Advanced control unit, TeSys Ultra, 0.35A to 1.4A, 1P motors, protection & diagnostic, class 10, coil 110-240VAC/DC

ADV.CTRL.UNT-CL10-1PH 0.3-1.4A

SQDLUCC1XFU LUCC1XFU 3389110364743
156.91 / EA
http://schema.org/OutOfStock
  • Country of Origin: France
  • Load Type: Single-phase Motor
  • Warranty Length: 18 mth
TeSys U control and diagnostic unit to be inserted in advanced power bases LUB120, LUB320, LUB380 to form a TeSys U starter controller, for 1-phase motor applications up to 0.09kW@400V. It provides full protection to motors with a rated current Ir 0.35-1.4A (Ir adjustable), overload tripping class 10, short circuit at 13 x Irmax, overcurrent at 14.2 x Ir, phase loss, insulation fault (protection of equipment only). For diagnostics, it provides a thermal overload alarm to be managed with an additional function module (to be ordered separately) and a test push button for overload simulation. To be used with a 110-240V AC / 110-220V DC voltage for the control of the starter (through the control terminals A1/A2 located in the power base). Certified when used in conjunction with a LUB power base (IEC, UL, CSA, CCC, EAC, Marine).
QTY
  • Product Description
  • Features
  • Specifications
TeSys U control and diagnostic unit to be inserted in advanced power bases LUB120, LUB320, LUB380 to form a TeSys U starter controller, for 1-phase motor applications up to 0.09kW@400V. It provides full protection to motors with a rated current Ir 0.35-1.4A (Ir adjustable), overload tripping class 10, short circuit at 13 x Irmax, overcurrent at 14.2 x Ir, phase loss, insulation fault (protection of equipment only). For diagnostics, it provides a thermal overload alarm to be managed with an additional function module (to be ordered separately) and a test push button for overload simulation. To be used with a 110-240V AC / 110-220V DC voltage for the control of the starter (through the control terminals A1/A2 located in the power base). Certified when used in conjunction with a LUB power base (IEC, UL, CSA, CCC, EAC, Marine).
  • Heat Dissipation
    • 2-2 W control circuit with LUB12
    • 3-3 W control circuit with LUB32
    • 3-3 W control circuit with LUB38
  • CAD
    • https://download.schneider-electric.com/files?p_Doc_Ref=SB115122_3D-CAD
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_3D-simplified.stp
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-back.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-back.dxf
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-bottom.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-bottom.dxf
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-front.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-front.dxf
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-isometric.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-isometric.dxf
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-left.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-left.dxf
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-right.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-right.dxf
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-top.dwg
    • https://download.schneider-electric.com/files?p_Doc_Ref=MCADPD0004722_3D-CAD&p_File_name=MCADPD0004722_2D-top.dxf
  • Tripping Threshold
    • 14.2 x Ir +/- 20 %
  • IP Degree Of Protection
    • IP20 front panel and wired terminals IEC 60947-1
    • IP20 other faces IEC 60947-1
    • IP40 front panel outside connection zone IEC 60947-1
  • Resistance To Radiated Fields
    • 10 V/m 3 IEC 61000-4-3
  • Typical Current Consumption
    • 280 mA 110...240 V AC I maximum while closing with LUB12
    • 280 mA 110...240 V AC I maximum while closing with LUB32
    • 280 mA 110...240 V AC I maximum while closing with LUB38
    • 280 mA 110...220 V DC I maximum while closing with LUB12
    • 280 mA 110...220 V DC I maximum while closing with LUB32
    • 280 mA 110...220 V DC I maximum while closing with LUB38
    • 35 mA 110...240 V AC I rms sealed with LUB12
    • 25 mA 110...240 V AC I rms sealed with LUB32
    • 25 mA 110...240 V AC I rms sealed with LUB38
    • 35 mA 110...220 V DC I rms sealed with LUB12
    • 25 mA 110...220 V DC I rms sealed with LUB32
    • 25 mA 110...220 V DC I rms sealed with LUB38
  • Immunity To Voltage Dips
    • 70 % / 500 ms IEC 61000-4-11
  • Communication
    • LUFC00
    • LULC033
    • LULC15
  • Carbon Footprint Of The Installation Phase A5
    • 0.00948067247356954
    • 0 kg CO2 eq.
  • Carbon Footprint Of The End Of Life Phase C1 To C4
    • 0.3 kg CO2 eq.
    • 0.30563377734847974
  • Standards
    • EN 60947-6-2
    • IEC 60947-6-2
    • UL 60947-4-1, with phase barrier
    • CSA C22.2 No 60947-4-1, with phase barrier
  • Operating Time
    • 35 ms opening with LUB12 control circuit
    • 35 ms opening with LUB32 control circuit
    • 35 ms opening with LUB38 control circuit
    • 50 ms closing with LUB12 control circuit
    • 50 ms closing with LUB32 control circuit
    • 50 ms closing with LUB38 control circuit
  • UC Control Circuit Voltage
    • 110...240 V AC
    • 110...220 V DC
  • Carbon Footprint Of The Manufacturing Phase A1 To A3
    • 1 kg CO2 eq.
    • 1.1667124366369979
  • Protective Treatment
    • TH IEC 60068
  • UI Rated Insulation Voltage
    • 690 V IEC 60947-6-2
    • 600 V UL 60947-4-1
    • 600 V CSA C22.2 No 60947-4-1
  • Fixing Mode
    • plug-in (front face)
  • Vibration Resistance
    • 2 gn 5-300 Hz power poles open IEC 60068-2-6
    • 4 gn 5-300 Hz power poles closed IEC 60068-2-6
  • Immunity To Radioelectric Fields
    • 10 V IEC 61000-4-6
  • Thermal Overload Class
    • class 10 40-60 Hz -25-55 °C IEC 60947-6-2
    • class 10 40-60 Hz -25-55 °C UL 508
  • Fire Resistance
    • 960 °C parts supporting live components IEC 60695-2-12
    • 650 °C IEC 60695-2-12
  • Motor Power KW
    • 0.09 kW 400...440 V AC 50/60 Hz 1 phase
  • Carbon Footprint Of The Use Phase B2 B3 B4 B6
    • 18 kg CO2 eq.
    • 17.704986872283545
  • Resistance To Fast Transients
    • 2 kV 3 serial link IEC 61000-4-4
    • 4 kV 4 all circuits except for serial link IEC 61000-4-4
  • Auxiliaries
    • LUA1C20
    • LUA1C11
    • LUFN20
    • LUFN11
    • LUFN02
  • Resistance To Electrostatic Discharge
    • 8 kV 3 in open air IEC 61000-4-2
    • 8 kV 4 on contact IEC 61000-4-2
  • Carbon Footprint Of The Distribution Phase A4
    • 0.06678082652171648
    • 0.1 kg CO2 eq.
  • Non Dissipating Shock Wave
    • 1 kV serial mode IEC 60947-6-2
    • 2 kV common mode IEC 60947-6-2
  • Control Circuit Voltage Limits
    • 88...264 V AC 110...240 V in operation
    • 88...242 V DC 110...220 V in operation
    • 55 V AC 110...240 V drop-out
    • 55 V DC 110...220 V drop-out
  • Safe Separation Of Circuit
    • 400 V SELV between the control and auxiliary circuits IEC 60947-1
    • 400 V SELV between the control or auxiliary circuit and the main circuit IEC 60947-1
  • Shock Resistance
    • 10 gn power poles open IEC 60068-2-27
    • 15 gn power poles closed IEC 60068-2-27
  • Product Compatibility
    • power base LUB12
    • power base LUB32
    • power base LUB38
    • power base LUB120
    • power base LUB320
    • power base LUB380
    • reversing contactor breaker LU2B12FU
    • reversing contactor breaker LU2B32FU
    • reversing contactor breaker LU2B38FU
  • UE Rated Operational Voltage
    • 690 V AC
  • UIMP Rated Impulse Withstand Voltage
    • 6 kV IEC 60947-6-2
  • Important Information Attributes
    • Local Data Status : Publishable
    • Local Publishable Date : 2025-08-13
    • Device Type : Relay, Control & Measurement - measuring, monitoring device
    • Serviceability : No
    • Traceability : Yes
    • Field Service Division : PPIBS
    • Average Life Duration : 15 year(s)
    • Manufacturing Carbon Footprint : 1.1667124366369979
    • Distribution Carbon Footprint : 0.06678082652171648
    • Installation Carbon Footprint : 0.00948067247356954
    • Use Carbon Footprint : 17.704986872283545
    • End Of Life Carbon Footprint : 0.30563377734847974
    • WEEE Applicability : Finished product
    • WEEE Scope : In
    • Legacy WEEE Scope : In
    • WEEE Product Category : 5
    • Scope Perimeter : At least in Europe
    • EOLI Availability Display : Yes
    • End Of Life Doc Ref : ENVEOLI2406038EN
    • 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 : Yes
    • ROHS EUR Status : Compliant with Exemptions
    • ROHS EUR Conformity Date : 1927
    • ROHS EUR Full Compliance Status : Compliant with Exemptions
    • ROHS EUR Full Compliance Status Id : COMPLIANT_WITH_EXEMPTIONS
    • China ROHS In Scope : No
    • China ROHS Label : 7
    • With Recycled Cardboard : Yes
    • Without Single Use Plastic : Yes
    • Product Contributes To Saved And Avoided Emissions : No
    • Return Indicator : N
    • WD Status : 1 - GSC certified
    • Compatibility Code : LUCC
    • Device Short Name : LUCC
    • Energy Efficiency Optimized : False
    • Halogen Free Status : Halogen free plastic parts product
    • Immunity To Microbreaks : 3 ms
    • Load Type : single-phase motor
    • Network Frequency : 40...60 Hz
    • Package Weight Lbs : 125.000 g
    • Product Availability : Non-Stock - Not normally stocked in distribution facility
    • Product Or Component Type : advanced control unit
    • Product Specific Application : basic protection and advanced functions, communication
    • Range : TeSys
    • Range Of Product : TeSys Ultra
    • Reset : manual reset
    • Returnability : No
    • Sustainable Packaging : Yes
    • Total Lifecycle Carbon Footprint : 19 kg CO2 eq.
    • Weee Label : The product must be disposed on European Union markets following specific waste collection and never end up in rubbish bins.
    • Carbon Footprint Kg Co2 Eq Total Life Cycle : 19.253594585264306
    • Relationship Type : Compatible relationship
    • Pep Code : ENVPEP2406038EN
    • Pep Verification Date : 2024-06-01
    • PCR Version : PCR-4-ed4-EN-2021 09 06
    • PSR Version : PSR-0005-ed3.1-EN-2023 12 08
    • Type Of Verification For The Pep : Independent external review
    • Product Weight In G : 125
    • Functional Unit Description : Establish and cut off the supply of a downstream installation from an electrical and/or mechanical control characterised by the composition of the poles or type of contacts X, a rated voltage of Ue, a rated current Ie, a control circuit voltage Uc, with Np poles, and if applicable the specific specifications, in the Household/Commercial or Industrial application areas, according to the appropriate use scenario, and during the reference service life of the product of 20 years
    • Functional Unit Quantity : 1
    • Functional Unit Unit : unit
    • Reference Lifetime In Y : 20
    • Energy Consumption On Product Lifetime In Kwh : 264.99
    • Recyclability Potential In : 56
    • Nbr Of Units In Pkg : 1
    • Warranty In Months : 18
    • Energy Model Manufacturing A1 A3 : France, FR
    • Energy Model Installation A5 : Electricity Mix; Low voltage; 2018; France, FR
    • Energy Model Use B6 : Electricity Mix; Low voltage; 2018; France, FR
    • Energy Model End Of Life C1 C4 : Electricity Mix; Low voltage; 2018; France, FR
    • Acidification Ap Mole Of H Equiv Total Life Cycle : 0.11200144845503109
    • Acidification Ap Mole Of H Equiv Manufacturing A1 A3 : 0.008204816473029976
    • Acidification Ap Mole Of H Equiv Distribution A4 : 0.0004309371700769619
    • Acidification Ap Mole Of H Equiv Installation A5 : 0.00002866307415070132
    • Acidification Ap Mole Of H Equiv Maintenance B2 : 0
    • Acidification Ap Mole Of H Equiv Repair B3 : 0
    • Acidification Ap Mole Of H Equiv Replacement B4 : 0
    • Acidification Ap Mole Of H Equiv Operational Energy Use B6 : 0.10248710699757026
    • Acidification Ap Mole Of H Equiv End Of Life C1 C4 : 0.0008499247402031869
    • Acidification Ap Mole Of H Equiv Benefits Loads Beyond System Boundaries D : -0.003178460599659895
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Total Life Cycle : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Manufacturing A1 A3 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Distribution A4 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Installation A5 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Maintenance B2 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Repair B3 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Replacement B4 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Operational Energy Use B6 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C End Of Life C1 C4 : 0
    • Biogenic Carbon Content Of The Associated Packaging Kg Of C Benefits Loads Beyond System Boundaries D : 0
    • Biogenic Carbon Content Of The Product Kg Of C Total Life Cycle : 0
    • Biogenic Carbon Content Of The Product Kg Of C Manufacturing A1 A3 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Distribution A4 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Installation A5 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Maintenance B2 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Repair B3 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Replacement B4 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Operational Energy Use B6 : 0
    • Biogenic Carbon Content Of The Product Kg Of C End Of Life C1 C4 : 0
    • Biogenic Carbon Content Of The Product Kg Of C Benefits Loads Beyond System Boundaries D : 0
    • Climate Change Biogenics Kg Co2 Eq Total Life Cycle : 0.06158148793219813
    • Climate Change Biogenics Kg Co2 Eq Manufacturing A1 A3 : 0.0139043696971844
    • Climate Change Biogenics Kg Co2 Eq Distribution A4 : 0
    • Climate Change Biogenics Kg Co2 Eq Installation A5 : 0.000472225569355247
    • Climate Change Biogenics Kg Co2 Eq Maintenance B2 : 0
    • Climate Change Biogenics Kg Co2 Eq Repair B3 : 0
    • Climate Change Biogenics Kg Co2 Eq Replacement B4 : 0
    • Climate Change Biogenics Kg Co2 Eq Operational Energy Use B6 : 0.04562520881168332
    • Climate Change Biogenics Kg Co2 Eq End Of Life C1 C4 : 0.0015796838539751655
    • Climate Change Biogenics Kg Co2 Eq Benefits Loads Beyond System Boundaries D : -0.0063027996934779534
    • Climate Change Fossil Fuels Kg Co2 Eq Total Life Cycle : 19.192011854447397
    • Climate Change Fossil Fuels Kg Co2 Eq Manufacturing A1 A3 : 1.152806853702242
    • Climate Change Fossil Fuels Kg Co2 Eq Distribution A4 : 0.06678082652171648
    • Climate Change Fossil Fuels Kg Co2 Eq Installation A5 : 0.009008446904214292
    • Climate Change Fossil Fuels Kg Co2 Eq Maintenance B2 : 0
    • Climate Change Fossil Fuels Kg Co2 Eq Repair B3 : 0
    • Climate Change Fossil Fuels Kg Co2 Eq Replacement B4 : 0
    • Climate Change Fossil Fuels Kg Co2 Eq Operational Energy Use B6 : 17.659361663471866
    • Climate Change Fossil Fuels Kg Co2 Eq End Of Life C1 C4 : 0.30405406384735745
    • Climate Change Fossil Fuels Kg Co2 Eq Benefits Loads Beyond System Boundaries D : -0.3251833322849448
    • Climate Change Total Kg Co2 Eq Total Life Cycle : 19.253594585264306
    • Climate Change Total Kg Co2 Eq Manufacturing A1 A3 : 1.1667124366369979
    • Climate Change Total Kg Co2 Eq Distribution A4 : 0.06678082652171648
    • Climate Change Total Kg Co2 Eq Installation A5 : 0.00948067247356954
    • Climate Change Total Kg Co2 Eq Maintenance B2 : 0
    • Climate Change Total Kg Co2 Eq Repair B3 : 0
    • Climate Change Total Kg Co2 Eq Replacement B4 : 0
    • Climate Change Total Kg Co2 Eq Operational Energy Use B6 : 17.704986872283545
    • Climate Change Total Kg Co2 Eq End Of Life C1 C4 : 0.30563377734847974
    • Climate Change Total Kg Co2 Eq Benefits Loads Beyond System Boundaries D : -0.33148613197842264
    • 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 Maintenance B2 : 0
    • Components For Re Use Kg Repair B3 : 0
    • Components For Re Use Kg Replacement B4 : 0
    • Components For Re Use Kg Operational Energy Use B6 : 0
    • Components For Re Use Kg End Of Life C1 C4 : 0
    • Components For Re Use Kg Benefits Loads Beyond System Boundaries D : 0
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Total Life Cycle : 0.0017140825703320845
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Manufacturing A1 A3 : 0.001704106451345961
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Distribution A4 : 0.00000000261093220917
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Installation A5 : 0.00000000024146276345
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Maintenance B2 : 0
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Repair B3 : 0
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Replacement B4 : 0
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Operational Energy Use B6 : 0.00000837719123860826
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb End Of Life C1 C4 : 0.0000015960753525428
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Benefits Loads Beyond System Boundaries D : -0.00006877871324795997
    • Depletion Of Abiotic Resources Fossil Fuels Mj Total Life Cycle : 3435.868935985817
    • Depletion Of Abiotic Resources Fossil Fuels Mj Manufacturing A1 A3 : 23.621753468623936
    • Depletion Of Abiotic Resources Fossil Fuels Mj Distribution A4 : 0.9252120590236771
    • Depletion Of Abiotic Resources Fossil Fuels Mj Installation A5 : 0.0978834861984234
    • Depletion Of Abiotic Resources Fossil Fuels Mj Maintenance B2 : 0
    • Depletion Of Abiotic Resources Fossil Fuels Mj Repair B3 : 0
    • Depletion Of Abiotic Resources Fossil Fuels Mj Replacement B4 : 0
    • Depletion Of Abiotic Resources Fossil Fuels Mj Operational Energy Use B6 : 3399.8413775440404
    • Depletion Of Abiotic Resources Fossil Fuels Mj End Of Life C1 C4 : 11.38270942793074
    • Depletion Of Abiotic Resources Fossil Fuels Mj Benefits Loads Beyond System Boundaries D : -6.155744265444349
    • Ecotoxicity Fresh Water Ctue Total Life Cycle : 658.1153533480596
    • Ecotoxicity Fresh Water Ctue Manufacturing A1 A3 : 527.8813692909181
    • Ecotoxicity Fresh Water Ctue Distribution A4 : 0.04486102390204525
    • Ecotoxicity Fresh Water Ctue Installation A5 : 0.10900808178778477
    • Ecotoxicity Fresh Water Ctue Maintenance B2 : 0
    • Ecotoxicity Fresh Water Ctue Repair B3 : 0
    • Ecotoxicity Fresh Water Ctue Replacement B4 : 0
    • Ecotoxicity Fresh Water Ctue Operational Energy Use B6 : 125.0389216505268
    • Ecotoxicity Fresh Water Ctue End Of Life C1 C4 : 5.041193300924777
    • Ecotoxicity Fresh Water Ctue Benefits Loads Beyond System Boundaries D : -12.338894109530475
    • Emission Of Fine Particles Incidence Of Diseases Total Life Cycle : 0.00000414325529283404
    • Emission Of Fine Particles Incidence Of Diseases Manufacturing A1 A3 : 0.0000001641853119841
    • Emission Of Fine Particles Incidence Of Diseases Distribution A4 : 0.00000000416669157933
    • Emission Of Fine Particles Incidence Of Diseases Installation A5 : 0.00000000017274967343
    • Emission Of Fine Particles Incidence Of Diseases Maintenance B2 : 0
    • Emission Of Fine Particles Incidence Of Diseases Repair B3 : 0
    • Emission Of Fine Particles Incidence Of Diseases Replacement B4 : 0
    • Emission Of Fine Particles Incidence Of Diseases Operational Energy Use B6 : 0.00000396992292940568
    • Emission Of Fine Particles Incidence Of Diseases End Of Life C1 C4 : 0.0000000048076101915
    • Emission Of Fine Particles Incidence Of Diseases Benefits Loads Beyond System Boundaries D : -0.00000011677883714364
    • Exported Energy Mj By Energy Vector Total Life Cycle : 0.0010401874654512719
    • Exported Energy Mj By Energy Vector Manufacturing A1 A3 : 0.0002158921672519197
    • Exported Energy Mj By Energy Vector Distribution A4 : 0
    • Exported Energy Mj By Energy Vector Installation A5 : 0.0001628426840520494
    • Exported Energy Mj By Energy Vector Maintenance B2 : 0
    • Exported Energy Mj By Energy Vector Repair B3 : 0
    • Exported Energy Mj By Energy Vector Replacement B4 : 0
    • Exported Energy Mj By Energy Vector Operational Energy Use B6 : 0
    • Exported Energy Mj By Energy Vector End Of Life C1 C4 : 0.0006614526141473027
    • Exported Energy Mj By Energy Vector Benefits Loads Beyond System Boundaries D : 0
    • Freshwater Eutrophication Kg P Eq Total Life Cycle : 0.0009192211854374559
    • Freshwater Eutrophication Kg P Eq Manufacturing A1 A3 : 0.00002684551783742585
    • Freshwater Eutrophication Kg P Eq Distribution A4 : 0.00000002487759522654
    • Freshwater Eutrophication Kg P Eq Installation A5 : 0.00000017508787852659
    • Freshwater Eutrophication Kg P Eq Maintenance B2 : 0
    • Freshwater Eutrophication Kg P Eq Repair B3 : 0
    • Freshwater Eutrophication Kg P Eq Replacement B4 : 0
    • Freshwater Eutrophication Kg P Eq Operational Energy Use B6 : 0.0008420529732152541
    • Freshwater Eutrophication Kg P Eq End Of Life C1 C4 : 0.00005012272891102274
    • Freshwater Eutrophication Kg P Eq Benefits Loads Beyond System Boundaries D : -0.00000089458993058614
    • Hazardous Waste Disposed Of Kg Total Life Cycle : 10.082376073912018
    • Hazardous Waste Disposed Of Kg Manufacturing A1 A3 : 10.078339572165314
    • Hazardous Waste Disposed Of Kg Distribution A4 : 0
    • Hazardous Waste Disposed Of Kg Installation A5 : 0.00024785352794040166
    • Hazardous Waste Disposed Of Kg Maintenance B2 : 0
    • Hazardous Waste Disposed Of Kg Repair B3 : 0
    • Hazardous Waste Disposed Of Kg Replacement B4 : 0
    • Hazardous Waste Disposed Of Kg Operational Energy Use B6 : 0
    • Hazardous Waste Disposed Of Kg End Of Life C1 C4 : 0.0037886482187635237
    • Hazardous Waste Disposed Of Kg Benefits Loads Beyond System Boundaries D : -5.5585210446598365
    • Human Toxicity Carcinogenic Effects Ctuh Total Life Cycle : 0.00000024520126777192
    • Human Toxicity Carcinogenic Effects Ctuh Manufacturing A1 A3 : 0.00000023982920554289
    • Human Toxicity Carcinogenic Effects Ctuh Distribution A4 : 0.0000000000012233994
    • Human Toxicity Carcinogenic Effects Ctuh Installation A5 : 0.00000000112158627492
    • Human Toxicity Carcinogenic Effects Ctuh Maintenance B2 : 0
    • Human Toxicity Carcinogenic Effects Ctuh Repair B3 : 0
    • Human Toxicity Carcinogenic Effects Ctuh Replacement B4 : 0
    • Human Toxicity Carcinogenic Effects Ctuh Operational Energy Use B6 : 0.00000000296266749047
    • Human Toxicity Carcinogenic Effects Ctuh End Of Life C1 C4 : 0.00000000128658506424
    • Human Toxicity Carcinogenic Effects Ctuh Benefits Loads Beyond System Boundaries D : -0.00000082183895666972
    • Human Toxicity Non Carcinogenic Effects Ctuh Total Life Cycle : 0.00000021861193976143
    • Human Toxicity Non Carcinogenic Effects Ctuh Manufacturing A1 A3 : 0.00000008328169984995
    • Human Toxicity Non Carcinogenic Effects Ctuh Distribution A4 : 0.00000000015314002922
    • Human Toxicity Non Carcinogenic Effects Ctuh Installation A5 : 0.00000000003949027009
    • Human Toxicity Non Carcinogenic Effects Ctuh Maintenance B2 : 0
    • Human Toxicity Non Carcinogenic Effects Ctuh Repair B3 : 0
    • Human Toxicity Non Carcinogenic Effects Ctuh Replacement B4 : 0
    • Human Toxicity Non Carcinogenic Effects Ctuh Operational Energy Use B6 : 0.00000012788775825211
    • Human Toxicity Non Carcinogenic Effects Ctuh End Of Life C1 C4 : 0.00000000724985136006
    • Human Toxicity Non Carcinogenic Effects Ctuh Benefits Loads Beyond System Boundaries D : -0.0000000291739132663
    • Impacts Related To Land Use Soil Quality Total Life Cycle : 0.7444409617611409
    • Impacts Related To Land Use Soil Quality Manufacturing A1 A3 : 0.02702812196789915
    • Impacts Related To Land Use Soil Quality Distribution A4 : 0
    • Impacts Related To Land Use Soil Quality Installation A5 : 0.00002721032590182222
    • Impacts Related To Land Use Soil Quality Maintenance B2 : 0
    • Impacts Related To Land Use Soil Quality Repair B3 : 0
    • Impacts Related To Land Use Soil Quality Replacement B4 : 0
    • Impacts Related To Land Use Soil Quality Operational Energy Use B6 : 0.5643988546295322
    • Impacts Related To Land Use Soil Quality End Of Life C1 C4 : 0.15298677483780782
    • Impacts Related To Land Use Soil Quality Benefits Loads Beyond System Boundaries D : -0.00009528726986630446
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Total Life Cycle : 488.50130887416765
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Manufacturing A1 A3 : 29.563582389112312
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Distribution A4 : 0.00016153903553277186
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Installation A5 : 0.0015193006716823431
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Maintenance B2 : 0
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Repair B3 : 0
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Replacement B4 : 0
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Operational Energy Use B6 : 458.93322715581127
    • Ionizing Radiation Human Health Kbq Of U235 Equiv End Of Life C1 C4 : 0.0028184895368854484
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Benefits Loads Beyond System Boundaries D : -2.2500214666814697
    • Marine Aquatic Eutrophication Kg Of N Equiv Total Life Cycle : 0.015396313132905392
    • Marine Aquatic Eutrophication Kg Of N Equiv Manufacturing A1 A3 : 0.0008955507544964299
    • Marine Aquatic Eutrophication Kg Of N Equiv Distribution A4 : 0.00020175443598549728
    • Marine Aquatic Eutrophication Kg Of N Equiv Installation A5 : 0.00001233314095243583
    • Marine Aquatic Eutrophication Kg Of N Equiv Maintenance B2 : 0
    • Marine Aquatic Eutrophication Kg Of N Equiv Repair B3 : 0
    • Marine Aquatic Eutrophication Kg Of N Equiv Replacement B4 : 0
    • Marine Aquatic Eutrophication Kg Of N Equiv Operational Energy Use B6 : 0.014104518608862247
    • Marine Aquatic Eutrophication Kg Of N Equiv End Of Life C1 C4 : 0.00018215619260878048
    • Marine Aquatic Eutrophication Kg Of N Equiv Benefits Loads Beyond System Boundaries D : -0.0002043107360833062
    • Materials For Energy Recovery Kg Total Life Cycle : 0
    • Materials For Energy Recovery Kg Manufacturing A1 A3 : 0
    • Materials For Energy Recovery Kg Distribution A4 : 0
    • Materials For Energy Recovery Kg Installation A5 : 0
    • Materials For Energy Recovery Kg Maintenance B2 : 0
    • Materials For Energy Recovery Kg Repair B3 : 0
    • Materials For Energy Recovery Kg Replacement B4 : 0
    • Materials For Energy Recovery Kg Operational Energy Use B6 : 0
    • Materials For Energy Recovery Kg End Of Life C1 C4 : 0
    • Materials For Energy Recovery Kg Benefits Loads Beyond System Boundaries D : 0
    • Materials For Recycling Kg Total Life Cycle : 0.07746890292789378
    • Materials For Recycling Kg Manufacturing A1 A3 : 0.01003095826386217
    • Materials For Recycling Kg Distribution A4 : 0
    • Materials For Recycling Kg Installation A5 : 0
    • Materials For Recycling Kg Maintenance B2 : 0
    • Materials For Recycling Kg Repair B3 : 0
    • Materials For Recycling Kg Replacement B4 : 0
    • Materials For Recycling Kg Operational Energy Use B6 : 0
    • Materials For Recycling Kg End Of Life C1 C4 : 0.06743794466403161
    • Materials For Recycling Kg Benefits Loads Beyond System Boundaries D : 0
    • Net Use Of Fresh Water M3 Total Life Cycle : 0.03502632307217543
    • Net Use Of Fresh Water M3 Manufacturing A1 A3 : 0.002113124562597901
    • Net Use Of Fresh Water M3 Distribution A4 : 0.00000586399056072323
    • Net Use Of Fresh Water M3 Installation A5 : 0.00001688001604264139
    • Net Use Of Fresh Water M3 Maintenance B2 : 0
    • Net Use Of Fresh Water M3 Repair B3 : 0
    • Net Use Of Fresh Water M3 Replacement B4 : 0
    • Net Use Of Fresh Water M3 Operational Energy Use B6 : 0.029856699630514225
    • Net Use Of Fresh Water M3 End Of Life C1 C4 : 0.003033754872459934
    • Net Use Of Fresh Water M3 Benefits Loads Beyond System Boundaries D : -0.0038028319514719624
    • Non Hazardous Waste Disposed Of Kg Total Life Cycle : 2.5300624288889915
    • Non Hazardous Waste Disposed Of Kg Manufacturing A1 A3 : 0.7690952894454317
    • Non Hazardous Waste Disposed Of Kg Distribution A4 : 0.002328019528550357
    • Non Hazardous Waste Disposed Of Kg Installation A5 : 0.00329205554363811
    • Non Hazardous Waste Disposed Of Kg Maintenance B2 : 0
    • Non Hazardous Waste Disposed Of Kg Repair B3 : 0
    • Non Hazardous Waste Disposed Of Kg Replacement B4 : 0
    • Non Hazardous Waste Disposed Of Kg Operational Energy Use B6 : 1.7024353345495598
    • Non Hazardous Waste Disposed Of Kg End Of Life C1 C4 : 0.05291172982181141
    • Non Hazardous Waste Disposed Of Kg Benefits Loads Beyond System Boundaries D : -0.3408588059507306
    • Ozone Depletion Kg Equivalent Cfc 11 Total Life Cycle : 0.0000004290753154385
    • Ozone Depletion Kg Equivalent Cfc 11 Manufacturing A1 A3 : 0.00000016706608314594
    • Ozone Depletion Kg Equivalent Cfc 11 Distribution A4 : 0.00000000010166716887
    • Ozone Depletion Kg Equivalent Cfc 11 Installation A5 : 0.00000000012741242854
    • Ozone Depletion Kg Equivalent Cfc 11 Maintenance B2 : 0
    • Ozone Depletion Kg Equivalent Cfc 11 Repair B3 : 0
    • Ozone Depletion Kg Equivalent Cfc 11 Replacement B4 : 0
    • Ozone Depletion Kg Equivalent Cfc 11 Operational Energy Use B6 : 0.00000026048258790414
    • Ozone Depletion Kg Equivalent Cfc 11 End Of Life C1 C4 : 0.00000000129756479102
    • Ozone Depletion Kg Equivalent Cfc 11 Benefits Loads Beyond System Boundaries D : -0.00000005028006317406
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Total Life Cycle : 0.046299029531995925
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Manufacturing A1 A3 : 0.0033136956802988842
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Distribution A4 : 0.0005709172547158513
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Installation A5 : 0.00001958497091323621
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Maintenance B2 : 0
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Repair B3 : 0
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Replacement B4 : 0
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Operational Energy Use B6 : 0.04177203995822673
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv End Of Life C1 C4 : 0.0006227916678412209
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Benefits Loads Beyond System Boundaries D : -0.0008446696312025141
    • Radioactive Waste Disposed Of Kg Total Life Cycle : 0.0016038822099891466
    • Radioactive Waste Disposed Of Kg Manufacturing A1 A3 : 0.000884061389910862
    • Radioactive Waste Disposed Of Kg Distribution A4 : 0.00000165808635259718
    • Radioactive Waste Disposed Of Kg Installation A5 : 0.00000051168005488573
    • Radioactive Waste Disposed Of Kg Maintenance B2 : 0
    • Radioactive Waste Disposed Of Kg Repair B3 : 0
    • Radioactive Waste Disposed Of Kg Replacement B4 : 0
    • Radioactive Waste Disposed Of Kg Operational Energy Use B6 : 0.000715183095409201
    • Radioactive Waste Disposed Of Kg End Of Life C1 C4 : 0.00000246795826160077
    • Radioactive Waste Disposed Of Kg Benefits Loads Beyond System Boundaries D : -0.0002175338655362013
    • Terrestrial Eutrophication Mole Of N Equiv Total Life Cycle : 0.216625309719914
    • Terrestrial Eutrophication Mole Of N Equiv Manufacturing A1 A3 : 0.00950778498072667
    • Terrestrial Eutrophication Mole Of N Equiv Distribution A4 : 0.0022204050009717734
    • Terrestrial Eutrophication Mole Of N Equiv Installation A5 : 0.00008610655483957788
    • Terrestrial Eutrophication Mole Of N Equiv Maintenance B2 : 0
    • Terrestrial Eutrophication Mole Of N Equiv Repair B3 : 0
    • Terrestrial Eutrophication Mole Of N Equiv Replacement B4 : 0
    • Terrestrial Eutrophication Mole Of N Equiv Operational Energy Use B6 : 0.2027387667426771
    • Terrestrial Eutrophication Mole Of N Equiv End Of Life C1 C4 : 0.002072246440698902
    • Terrestrial Eutrophication Mole Of N Equiv Benefits Loads Beyond System Boundaries D : -0.0022893373558418536
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 1.6833234303503666
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 1.6833234303503666
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Maintenance B2 : 0
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Repair B3 : 0
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Replacement B4 : 0
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 0
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0
    • 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
    • Total Use Of Primary Energy During The Life Cycle Mj Total Life Cycle : 3750.9897356745214
    • Total Use Of Primary Energy During The Life Cycle Mj Manufacturing A1 A3 : 24.36596700828304
    • Total Use Of Primary Energy During The Life Cycle Mj Distribution A4 : 0.9264467117839302
    • Total Use Of Primary Energy During The Life Cycle Mj Installation A5 : 0.11080377781979002
    • Total Use Of Primary Energy During The Life Cycle Mj Maintenance B2 : 0
    • Total Use Of Primary Energy During The Life Cycle Mj Repair B3 : 0
    • Total Use Of Primary Energy During The Life Cycle Mj Replacement B4 : 0
    • Total Use Of Primary Energy During The Life Cycle Mj Operational Energy Use B6 : 3714.164245233564
    • Total Use Of Primary Energy During The Life Cycle Mj End Of Life C1 C4 : 11.422272943070737
    • Total Use Of Primary Energy During The Life Cycle Mj Benefits Loads Beyond System Boundaries D : -6.396670255841339
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 315.120799688705
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 0.7442135396590932
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.0012346527602532288
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.012920291621366611
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Maintenance B2 : 0
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Repair B3 : 0
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Replacement B4 : 0
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 314.3228676895243
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0.03956351513999517
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -0.24092599039699072
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 1.6833234303503666
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 1.6833234303503666
    • 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 Maintenance B2 : 0
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Repair B3 : 0
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Replacement B4 : 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 Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : 0
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 3434.185612555467
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 21.93843003827358
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.9252120590236771
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.0978834861984234
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Maintenance B2 : 0
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Repair B3 : 0
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Replacement B4 : 0
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 3399.8413775440404
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 11.38270942793074
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -6.155744265444349
    • 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 Maintenance B2 : 0
    • Use Of Non Renewable Secondary Fuels Mj Repair B3 : 0
    • Use Of Non Renewable Secondary Fuels Mj Replacement B4 : 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 Non Renewable Secondary Fuels Mj Benefits Loads Beyond System Boundaries D : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 0.1717891054472763
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 0.1717891054472763
    • 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 Maintenance B2 : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Repair B3 : 0
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Replacement B4 : 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 Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -0.1375790513833992
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 314.94901058325775
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 0.5724244342118169
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.0012346527602532288
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.012920291621366611
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Maintenance B2 : 0
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Repair B3 : 0
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Replacement B4 : 0
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Operational Energy Use B6 : 314.3228676895243
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0.03956351513999517
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -0.10334693901359153
    • 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 Maintenance B2 : 0
    • Use Of Renewable Secondary Fuels Mj Repair B3 : 0
    • Use Of Renewable Secondary Fuels Mj Replacement B4 : 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 Renewable Secondary Fuels Mj Benefits Loads Beyond System Boundaries D : 0
    • Use Of Secondary Materials Kg Total Life Cycle : 0.00000089748023715415
    • Use Of Secondary Materials Kg Manufacturing A1 A3 : 0.00000089748023715415
    • Use Of Secondary Materials Kg Distribution A4 : 0
    • Use Of Secondary Materials Kg Installation A5 : 0
    • Use Of Secondary Materials Kg Maintenance B2 : 0
    • Use Of Secondary Materials Kg Repair B3 : 0
    • Use Of Secondary Materials Kg Replacement B4 : 0
    • Use Of Secondary Materials Kg Operational Energy Use B6 : 0
    • Use Of Secondary Materials Kg End Of Life C1 C4 : 0
    • Use Of Secondary Materials Kg Benefits Loads Beyond System Boundaries D : 0
    • Water Use M3 Eq Total Life Cycle : 1.48817068346418
    • Water Use M3 Eq Manufacturing A1 A3 : 0.09009818059846192
    • Water Use M3 Eq Distribution A4 : 0.0002518583945830626
    • Water Use M3 Eq Installation A5 : 0.0007247709215762176
    • Water Use M3 Eq Maintenance B2 : 0
    • Water Use M3 Eq Repair B3 : 0
    • Water Use M3 Eq Replacement B4 : 0
    • Water Use M3 Eq Operational Energy Use B6 : 1.2823452491305856
    • Water Use M3 Eq End Of Life C1 C4 : 0.114750624418973
    • Water Use M3 Eq Benefits Loads Beyond System Boundaries D : -0.1633229738192484
  • General Attributes
    • Product Or Component Type : advanced control unit
    • Range Of Product : TeSys Ultra
  • Environment Attributes
    • ROHS Exemption Information : Yes
    • China ROHS url : https://checkaproduct.se.com/DistantRequestDispatcher.aspx?action=exportPdfRoHSChina&pid=640770&lang=en-us
    • Take Back : No
    • Halogene Performance : Halogen free plastic parts product
    • Recycled Metal Content At Cr Level : 0 %
    • China ROHS Regulation : Product out of China RoHS scope. Substance declaration for your information.
    • Mercury Free : Yes
    • Carbon Footprint : 19.253594585264306
    • Ambient Air Temperature For Operation : -25-70 °C
    • Circularity Profile : ENVEOLI2406038EN
    • Environmental Disclosure : ENVPEP2406038EN
    • EU ROHS Directive : Compliant with Exemptions
    • Halogen Content Performance : Halogen free plastic parts product
    • Operating Altitude : 6561.68 ft (2000 m)
    • Packaging Made With Recycled Cardboard : Yes
    • Packaging Without Single Use Plastic : Yes
    • Reach Regulation : Reference contains Substances of Very High Concern above the threshold
    • Pep Code : ENVPEP2406038EN
    • Pep Verification Date : 2024-06-01
    • PCR Version : PCR-4-ed4-EN-2021 09 06
    • PSR Version : PSR-0005-ed3.1-EN-2023 12 08
    • Type Of Verification For The Pep : Independent external review
  • Contractual Warranty Attributes
    • Warranty Period : 18 months
    • Warranty : 18 months
  • Specifications
    • Country of Origin : France