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Use of RCBO as advanced protection in low voltage electrical installation

Use of RCBO as advanced protection in low voltage electrical installation

Use of RCBO as advanced protection in low voltage electrical installation

 

Author: Msc.Mitja KOPRIVŠEK, Bsc.el.eng.

 

Abstract

RCBO is an abbreviation for Residual Current circuit Breaker with integral Overcurrent protection. Basically is a combination of two products, namely a MCB-Miniature Circuit Breaker and RCCB- residual Current Circuit Breaker. In this article basic information about the RCBO is explained, as well as an application and use of RCBO’s in modern low voltage electrical installations. This article has no intention to make a detailed explanation of content of IEC product standards, but to provide more practical information how and where to use RCBO as an advanced protection in modern low voltage electrical installations.  

Fuses for DC voltages DC and PV – DC-voltage fuses and Photovoltaic fuses

Fuses for DC voltages DC and PV – DC-voltage fuses and Photovoltaic fuses

Fuses for DC voltages DC and PV – DC-voltage fuses and Photovoltaic fuses

 

Author: Viktor Martinčič

Introduction

We know fuses and "fuses". The consequence of using a incorrect electric fuse in an incorrect electric circuit can cause its explosion and/or the destruction of neighbouring appliances. Greater consequences can occur in the case of destruction of protected appliance – transformer, inverter or the damaging of electrical installation. In the article we will present the problem of activity of fuses in DC electrical circuits as well as several examples of usage of fuses in photovoltaic systems connected to the public grid.

 

Suitable protection for motor drives

Suitable protection for motor drives

Suitable protection for motor drives

 

Author: Brane Lebar                                                                                                                                

 

In today’s industry avoiding “down-time” can be the same as creating income.

The upper statement ever more reflects the current conditions in the industry. Reliability of production systems is becoming more and more important and will even more do so in the future. We all wish for our production devices to be functioning normally. But if a malfunction appears, it should be fixed as soon as possible, for every hour of down-time presents a loss of income. Despite many designers’ opinion that one can protect motor drives using only miniature circuit breakers, experiences show that internal part of frequency converter remains unprotected from short-circuiting.

 

Keywords: soft starter, frequency converter, IGBT, semiconductor protection fuses

 

Installation of over voltage protection in LV systems

Installation of over voltage protection in LV systems

Installation of over voltage protection in LV systems

 

Author: Denis Imširović, B.SC.E.E.  

 

From old times the human beings have been fascinated by the lightning phenomenon, but unfortunately they were unable to explain it. Nowadays, in the era of computers and other sensitive devices it has become necessary to expand technical possibilities for successful or complete protection of vitally important services.

                                                                                                                      

1. Introduction

 

Technology is entering into the future with big steps; therefore the devices are installed into the areas where can not be imagine a while ago. An enormous quantity of information is used
over the world, which must be properly connected, reach faster transfers and use best possible protection. Now days especially in such an economically and technically developed world
there is no possibility to refuse those demands. Over voltage protection must be considered, as hard cuirass which protects devices and people against strong outside influences, as stroke of
lightning and prevent technological and economical damage.

Over voltages are caused because of following:

  • Atmospheric discharges resulting in direct strikes to structures or systems, or large induced voltages caused by those direct strikes
  • Over-voltage cause by power switching transients
  • Faults in power distribution systems such as line-to-ground contacts, or commingling of power and low voltage telecommunication lines
  • Power regulation faults as can occur near large industrial consumers of power or near electrified rail systems


The statistic of damages caused on electrical apparatus is demonstrated in below graph (Picture 1). The biggest share damage on electrical apparatus is caused because of over voltages and ranges between 27% and 35%.

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