
























Source : HOBBYWINGDate : 10th Feb 2025
The XeRun Bandit G4R brushless motor, designed for 1/10 Outlaw racing with 13.5T (Torque/OBL) & 17.5T options. With industry-leading technology, XeRun Bandit G4R motor has become the secret weapon for professional RC drivers to win championships.
The 13.5T RC car motor is available in two versions: Torque and OBL.
The Torque version comes standard with an ultra-strong rotor which is suitable for Blinky application.
The OBL version motor is lighter, shorter, and provides more RPM, making it suitable for OBL Stock Class that delivering exceptional speed applications.
The Bandit G4R motor used high thermal conductivity glue to fill gaps in the stator coil, it ensures optimal heat dissipation and enhances overall reliability. In the same input power, the Bandit G4R is about 15℃ cooler than the G4 motor.
It features a modular structure design, making daily cleaning and maintenance straightforward while enhancing motor durability and efficiency.
The Bandit G4R motor features a fully exposed stator core outer diameter structure, setting a new benchmark for thermal efficiency. By directly exposing the stator core to air, the design optimizes the outer diameter and maximizes the heat dissipation area.
The Bandit G4R motor features an adjustable mechanical timing angle ranging from 20 to 60 degrees, providing unmatched versatility and performance.
The Bandit G4R motor features a dual hall sensor output socket design at the rear, enabling more convenient and aesthetically pleasing wiring.
The RC car brushless motor used 180°C high-temperature resistant explosion-proof structure rotor, 220°C high-temperature resistant wire, high-performance iron core, top international brand bearing. The outlet end adopts a customized widened U-shaped gold-plated curved copper bar. It has extremely low internal resistance, it also increases the space between the copper bars for ease of soldering. The large opening heat dissipation structure at the rear of the motor enhances the heat dissipation effect of the Hall component.
Source:HOBBYWINGDate: 10th Feb 2025
The XeRun Bandit G4R brushless motor, designed for 1/10 Outlaw racing with 13.5T (Torque/OBL) & 17.5T options. With industry-leading technology, XeRun Bandit G4R motor has become the secret weapon for professional RC drivers to win championships.
The 13.5T RC car motor is available in two versions: Torque and OBL.
The Torque version comes standard with an ultra-strong rotor which is suitable for Blinky application.
The OBL version motor is lighter, shorter, and provides more RPM, making it suitable for OBL Stock Class that delivering exceptional speed applications.
The Bandit G4R motor used high thermal conductivity glue to fill gaps in the stator coil, it ensures optimal heat dissipation and enhances overall reliability. In the same input power, the Bandit G4R is about 15℃ cooler than the G4 motor.
It features a modular structure design, making daily cleaning and maintenance straightforward while enhancing motor durability and efficiency.
The Bandit G4R motor features a fully exposed stator core outer diameter structure, setting a new benchmark for thermal efficiency. By directly exposing the stator core to air, the design optimizes the outer diameter and maximizes the heat dissipation area.
The Bandit G4R motor features an adjustable mechanical timing angle ranging from 20 to 60 degrees, providing unmatched versatility and performance.
The Bandit G4R motor features a dual hall sensor output socket design at the rear, enabling more convenient and aesthetically pleasing wiring.
The RC car brushless motor used 180°C high-temperature resistant explosion-proof structure rotor, 220°C high-temperature resistant wire, high-performance iron core, top international brand bearing. The outlet end adopts a customized widened U-shaped gold-plated curved copper bar. It has extremely low internal resistance, it also increases the space between the copper bars for ease of soldering. The large opening heat dissipation structure at the rear of the motor enhances the heat dissipation effect of the Hall component.