车的机械结构进行完善。This paper studies an intelligent sweeping robot.From the hardware system control module design to the main technical debugging are described in detail.STM32 MCU is used as the control core to coordinate with motor drive and infrared Path recognition module.Conduct circuit building and programming.The functions of infrared obstacle avoidance and automatic sweeping of intelligent sweeping robot are realized.Its cleaning area can reach about 70%and the cleaning rate is about 60%.Because it is limited by its own mechanical mechanism to a great extent,the mechanical structure of the car will be improved in the later stage.
标签: 扫地机器人
上传时间: 2022-03-26
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为适应双向DC/DC功率变换的电流采样需求,一种高精度高边电流采样电路被提出。其基本思想是在功率电路的高边串入采样电阻,借助电流镜原理并引入偏置电流电路,将双向电流均转换为正向电压输出。通过理论分析与仿真结合的方法对电流镜采样原理及4种不同的偏置电流电路方案进行对比,最后通过实验数据验证了高精度高边电流采样电路的有效性。实验数据表明,该采样电路可在-25~75℃的温度工作范围内,针对-10~+10 A范围内的电流采样实现优于5%的采样精度。Current sensing plays an important role in controlling,monitoring or protection functions of power systems.To meet the current sensing requirement of bidirectional DC/DC converters,a high-accuracy bidirectional current sensing circuit is proposed.The proposed current sensing circuit inserts a resistor in the Path of the current to be sensed,while the current mirror and biased current circuit are introduced.Therefore,the bidirectional current can be expressed by positive voltage.By theoretical analysis and simulation,the sampling theory is analyzed and four biased current circuits are compared.At last,experimental results verified the proposed method.It is demonstrated that the proposed current sensing circuit can achi...
上传时间: 2022-04-22
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Mathematical modeling has become an important part of the research and devclopment work in engineering and scicnce. Retaining a competitive edge requiresa fast Path between ideas and prototypes, and in this regard mathematical modeling and simulation provide a valuable shortcut for understanding both qualitative and quantitative aspects of scientific and engineering design. To assist you in gaining this edge, COMSOL Multiphysics offers state-of-the art performance, being built from the ground up with a Java3D interface and C/C++ solvers.The Acoustics Module is an optional package that extends the COMSOL Multiphysicsmodcling cnvironment with customized user interfaces and functionality optimizcd for the analysis of acoustics. Like all modules in the COMSOL family, it provides a brary of prewritten ready-to-run models that make it quicker and casier to analyze disciplinc-specific problcms.
上传时间: 2022-06-19
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本论文所涉及的电源管理方案来源于与台湾某上市公司的横向合作项目,在电源管理产品朝着低功耗、高效率和智能化方向发展的形势下,论文采用了一种开关电源与低压降(LDO)线性电压调节器结合应用的集成方案,即将LDO作为升压型电源管理芯片的内部供电模块。按照方案的要求,本文设计了一种含缓冲级的低压降线性电压调节器。设计采用0.6um 30V BCD工艺,实现LDO的输入电压范围为6-13V:满足在-25-85℃的工作温度范围内,输出电压为5V:在典型负载电流(12.5mA)下,LDO的压降电压为120mv.文章首先阐述了整个方案的工作原理,给出LDO设计的指标要求;其次,依据系统方案的指标要求和制造工艺约束,实现包含误差放大器、基准源和保护电路等子模块在内的电压调整器:此外,文章还着重探讨了“如何利用放大器驱动100pF数量级的大电容负载”的问题:最后,给出整个模块总体电路的仿真验证结果。LDO的架构分析和设计以及基准源的设计是本文的核心内容。在LDO架构设计部分,文章基于对三种不同LDO拓扑的分析,选择并实现了含缓冲器级的LDO.设计中通过改进反馈网络,采用反馈电容,实现对LDO的环路补偿。同时,为提高误差放大器驱动功率管的能力、适应LDO低功耗发展的需求,文章探讨了如何使用放大器驱动大负载电容的问题。基于密勒定理和根轨迹原理,本文通过研究密勒电容的作用,采用MPC(Miller-Path-Compensation)结构,实践了两级放大器驱动大负载电容的方案,并把MPC补偿技术推广到三级放大器的设计中。
上传时间: 2022-06-22
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文章首先阐述了整个方案的工作原理,给出LDO设计的指标要求;其次,依据系统方案的指标要求和制造1艺约束,实现包含误差放大器、基准源和保护电路等了模块在内的电压调整器:此外,文章还着重探讨了“如何利用放大器驱动100pF数量级的大电容负载"的问题;最后,给出整个模块总体电路的仿真验证结果。LDO的架构分析和设计以及基准源的设计是本文的核心内容。在LDO架构设计部分,文章基于对三种不同LDO拓扑的分析,选择并实现了含缓冲器级的LDO./设计中通过改进反馈网络,采用反馈电容,实现对LDO的环路补偿。同时,为提高误差放大器驱动功率管的能力、适应LDO低功耗发展的需求,文章探讨了如何使用放大器驱动大负载电容的问题,基于密勒定理和根轨迹原理,本文通过研究密勒电容的作用,采用MPC(Miller-Path-Compersation)结构,实践了两级放大器驱动大负载电容的方案,并把MPC补偿技术推广到三级放大器的设计中。文章设计的CRF(CRF:Current Re ference controlled by Feedback)电流基准是基于对传统自启动基准电流源的改进实现的。CRF基准电流源架构中存在一条阻性的电流道路,确保其在加载电源电压的过程中能够实现快速启动,响应速度达到1ps:而传统自启动基准电流源在相同的设计参数下,响应速度长达120us.CRF基准电流源突破了响应速度对其应用的限制。
上传时间: 2022-06-23
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在.cshrc中添加以下设定:setenV NOVAS_HOME <Verdi_install_dir>set Path=($Path $NOVAS_HOME/bin)setenV NOVAS_LICENSE_FILE <full_Path>/<license_file>Orsetenv NOVAS_LICENSE_FILE 5219@hostname(环境变量NOVAS_LICENSE_FILE优先级高于LM_LICENSE_FILE)内容:>预编译设计前设置匹配信息·将库名字匹配到相应物理地址·格式[Library]logical name=physical locationpack=../1ibrary/pack用户参数设置(set via Tools>Preferences)调用其它novas.rc(可选项)指定搜索路径…>使用环境变量NOVAS_RCsetenv NOVAS_RC <Path>/novas.rc>命令行中直接调用-rcFile <filename>搜索顺序1.-rcFile <filename>命令行参数(read/write pointer)2.NOVAS_RC环境变量(read/write pointer)3../novas.rc4.$HOME/novas.rc5.<Verdi install>/etc/novas.rc
标签: verdi
上传时间: 2022-07-20
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此强而有力的工具将会增加网站联机速度。它最佳化了操作系统的设定及连结。Amplify修改了MTU(Maximum Transmission Unit)、RWIN(Receive Window),TTL(Time to Live)、PMTU's(Path Maximum Transmission Unit)。这些改改将的减少数据处理的分割次数,可以将资料快速的呈现在使用者面前。
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上传时间: 2013-06-29
上传用户:eeworm