AC servo motor with inverter control method - Reynolds

Create Date: 2024-8-30 12:03:23|Source: RENLE/RENOLDS

Because the inverter and servo are different in performance and function, and the use is not very different, it is not possible:

1) In the occasion of speed control and torque control, the general frequency converter is not very high, and there are also those who add position response signals to form a closed loop and use frequency conversion to control the position, and the accuracy and response are not high. Nowadays, some inverters also accept the speed of pulse train signal manipulation, but it seems that the position cannot be directly controlled.

                            AC servo motor with inverter control method - Reynolds

2) In the case of strict position control requirements, it can only be achieved by servo, and the response speed of the servo is much greater than that of frequency conversion, and some occasions with high requirements for speed accuracy and response are also controlled by servo, and the occasions that can be controlled by frequency conversion can be replaced by servo.

The key is two points, one is that the price servo is much higher than the frequency conversion, and the other is the reason for the power: the maximum frequency conversion can do hundreds of KW, or even higher, and the maximum servo is tens of KW. The basic concept of servo is accurate, precise, and fast positioning. Frequency conversion is a necessary internal link of servo control, and frequency conversion also exists in the servo drive (stepless speed regulation).

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