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The Schneider ATV930C25N4C Altivar Process ATV930 Variable Speed Drive is an industrial AC drive used to regulate the operating speed and torque of motor-driven equipment. It belongs to the Altivar Process ATV930 family and is intended for applications where motor control needs to be coordinated with process requirements and the wider automation system.
The drive manages the electrical output supplied to a compatible motor, allowing machinery to operate at controlled speeds rather than relying only on fixed-speed operation. This makes the ATV930C25N4C suitable for process equipment with changing flow, pressure, airflow, or material-handling requirements.
In an industrial installation, the drive typically works together with a motor, electrical protection equipment, PLC or DCS, and process instrumentation. Its role extends beyond basic speed adjustment because drive status, alarms, commands, and process feedback can form part of the overall control strategy.
| Parameter | Specification |
|---|---|
| Manufacturer | Schneider Electric |
| Model | ATV930C25N4C |
| Product Family | Altivar Process ATV930 |
| Product Type | Variable Speed Drive |
| Primary Function | AC Motor Speed and Torque Control |
| System Role | Motor Drive / Process Control |
| Application | Industrial Automation / Process Equipment |
| Dimensions | 1195 × 380 × 598 mm |
| Weight | 203 kg |
The ATV930C25N4C is intended for large industrial motor-control systems where variable-speed operation and process coordination are required.
Key characteristics include:
With a listed weight of 203 kg, the drive also requires appropriate mechanical support and handling arrangements during installation and servicing.
The ATV930C25N4C controls motor operation by regulating the electrical power delivered to the connected AC motor.
A simplified arrangement is:
AC Power → ATV930C25N4C → AC Motor → Mechanical Load
The drive receives electrical power from the incoming supply and produces a controlled motor output. By adjusting the electrical operating conditions supplied to the motor, the drive can regulate motor speed and torque according to the application requirement.
For example, in a pumping system, process demand may vary throughout the day. Instead of keeping the motor at a constant maximum speed, the drive can adjust motor operation to match the required process condition.
The drive can also exchange commands, operating status, alarm information, and other relevant data with the plant automation system, allowing motor control to be coordinated with process logic.
The ATV930C25N4C sits between the electrical power system and the motor-driven process equipment.
Incoming Power → ATV930C25N4C → Motor → Process Equipment
The control relationship can be represented as:
PLC / DCS → Drive → Motor → Process → Sensors → PLC / DCS
| System Layer | Typical Component | Function |
|---|---|---|
| Electrical Supply | AC Power System | Supplies drive input power |
| Drive Layer | ATV930C25N4C | Regulates motor operation |
| Motor Layer | AC Motor | Produces mechanical power |
| Equipment Layer | Pump / Fan / Compressor | Performs process work |
| Instrumentation | Pressure / Flow / Process Sensors | Provides process feedback |
| Control Layer | PLC / DCS | Executes process control logic |
| Operator Layer | HMI / SCADA | Provides monitoring and operator interaction |
This arrangement allows the drive to handle motor-control functions while the PLC or DCS manages the broader process sequence.
The ATV930C25N4C is suitable for large motor-driven systems where variable-speed operation can improve process control.
| Application | Typical Use |
|---|---|
| Water Pumping | Flow and pressure regulation |
| Wastewater Treatment | Pump and process equipment control |
| Industrial Fans | Airflow regulation |
| HVAC Equipment | Variable-speed fan operation |
| Compressors | Capacity and process control |
| Conveyors | Controlled material transport |
| Process Plants | Continuous-duty motor control |
| Manufacturing Machinery | Adjustable-speed production equipment |
For pumps and fans in particular, matching motor speed to actual process demand can be more effective than continuously operating equipment at a fixed speed.
The physical size and weight of the ATV930C25N4C should be considered before installation.
Recommended procedures include:
Because the listed unit weighs 203 kg, mechanical handling should be planned as part of the installation procedure rather than treated as a routine cabinet component.
The ATV930C25N4C works within a complete electrical and automation system.
| Component | Function |
|---|---|
| AC Power Supply | Provides electrical input |
| ATV930C25N4C | Controls motor speed and torque |
| AC Motor | Converts electrical power into mechanical power |
| Motor Cable | Connects drive output to motor |
| Circuit Protection | Protects the electrical installation |
| PLC / DCS | Provides control commands |
| HMI / SCADA | Displays operating information |
| Process Sensors | Provide process feedback |
| Pump / Fan / Compressor | Performs the required process function |
| Communication Interface | Exchanges drive and system data |
Correct coordination between these components is important for stable motor operation and reliable process control.
| Model / Product Family | Product Type | Typical Application |
|---|---|---|
| Schneider ATV930C25N4C | Altivar Process ATV930 Variable Speed Drive | Large industrial motor control |
| Schneider ATV930C25N4 | Altivar Process ATV930 Variable Speed Drive | High-power process applications |
| Schneider ATV930C22N4 | Altivar Process ATV930 Variable Speed Drive | Large motor-driven equipment |
| Schneider ATV930C16N4 | Altivar Process ATV930 Variable Speed Drive | Industrial variable-speed control |
| Schneider ATV930C13N4 | Altivar Process ATV930 Variable Speed Drive | Industrial motor applications |
When selecting a replacement, engineers should verify the complete drive designation, motor requirements, supply conditions, control architecture, installation arrangement, and application load.
Its primary function is to control the operation of a compatible AC motor by regulating its electrical output. The drive allows motor speed and operating behavior to be adjusted according to the requirements of the connected process equipment.
Process equipment such as pumps, fans, and compressors frequently operates under changing demand. Variable-speed control allows the motor to respond to these changes instead of remaining at one fixed operating point, which can improve process regulation.
Depending on the installed architecture and communication configuration, the drive can exchange operating commands, status information, alarms, and relevant operating data with a PLC, DCS, HMI, or SCADA system.
Electrical supply, motor compatibility, grounding, cable routing, ventilation, heat dissipation, mounting structure, service access, and mechanical handling all need to be considered. The listed 203 kg weight makes lifting and structural support particularly important during installation.