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ASawa
Associate
July 20, 2024
Question

Higher Inductance and Back emf with MAX RPM 700 drive the motor using EVSPIN32F0601S3 board

  • July 20, 2024
  • 1 reply
  • 1221 views

Hello ST community,

Currently we are working on a High power BLDC PMSM motor of  350W using selected ST board EVSPIN32F0601S3.

Please guide me to select the range of parameters in MCSDK V6.2.1 software (CUBEMX 6.2.0 and KEIL V5) to drive the BLDC motor. We are facing problems when we select parameters such as speed mode, frequency = 16 kHz, voltage 250 V, current 3A (sensor mode- Encoder 1024 ppr), startup current is 2.5 A, but still motor only aligns and stop.

Motor Specs:

I-PMSM  motor with Encoder 1024 ppr.

Resistance - 9.1 ohms, Inductance - 37.75 mH, Torque - 5 Nm,

Back Emf voltage (Vp-p) - 108 V, Back emf constant(@152 RPM) - 254.59 V/rpm

Ld/Lq = 1, Poles - 4, Max Speed - 600 RPM, Rated Voltage - 300 VDC 

 

Please find the attachment below.

    1 reply

    GMA
    Technical Moderator
    July 25, 2024

    Hello @ASawa,

    Did you check the motor connections U, V, W and Encoder signals? 
    With a scope, did you check that Encoder A and B signals are toggling when spinning motor shaft by hand?
    An easy test could be to generate a project with Main Speed sensor set to STO-PLL and auxiliary set to Encoder and verify with MC Pilot tool, once motor spinning, that ENCODER_EL_ANGLE and STOPLL_EL_ANGLE parameters are aligned.

    If you agree with the answer, please accept it by clicking on 'Accept as solution'.Best regards.GMA
    ASawa
    ASawaAuthor
    Associate
    July 26, 2024

    Dear STCommunity,

    I have Checked the U,V,W and encoder signals.

    Firstly I m running in FOC (STO-PLL) mode by setting parameters like 3kHz frequency, Start-up parameters so the motor runs for few seconds and suddenly stops.

    For this i monitor on motor pilot software, most of the time it shows speed feedback error or else it remains in run state.

    Please suggest me what to select parameters for high inductance motor and higher voltage