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Method and circuit for protecting pulse signals of stepping motor from running risk

A pulse signal and stepping motor technology, applied in the direction of motor generator control, electrical components, control systems, etc., can solve problems such as difficulty in improving accuracy and frequency, reducing motor life, and insignificant effects, so as to reduce the risk of risk phenomena , the effect of improving accuracy

Active Publication Date: 2010-04-28
苏州国芯科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] However, in actual use, when two consecutive beats alternate, the phase pulse signal will cause inconsistency in the delay of the pulse signal due to problems such as the circuit itself and signal interference, and often overlap areas, resulting in pulse signals that should not be effective at the same time , but working at the same time will cause risky phenomena, which will make it difficult to improve the accuracy and frequency, reduce the life of the motor, and even damage the motor in severe cases. This risky phenomenon is especially prominent when high frequency and forward and reverse conversion
However, in the field of stepping motors, improving the circuit itself, reducing interference between signals and filtering measures, etc., are often costly and the effect is not significant

Method used

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  • Method and circuit for protecting pulse signals of stepping motor from running risk
  • Method and circuit for protecting pulse signals of stepping motor from running risk
  • Method and circuit for protecting pulse signals of stepping motor from running risk

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Embodiment

[0031] Embodiment: A method and circuit for preventing stepping motor pulse signal risk

[0032] As shown in Table 1, the update direction DIR of the stepper motor phase pulse sequence in this embodiment includes two cases of forward rotation and reverse rotation. The update direction DIR is set to 0 for forward rotation, and the update direction DIR is set to 1 for reverse rotation. The following Stated in forward rotation mode. The highest bit corresponds to phase pulse signal A, the second bit corresponds to phase pulse signal B, the third bit corresponds to phase pulse signal C, and the fourth bit corresponds to phase pulse signal D. The working mode of the stepping motor is a double-four-beat working mode, and the stepping motor is driven by a four-beat bi-phase pulse signal sequence round.

[0033] Table 1 Regularity of phase pulse update sequence

[0034]

[0035] as attached figure 1 As shown, the phase update occurs on the rising edge of the phase update trigger...

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PUM

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Abstract

The invention relates to a method and a circuit for protecting pulse signals of a stepping motor from running a risk. The method comprises the following steps that: time-delay characteristic time TNOD of a first phase pulse signal is skipped from 'valid' to 'invalid' at alternate time of two continuous shots to acquire a first phase pulse time-delay signal; time-delay characteristic time TNOD of a second phase pulse signal is skipped from 'invalid' to 'valid' to acquire a second phase pulse time-delay signal; the second phase pulse time-delay signal, the second phase pulse signal and the first phase pulse time-delay signal are subjected to logic operation to acquire a second phase pulse regular signal; and the second phase pulse regular signal and the second phase pulse signal are subjected to logics and operation to acquire a second phase risk protection pulse signal. The second phase risk protection pulse signal drives the stepping motor to effectively reduce the risks that the pulse signal of the stepping motor has a phenomenon of running a risk, thereby achieving the aim of improving the working performance of the stepping motor.

Description

technical field [0001] The invention belongs to the field of stepping motors, and in particular relates to a method for preventing the pulse signal risk of the stepping motor and a circuit for preventing the pulse signal risk of the stepping motor. Background technique [0002] Stepper motors can achieve speed regulation, fast start and stop, and forward and reverse control by changing the pulse frequency, so they are widely used. They have multi-phase windings, and each winding receives phase pulse signal sequences in a certain order to realize the circulation of each winding. Applying electricity causes the rotor to move in a specific way. The phase pulse signal sequence can be divided into multiple beats in one cycle. Common modes include single four-beat, double four-beat, single eight-beat and double-eight beat. When doing continuous stepping motion, its rotation speed maintains a corresponding relationship with the frequency of the input pulse. [0003] However, in ...

Claims

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Application Information

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IPC IPC(8): H02P8/00
Inventor 张艳丽于麦口徐晓宇林峰郑茳肖佐楠
Owner 苏州国芯科技股份有限公司