High‑power VESC‑compatible controller featuring 54 industrial‑grade MOSFETs, rated for 30S battery systems and 150A continuous current. Designed for electric scooters, e‑bikes, light electric vehicles and industrial applications requiring robust, reliable motor control.
• Maximum Voltage: 126V (32S) (150V MOSFETs, with 160V DCDC option)
• Minimum Voltage: 40V (10S)
• Continuous Current: 1200A (with efficient cooling, e.g., liquid)
• Maximum Current (10 sec): 1500A (MOSFET choice dependent)
• Max ERPM: 150,000 (firmware limited)
• ADC Input: 0‑3.3V, 5V tolerant
• Max Operating Temperature: 75‑95°C rollback
• Switching Frequency: Up to 25kHz (50kHz with VESC firmware) @ rated cell count
• MOSFET Count & Type: 54 pcs industrial‑grade MOSFETs (e.g., Infineon or equivalent, low Rds(on))
• Board Design: High‑current PCB with heavy copper layers
• Core Design: Robust and reliable VESC architecture, DRV‑less or integrated gate driver (design dependent)
• Cooling: Requires efficient cooling (liquid or forced air) for rated continuous current
• Control Interfaces: Compatible with VESC universal remote control, electric throttle handle, and CAN control (three ways)
• Wireless Communication: Bluetooth module (optional, ESP32‑C3 compatible with VESC Express)
• Supported Throttle Types: ADC, PPM, CAN, UART inputs
• Wired Communication: CAN bus
• Programming Interface: USB‑C port for configuration and firmware updates
• Auxiliary Output: 5V / 0.5A
• Integrated Sensor: Built‑in IMU chip for balancing applications (e.g., VESC Onewheel®)
• Switch Control: Easy ON/OFF with any latching switch
• Thermal Management: Soft and hard thermal limiting (rollback at 75‑95°C)
• Overcurrent Protection: Hardware + software
• Low Voltage Cutoff: Programmable
• Short Circuit Protection: Motor phase and battery side
• Operating Environment: Suitable for demanding PEV and light EV applications
• Firmware: VESC open source firmware compatible (e.g., VESC6, VESC75, or custom builds)