MOTOR CONTROL UNIT(POWER INVERTER) CP SERIES FOR HIGH VOLTAGE EV APPLICATION

2020-11-23
The innovation of CP Series motor control unit (MCU) with DSP-based control is specifically designed for electric propulsion vehicles, embedded with efficient IGBT module for high power density and reliability. Its compact and robust design is suitable for various types of electric vehicle e-Drive system integration, including pure battery EV and plug-in hybrid EV .
MCU configures motor speed and torque after receiving comments fr om VCU (vehicle control unit) via CAN-bus communication. The MCU converts battery pack DC power source to AC power supply to drive propulsion motor. During vehicle braking, it can regenerate DC power back to battery pack for charging. Efficient cooling system enables its high power density and performance. Protection includes against over current, over voltage and over temperature. Various electrical and environmental tests are passed to meet international standards.
CP Series also comes with integrated dual-mode motor control unit: one larger power controller for traction motor and one smaller power controller for integrated starter generator (ISG). Main application is PHEV, enabling four (x4) driving modes for the vehicle. ISG controller can start the engine of the range extender, control the ISG, and convert AC power to DC which charges the battery pack, or can provide direct DC power to traction motor MCU for lower speed driving.
CP Series MCU provides maximum performance, efficiency, endurance and reliability for electric propulsion application, making electric vehicle drive more accountable.

CHROMA

CP SERIESCP40CP100CP105-47

More

Part#

MOTOR CONTROL UNITPOWER INVERTERMCUDual-mode Motor Control Unit

More

HIGH VOLTAGE EV ]

More

Datasheet

More

More

Please see the document for details

More

More

English Chinese Chinese and English Japanese

201609

456 KB

- The full preview is over,the data is 2 pages -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: