Abstract: Impedance mismatches in a radio-frequency (RF) electrical transmission line cause power loss andreflected energy. Voltage standing wave ratio (VSWR) is a way to measure transmission line imperfections. Thistutorial defines VSWR and explains how it is calculated. Finally, an antenna VSWR monitoring system is shown.
上传时间: 2013-10-19
上传用户:yuanwenjiao
特点(FEATURES) 精确度0.1%满刻度(Accuracy 0.1%F.S.) 多种输入输出选择(Wide selection of input/output range) 三线式接线自动补偿线路阻抗效应(3 wire configuration automatically compensate line resistance effects) 宽范围交直流两用电源设计(Wide input range for auxiliary power) 尺寸小,稳定性高(Dimension small & High stability)
上传时间: 2013-10-17
上传用户:Huge_Brother
一个不错的降压芯片
标签: PG_IC-ON-LINE LNK 306 CN
上传时间: 2014-01-02
上传用户:ssj927211
This document presents design techniques and reference circuits that power Virtex™-4 FXRocketIO™ multi-gigabit transceivers (MGTs) operating at data rates below 3.125 Gb/s.When using multiple transceivers, it is sometimes preferred to power them from a switchingpower supply. However, switching power supplies generate noise that affects transceiver
上传时间: 2013-11-18
上传用户:huang111
高的工作电压高达100V N双N沟道MOSFET同步驱动 The D810DCDC is a synchronous step-down switching regulator controller that can directly step-down voltages from up to 100V, making it ideal for telecom and automotive applications. The D810DCDC uses a constant on-time valley current control architecture to deliver very low duty cycles with accurate cycle-by-cycle current limit, without requiring a sense resistor. A precise internal reference provides 0.5% DC accuracy. A high bandwidth (25MHz) error amplifi er provides very fast line and load transient response. Large 1Ω gate drivers allow the D810DCDC to drive multiple MOSFETs for higher current applications. The operating frequency is selected by an external resistor and is compensated for variations in VIN and can also be synchronized to an external clock for switching-noise sensitive applications. Integrated bias control generates gate drive power from the input supply during start-up and when an output shortcircuit occurs, with the addition of a small external SOT23 MOSFET. When in regulation, power is derived from the output for higher effi ciency.
上传时间: 2013-10-24
上传用户:wd450412225
The LTC®3569 is a compact power solution for handhelddevices. Its tiny 3mm × 3mm QFN package includesthree buck regulators with individually programmableoutput voltages. One regulator supports load currentsup to 1200mA, while the other two support currents to600mA. Two regulators can be paralleled for increasedload capability. Each current-mode regulator is internallycompensated with excellent load and line regulation. Acomplete 2- or 3-output solution requires a minimumof external passive components.
上传时间: 2013-10-11
上传用户:yxgi5
For a variety of reasons, it is desirable to charge batteriesas rapidly as possible. At the same time, overchargingmust be limited to prolong battery life. Such limitation ofovercharging depends on factors such as the choice ofcharge termination technique and the use of multi-rate/multi-stage charging schemes. The majority of batterycharger ICs available today lock the user into one fixedcharging regimen, with at best a limited number ofcustomization options to suit a variety of application needsor battery types. The LTC®1325 addresses these shortcomingsby providing the user with all the functionalblocks needed to implement a simple but highly flexiblebattery charger (see Figure 1) which not only addressesthe issue of charging batteries but also those of batteryconditioning and capacity monitoring.
上传时间: 2013-10-19
上传用户:royzhangsz
为了改变目前电网现场作业管理的变电巡检、变电检修试验、输电线路巡检检修等管理系统各自独立运行,信息不能共享,功能、效率受限,建设和维护成本高的现状,提出了采用B/S+C/S构架模式,将各现场作业管理模块和生产MIS(管理系统)集成为一体的现场作业管理系统的设计方案,做到各子系统和生产MIS软硬资源共享,做到同一数据唯一入口、一处录入多处使用。各子系统设备人员等基础信息来源于生产管理系统,各子系统又是生产管理系统的作业数据、缺陷信息的重要来源。经过研究试用成功和推广应用,目前该系统已在江西电网220 kV及以上变电站全面应用。 Abstract: In order to improve the status that the substation field inspection system, substation equipments maintenance and testing system, power-line inspection and maintenance system are running independent with each other. They can?蒺t share the resource information which accordingly constrains their functions and efficiency, and their construction and maintenance costs are high. This paper introduces a field standardized work management system based on B/S+C/S mode, integrating all field work management systems based on MIS and share the equipments and employee?蒺s data of MIS,the field work data of the sub systems are the source information of MIS, by which the same single data resouce with one-time input can be utilized in multiple places. After the research and testing, this system is triumphantly using in all 220kV and above substations in Jiangxi grid.
上传时间: 2013-11-15
上传用户:han_zh
The latest generation of Texas Instruments (TI) boardmountedpower modules utilizes a pin interconnect technologythat improves surface-mount manufacturability.These modules are produced as a double-sided surfacemount(DSSMT) subassembly, yielding a case-less constructionwith subcomponents located on both sides of theprinted circuit board (PCB). Products produced in theDSSMT outline use the latest high-efficiency topologiesand magnetic-component packaging. This providescustomers with a high-efficiency, ready-to-use switchingpower module in a compact, space-saving package. Bothnonisolated point-of-load (POL) switching regulators andthe isolated dc/dc converter modules are being producedin the DSSMT outline.TI’s plug-in power product line offers power modules inboth through-hole and surface-mount packages. The surfacemountmodules produced in the DSSMT outline use asolid copper interconnect with an integral solder ball fortheir
上传时间: 2013-10-10
上传用户:1184599859
单相桥式逆变电路为例:S1~S4是桥式电路的4个臂,由电力电子器件及辅助电路组成。S1、S4闭合,S2、S3断开时,负载电压uo为正S1;S1、S4断开,S2、S3闭合时,uo为负,把直流电变成了交流电。改变两组开关切换频率,可改变输出交流电频率。图5-1 逆变电路及其波形举例电阻负载时,负载电流io和uo的波形相同,相位也相同。阻感负载时,io滞后于uo,波形也不同(图5-1b)。t1前:S1、S4通,uo和io均为正。t1时刻断开S1、S4,合上S2、S3,uo变负,但io不能立刻反向。io从电源负极流出,经S2、负载和S3流回正极,负载电感能量向电源反馈,io逐渐减小,t2时刻降为零,之后io才反向并增大 (2)换流方式分类换流——电流从一个支路向另一个支路转移的过程,也称换相。开通:适当的门极驱动信号就可使其开通。关断:全控型器件可通过门极关断。半控型器件晶闸管,必须利用外部条件才能关断,一般在晶闸管电流过零后施加一定时间反压,才能关断。研究换流方式主要是研究如何使器件关断。本章换流及换流方式问题最为全面集中,因此在本章讲述1、器件换流利用全控型器件的自关断能力进行换流(Device Commutation)。2、电网换流由电网提供换流电压称为电网换流(Line Commutation)。可控整流电路、交流调压电路和采用相控方式的交交变频电路,不需器件具有门极可关断能力,也不需要为换流附加元件。3、负载换流由负载提供换流电压称为负载换流(Load Commutation)。负载电流相位超前于负载电压的场合,都可实现负载换流。负载为电容性负载时,负载为同步电动机时,可实现负载换流。
上传时间: 2013-10-15
上传用户:qingdou