Schneider ATV320U30N4C ATV | Variable speed drive, ATV320, 3 kW, 380…500 V, 3 phases, compact
Schneider ATV320U30N4C ATV
Description
Schneider ATV320U30N4C ATV: Revolutionizing Industrial Automation
In the realm of industrial automation, it stands out as a formidable solution for efficient and precise motor control. Packed with advanced features and cutting-edge technology, this variable frequency drive (VFD) offers unparalleled performance and reliability.
Understanding the Features of Schneider ATV320U30N4C ATV
Variable Frequency Drive (VFD) Technology
At the heart of it lies its VFD technology, which allows for seamless control of motor speed and torque. This enables users to optimize energy consumption, reduce wear and tear on machinery, and enhance overall system efficiency.
Compact Design
Despite its powerful capabilities, it boasts a compact and space-saving design, making it ideal for installations where space is limited. Its sleek form factor ensures easy integration into existing setups without compromising performance.
User-Friendly Interface
Navigating the features and settings of it is a breeze thanks to its intuitive user interface. With clear displays and straightforward controls, operators can quickly configure the drive to meet their specific requirements, saving time and minimizing errors.
Energy Efficiency
One of the standout features of it is its focus on energy efficiency. By precisely regulating motor speed, it helps organizations reduce their energy consumption and carbon footprint, leading to significant cost savings and environmental benefits.
Applications
The versatility of it makes it suitable for a wide range of applications across various industries:
- Industrial Machinery: From conveyors to pumps, it ensures smooth and reliable operation of industrial machinery.
- HVAC Systems: In heating, ventilation, and air conditioning (HVAC) systems, it helps maintain optimal environmental conditions while minimizing energy consumption.
- Water Treatment Plants: The precise control capabilities of it make it an indispensable component in water treatment plants, ensuring efficient water distribution and treatment processes.
- Elevators and Escalators: In urban infrastructure projects, it plays a crucial role in the safe and efficient operation of elevators and escalators.
Advantages of Using
Improved Control
With its advanced control algorithms and high-resolution feedback, it offers unparalleled precision and responsiveness, allowing for fine-tuned motor control in a wide range of applications.
Cost Savings
By optimizing energy consumption, reducing maintenance costs, and minimizing downtime, it delivers significant cost savings over its lifespan, making it a wise investment for businesses seeking to improve their bottom line.
Enhanced Performance
Whether it’s achieving higher throughput, improving system reliability, or meeting stringent performance requirements, it consistently delivers superior performance in diverse industrial settings.
Installation and Setup Process
Installing and setting up it is a straightforward process that can be completed in a few simple steps:
- Mounting: Securely mount the drive in a suitable location, ensuring proper ventilation and accessibility for maintenance.
- Wiring: Connect the drive to the motor, power supply, and control devices according to the provided wiring diagram, ensuring proper grounding and insulation.
- Configuration: Use the intuitive interface to configure the drive settings to match the requirements of the application, adjusting parameters such as motor speed, acceleration, and deceleration.
Maintenance and Troubleshooting Tips
To ensure optimal performance and reliability, follow these maintenance and troubleshooting tips:
- Regular Inspections: Periodically inspect the drive for signs of wear, damage, or overheating, and address any issues promptly to prevent downtime.
- Firmware Updates: Stay up-to-date with the latest firmware updates to benefit from performance enhancements and bug fixes.
- Common Issues and Solutions: Familiarize yourself with common issues such as overvoltage, overcurrent, and motor faults, and follow the recommended troubleshooting steps to resolve them quickly.
Additional information
| brands | Schneider Electric |
|---|
Specifications
| Range of product | Altivar Machine ATV320 |
|---|---|
| Product or component type | Variable speed drive |
| Product specific application | Complex machines |
| Variant | Standard version |
| Format of the drive | Compact |
| Mounting mode | Wall mount |
| Communication port protocol | Modbus serial CANopen |
| Option card | Communication module, CANopen Communication module, EtherCAT Communication module, Profibus DP V1 Communication module, PROFINET Communication module, Ethernet Powerlink Communication module, EtherNet/IP Communication module, DeviceNet |
| [Us] rated supply voltage | 380...500 V - 15...10 % |
| Nominal output current | 7.1 A |
| Motor power kW | 3.0 kW for heavy duty |
| EMC filter | Class C2 EMC filter integrated |
| IP degree of protection | IP20 |
| Discrete input number | 7 |
|---|---|
| Discrete input type | STO safe torque off, 24 V DC, impedance: 1.5 kOhm DI1...DI6 logic inputs, 24 V DC (30 V) DI5 programmable as pulse input: 0…30 kHz, 24 V DC (30 V) |
| Discrete input logic | Positive logic (source) Negative logic (sink) |
| Discrete output number | 3 |
| Discrete output type | Open collector DQ+ 0…1 kHz 30 V DC 100 mA Open collector DQ- 0…1 kHz 30 V DC 100 mA |
| Analogue input number | 3 |
| Analogue input type | AI1 voltage: 0...10 V DC, impedance: 30 kOhm, resolution 10 bits AI2 bipolar differential voltage: +/- 10 V DC, impedance: 30 kOhm, resolution 10 bits AI3 current: 0...20 mA (or 4-20 mA, x-20 mA, 20-x mA or other patterns by configuration), impedance: 250 Ohm, resolution 10 bits |
| Analogue output number | 1 |
| Analogue output type | Software-configurable current AQ1: 0...20 mA impedance 800 Ohm, resolution 10 bits Software-configurable voltage AQ1: 0...10 V DC impedance 470 Ohm, resolution 10 bits |
| Relay output type | Configurable relay logic R1A 1 NO electrical durability 100000 cycles Configurable relay logic R1B 1 NC electrical durability 100000 cycles Configurable relay logic R1C Configurable relay logic R2A 1 NO electrical durability 100000 cycles Configurable relay logic R2C |
| Maximum switching current | Relay output R1A, R1B, R1C on resistive load, cos phi = 1: 3 A at 250 V AC Relay output R1A, R1B, R1C on resistive load, cos phi = 1: 3 A at 30 V DC Relay output R1A, R1B, R1C, R2A, R2C on inductive load, cos phi = 0.4 and L/R = 7 ms: 2 A at 250 V AC Relay output R1A, R1B, R1C, R2A, R2C on inductive load, cos phi = 0.4 and L/R = 7 ms: 2 A at 30 V DC Relay output R2A, R2C on resistive load, cos phi = 1: 5 A at 250 V AC Relay output R2A, R2C on resistive load, cos phi = 1: 5 A at 30 V DC |
| Minimum switching current | Relay output R1A, R1B, R1C, R2A, R2C: 5 mA at 24 V DC |
| Method of access | Slave CANopen |
| 4 quadrant operation possible | True |
| Asynchronous motor control profile | Voltage/frequency ratio, 5 points Flux vector control without sensor, standard Voltage/frequency ratio - Energy Saving, quadratic U/f Flux vector control without sensor - Energy Saving Voltage/frequency ratio, 2 points |
| Synchronous motor control profile | Vector control without sensor |
| Transient overtorque | 170…200 % of nominal motor torque |
| Maximum output frequency | 0.599 kHz |
| Acceleration and deceleration ramps | Linear U S CUS Ramp switching Acceleration/deceleration ramp adaptation Acceleration/deceleration automatic stop with DC injection |
| Motor slip compensation | Automatic whatever the load Adjustable 0...300 % Not available in voltage/frequency ratio (2 or 5 points) |
| Switching frequency | 2...16 kHz adjustable 4...16 kHz with derating factor |
| Nominal switching frequency | 4 kHz |
| Braking to standstill | By DC injection |
| Brake chopper integrated | True |
| Line current | 11.1 A at 380 V (heavy duty) 8.4 A at 500 V (heavy duty) |
| Maximum input current | 11.1 A |
| Maximum output voltage | 500 V |
| Apparent power | 7.3 kVA at 500 V (heavy duty) |
| Network frequency | 50...60 Hz |
| Relative symmetric network frequency tolerance | 5 % |
| Prospective line Isc | 5 kA |
| Base load current at high overload | 7.1 A |
| Power dissipation in W | Fan: 93.0 W at 380 V, switching frequency 4 kHz |
| With safety function Safely Limited Speed (SLS) | True |
| With safety function Safe brake management (SBC/SBT) | False |
| With safety function Safe Operating Stop (SOS) | False |
| With safety function Safe Position (SP) | False |
| With safety function Safe programmable logic | False |
| With safety function Safe Speed Monitor (SSM) | False |
| With safety function Safe Stop 1 (SS1) | True |
| With sft fct Safe Stop 2 (SS2) | False |
| With safety function Safe torque off (STO) | True |
| With safety function Safely Limited Position (SLP) | False |
| With safety function Safe Direction (SDI) | False |
| Protection type | Input phase breaks: drive Overcurrent between output phases and earth: drive Overheating protection: drive Short-circuit between motor phases: drive Thermal protection: drive |
| Width | 140 mm |
| Height | 184.0 mm |
| Depth | 158.0 mm |
| Net weight | 2.1 kg |
| Operating position | Vertical +/- 10 degree |
|---|---|
| Product certifications | CE ATEX NOM GOST EAC RCM KC |
| Marking | CE ATEX UL CSA EAC RCM |
| Standards | IEC 61800-5-1 |
| Electromagnetic compatibility | Electrostatic discharge immunity test level 3 conforming to IEC 61000-4-2 Radiated radio-frequency electromagnetic field immunity test level 3 conforming to IEC 61000-4-3 Electrical fast transient/burst immunity test level 4 conforming to IEC 61000-4-4 1.2/50 µs - 8/20 µs surge immunity test level 3 conforming to IEC 61000-4-5 Conducted radio-frequency immunity test level 3 conforming to IEC 61000-4-6 Voltage dips and interruptions immunity test conforming to IEC 61000-4-11 |
| Environmental class (during operation) | Class 3C3 according to IEC 60721-3-3 Class 3S2 according to IEC 60721-3-3 |
| Maximum acceleration under shock impact (during operation) | 150 m/s² at 11 ms |
| Maximum acceleration under vibrational stress (during operation) | 10 m/s² at 13...200 Hz |
| Maximum deflection under vibratory load (during operation) | 1.5 mm at 2...13 Hz |
| Permitted relative humidity (during operation) | Class 3K5 according to EN 60721-3 |
| Volume of cooling air | 37.7 m3/h |
| Overvoltage category | III |
| Regulation loop | Adjustable PID regulator |
| Speed accuracy | +/- 10 % of nominal slip 0.2 Tn to Tn |
| Pollution degree | 2 |
| Ambient air transport temperature | -25…70 °C |
| Ambient air temperature for operation | -10…50 °C without derating 50…60 °C with derating factor |
| Ambient air temperature for storage | -25…70 °C |
| Unit Type of Package 1 | PCE |
|---|---|
| Number of Units in Package 1 | 1 |
| Package 1 Height | 19.300 cm |
| Package 1 Width | 27.000 cm |
| Package 1 Length | 24.500 cm |
| Package 1 Weight | 2.698 kg |
| Unit Type of Package 2 | S06 |
| Number of Units in Package 2 | 12 |
| Package 2 Height | 75.000 cm |
| Package 2 Width | 60.000 cm |
| Package 2 Length | 80.000 cm |
| Package 2 Weight | 45.640 kg |
Reviews
There are no reviews yet.