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UBC717AE01-HIEE300927R0101 编码器模块

UBC717AE01-HIEE300927R0101 编码器模块是一种设备,用于将角位移或直线位移转换成电信号。它由一个中心有轴的光电码盘组成,上面有环形通、暗的刻线,光电发射和接收器件读取这些刻线以获得电信号。UBC717AE01-HIEE300927R0101 编码器模块有多种类型,包括增量式编码器和绝对值编码器。增量式编码器将位移转换成周期性的电信号,再把这个电信号转变成计数脉冲,用脉冲的个数表明位移的大小。而绝对值编码器则能输出一个与角位置相对应的数字码。

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UBC717AE01-HIEE300927R0101   编码器模块

UBC717AE01 HIEE300927R0101.jpg


UBC717AE01-HIEE300927R0101 编码器模块是一种设备,用于将角位移或直线位移转换成电信号。它由一个中心有轴的光电码盘组成,上面有环形通、暗的刻线,光电发射和接收器件读取这些刻线以获得电信号。UBC717AE01-HIEE300927R0101 编码器模块有多种类型,包括增量式编码器和绝对值编码器。增量式编码器将位移转换成周期性的电信号,再把这个电信号转变成计数脉冲,用脉冲的个数表明位移的大小。而绝对值编码器则能输出一个与角位置相对应的数字码。


UBC717AE01-HIEE300927R0101 编码器模块的应用非常广泛,例如在电机控制、机器人定位、角度测量等领域都有应用。在使用编码器模块时,需要注意其参数和特性,如精度、分辨率、工作电压、工作温度等,以确保其正常工作并获得准确的测量结果。

增量式编码器通过测量光束经过光栅盘的透光和遮光的次数来测量角位移或直线位移。当编码器的轴转动时,光束经过光栅盘的透光和遮光的交替,产生相位差90度的脉冲信号A和B。这两个信号经过逻辑运算后,可以判断出编码器的旋转方向。同时,通过计数脉冲信号的数量,可以得到角位移或直线位移的大小。因此,增量式编码器通过光束透光和遮光的交替变化,将角位移或直线位移转换成周期性的电信号。

UBC717AE01-HIEE300927R0101   编码器模块

UBC717AE01 HIEE300927R0101.jpg


The UBC717AE01-HIEE300927R0101 encoder module is a device for converting angular or linear displacement into electrical signals. It consists of a photocode disc with a central axis, on which there are annular, dark notches, which are read by phototransmitting and receiving devices to obtain electrical signals. The UBC717AE01-HIEE300927R0101 encoder modules are available in various types, including incremental encoders and absolute encoders. The incremental encoder converts the displacement into a periodic electrical signal, which is then converted into a counting pulse, and the number of pulses indicates the magnitude of the displacement. The absolute value encoder can output a digital code corresponding to the angular position.


The UBC717AE01-HIEE300927R0101 encoder module has a wide range of applications, such as motor control, robot positioning, Angle measurement and other fields. When using the encoder module, it is necessary to pay attention to its parameters and characteristics, such as accuracy, resolution, operating voltage, operating temperature, etc., to ensure its normal operation and obtain accurate measurement results.

Incremental encoders measure angular or linear displacement by measuring the number of times a beam passes through a grating disk to pass through and block light. When the axis of the encoder rotates, the beam passes through the alternate transmission and shading of the grating disk, producing pulse signals A and B with a phase difference of 90 degrees. After these two signals are logically calculated, the rotation direction of the encoder can be determined. At the same time, by counting the number of pulse signals, the magnitude of angular displacement or linear displacement can be obtained. Therefore, the incremental encoder converts the angular or linear displacement into a periodic electrical signal by alternating changes in the light transmission and shading of the beam.

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