Abstract: A laser module designer can use a fixed resistor, mechanical pot, DIGITAL pot, or a DIGITAL-to-analogconverter (DAC) to control the laser driver's modulation and bias currents. The advantages of a programmablemethod (POT or DAC) are that the manufacturing process can be automated and DIGITAL control can be applied(e.g., to compensate for temperature). Using POTs can be a more simple approach than a DAC. There can be aslight cost advantage to using a POT, but this is usually not significant relative to other pieces of the design.Using a DAC can offer advantages, including improved linearity (translating to ease of software implementationand ability to hit the required accuracy), increased board density, a wider range of resolutions, a betteroptimization range, ease of use with a negative voltage laser driver, and unit-to-unit consistency
上传时间: 2013-11-13
上传用户:ca05991270
Abstract: This tutorial discusses methods for DIGITALly adjusting the output voltage of a DC-DC converter. The DIGITAL adjustmentmethods are with a DIGITAL-to-analog converter (DAC), a trim pot (DIGITAL potentiometer), and PWM output of a microprocessor.Each method is assessed and several DACs and DIGITAL potentiometers presented.
上传时间: 2013-11-20
上传用户:zycidjl
The purpose of this application note is to show an example of how a DIGITAL potentiometer can be used in thefeedback loop of a step-up DC-DC converter to provide calibration and/or adjustment of the output voltage.The example circuit uses a MAX5025 step-up DC-DC converter (capable of generating up to 36V,120mWmax) in conjunction with a DS1845, 256 position, NV DIGITAL potentiometer. For this example, the desiredoutput voltage is 32V, which is generated from an input supply of 5V. The output voltage can be adjusted in35mV increments (near 32V) and span a range wide enough to account for resistance, potentiometer and DCDCconverter tolerances (27.6V to 36.7V).
上传时间: 2014-12-23
上传用户:781354052
Abstract: This article discusses application circuits for Maxim force/sense DIGITAL-to-analog converters (DACs). Applications include:selectable fixed-gain DAC, programmable gain DAC, photodiode bias control, amperometric sensor control, DIGITALly programmablecurrent source, Kelvin load sensing, temperature sensing, and high current DAC output. A brief description of the various DAC outputconfigurations is also given.
标签: DAC
上传时间: 2013-11-04
上传用户:youmo81
基于数字微镜器件(DIGITAL Micro-mirror Device,DMD)的哈达玛变换光谱技术是一种新型的光谱成像技术,在国内很少有专门的文献介绍[1-3]。文中先介绍了本实验采用的哈达玛光谱仪样机的原理以及哈达玛成像光谱仪优于传统模板的独特之处,即获得多通道高能量高信噪比的光谱数据,然后描述对采集到的数据做高信噪比,高分辨率压缩处理,最后说明此方法实时性强、图像失真小、实用价值高、应用范围广。
上传时间: 2013-11-25
上传用户:eastimage
DIGITAL convergence, in recent history, has been prevalentin the consumer equipment domain and the designengineers in this area have been struggling with a plethoraof emerging standards and protocols. What lessons can welearn from their struggle? The same dilemmas now existin in-vehicle telematics and infotainment systems but withthe added issues of extremes of temperature, safety,security, and time in market.
上传时间: 2014-12-23
上传用户:9牛10
在无线通信系统全面进入3G并开始迈向 4G的过程中,使用数字预失真技术(DIGITAL Pre-distortion,以下简称DPD)对发射机的功放进行线性化是一门关键技术。功率放大器是通信系统中影响系统性能和覆盖范围的关键部件,非线性是功放的固有特性。非线性会引起频谱增长(spectral re-growth),从而造成邻道干扰,使带外杂散达不到协议标准规定的要求。非线性也会造成带内失真,带来系统误码率增大的问题。
上传时间: 2013-10-19
上传用户:yy_cn
以某高速实时频谱仪为应用背景,论述了5 Gsps采样率的高速数据采集系统的构成和设计要点,着重分析了采集系统的关键部分高速ADC(analog to DIGITAL,模数转换器)的设计、系统采样时钟设计、模数混合信号完整性设计、电磁兼容性设计和基于总线和接口标准(PCI Express)的数据传输和处理软件设计。在实现了系统硬件的基础上,采用Xilinx公司ISE软件的在线逻辑分析仪(ChipScope Pro)测试了ADC和采样时钟的性能,实测表明整体指标达到设计要求。给出上位机对采集数据进行处理的结果,表明系统实现了数据的实时采集存储功能。
上传时间: 2014-11-26
上传用户:黄蛋的蛋黄
DIGITAL-to-analog converters (DACs) are prevalent inindustrial control and automated test applications.General-purpose automated test equipment often requiresmany channels of precisely controlled voltagesthat span several voltage ranges. The LTC2704 is ahighly integrated 16-bit, 4-channel DAC for high-endapplications. It has a wide range of features designed toincrease performance and simplify design.
上传时间: 2013-11-22
上传用户:元宵汉堡包
Designers of signal receiver systems often need to performcascaded chain analysis of system performancefrom the antenna all the way to the ADC. Noise is a criticalparameter in the chain analysis because it limits theoverall sensitivity of the receiver. An application’s noiserequirement has a signifi cant infl uence on the systemtopology, since the choice of topology strives to optimizethe overall signal-to-noise ratio, dynamic range andseveral other parameters. One problem in noise calculationsis translating between the various units used by thecomponents in the chain: namely the RF, IF/baseband,and DIGITAL (ADC) sections of the circuit.
上传时间: 2014-12-05
上传用户:cylnpy