TeSys Vario, Switch Body for Switch Disconnector, 3 Poles, 80A

TeSys Vario, Switch Body for Switch Disconnector, 3 Poles, 80A

TeSys Vario, Switch Body for Switch Disconnector, 3 Poles, 80A

Item Number: V4

Product Dimensions

Width icon

Width60 mm

Height icon

Height83 mm

Depth icon

Depth65 mm



Qty UoM EAN Colour



Sustainable offer status

Green Premium product


18 months



Product or component type

switch body


Mounting support

  • plate
  • symmetrical rail

[Ue] rated operational voltage

690 V AC 50/60 Hz

[Ie] rated operational current

57 A AC-23 Ue: 400 V

Mechanical durability

30000 cycles

Electrical durability

  • 30000 cycles AC-21
  • 30000 cycles DC-1...5

Connections - terminals

  • power circuit: screw clamp terminals16-16 mm² - flexible - with cable end
  • power circuit: screw clamp terminals25-25 mm² - solid


83 mm


60 mm


65 mm

Net weight

0.5 kg


IEC 60947-3

Product certifications

  • UL
  • CSA
  • GL
  • UKCA

IP degree of protection

IP20 conforming to IEC 60529

Ambient air temperature for operation

-20...50 °C

REACh Regulation

Free of Substances of Very High Concern above the threshold

REACh free of SVHC


EU RoHS Directive


Toxic heavy metal free


Mercury free


RoHS exemption information


China RoHS Regulation

 Pro-active China RoHS declaration (out of China RoHS legal scope)

Environmental Disclosure



Compatibility code


Performance level

high performance

Poles description


Contacts type and composition

3 NO

Network type

  • DC
  • AC

Network frequency

50/60 Hz

Rated operational power in W

  • 15 kW at 230...240 V (AC-3)
  • 22 kW at 400...415 V (AC-3)
  • 30 kW at 500 V (AC-3)
  • 30 kW at 690 V (AC-23A)
  • 37 kW at 500 V (AC-23A)
  • 18.5 kW at 690 V (AC-3)
  • 18.5 kW at 230...240 V (AC-23A)
  • 30 kW at 400...415 V (AC-23A)

[Ith] conventional free air thermal current

80 A

[Ithe] conventional enclosed thermal current

63 A

Making capacity

  • 800 A at 400 V AC-21A
  • 800 A at 400 V AC-22A
  • 800 A at 400 V AC-23A

Breaking capacity

  • 640 A at 400 V (AC-21A)
  • 640 A at 400 V (AC-22A)
  • 640 A at 400 V (AC-23A)

Rated conditional short-circuit current

  • 10 kA at 400 V - associated fuse 80 A aM
  • 10 kA at 400 V - associated fuse 80 A gG

[Icm] rated short-circuit making capacity

2.1 kA at 400 V at Ipeak

Intermittent duty class


Suitability for isolation


[Uimp] rated impulse withstand voltage

8 kV

[Icw] rated short-time withstand current

960 A at 400 V duration: 1 s

Tightening torque

power circuit: 4 N.m - on screw clamp terminals

Protective treatment


Mechanical robustness

  • vibrations 10...150 Hz (1 gn) conforming to IEC 60068-2-6
  • shocks 11 ms (30 Gn) conforming to IEC 60068-2-27

Fire resistance

960 °C conforming to IEC 60695-2-1

Unit Type of Package 1


Number of Units in Package 1


Package 1 Weight

297.0 g

Package 1 Height

12 cm

Package 1 width

8.5 cm

Package 1 Length

8 cm

Unit Type of Package 2


Number of Units in Package 2


Package 2 Weight

3.906 kg

Package 2 Height

15 cm

Package 2 width

30 cm

Package 2 Length

40 cm

Unit Type of Package 3


Number of Units in Package 3


Package 3 Weight

71.844 kg

Package 3 Height

77 cm

Package 3 width

80 cm

Package 3 Length

60 cm


The product must be disposed on European Union markets following specific waste collection and never end up in rubbish bins

PVC free


Halogen content performance

Halogen free product

Product name


Device short name

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Frequently Asked Questions

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Is LV429515 shields compatible with NSX100, NSX160 and NSX250?

Yes LV429515 is compatible with NSX100/160/250 MCCB range

For more information refer the following link:

What is PowerView software?

What is the Power View embedded web page in the IFE?

Product Line:
Smart Systems and Molded Case Circuit Breakers

PowerView refers to embedded web pages in the IFE module (LV434010 and LV434001) and the IFE Switchboard Server (LV434011 and LV434002).

How can I check the logic inputs are working on an ATV312 drive?

Customer is not sure if the inputs are working.  Drive is not running.

Product line:
Altivar 312, ATV312



Go under the SUP menu to LIA-.  Under LIA-, select parameter LIS (not LI5A).  This will show the Logic inputs from LI1 to LI6.  The dash mark will be high (closed) or Low (open).  See the attached page from the programming manual, BBV46385 as reference.

Why is the ATV312 tripping on SCF or short circuit fault on power up?

ATV312 tripping SCF 

Product line:
Altivar 312, ATV312, ATV31

All models, all serial numbers 

The drive trips on a SCF or a Short Circuit Fault if the drive detects a short circuit on the output of the drive.       

-Make sure all of the motor parameters are set in the DRC menu to match the motor name plate.  
-Check to make sure you don't have a long cable run of more than 100 feet. If you do, we recommend installing a output load reactor.
-Test the drive operation without the motor connected; turn off OPL (output phase loss) in the FLT menu. Try running the drive open circuit at 15, 30, 45, and 60Hz checking the output voltage phase to phase with a true RMS digital meter for balance at each frequency level.
Set Output Phase Loss attachment

-Check the motor and cables connecting to the drive for shorts phase to phase and phase to ground. 
-Check connections in the motor junction box for proper wiring.  
-Install a motor protecting output filter or load reactor at the output of the drive.
-Reduce the switching frequency (SFR in the SEt- menu). 
Set switching frequency attachment

If the SCF fault occurs with no motor or wiring connected to the drive, the drive will need to be replaced.

Refer to the attached ATV312 Programming manual BBV46385.

Note: Similar steps apply to the ATV12, ATV11, ATV32 and other Altivar Drive Products.

How many IFMs can be stacked to an IFE switchboard server (LV434002)?

What is the maximum number of IFMs that can be attached to the IFE switchboard server using the stacking modules?

Product Line:
Smart Systems

Up to 12 IFMs can be stacked to an IFE switchboard server (LV434011 or LV434002) via the stacking module.

Video: Programming the ATV312 for terminal start stop & speed control via the VW3A1101 remote keypad display or the local dial on the front of the drive.

How to set up an ATV312 to start/stop with terminals and use the remote keypad as speed reference or the knob on the drive?  

Product line:
Altivar ATV312 

All models, all serial numbers 

Starting and stopping the drive with +24v and LI1 FWD and using the remote keypad's knob (or the knob on the front of the drive) as speed control. 

Hold the MOD button until you see the 3 LEDs on the left of the drive's display start scrolling (flash in sequence).
The drive is now in local mode. You can not do any programming in this mode. 
Now you will need to hold the ESC button for 3 seconds unit you see the same LED's now flash all together at the same time.
The drive is now in local/ programming mode. 
Push the enter (press the dial once). 
Scroll down (turn the dial clockwise) to the CTL menu and press enter
Scroll down to LAC and press enter
Set LAC to L3 or level 3 (you must hold enter for 3 seconds for the change to save), press ESC
Scroll down to FR1
Set FR1 to A1U1 
Scroll down to CHCF 
Set CHCF to SEP 
Scroll down to CD1 
Set CD1 to tEr for terminal control 
Once you are done programming, press the ESC button several times, until the drive displays rdy.
Next you will need to put the drive back in Local run mode by holding the ESC button again for 3 seconds until you see the 3 LED's scroll.
Now you can start the drive in 2 wire control by closing LI1 to +24vdc and use the remote HMIs dial for speed control. 

This procedure also sets up the drive to adjust the speed from the dial or knob on the front of the drive if the remote keypad is not used.

Refer to the ATV312 programming manual for additional details.  Link here: https://www.schneider-electric.com/en/download/document/BBV46385/

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