Piezoelectric motors are used in digital cameras for autofocus,zooming and optical image stabilization. Theyare relatively small, lightweight and effi cient, but theyalso require a complicated driving scheme. Traditionally,this challenge has been met with the use ofseparatecircuits, including a step-up converter and an oversizedgeneric full-bridge drive IC. The resulting high componentcount and large board space are especially problematicin the design of cameras for ever shrinking cell phones.The LT®3572 solves these problems by combining astep-up regulator and a dual full-bridge driver in a 4mm× 4mm QFN package. Figure 1 shows a typical LT3572Piezo motor drive circuit. A step-up converter is usedto generate 30V from a low voltage power source suchas a Li-Ion battery or any input power source within thepart’s wide input voltage range of 2.7V to 10V. The highoutput voltage of the step-up converter, adjustable upto 40V, is available for the drivers at the VOUT pin. Thedrivers operate in a full-bridge fashion, where the OUTAand OUTB pins are the same polarity as the PWMA andPWMB pins, respectively, and the OUTA and OUTB pinsare inverted from PWMA and PWMB, respectively. Thestep-up converter and both Piezo drivers have their ownshutdown control. Figure 2 shows a typical layout
上传时间: 2013-11-18
上传用户:hulee
Once relegated to the hinterlands of low cost indicatorlights, the LED is again in the spotlight of the lightingworld. LED lighting is now ubiquitous, from car headlightsto USB-powered lava lamps. Car headlights exemplifyapplications that capitalize on the LED’s clear advantages—unwavering high quality light output, tough-assteelrobustness, inherent high effi ciency—while a USBlava lamp exemplifi es applications where only LEDs work.Despite these clear advantages, their requirement forregulated voltage and current make LED driver circuitsmore complex than the venerable light bulb, but some newdevices are closing the gap. For instance, the LTM®8040μModule™ LED driver integrates all the driver circuitryinto a single package, allowing designers to refocus theirtime and effort on the details of lighting design criticalto a product’s success.
上传时间: 2013-10-16
上传用户:togetsomething
Abstract: This article discusses future trends in the design of smartphones and other consumer products. The discussion focuses onthe importance of integration, which saves valuable PCB space and drives down costs.
上传时间: 2014-01-13
上传用户:lhw888
摘 要:根据新型LCL谐振软开关弧焊逆变电源主电路原理,对这种弧焊电源进行了设计,并对电路中主要参数予以了确定。其内容包括:逆变电源输出电流Io及空载电压的计算、串联谐振电感Ls、电容Cs的参数选择、IGBT缓冲电容的参数选择。根据设计的电源参数,对研制的焊接电源进行试验。试验表明,该电源能够较好地实现软开关。从而证明该设计是合理的、有效的。关键词:谐振软开关;弧焊逆变;电源设计;参数选择
上传时间: 2013-11-16
上传用户:shaoyun666
触摸开关电路也叫触摸式调光、开关控制电路,主要用于生活中白炽灯光的控制。它与一个主要由双向可控硅组成的外围电路一起对光源进行调光、开关的触摸式控制,并具有记忆功能。摆脱了传统的机械拨动开关、电位器调光的形式,是一种新颖的升级换代产品。电路由输入缓冲器、锁相环、控制逻辑、亮度记忆、相角指针、数字比较器和输出驱动器组成。其框图见图1
上传时间: 2013-11-11
上传用户:tiantwo
车用真空荧光显示器(VFD)需要特殊电源来生成所需电压。双叶电子工业株式会社(FUTABA)与爱普科斯已联手为此开发了一款VFD的参考设计。 VFD的运行需要各种电压,即灯丝、栅极以及阳极电压。在使用电源线驱动的常规设备中,通常通过在功率变压器上添加附加绕组以生成各种电压。
上传时间: 2013-11-21
上传用户:jyycc
提出了一种利用耦合输出电感的新型次级箝位零电压、零电流开关-脉宽调制(ZVZCS-PWM)全桥变换器。它采用无损耗元件及有源开关的简单辅助电路,实现了滞后桥臂的零电流开关。与传统的ZVZCS-PWM全桥变换器相比,这种新型变换器具有电路结构简单,整机效率高,以及轻载时能根据负载情况自动调整箝位电容的充放电电流。因而非常适合用于IGBT 作为主开关的高压、大功率应用场合。详细分析了该变换器的工作原理及电路设计;在一台功率为1kW的工程样机上测出了实际运行时的波形及变换器效率。实验结果证明,该变换器能在任意负载下实现滞后桥臂的零电流开关,且满载时的效率最高达到92%。关键词: 变换器;控制/软开关
上传时间: 2014-12-24
上传用户:wujijunshi
变频器是利用电力半导体器件的通断作用将工频电源变换为另一频率的电能控制装置。我们现在使用的变频器主要采用交—直—交方式(VVVF变频或矢量控制变频),先把工频交流电源通过整流器转换成直流电源,然后再把直流电源转换成频率、电压均可控制的交流电源以供给电动机。变频器的电路一般由整流、中间直流环节、逆变和控制4个部分组成。整流部分为三相桥式不可控整流器,逆变部分为IGBT三相桥式逆变器,且输出为PWM波形,中间直流环节为滤波、直流储能和缓冲无功功率。
上传时间: 2013-11-10
上传用户:alex wang
变频器是利用电力半导体器件的通断作用将工频电源变换为另一频率的电能控制装置。我们现在使用的变频器主要采用交—直—交方式(VVVF变频或矢量控制变频),先把工频交流电源通过整流器转换成直流电源,然后再把直流电源转换成频率、电压均可控制的交流电源以供给电动机。变频器的电路一般由整流、中间直流环节、逆变和控制4个部分组成。整流部分为三相桥式不可控整流器,逆变部分为IGBT三相桥式逆变器,且输出为PWM波形,中间直流环节为滤波、直流储能和缓冲无功功率。
上传时间: 2013-11-20
上传用户:sevenbestfei
一种好的蓄电池充电方法是分级恒流充电! 分析了PWM控制DCDC变换的原理"给出了一种基于IGBT功率器件#单片机控制的新型蓄电池恒流充电系统的设计方法"并对该系统进行了试验"给出了试验结果!
上传时间: 2013-10-21
上传用户:mqien