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31.
磁旋转编码器四倍频电路分析与集成化设计   总被引:7,自引:0,他引:7  
王立锦  刘亚东  焦让  朱逢吾   《电子器件》2005,28(2):358-361
提高位置测量的精度是提高电机定位精度的主要途径。增量式磁旋转编码器作为转角位置传感器,可以用四倍频的方法提高其测量精度。设计了针对增量式磁旋转编码器四倍频集成电路,详细分析了其工作原理,并通过电路逻辑表达式分析证明了电路逻辑结构的严密性,从原理上说明了电路的精度和稳定性。给出了该集成电路输入输出引脚的仿真时序图和封装图。  相似文献   
32.
1 IntroductionOpticalCodeDivisionMultipleAccess(OCD MA)systemshavebeeninvestigated[1 ] .Manyen coders/decodershavebeen proposed ,forexample,opticalfiberdelay lines[2 ] .Inthispaper,weemploythelow weightOpticalOrthogonalCode(OOC s) [3~5] withthelengthMandtheweightΩaso…  相似文献   
33.
张友伟 《微特电机》1998,26(6):13-15,23
根据空间扫描驱动的特殊性,本文讨论了以三相永磁同步电机作为驱动电机,精粗双通道组合编码的旋转变压器作为角度编码器,实现的一种低速、大惯量、低功耗、高可靠性、高精度的空间扫描驱动机构。  相似文献   
34.
刘任平  宗光华 《电力学报》1998,13(4):244-248
提出一种解决火力发电厂中斗轮堆取料机信号安全传输问题的新方法,即电力载波通信,它不仅可以利用现成的电力线路传输数据,而且还无需占用通信的频率资源。  相似文献   
35.
任显新  李国松 《焊管》2019,42(9):49-51
用X射线工业电视进行焊缝质量检验时,为准确定位焊缝缺陷距管端的距离,方便后续工序能够快速准确地找到缺陷位置,进行缺陷修补,提高工作效率,提出了定位测量系统设计方案。在现有的工作环境、工艺流程和检验设备的情况下,根据工检大车运行状态,结合现场的实际情况,在工检大车一侧安装导轨、编码器及测量辊,通过支架固定在导轨侧面,并保证其位置固定不变,测量辊沿着导轨稳定旋转。工检X射线机头与钢管一端之间安装光电开关,该开关量信号能够及时传递给智能计数器,设定初始值及测量相应的长度,测量系统安装完成后经过多次测量与调试,满足了现场检验要求。  相似文献   
36.
李海春  蔡燕  姜文涛 《电子科技》2012,25(12):80-82,85
在电机控制系统中,转速测量的精确度、实时性和稳定性直接影响电机调速系统的性能。文中设计了一种基于LabVIEW软件平台的电机转速监测系统,选择绝对式光电编码器和单片机作为前端转速信号的采集系统,通过RS-232串口通信将数据传送至上位机;利用LabVIEW的数据处理和显示功能,对转速信号进行实时地处理、显示和保存。该设计在开关磁阻电机调速系统中进行了实验测试,结果证明,该方法人机界面良好、测速范围宽、精度高、响应速度快、抗干扰能力强。  相似文献   
37.
随着科学技术的发展,各个研究单位对编码器的精度要求越来越高,因此,在编码器研制生产过程中,需要对其误差进行检测,虽然现有检测装置能够完成编码器的误差检测,但都存在着不足之处.文章在参考大量文献的基础上,首先介绍了光电编码器的原理,其次介绍了国内外编码器检测装置的结构及原理,并分析其优缺点,最后对其发展方向进行了展望.  相似文献   
38.
光纤延迟线编解码器的设计   总被引:1,自引:2,他引:1  
光纤延迟线编码解器作为光码分多址系统时域编解码的基本器件,它起的作用是对光脉冲进行延时编码,同时也会给系统带来别的问题。例如:功率分离,延时损耗,温度抖动等。本文介绍了编码器的设计,同时对以上问题进行了分析,得出的结论包括:设计时必须考虑温度的影响,系统的损耗随着码重和用户数的增加而增加。这些可以对系统的设计提供一个参考。  相似文献   
39.
简要介绍了纳米材料的电学性能以及单电子器件的基本原理和应用;纳米材料的光学性能和光电性能,高的光吸收系数和光致荧光现象可使其应用于敏感元件,由于其光电特性具有超快响应速度,可望在超快光电子器件中得到应用。  相似文献   
40.
An MPEG-4 video coding SOC design is presented in this paper. We adopt platform-based architecture with an embedded RISC core and efficient memory organization. A motion estimator supporting predictive diamond search and spiral full search is implemented for compromise between compression performance and design cost. The proposed data reuse scheme reduces required memory access bandwidth. For texture coding path, an interleaving DCT/IDCT scheduling with substructure sharing technique is proposed. Several key modules are integrated into an efficient platform in hardware/software co-design fashion. The cost-efficient video encoder SOC consumes 256.8 mW at 40 MHz and achieves real-time encoding of 30 CIF (352×288) frames per second. Yung-Chi Chang was born in Kaohsiung, Taiwan, R.O.C., in 1975. He received the B.S. and M.S. degrees from the Department of Electrical Engineering, National Taiwan University, Taipei, Taiwan, R.O.C., in 1998 and 2000, respectively, where he is currently pursuing the Ph.D. degree in the Graduate Institute of Electrical Engineering. His research interests include video coding algorithms and VLSI architectures for image/video processing. Wei-Min Chao was born in Taoyuan, Taiwan, R.O.C., in 1977. He received the B.S. and M.S. degrees from the Department of Electronics Engineering, National Taiwan University in 2000 and 2002 separately. His research interests include video coding algorithms and VLSI architecture for image and video processing. Chih-Wei Hsu was born in Taipei, Taiwan, in 1979. He received the B.S.E.E and M.S.E.E degrees from National Taiwan University (NTU), Taipei, in 2001 and 2003, respectively. He joined MediaTek, Inc., Hsinchu, Taiwan, in 2003, where he develops integrated circuits related to multimedia systems and optical storage devices. His research interests include object tracking, video coding, baseband signal processing, and VLSI design. Liang-Gee Chen was born in Yun-Lin, Taiwan, in 1956. He received the B.S., M.S., and Ph.D. degrees in electrical engineering from National Cheng Kung University, Tainan, Taiwan, in 1979, 1981, and 1986, respectively. He was an Instructor (1981-1986), and an Associate Professor (1986-1988) in the Department of Electrical Engineering, National Cheng Kung University. In the military service during 1987 to 1988, he was an Associate Professor in the Institute of Resource Management, Defense Management College. In 1988, he joined the Department of Electrical Engineering, National Taiwan University. During 1993 to 1994 he was a Visiting Consultant of DSP Research Department, AT & T Bell Lab, Murray Hill. In 1997, he was a visiting scholar of the Department of Electrical Engineering, University of Washington, Seattle. During 2001 to 2004, he was the first director of the Graduate Institute of Electronics Engineering (GIEE) in National Taiwan University (NTU). Currently, he is a Professor of the Department of Electrical Engineering and GIEE in NTU, Taipei, Taiwan. He is also the director of the Electronics Research and Service Organization in Industrial Technology Research Institute, Hsinchu, Taiwan. His current research interests are DSP architecture design, video processor design, and video coding systems. Dr. Chen has served as an Associate Editor of IEEE Transactions on Circuits and Systems for Video Technology since 1996, as Associate Editor of IEEE Transactions on VLSI Systems since 1999, and as Associate Editor of IEEE Transactions on Circuits and Systems II since 2000. He has been the Associate Editor of the Journal of Circuits, Systems, and Signal Processing since 1999, and a Guest Editor for the Journal of Video Signal Processing Systems. He is also the Associate Editor of the Proceedings of the IEEE. He was the General Chairman of the 7th VLSI Design/CAD Symposium in 1995 and of the 1999 IEEE Workshop on Signal Processing Systems: Design and Implementation. He is the Past-Chair of Taipei Chapter of IEEE Circuits and Systems (CAS) Society, and is a member of the IEEE CAS Technical Committee of VLSI Systems and Applications, the Technical Committee of Visual Signal Processing and Communications, and the IEEE Signal Processing Technical Committee of Design and Implementation of SP Systems. He is the Chair-Elect of the IEEE CAS Technical Committee on Multimedia Systems and Applications. During 2001--2002, he served as a Distinguished Lecturer of the IEEE CAS Society. He received the Best Paper Award from the R.O.C. Computer Society in 1990 and 1994. Annually from 1991 to 1999, he received Long-Term (Acer) Paper Awards. In 1992, he received the Best Paper Award of the 1992 Asia-Pacific Conference on circuits and systems in the VLSI design track. In 1993, he received the Annual Paper Award of the Chinese Engineer Society. In 1996 and 2000, he received the Outstanding Research Award from the National Science Council, and in 2000, the Dragon Excellence Award from Acer. He is a member of Phi Tan Phi.  相似文献   
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