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Variables générées pour cette modification

VariableValeur
Nom du compte de l’utilisateur (user_name)
'MohammedCardone'
ID de la page (page_id)
0
Espace de noms de la page (page_namespace)
0
Titre de la page (sans l’espace de noms) (page_title)
'The Advantages Of Using Insulated Busbar Systems'
Titre complet de la page (page_prefixedtitle)
'The Advantages Of Using Insulated Busbar Systems'
Action (action)
'edit'
Résumé/motif de la modification (summary)
''
Ancien modèle de contenu (old_content_model)
''
Nouveau modèle de contenu (new_content_model)
'wikitext'
Texte wiki de l’ancienne page, avant la modification (old_wikitext)
''
Texte wiki de la nouvelle page, après la modification (new_wikitext)
'<br>Since busbars are used for transporting loads and various other items, the conditions under which they are exposed to increase the risk for damage or loss. The environments which these items are exposed to include chemical environments, outdoor environments and temperature changes. If conditions of exposure are poor then corrosion and impact are two likely results. It therefore makes sense that one of the most important contributing factors in the probability of damage is the current carrying capacity of the busbar. This article will discuss the specifications and application of insulated [https://www.rhibusbar.com/ busbar] systems.<br><br><br>Insulated busbar systems generally fall into two categories - standard copper busbars and 250a aluminum busbars. Standard copper busbars have a standard maximum allowable current carrying capacity which is generally quite low. For this reason the number of standard copper busbars typically consumed by a single system is a lot lower than the number of 250a aluminum busbars. The higher current carrying capacity afforded by the 250a bar allows greater use of this system. In addition to this there is also an increased likelihood of the system being installed in locations where it is not feasible to install standard busbars due to their weight or size.<br><br><br>Insulated busbars may be made from different materials including steel, aluminium or steel alloy. One of the more popular materials in use today is a combination of aluminium and steel, which are known as the plug-in system (no plug-in means no protection from thermal expansion). All insulated busbars systems should be installed by an accredited and competent electrician and the resulting solution should provide both flexibility and safety for the operators and the public.<br><br><br>As well as the physical properties of the busbars being a major factor when selecting a solution it is important to look at other issues such as current ratings. Current carrying capacity (CCS) is a measure of the maximum continuous current that can be conducted through a conductor against an inch of material. The larger the diameter of the busbar and its thickness the lower the CCS. Insulated busbars which are supplied with high CCS ratings are able to cope with larger power supplies that could potentially see thousands of amps of current carried through them. It is worth noting that although some hussars have been fitted with CCS capabilities they are still only able to carry a limited amount of current and will need additional power supplied via external sources.<br><br><br>Current ratings also need to be taken into account. The rating is typically expressed in milliamps and amps and is calculated by looking at the maximum and minimum current levels required by the system. The larger the diameter of the aluminium busbar and the lower its CCS the lower the current ratings. The higher the CCS rating the higher the maximum current. The current ratings are usually shown in either milliamps or amps but this may also be printed on the product documentation.<br><br><br>There are a number of advantages associated with using insulated busbars. For one, they are extremely durable and robust. The fact that they are manufactured from a solid aluminium rather than just standard copper bars means that the strength of these products is significantly higher than that of standard busbars. Standard busbars are typically made from thin materials and are therefore more susceptible to bending and warping, both of which can lead to them becoming unusable. Insulated busbars on the other hand are manufactured from thicker materials and are therefore much more robust and resistant to damage.<br>'
Horodatage Unix de la modification (timestamp)
1657870071