Xerun 1/8th Competition G3 Motor

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Published
2016/05/25

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1/8th brushless power system with the implementation of a pure signal sensor mode circuit. Built-in intelligent integrated circuit is used so the sensor unit can easily be identified by the ESC when pairing with Hobbywing's XeRun XR8 series of ESC's the motor will operate in “Pure Sensored” mode at all times, providing a better performance and a smoother throttle response. Turbo Timing Technology 1/8th power system & Turbo Timing technology can be used when this motor is paired with Hobbywing XERUN XR8 series of ESC's the Motor can use the Turbo Timing technology which was designed for the XR10 Pro series of Esc's used in 1/10th On and Off road Competition. The motor will increase to maximum power output instantly.The maximum speed will increased by as much as 50% more than the output of the previous G2 series motors keeping you way ahead of the competition. The mechanical turbo timing of motor can be accurately adjusted in both directions (CW / CCW) The mechanical turbo timing can be adjusted between 20-40°. It is convenient for driver to calibrate accurately output power of motor and meet power requirements of various application. The efficiency is improved greatly, effectively reducing the temperature increase. Compared with XERUN 4268/4274 G2, the motor structure is greatly optimized, the efficiency is improved by 6% or more, which reduces the motor temperature increase effectively (Reducing thermal runaway). The motor sensor system adopts patented technology of "error-free" Hall sensor technology, with an independent high-speed and high-precision encoder of which will always output a pure and accurate rotor position signal, which effectively will isolate any external interference which are known to cause errors of the sensor signal.This accurate sensor system will allow the motor to function at its peak performance in a very stable sensor state. Low rpm (no current) torque The motor also minimises the low rpm (no current effect) also known as cogging and sm

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