Technology

Put hardware, software and control algorithms on the same engineering drawing

Organise motor drive, vehicle control and intelligent power distribution around the energy, motion and communication paths of new-energy equipment.

Engineering narrative

Not isolated components, but equipment-oriented control combinations

From the power circuit to embedded logic, from motor control to vehicle communication, each layer is brought back to the real operating condition.

01

Power hardware

Power devices, thermal paths, connections and protective structures organised for the selected voltage platform and installation conditions.

02

Embedded software

Inputs, outputs, work logic, diagnostics and protection strategies connected in the control software.

03

Motor control

Vector, speed or torque-control paths configured around the motor, feedback device and duty cycle.

04

Communication & integration

CAN and related interfaces connect vehicle, upper-body and power-distribution nodes into a traceable state path.

Control architecture

From energy input to actuator output

Traction batteryVoltage platform
Distribution & protectionCircuit organisation
Control coreSoftware & algorithms
Motors & actuatorsMotion output
CAN / I/O state information connects the key nodes

System replacement

Align the replacement path with system conditions

  1. Define boundariesConfirm voltage, peak current, environment and installation conditions.
  2. Align communication and I/OConfirm equipment signals, communication method and actuator interfaces.
  3. Validate the prototypeConfirm control strategy and matching range against the actual duty cycle.

Start a conversation

Bring the technology discussion back to the equipment

Start with the duty cycle, then discuss power, control logic and communication interfaces.

Discuss your project