variable speed drive, Altivar Machine ATV340, 30kW, heavy duty, 400V, 3 phases, Ethernet

variable speed drive, Altivar Machine ATV340, 30kW, heavy duty, 400V, 3 phases, Ethernet

SQDATV340D30N4E ATV340D30N4E 3606480967092
6726.47 / EA
http://schema.org/OutOfStock
  • Country of Origin: China
  • IsSustainable: Yes
This Altivar 340 variable speed drive can feed 3-phase synchronous and asynchronous motors in open and closed loop control. Altivar Machine ATV340 drives are sized heavy duty as standard. It works at a rated power up to 30kW / 40hp and a rated voltage fr
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  • Product Description
  • Features
  • Specifications
This Altivar 340 variable speed drive can feed 3-phase synchronous and asynchronous motors in open and closed loop control. Altivar Machine ATV340 drives are sized heavy duty as standard. It works at a rated power up to 30kW / 40hp and a rated voltage fr
  • Insulation Resistance
    • > 1 MOhm 500 V DC for 1 minute to earth
  • Environmental Class During Storage
    • class 1C3 according to EN 60721-3-1
    • class 1S2 according to EN 60721-3-1
  • Power Range
    • 30-50 kW 380-440 V 3 phase
    • 30-50 kW 480-500 V 3 phase
  • Connector Type
    • 1 x RJ45, Modbus serial on front face
    • 1 x RJ45, Modbus serial HMI on front face
    • 1 x RJ45, Modbus s
  • US Rated Supply Voltage
    • 380...480 V - 15...10 %
  • Input Output Type
    • logic output DQ- 0-1 kHz, <= 30 V DC, 100 mA
    • logic output DQ- 0-1 kHz, <=
  • Exchange Mode
    • half duplex, full duplex, autonegotiation Ethernet IP/Modbus TCP
  • Analogue Input Type
    • AI1 software-configurable current 0...20 mA 250 Ohm 12 bits
    • AI1 software-c
  • Continuous Output Current
    • 74.5 A 4 kHz normal duty
    • 61.5 A 4 kHz heavy duty
  • Prop 65
    • WARNING: This product can expose you to chemicals including: Lead and lead compounds, which is known to the State of California to cause cancer and birth defects or other reproductive harm. For more information go to www.P65Warnings.ca.gov
  • Analogue Output Type
    • software-configurable voltage AQ1, AQ2 0...10 V DC 470 Ohm 10 bits
    • software-configurable voltage AQ1, AQ2 0...10 V DC 47
  • Communication
    • VW3A3607
    • VW3A3609
    • VW3A3601
  • Carbon Footprint Of The Installation Phase A5
    • 5 kg CO2 eq.
    • 4.8076395041
  • Carbon Footprint Of The End Of Life Phase C1 To C4
    • 7.8966454356
    • 8 kg CO2 eq.
  • Encoder Protocol
    • 1 Vpp
    • EnDat 2.2
    • resolver
    • RS 422
    • SSI 24V
    • SSI 5V
    • TTL/HTL
  • Discrete Input Type
    • PTI safe torque off 0-30 kHz, 24 V DC 30 V)
    • PTI safe torque off 0-30 kHz, 24 V
  • Electrical Connection
    • screw terminal 35...50 mm² line side
    • screw terminal 25...50 mm² DC bus
    • screw terminal 35...50 mm² motor
    • screw te
  • Carbon Footprint Of The Manufacturing Phase A1 To A3
    • 316 kg CO2 eq.
    • 316.237529589
  • Method Of Access
    • slave Modbus RTU
    • slave Modbus TCP
  • Line Current
    • 66.2 A 380 V normal duty)
    • 57.3 A 480 V normal duty)
    • 54.8 A 380 V heavy duty)
    • 48.3 A 480 V heavy duty
  • Motor Slip Compensation
    • automatic whatever the load
    • not available in permanent magnet motor law
    • adjustable
    • can be suppressed
  • Maximum Switching Current
    • relay output R1C resistive, cos phi = 1 3 A 250 V AC
    • relay output R1C resistive, cos phi = 1 3
  • Relay Output Type
    • relay outputs R1A
    • relay outputs R1C 100000 cycles
    • relay outputs R2A
    • relay outputs R2C 100000 cycles
    • relay outputs R2C 1000
  • Input Compatibility
    • STOA, STOB discrete input level 1 PLC IEC 61131-2
    • DI1...DI8 discrete input level 1 PLC IEC 61131-2
    • DI1..
  • Protection Type
    • thermal protection motor
    • safe torque off motor
    • motor phase loss motor
    • thermal protection drive
    • safe torque off drive
    • overheating drive
    • ov
  • Sampling Duration
    • 2 ms +/- 0.5 ms DI1...DI8) - discrete input
    • 5 ms +/- 1 ms DI7, DI8) - pulse input
    • 5
  • Linearity Error
    • AI1, AI2, AI3 +/- 0.15 % of maximum value analog input
    • AQ1, AQ2 +/- 0.2 % analog output
    • AQ1, AQ2 +/- 0.2 % anal
  • Environmental Class During Operation
    • class 3C3 according to IEC 60721-3-3
    • class 3S3 according to IEC 60721-3-3
  • Maximum Horse Power Rating
    • 50 hp normal duty
    • 40 hp heavy duty
  • Vibration Resistance
    • 1.5 mm peak to peak 2-13 Hz)IEC 60068-2-6
    • 1 gn 13-200 Hz)IEC 60068-2-6
  • Option Card
    • communication module, PROFINET
    • communication module, DeviceNet
    • communication module, CANopen
    • communication module, EtherCAT
  • Persona Type Names
    • End User
    • Original Equipment Manufacturer
    • OEM - Control Panelbuilder
    • System Integrator
  • Motor Power KW
    • 37 kW normal duty
    • 30 kW heavy duty
  • Refresh Time
    • relay output R1, R2, R3)5 ms +/- 0.5 ms)
  • Carbon Footprint Of The Use Phase B2 B3 B4 B6
    • 23 197 kg CO2 eq.
    • 23197.4862797173
  • Electromagnetic Compatibility
    • electrostatic discharge immunity test level 3 conforming to IEC 61000-4-2
    • radiated radio-frequency electro
  • Supply Frequency
    • 50...60 Hz +/- 5 %
  • Apparent Power
    • 47.6 kVA 480 V normal duty)
    • 40.2 kVA 480 V heavy duty)
  • Persona Type Ids
    • EU
    • OM
    • OM8
    • SI
  • Environmental Class During Transport
    • class 2C3 according to EN 60721-3-2
    • class 2S1 according to EN 60721-3-2
  • Maximum THDI
    • <48 % full load IEC 61000-3-12
    • <48 % 80 % load IEC 61000-3-12
  • Carbon Footprint Of The Distribution Phase A4
    • 4.5824714548
    • 5 kg CO2 eq.
  • Synchronous Motor Control Profile
    • reluctance motor
    • permanent magnet motor
  • Minimum Switching Current
    • relay output R1B 5 mA 24 V DC
    • relay output R2C 5 mA 24 V DC
    • relay output R
  • Operating Altitude
    • <= 4800 m with current derating above 1000m
  • Safety Function
    • STO (safe torque off) SIL 3
  • Discrete Input Logic
    • positive logic (source) STOA, STOB), < 5 V, > 11 V
    • positive logic (source) DI1...DI8), < 5 V, > 11 V
  • Asynchronous Motor Control Profile
    • variable torque standard
    • optimized torque mode
    • constant torque standard
  • Discrete Output Type
    • programmable output DQ1, DQ2 30 V DC 100 mA
  • Shock Resistance
    • 15 gn 11 ms, class 3M3 IEC 60721-3-3
  • Maximum Transient Current
    • 89.4 A 60 s normal duty)
    • 89.4 A 2 s normal duty)
    • 92.3 A 60 s heavy duty)
    • 92.3 A 2 s heavy duty)
    • 92.3 A 2 s h
  • Discrete And Process Manufacturing
    • hoisting tower crane
    • hoisting other application
    • material handling grouping conveyor
    • material handling palletizer - high performance
    • material handling palletizer - high pe
  • Power Dissipation In W
    • natural convection 77 W 380 V 4 kHz heavy duty)
    • forced convect
  • Ambient Air Temperature For Operation
    • -15-50 °C without derating vertical position)
    • 50-60 °C with derating factor vertical position)
    • 50-60 °C with dera
  • UE Rated Operational Voltage
    • 380...480 V 37 kW normal duty
    • 380...480 V 30 kW heavy duty
    • 380...480 V 50 hp normal duty
    • 380...480 V 50 hp
  • Switching Frequency
    • 2...16 kHz adjustable
    • 4...16 kHz with derating factor
  • Assets
    • CAD : https://download.schneider-electric.com/files?p_Doc_Ref=MCADID0000954_3D-CAD
  • Complementary Attributes
    • Brake Chopper Integrated : true
    • Maximum Associated Fuse Rating : 100.0 A
    • Maximum Input Current Per Phase : 66.2 A
    • Maximum Output Voltage : 480 V
    • 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 Deflection Under Vibratory Load During Operation : 1.5 mm at 2...13 Hz
    • Maximum Deflection Under Vibratory Load During Storage : 1.5 mm at 2...13 Hz
    • Maximum Deflection Under Vibratory Load During Transport : 1.5 mm at 2...13 Hz
  • Important Information Attributes
    • Local Data Status : Publishable
    • Local Publishable Date : 2025-08-18
    • Device Type : Variable speed drive - VSD Compacts
    • Serviceability : Yes
    • Traceability : Yes
    • Field Service Division : IDIBS
    • Average Life Duration : 10 year(s)
    • Manufacturing Carbon Footprint : 316.237529589
    • Distribution Carbon Footprint : 4.5824714548
    • Installation Carbon Footprint : 4.8076395041
    • Use Carbon Footprint : 23197.4862797173
    • End Of Life Carbon Footprint : 7.8966454356
    • Legacy WEEE Scope : In
    • WEEE Product Category : 5
    • Scope Perimeter : At least in Europe
    • EOLI Availability Display : Yes
    • End Of Life Doc Ref : ENVEOLI1411001EN
    • Reach Full Compliance Status : Reference contains Substances of Very High Concern above the threshold
    • Reach Full Compliance Status Id : CONTAINS_SVHC
    • Reach Compliance Directive : Reference contains Substances of Very High Concern above the threshold
    • ROHS EUR In Scope : No
    • ROHS EUR Status : Compliant with Exemptions
    • ROHS EUR Conformity Date : 1922
    • ROHS EUR Full Compliance Status : Pro-active compliance (Product out of EU RoHS legal scope)
    • ROHS EUR Full Compliance Status Id : PRO_ACTIVE_COMPLIANCE
    • China ROHS In Scope : Yes
    • China ROHS Label : 5
    • Green Premium Status For Reporting : Green Premium product
    • With Recycled Cardboard : Yes
    • Without Single Use Plastic : No
    • Product Contributes To Saved And Avoided Emissions : YES_SSI2
    • Return Indicator : Y
    • WD Status : 1 - GSC certified
    • Tier Id : 1
    • Tier : 1
    • Function Option Id : STANDARD
    • Function Option : Standard
    • Market Segmentation Id : INDUSTRIAL
    • Market Segmentation : Industrial
    • 1 Phase Low Current Possible : false
    • 4 Quadrant Operation Possible : true
    • Application In Domestic And Commercial Area Permitted : false
    • Assembly Style : with heat sink
    • Base Load Current At High Overload : 61.5 A
    • Base Load Current At Low Overload : 74.5 A
    • Braking To Standstill : by DC injection
    • Capacity Of Dc Link : 2500.0 µF
    • Computer Port : true
    • Design Of Frequency Changer : U converter
    • Housing Material : plastic
    • Isolation : between power and control terminals
    • Maximum Associated Fuse Rating : 100.0 A
    • Maximum Input Current Per Phase : 66.2 A
    • Motor Starter Type : variable speed drive
    • Nominal Switching Frequency : 4 kHz
    • Number Of Hw Interfaces Industrial Ethernet : 2
    • Number Of Hw Interfaces Other : 0
    • Number Of Hw Interfaces Parallel : 0
    • Number Of Hw Interfaces Profinet : 0
    • Number Of Hw Interfaces Serial Rs232 : 0
    • Number Of Hw Interfaces Serial Rs422 : 0
    • Number Of Hw Interfaces Serial Rs485 : 1
    • Number Of Hw Interfaces Serial Tty : 0
    • Number Of Hw Interfaces Usb : 0
    • Number Of Output Phases : 3
    • Operating Element Present : true
    • Optical Interface Present : false
    • Package Weight Lbs : 35.000 kg
    • Power Loss Per Device Current Dependent : 774.0 W
    • Power Loss Static Current Independent : 33.0 W
    • Product Availability : Stock - Normally stocked in distribution facility
    • Product Or Component Type : variable speed drive
    • Product Specific Application : machine
    • Range Of Product : Altivar Machine ATV340
    • Relative Symmetric Mains Voltage Tolerance : 10 %
    • Relative Symmetric Network Frequency Tolerance : 5 %
    • Returnability : Yes
    • Specific Application : machine
    • Supporting Protocol For As Interface Safety At Work : false
    • Supporting Protocol For Asi : false
    • Supporting Protocol For Bacnet : false
    • Supporting Protocol For Can : false
    • Supporting Protocol For Data Highway : false
    • Supporting Protocol For Devicenet : false
    • 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 Knx : false
    • Supporting Protocol For Lon : false
    • Supporting Protocol For Modbus : true
    • Supporting Protocol For Other Bus Systems : false
    • Supporting Protocol For Profibus : false
    • Supporting Protocol For Profinet Cba : false
    • Supporting Protocol For Profinet Io : false
    • 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
    • Sustainable Packaging : No
    • Total Lifecycle Carbon Footprint : 23 531 kg CO2 eq.
    • Variant : standard version
    • Volume Of Cooling Air : 240.0 m3/h
    • Weee Label : The product must be disposed on European Union markets following specific waste collection and never end up in rubbish bins.
    • With Safety Function Safe Programmable Logic : false
    • EMC Limit Value Complied : true
    • Number Of Inputs Bidirectional Not Potential Free : 0
    • Number Of Inputs Potential Free : 0
    • Permitted Relative Humidity During Transport : class 2K5 according to EN 60721-3
    • With Safety Function Safe Brake Management Sbc Sbt : true
    • 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 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
    • Carbon Footprint Kg Co2 Eq Total Life Cycle : 23531.0105657009
    • Relationship Type : Compatible relationship
    • Application In Industrial Area Permitted : true
    • Supporting Protocol For Interbus Safety : false
    • Pep Code : ENVPEP1411001EN
    • Pep Verification Date : 2021-11-01
    • PCR Version : PCR-ed3-EN-2015 04 02
    • Type Of Verification For The Pep : Independent external review
    • Product Weight In G : 35517
    • Functional Unit Description : To adapt the speed and torque of synchronous, asynchronous or reluctance motor to the machine s operating point for 45 kW electric motors for fluid management and industrial applications in IP21/UL type 1 conditions, at 380V to 480V rated 3-phase voltage
    • Functional Unit Quantity : 1
    • Functional Unit Unit : unité (unit)
    • Reference Lifetime In Y : 10
    • Energy Consumption On Product Lifetime In Kwh : 39290.703
    • Energy Model Manufacturing A1 A3 : Energy model used: China
    • Energy Model Installation A5 : Electricity Mix; AC; < 1kV; EU-27
    • Energy Model Use B6 : Electricity Mix; AC; < 1kV; EU-27
    • Energy Model End Of Life C1 C4 : Electricity Mix; AC; < 1kV; EU-27
    • Components For Re Use Kg Total Life Cycle : 0
    • Components For Re Use Kg Manufacturing A1 A3 : 0
    • Components For Re Use Kg Distribution A4 : 0
    • Components For Re Use Kg Installation A5 : 0
    • Components For Re Use Kg Operational Energy Use B6 : 0
    • Components For Re Use Kg End Of Life C1 C4 : 0
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Total Life Cycle : 0.0290941494
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Manufacturing A1 A3 : 0.0280370225
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Distribution A4 : 0.0000001834
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Installation A5 : 0.0000000334
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Operational Energy Use B6 : 0.001056785
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb End Of Life C1 C4 : 0.000000125
    • Depletion Of Abiotic Resources Fossil Fuels Mj Total Life Cycle : 242871.8910457087
    • Depletion Of Abiotic Resources Fossil Fuels Mj Manufacturing A1 A3 : 3791.0748493151
    • Depletion Of Abiotic Resources Fossil Fuels Mj Distribution A4 : 64.3801576438
    • Depletion Of Abiotic Resources Fossil Fuels Mj Installation A5 : 6.3933519205
    • Depletion Of Abiotic Resources Fossil Fuels Mj Operational Energy Use B6 : 238968.4946083087
    • Depletion Of Abiotic Resources Fossil Fuels Mj End Of Life C1 C4 : 41.5480785205
    • Exported Energy Mj By Energy Vector Total Life Cycle : 2.9842453775
    • Exported Energy Mj By Energy Vector Manufacturing A1 A3 : 0.2564424707
    • Exported Energy Mj By Energy Vector Distribution A4 : 0
    • Exported Energy Mj By Energy Vector Installation A5 : 2.7278029068
    • Exported Energy Mj By Energy Vector Operational Energy Use B6 : 0
    • Exported Energy Mj By Energy Vector End Of Life C1 C4 : 0
    • Hazardous Waste Disposed Of Kg Total Life Cycle : 527.4322124891
    • Hazardous Waste Disposed Of Kg Manufacturing A1 A3 : 487.2737786301
    • Hazardous Waste Disposed Of Kg Distribution A4 : 0
    • Hazardous Waste Disposed Of Kg Installation A5 : 0.0018432836
    • Hazardous Waste Disposed Of Kg Operational Energy Use B6 : 0
    • Hazardous Waste Disposed Of Kg End Of Life C1 C4 : 40.1565905753
    • Materials For Energy Recovery Kg Total Life Cycle : 1.0369991093
    • Materials For Energy Recovery Kg Manufacturing A1 A3 : 0.0000000161
    • Materials For Energy Recovery Kg Distribution A4 : 0
    • Materials For Energy Recovery Kg Installation A5 : 0
    • Materials For Energy Recovery Kg Operational Energy Use B6 : 0
    • Materials For Energy Recovery Kg End Of Life C1 C4 : 1.0369990932
    • Materials For Recycling Kg Total Life Cycle : 28.6003318438
    • Materials For Recycling Kg Manufacturing A1 A3 : 2.5917679315
    • Materials For Recycling Kg Distribution A4 : 0
    • Materials For Recycling Kg Installation A5 : 3.3409333644
    • Materials For Recycling Kg Operational Energy Use B6 : 0
    • Materials For Recycling Kg End Of Life C1 C4 : 22.6676305479
    • Net Use Of Fresh Water M3 Total Life Cycle : 75.047815927
    • Net Use Of Fresh Water M3 Manufacturing A1 A3 : 14.5327779452
    • Net Use Of Fresh Water M3 Distribution A4 : 0.0004101094
    • Net Use Of Fresh Water M3 Installation A5 : 0.0012899969
    • Net Use Of Fresh Water M3 Operational Energy Use B6 : 60.5069022923
    • Net Use Of Fresh Water M3 End Of Life C1 C4 : 0.0064355831
    • Non Hazardous Waste Disposed Of Kg Total Life Cycle : 86914.2542649588
    • Non Hazardous Waste Disposed Of Kg Manufacturing A1 A3 : 136.949659726
    • Non Hazardous Waste Disposed Of Kg Distribution A4 : 0.1628138203
    • Non Hazardous Waste Disposed Of Kg Installation A5 : 3.8918847452
    • Non Hazardous Waste Disposed Of Kg Operational Energy Use B6 : 86773.0928339512
    • Non Hazardous Waste Disposed Of Kg End Of Life C1 C4 : 0.1570727162
    • Ozone Depletion Kg Equivalent Cfc 11 Total Life Cycle : 0.0056650254
    • Ozone Depletion Kg Equivalent Cfc 11 Manufacturing A1 A3 : 0.0000292212
    • Ozone Depletion Kg Equivalent Cfc 11 Distribution A4 : 0.0000000093
    • Ozone Depletion Kg Equivalent Cfc 11 Installation A5 : 0.0000000109
    • Ozone Depletion Kg Equivalent Cfc 11 Operational Energy Use B6 : 0.0056353877
    • Ozone Depletion Kg Equivalent Cfc 11 End Of Life C1 C4 : 0.0000003962
    • Radioactive Waste Disposed Of Kg Total Life Cycle : 70.8346213627
    • Radioactive Waste Disposed Of Kg Manufacturing A1 A3 : 0.103184183
    • Radioactive Waste Disposed Of Kg Distribution A4 : 0.0001159606
    • Radioactive Waste Disposed Of Kg Installation A5 : 0.0001367453
    • Radioactive Waste Disposed Of Kg Operational Energy Use B6 : 70.730893322
    • Radioactive Waste Disposed Of Kg End Of Life C1 C4 : 0.0002911518
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 442583.9688752389
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 6113.3028082192
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 64.7071086575
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Installation A5 : 6.7763516795
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 436345.086809943
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 54.0957967397
    • Total Use Of Primary Energy During The Life Cycle Mj Total Life Cycle : 476427.2086508823
    • Total Use Of Primary Energy During The Life Cycle Mj Manufacturing A1 A3 : 6330.686309589
    • Total Use Of Primary Energy During The Life Cycle Mj Distribution A4 : 64.7927386849
    • Total Use Of Primary Energy During The Life Cycle Mj Installation A5 : 6.893509126
    • Total Use Of Primary Energy During The Life Cycle Mj Operational Energy Use B6 : 469970.6877510439
    • Total Use Of Primary Energy During The Life Cycle Mj End Of Life C1 C4 : 54.1483424384
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 33846.0101481798
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 217.4126934247
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.0863481519
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.1171379852
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 33628.3408556205
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0.0531129976
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 192.7259457534
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 192.7259457534
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 0
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 442391.2040067458
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 5920.537939726
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 64.7071086575
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 6.7763516795
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 436345.086809943
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 54.0957967397
    • Use Of Non Renewable Secondary Fuels Mj Total Life Cycle : 0
    • Use Of Non Renewable Secondary Fuels Mj Manufacturing A1 A3 : 0
    • Use Of Non Renewable Secondary Fuels Mj Distribution A4 : 0
    • Use Of Non Renewable Secondary Fuels Mj Installation A5 : 0
    • Use Of Non Renewable Secondary Fuels Mj Operational Energy Use B6 : 0
    • Use Of Non Renewable Secondary Fuels Mj End Of Life C1 C4 : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 129.6516460274
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 129.6516460274
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 33716.3507176045
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 87.7532628493
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.0863481519
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.1171379852
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 33628.3408556205
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0.0531129976
    • Use Of Renewable Secondary Fuels Mj Total Life Cycle : 0
    • Use Of Renewable Secondary Fuels Mj Manufacturing A1 A3 : 0
    • Use Of Renewable Secondary Fuels Mj Distribution A4 : 0
    • Use Of Renewable Secondary Fuels Mj Installation A5 : 0
    • Use Of Renewable Secondary Fuels Mj Operational Energy Use B6 : 0
    • Use Of Renewable Secondary Fuels Mj End Of Life C1 C4 : 0
    • Use Of Secondary Materials Kg Total Life Cycle : 6.785693137
    • Use Of Secondary Materials Kg Manufacturing A1 A3 : 6.785693137
    • Use Of Secondary Materials Kg Distribution A4 : 0
    • Use Of Secondary Materials Kg Installation A5 : 0
    • Use Of Secondary Materials Kg Operational Energy Use B6 : 0
    • Use Of Secondary Materials Kg End Of Life C1 C4 : 0
    • Air Pollution M3 Total Life Cycle : 1035647.862947713
    • Air Pollution M3 Manufacturing A1 A3 : 40104.0448767123
    • Air Pollution M3 Distribution A4 : 194.9348112329
    • Air Pollution M3 Installation A5 : 118.772740274
    • Air Pollution M3 Operational Energy Use B6 : 994862.9620463427
    • Air Pollution M3 End Of Life C1 C4 : 367.1484731507
    • Water Pollution M3 Total Life Cycle : 1011941.161739954
    • Water Pollution M3 Manufacturing A1 A3 : 35199.7796712329
    • Water Pollution M3 Distribution A4 : 753.5831638356
    • Water Pollution M3 Installation A5 : 71.179960274
    • Water Pollution M3 Operational Energy Use B6 : 973423.1309309127
    • Water Pollution M3 End Of Life C1 C4 : 2493.4880136986
    • Acidification Of Soil And Water Kg Equivalent So2 Total Life Cycle : 176.4955518352
    • Photochemical Ozone Formation Kg Equivalent C2h4 Total Life Cycle : 8.3799269355
    • Water Eutrophication Kg Equivalent P04 3 Total Life Cycle : 6.9380593797
    • Acidification Of Soil And Water Kg Equivalent So2 Manufacturing A1 A3 : 1.031257989
    • Acidification Of Soil And Water Kg Equivalent So2 Distribution A4 : 0.0209229187
    • Acidification Of Soil And Water Kg Equivalent So2 Installation A5 : 0.0030169989
    • Acidification Of Soil And Water Kg Equivalent So2 Operational Energy Use B6 : 175.4298769001
    • Acidification Of Soil And Water Kg Equivalent So2 End Of Life C1 C4 : 0.0104770285
    • Global Warming Kg Equivalent Co2 Total Life Cycle : 23531.0105657009
    • Global Warming Kg Equivalent Co2 Manufacturing A1 A3 : 316.237529589
    • Global Warming Kg Equivalent Co2 Distribution A4 : 4.5824714548
    • Global Warming Kg Equivalent Co2 Installation A5 : 4.8076395041
    • Global Warming Kg Equivalent Co2 Operational Energy Use B6 : 23197.4862797173
    • Global Warming Kg Equivalent Co2 End Of Life C1 C4 : 7.8966454356
    • Photochemical Ozone Formation Kg Equivalent C2h4 Manufacturing A1 A3 : 0.0845800865
    • Photochemical Ozone Formation Kg Equivalent C2h4 Distribution A4 : 0.0014930763
    • Photochemical Ozone Formation Kg Equivalent C2h4 Installation A5 : 0.0011188342
    • Photochemical Ozone Formation Kg Equivalent C2h4 Operational Energy Use B6 : 8.2916663148
    • Photochemical Ozone Formation Kg Equivalent C2h4 End Of Life C1 C4 : 0.0010686238
    • Water Eutrophication Kg Equivalent P04 3 Manufacturing A1 A3 : 0.3525232537
    • Water Eutrophication Kg Equivalent P04 3 Distribution A4 : 0.0048191217
    • Water Eutrophication Kg Equivalent P04 3 Installation A5 : 0.0014523047
    • Water Eutrophication Kg Equivalent P04 3 Operational Energy Use B6 : 6.5759318426
    • Water Eutrophication Kg Equivalent P04 3 End Of Life C1 C4 : 0.0033328569
  • General Attributes
    • Product Or Component Type : variable speed drive
    • Range Of Product : Altivar Machine ATV340
  • Output Attributes
    • Maximum Output Voltage : 480 V
    • Relay Output Number : 3
    • Speed Drive Output Frequency : 0.1-599 Hz
  • Environment Attributes
    • ROHS Exemption Information : Yes
    • China ROHS url : https://checkaproduct.se.com/DistantRequestDispatcher.aspx?action=exportPdfRoHSChina&pid=442523097&lang=en-us
    • Take Back : No
    • China ROHS Regulation : X
    • Mercury Free : Yes
    • Carbon Footprint : 23531.0105657009
    • Ambient Air Transport Temperature : -40-70 °C
    • Circularity Profile : ENVEOLI1411001EN
    • Environmental Disclosure : ENVPEP1411001EN
    • EU ROHS Directive : Pro-active compliance (Product out of EU RoHS legal scope)
    • Packaging Made With Recycled Cardboard : Yes
    • Packaging Without Single Use Plastic : No
    • Reach Regulation : Reference contains Substances of Very High Concern above the threshold
    • Permitted Relative Humidity During Operation : class 3K5 according to EN 60721-3
    • Permitted Relative Humidity During Storage : class 1K5 according to EN 60721-3
    • Pep Code : ENVPEP1411001EN
    • Pep Verification Date : 2021-11-01
    • PCR Version : PCR-ed3-EN-2015 04 02
    • Type Of Verification For The Pep : Independent external review
  • Input Attributes
    • Number Of Input Phases : 3
  • Specifications
    • Country of Origin : China