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Siemens

3RT2017-1AV01-Z X95

3RT2017-1AV01-Z X95 Siemens

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Description for 3RT2017-1AV01-Z X95 Siemens

3RT2017-1AV01-Z X95 Siemens - Power contactor, AC-3 12 A, 5.5 kW / 400 V 1 NO, 400 V AC, 50 / 60 Hz 3-pole, Size S00 screw terminal Reusable packaging = 144

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Product

Article Number (Market Facing Number) 3RT2017-1AV01-Z X95
Product Description power contactor, AC-3e/AC-3, 12 A, 5.5 kW / 400 V, 3-pole, 400 V AC, 50/60 Hz, auxiliary contacts: 1 NO, screw terminal, size: S00, reusable packaging, pack = 144 units
Product family Ordering Data Overview
Product Lifecycle (PLM) PM300:Active Product

Delivery information

Export Control Regulations AL : N / ECCN : N
Estimated dispatch time (Working Days) On request
Net Weight (kg) 0,233 Kg
Packaging Dimension 50,00 x 61,50 x 77,50
Package size unit of measure MM
Quantity Unit 1 Piece
Packaging Quantity 1
Minimum order quantity 144

Additional Product Information

EAN 4047621113524
UPC Not available
Commodity Code 85364900
LKZ_FDB/ CatalogID CC-IC10
Product Group 5330
Group Code R711
Country of origin Germany
Compliance with the substance restrictions according to RoHS directive Since: 01.10.2009
Product class A: Standard product which is a stock item could be returned within the returns guidelines/period.
WEEE (2012/19/EU) Take-Back Obligation Yes
REACH Art. 33 Duty to inform according to the current list of candidates Reach Information There is currently no information on SVHC (Substances of Very High Concern http://echa.europa.eu/web/guest/candidate-list-table) from the supply chain and our established procedures for screening our products for Substances of Very High Concern. We compare our products regularly with the information of the upstream users with regard to the substances indicated in the candidate list in accordance with the requirements of the REACH regulation. As soon as we have new findings, our information will be updated accordingly.
SCIP number

General Technical Data

Size Of Contactor S00

Product Extension

Function Module For Communication No
Auxiliary Switch Yes
Power Loss [W] For Rated Value Of The Current
At Ac In Hot Operating State 1.5 W
At Ac In Hot Operating State Per Pole 0.5 W
Without Load Current Share Typical 1.5 W
Type Of Calculation Of Power Loss Depending On Pole Quadratic
Surge Voltage Resistance
Of Main Circuit Rated Value 6 Kv
Of Auxiliary Circuit Rated Value 6 Kv
Maximum Permissible Voltage For Protective Separation Between
Coil And Main Contacts According To En 60947-1400 V
Shock Resistance At Rectangular Impulse
At Ac 7,3G / 5 Ms, 4,7G / 10 Ms
Shock Resistance With Sine Pulse
At Ac 11,4G / 5 Ms, 7,3G / 10 Ms
Mechanical Service Life (Operating Cycles)
Of Contactor Typical 30 000 000
Of The Contactor With Added Electronically Optimized
Auxiliary Switch Block Typical5 000 000
Of The Contactor With Added Auxiliary Switch Block Typical 10 000 000
Reference Code According To Iec 81346-2 Q
Substance Prohibitance (Date) 10/01/2009
Weight 0.233 Kg

Ambient Conditions

Installation Altitude At Height Above Sea Level Maximum 2 000 M
Ambient Temperature
During Operation -25 ... +60 °C
During Storage -55 ... +80 °C
Relative Humidity Minimum 10 %
Relative Humidity At 55 °C According To Iec 60068-2-30
Maximum 95 %

Main Circuit

Number Of Poles For Main Current Circuit 3
Number Of No Contacts For Main Contacts 3
3Rt20171Av01-Z X95
Operating Voltage
At Ac-3 Rated Value Maximum 690 V
At Ac-3E Rated Value Maximum 690 V
Operation Al Current
At Ac-1 At 400 V At Ambient Temperature 40 °C Rated
Value22 A
At Ac-1
— Up To 690 V At Ambient Temperature 40 °C Rated
Value22 A
— Up To 690 V At Ambient Temperature 60 °C Rated
Value20 A
At Ac-3
— At 400 V Rated Value 12 A
— At 500 V Rated Value 9.2 A
— At 690 V Rated Value 6.7 A
At Ac-3E
— At 400 V Rated Value 12 A
— At 500 V Rated Value 9.2 A
— At 690 V Rated Value 6.7 A
At Ac-4 At 400 V Rated Value 8.5 A
At Ac-5A Up To 690 V Rated Value 19.4 A
At Ac-5B Up To 400 V Rated Value 9.9 A
At Ac-6A
— Up To 230 V For Current Peak Value N=20 Rated Value 7.2 A
— Up To 400 V For Current Peak Value N=20 Rated Value 7.2 A
— Up To 500 V For Current Peak Value N=20 Rated Value 7.2 A
— Up To 690 V For Current Peak Value N=20 Rated Value 6.7 A
At Ac-6A
— Up To 230 V For Current Peak Value N=30 Rated Value 4.8 A
— Up To 400 V For Current Peak Value N=30 Rated Value 4.8 A
— Up To 500 V For Current Peak Value N=30 Rated Value 4.8 A
— Up To 690 V For Current Peak Value N=30 Rated Value 4.8 A
Minimum Cross-Section In Main Circuit At Maximum Ac-1 Rated
Value4 Mm²
Operation Al Current For Approx. 200000 Operating Cycles At
Ac-4
At 400 V Rated Value 4.1 A
At 690 V Rated Value 3.3 A
Operation Al Current
At 1 Current Path At Dc-1
— At 24 V Rated Value 20 A
— At 60 V Rated Value 20 A
— At 110 V Rated Value 2.1 A
— At 220 V Rated Value 0.8 A
— At 440 V Rated Value 0.6 A
— At 600 V Rated Value 0.6 A
With 2 Current Paths In Series At Dc-1
— At 24 V Rated Value 20 A
— At 60 V Rated Value 20 A
— At 110 V Rated Value 12 A
— At 220 V Rated Value 1.6 A
— At 440 V Rated Value 0.8 A
— At 600 V Rated Value 0.7 A
With 3 Current Paths In Series At Dc-1
— At 24 V Rated Value 20 A
— At 60 V Rated Value 20 A
— At 110 V Rated Value 20 A
— At 220 V Rated Value 20 A
— At 440 V Rated Value 1.3 A
— At 600 V Rated Value 1 A
At 1 Current Path At Dc-3 At Dc-5
— At 24 V Rated Value 20 A
3Rt20171Av01-Z X95
— At 60 V Rated Value 0.5 A
— At 110 V Rated Value 0.15 A
With 2 Current Paths In Series At Dc-3 At Dc-5
— At 24 V Rated Value 20 A
— At 60 V Rated Value 5 A
— At 110 V Rated Value 0.35 A
With 3 Current Paths In Series At Dc-3 At Dc-5
— At 24 V Rated Value 20 A
— At 60 V Rated Value 20 A
— At 110 V Rated Value 20 A
— At 220 V Rated Value 1.5 A
— At 440 V Rated Value 0.2 A
— At 600 V Rated Value 0.2 A
Operating Power
At Ac-2 At 400 V Rated Value 5.5 Kw
At Ac-3
— At 230 V Rated Value 3 Kw
— At 400 V Rated Value 5.5 Kw
— At 500 V Rated Value 5.5 Kw
— At 690 V Rated Value 5.5 Kw
At Ac-3E
— At 230 V Rated Value 3 Kw
— At 400 V Rated Value 5.5 Kw
— At 500 V Rated Value 5.5 Kw
— At 690 V Rated Value 5.5 Kw
Operating Power For Approx. 200000 Operating Cycles At Ac-
4
At 400 V Rated Value 2 Kw
At 690 V Rated Value 2.5 Kw
Operating Apparent Power At Ac-6A
Up To 230 V For Current Peak Value N=20 Rated Value 2.8 Kva
Up To 400 V For Current Peak Value N=20 Rated Value 4.9 Kva
Up To 500 V For Current Peak Value N=20 Rated Value 6.2 Kva
Up To 690 V For Current Peak Value N=20 Rated Value 8 Kva
Operating Apparent Power At Ac-6A
Up To 230 V For Current Peak Value N=30 Rated Value 1.9 Kva
Up To 400 V For Current Peak Value N=30 Rated Value 3.3 Kva
Up To 500 V For Current Peak Value N=30 Rated Value 4.1 Kva
Up To 690 V For Current Peak Value N=30 Rated Value 5.7 Kva
Short-Time Withstand Current In Cold Operating State Up To
40 °C
Limited To 1 S Switching At Zero Current Maximum 200 A; Use Minimum Cross-Section Acc. To Ac-1 Rated Value
Limited To 5 S Switching At Zero Current Maximum 123 A; Use Minimum Cross-Section Acc. To Ac-1 Rated Value
Limited To 10 S Switching At Zero Current Maximum 96 A; Use Minimum Cross-Section Acc. To Ac-1 Rated Value
Limited To 30 S Switching At Zero Current Maximum 74 A; Use Minimum Cross-Section Acc. To Ac-1 Rated Value
Limited To 60 S Switching At Zero Current Maximum 61 A; Use Minimum Cross-Section Acc. To Ac-1 Rated Value
No-Load Switching Frequency
At Ac 10 000 1/H
Operating Frequency
At Ac-1 Maximum 1 000 1/H
At Ac-2 Maximum 750 1/H
At Ac-3 Maximum 750 1/H
At Ac-3E Maximum 750 1/H
At Ac-4 Maximum 250 1/H
Control Circuit/
Type Of Voltage Of The Control Supply Voltage Ac
Control Supply Voltage At Ac
At 50 Hz Rated Value 400 V
At 60 Hz Rated Value 400 V
Operating Range Factor Control Supply Voltage Rated Value Of
Magnet Coil At Ac
At 50 Hz 0.8 ... 1.1
3Rt20171Av01-Z X95
At 60 Hz 0.85 ... 1.1
Apparent Pick-Up Power Of Magnet Coil At Ac
At 50 Hz 37 Va
At 60 Hz 33 Va
Inductive Power Factor With Closing Power Of The Coil
At 50 Hz 0.8
At 60 Hz 0.75
Apparent Holding Power Of Magnet Coil At Ac
At 50 Hz 5.7 Va
At 60 Hz 4.4 Va
Inductive Power Factor With The Holding Power Of The Coil
At 50 Hz 0.25
At 60 Hz 0.25
Closing Delay
At Ac 9 ... 35 Ms
Opening Delay
At Ac 4 ... 15 Ms
Arcing Time 10 ... 15 Ms
Control Version Of The Switch Operating Mechanism Standard A1 - A2

Auxiliary Circuit

Number Of No Contacts For Auxiliary Contacts Instantaneous
Contact1
Operation Al Current At Ac-12 Maximum 10 A
Operation Al Current At Ac-15
At 230 V Rated Value 10 A
At 400 V Rated Value 3 A
At 500 V Rated Value 2 A
At 690 V Rated Value 1 A
Operation Al Current At Dc-12
At 24 V Rated Value 10 A
At 48 V Rated Value 6 A
At 60 V Rated Value 6 A
At 110 V Rated Value 3 A
At 125 V Rated Value 2 A
At 220 V Rated Value 1 A
At 600 V Rated Value 0.15 A
Operation Al Current At Dc-13
At 24 V Rated Value 10 A
At 48 V Rated Value 2 A
At 60 V Rated Value 2 A
At 110 V Rated Value 1 A
At 125 V Rated Value 0.9 A
At 220 V Rated Value 0.3 A
At 600 V Rated Value 0.1 A
Contact Reliability Of Auxiliary Contacts 1 Faulty Switching Per 100 Million (17 V, 1 Ma)
Ul/Csa Ratings
Full-Load Current (Fla) For 3-Phase Ac Motor
At 480 V Rated Value 11 A
At 600 V Rated Value 11 A
Yielded Mechanical Performance [Hp]
For Single-Phase Ac Motor
— At 110/120 V Rated Value 0.5 Hp
— At 230 V Rated Value 2 Hp
For 3-Phase Ac Motor
— At 200/208 V Rated Value 3 Hp
— At 220/230 V Rated Value 3 Hp
— At 460/480 V Rated Value 7.5 Hp
— At 575/600 V Rated Value 10 Hp
Contact Rating Of Auxiliary Contacts According To Ul A600 / Q600
Short-Circuit Protection
Design Of The Fuse Link
3Rt20171Av01-Z X95
For Short-Circuit Protection Of The Main Circuit
— With Type Of Coordination 1 Required Gg: 50A (690V,100Ka), Am: 20A (690V,100Ka), Bs88: 35A (415V,80Ka)
— With Type Of Assignment 2 Required Gg: 20A (690V,100Ka), Am: 16A (690V, 100Ka), Bs88: 20A (415V, 80Ka)
For Short-Circuit Protection Of The Auxiliary Switch Required Gg: 10 A (500 V, 1 Ka)
Installation/ Mounting/ Dimensions
Mounting Position +/-180° Rotation Possible On Vertical Mounting Surface; Can Be Tilted Forward And
Backward By +/- 22.5° On Vertical Mounting Surface
Fastening Method Side-By-Side Mounting Yes
Fastening Method Screw And Snap-On Mounting Onto 35 Mm Din Rail According To Din En 60715
Height 58 Mm
Width 45 Mm
Depth 73 Mm
Required Spacing
With Side-By-Side Mounting
— Forwards 10 Mm
— Upwards 10 Mm
— Downwards 10 Mm
— At The Side 0 Mm
For Grounded Parts
— Forwards 10 Mm
— Upwards 10 Mm
— At The Side 6 Mm
— Downwards 10 Mm
For Live Parts
— Forwards 10 Mm
— Upwards 10 Mm
— Downwards 10 Mm
— At The Side 6 Mm

Connections/ Terminals

Type Of Electrical Connection
For Main Current Circuit Screw-Type Terminals
For Auxiliary And Control Circuit Screw-Type Terminals
At Contactor For Auxiliary Contacts Screw-Type Terminals
Of Magnet Coil Screw-Type Terminals
Type Of Connectable Conductor Cross-Sections
For Main Contacts
— Solid 2X (0.5 ... 1.5 Mm²), 2X (0.75 ... 2.5 Mm²), 2X 4 Mm²
— Solid Or Stranded 2X (0,5 ... 1,5 Mm²), 2X (0,75 ... 2,5 Mm²), 2X 4 Mm²
— Finely Stranded With Core End Processing 2X (0.5 ... 1.5 Mm²), 2X (0.75 ... 2.5 Mm²)
For Awg Cables For Main Contacts 2X (20 ... 16), 2X (18 ... 14), 2X 12
Connectable Conductor Cross-Section For Main Contacts
Solid 0.5 ... 4 Mm²
Stranded 0.5 ... 4 Mm²
Finely Stranded With Core End Processing 0.5 ... 2.5 Mm²
Connectable Conductor Cross-Section For Auxiliary Contacts
Solid Or Stranded 0.5 ... 4 Mm²
Finely Stranded With Core End Processing 0.5 ... 2.5 Mm²
Type Of Connectable Conductor Cross-Sections
For Auxiliary Contacts
— Solid Or Stranded 2X (0.5 ... 1.5 Mm²), 2X (0.75 ... 2.5 Mm²), 2X 4 Mm²
— Finely Stranded With Core End Processing 2X (0.5 ... 1.5 Mm²), 2X (0.75 ... 2.5 Mm²)
For Awg Cables For Auxiliary Contacts 2X (20 ... 16), 2X (18 ... 14), 2X 12
Awg Number As Coded Connectable Conductor Cross
Section
For Main Contacts 20 ... 12
For Auxiliary Contacts 20 ... 12

Product Function

Mirror Contact According To Iec 60947-4-1 Yes; With 3Rh29
Positively Driven Operation According To Iec 60947-5-1 No
Suitable For Safety Function Yes
3Rt20171Av01-Z X95
Suitability For Use Safety-Related Switching Off Yes
Service Life Maximum 20 A
Test Wear-Related Service Life Necessary Yes
Proportion Of Dangerous Failures
With Low Demand Rate According To Sn 31920 40 %
With High Demand Rate According To Sn 31920 73 %
B10 Value With High Demand Rate According To Sn 31920 1 000 000
Failure Rate [Fit] With Low Demand Rate According To Sn
31920100 Fit
Iso 13849
Device Type According To Iso 13849-1 3
Overdimensioning According To Iso 13849-2 Necessary Yes
Iec 61508
Safety Device Type According To Iec 61508-2 Type A
Electrical Safety
Protection Class Ip On The Front According To Iec 60529 Ip20
Touch Protection On The Front According To Iec 60529 Finger-Safe, For Vertical Contact From The Front

Documentation

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