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上传时间: 2014-12-24
上传用户:kqc13037348641
1 为什么要重视电源噪声问题? 2 电源系统噪声余量分析 3 电源噪声是如何产生的? 4 电容退耦的两种解释 4.1 从储能的角度来说明电容退耦原理。 4.2 从阻抗的角度来理解退耦原理。 5 实际电容的特性 6 电容的安装谐振频率 7 局部去耦设计方法 8 电源系统的角度进行去耦设计 8.1 著名的Target Impedance(目标阻抗) 8.2 需要多大的电容量 8.3 相同容值电容的并联 8.4 不同容值电容的并联与反谐振(Anti-Resonance) 8.5 ESR 对反谐振(Anti-Resonance)的影响 8.6 怎样合理选择电容组合 8.7 电容的去耦半径 8.8 电容的安装方法 9 结束语
标签: 电源完整性
上传时间: 2013-11-06
上传用户:mahone
分析了dsPIC30F3010外围电路,逆变及其驱动电路,反电动势检测电路,电流采样与过流保护电路,开发了主程序和中速事件处理程序, 并给出了电机正常运行时端电压的波形。实验结果表明系统能够控制电机顺利起动,而且实现了电机正确的换相和正常运行,证明了系统设计的可行性。
上传时间: 2014-12-24
上传用户:ikemada
M8电源:如果想扩流使用,需要多个功率管并联,必须加均流电阻。并且同时要增加主滤波和泄放电阻。功率管多需要增加一级推动管。 液晶的连接图。【注意1脚位置】 液晶的背光接法:从液晶背后标记A和K的位置引出背光电源,接到M8V4电源板上标记LED的位置。注意有正负,反了背光不亮。 首次通电,需要调整液晶对比度才能显示,调整M8V4电源板上的5K可调。让显示清晰即可。
标签: 电源
上传时间: 2013-11-02
上传用户:qwer0574
While simplicity and high effi ciency (for cool running) areno longer optional features in isolated power supplies, itis traditionally diffi cult to achieve both. Achieving higheffi ciency often requires the use of advanced topologiesand home-brewed secondary synchronous rectifi cationschemes once reserved only for higher power applications.This only adds to the parts count and to the designcomplexity associated with the reference and optocouplercircuits typically used to maintain isolation. Fortunately, abreakthrough IC makes it possible to achieve both high efficiency and simplicity in a synchronous fl yback topology.The LT®3825 simplifi es and improves the performance oflow voltage, high current fl yback supplies by providingprecise synchronous rectifi er timing and eliminating theneed for optocoupler feedback while maintaining excellentregulation and superior loop response.
上传时间: 2013-10-16
上传用户:wayne595
To this day, Power over Ethernet (PoE) continues to gainpopularity in today’s networking world. The 12.95Wdelivered to the Powered Device (PD) input supplied bythe Power Sourcing Equipment (PSE) is a universal supply.Each PD provides its own DC/DC conversion from anominal 48V supply, thus eliminating the need for a correctvoltage wall adapter. However, higher power devicescan not take advantage of standard PoE because of itspower limitations, and must rely on a large wall adapteras their primary supply. The new LTC4268-1 breaks thispower barrier by allowing for power of up to 35W for suchpower-hungry 2-pair PoE applications. The LTC4268-1provides a complete solution by integrating a high powerPD interface control with an isolated fl yback controller.
上传时间: 2014-12-24
上传用户:jasson5678
What would happen if someone connected 24V to your12V circuits? If the power and ground lines were inadvertentlyreversed, would the circuits survive? Does yourapplication reside in a harsh environment, where the inputsupply can ring very high or even below ground? Evenif these events are unlikely, it only takes one to destroya circuit board.
上传时间: 2013-10-26
上传用户:jackandlee
v开关电源拓扑结构综述 v开关电源分类 v非隔离式拓扑举例 BUCK BOOST BUCK-BOOST v隔离式拓扑举例 正激式 反激式
上传时间: 2013-10-12
上传用户:manlian
系统地分析了5kW恒流逆变器中辅助电源电磁干扰产生的来源和干扰方式以及对整个变流器系统性能的影响。结合工作实践给出了一系列提高电源系统电磁兼容性(EMC)的设计方
上传时间: 2014-01-14
上传用户:18710733152
电视机电源的设计是一个系统工程,不但要考虑电源本身参数设计,还要考虑安全性设计、电磁兼容设计、电气设计、热设计、成本设计等方面。因为电性能方面那怕是最微小的疏忽,都可能导致整个系统的崩溃,也会被市场淘汰,整个产品的生存都会受到影响,充分认识到电源产品可靠性设计的重要性和复杂性,对于电视机整机电路的设计非常重要。我们电视机类产品中40-200W 输出功率要求的电源一般选用单端反激式拓扑结构,具有电路简单、成本低、输出电压稳定性好,瞬间调整率高,可靠性经过长期验证,基本可以满足电视机行业的需要。
上传时间: 2013-10-17
上传用户:HZB20416