ATV320U40N4B

variable speed drive, ATV320, 4 kW, 380…500 V, 3 phases, book

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ATV320U40N4B

variable speed drive, ATV320, 4 kW, 380…500 V, 3 phases, book

SKU
ATV320U40N4B
EGP23,963.50
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variable speed drive, ATV320, 4 kW, 380…500 V, 3 phases, book

EGP23,963.50

Description

This Altivar 320 variable speed drive can feed 3-phase synchronous and asynchronous motors. Its book form factor allows for a simple and compact installation in your automation cabinets. It works at a rated power up to 4kW / 5hp and a rated voltage from 380V to 500V AC. Its robust design with IEC 60721-3-3 class 3C3 coated printed circuit boards allows to extend machine availability in harsh environmental conditions, for example at ambient temperatures of up to 60°C without the need of additional cooling. It incorporates functions suitable for the most common applications, including torque and speed accuracy at very low speed, high dynamic performance with flux vector control without sensor and extended frequency range for high-speed motors. It also incorporates parallel connection of motors and special drives using the voltage/frequency ratio and static speed accuracy and energy saving for open-loop synchronous motors. The drive software includes 5 safety functions that help machines meet safety requirements, whether or not they are used in conjunction with a Preventa safety module. These safety functions are configured using SoMove software. Altivar Machine ATV320 was designed for Original Equipment Manufacturers (OEMs) that meets simple and advanced application requirements covered for packaging, material handling, textile, material working, mechanical actuators and hoisting. It conforms to international standards IEC/EN 61800-5-1 and IEC/EN 61800-3 (immunity and conducted and radiated EMC emissions). It is also CE, UL, CSA, NOM, EAC and RCM certified. Mounting accessories and external options (braking resistors, line chokes, motor chokes, additional EMC filters) are available with Altivar Machine ATV320 drives. The type of external accessories and options depends on the drive rating. It is designed to be mounted in vertical position (+/- 10 °) on a panel, thanks to 4 fixing holes. It is fully integrated inside Schneider Electric’s EcoStruxure Machine through DTM. It is possible to configure, control, and diagnose ATV320 drives directly in SoMachine and SoMove software by means of the same software brick (DTM).

Product details

  • [us] Rated Supply Voltage
    380...500 V
  • Ambient Air Temperature for Operation
    -10-60 °C
  • Ambient Air Temperature for Storage
    -25-70 °C
  • Depth
    245.0 mm
  • Electromagnetic Compatibility
    electrostatic discharge immunity test level 3 conforming to IEC 61000-4-2
  • Height
    325.0 mm
  • Ip Degree of Protection
    IP20
  • Marking
    CE
  • Mounting Mode
    cabinet mount
  • Nema Degree of Protection
    not applicable
  • Net Weight
    3.0 kg
  • Network Frequency
    50...60 Hz
  • Network Number of Phases
    3 phases
  • Operating Position
    vertical +/- 10 degree
  • Overvoltage Category
    III
  • Pollution Degree
    2
  • Power Dissipation In W
    fan: 111 W at 380 V, switching frequency 4 kHz
  • Product Certifications
    CE
  • Product or Component Type
    variable speed drive
  • Product Specific Application
    complex machines
  • Protection Type
    input phase breaks: drive
  • Range of Product
    Altivar Machine ATV320
  • Standards
    EN/IEC 61800-5-1
  • Width
    60 mm
  • 1 Phase Low Current Possible
    false
  • 4 Quadrant Operation Possible
    true
  • Acceleration and Deceleration Ramps
    linear
  • Accuracy
    +/- 0.7 % AI1, AI2, AI3 for a temperature of -10...60 °C analog input
  • Ambient Air Transport Temperature
    -25-70 °C
  • Analogue Input Number
    3
  • Analogue Input Type
    AI1 voltage: 0...10 V DC, impedance: 30 kOhm, resolution 10 bits
  • Analogue Output Number
    1
  • Analogue Output Type
    software-configurable current AQ1: 0...20 mA impedance 800 Ohm, resolution 10 bits
  • Apparent Power
    9.1 kVA at 500 V (heavy duty)
  • Application in Domestic and Commercial Area Permitted
    false
  • Application in Industrial Area Permitted
    true
  • Asynchronous Motor Control Profile
    voltage/frequency ratio, 5 points
  • Base Load Current at High Overload
    9.5 A
  • Brake Chopper Integrated
    true
  • Braking to Standstill
    by DC injection
  • Capacity of Dc Link
    560 µF
  • Communication Port Protocol
    Modbus serial
  • Computer Port
    true
  • Design of Frequency Changer
    U converter
  • Discrete Input Logic
    positive logic (source)
  • Discrete Input Number
    7
  • Discrete Input Type
    STO safe torque off, 24 V DC, impedance: 1.5 kOhm
  • Discrete Output Number
    3
  • Discrete Output Type
    open collector DQ+ 0-1 kHz 30 V DC 100 mA
  • Emc Filter
    Class C2 EMC filter integrated
  • Emc Limit Value (complied)
    true
  • Encoder Protocol
    RS 422
  • Environmental Class (during Operation)
    class 3C3 according to IEC 60721-3-3
  • Environmental Class (during Storage)
    class 1C3 according to EN 60721-3
  • Environmental Class (during Transport)
    class 2C3 according to EN 60721-3
  • Format of the Drive
    book
  • Housing Material
    plastic
  • Line Current
    13.7 A at 380 V (heavy duty)
  • Linearity Error
    AI1, AI2, AI3: +/- 0.2...0.5 % of maximum value for analog input
  • Maximum Acceleration Under Shock Impact (during Operation)
    150 m/s² at 11 ms
  • Maximum Acceleration Under Shock Load (during Storage)
    150 m/s² at 11 ms
  • Maximum Acceleration Under Shock Load (during Transport)
    150 m/s² at 11 ms
  • Maximum Acceleration Under Vibrational Stress (during Operation)
    10 m/s² at 13...200 Hz
  • Maximum Acceleration Under Vibratory Load (during Storage)
    10 m/s² at 13...200 Hz
  • Maximum Acceleration Under Vibratory Load (during Transport)
    10 m/s² at 13...200 Hz
  • Maximum Associated Fuse Rating
    25.0 A
  • Maximum Deflection Under Vibratory Load (during Operation)
    1.5 mm at 2...13 Hz
  • Maximum Deflection Under Vibratory Load (during Storage)
    3.5 mm at 2...13 Hz
  • Maximum Deflection Under Vibratory Load (during Transport)
    3.5 mm at 2...13 Hz
  • Maximum Input Current
    13.7 A
  • Maximum Output Frequency
    0.599 kHz
  • Maximum Output Voltage
    500 V
  • Maximum Switching Current
    relay output R1A, R1B, R1C on resistive load, cos phi = 1 : 3 A at 250 V AC
  • Method of Access
    slave CANopen
  • Minimum Switching Current
    relay output R1A, R1B, R1C, R2A, R2C: 5 mA at 24 V DC
  • Motor Power Kw
    4.0 kW for heavy duty
  • Motor Slip Compensation
    automatic whatever the load
  • Nominal Output Current
    9.5 A
  • Nominal Output Power
    4.0 kW
  • Nominal Switching Frequency
    4 kHz
  • Number of Hw Interfaces Industrial Ethernet
    0.0
  • Number of Hw Interfaces Other
    1.0
  • Number of Hw Interfaces Parallel
    0.0
  • Number of Hw Interfaces Profinet
    0.0
  • Number of Hw Interfaces Serial Rs232
    0.0
  • Number of Hw Interfaces Serial Rs422
    0.0
  • Number of Hw Interfaces Serial Rs485
    1.0
  • Number of Hw Interfaces Serial Tty
    0.0
  • Number of Hw Interfaces Usb
    0.0
  • Number of Input Phases
    3
  • Number of Output Phases
    3
  • Operating Element Present
    true
  • Optical Interface Present
    false
  • Option Card
    communication module, CANopen
  • Permitted Relative Humidity (during Operation)
    class 3K5 according to EN 60721-3
  • Permitted Relative Humidity (during Storage)
    class 1K5 according to EN 60721-3
  • Permitted Relative Humidity (during Transport)
    class 2K5 according to EN 60721-3
  • Power Loss Per Device Current Dependent
    111 W
  • Power Loss Static Current Independent
    111 W
  • Prospective Line Isc
    5 kA
  • Refresh Time
    logic input (DI1...DI4): 8 ms
  • Regulation Loop
    adjustable PID regulator
  • Relative Symmetric Mains Voltage Tolerance
    10 %
  • Relative Symmetric Network Frequency Tolerance
    5 %
  • Relay Output Type
    configurable relay logic R1A 1 NO electrical durability 100000 cycles
  • Sampling Duration
    2 ms (AI1, AI2, AI3) - analog input
  • Speed Accuracy
    +/- 10 % of nominal slip 0.2 Tn to Tn
  • Supporting Protocol for Asi
    false
  • Supporting Protocol for As-interface Safety at Work
    false
  • Supporting Protocol for Bacnet
    false
  • Supporting Protocol for Can
    true
  • Supporting Protocol for Data-highway
    false
  • Supporting Protocol for Devicenet
    true
  • Supporting Protocol for Devicenet Safety
    false
  • Supporting Protocol for Ethernet/ip
    true
  • Supporting Protocol for Foundation Fieldbus
    false
  • Supporting Protocol for Interbus
    false
  • Supporting Protocol for Interbus-safety
    false
  • Supporting Protocol for Knx
    false
  • Supporting Protocol for Lon
    false
  • Supporting Protocol for Modbus
    true
  • Supporting Protocol for Other Bus Systems
    true
  • Supporting Protocol for Profibus
    true
  • Supporting Protocol for Profinet Cba
    false
  • Supporting Protocol for Profinet Io
    true
  • Supporting Protocol for Profisafe
    false
  • Supporting Protocol for Safetybus p
    false
  • Supporting Protocol for Sercos
    false
  • Supporting Protocol for Suconet
    false
  • Supporting Protocol for Tcp/ip
    true
  • Switching Frequency
    2...16 kHz adjustable
  • Synchronous Motor Control Profile
    vector control without sensor
  • Transient Overtorque
    170-200 % of nominal motor torque
  • Variant
    standard version
  • Volume of Cooling Air
    11.3 m3/h
  • With Safety Function Safe Brake Management (sbc/sbt)
    false
  • With Safety Function Safe Direction (sdi)
    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 Safety Function Safe Torque Off (sto)
    true
  • With Safety Function Safely Limited Position (slp)
    false
  • With Safety Function Safely Limited Speed (sls)
    true
  • With Sft Fct Safe Stop 2 (ss2)
    false
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