如何解决旋转编码器、光栅尺与PLC控制器之间转换接口

2025-03-15 17:44:48
推荐回答(1个)
回答1:

旋转编码器、光栅尺基本原理: 将光源、圆型的旋转编码盘(编码盘的线数有360线到2400线数不同)和光电检测器件等组合在一起构成的通常称光电旋转编码器,码盘的线数决定了旋转角精度。同样两块长光栅(动尺和定尺)光栅的单位密度也决定了其单位精度,与光电检测器件等组合在一起构成的光栅传感器通常称为光栅尺。 旋转编码器每旋转一格光栅角,每一个光栅电信号对应一个旋转角或光栅尺每输出一个电信号,动尺移动一个栅距,输出电信号便变化一个周期,通过对信号变化周期的测量来测出动就与定就职相对位移。目前使用的光电旋转编码器与光栅尺的输出信号一般有两种形式,一是相位角相差90o的2路方波信号,二是相位依次相差90o的4路正弦信号。这些信号的空间位置周期为W。针对输出方波信号的光栅进行计数,而对于输出正弦波信号的光栅,经过整形可变为方波信号输出进行计数。就可以检测。输出方波的旋转编码器、光栅尺有A相、B相和Z相三个电信号,A相信号为主信号,B相为副信号,两个信号周期相同,均为W,相位差90o。Z信号可以作为较准信号以消除累积误差。 随着控制精度的要求提高,自动化控制的越来越普及。自然PLC应用得也就越来越广泛,因此对不同性能功能组件间的连接也提出了更高的接口要求。MHM-02、06型高速光栅隔离器就是一款性能非常良好的为旋转编码器、光栅尺与PLC控制器之间转换接口,同时可以对于输出正弦波信号的光栅,经过整形变为方波信号输出。现已广泛的应用到许多进口的、国产的旋转编码器、光栅尺与许多进口的、国产的不同类型PLC上。为此特别为自动化过程控制系统推荐

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