• Schneider ATV310HD22N4A Variable Speed ​​Drive
  • Schneider ATV310HD22N4A Variable Speed ​​Drive
  • Schneider ATV310HD22N4A Variable Speed ​​Drive
  • Schneider ATV310HD22N4A Variable Speed ​​Drive
Product Overview Reliable motor control is a key requirement in industrial automation, particularly for machinery that operates continuously or under changing load conditions. The Schneider ATV310HD……
Schneider ATV310HD22N4A Variable Speed ​​Drive
  • Schneider
  • ATV310HD22N4A
  • Variable Speed ​​Drive
  • France
  • 390 x 180 x 212 mm
  • 8.5 kg
  • Xiamen, China
  • New & In Stock
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Schneider ATV310HD22N4A Variable Speed ​​Drive

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Schneider ATV310HD22N4A Variable Speed ​​Drive

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Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Schneider ATV310HD22N4A Variable Speed ​​Drive

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Schneider ATV310HD22N4A Variable Speed ​​Drive

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Product Overview

Reliable motor control is a key requirement in industrial automation, particularly for machinery that operates continuously or under changing load conditions. The Schneider ATV310HD22N4A is an Easy Altivar 310 Variable Speed Drive (VSD) designed to provide adjustable speed and controlled operation for compatible three-phase asynchronous motors.

The ATV310HD22N4A is a higher-power model in the Easy Altivar 310 family and is designed for industrial machine applications requiring dependable motor speed regulation. It is suitable for 22 kW Heavy Duty motor applications and can provide variable-frequency control for compatible three-phase motors supplied from a 380–460 VAC three-phase power system.

The primary purpose of the ATV310HD22N4A is to regulate motor speed by controlling the frequency and voltage supplied to the connected motor. Instead of operating a motor continuously at a fixed speed, the drive allows the motor to accelerate, decelerate, and operate at different speeds according to the machine’s production requirements.

The specified dimensions of the ATV310HD22N4A are 390 × 180 × 212 mm, with an approximate product weight of 8.5 kg. Its larger enclosure accommodates the power components required for higher-power motor control while maintaining a practical format for industrial control cabinets.

The drive supports motor-control functions including U/F control and sensorless vector control. It can also be incorporated into PLC-based automation architectures through industrial communication functions, allowing motor operation and drive status to become part of the overall machine-control system.

With its combination of variable-speed operation, motor protection, adjustable control parameters, and industrial communication capability, the ATV310HD22N4A is suitable for OEM machinery, production equipment, material handling systems, conveyors, pumps, fans, and other industrial applications.


Technical Specifications

Parameter Details
Manufacturer Schneider Electric
Model ATV310HD22N4A
Product Family Easy Altivar 310
Product Type Variable Speed Drive / Frequency Inverter
Application Industrial Machine / Simple Machine
Heavy Duty Motor Power 22 kW
Heavy Duty Horsepower Approximately 30 HP
Input Voltage 380–460 VAC
Input Phase Three-phase
Supply Frequency 50/60 Hz
Output Three-phase AC
Motor Type Three-phase Asynchronous Motor
Control Method U/F and Sensorless Vector Control
Variable Speed Control Yes
Output Frequency Up to 400 Hz
Communication Protocol Modbus RTU
Communication Interface 2-wire RS-485
Communication Connector RJ45
Cooling Forced-Air Cooling
Protection Rating IP20
Mounting Panel / Wall Mount
Installation Industrial Control Cabinet
Dimensions 390 × 180 × 212 mm
Weight 8.5 kg
Typical Applications Conveyors, Material Handling, Pumps, Fans, Processing Machinery
Intended Environment Industrial Automation

Function and Working Principle

The main function of the Schneider ATV310HD22N4A is to control the speed, acceleration, deceleration, and operating characteristics of a compatible three-phase asynchronous motor.

A conventional motor connected directly to a fixed-frequency power source generally operates at a speed determined by the supply frequency and motor design. A variable speed drive introduces electronic power conversion between the incoming electrical supply and the motor.

The ATV310HD22N4A can adjust the output frequency and voltage according to the required operating condition.

The basic power-conversion process can be represented as:

Three-Phase AC Input → Rectifier → DC Link → Inverter → Variable-Frequency AC Output → Three-Phase Motor

The drive converts the incoming electrical power into a controlled output that can be adjusted according to the motor-control parameters.

This allows the drive to provide:

  • Variable motor speed
  • Controlled acceleration
  • Controlled deceleration
  • Adjustable motor frequency
  • Controlled starting
  • Controlled stopping
  • Torque regulation
  • Motor protection
  • Fault monitoring
  • Communication with automation controllers

The ATV310HD22N4A supports U/F control and sensorless vector control.

U/F control is suitable for straightforward motor applications where the relationship between voltage and frequency is used to control the motor.

Sensorless vector control can provide more advanced motor-control performance without requiring a physical speed sensor mounted on the motor.

The drive also provides protective and monitoring functions designed to help identify abnormal operating conditions.

These can include:

  • Motor overload protection
  • Overcurrent protection
  • Overvoltage protection
  • Undervoltage protection
  • Motor thermal protection
  • Drive thermal protection
  • Motor phase monitoring
  • Input phase monitoring
  • Fault detection
  • Alarm monitoring

For example, in a heavy-duty conveyor application, the PLC may issue a start command and speed reference to the drive. The ATV310HD22N4A then gradually increases the motor frequency according to the configured acceleration ramp.

During normal production, the PLC can change the speed reference when required. During shutdown, the drive can reduce the motor frequency according to the configured deceleration characteristics.

This provides considerably more flexible motor control than direct fixed-speed operation.


Role in Industrial Control Systems

The ATV310HD22N4A functions as the power-control interface between the automation controller and a higher-power three-phase motor.

A typical industrial automation system may include:

  • Schneider Modicon PLC
  • Schneider HMI
  • ATV310HD22N4A Variable Speed Drive
  • Three-phase asynchronous motor
  • Motor circuit breaker
  • Magnetic contactor
  • Proximity sensors
  • Pressure sensors
  • Temperature sensors
  • Remote I/O modules
  • Modbus communication network
  • Industrial communication gateway
  • SCADA system
  • Emergency stop circuit

The PLC processes information from field sensors and operator interfaces and determines the appropriate motor operating condition.

The ATV310HD22N4A receives the control commands and converts them into controlled motor operation.

Through Modbus RTU communication, the drive can exchange information with a compatible PLC or other automation controller.

Depending on the control architecture, the system can monitor:

  • Drive operating status
  • Motor frequency
  • Speed reference
  • Fault conditions
  • Alarm information
  • Communication status
  • Operating parameters

This integration allows the variable speed drive to become an active part of the machine’s control strategy.


Industrial Applications

The Schneider ATV310HD22N4A is suitable for industrial machinery requiring higher-power variable-speed motor control.

Typical applications include:

  • Industrial conveyor systems
  • Material handling equipment
  • Packaging machinery
  • Processing machinery
  • Industrial pumps
  • Industrial fans
  • Ventilation systems
  • Textile machinery
  • Printing equipment
  • Production-line machinery
  • Assembly equipment
  • Machine tools
  • Woodworking machinery
  • Ceramic machinery
  • OEM industrial equipment

Conveyor Systems

Conveyor systems often require controlled acceleration and deceleration, especially when large mechanical loads are involved.

The ATV310HD22N4A can regulate motor speed according to production requirements and provide controlled starting and stopping.

Variable-speed operation can also help synchronize different conveyor sections within a production line.

Material Handling

Material-handling equipment may use higher-power motors to drive conveyors, rollers, feeders, and other mechanical systems.

The drive provides electronic speed control that can be coordinated with PLC logic and field sensors.

Industrial Pumping

For suitable pump applications, the motor speed can be adjusted according to process requirements.

A PLC can provide a speed reference based on pressure, flow, level, or other process information.

Industrial Fans

The ATV310HD22N4A can control compatible industrial fan motors where variable airflow is required.

The motor does not necessarily need to operate at maximum speed continuously, allowing the machine control system to adjust fan operation according to process requirements.

Processing Machinery

Processing equipment may require different motor speeds during different stages of production.

The drive provides adjustable frequency control that can be incorporated into the machine’s overall automation sequence.


Installation and System Integration

Correct installation is important for achieving reliable operation of the ATV310HD22N4A.

Recommended installation practices include:

  • Install the drive inside a suitable industrial electrical cabinet.
  • Mount the drive in the recommended vertical orientation.
  • Provide sufficient ventilation around the enclosure.
  • Maintain appropriate clearance for heat dissipation.
  • Verify the incoming three-phase supply voltage before energizing.
  • Connect protective grounding correctly.
  • Select appropriately rated input cables.
  • Select appropriately rated motor cables.
  • Keep power wiring separated from sensitive control wiring where practical.
  • Verify motor nameplate information.
  • Configure the motor parameters correctly.
  • Select the appropriate control mode.
  • Configure acceleration and deceleration ramps.
  • Verify motor rotation during commissioning.
  • Configure Modbus parameters when network communication is required.
  • Check drive alarms and fault conditions before production operation.
  • Perform a low-speed test before applying full load.

The ATV310HD22N4A is designed for a three-phase 380–460 VAC supply, so the incoming electrical system should be verified carefully before energization.

Motor parameters should correspond to the actual connected motor.

Important parameters can include:

  • Motor rated voltage
  • Motor rated current
  • Motor rated frequency
  • Motor rated speed
  • Motor power
  • Minimum frequency
  • Maximum frequency
  • Acceleration time
  • Deceleration time

Incorrect parameter settings can lead to excessive current, unstable motor operation, poor torque performance, or unnecessary protective trips.

Because the ATV310HD22N4A is a higher-power drive, cabinet thermal design should also be considered. Adequate airflow and sufficient installation clearance can help maintain acceptable operating temperatures.


Compatible System Components

The ATV310HD22N4A can be incorporated into a Schneider-based industrial automation system together with standard motor-control equipment.

Typical associated components include:

  • Schneider Modicon PLC
  • Schneider HMI
  • Easy Altivar 310 series drives
  • Modbus RTU devices
  • RS-485 communication equipment
  • Industrial communication gateways
  • Motor circuit breakers
  • Magnetic contactors
  • Three-phase asynchronous motors
  • Remote I/O modules
  • Proximity sensors
  • Pressure transmitters
  • Temperature sensors
  • Emergency stop devices
  • Industrial control cabinets
  • SCADA systems

A typical automation architecture can be represented as:

Field Sensors → PLC → ATV310HD22N4A → Three-Phase Motor → Mechanical Equipment

The field sensors collect process information.

The PLC processes this information and determines the required motor operating condition.

The ATV310HD22N4A receives the relevant control command and regulates motor speed and torque.

The HMI can provide operators with access to selected operating parameters, drive status, alarms, and diagnostic information.


Recommended Alternative Models

Depending on motor power, duty requirements, load characteristics, supply voltage, and control architecture, the following models may also be considered:

Model Type Key Feature Application
ATV310HD11N4E Variable Speed Drive 11 kW Heavy Duty Industrial conveyors and machinery
ATV310HD15N4E Variable Speed Drive 15 kW Heavy Duty Higher-power machine applications
ATV310HD18N4E Variable Speed Drive 18.5 kW Heavy Duty Industrial motor control
ATV310HD22N4A Variable Speed Drive 22 kW Heavy Duty High-power machine applications
ATV310HD30N4E Variable Speed Drive 30 kW Heavy Duty Larger industrial machinery
ATV320D22N4C Variable Speed Drive Advanced motor-control platform Demanding automation systems
ATV630D22N4 Variable Speed Drive Process-oriented drive platform Pumps, fans and process equipment

The correct alternative should be selected according to the actual application rather than motor power alone.

Important selection factors include:

  • Motor rated current
  • Motor rated power
  • Supply voltage
  • Load characteristics
  • Duty cycle
  • Overload requirements
  • Starting requirements
  • Communication requirements
  • Installation dimensions
  • Cooling requirements
  • Environmental conditions

A similar kW rating does not necessarily mean that two drives are directly interchangeable.


Key Advantages

  • Easy Altivar 310 variable speed drive
  • Designed for higher-power industrial machinery
  • 22 kW Heavy Duty motor capacity
  • Approximately 30 HP motor rating
  • Three-phase 380–460 VAC input
  • Designed for three-phase asynchronous motors
  • Variable-frequency motor speed control
  • U/F control
  • Sensorless vector control
  • Adjustable acceleration
  • Adjustable deceleration
  • Controlled motor starting
  • Controlled motor stopping
  • Motor overload protection
  • Overcurrent protection
  • Overvoltage protection
  • Undervoltage protection
  • Motor thermal protection
  • Fault monitoring
  • Modbus RTU communication
  • Two-wire RS-485 interface
  • RJ45 communication connector
  • Forced-air cooling
  • IP20 protection
  • Industrial cabinet installation
  • Dimensions of 390 × 180 × 212 mm
  • Weight of approximately 8.5 kg
  • Suitable for conveyor systems
  • Suitable for material handling
  • Suitable for pumps
  • Suitable for industrial fans
  • Suitable for packaging machinery
  • Suitable for processing equipment
  • Suitable for OEM machine applications

Technical FAQs

What is the Schneider ATV310HD22N4A?

The Schneider ATV310HD22N4A is an Easy Altivar 310 Variable Speed Drive designed to provide variable-speed control for compatible three-phase asynchronous motors in industrial machinery.

What is the rated motor power?

The ATV310HD22N4A is designed for 22 kW Heavy Duty motor applications, equivalent to approximately 30 HP.

What input voltage does the ATV310HD22N4A use?

The drive is designed for a three-phase 380–460 VAC power supply.

What are the dimensions of the ATV310HD22N4A?

The specified dimensions are 390 × 180 × 212 mm.

How much does the ATV310HD22N4A weigh?

The specified product weight is approximately 8.5 kg.

What type of motor can it control?

The ATV310HD22N4A is designed for compatible three-phase asynchronous AC motors within the applicable electrical and operating ratings.

Does the ATV310HD22N4A support Modbus communication?

Yes. The drive supports Modbus RTU communication through a two-wire RS-485 interface.

Does the drive support sensorless vector control?

Yes. The ATV310HD22N4A supports U/F and sensorless vector control.

What are typical applications for the ATV310HD22N4A?

Typical applications include industrial conveyors, material handling systems, pumps, fans, packaging machinery, processing equipment, production-line machinery, textile equipment, and other industrial motor-driven machines.

Can the ATV310HD22N4A be integrated with a PLC?

Yes. The drive can be incorporated into PLC-based automation systems through Modbus communication or appropriate control interfaces.

What is the protection rating?

The ATV310HD22N4A is specified with an IP20 protection rating.

Why use a variable speed drive for a 22 kW motor?

A variable speed drive provides adjustable motor speed, controlled acceleration and deceleration, smoother starting and stopping, and flexible coordination between the motor and the machine automation system.

What should be checked before replacing an ATV310HD22N4A?

The replacement should be checked against the motor’s rated current and power, input voltage, duty requirements, overload capability, control method, communication functions, physical dimensions, cooling requirements, and environmental conditions.


Conclusion

The Schneider ATV310HD22N4A Variable Speed Drive is a higher-power Easy Altivar 310 solution designed to provide reliable variable-speed control for three-phase asynchronous motors in industrial machinery.

With a 22 kW / approximately 30 HP Heavy Duty rating, the drive is suitable for applications requiring greater motor capacity than smaller ATV310 models. Its three-phase 380–460 VAC input, variable-frequency operation, U/F and sensorless vector control, motor protection functions, and Modbus RTU communication make it suitable for integration into PLC-based industrial automation systems.

The ATV310HD22N4A has specified dimensions of 390 × 180 × 212 mm and a weight of approximately 8.5 kg, providing a practical installation format for higher-power industrial machine applications.

When combined with Schneider PLCs, HMIs, sensors, motor protection equipment, communication networks, and compatible three-phase motors, the ATV310HD22N4A can provide a reliable motor-control solution for conveyors, material handling systems, pumps, industrial fans, packaging machinery, processing equipment, and other industrial automation applications.



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