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  • 基于Proteus的单片机模数转换电路的设计与仿真

    以单片机控制A/D转换器TLC549为例,对A/D转换器的主要技术指标进行了分析研究,在Proteus平台下,完成了A/D转换电路的构建,采用器件工作时序方式进行程序编写,借助仿真图表、虚拟仪器等工具对A/D转换的数据进行测量并对失调误差、增益误差、微分非线性、积分非线性和转换时间等重要参数进行了详细分析。结果表明:使用Proteus软件可对A/D转换过程进行定性分析,将抽象的A/D转换器技术指标直观化、形象化展现出来,有助于学生更好地理解A/D转换过程。The main technical indicators of A/D converter were analyzed and studied with an example from A/D converter TLC2543 which is controlled by using SCM.It was completed the construction of the A/D converter circuit under the Proteus software.The programming based on the operation sequence of the chip is put forward.With the aid of the simulation tools such as virtual instrument,simulation charts provided by Proteus,the important parameters of circuit such as offset error,Gain error,differential nonlinearity(DNL),integral nonlinearity (INL) and conversion time are analyzed detailedly.Simulation results show that the A/D conversion process can be qualitatively analyzed and visualized the abstract indicators of A/D.The system can help students better to understand the SCM conversion process.

    标签: proteus 单片机 模数转换

    上传时间: 2022-04-04

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  • 高速ADC、DAC测试原理及测试方法

    随着数字信号处理技术和数字电路工作速度的提高,以及对于系统灵敏度等要求的不断提高,对于高速、高精度的ADC、DAC的指标都提出了很高的要求。比如在移动通信、图像采集等应用领域中,一方面要求ADC有比较高的采样率以采集高带宽的输入信号,另一方面又要有比较高的位数以分辨细微的变化。因此,保证ADC/DAC在高速采样情况下的精度是一个很关键的问题。ADC/DAC芯片的性能测试是由芯片生产厂家完成的,需要借助昂贵的半导体测试仪器,但是对于板级和系统级的设计人员来说,更重要的是如何验证芯片在板级或系统级应用上的真正性能指标。ADC的主要参数ADC的主要指标分为静态指标和动态指标2大类。静态指标主要有:Differ ential Non-Li nearity(DNL)ntegral Non-Li nearity(INL)Of fset Error ull Scale Gain Error动态指标主要有:

    标签: ADC DAC

    上传时间: 2022-06-19

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  • 用89C51单片机控制ISD2590语音芯片

    第一章引言目前基于单片微机的语音系统的应用越来越广泛,如电脑语音钟、语音型数字万用表、手机话费查询系统、排队机、监控系统语音报警以及公共汽车报站器等等。本文作者用Flash单片机ANT89C51和录放时间达90%的数码语音芯片ISD2590设计了一套智能语音录放系统,实现了谱音的分段录取、组合回放,整段录取.循环播放,通过软件修改可以实现很多场合的应用。第二章ISD2590语音芯片本系统采用关国ISD公司的ISD2590芯片,ISD2500系列具有抗断电、音质好,使用方便等优点。它的最大特点在于片内E2PROM容量为480K(1400系列为128K),所以录放时间长;有10个地址输入端(1400系列仅为8个),寻址能力可达1024位;最多能分600段;设有OVF(溢出)端,便于多个器件级联。2.1内部框图图2-1为ISD2590芯片的内部结构框图。录音时,语音信号从MIC,MICREF(17,18)引聊输入,经过一个前置放大器放大,该放大器的增益由AGC(Auto Gain Control,19)引脚所接的器件的伯控制。经放大的信号从ANAOUT脚输出,经过阻容注被后ANAIN进入芯片内部。然后经过放大和滤波后存入EEPROM阵列中,放音时,在正确的时序控制的前提下,声音信号将从EEPROM中经滤波放大后从SP+,SP一中输出。

    标签: 89c51 单片机 isd2590 语音芯片

    上传时间: 2022-06-24

    上传用户:1208020161

  • 高级PID控制算法.

    Simulation can provide a lot of information about what the system is doing. We canadd the effect of different element, like Encoder resolution, ADC sampling rate, etc and understand how does it affect the system. Another benefit is the possibility to slow down the process, to Gain insight on what happens of fast systems or, vice versa, speed up slow process.Because National Instruments is a unique company in the fact the we provide a fullhardware solution couple with a full development platform, we can use this tools in very particular ways For example, it is possible to combine the LabVIEW Control Design and Simulation Module along with the FPGA module to quickly prototype a controller. One of the main benefits of this approach is that there is no need to compile the FPGA code, which allows for a quick algorithm design turnaround and debugging.

    标签: pid控制

    上传时间: 2022-07-20

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