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Owner's Guide: 3P20M Hybrid Stepper Motor Driver
Page 14
TECHNICAL DOCUMENT
14. Frequently Asked Questions
In the event that your 3P20M doesn’t operate properly, the first step is to identify whether the problem is electrical or mechanical in nature. The
next step is to isolate the system component that is causing the problem. As part of this process you may have to disconnect the individual
components that make up your system and verify that they operate independently. It is important to document each step in the troubleshooting
process. You may need this documentation to refer back to at a later date, and these details will greatly assist our Technical Support staff in
determining the problem should you need assistance.
Many of the problems that affect motion control systems can be traced to electrical noise, controller software errors, or mistake in wiring.
Symptoms
Possible Problems
No power
Microstep resolution setting is wrong
DIP switch current setting is wrong
Fault condition exists
Motor is not rotating
The driver is disabled
Motor rotates in the wrong direction
Motor phases may be connected in reverse
DIP switch current setting is wrong
The driver in fault
Something wrong with motor coil
Control signal is too weak
Control signal is interfered
Wrong motor connection
Something wrong with motor coil
Erratic motor motion
Current setting is too small, losing steps
Motor stalls during acceleration
Motor is undersized for the application
Acceleration is set too high
Motor stalls during acceleration
Powersupply voltage too low
Inadequate heat sinking/cooling
utomatic current reduction function not being
utilized
Excessive motor and driver heating
Current is set too high
15. Application
It is suitable for many stepper motors, from NEMA 17 to NEMA 34. It can be used in many machines, such as pick-place devices, engraving
machines and so on. It is an ideal solution for the application that requires low-speed smoothness and high speed performance.