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首页> 外文期刊>IEEE sensors journal >A Simple Approach to Design a Binary Coded Absolute Shaft Encoder
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A Simple Approach to Design a Binary Coded Absolute Shaft Encoder

机译:设计二进制编码的绝对轴编码器的简单方法

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摘要

In this paper, an optical type absolute shaft encoder coding pattern is presented. Compared with the conventional binary or gray code pattern resolution (), the proposed code exhibits two times more resolution (). Even, to represent high density positional information of rotating object, it is required very less number of tracks. This pattern sequence is based on -by-2 matrices of binary codes where consecutive two columns of each code represented as high–low order bits. To retrieve the encoded position from these coding patterns, an extra pulse track was added at the outside of coded tracks. Moreover, it was used for providing a synchronized clock pulse into a simple photodetector-based sequential logic circuitry; it is the decoding unit of this encoder. Thus, depending on these synchronized pulses, the proposed encoder is able to provide error free positional information for a high-speed rotating object. Eventually, in order to prove this concept, a prototype is designed and tested, where a satisfactory performance was achieved.
机译:本文提出了一种光学型绝对轴编码器编码模式。与常规的二进制或格雷码模式分辨率()相比,所提出的代码具有两倍的分辨率()。甚至,为了表示旋转物体的高密度位置信息,也需要非常少的轨道。该模式序列基于二进制代码的乘2矩阵,其中每个代码的连续两列表示为高低位。为了从这些编码模式中检索编码位置,在编码磁道的外部添加了一个额外的脉冲磁道。此外,它还用于向基于光电检测器的简单顺序逻辑电路提供同步时钟脉冲。它是此编码器的解码单元。因此,根据这些同步脉冲,所提出的编码器能够为高速旋转物体提供无误差的位置信息。最终,为了证明这一概念,设计并测试了原型,并获得了令人满意的性能。

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