DSP TMS320F2812,DSP
1)DSPDSP TMS320F2812
英文短句/例句

1.The Design of Digital Control System Based on DSP TMS320F2812;基于DSP TMS320F2812的数字控制系统设计
2.Design of Gas Alarm System Based on DSP TMS320F2812基于DSP TMS320F2812的气体报警系统设计
3.Study on Waveform Control System Used in CO_2 Welding Course Based on TMS320F2812 DSP;基于TMS320F2812 DSP的CO_2焊波形控制系统研究
4.Design of a Biped Walking Robot Based on TMS320F2812 DSP基于TMS320F2812 DSP的双足机器人样机设计
5.Design of PFC Power Supply With TMS320F2812 and DSP/BIOS基于TMS320F2812与DSP/BIOS的PFC电源设计
6.A Elevator Door Control System Based on TMS320F2812 DSP基于TMS320F2812 DSP的电梯门机驱动控制系统
7.The design of network communication system based on TMS320F2812 DSP基于TMS320F2812 DSP的网络通信系统设计
8.Design on Equipment for Power Quality Monitoring Based on DSP2812基于TMS320F2812 DSP的电能质量监测装置的设计
9.Design of the Focus Controller Based on TMS320F2812 DSP基于TMS320F2812 DSP的Focus控制器设计
10.Research of Speed Sensorless Vector Control System Based on TMS320F2812 DSP;基于TMS320F2812 DSP的无速度传感器矢量控制系统研究
11.Research and Development of Excitation Controller Based on TMS320F2812 DSP;基于TMS320F2812的同步发电机DSP励磁控制器的研究与开发
12.CAN Communication Based on TMS320F2812基于TMS320F2812的CAN通信
13.A Frequency Counter Based on TMS320F2812基于TMS320F2812的数字频率计
14.Serial Communication Based on TMS320F2812 and LabVIEW基于TMS320F2812与LabVIEW的串口通信
15.Research and Development of the Microprocessor Line Protection Device Based on TMS320F2812;基于TMS320F2812的微机线路保护装置的研究
16.Development and Fabrication of the Pneumatic Servo Controller Based on TMS320F2812;基于TMS320F2812的气动伺服控制器的研制
17.Design of 110KV Line Relay Protective Device Based on TMS320F2812;基于TMS320F2812的110KV线路保护装置的设计研究
18.Research on VVVF Power Signal Source Based on TMS320F2812;基于TMS320F2812的变频调压功率信号源的研究
相关短句/例句

DSP TMS320F2812 chipDSP TMS320F2812芯片
3)digital signal processorDSP
1.The fault detector of the primary of permanent magnet linear synchronous motor based on digital signal processor;基于DSP的永磁直线同步电动机初级故障检测装置
2.Implementation of fot to fixed-point digital signal processor;快速小波变换的定点DSP实现
3.Implementation of Adaptive Filtering Algorithm in Digital Signal Processor;用DSP快速实现自适应滤波器算法
4)digital signal processingDSP
1.The optical system construction and working principles of intelligent north-finding gyroscope system based CCD(charge coupled device)image sensor and DSP(digital signal processing)technology is described.介绍了基于CCD图像传感器与DSP技术的陀螺仪智能寻北系统的结构与工作原理,重点介绍了与DSP有关的电子硬件和软件部分,寻北方法在DSP特定环境下的应用,给出了系统的硬件原理图和软件流程图,最后总结了这套系统在陀螺仪寻北中的优点。
2.According to the characteristics and requirement of profile modeling spray,a detection system of shape-structure parameters of fruit-tree was put forward based on the digital signal processing(DSP).根据果树仿形喷雾的特点及要求,设计开发了基于DSP的果树形态结构参数检测系统。
3.Aimed at plenty of complex computing problems during in detecting weak signal with chaotic oscillator,this paper proposes a DSP(Digital Signal Processing)-based hardware design scheme which can solve these computing problems rapidly in the course of chaotic detection,and provides its software implementation method.针对混沌振子法检测微弱信号过程中大量的复杂运算问题,提出了一种基于数字信号处理器(DSP)的硬件设计方案。
5)digital signal processor(DSP)DSP
1.The device is based on the multifunctional integration board of digital signal processor(DSP).介绍了以数字信号处理器(digital signal processor,DSP)的多功能集成板卡为核心而开发的牵引变电站负荷特性数据采集装置。
2.The control mainframe of the robot is composed of a Digital Signal Processor(DSP) and a Complex Programmable Logic Device(CPLD).其控制主体采用DSP(数字信号处理器)结合CPLD(复杂可编程逻辑器件)。
3.It was controlled by a Digital Signal Processor(DSP),and it could achieve the functions of on-line monitoring of the voltage,current,temperature and remaining capacity of battery.介绍了电动车电池管理系统的设计思想和方法,用数字信号处理器DSP控制,可实现对蓄电池的电压、电流、温度及剩余电量的在线监测,可改善电池的维护效果,进一步提高了电池的可靠性;并设计了电池充电算法用于D SP软件执行。
6)FPGADSP
1.Hardware Implement of GA on DSP and FPGA-based System;基于DSP+FPGA的遗传算法硬件实现
2.Grating geophone signal processing based on DSP and FPGA基于DSP与FPGA的光栅地震检波器的信号处理
3.Based on the new diagram, a method of repetitive learning control is achieved by FPGA and DSP.提出了一种新型中性线谐波治理装置,通过三个单相变压器的特殊连接方式,仅使用一个单相全桥逆变电路即可完成补偿要求,同时避免承受电网基波电压,有效降低开关损耗以及控制复杂程度;介绍了重复学习控制策略并给出其控制模型;最后使用FPGA和DSP给出了该控制的数字算法实现并研制了一套容量为10kVA的装置进行实验。
延伸阅读

TMS分子式:(CH3)4Si CAS号:性质:无色易挥发液体。熔点-99℃。沸点26~28℃。闪点<0℃。折射率1.3580。密度0.648g/cm3。化学稳定,不被浓硫酸或强碱分解。在紫外线照射下,可氯化成氯甲基三甲基硅烷。四甲基硅烷具有很高的热稳定性,660~720℃下才开始分解。可由四氯硅烷或正硅酸乙酯与甲基碘化镁反应来制取。也可由氯甲烷和硅粉,在铜催化剂存在下反应而制取。在高温下反应然后仔细分馏制得。由于硅的电负性较低,对四个甲基上的氢原子影响较小,所以在核磁共振谱中能给出较强的信号和一个锐利的吸收峰,而其他一般有机化合物中的质子吸收峰都出现在它的左面。因此,在核磁共振谱中通常把TMS作为化学位移的内标,并把它的化学位移定为零。通常置于密封玻璃管内并贮存于冰箱中。