TeSys Deca control relay - 3 NO + 2 NC - <= 690 V - 110 V DC standard coil

RELAY 600V 10AMP TESYS +OPTION

SQDCAD326FD CAD326FD 3389110847246
140.90 / EA
http://schema.org/OutOfStock
  • Country of Origin: Indonesia
  • Warranty Length: 18 mth
TeSys Deca control relay, 5 contacts (3NO + 2NC), 10A/690V, for control of electromagnetic loads AC-15/DC-13. It provides a 110V DC control circuit with no inrush consumption and equipped with a surge suppression device, connection by lugs. For high operating rates until 180 cycles/min and ambient temperature -40/+60°C, it procures high reliability and durability. Compact (45mm width), for clipping on 35mm DIN rail or fixing by screw. Multi standards certified (IEC, UL, CSA, CCC, EAC, Marine).
QTY
  • Product Description
  • Features
  • Specifications
TeSys Deca control relay, 5 contacts (3NO + 2NC), 10A/690V, for control of electromagnetic loads AC-15/DC-13. It provides a 110V DC control circuit with no inrush consumption and equipped with a surge suppression device, connection by lugs. For high operating rates until 180 cycles/min and ambient temperature -40/+60°C, it procures high reliability and durability. Compact (45mm width), for clipping on 35mm DIN rail or fixing by screw. Multi standards certified (IEC, UL, CSA, CCC, EAC, Marine).
  • Connections Terminals
    • lugs-ring terminals 8 mm)
  • ITH Conventional Free Air Thermal Current
    • 10 A (at 60 °C)
  • IP Degree Of Protection
    • IP2X front face VDE 0106
  • Prop 65
    • WARNING: This product can expose you to chemicals including: Antimony oxide & Antimony trioxide, which is known to the State of California to cause cancer. For more information go to www.P65Warnings.ca.gov
  • Carbon Footprint Of The Installation Phase A5
    • 0.048458574119927315
    • 0 kg CO2 eq.
  • Non Overlap Time
    • 1.5 ms on energisation between NC and NO contact
    • 1.5 ms on de-energisation between NC and NO contact
  • Carbon Footprint Of The End Of Life Phase C1 To C4
    • 2 kg CO2 eq.
    • 1.5333878987247123
  • Standards
    • EN/IEC 60947-5-1
    • GB/T 14048.5
    • UL 60947-5-1
    • CSA C22.2 No 60947-5-1
    • JIS C8201-5-1
  • Operating Time
    • 53...72 ms coil energisation and NO closing
    • 16...24 ms coil de-energisation and NO opening
    • 47...63 ms coil energisation and NC opening
    • 15...25 ms coil de-energisation and NC closing
  • Control Circuit Type
    • DC standard
  • UC Control Circuit Voltage
    • 110 V DC
  • ICW Rated Short Time Withstand Current
    • 100 A - 1 s
    • 120 A - 500 ms
    • 140 A - 100 ms
  • Carbon Footprint Of The Manufacturing Phase A1 To A3
    • 3 kg CO2 eq.
    • 3.1662563038543174
  • Protective Treatment
    • TH IEC 60068
  • UI Rated Insulation Voltage
    • 600 V UL
    • 600 V CSA
    • 690 V IEC 60947-5-1
  • Market Segmentation
    • Commercial
    • Industrial
  • Persona Type Names
    • End User
    • Contractor
    • Original Equipment Manufacturer
    • OEM - Control Panelbuilder
    • Panel Builder
    • System Integrator
  • Inrush Power In W
    • 5.4-5.4 W 20 °C)
  • Carbon Footprint Of The Use Phase B2 B3 B4 B6
    • 33 kg CO2 eq.
    • 32.70348648648649
  • Persona Type Ids
    • EU
    • LC
    • OM
    • OM8
    • PB
    • SI
  • Carbon Footprint Of The Distribution Phase A4
    • 0.17499315126665246
    • 0.2 kg CO2 eq.
  • Mechanical Robustness
    • shocks control relay open10 Gn for 11 ms IEC 60068-2-27
    • shocks control relay closed15 Gn for 11 ms IEC 60068-2-27
    • vibrations control relay open2 Gn, 5...300 Hz IEC 60068-2-6
    • vibrations control relay closed4 Gn, 5...300 Hz IEC 60068-2-6
  • Control Circuit Voltage Limits
    • 0.1...0.25 Uc (-40-70 °C):drop-out DC
    • 0.7...1.25 Uc (-40-60 °C):operational DC
    • 1...1.25 Uc (60-70 °C):operational DC
  • Hold In Power Consumption In W
    • 5.4-5.4 W 20 °C
  • Market Segmentation Id
    • COMMERCIAL
    • INDUSTRIAL
  • IRMS Rated Making Capacity
    • 140 A AC IEC 60947-5-1
    • 250 A DC IEC 60947-5-1
  • Associated Fuse Rating
    • 10 A gG conforming to IEC 60947-5-1
  • Ambient Air Temperature For Operation
    • -40-60 °C
    • 60-70 °C with derating
  • UE Rated Operational Voltage
    • <= 690 V AC 25...400 Hz
  • Range
    • TeSys
    • TeSys Deca
  • UIMP Rated Impulse Withstand Voltage
    • 6 kV IEC 60947
  • Complementary Attributes
    • Maximum Operating Rate : 180 cyc/mn
    • Minimum Switching Current : 5 mA
    • Minimum Switching Voltage : 17 V
  • Important Information Attributes
    • Local Data Status : Publishable
    • Local Publishable Date : 2025-07-30
    • Device Type : LV equipment - LV contactor
    • Serviceability : No
    • Traceability : No
    • Manufacturing Carbon Footprint : 3.1662563038543174
    • Distribution Carbon Footprint : 0.17499315126665246
    • Installation Carbon Footprint : 0.048458574119927315
    • Use Carbon Footprint : 32.70348648648649
    • End Of Life Carbon Footprint : 1.5333878987247123
    • Legacy WEEE Scope : In
    • WEEE Product Category : 5
    • Scope Perimeter : At least in Europe
    • EOLI Availability Display : Yes
    • End Of Life Doc Ref : ENVEOLI1102030EN
    • 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 Full Compliance Status : Compliant with Exemptions
    • ROHS EUR Full Compliance Status Id : COMPLIANT_WITH_EXEMPTIONS
    • China ROHS In Scope : No
    • China ROHS Label : 3
    • Green Premium Status For Reporting : Green Premium product
    • With Recycled Cardboard : Yes
    • Without Single Use Plastic : No
    • Product Contributes To Saved And Avoided Emissions : No
    • Return Indicator : Y
    • WD Status : 1 - GSC certified
    • Tier Id : 1
    • Tier : 1
    • Function Option Id : STANDARD
    • Function Option : Standard
    • Compatibility Code : CAD
    • Contactor Application : control circuit
    • Device Short Name : CAD
    • Insulation Resistance : > 10 MOhm
    • Package Weight Lbs : 536.0 g
    • Product Availability : Stock - Normally stocked in distribution facility
    • Product Or Component Type : control relay
    • Range Of Product : TeSys D control relay
    • Returnability : Yes
    • Sustainable Packaging : Yes
    • Total Lifecycle Carbon Footprint : 38 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 : 37.6265824144521
    • Pep Code : ENVPEP110230EN
    • Pep Verification Date : 2025-08-05
    • PCR Version : PEP-PCR-ed4-2021 09 06
    • PSR Version : PSR-0005-ed2-2016 03 29
    • Type Of Verification For The Pep : Independent external review
    • Product Weight In G : 625
    • Functional Unit Description : Switch on and off during 20 years electrical power supply of a downstream installation with an electrical and/or mechanical control.The functional unit is characterized by a type 3NO, a control circuit voltage 24V DC,a power circuit voltage 690V and a rated operational current 9A.
    • Functional Unit Quantity : 1
    • Functional Unit Unit : unit
    • Reference Lifetime In Y : 20
    • Energy Consumption On Product Lifetime In Kwh : 489.465
    • Recyclability Potential In : 75
    • Nbr Of Units In Pkg : 1
    • Warranty In Months : 18
    • Energy Model Manufacturing A1 A3 : Electricity Mix; Production mix; Low voltage; FR
    • Energy Model Installation A5 : Electricity Mix; Production mix; Low voltage; FR
    • Energy Model Use B6 : Electricity Mix; Production mix; Low voltage; FR
    • Energy Model End Of Life C1 C4 : Electricity Mix; Production mix; Low voltage; FR
    • Acidification Ap Mole Of H Equiv Total Life Cycle : 0.24312735067602986
    • Acidification Ap Mole Of H Equiv Manufacturing A1 A3 : 0.04560487168619628
    • Acidification Ap Mole Of H Equiv Distribution A4 : 0.0007604127964579543
    • Acidification Ap Mole Of H Equiv Installation A5 : 0.00019234440238378482
    • 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 : 0.18930047297297298
    • Acidification Ap Mole Of H Equiv End Of Life C1 C4 : 0.007269248818018888
    • Acidification Ap Mole Of H Equiv Benefits Loads Beyond System Boundaries D : -3.6542891602755274
    • 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 : 0.1680257359185334
    • Climate Change Biogenics Kg Co2 Eq Manufacturing A1 A3 : 0.04900918715537766
    • Climate Change Biogenics Kg Co2 Eq Installation A5 : 0.002153984313680814
    • Climate Change Biogenics Kg Co2 Eq Operational Energy Use B6 : 0.08427460135135136
    • Climate Change Biogenics Kg Co2 Eq End Of Life C1 C4 : 0.03258796309812356
    • Climate Change Biogenics Kg Co2 Eq Benefits Loads Beyond System Boundaries D : -4.227343147170687
    • Climate Change Fossil Fuels Kg Co2 Eq Total Life Cycle : 37.45819442298789
    • Climate Change Fossil Fuels Kg Co2 Eq Manufacturing A1 A3 : 3.117210100696556
    • Climate Change Fossil Fuels Kg Co2 Eq Distribution A4 : 0.17499315126665246
    • Climate Change Fossil Fuels Kg Co2 Eq Installation A5 : 0.046304705481253955
    • Climate Change Fossil Fuels Kg Co2 Eq Operational Energy Use B6 : 32.61891891891892
    • Climate Change Fossil Fuels Kg Co2 Eq End Of Life C1 C4 : 1.5007675466245036
    • Climate Change Fossil Fuels Kg Co2 Eq Benefits Loads Beyond System Boundaries D : -49.50890318755106
    • Climate Change Total Kg Co2 Eq Total Life Cycle : 37.6265824144521
    • Climate Change Total Kg Co2 Eq Manufacturing A1 A3 : 3.1662563038543174
    • Climate Change Total Kg Co2 Eq Distribution A4 : 0.17499315126665246
    • Climate Change Total Kg Co2 Eq Installation A5 : 0.048458574119927315
    • Climate Change Total Kg Co2 Eq Operational Energy Use B6 : 32.70348648648649
    • Climate Change Total Kg Co2 Eq End Of Life C1 C4 : 1.5333878987247123
    • Climate Change Total Kg Co2 Eq Benefits Loads Beyond System Boundaries D : -53.73566795968451
    • 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 : 0.003782299074684377
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Manufacturing A1 A3 : 0.003734220590421784
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Distribution A4 : 0.00000000001504122122
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Installation A5 : 0.00000000161702092911
    • 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 : 0.00001547385135135135
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb End Of Life C1 C4 : 0.00003260300084909174
    • Depletion Of Abiotic Resources Elements Kg Equivalent Sb Benefits Loads Beyond System Boundaries D : -0.029799038668563153
    • Depletion Of Abiotic Resources Fossil Fuels Mj Total Life Cycle : 6409.275329617181
    • Depletion Of Abiotic Resources Fossil Fuels Mj Manufacturing A1 A3 : 61.844485981757714
    • Depletion Of Abiotic Resources Fossil Fuels Mj Distribution A4 : 2.1248342118040315
    • Depletion Of Abiotic Resources Fossil Fuels Mj Installation A5 : 0.5044008699750383
    • 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 : 6279.846621621622
    • Depletion Of Abiotic Resources Fossil Fuels Mj End Of Life C1 C4 : 64.95498693202231
    • Depletion Of Abiotic Resources Fossil Fuels Mj Benefits Loads Beyond System Boundaries D : -866.7296958029967
    • Ecotoxicity Fresh Water Ctue Total Life Cycle : 1078.2289471426109
    • Ecotoxicity Fresh Water Ctue Manufacturing A1 A3 : 727.7924443577454
    • Ecotoxicity Fresh Water Ctue Distribution A4 : 0.7176593137053401
    • Ecotoxicity Fresh Water Ctue Installation A5 : 0.33070327879179845
    • 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 : 230.96006756756756
    • Ecotoxicity Fresh Water Ctue End Of Life C1 C4 : 118.42807262480088
    • Ecotoxicity Fresh Water Ctue Benefits Loads Beyond System Boundaries D : -1633.2154301519474
    • Emission Of Fine Particles Incidence Of Diseases Total Life Cycle : 0.00000825943571796679
    • Emission Of Fine Particles Incidence Of Diseases Manufacturing A1 A3 : 0.00000088674147209142
    • Emission Of Fine Particles Incidence Of Diseases Distribution A4 : 0.00000000206398915789
    • Emission Of Fine Particles Incidence Of Diseases Installation A5 : 0.00000000127959693238
    • 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 : 0.00000733291418918919
    • Emission Of Fine Particles Incidence Of Diseases End Of Life C1 C4 : 0.0000000364364705959
    • Emission Of Fine Particles Incidence Of Diseases Benefits Loads Beyond System Boundaries D : -0.00002347971301170354
    • Exported Energy Mj By Energy Vector Total Life Cycle : 0
    • Exported Energy Mj By Energy Vector Manufacturing A1 A3 : 0
    • Exported Energy Mj By Energy Vector Distribution A4 : 0
    • Exported Energy Mj By Energy Vector Installation A5 : 0
    • 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
    • Exported Energy Mj By Energy Vector Benefits Loads Beyond System Boundaries D : 0
    • Freshwater Eutrophication Kg P Eq Total Life Cycle : 0.0027438244242042665
    • Freshwater Eutrophication Kg P Eq Manufacturing A1 A3 : 0.00003055555321727012
    • Freshwater Eutrophication Kg P Eq Distribution A4 : 0.00000002049067081926
    • Freshwater Eutrophication Kg P Eq Installation A5 : 0.00000035006727503852
    • 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 : 0.0015553385135135137
    • Freshwater Eutrophication Kg P Eq End Of Life C1 C4 : 0.001157559799527625
    • Freshwater Eutrophication Kg P Eq Benefits Loads Beyond System Boundaries D : -0.00007115401058113648
    • Hazardous Waste Disposed Of Kg Total Life Cycle : 57.46852420966346
    • Hazardous Waste Disposed Of Kg Manufacturing A1 A3 : 56.836914909353304
    • Hazardous Waste Disposed Of Kg Distribution A4 : 0.00014497548683401344
    • Hazardous Waste Disposed Of Kg Installation A5 : 0.0005728342043810086
    • 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 : 0.6308914906189335
    • Hazardous Waste Disposed Of Kg Benefits Loads Beyond System Boundaries D : -2725.6502004866024
    • Human Toxicity Carcinogenic Effects Ctuh Total Life Cycle : 0.00000778216098763631
    • Human Toxicity Carcinogenic Effects Ctuh Manufacturing A1 A3 : 0.00000775820707449968
    • Human Toxicity Carcinogenic Effects Ctuh Distribution A4 : 0.00000000000246896736
    • Human Toxicity Carcinogenic Effects Ctuh Installation A5 : 0.00000001732464586542
    • 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 : 0.00000000547232702703
    • Human Toxicity Carcinogenic Effects Ctuh End Of Life C1 C4 : 0.00000000115447127683
    • Human Toxicity Carcinogenic Effects Ctuh Benefits Loads Beyond System Boundaries D : -0.00041617554179479253
    • Human Toxicity Non Carcinogenic Effects Ctuh Total Life Cycle : 0.00000094846822531951
    • Human Toxicity Non Carcinogenic Effects Ctuh Manufacturing A1 A3 : 0.00000061406077703532
    • Human Toxicity Non Carcinogenic Effects Ctuh Distribution A4 : 0.00000000046217949226
    • Human Toxicity Non Carcinogenic Effects Ctuh Installation A5 : 0.00000000025094536116
    • 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 : 0.00000023622540540541
    • Human Toxicity Non Carcinogenic Effects Ctuh End Of Life C1 C4 : 0.00000009746891802538
    • Human Toxicity Non Carcinogenic Effects Ctuh Benefits Loads Beyond System Boundaries D : -0.0000494742006853168
    • Impacts Related To Land Use Soil Quality Total Life Cycle : 4.043487001260559
    • Impacts Related To Land Use Soil Quality Manufacturing A1 A3 : 0.0018844615463280243
    • Impacts Related To Land Use Soil Quality Distribution A4 : 0
    • Impacts Related To Land Use Soil Quality Installation A5 : 0
    • 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 : 1.0424966216216218
    • Impacts Related To Land Use Soil Quality End Of Life C1 C4 : 2.9991059180926083
    • Impacts Related To Land Use Soil Quality Benefits Loads Beyond System Boundaries D : 0
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Total Life Cycle : 900.446589702584
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Manufacturing A1 A3 : 52.686495642135235
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Distribution A4 : 0.0003879739749790801
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Installation A5 : 0.002271741471262419
    • 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 : 847.6992567567568
    • Ionizing Radiation Human Health Kbq Of U235 Equiv End Of Life C1 C4 : 0.0581775882456704
    • Ionizing Radiation Human Health Kbq Of U235 Equiv Benefits Loads Beyond System Boundaries D : -6112.614418550844
    • Marine Aquatic Eutrophication Kg Of N Equiv Total Life Cycle : 0.03016883069860206
    • Marine Aquatic Eutrophication Kg Of N Equiv Manufacturing A1 A3 : 0.0025187076121629365
    • Marine Aquatic Eutrophication Kg Of N Equiv Distribution A4 : 0.0003494426299983014
    • Marine Aquatic Eutrophication Kg Of N Equiv Installation A5 : 0.00005093980302967725
    • 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 : 0.026052851351351353
    • Marine Aquatic Eutrophication Kg Of N Equiv End Of Life C1 C4 : 0.0011968893020597917
    • Marine Aquatic Eutrophication Kg Of N Equiv Benefits Loads Beyond System Boundaries D : -0.05589185009850683
    • 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 : 0.47380483050516153
    • Materials For Recycling Kg Manufacturing A1 A3 : 0
    • Materials For Recycling Kg Distribution A4 : 0
    • Materials For Recycling Kg Installation A5 : 0.026628386714425828
    • 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 : 0.44717644379073573
    • Materials For Recycling Kg Benefits Loads Beyond System Boundaries D : 0
    • Net Use Of Fresh Water M3 Total Life Cycle : 0.1525385772894494
    • Net Use Of Fresh Water M3 Manufacturing A1 A3 : 0.06490524667881986
    • Net Use Of Fresh Water M3 Distribution A4 : 0.0002066996708080257
    • Net Use Of Fresh Water M3 Installation A5 : 0.000481763271017553
    • 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 : 0.055148121621621624
    • Net Use Of Fresh Water M3 End Of Life C1 C4 : 0.03179674604718233
    • Net Use Of Fresh Water M3 Benefits Loads Beyond System Boundaries D : -4.025721609189608
    • Non Hazardous Waste Disposed Of Kg Total Life Cycle : 5.4553564058012585
    • Non Hazardous Waste Disposed Of Kg Manufacturing A1 A3 : 2.020495355086342
    • Non Hazardous Waste Disposed Of Kg Distribution A4 : 0.0001781048089669915
    • Non Hazardous Waste Disposed Of Kg Installation A5 : 0.1576419001495201
    • 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 : 3.1446047297297297
    • Non Hazardous Waste Disposed Of Kg End Of Life C1 C4 : 0.13243631602669909
    • Non Hazardous Waste Disposed Of Kg Benefits Loads Beyond System Boundaries D : -6.7642117355028875
    • Ozone Depletion Kg Equivalent Cfc 11 Total Life Cycle : 0.0000011314603118915
    • Ozone Depletion Kg Equivalent Cfc 11 Manufacturing A1 A3 : 0.00000047071630780631
    • Ozone Depletion Kg Equivalent Cfc 11 Distribution A4 : 0.00000015442613494248
    • Ozone Depletion Kg Equivalent Cfc 11 Installation A5 : 0.00000000320743660651
    • 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 : 0.00000048113912162162
    • Ozone Depletion Kg Equivalent Cfc 11 End Of Life C1 C4 : 0.00000002197131091459
    • Ozone Depletion Kg Equivalent Cfc 11 Benefits Loads Beyond System Boundaries D : -0.00001495909196311706
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Total Life Cycle : 0.09363383285436827
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Manufacturing A1 A3 : 0.011087796488869935
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Distribution A4 : 0.0012415398549345455
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Installation A5 : 0.00010266041235962546
    • 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 : 0.07715783783783785
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv End Of Life C1 C4 : 0.0040439982603663206
    • Photochemical Ozone Formation Kg Of Nmvoc Equiv Benefits Loads Beyond System Boundaries D : -0.4156665717620233
    • Radioactive Waste Disposed Of Kg Total Life Cycle : 0.0034638499502758985
    • Radioactive Waste Disposed Of Kg Manufacturing A1 A3 : 0.0020785642088250117
    • Radioactive Waste Disposed Of Kg Distribution A4 : 0.00003479157198999938
    • Radioactive Waste Disposed Of Kg Installation A5 : 0.0000211592723623057
    • 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 : 0.0013210662162162162
    • Radioactive Waste Disposed Of Kg End Of Life C1 C4 : 0.00000826868088236571
    • Radioactive Waste Disposed Of Kg Benefits Loads Beyond System Boundaries D : -0.004980156095639336
    • Terrestrial Eutrophication Mole Of N Equiv Total Life Cycle : 0.4201422836979904
    • Terrestrial Eutrophication Mole Of N Equiv Manufacturing A1 A3 : 0.027240307503823367
    • Terrestrial Eutrophication Mole Of N Equiv Distribution A4 : 0.003786505693788076
    • Terrestrial Eutrophication Mole Of N Equiv Installation A5 : 0.00038446902225341934
    • 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 : 0.3744833108108109
    • Terrestrial Eutrophication Mole Of N Equiv End Of Life C1 C4 : 0.014247690667314636
    • Terrestrial Eutrophication Mole Of N Equiv Benefits Loads Beyond System Boundaries D : -0.6571150148072928
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 3.501482475437315
    • Total Use Of Non Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 3.501482475437315
    • 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 : 6992.684334559873
    • Total Use Of Primary Energy During The Life Cycle Mj Manufacturing A1 A3 : 63.83756636007898
    • Total Use Of Primary Energy During The Life Cycle Mj Distribution A4 : 2.1248342118040315
    • Total Use Of Primary Energy During The Life Cycle Mj Installation A5 : 0.5405840123046318
    • 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 : 6860.443243243243
    • Total Use Of Primary Energy During The Life Cycle Mj End Of Life C1 C4 : 65.73810673244222
    • Total Use Of Primary Energy During The Life Cycle Mj Benefits Loads Beyond System Boundaries D : -957.9625741768788
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 583.3995496498798
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 1.9930803783212732
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.00001423496641649541
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.03619123958011473
    • 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 : 580.5865540540541
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0.7837097429578906
    • Total Use Of Renewable Primary Energy Resources Primary Energy And Primary Energy Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -91.23056487373312
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 3.501482475437315
    • Use Of Non Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 3.501482475437315
    • 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 : 6405.773847141744
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 58.34300350632039
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 2.1248342118040315
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.5044008699750383
    • 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 : 6279.846621621622
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 64.95498693202231
    • Use Of Non Renewable Primary Energy Excluding Non Renewable Primary Energy Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -866.7296958029967
    • 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 : 0.5331229743242648
    • Use Of Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 0.5331229743242648
    • 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 : -0.47931096085966496
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Total Life Cycle : 582.866403540554
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Manufacturing A1 A3 : 1.4599342689955186
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Distribution A4 : 0.00001423496641649541
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Installation A5 : 0.03619123958011473
    • 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 : 580.5865540540541
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj End Of Life C1 C4 : 0.7837097429578906
    • Use Of Renewable Primary Energy Excluding Renewable Primary Energy Resources Used As Raw Materials Mj Benefits Loads Beyond System Boundaries D : -90.75167034290025
    • 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
    • Use Of Secondary Materials Kg Manufacturing A1 A3 : 0
    • 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 : 6.415096816724025
    • Water Use M3 Eq Manufacturing A1 A3 : 2.7748120786518107
    • Water Use M3 Eq Distribution A4 : 0.008877941146591954
    • Water Use M3 Eq Installation A5 : 0.020691945332217604
    • 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 : 2.368596621621622
    • Water Use M3 Eq End Of Life C1 C4 : 1.2421182299717837
    • Water Use M3 Eq Benefits Loads Beyond System Boundaries D : -172.89943363185182
    • Air Pollution M3 Total Life Cycle : 0
    • Air Pollution M3 Manufacturing A1 A3 : 0
    • Air Pollution M3 Distribution A4 : 0
    • Air Pollution M3 Installation A5 : 0
    • Air Pollution M3 Maintenance B2 : 0
    • Air Pollution M3 Repair B3 : 0
    • Air Pollution M3 Replacement B4 : 0
    • Air Pollution M3 Operational Energy Use B6 : 0
    • Air Pollution M3 End Of Life C1 C4 : 0
    • Air Pollution M3 Benefits Loads Beyond System Boundaries D : 0
    • Water Pollution M3 Total Life Cycle : 0
    • Water Pollution M3 Manufacturing A1 A3 : 0
    • Water Pollution M3 Distribution A4 : 0
    • Water Pollution M3 Installation A5 : 0
    • Water Pollution M3 Maintenance B2 : 0
    • Water Pollution M3 Repair B3 : 0
    • Water Pollution M3 Replacement B4 : 0
    • Water Pollution M3 Operational Energy Use B6 : 0
    • Water Pollution M3 End Of Life C1 C4 : 0
    • Water Pollution M3 Benefits Loads Beyond System Boundaries D : 0
    • Acidification Of Soil And Water Kg Equivalent So2 Total Life Cycle : 0
    • Photochemical Ozone Formation Kg Equivalent C2h4 Total Life Cycle : 0
    • Water Eutrophication Kg Equivalent P04 3 Total Life Cycle : 0
  • General Attributes
    • Product Or Component Type : control relay
    • Range Of Product : TeSys D control relay
  • Environment Attributes
    • ROHS Exemption Information : Yes
    • China ROHS url : https://checkaproduct.se.com/DistantRequestDispatcher.aspx?action=exportPdfRoHSChina&pid=596542&lang=en-us
    • Take Back : No
    • 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 : 37.6265824144521
    • Circularity Profile : ENVEOLI1102030EN
    • Environmental Disclosure : ENVPEP110230EN
    • EU ROHS Directive : Compliant with Exemptions
    • Operating Altitude : 0...9842.52 ft (0...3000 m)
    • Packaging Made With Recycled Cardboard : Yes
    • Packaging Without Single Use Plastic : No
    • Reach Regulation : Reference contains Substances of Very High Concern above the threshold
    • Pep Code : ENVPEP110230EN
    • Pep Verification Date : 2025-08-05
    • PCR Version : PEP-PCR-ed4-2021 09 06
    • PSR Version : PSR-0005-ed2-2016 03 29
    • Type Of Verification For The Pep : Independent external review
  • Contractual Warranty Attributes
    • Warranty Period : 18 months
    • Warranty : 18 months
  • Specifications
    • Country of Origin : Indonesia