Siemens
СРЕДСТВА ПРОМЫШЛЕННОЙ АВТОМАТИЗАЦИИ
официальный партнер Сименс
Каталог СА01 2017
архивный
(4872) 700-366
skenergo@mail.ru

3RB24 for IO-Link, for high-feature applications

More information

 

Home page, see http://www.siemens.com/sirius-overloadrelays

 

Configuration manual for SIRIUS Controls with IE3 Motors, see https://support.industry.siemens.com/cs/ww/en/view/94770820

 

Manual "SIRIUS 3RB24 Electronic Overload Relay for IO-Link": see https://support.industry.siemens.com/cs/ww/en/view/46165627

 

Characteristic curves, see https://support.industry.siemens.com/cs/ww/en/ps/16277/char

 

Product data sheet, see https://support.industry.siemens.com/cs/ww/en/ps/16277/td

 


SIRIUS 3RB24 evaluation module

The modular 3RB24 electronic overload relays, which are powered via IO-Link (with monostable auxiliary contacts) up to 630 A (up to 820 A possible with a series transformer) have been designed for current-dependent protection of loads with normal and heavy starting against excessive temperature rises due to overload, phase unbalance or phase failure. They consist of an evaluation unit, a current measuring module and a connecting cable.

The evaluation module 3RB24 also offers a motor starter function: The contactors, which are connected via the auxiliary contacts, can also be actuated for operation via IO-Link. In this way, direct, reversing and Wye-delta starters up to 630 A (or 830 A) can be connected to the controller via the IO-link.

An overload, phase unbalance or phase failure result in an increase of the motor current beyond the set rated motor current.

This current rise is detected by means of a current measuring module (see "current measuring modules for 3RB22, 3RB23, 3RB24") and electronically evaluated by the evaluation module which is connected to it. The evaluation electronics sends a signal to the auxiliary contacts. The auxiliary contacts then switch off the load by means of a contactor.

The break time depends on the ratio between the tripping current and the current setting Ie and is stored in the form of a long-term stable tripping characteristic curve, The "tripped" status is signaled by means of a continuous red "OVERLOAD" LED and reported via IO-Link as a group error.

The LED indicates imminent tripping of the relay due to overload, phase unbalance or phase failure by flickering when the current limit has been exceeded. This warning can also be reported to the higher-level PLC via IO-Link at the 3RB24 overload relay.

In addition to the described inverse-time delayed protection of loads against excessive temperature rises, the 3RB24 electronic overload relays also allow direct temperature monitoring of the motor windings (full motor protection) by connection with broken-wire interlock of a PTC sensor circuit. With this temperature-dependent protection, the loads can be protected against overheating caused, for example, indirectly by reduced coolant flow and which cannot be detected by means of the current alone. In the event of overheating, the devices switch off the contactor, and thus the load, by means of the auxiliary contacts. The "tripped" status is signaled by means of a continuously illuminated "THERMISTOR" LED and also reported as a group error via IO-Link.

To protect the loads against incomplete ground faults due to damage to the insulation, humidity, condensation, etc., the 3RB24 electronic overload relays offer the possibility of internal ground-fault detection (not possible in conjunction with contactor assemblies for star-delta (wye-delta starting)). In the event of a ground fault the 3RB24 relays trip instantaneously.

The "tripped" status is signaled by means of a blinking red LED "Ground Fault" and reported at the overload relay 3RB24 as a group error via IO-Link.

The reset after overload, phase unbalance, phase failure, thermistor or ground-fault tripping is performed manually by key on-site, via IO-Link or by electrical remote RESET or automatically after the cooling time (motor model) or for thermistor protection after a sufficient cooling. Trips in devices initiated by function monitoring systems (broken wire or short-circuit on the thermistor) can only be reset locally.

A motor current measured by the microprocessor can be output in the form of an analog signal DC 4 mA to 20 mA for operating rotary coil instruments or for feeding into analog inputs of programmable logic controllers.

The current values can be transmitted to the higher-level controller via IO-Link.

The 3RB24 electronic overload relay for IO-Link is suitable for operation with frequency converters.

The devices are manufactured in accordance with environmental guidelines and contain environmentally-friendly and reusable materials. They comply with all important worldwide standards and approvals.

Use in hazardous areas

The 3RB24 electronic overload relays for IO-Link with the 3RB29 current measuring module are suitable for the overload protection of motors with the following types of protection:

  • Ex II (2) G [Ex e] [Ex d] [Ex px]
  • Ex II (2) D [Ex t] [Ex p]

EC type test certificate for Group II, Category (2) G/D exists. It has the number PTB 11 ATEX 3014.

Article No. scheme

Product versions

Article number

Electronic overload relays

3RB

?

?

?

?

?

?

?

?

SIRIUS 2nd generation

 

2

        

Device series

  

?

       

Size, rated operational current and power

   

?

      

Version of the automatic RESET, electrical remote RESET

    

?

     

Trip class (CLASS)

      

?

   

Setting range of the overload release

       

?

  

Connection methods

        

?

 

Installation type

         

?

Example

3RB

2

4

8

3

4

A

A

1



Note:

The Article No. scheme shows an overview of product versions for better understanding of the logic behind the article numbers. For your orders please use the article numbers quoted in the selection and ordering data.

















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Арматура DENDOR

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Датчики и измерители

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Регуляторы и регистраторы

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Пневматическое оборудование

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Краны и Клапаны

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Измерительные приборы

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Системы беспроводного управления «умный дом»

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SKW-FS - Установка умягчения

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