ANV encoder working principle - Solutions - Huaqiang Electronic Network

Photocoupler

An optical code disc with a shaft at the center, with an annular pass and a dark engraved line, read by a photoelectric transmitting and receiving device, and four sets of sine wave signals are combined into A, B, C, D, each sine wave A phase difference of 90 degrees (360 degrees relative to a cycle), reverse the C and D signals, superimposed on the A and B phases to enhance the stable signal; and output a Z-phase pulse per revolution to represent the zero reference Bit.

Since the two phases A and B are 90 degrees out of phase, the encoder can be obtained by comparing the A phase before or the B phase to determine the forward and reverse rotation of the encoder, and the zero reference pulse can be used to obtain the zero reference position of the encoder. The material of the encoder code disc is glass, metal and plastic. The glass code disc is deposited on the glass with a very thin engraved line. The thermal stability is good and the precision is high. The metal code disc is directly passed through and the line is not broken. However, due to the certain thickness of the metal, the precision is limited, and its thermal stability is one order of magnitude worse than that of the glass. The plastic code disk is economical, and its cost is low, but the accuracy, thermal stability and life are both poor. .

Resolution—The number of passes or dark lines that the encoder provides at 360 degrees per revolution is called resolution, also known as resolution indexing, or directly numbered lines, typically 5 to 10000 lines per revolution.

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