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Dear community
I have developed a bldc motor driver using a DRV10983 chip from texas instruments target speed 3000.00 RPM
It works of BEMF and dose not use hall effect sensors
I have achieved good stability but the instrument the motor is designed for needs very very stable speed at 3000 RPM
My question before I waste many stressful hours is can the achieve better stability with hall effects than +/- 1.5rpm in 3000RPM
The only way to understand whats happening is to read my post here in the DRV10983 forum
http://e2e.ti.com/support/motor-drivers/f/38/p/860404/3182399#3182399
basically the raw frequency when i look at hall effects drifts 200.1 Hz 199.9Hz 200.0Hz +/- 0.1Hz
This equates to plus minus 1.5 rpm as the hall effects does 4 pulses per ev rpm = 200hz x 60 / 4pulse = 3000Rpm
Can the STEVAL-SPIN3201 device by ST
by st be finely tuned in sensored mode with hall effect sensors to beat +/- 1.5 Rpm drift in 3000RPM I know this is a tiny percantage of +/- 0.05% of 3000RPM but the instrument has a spinning optical measurment system and any speed variance causes a drift in the readings. The DRV1093 speed hunts from 199.9 to 200,1 Hz around the target 200.0Hz causing a drift in the measurement system
To understand this better please read this many many thanks for looking and advice needed from BLDC experts
http://e2e.ti.com/support/motor-drivers/f/38/p/860404/3182399#3182399
