Auto Switch Socket Outlets, Mechanisms, 10A, Single Pole

White Electric | Auto Switch Socket Outlets, Mechanisms, 10A, Single Pole

Auto Switch Socket Outlets, Mechanisms, 10A, Single Pole

Item Number: 10MP-WE



Qty UoM EAN Colour



Range of product

Standard Series

Product or component type


Product brand


Sustainable offer status

Green Premium product


Quantity per set

set of 1


without marking

Local signalling

without light indicator

Device mounting


Fixing mode

by screws

[In] rated current

10 A

[Ue] rated operational voltage

250 V AC


33 mm


43 mm


42 mm

Fixing center

84 mm

Number of poles



  • AS/NZS 3100
  • AS/NZS 3112
  • AS/NZS 3133:approval number S/1

REACh Regulation

Reference contains Substances of Very High Concern above the threshold

EU RoHS Directive


Mercury free


RoHS exemption information


China RoHS Regulation

Product out of China RoHS scope. Substance declaration for your information

Environmental Disclosure



Cover type

complete housing

Socket additional information

with hinged lid

Unit Type of Package 1


Number of Units in Package 1


Package 1 Weight

47.1 g

Package 1 Height

3.4 cm

Package 1 width

4.3 cm

Package 1 Length

4.3 cm

Unit Type of Package 2


Number of Units in Package 2


Package 2 Weight

266.0 g

Package 2 Height

7 cm

Package 2 width

8.8 cm

Package 2 Length

11 cm

Unit Type of Package 3


Number of Units in Package 3


Package 3 Weight

50.0 kg

Package 3 Height

11.7 cm

Package 3 width

25 cm

Package 3 Length

31 cm
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Frequently Asked Questions

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What are the technologies used in RCD?

Voltage Independent Technology
Residual current devices using Voltage Independent Technology can continue to operate in the event of a complete voltage loss or neutral break.

The residual current device consists of:
  • high magnetic performance core (ex: nanocristalline)
  • a high-sensitivity relay
  • an electronic interface analyzing the signal.
  • The toroid provides information on the leakage current and the power required to trip the device.
  • The electronic circuit and the relay are not connected to the electrical network. Power is provided only by the leakage current.
  • Even if there is an accidental break of the neutral conductor or a voltage drop, the entire electromechanical system will continue to operate, allowing the residual current device to trip.

Voltage Dependent Technology (with and without FE)
A voltage source is required to operate this technology.
For Schneider Electric residual current devices, earth fault protection is provided in the event of a voltage drops down to 50 V.

In the case of VDT technology ("Voltage Dependent Technology"), the toroid only provides information about the leakage current.
The power required for tripping is supplied by the electrical network.

"Voltage Dependent Technology" RCDs supplied via the FE (Functional Earth)
In the event of loss of supply (required to address the fault and trip), there are two categories of behavior:
  • Category 1: the RCD does not open and continuity of service is optimum, because the load is powered on when the voltage is restored, but the RCD is unable to operate if the loss of power supply is the result of a neutral break. The presence of line voltage is a hazard because the RCD is no longer able to perform its protection function in the event of contact with the line potential
  • Category 2: the RCD opens if there is loss of power supply (including in the event of neutral break). After the voltage is restored, the RCD must be reclosed to power on the load again.
To improve the level of protection provided by category 1 RCD, in the event of neutral breaking, the product is supplied by redundancy via the FE (line to FE supply instead of line to neutral), allowing it to continue to perform its protection function.
This configuration allows the behavior of VDT RCDs to be compared with that of VIT RCDs.
  • conformity with the standards is confirmed by a national conformity mark on the product. The mark is assigned by a third-party organization independent of Schneider Electric. This involves regular sampling at the production site to ensure continued conformity with the standards in question.
According to the standard requirements, all electrical equipment protected by VD with FE RCDs must be earthed to ensure maximum earthing resistance as follows:
  • Ue = 110 V: 50 ohm,
  • Ue = 230/240 V: 100 ohm.

Reference document - CA908066E

What are the different residual current device categories?

IEC 60755 describes general requirements for residual current operated protective devices.

Vigi modules (Vigi NG125, see example in the figure)
The add-on Vigi module is the most flexible residual current device (it is installed in combination with a circuit breaker).
Vigi are covered by the IEC 61009 and IEC 62423 series of standards.

Residual Current operated Circuit Breakers without integral overcurrent protection (RCCB) (Acti9 iID, see example in the figure)
The Acti 9 iID RCCB is the main residual current device in the facility and is used as the main incomer. RCCB are covered by the IEC 61008 and IEC 62423 series of standards.

Residual Current operated circuit Breakers with integral Overcurrent protection (RCBO) (Acti 9 iCV40N, see example in the figure)
RCBO = combination of circuit breaker and residual current device function in the same product. This can be obtained by combining the circuit breaker with its Add-on Vigi Module.
RCBO are covered by the IEC 61009 and IEC 62423 series of standards.

Socket RCD (SRCD) (see example in the figure) SRCD are covered by the IEC 62640 series of standards.

❺ Industrial type circuit breakers incorporating the RCD function must comply with Annex B of IEC 60947-2.
Residual current devices with a separate toroid are standardized in Annex M of IEC 60947-2.

Reference document - CA908066E

Can I install a rectangular sensor upstream from a circuit-breaker.?

Yes, a rectangular sensor can be installed upstream or downstream of a circuit breaker.