The LM20, LM45, LM50, LM60, LM61, and LM62 are analog output temperature sensors. They have various output voltage slopes (6.25mV/°C to 17mV/°C) and power supply voltage ranges (2.4V to 10V).The LM20 is the smallest, lowest power consumption analog output temperature sensor National Semiconductor has released. The LM70 and LM74 are MICROWIRE/SPI compatible digital temperature sensors. The LM70 has a resolution of 0.125°C while the LM74 has a resolution of 0.625°C. The LM74 is the most accurate of the two with an accuracy better than ±1.25°C. The LM75 is National’s first digital output temperature sensor, released several years ago.
上传时间: 2014-12-23
上传用户:yl8908
Differential Nonlinearity: Ideally, any two adjacent digitalcodes correspond to output analog voltages that are exactlyone LSB apart. Differential non-linearity is a measure of theworst case deviation from the ideal 1 LSB step. For example,a DAC with a 1.5 LSB output change for a 1 LSB digital codechange exhibits 1⁄2 LSB differential non-linearity. Differentialnon-linearity may be expressed in fractional bits or as a percentageof full scale. A differential non-linearity greater than1 LSB will lead to a non-monotonic transfer function in aDAC.Gain Error (Full Scale Error): The difference between theoutput voltage (or current) with full scale input code and theideal voltage (or current) that should exist with a full scale inputcode.Gain Temperature Coefficient (Full Scale TemperatureCoefficient): Change in gain error divided by change in temperature.Usually expressed in parts per million per degreeCelsius (ppm/°C).Integral Nonlinearity (Linearity Error): Worst case deviationfrom the line between the endpoints (zero and full scale).Can be expressed as a percentage of full scale or in fractionof an LSB.LSB (Lease-Significant Bit): In a binary coded system thisis the bit that carries the smallest value or weight. Its value isthe full scale voltage (or current) divided by 2n, where n is theresolution of the converter.Monotonicity: A monotonic function has a slope whose signdoes not change. A monotonic DAC has an output thatchanges in the same direction (or remains constant) for eachincrease in the input code. the converse is true for decreasing codes.
标签: Converters Defini DAC
上传时间: 2013-10-30
上传用户:stvnash
ANALOG INPUT BANDWIDTH is a measure of the frequencyat which the reconstructed output fundamental drops3 dB below its low frequency value for a full scale input. Thetest is performed with fIN equal to 100 kHz plus integer multiplesof fCLK. The input frequency at which the output is −3dB relative to the low frequency input signal is the full powerbandwidth.APERTURE JITTER is the variation in aperture delay fromsample to sample. Aperture jitter shows up as input noise.APERTURE DELAY See Sampling Delay.BOTTOM OFFSET is the difference between the input voltagethat just causes the output code to transition to the firstcode and the negative reference voltage. Bottom Offset isdefined as EOB = VZT–VRB, where VZT is the first code transitioninput voltage and VRB is the lower reference voltage.Note that this is different from the normal Zero Scale Error.CONVERSION LATENCY See PIPELINE DELAY.CONVERSION TIME is the time required for a completemeasurement by an analog-to-digital converter. Since theConversion Time does not include acquisition time, multiplexerset up time, or other elements of a complete conversioncycle, the conversion time may be less than theThroughput Time.DC COMMON-MODE ERROR is a specification which appliesto ADCs with differential inputs. It is the change in theoutput code that occurs when the analog voltages on the twoinputs are changed by an equal amount. It is usually expressed in LSBs.
上传时间: 2013-11-12
上传用户:pans0ul
分析了调幅信号和载波信号之间的相位差与调制信号的极性的对应关系,得出了相敏检波电路输出电压的极性与调制信号的极性有对应关系的结论。为了验证相敏检波电路的这一特性,给出3 个电路方案,分别选用理想元件和实际元件,采用Multisim 对其进行仿真实验,直观形象地演示了相敏检波电路的鉴相特性,是传统的实际操作实验所不可比拟的。关键词:相敏检波;鉴相特性;Multisim;电路仿真 Abstract : The corresponding relation between modulation signal polarity and difference phases of amplitudemodulated signal and the carrier signal ,the polarity of phase2sensitive detecting circuit output voltage and the polarity of modulation signal are correspondent . In order to verify this characteristic ,three elect ric circuit s plans are produced ,idea element s and actual element s are selected respectively. Using Multisim to carry on a simulation experiment ,and then demonst rating the phase detecting characteristic of the phase sensitive circuit vividly and directly. Which is t raditional practical experience cannot be com pared.Keywords :phase sensitive detection ;phase2detecting characteristic ;Multisim;circuit simulation
上传时间: 2013-11-23
上传用户:guanhuihong
This reference design (RD) features a fullyassembled and tested surface-mount printed circuitboard (PCB). The RD board utilizes the MAX48851:2 or 2:1 multiplexer and other ICs to implement acomplete video graphics array (VGA) 8:1multiplexer.VGA input/output connections are provided to easilyinterface the MAX4885 RD board with VGAcompatibledevices. The RD board gives the optionto use a single 5V DC power supply (V+), or this RDboard can be powered from any one of the eight VGA sources.
标签: multiplexer reference VGA
上传时间: 2013-11-09
上传用户:ANRAN
OPTOELECTRONICS CIRCUIT COLLECTION AVALANCHE PHOTODIODE BIAS SUPPLY 1Provides an output voltage of 0V to +80V for reverse biasingan avalanche photodiode to control its gain. This circuit canalso be reconfigured to supply a 0V to –80V output.LINEAR TEC DRIVER–1This is a bridge-tied load (BTL) linear amplifier for drivinga thermoelectric cooler (TEC). It operates on a single +5Vsupply and can drive ±2A into a common TEC.LINEAR TEC DRIVER–2This is very similar to DRIVER–1 but its power output stagewas modified to operate from a single +3.3V supply in orderto increase its efficiency. Driving this amplifier from astandard +2.5V referenced signal causes the output transistorsto have unequal power dissipation.LINEAR TEC DRIVER–3This BTL TEC driver power output stage achieves very highefficiency by swinging very close to its supply rails, ±2.5V.This driver can also drive ±2A into a common TEC. Operationis shown with the power output stage operating on±1.5V supplies. Under these conditions, this linear amplifiercan achieve very high efficiency. Application ReportThe following collection of analog circuits may be useful in electro-optics applications such as optical networkingsystems. This page summarizes their salient characteristics.
上传时间: 2013-10-27
上传用户:落花无痕
Hyperlynx仿真应用:阻抗匹配.下面以一个电路设计为例,简单介绍一下PCB仿真软件在设计中的使用。下面是一个DSP硬件电路部分元件位置关系(原理图和PCB使用PROTEL99SE设计),其中DRAM作为DSP的扩展Memory(64位宽度,低8bit还经过3245接到FLASH和其它芯片),DRAM时钟频率133M。因为频率较高,设计过程中我们需要考虑DRAM的数据、地址和控制线是否需加串阻。下面,我们以数据线D0仿真为例看是否需要加串阻。模型建立首先需要在元件公司网站下载各器件IBIS模型。然后打开Hyperlynx,新建LineSim File(线路仿真—主要用于PCB前仿真验证)新建好的线路仿真文件里可以看到一些虚线勾出的传输线、芯片脚、始端串阻和上下拉终端匹配电阻等。下面,我们开始导入主芯片DSP的数据线D0脚模型。左键点芯片管脚处的标志,出现未知管脚,然后再按下图的红线所示线路选取芯片IBIS模型中的对应管脚。 3http://bbs.elecfans.com/ 电子技术论坛 http://www.elecfans.com 电子发烧友点OK后退到“ASSIGN Models”界面。选管脚为“Output”类型。这样,一样管脚的配置就完成了。同样将DRAM的数据线对应管脚和3245的对应管脚IBIS模型加上(DSP输出,3245高阻,DRAM输入)。下面我们开始建立传输线模型。左键点DSP芯片脚相连的传输线,增添传输线,然后右键编辑属性。因为我们使用四层板,在表层走线,所以要选用“Microstrip”,然后点“Value”进行属性编辑。这里,我们要编辑一些PCB的属性,布线长度、宽度和层间距等,属性编辑界面如下:再将其它传输线也添加上。这就是没有加阻抗匹配的仿真模型(PCB最远直线间距1.4inch,对线长为1.7inch)。现在模型就建立好了。仿真及分析下面我们就要为各点加示波器探头了,按照下图红线所示路径为各测试点增加探头:为发现更多的信息,我们使用眼图观察。因为时钟是133M,数据单沿采样,数据翻转最高频率为66.7M,对应位宽为7.58ns。所以设置参数如下:之后按照芯片手册制作眼图模板。因为我们最关心的是接收端(DRAM)信号,所以模板也按照DRAM芯片HY57V283220手册的输入需求设计。芯片手册中要求输入高电平VIH高于2.0V,输入低电平VIL低于0.8V。DRAM芯片的一个NOTE里指出,芯片可以承受最高5.6V,最低-2.0V信号(不长于3ns):按下边红线路径配置眼图模板:低8位数据线没有串阻可以满足设计要求,而其他的56位都是一对一,经过仿真没有串阻也能通过。于是数据线不加串阻可以满足设计要求,但有一点需注意,就是写数据时因为存在回冲,DRAM接收高电平在位中间会回冲到2V。因此会导致电平判决裕量较小,抗干扰能力差一些,如果调试过程中发现写RAM会出错,还需要改版加串阻。
上传时间: 2013-11-05
上传用户:dudu121
Boost LED drivers are often used to drive LEDs in series. If an LED fails while open,overvoltage protection (OVP) is necessary to avoid the damage to a boost integrated circuit (IC) or output capacitor. This application report presents the solutions to increase the TPS61043 LED driver OVP threshold.
标签: Overvoltage Protection Solutions Driver
上传时间: 2013-10-14
上传用户:jiangfire
Linear Technology’s high performance battery management ICsenable long battery life and run time, while providing precision charging control, constantstatus monitoring and stringent battery protection. Our proprietary design techniques seamlesslymanage multiple input sources while providing small solution footprints, faster charging and100% standalone operation. Battery and circuit protection features enable improved thermalperformance and high reliability operation.
上传时间: 2013-10-13
上传用户:yyq123456789
Abstract: This document details the Oceanside (MAXREFDES9#) subsystem reference design, a 3.3V to 15V input,±15V (±12V) output, isolated power supply. The Oceanside design includes a high-efficiency step-up controller, a36V H-bridge transformer driver for isolated supplies, a wide input range, and adjustable output low-dropout linearregulator (LDO). Test results and hardware files are included.
上传时间: 2013-10-12
上传用户:jinyao