Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg
Schneider Electric

Schneider Electric ATV320D15M3C Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg

  • MPN: ATV320D15M3C
  • PPN: SCH-ATV320D15M3C
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  • CAD

    $2800.38

    / EA

    Available to Order

    Lead times may vary. For an accurate estimate please contact us.

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    Spec sheet

    Description

    Variable Speed Drive, 15kW, 200-240V, Compact, 6.9kg

    Documentation & Downloads

    Specifications

    Key Specifications

    Country of Origin
    Indonesia, United States
    Depth198.0 mm

    Communications & Management Attributes

    Communication Port Protocol
    Modbus serial, CANopen

    Complementary Attributes

    Maximum Switching Current
    relay output R1A, R1B, R1C, R2A, R2C inductive, cos phi = 0.4 7 ms 2 A 30 V DC, relay output R2A, R2C resistive, cos phi = 1 5 A 30 V DCrelay output R1A, R1B, R1C resistive, cos phi = 1 3 A 250 V AC, relay output R1A, R1B, R1C resistive, cos phi = 1 3 A 30 V DC, relay output R1A, R1B, R1C, R2A, R2C inductive, cos phi = 0.4 7 ms 2 A 250 V AC, relay output R2A, R2C resistive, cos phi = 1 5 A 250 V AC
    Maximum Associated Fuse Rating
    125.0 A
    Maximum Input Current Per Phase
    79.7 A
    Maximum Output Voltage
    240 V
    Brake Chopper Integratedtrue
    Maximum Horse Power Rating20 hp
    Maximum Output Frequency0.599 kHz
    Minimum Switching Currentrelay output R1A, R1B, R1C, R2A, R2C 5 mA 24 V DC

    Important Information Attributes

    Product Contributes To Saved And Avoided Emissions
    YES_SSI2, Yes
    Persona Type Names
    End User, Original Equipment Manufacturer, OEM - Control Panelbuilder
    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
    Linearity Error
    AI1, AI2, AI3 +/- 0.2...0.5 % of maximum value analog input, AQ1 +/- 0.3 % analog output
    Motor Slip Compensation
    automatic whatever the load, adjustable 0...300 %, not available in voltage/frequency ratio (2 or 5 points)
    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
    Sampling Duration
    2 ms AI1, AI2, AI3) - analog input, 2 ms AQ1) - analog output
    Switching Frequency
    2...16 kHz adjustable, 4...16 kHz with derating factor
    [Us] Rated Supply Voltage
    200...240 V, 200...240 V - 15...10 %
    Environmental Class (During Storage)
    class 1C3 according to EN 60721-3, class 1S2 according to EN 60721-3
    Carbon Footprint Of The Distribution Phase [A4]
    1.0416, 1 kg CO2 eq.
    Carbon Footprint Of The Installation Phase [A5]
    2 kg CO2 eq., 1.9381
    Carbon Footprint Of The Use Phase [B2, B3, B4, B6]
    15 894 kg CO2 eq., 15894
    Local Publishable Date
    2026-01-12
    Stocking Flag
    Y
    Device Type
    Variable speed drive - VSD Compacts
    Traceability
    Yes
    Average Life Duration
    10 year(s)
    Distribution Carbon Footprint
    1.0416
    Use Carbon Footprint
    15894
    Weee Applicability
    Finished product
    Weee Product Category
    5
    Eoli Availability Display
    Yes
    Reach Full Compliance Status
    Reference contains Substances of Very High Concern above the threshold
    Reach Compliance Directive
    Reference contains Substances of Very High Concern above the threshold
    Rohs Eur Status
    Compliant By Exemption
    Rohs Eur Full Compliance Status
    Compliant By Exemption
    China Rohs Label
    5
    Without Single Use Plastic
    Yes
    Tier
    1
    Function Option
    Standard
    Market Segmentation
    Industrial
    1 Phase Low Current Possible
    false
    Apparent Power
    27.9 kVA 240 V heavy duty)
    Base Load Current At High Overload
    8.0 A
    Capacity Of Dc Link
    7000 µF
    Design Of Frequency Changer
    U converter
    Encoder Protocol
    RS 422
    Housing Material
    plastic
    Maximum Input Current Per Phase
    79.7 A
    Motor Power Kw
    15.0 kW heavy duty
    Network Frequency
    50-60 Hz
    Nominal Switching Frequency
    4 kHz
    Number Of Hw Interfaces Other
    1.0
    Number Of Hw Interfaces Profinet
    0.0
    Number Of Hw Interfaces Serial Rs42
    0.0
    Number Of Hw Interfaces Serial Tty
    0.0
    Number Of Output Phases
    3
    Operating Position
    vertical +/- 10 degree
    Overvoltage Category
    III
    Power Dissipation In W
    fan 551 W 200 V 4 kHz
    Power Loss Static Current Independent
    551 W
    Product Or Component Type
    variable speed drive
    Prospective Line Isc
    22 kA
    Regulation Loop
    adjustable PID regulator
    Relative Symmetric Network Frequency Tolerance
    5 %
    Software Version
    v5.9.4
    Supporting Protocol For Bacnet
    false
    Supporting Protocol For Devicenet
    true
    Supporting Protocol For Foundation Fieldbus
    false
    Supporting Protocol For Knx
    false
    Supporting Protocol For Modbus
    true
    Supporting Protocol For Profibus
    true
    Supporting Protocol For Profinet Io
    true
    Supporting Protocol For Safetybus P
    false
    Supporting Protocol For Suconet
    false
    Synchronous Motor Control Profile
    vector control without sensor
    Transient Overtorque
    170-200 % of nominal motor torque
    Volume Of Cooling Air
    156.0 m3/h
    With Safety Function Safe Programmable Logic
    false
    Motor Power Kw 10 N Motor Power Kw
    15.0 kW
    Database Version
    2022-01
    Pcr Version
    PEP-PCR-ed4-2021 09 06
    Type Of Verification For The Pep
    Independent external review
    Functional-unit Description
    To adapt the speed and torque of synchronous, asynchronous or reluctance motor to the machine's operating point for 15 kW for heavy duty electric motors for fluid management and industrial applications in IP20/UL type 1 conditions, at 200V to 240V rated 3-phases voltage supply. Calculation of the environmental impacts is based on 10 years of product service lifetime. The usage profile taken into account is 80% uptime in use phase at 75% loading rate and 20% uptime in stand by phase.
    Functional-unit Unit
    Unit
    Energy Consumption On Product Lifetime, In Kwh
    26332.56
    Energy Model - Installation [A5]
    Electricity Mix; AC; consumption mix, at consumer; < 1kV; EU-27
    Energy Model - End Of Life [C1-c4]
    Electricity Mix; AC; consumption mix, at consumer; < 1kV; EU-27
    Height Nominal
    330 mm
    Emc Limit Value (Complied)
    false
    Maximum Acceleration Under Shock Load (During Storage)
    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 Transport)
    10 m/s² at 13...200 Hz
    Maximum Deflection Under Vibratory Load (During Storage)
    3.5 mm at 2...13 Hz
    Permitted Relative Humidity (During Operation)
    class 3K5 according to EN 60721-3
    Permitted Relative Humidity (During Transport)
    class 2K5 according to EN 60721-3
    Supporting Protocol For Data-highway
    false
    Supporting Protocol For Interbus-safety
    false
    With Safety Function Safe Brake Management (Sbc/Sbt)
    false
    With Safety Function Safe Operating Stop (Sos)
    false
    With Safety Function Safe Speed Monitor (Ssm)
    false
    With Safety Function Safe Torque Off (Sto)
    true
    With Safety Function Safely Limited Speed (Sls)
    true
    Carbon Footprint (Kg Co2 Eq, Total Life Cycle)
    15999.9807
    Package Weight(Lbs)
    8.134 kg
    Warranty (In Months)
    18
    Climate Change - Biogenics ( Kg Co2 Eq.) Manufacturing [A1-a3]
    1.1635
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) Total Life Cycle
    15998.4856
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) Distribution [A4]
    1.0416
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) Operational Energy Use [B6]
    15894
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) Benefits/Loads Beyond System Boundaries [D]
    -9.7452
    Climate Change - Total ( Kg Co2 Eq.) Manufacturing [A1-a3]
    89.635
    Climate Change - Total ( Kg Co2 Eq.) Installation [A5]
    1.9381
    Climate Change - Total ( Kg Co2 Eq.) End Of Life [C1-c4]
    13.366
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) Total Life Cycle
    294509.044
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) Distribution [A4]
    14.511
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) Operational Energy Use [B6]
    292440
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) Benefits/Loads Beyond System Boundaries [D]
    -189.64
    Ecotoxicity (Fresh Water) (Ctue) Installation [A5]
    13.229
    Ecotoxicity (Fresh Water) (Ctue) End Of Life [C1-c4]
    2580.1
    Hazardous Waste Disposed Of (Kg) Manufacturing [A1-a3]
    226.95
    Hazardous Waste Disposed Of (Kg) Benefits/Loads Beyond System Boundaries [D]
    -200.59
    Ionizing Radiation, Human Health (Kbq Of U235 Equiv.) Manufacturing [A1-a3]
    2451.2
    Ionizing Radiation, Human Health (Kbq Of U235 Equiv.) End Of Life [C1-c4]
    0.3579
    Marine Aquatic Eutrophication (Kg Of N Equiv) Operational Energy Use [B6]
    10.924
    Materials For Recycling (Kg) End Of Life [C1-c4]
    3.0374
    Net Use Of Fresh Water (M3) Operational Energy Use [B6]
    40.552
    Non-hazardous Waste Disposed Of (Kg) Manufacturing [A1-a3]
    78.139
    Non-hazardous Waste Disposed Of (Kg) Operational Energy Use [B6]
    58155
    Non-hazardous Waste Disposed Of (Kg) Benefits/Loads Beyond System Boundaries [D]
    -29.852
    Radioactive Waste Disposed Of (Kg) Operational Energy Use [B6]
    47.406
    Terrestrial Eutrophication (Mole Of N Equiv) Operational Energy Use [B6]
    118.96
    Total Use Of Non-renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Manufacturing [A1-a3]
    76.08
    Total Use Of Primary Energy During The Life Cycle (Mj) Total Life Cycle
    317085.742
    Total Use Of Primary Energy During The Life Cycle (Mj) Distribution [A4]
    14.531
    Total Use Of Primary Energy During The Life Cycle (Mj) Operational Energy Use [B6]
    314970
    Total Use Of Primary Energy During The Life Cycle (Mj) Benefits/Loads Beyond System Boundaries [D]
    -198.49
    Total Use Of Renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Installation [A5]
    1.4476
    Total Use Of Renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) End Of Life [C1-c4]
    6.724
    Use Of Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Total Life Cycle
    76.0753
    Use Of Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Benefits/Loads Beyond System Boundaries [D]
    -0.0047
    Use Of Non-renewable Primary Energy, Excluding Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Distribution [A4]
    14.511
    Use Of Non-renewable Primary Energy, Excluding Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Operational Energy Use [B6]
    292440
    Use Of Non-renewable Primary Energy, Excluding Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Benefits/Loads Beyond System Boundaries [D]
    -189.64
    Use Of Renewable Primary Energy Resources Used As Raw Materials (Mj) Manufacturing [A1-a3]
    7.8874
    Use Of Renewable Primary Energy, Excluding Renewable Primary Energy Resources Used As Raw Materials (Mj) Manufacturing [A1-a3]
    30.683
    Use Of Renewable Primary Energy, Excluding Renewable Primary Energy Resources Used As Raw Materials (Mj) Operational Energy Use [B6]
    22538
    Use Of Renewable Primary Energy, Excluding Renewable Primary Energy Resources Used As Raw Materials (Mj) Benefits/Loads Beyond System Boundaries [D]
    7.7949
    Water Use (M3 Eq) Installation [A5]
    0.8277
    Water Use (M3 Eq) End Of Life [C1-c4]
    1177.8
    Persona Type IdsEU, OM, OM8
    Asynchronous Motor Control Profilevoltage/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
    Line Current79.7 A 200 V heavy duty), 67.1 A 240 V heavy duty)
    MarkingCE, ATEX, UL, CSA, EAC, RCM
    Option Cardcommunication module, CANopen, communication module, EtherCAT, communication module, Profibus DP V1, communication module, PROFINET, communication module, Ethernet Powerlink, communication module, EtherNet/IP, communication module, DeviceNet
    Refresh Timelogic input DI1...DI4)8 ms, relay output R1A, R1B, R1C)2 ms, relay output R2A, R2C)2 ms
    Speed Accuracy+/- 10 % of nominal slip 0.2 Tn to Tn, +/- 10 % of nominal slip 0.2 Tn to Tn, +/- 10 % of nominal slip 0.2 Tn to Tn, +/- 10 % of nominal slip 0.2 Tn to Tn
    Certificate AgencyCE, ATEX, NOM, GOST, EAC, RCM, KC
    Environmental Class (During Operation)class 3C3 according to IEC 60721-3-3, class 3S2 according to IEC 60721-3-3
    Environmental Class (During Transport)class 2C3 according to EN 60721-3, class 2S1 according to EN 60721-3
    Carbon Footprint Of The End-of-life Phase [C1 To C4]13.366, 13 kg CO2 eq.
    Carbon Footprint Of The Manufacturing Phase [A1 To A3]90 kg CO2 eq., 89.635
    Local Data StatusPublishable
    Return IndicatorY
    Stock Policy1
    ServiceabilityYes
    Field Service DivisionIDIBS
    Manufacturing Carbon Footprint89.635
    Installation Carbon Footprint1.9381
    End Of Life Carbon Footprint13.366
    Weee ScopeIn
    Scope PerimeterAt least in Europe
    End Of Life Doc RefENVEOLI1604023EN
    Reach Full Compliance Status IdCONTAINS_SVHC
    Rohs Eur In ScopeNo
    Rohs Eur Conformity Date1714
    China Rohs In ScopeYes
    With Recycled CardboardYes
    Tier Id1
    Function Option IdSTANDARD
    Market Segmentation IdINDUSTRIAL
    Product Kit IdentifierN
    4 Quadrant Operation Possibletrue
    Application In Domestic And Commercial Area Permittedfalse
    Braking To Standstillby DC injection
    Computer Porttrue
    Emc Filterwithout EMC filter
    Format Of The Drivecompact
    Maximum Associated Fuse Rating125.0 A
    Method Of Accessslave CANopen
    Mounting Modewall mount
    Network Number Of Phases3 phase
    Number Of Hw Interfaces Industrial Ethernet0.0
    Number Of Hw Interfaces Parallel0.0
    Number Of Hw Interfaces Serial Rs230.0
    Number Of Hw Interfaces Serial Rs4851.0
    Number Of Hw Interfaces Usb0.0
    Operating Element Presenttrue
    Optical Interface Presentfalse
    Phase3 phase
    Power Loss Per Device Current Dependent551 W
    Product AvailabilityStock - Normally stocked in distribution facility
    Product Specific Applicationcomplex machines
    Range Of ProductAltivar Machine ATV320
    Relative Symmetric Mains Voltage Tolerance10 %
    ReturnabilityYes
    Supporting Protocol For Asifalse
    Supporting Protocol For Cantrue
    Supporting Protocol For Devicenet Safetyfalse
    Supporting Protocol For Interbusfalse
    Supporting Protocol For Lonfalse
    Supporting Protocol For Other Bus Systemstrue
    Supporting Protocol For Profinet Cbafalse
    Supporting Protocol For Profisafefalse
    Supporting Protocol For Sercosfalse
    Sustainable PackagingYes
    Total Lifecycle Carbon Footprint16 000 kg CO2 eq.
    UpdatabilityUpgradeable through digital modules
    Weee LabelThe product must be disposed on European Union markets following specific waste collection and never end up in rubbish bins.
    Application In Industrial Area Permittedtrue
    Pep CodeENVPEP1604023EN
    Pep Verification Date2023-06-09
    Psr VersionNo PSR
    Data Sourcereferent product
    Functional-unit Quantity1
    Reference Lifetime, In Y10
    Energy Model - Manufacturing [A1-a3]Electricity Mix; Production mix; Low voltage; ID
    Energy Model - Use [B6]Electricity Mix; AC; consumption mix, at consumer; < 1kV; EU-27
    Recyclability Potential, In %43
    Width Nominal180 mm
    Maximum Acceleration Under Shock Impact (During Operation)150 m/s² at 11 ms
    Maximum Acceleration Under Shock Load (During Transport)150 m/s² at 11 ms
    Maximum Acceleration Under Vibratory Load (During Storage)10 m/s² at 13...200 Hz
    Maximum Deflection Under Vibratory Load (During Operation)1.5 mm at 2...13 Hz
    Maximum Deflection Under Vibratory Load (During Transport)3.5 mm at 2...13 Hz
    Permitted Relative Humidity (During Storage)class 1K5 according to EN 60721-3
    Supporting Protocol For As-interface Safety At Workfalse
    Supporting Protocol For Ethernet/Iptrue
    Supporting Protocol For Tcp/Iptrue
    With Safety Function Safe Direction (Sdi)false
    With Safety Function Safe Position (Sp)false
    With Safety Function Safe Stop 1 (Ss1)true
    With Safety Function Safely Limited Position (Slp)false
    With Sft Fct Safe Stop 2 (Ss2)false
    Nbr. Of Units In Pkg.1
    Take-backNo
    Acidification (Ap) (Mole Of H+ Equiv) Operational Energy Use [B6]133.81
    Climate Change - Biogenics ( Kg Co2 Eq.) End Of Life [C1-c4]0.246
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) Manufacturing [A1-a3]88.472
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) Installation [A5]1.852
    Climate Change - Fossil Fuels ( Kg Co2 Eq.) End Of Life [C1-c4]13.12
    Climate Change - Total ( Kg Co2 Eq.) Total Life Cycle15999.9807
    Climate Change - Total ( Kg Co2 Eq.) Distribution [A4]1.0416
    Climate Change - Total ( Kg Co2 Eq.) Operational Energy Use [B6]15894
    Climate Change - Total ( Kg Co2 Eq.) Benefits/Loads Beyond System Boundaries [D]-9.8715
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) Manufacturing [A1-a3]1726.7
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) Installation [A5]20.173
    Depletion Of Abiotic Resources - Fossil Fuels (Mj) End Of Life [C1-c4]307.66
    Ecotoxicity (Fresh Water) (Ctue) Manufacturing [A1-a3]3037.1
    Ecotoxicity (Fresh Water) (Ctue) Operational Energy Use [B6]88216
    Ecotoxicity (Fresh Water) (Ctue) Benefits/Loads Beyond System Boundaries [D]-164.21
    Hazardous Waste Disposed Of (Kg) End Of Life [C1-c4]7.8971
    Impacts Related To Land Use/Soil Quality (-) End Of Life [C1-c4]18.867
    Ionizing Radiation, Human Health (Kbq Of U235 Equiv.) Operational Energy Use [B6]4572.5
    Ionizing Radiation, Human Health (Kbq Of U235 Equiv.) Benefits/Loads Beyond System Boundaries [D]-61.331
    Materials For Recycling (Kg) Installation [A5]1.0651
    Net Use Of Fresh Water (M3) Manufacturing [A1-a3]1.2097
    Net Use Of Fresh Water (M3) End Of Life [C1-c4]30.823
    Non-hazardous Waste Disposed Of (Kg) Installation [A5]6.3047
    Non-hazardous Waste Disposed Of (Kg) End Of Life [C1-c4]2.2201
    Photochemical Ozone Formation (Kg Of Nmvoc Equiv) Operational Energy Use [B6]36.297
    Terrestrial Eutrophication (Mole Of N Equiv) Manufacturing [A1-a3]1.2837
    Total Use Of Non-renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Total Life Cycle76.08
    Total Use Of Non-renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Benefits/Loads Beyond System Boundaries [D]-0.0047
    Total Use Of Primary Energy During The Life Cycle (Mj) Manufacturing [A1-a3]1765.2
    Total Use Of Primary Energy During The Life Cycle (Mj) Installation [A5]21.621
    Total Use Of Primary Energy During The Life Cycle (Mj) End Of Life [C1-c4]314.39
    Total Use Of Renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Manufacturing [A1-a3]38.571
    Total Use Of Renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Operational Energy Use [B6]22538
    Total Use Of Renewable Primary Energy Resources (Primary Energy And Primary Energy Resources Used As Raw Materials) (Mj) Benefits/Loads Beyond System Boundaries [D]-8.8533
    Use Of Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Manufacturing [A1-a3]76.08
    Use Of Non-renewable Primary Energy, Excluding Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Manufacturing [A1-a3]1650.6
    Use Of Non-renewable Primary Energy, Excluding Non-renewable Primary Energy Resources Used As Raw Materials (Mj) Installation [A5]20.173
    Use Of Non-renewable Primary Energy, Excluding Non-renewable Primary Energy Resources Used As Raw Materials (Mj) End Of Life [C1-c4]307.66
    Use Of Renewable Primary Energy Resources Used As Raw Materials (Mj) Total Life Cycle7.8874
    Use Of Renewable Primary Energy Resources Used As Raw Materials (Mj) Benefits/Loads Beyond System Boundaries [D]-16.648
    Use Of Renewable Primary Energy, Excluding Renewable Primary Energy Resources Used As Raw Materials (Mj) Installation [A5]1.4476
    Use Of Renewable Primary Energy, Excluding Renewable Primary Energy Resources Used As Raw Materials (Mj) End Of Life [C1-c4]6.724
    Water Use (M3 Eq) Manufacturing [A1-a3]49.929
    Water Use (M3 Eq) Operational Energy Use [B6]1741.7
    Water Use (M3 Eq) Benefits/Loads Beyond System Boundaries [D]-5.9435

    Environment Attributes Main

    Ambient Air Temperature For Operation
    -10-50 °C without derating, -10-50 °C without derating, -10-60 °C, -10-60 °C, -10-50 °C without derating, -10-50 °C without derating, 50-60 °C with derating factor
    Ambient Air Transport Temperature
    -25-70 °C, -25-70 °C
    Recycled Metal Content At Cr Level
    0 %
    Mercury Free
    Yes
    Circularity Profile
    ENVEOLI1604023EN
    Eu Rohs Directive
    Compliant By Exemption
    Nema Degree Of Protection
    NEMA 1
    Packaging Without Single Use Plastic
    Yes
    Pep Code
    ENVPEP1604023EN
    Pcr Version
    PEP-PCR-ed4-2021 09 06
    Type Of Verification For The Pep
    Independent external review
    Ambient Air Temperature For Storage-25-70 °C, -25-70 °C
    Take BackNo
    China Rohs RegulationX
    Carbon Footprint15999.9807
    Environmental DisclosureENVPEP1604023EN
    Ip Degree Of ProtectionIP20
    Packaging Made With Recycled CardboardYes
    Reach RegulationReference contains Substances of Very High Concern above the threshold
    Pep Verification Date2023-06-09
    Psr VersionNo PSR

    General Attributes

    Phase
    3 phase
    Range Of Product
    Altivar Machine ATV320
    Product Or Component Typevariable speed drive

    ETIM

    ETIM 8
    EC001857
    ETIM 9EC001857

    Output Attributes

    Analogue Output Type
    software-configurable current AQ1 0...20 mA 800 Ohm 10 bits, software-configurable voltage AQ1 0...10 V DC 470 Ohm 10 bits
    Relay Output Type
    configurable relay logic R1A 1 NO 100000 cycles, configurable relay logic R1B 1 NC 100000 cycles, configurable relay logic R1C, configurable relay logic R2A 1 NO 100000 cycles, configurable relay logic R2C
    Discrete Output Number
    3
    Maximum Output Voltage
    240 V
    Nominal Output Power
    15.0 kW
    Discrete Output Typeopen collector DQ+ 0-1 kHz 30 V DC 100 mA, open collector DQ- 0-1 kHz 30 V DC 100 mA
    Analogue Output Number1
    Maximum Output Frequency0.599 kHz
    Nominal Output Current66.0 A

    Surge Protection And Filtering Attributes

    Emc Filter
    without EMC filter

    Input Attributes

    Analogue Input Type
    AI1 voltage 0...10 V DC 30 kOhm 10 bits, AI2 bipolar differential voltage +/- 10 V DC 30 kOhm 10 bits, AI3 current 0...20 mA (or 4-20 mA, x-20 mA, 20-x mA or other patterns by configuration) 250 Ohm 10 bits
    Discrete Input Type
    STO safe torque off, 24 V DC1.5 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 Number
    7
    Discrete Input Logicpositive logic (source), negative logic (sink)
    Analogue Input Number3
    Number Of Input Phases3
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