dev_null
New here
A bit of context, I have a Caroma D3 750W that I've been upgrading. Currently, I'm running the following:
Controller:
JN Electric Bike Controller 24/36/48V Brushless Motor Controller 30A Sine Wave Controller With Three Mode For E-bike Scooter 750W 1000W
Electric LCD Display, S866 Cycle Computer 24V 36V 48V Electric Scooter Control Panel with Plug for Electric LCD Display Display
Throttle:
Mokuo 22mm/0.87" Electric Bike Handlebar with 3-Speed Control Funcation,E-bike Throttle Grip Made of Rubber and Metal Material Fit for Universal Electric Bicycle Scooter,Titanium Color
Second Battery:
Airuxuan 48V Ebike Battery 10Ah Electric Bike Battery with Waterproof Case,54.6V 2A Charger, XT60 Connector and BMS for 100-800W Electric Bicycles Motor
Connected with stock battery via:
Electric Bike Dual Battery Discharge Converter 30A 24-72VDC Dual Battery Pack Switch Balancer Double Battery Parallel Module with XT60 Plug for 500w Motor
It's mostly running fine, except for one weird quirk that I only just barely figured out how to reproduce.
Twisting the throttle from a complete stop of about 3 seconds or more is fine. Throttle while in motion seems fine. However, if I twist the throttle while the wheel is about to come to a stop from free-spinning, the motor seizes up and either jitters and then engages normally, or just keeps jittering rapidly until I release the throttle. It's more common if I twist the throttle slowly, and happens nearly every time if I turn it just enough to engage the motor (right at the cutoff point). While it's doing this, the phase wires get warm. The seizing at some point while riding was strong enough to twist the axle through the parallel flat sides/drop-outs, spooling up the motor wires in the process (some of the wires became exposed when this happened, so I stripped the sleeve all the way off, taped off the exposed areas with electrical tape, then wrapped the whole bundle back up using this tape. It did not appear to me that any significant damage was done to the conductors themselves, but this event was caused by this issue so it couldn't be the culprit).
I should mention the above testing was done with the bike suspended and the wheel free-spinning. When actually riding, this would happen pretty often when accelerating from a short stop or low speed (not just as I'm about to come to a stop). This may indicate the issue could be related to the resistance the motor is encountering.
I've pretty much ruled out issues with the wires and throttle (unless there's some weird situation like wire colors not matching to the same color); as I said, everything works perfectly except in this very specific scenario, which I can reproduce almost every time. I've gone through adjusting every setting on the LCD Display, I even attempted to open up the hub motor but it took enough effort that I didn't want to risk damaging anything and quickly bolted it back up. From the research I've already done, I believe it could be related to issues with the magnets, or the hall sensor failing at determining the proper voltage at that specific rotation speed.
Regardless, I'm at a loss and I'm hoping someone here has a solution, or can point me in the right direction. Maybe I'm dumb and doing something I shouldn't be doing or using incompatible components, I am not experienced in this stuff and I'm kinda just figuring it out as I go.
Controller:
JN Electric Bike Controller 24/36/48V Brushless Motor Controller 30A Sine Wave Controller With Three Mode For E-bike Scooter 750W 1000W
Electric LCD Display, S866 Cycle Computer 24V 36V 48V Electric Scooter Control Panel with Plug for Electric LCD Display Display
Throttle:
Mokuo 22mm/0.87" Electric Bike Handlebar with 3-Speed Control Funcation,E-bike Throttle Grip Made of Rubber and Metal Material Fit for Universal Electric Bicycle Scooter,Titanium Color
Second Battery:
Airuxuan 48V Ebike Battery 10Ah Electric Bike Battery with Waterproof Case,54.6V 2A Charger, XT60 Connector and BMS for 100-800W Electric Bicycles Motor
Connected with stock battery via:
Electric Bike Dual Battery Discharge Converter 30A 24-72VDC Dual Battery Pack Switch Balancer Double Battery Parallel Module with XT60 Plug for 500w Motor
It's mostly running fine, except for one weird quirk that I only just barely figured out how to reproduce.
Twisting the throttle from a complete stop of about 3 seconds or more is fine. Throttle while in motion seems fine. However, if I twist the throttle while the wheel is about to come to a stop from free-spinning, the motor seizes up and either jitters and then engages normally, or just keeps jittering rapidly until I release the throttle. It's more common if I twist the throttle slowly, and happens nearly every time if I turn it just enough to engage the motor (right at the cutoff point). While it's doing this, the phase wires get warm. The seizing at some point while riding was strong enough to twist the axle through the parallel flat sides/drop-outs, spooling up the motor wires in the process (some of the wires became exposed when this happened, so I stripped the sleeve all the way off, taped off the exposed areas with electrical tape, then wrapped the whole bundle back up using this tape. It did not appear to me that any significant damage was done to the conductors themselves, but this event was caused by this issue so it couldn't be the culprit).
I should mention the above testing was done with the bike suspended and the wheel free-spinning. When actually riding, this would happen pretty often when accelerating from a short stop or low speed (not just as I'm about to come to a stop). This may indicate the issue could be related to the resistance the motor is encountering.
I've pretty much ruled out issues with the wires and throttle (unless there's some weird situation like wire colors not matching to the same color); as I said, everything works perfectly except in this very specific scenario, which I can reproduce almost every time. I've gone through adjusting every setting on the LCD Display, I even attempted to open up the hub motor but it took enough effort that I didn't want to risk damaging anything and quickly bolted it back up. From the research I've already done, I believe it could be related to issues with the magnets, or the hall sensor failing at determining the proper voltage at that specific rotation speed.
Regardless, I'm at a loss and I'm hoping someone here has a solution, or can point me in the right direction. Maybe I'm dumb and doing something I shouldn't be doing or using incompatible components, I am not experienced in this stuff and I'm kinda just figuring it out as I go.
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