EBMX XLB 60 72V for Light bee Red
MTR019
£1349.99 £944.99
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EBMX Motor XLB-60 72v for Light Bee

We built these motors to stay cool under race conditions to ensure you focus on your riding and not your motor temperatures. It doesn't matter if you are on the track, street or local trail, if you want the best, then this motor is for you.
35KW rat... view more

£1349.99 £944.99 Sale

Availability: In Stock
IMPORTANT: A custom EBMX Bash Plate is included with your motor.
Code: MTR019 PLU: 40110 EAN: 5057645691280 Peak Power: 35000W Voltage Range: 48v - 104v Max Torque: 52Nm Max Stable Rotor RPM: 13000RPM Motor Configuration: 10 Poles and 12 Slots Winding Type: Dual Y Parallel Connection Stator and Rotor Stack Thickness: 60mm Sensing Method: NJDC 605 Encoder Kv Value: 95Kv Rated Power: Air Cooled: 13600W (Continuous run for 28 mins) Rated Power (cont): Water Cooled: 26000W (Continuous run for 4 mins 30 seconds) Warranty: 2 Year Max Phase Current: 900A Rated Phane Current (continuous run): 500A (28Nm) Waterproofing: IP67 Colour Options: Black/Red/Blue/Gold/Purple Weight: 11.2kg Current Type: DC Manufacturer Warranty: 12 Months Maximum Power: 72 V Maximum RPM: 10001 RPM - 15000 R Mounting Style: Clamp-On Peak Torque: 0 Nm - 500 Nm Performance Part: Yes Reference OE/OEM Number: 116000118 Type: Drivetrain Motor Universal Fitment: No Voltage: 72 V

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Description

The motor in an electric vehicle (EV) is the component that converts electrical energy from the battery into mechanical energy to drive the vehicle. It provides propulsion by generating torque, which turns the rear wheel.

We built these motors to stay cool under race conditions to ensure you focus on your riding and not your motor temperatures. It doesn't matter if you are on the track, street or local trail, if you want the best, then this motor is for you.

35KW rated and tested, designed from the ground up to handle the heat, 180C rated windings with U42H magnets

Custom IPM rotor design and industry leading 1mm rotor air gap revving out to rated 13000RPM. Encoder based motor control for increased low end torque response and smooth predicable power delivery.

In contrast to many of our competitors who utilise hall sensors we have opted to incorporate encoder sensors in our motors This decision stems from the fact that encoder sensors demonstrate greater stability under demanding riding conditions While hall sensors rely on estimated rotor positions encoder sensors consistently provide precise angle measurements of the rotors position Hall sensors are typically employed for tracking motor position during startup and up to approximately 2000 rpm after which the motor operates in a sensorless manner However during intense riding situations such as wheel spinning and sudden deceleration combined with rapid throttle adjustments hall sensors angle detection can result in substantial current spikes in the controller This can pose significant issues for many controllers leading to tripping and loss of throttle power although this is less prevalent in the X9000

In contrast to many of our competitors who utilise hall sensors, we have opted to incorporate encoder sensors in our motors. This decision stems from the fact that encoder sensors demonstrate greater stability under demanding riding conditions. While hall sensors rely on estimated rotor positions, encoder sensors consistently provide precise angle measurements of the rotor's position. Hall sensors are typically employed for tracking motor position during start-up and up to approximately 2000 rpm, after which the motor operates in a

In contrast to many of our competitors who utilise hall sensors, we have opted to incorporate encoder sensors in our motors. This decision stems from the fact that encoder sensors demonstrate greater stability under demanding riding conditions. While hall sensors rely on estimated rotor positions, encoder sensors consistently provide precise angle measurements of the rotor's position. Hall sensors are typically employed for tracking motor position during start-up and up to approximately 2000 rpm, after which the motor operates in a

Encoder sensors, on the other hand, are capable of tracking motor position at all speeds and do so more frequently than hall sensors. As a result they can deliver a smoother more responsive and controllable powerband and they do not generate the same type of current spikes that often cause controller issues. Furthermore, they contribute to improved low-end torque control and overall motor response.

EBMX motor have been custom built and are finely tuned to work with the EBMX X-9000 controller. These motors will work with many other types of controllers, however they may require you to do your own custom tuning.

Compatibility
Manufacturer Model
Surron Light Bee [SRLGB]
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