Current ratings of the assembly
current values, declared in the assembly documentation, that can be withstood under specified conditions
- Inherited
- 71
Hierarchy#
Ancestors (top) → ACG098 (highlighted) → subclasses and powertype instances. Capped at 12 each; see the full lists in the sections below.
Higher level classes3#
Declared properties1#
total current that the main busbar can distribute, which can be carried without the temperature-rise of the individual parts of the assembly exceeding specified limits
Inherited properties (71) — click to expand
kind of electric current supply
frequency of the supply assigned to a device by the manufacturer for a specified operating condition
value of the prospective short-circuit current, declared by the assembly manufacturer, that can be withstood for the total operating time (clearing time) of the short-circuit protective device under specified conditions
value of short-time withstand current a.c., assigned to the equipment, that the equipment can carry without damage, under the test conditions
value of peak short-circuit current declared by the assembly manufacturer, that can be withstood under specified conditions
number of contact elements, included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, which close when actuated
maximum number of contact elements, included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, which close when actuated, available as options
number of contact elements, included in a control circuit or in an auxiliary circuit and mechanically operated by the switching device, which open when actuated
maximum number of contact elements, included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, available as options
number of contact element combinations included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, each combination including one make contact element and one break contact element
maximum number of contacts element combinations included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, available as options, each combination including one make contact element and one break contact element
range of r.m.s. rated voltage at the frequency of 50 Hz applied to the control circuit or its supply
range of r.m.s. rated voltage at the frequency of 60 Hz applied to the control circuit or its supply
range of DC rated voltage applied to the control circuit or its supply
time elapsed between the energisation of the motor operator and the closing of the main contacts of the device
time elapsed between the energisation of the motor operator and the opening of the main contacts of the device
rated control supply voltage and current of the device compatible with the digital output characteristics of a PLC
range of voltage combined with a rated operational current intended to be switched by the device under specified conditions
range of supply voltage of a device including supply tolerances, from the lower limit to the upper limit
range of current combined with an AC rated operational voltage intended to be switched by the device under specified conditions
range of current combined with a DC rated operational voltage intended to be switched by the device under specified conditions
the current which flows through the load circuit of the proximity switch in the OFF-state
minimum current necessary to maintain the ON-state conduction of the switching element
voltage measured across the switching element when carrying the operational current flow under specified conditions.
device output protected against overload and short-circuits of the connected load
type of driving a contact element of a control device in which the velocity of contact motion is dependent or not of the velocity of motion of the actuator
number of contact elements which open when actuated
number of contact elements which close when actuated
number of contact element combinations, each combination including one make-contact element and one break contact element
value of current at which the contact is intended to operate, under the conditions of utilization category AC-15, at a rated operational voltage of 230 V a.c.
value of current at which the contact is intended to operate, under the conditions of utilization category DC-13, at a rated operational voltage of 24 V d.c.
electrical ratings based on a rated conventional enclosed thermal current, a maximum operational voltage and AC utilization categories
electrical ratings based on a rated conventional enclosed thermal current, a maximum operational voltage and DC utilization categories
value of the minimum DC current associated with declared reliability data at which the low energy contact is intended to operate at the specified rated operational voltage
value of the DC voltage associated with declared reliability data at which the low energy contact is intended to operate at the specified rated operational current
number of on-load operating cycles which will be attained or exceeded by 90 % of all devices tested, without repair or replacement of any part
number of contact elements, included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, which close before any normally open contact
number of contact elements, included in a control circuit or an auxiliary circuit and mechanically operated by the switching device or the actuator, which open with a delay when actuated
value of current at which the contact is intended to operate, under the conditions of utilization category AC-12
value of current at which the contact is intended to operate, under the conditions of utilization category AC-14, at a rated operational voltage of 230 V a.c.
maximum uninterrupted current equal to the conventional free-air thermal current (lth)
ability to be a part of a safety control system used to implement a safety function
current or voltage output signal which varies continuously depending on the sensing quantity
value of the power of a given type of lamp declared by the manufacturer or the responsible vendor, the lamp being operated under specified conditions
limits of the setting of the time delaying a control signal
direction of the front edge of the signal initiating the function
number of operating positions of the switch depending on the positions of the foot
method of releasing the latching mechanism
input signal used to initiate the function
value of the prospective breaking current for the rated operational voltage of 230 V a.c., for which a specified test sequence do not include the capability of the circuit-breaker to carry its rated current continuously
value of the prospective breaking current at a rated operational voltage of 400 V a.c., for which a specified test sequence does not include the capability of the circuit-breaker to carry its rated current continuously
value of the prospective breaking current for the rated operational voltage of 690 V a.c., for which a specified test sequence do not include the capability of the circuit-breaker to carry its rated current continuously
value of the breaking capacity for the rated operational voltage of 230 V a.c., for which a specified test sequence includes the capability of the circuit-breaker to carry its rated current continuously, corresponding to one of the specified percentages of the rated ultimate short-circuit breaking capacity
value of the breaking capacity at a rated operational voltage of 400 V a.c., for which a specified test sequence includes the capability of the circuit-breaker to carry its rated current continuously, corresponding to one of the specified percentages of the rated ultimate short-circuit breaking capacity
value of the breaking capacity for the rated operational voltage of 690 V a.c, for which a specified test sequence includes the capability of the circuit-breaker to carry its rated current continuously, corresponding to one of the specified percentages of the rated ultimate short-circuit breaking capacity
the highest RMS symmetrical current at a rated voltage of 120 V a.c. that a device is intended to interrupt under standard test conditions
the highest RMS symmetrical current at a rated voltage of 480 V a.c. that a device is intended to interrupt under standard test conditions
the highest RMS symmetrical current at a rated voltage of 600 V a.c. that a device is intended to interrupt under standard test conditions
maximum value of the rated operational voltage for which the device is suitable for use on IT systems
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device at the given rated operational voltage of 230 V
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device at the given rated operational voltage of 400 V
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device at the given rated operational voltage of 690 V
short-circuit making capacity assigned to an equipment for the rated operational voltage of 230 V, at rated frequency and at a specified power-factor, expressed as the maximum prospective peak current, under prescribed conditions
short-circuit making capacity assigned to an equipment for the rated operational voltage of 400 V, at rated frequency and at a specified power-factor, expressed as the maximum prospective peak current, under prescribed conditions
short-circuit making capacity assigned to an equipment for the rated operational voltage of 690 V, at rated frequency and at a specified power-factor, expressed as the maximum prospective peak current, under prescribed conditions
maximum r.m.s. prospective (available) current of a circuit to which a device can be connected at a rated voltage of 480 Y/277 V
maximum r.m.s. prospective (available) current of a circuit to which a device can be connected at a rated voltage of 600 Y/347 V
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device; type 2: under short-circuit conditions, the contactor or starter shall be suitable for further use; at the given rated operational voltage of 400 V a.c.
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device; type 2: under short-circuit conditions, the contactor or starter shall be suitable for further use at the given rated operational voltage of 230 V a.c.
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device; type 1: under short-circuit conditions, the contactor or starter shall cause no danger to persons or installation and may not be suitable for further service without repair and replacement of parts at the given rated operational voltage of 480 Y/277 V
value of prospective current that a circuit or a switching device, protected by a short-circuit protective device, can satisfactorily withstand for the operating time of this device; type 1: under short-circuit conditions, the contactor or starter shall cause no danger to persons or installation and may not be suitable for further service without repair and replacement of parts at the given rated operational voltage of 600 Y/347 V
Imported properties5#
Subclasses#
No subclasses
This class is a leaf — no other classes inherit from it.
Is case of (powertype parents)2#
Metadata#
- Version
- 2
- Revision
- 1
- Status
- Standard
- Publisher
- IEC
- Published in
- IEC 62683-2-2:2025
- Responsible committee
- IEC/TC 121
- Change request
C00184- Dates
- Original: 2023-05-29
- Current version: 2026-01-30
- Current revision: 2026-01-30
Full source data#
Every key from the original .xls export, including multilingual variants, status, publisher, committee, and workbook-specific codes.
Raw properties (25 keys from source .xls) — click to expand
- C002
- C00184
- C011
- IEC
- C012
- IEC 62683-2-2:2025
- C016
- Standard
- C017.fr
- 1
- C018.fr
- 5/16/2024
- C019.fr
- IEC TC 121/WG 3
- MDC_P001_5
- 0112/2///62683#ACG098
- MDC_P002_1
- 2
- MDC_P002_2
- 1
- MDC_P003_0
- 2026-01-30
- MDC_P003_1
- 2023-05-29
- MDC_P003_2
- 2026-01-30
- MDC_P003_3
- 2026-01-30
- MDC_P004.en
- Current ratings of the assembly
- MDC_P004.fr
- Caractéristiques assignées en courant de l'ensemble
- MDC_P006.en
- current values, declared in the assembly documentation, that can be withstood under specified conditions
- MDC_P006.fr
- valeurs de courant, déclarées dans la documentation de l'ensemble, pouvant être supportées dans des conditions spécifiées
- MDC_P010
- 0112/2///62683#ACG000
- MDC_P011
- ITEM_CLASS
- MDC_P012
- IEC/TC 121
- MDC_P013
- {0112/2///62683#ACC016,0112/2///62683#ACC040}
- MDC_P014
- {0112/2///62683#ACE441}
- MDC_P019
- false
- MDC_P090
- {0112/2///62683#ACE601,0112/2///62683#ACE532,0112/2///62683#ACE710,0112/2///62683#ACE712,0112/2///62683#ACE711}
Version history4#
IEC CDD records every published revision of each entity — version number, status, timestamp, and the change request that introduced it. OpenCDD captures the full chain of custody from cdd.iec.ch; the entry marked Current is the one rendered on this page.