ATV32HU11N4

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The Schneider ATV32HU11N4 is a high-performance Variable Speed Drive designed to provide efficient and reliable control for both asynchronous and synchronous motors. This 3-phase drive operates within a voltage range of 380 to 500 V and delivers a power output of 1.1 kW. It's equipped with an integrated Class C2 EMC filter and offers an output frequency range of 0.0005 to 0.599 kHz.

The ATV32HU11N4 is part of Schneider's Altivar 32 family, renowned for their compact design and advanced functionality. This drive is particularly suitable for complex machines, offering a wide speed range and high torque accuracy. It also features a removable screw terminal for easy installation and maintenance.

With its robust design and advanced features, the Schneider ATV32HU11N4 Variable Speed Drive is an excellent choice for enhancing the performance and efficiency of your industrial applications.
Specification Description
Part Number ATV32HU11N4
Manufacturer Schneider
Category Inverter Drives
Family Altivar 32
Description The Schneider ATV32HU11N4 is a Variable Speed Drive designed for 3 Phase power supply, with an operating voltage range of 380 to 500 V. It has a power output of 1.1 kW and an output frequency range of 0.0005 to 0.599 kHz.
Country of Origin Not specified
Connection Diagrams The ATV32HU11N4 conforms to standards EN 954-1 category 1 and IEC/EN 61508 capacity SIL1, stopping category 0 in accordance with standard IEC/EN 60204-1.
Product Destination This product is designed for use with Asynchronous and Synchronous motors.
Specific Application The ATV32HU11N4 is ideal for complex machine applications.
Assembly Style The product comes with a heat sink.
EMC Filter The ATV32HU11N4 features a Class C2 EMC filter integrated.
Supply Voltage Limits The supply voltage limits for this product are 323 to 550 V.
Supply Frequency The supply frequency is 50 to 60 Hz, with a tolerance of -5 to 5%.
Network Frequency The network frequency for this product is 47.5 to 63 Hz.
Motor Power kW The motor power for this product is 1.1 kW at 380 to 480 V.
Motor Power hp The motor power for this product is 1.5 hp at 380 to 480 V.
Line Current The line current is 3.8 A at 500 V for 3 phases at 1.1 kW and 1.5 hp, and 5 A at 380 V for 3 phases at 1.1 kW and 1.5 hp.
Apparent Power The apparent power is 3.3 kVA at 500 V for 3 phases at 1.1 kW and 1.5 hp.
Prospective Line Isc The prospective line Isc is <= 5 kA for 3 phases.
Nominal Output Current The nominal output current is 3 A at 4 kHz for 500 V at 1.1 kW and 1.5 hp.
Maximum Transient Current The maximum transient current is 4.5 A for 60 s at 1.1 kW and 1.5 hp.
Output Frequency The output frequency is 0.0005 to 0.599 kHz.
Nominal Switching Frequency The nominal switching frequency is 4 kHz.
Switching Frequency The switching frequency is adjustable from 2 to 16 kHz.
Speed Range The speed range is 1 to 100 for an asynchronous motor in open-loop mode.
Speed Accuracy The speed accuracy is +/- 10% of nominal slip from 0.2 Tn to Tn.
Torque Accuracy The torque accuracy is +/- 15%.
Transient Overtorque The transient overtorque is 170 to 200%.
Braking Torque The braking torque is <= 170% with a braking resistor.
Asynchronous Motor Control Profile The asynchronous motor control profile includes Voltage/frequency ratio, 2 points, Voltage/frequency ratio, 5 points, Flux vector control without sensor - Energy Saving, NoLoad law, Flux vector control without sensor, standard, Voltage/frequency ratio - Energy Saving, quadratic U/f.
Synchronous Motor Control Profile The synchronous motor control profile includes Vector control without sensor

What is the category of this part?

The part falls under the category of Inverter Drives.

What is the part family of this product?

This product is from the Altivar 32 part family.

Can you provide a brief description of this part?

Certainly, this is a Variable Speed Drive, designed for 3 Phase power supply, with an output frequency range of 0.0005 to 0.599 kHz. It operates at a voltage range of 380 to 500 V and has a power capacity of 1.1 kW.

What are the common uses of this part?

This part is typically used for controlling the speed of asynchronous and synchronous motors in complex machines. It's particularly useful in applications where precise speed control is required.

What is the country of origin for this part?

The country of origin for this part is not specified.

What are the key features of this part?

The ATV32HU11N4 has several key features including a Class C2 EMC filter integrated, a supply voltage limit of 323...550 V, and a nominal output current of 3 A at 4 kHz for a 1.1 kW or 1.5 hp motor.

What are the physical dimensions of this part?

The exact physical dimensions of this part are not provided in the available information. For precise measurements, please refer to the manufacturer's datasheet.

What is the operating temperature range for this part?

The part can operate effectively in a temperature range of -10 to 50 degrees Celsius without derating, and 50 to 60 degrees Celsius with a derating factor.

What is the noise level of this part?

The noise level of this part is 43 dB according to the 86/188/EEC standard.

What is the insulation type of this part?

This part has electrical insulation between power and control.

  • Control of asynchronous motors in industrial automation systems
  • Regulation of synchronous motors in complex machinery
  • Implementation of "EMERGENCY STOP" in safety systems
  • Use in machines with a short freewheel stop time (machines with low inertia or high resistive torque)
  • Integration in systems requiring adjustable PID regulation
  • Application in systems requiring high-speed response and precision control
  • Use in systems that require a variable speed drive with a wide output frequency range
  • Integration in systems that require a high level of electromagnetic compatibility
  • Use in systems that require a high level of vibration and shock resistance
  • Application in systems that require a high level of thermal protection
  • Use in systems that require a high level of noise reduction
  • Integration in systems that require a high level of insulation between power and control
  • Use in systems that require a high level of line current and apparent power control
  • Application in systems that require a high level of torque accuracy and control
  • Use in systems that require a high level of speed accuracy and control
  • Integration in systems that require a high level of transient overtorque control
  • Use in systems that require a high level of braking torque control
  • Application in systems that require a high level of speed range control
  • Use in systems that require a high level of acceleration and deceleration ramp control
  • Integration in systems that require a high level of protection against input phase breaks, overcurrent, overheating, and short-circuits between motor phases
  • Use in systems that require a high level of communication port protocol control, including CANopen and Modbus
  • Application in systems that require a high level of discrete input and output control
  • Use in systems that require a high level of analogue input and output control
  • Integration in systems that require a high level of control connection in source mode
  • Use in systems that require a high level of STO (Safe Torque Off) safety function control
  • Application in systems that require a high level of control over the motor slip compensation
  • Use in systems that require a high level of control over the output voltage
  • Integration in systems that require a high level of control over the supply voltage limits and supply frequency
  • Use in systems that require a high level of control over the network frequency
  • Application in systems that require a high level of control over the motor power in kW and hp
  • Use in systems that require a high level of control over the nominal output current and maximum transient current
  • Integration in systems that require a high level of control over the switching frequency
  • Use in systems that require a high level of control over the nominal switching frequency
  • Application in systems that require a high level of control over the asynchronous motor control profile
  • Use in systems that require a high level of control over the synchronous motor control profile
  • Integration in systems that require a high level of control over the regulation loop
  • Use in systems that require a high level of control over the local signalling
  • Application in systems that require a high level of control over the output voltage
  • Use in systems that require a high level of control over the noise level
  • Integration in systems that require a high level of control over the insulation
  • Use in systems that require a high level of control over the electrical connection
  • Application in systems that require a high level of control over the tightening torque
  • Use in systems that require a high level of control over the supply
  • Integration in systems that require a high level of control over the analogue input number and type
  • Use in systems that require a high level of control over the sampling duration
  • Application in systems that require a high level of control over the response time
  • Use in systems that require a high level of control over the accuracy
  • Integration in systems that require a high level of control over the linearity error
  • Use in systems that require a high level of control over the analogue output number and type
  • Application in systems that require a high level of control over the discrete output number and type
  • Use in systems that require a high level of control over the minimum switching current and maximum switching current
  • Integration in systems that require a high level of control over the discrete input number and type
  • Use in systems that require a high level of control over the discrete input logic
  • Application in systems that require a high level of control over the acceleration and deceleration ramps
  • Use in systems that require a high level of control over the braking to standstill
  • Integration in systems that require a high level of control over the protection type
  • Use in systems that require a high level of control over the communication port protocol
  • Application in systems that require a high level of control over the connector type
  • Use in systems that require a high level of control over the physical interface
  • Integration in systems that require a high level of control over the transmission frame
  • Use in systems that require a high level of control over the type of polarization
  • Application in systems that require a high level of control over the number of addresses
  • Use in systems that require a high level of control over the method of access
  • Integration in systems that require a high level of control over the electromagnetic compatibility
  • Use in systems that require a high level of control over the width, height, depth, and product weight
  • Application in systems that require a high level of control over the option card
  • Use in systems that require a high level of control over the functionality
  • Integration in systems that require a high level of control over the specific application
  • Use in systems that require a high level of control over the other applications
  • Application in systems that require a high level of control over the environment
  • Use in systems that require a high level of control over the standards
  • Integration in systems that require a high level of control over the product certifications
  • Use in systems that require a high level of control over the marking
  • Application in systems that require a high level of control over the pollution degree
  • Use in systems that require a high level of control over the IP degree of protection
  • Integration in systems that require a high level of

This content has been produced using multiple sources. EU Automation takes no responsibility for the accuracy of this information. Always consult the original equipment manufacturer for the most up to date instructions and information.

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