
MTSPF7.5K V4-based Speed Controller with Aluminum Case for Esk8/Robotics/Mountainboard/Lawnmower Robot/ Camera motorized dollyNotice:This VESC is not stock item, if you're interested we can still do for you, contact us for more information.Model No.MTSPF7.
This VESC is not stock item, if you're interested we can still do for you, contact us for more information.
| Model No. | MTSPF7.5K | Cont Current | 100A |
| Burst Current | 280A | BEC | 5V/1.5A |
| Voltage | 3-12S Lipo (12.6V-50V) | Case Size | 71.5*45.8*18mm |
| Dustproof | Yes | Splash Waterproof | Yes |
NeverconnectonereclevertotwoormoreV6/V75basedSUPERFOCESCsorVESCsinanarray!PermanentdamagemayresultfromY-PPMwiring.
OnlyconnectCANLandCANH!GNDpinsand5VshouldneverbeconnectedinaV6/V75basedSUPERFOCESCsorVESCarray.
Maytech Supercase 100A MTSPF7.5K comes with a heatsink case. It enables the controller to have better heat-radiation performance. Also, it protects controller from water or moisture.
Moreover, it has soft-switching to reduce the losses in power electronic switches
Separation of low power electronics from the high power electronics, make it more reliable.
Application: Electric skateboard, Esk8, longboard, mountainboard, offroad skateboard, ROV/ROVEEE/remote
operated vehicle, underwater robot, Underwater Robotics/underwater remotely operated vehicles, subsea robots,cablecam, broadcast, IBC2019, Ultra drones,security monitoring robotsrobots for security and safety monitoring in harsh terrain, agile robots autonomous agile robots security robots autonomously monitor security, combat robots, fighting robots, etc.,
All products had been double checked and tested one by one before shipment, only if the products are working normally would be shipped out.
Do not suggest to use FOC mode, suggest to use BLDC mode.
If need to use FOC mode, then must use voltage under 20V.
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Maytech Brushless Outrunner Sensored Motors
Maytech VESCTOOL Compitable Controller:
Maytech MTSKR1712 Small and Light Cheap Remote:
The controller is the latest and greatest Open Source ESC which we use to power our Electric Skateboard Motors. It was built from the ground up with many customize-able options which were lacked from typical RC Car ESCs. It has the feature of Strong, Reliable and Progressive Electric Brakes
Maytech SuperESCis based upon the SUPERFOC ESC Open Source Project, and compatible with VESCTOOL Software. It is a highly modifiable electronic speed controller designed for DIY Electric Skateboards conversions in mind.
You canuse sensorless motors to achieve smooth start-up from a stop,while traditional RC ESC's may have trouble starting. It also provides strong reliable and progressive electric braking.
Features:
STM32F432BitARMmicro-controller.
DRV8302MOSFETdriver/buckconverter/currentshuntamplifier.
Regenerativebraking.
DCmotorsarealsosupported.
Sensoredorsensorlessoperation.
AdaptivePWMfrequencytogetasgoodADCmeasurementsaspossible.
Goodstartuptorqueinboth sensored and sensorless mode.
Dutycyclecontrol,speedcontrolorcurrentcontrol.
WirelessWIInunchuk(NykoKama)controlthroughtheI2Cport.Thisis convenientforelectricskateboards.
OptionalPPMsignaloutput.e.g.whencontrollinganRCcarfroma Rasp Berry Pioranandroiddevice.
TheUSBportusesthemodemprofile,soanAndroiddevicecanbe connectedtothe ESC withoutrooting.Becauseoftheservo output, theodometryandtheextraADCinputs(thatcanbeusedfor sensors), thisisperfectformodifyinganRCcartobecontrolled fromAndroid (orRaspberryPi).
Sensored and sensorless (FOC) Field Oriented Control allows your electric skateboard to run with barely any motor noise, it auto-detects motor parameter since FW3.34.
Many safety features such as current control and temperature control features.
The motor is used as a tachometer, which is good for odometry on modified RC cars.
Adjustable protection against:
Low input voltage
High input voltage
High motor current
High input current
High regenerative braking current (separate limits for the motor
and the input)
Rapid duty cycle changes (ramping)
High RPM (separate limits for each direction).
When the current limits are triggered, a soft back-off strategy is used while the
motor keeps running. If the current becomes too high, the motor is switched off completely.
The RPM limit also has a soft back-off strategy.
Commutation works perfectly even when the speed of the motor changes.This is due to the fact that the magnetic flux is integrated after the zero crossing instead of adding a delay based on the previous speed.
When the motor is rotating while the controller is off, the commutations and thedirection are tracked. The duty-cycle to get the same speed is also calculated. This is to get a smooth start when the motor is already spinning.
For more info about VESCTOOL project, pls visit:
http://vedder.se/2015/01/vesc-open-source-esc/
https://vesc-project.com
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