{"id":3862,"date":"2023-01-04T17:57:58","date_gmt":"2023-01-04T16:57:58","guid":{"rendered":"https:\/\/www.gt-engineering.it\/normative-tecniche\/%tipologia_normativa%\/it-systems\/"},"modified":"2023-06-30T14:40:20","modified_gmt":"2023-06-30T13:40:20","slug":"it-systems","status":"publish","type":"normativa_tecnica","link":"https:\/\/www.gt-engineering.it\/en\/technical-standards\/en-iec-standards\/iec-60364-4-41\/it-systems\/","title":{"rendered":"IT Systems"},"content":{"rendered":"\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:block\">\n\n    \n                    <div class=\"mb-6 relative w-full md:mb-4 lg:mb-8 xl:mb-9\">\n                \n        <div                class=\"m-headings\"\n            >\n    \n    \n<h4 class=\"a-heading text-left text-primary font-heading text-2xl lg:text-3xl xl:text-4xl font-normal mt-2 first:mt-0\">\n                    IT Systems: the basics     <\/h4>\n        <\/div>\n                <\/div>\n        \n        \n                    <div class=\"relative w-full\">\n                \n<div class=\"a-text font-text text-base normal mt-8 first:mt-0 space-y-4\">\n    <p style=\"text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">In IT Systems, <b>the neutral <\/b>of the distribution transformer<b> is ungrounded<\/b>. <\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">This electrical system is used when the disconnection of the supply, in case of a fault, generates more risks than\u00a0keeping the energy. For example, in an hospital operation room,\u00a0 let\u2019s suppose that while the doctor is in operation an electrical equipment has a fault; the disconnection of supply will have much worse consequences than keeping the electrical energy in the room.<\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">The reason for not grounding the neutral is exactly to hamper\u00a0the current from flowing through the human body in case it touches the faulty equipment. If you have in mind a TT or TN system, a person may be electrocuted because the current, flowing through the body, finds a <b>way back to the source<\/b>: <b>the grounded neutral<\/b> of the MV\/LV transformer. If the neutral point is not grounded, there is no way back to the source!<\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">For that reason, the standard allows not to cut energy, <b>however the fault must be highlighted<\/b> since people\u00a0must realise they are working in an environment where an electric fault is present. Hereafter are the standard language:<\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 49.55pt .0001pt 49.65pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">[IEC 60364-4-41] 411.6.3 In IT systems the following monitoring devices and protective devices may be used:<\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<ul style=\"list-style-type: square;\">\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: 8.0pt; text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">insulation monitoring devices (IMDs); <\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: 8.0pt; text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">residual current monitoring devices (RCMs) <\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: 8.0pt; text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">insulation fault location systems (IFLS); <\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: 8.0pt; text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">overcurrent protective devices;<\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: 8.0pt; text-align: justify; margin: 0cm 0cm 8pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">residual current protective devices (RCDs).<\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<\/ul>\n<\/div>            <\/div>\n        \n        \n                <div class=\"clear-both\"><\/div>\n        \n\n    <\/div>\n        <\/section>\n\n    \n\n\n\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:block\">\n\n    \n        \n                    <div\n                class=\"h-auto mb-6 md:mb-4 lg:mb-8 xl:mb-9 float-left mr-6 md:mr-4 lg:mr-8 xl:mr-9  overflow-hidden shadow-content-image w-full md:w-1\/2\"\n            >\n                \r\n\r\n    \r\n        \r\n            \r\n                \r\n                    <picture\r\n                        class=\"\"\r\n                                            >\r\n                                                                                                        <source\r\n                                media=\"(max-width: 150px)\"\r\n                                width=\"150\"\r\n                                height=\"150\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Seconda-1-150x150.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 300px)\"\r\n                                width=\"300\"\r\n                                height=\"176\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Seconda-1-300x176.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 768px)\"\r\n                                width=\"768\"\r\n                                height=\"449\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Seconda-1-768x449.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 1024px)\"\r\n                                width=\"1024\"\r\n                                height=\"599\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Seconda-1-1024x599.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                            <img\r\n                            class=\"a-image transparent border-image h-auto  w-full\"\r\n                                                        srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Seconda-1.webp\"\r\n                                                        title=\"Seconda\"\r\n                                                        type=\"image\/webp\"\r\n                        \/>\r\n                    <\/picture>\r\n\r\n                \r\n\r\n                    \r\n    \r\n            <\/div>\n        \n                    <div class=\"relative w-full\">\n                \n<div class=\"a-text font-text text-base normal mt-8 first:mt-0 space-y-4\">\n    <p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">People may wonder why the standard worries about a fault which is harmless, <b>apparently<\/b>. <b>The reason for that is due to the risk raising in case of a second fault on another phase<\/b>. In case of a three phase system, the first fault may be on phase L2 and the second on L3. In this situation, if a person touches both faulty equipment, he is subject to an electric shock of 400 Vac (in Europe).<\/span><\/span><\/span><\/p>\n<p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">How to avoid that? Very simple: all exposed conductive parts must be bonded together!<\/span><\/span><\/span><\/p>\n<\/div>            <\/div>\n        \n        \n                <div class=\"clear-both\"><\/div>\n        \n\n    <\/div>\n        <\/section>\n\n    \n\n\n\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:block\">\n\n    \n                    <div class=\"mb-6 relative w-full md:mb-4 lg:mb-8 xl:mb-9\">\n                \n        <div                class=\"m-headings\"\n            >\n    \n    \n<h4 class=\"a-heading text-left text-primary font-heading text-2xl lg:text-3xl xl:text-4xl font-normal mt-2 first:mt-0\">\n                    IT Systems: how safety is guaranteed    <\/h4>\n        <\/div>\n                <\/div>\n        \n                    <div\n                class=\"h-auto mb-6 md:mb-4 lg:mb-8 xl:mb-9 float-left mr-6 md:mr-4 lg:mr-8 xl:mr-9  overflow-hidden shadow-content-image w-full md:w-1\/2\"\n            >\n                \r\n\r\n    \r\n        \r\n            \r\n                \r\n                    <picture\r\n                        class=\"\"\r\n                                            >\r\n                                                                                                        <source\r\n                                media=\"(max-width: 150px)\"\r\n                                width=\"150\"\r\n                                height=\"150\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Terza-150x150.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 300px)\"\r\n                                width=\"300\"\r\n                                height=\"150\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Terza-300x150.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 768px)\"\r\n                                width=\"768\"\r\n                                height=\"385\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Terza-768x385.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 1024px)\"\r\n                                width=\"1024\"\r\n                                height=\"513\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Terza-1024x513.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                            <img\r\n                            class=\"a-image transparent border-image h-auto  w-full\"\r\n                                                        srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Terza.webp\"\r\n                                                        title=\"Terza\"\r\n                                                        type=\"image\/webp\"\r\n                        \/>\r\n                    <\/picture>\r\n\r\n                \r\n\r\n                    \r\n    \r\n            <\/div>\n        \n                    <div class=\"relative w-full\">\n                \n<div class=\"a-text font-text text-base normal mt-8 first:mt-0 space-y-4\">\n    <p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">The monitoring device is the first condition to reduce the risk. <b>The second is the bonding of all exposed conductive parts<\/b>. The reason is that if they are all bonded together, in case of a first fault on, let&rsquo;s say, L1, when the second on L3 happens, the latter becomes like a short circuit.<\/span><\/span><\/span><\/p>\n<p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">The short circuit current triggers the short circuit protection (circuit breaker for example) to open and therefore to interrupt the energy to the equipment.<\/span><\/span><\/span><\/p>\n<\/div>            <\/div>\n        \n        \n                <div class=\"clear-both\"><\/div>\n        \n\n    <\/div>\n        <\/section>\n\n    \n\n\n\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:flex-row\">\n\n    \n\n                    <div \n                class=\"order-2 relative w-full md:w-1\/2\"\n            >\n                <div\n                    class=\"pt-6 space-y-6 w-full md:pt-0 md:space-y-4 lg:space-y-8 xl:space-y-9  md:pl-12 xl:pl-24\"\n                >\n                    \n<div class=\"a-text font-text text-base normal mt-8 first:mt-0 space-y-4\">\n    <p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">So far, so good: IT systems are safe because:<\/span><\/span><\/span><\/p>\n<ol>\n<li style=\"text-align:justify; margin:0cm 0cm 0.0001pt 36pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\"><b>The neutral point is not grounded<\/b> and therefore the current that goes through the body that touches a faulty equipment does not find a way back to the source: the person is safe!<\/span><\/span><\/span><\/li>\n<li style=\"text-align:justify; margin:0cm 0cm 8pt 36pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">In any case, <b>the fault is detected<\/b> by, for example, an <b>Insulation Monitoring Device<\/b>. The picture shows an example of an IMD: in case of no faults the three lamps are on. In case of a fault to ground on L2, the middle lamp will switch off. Of course that is a &ldquo;didactical method&rdquo;, just to explain the concept.<\/span><\/span><\/span><\/li>\n<\/ol>\n<p><span style=\"font-size:16px;\"><b><span lang=\"EN-GB\"><span style=\"line-height:107%\"><span style=\"font-family:&quot;Calibri&quot;,sans-serif\">All exposed conductive parts are connected together<\/span><\/span><\/span><\/b><span lang=\"EN-GB\"><span style=\"line-height:107%\"><span style=\"font-family:&quot;Calibri&quot;,sans-serif\"> so, in case of a second fault on another phase, a short circuit protection will open the faulty circuit. Pls consider that if the fault is on&nbsp; the same phase, the protection does not open but the fault is not dangerous for the people. <\/span><\/span><\/span><\/span><\/p>\n<\/div>                <\/div>\n            <\/div>\n        \n                    <div\n                class=\"h-auto order-1 mb-8 md:mb-0   overflow-hidden shadow-content-image w-full md:w-1\/2\"\n            >\n                \r\n\r\n    \r\n        \r\n            \r\n                \r\n                    <picture\r\n                        class=\"\"\r\n                                            >\r\n                                                                                                        <source\r\n                                media=\"(max-width: 150px)\"\r\n                                width=\"150\"\r\n                                height=\"150\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quarta-150x150.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 300px)\"\r\n                                width=\"300\"\r\n                                height=\"282\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quarta-300x282.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 768px)\"\r\n                                width=\"768\"\r\n                                height=\"721\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quarta-768x721.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 1024px)\"\r\n                                width=\"1024\"\r\n                                height=\"961\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quarta-1024x961.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                            <img\r\n                            class=\"a-image transparent border-image h-auto  w-full mx-auto\"\r\n                                                        srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quarta.webp\"\r\n                                                        title=\"Quarta\"\r\n                                                        type=\"image\/webp\"\r\n                        \/>\r\n                    <\/picture>\r\n\r\n                \r\n\r\n                    \r\n    \r\n            <\/div>\n        \n    <\/div>\n        <\/section>\n\n    \n\n\n\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:block\">\n\n    \n                    <div class=\"mb-6 relative w-full md:mb-4 lg:mb-8 xl:mb-9\">\n                \n        <div                class=\"m-headings\"\n            >\n    \n    \n<h4 class=\"a-heading text-left text-primary font-heading text-2xl lg:text-3xl xl:text-4xl font-normal mt-2 first:mt-0\">\n                    IT Systems: the stray currents    <\/h4>\n        <\/div>\n                <\/div>\n        \n                    <div\n                class=\"h-auto mb-6 md:mb-4 lg:mb-8 xl:mb-9 float-left mr-6 md:mr-4 lg:mr-8 xl:mr-9  overflow-hidden shadow-content-image w-full md:w-1\/2\"\n            >\n                \r\n\r\n    \r\n        \r\n            \r\n                \r\n                    <picture\r\n                        class=\"\"\r\n                                            >\r\n                                                                                                        <source\r\n                                media=\"(max-width: 150px)\"\r\n                                width=\"150\"\r\n                                height=\"150\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quinta-150x150.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 300px)\"\r\n                                width=\"300\"\r\n                                height=\"173\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quinta-300x173.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 768px)\"\r\n                                width=\"768\"\r\n                                height=\"443\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quinta-768x443.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 1024px)\"\r\n                                width=\"1024\"\r\n                                height=\"590\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quinta-1024x590.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                            <img\r\n                            class=\"a-image transparent border-image h-auto  w-full\"\r\n                                                        srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Quinta.webp\"\r\n                                                        title=\"Quinta\"\r\n                                                        type=\"image\/webp\"\r\n                        \/>\r\n                    <\/picture>\r\n\r\n                \r\n\r\n                    \r\n    \r\n            <\/div>\n        \n                    <div class=\"relative w-full\">\n                \n<div class=\"a-text font-text text-base normal mt-8 first:mt-0 space-y-4\">\n    <p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:11pt\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">So far so good but we are missing an important aspect in IT systems: <b>the stray currents<\/b>.<\/span><\/span><\/span><\/p>\n<p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">If the neutral is not grounded, than <b>there is no way back to the source<\/b> and the person is safe. In reality, unfortunately, even in an ungrounded system <b>the current does find a way back to the source<\/b>! The issue is that an IT system can extend for kilometres and the larger is the network the larger will be the Parasitic capacitance, or <b>stray capacitance<\/b>.<\/span><\/span><\/span><\/p>\n<p style=\"margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">Rules of thumbs exist how to estimate the stray currents: here one of them:<\/span><\/span><\/span><\/p>\n<p style=\"margin: 0cm 0cm 8pt; text-align: center;\"><span style=\"font-size:11pt\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\"><span style=\"font-size:11.0pt\"><span style=\"line-height:107%\"><span style=\"font-family:&quot;Calibri&quot;,sans-serif\"><img decoding=\"async\" src=\"data:image\/png;base64,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\" style=\"width:69px; height:19px\" \/><\/span><\/span><\/span><\/span><\/span><\/span><\/p>\n<p style=\"margin-bottom:.0001pt; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">Where:<\/span><\/span><\/span><\/p>\n<ul style=\"list-style-type:square\">\n<li style=\"margin:0cm 0cm 0.0001pt 36pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">Id is the stray current in A and<\/span><\/span><\/span><\/li>\n<li style=\"margin:0cm 0cm 8pt 36pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">S is the installed power in MVA<\/span><\/span><\/span><\/li>\n<\/ul>\n<p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">For example, if the IT distribution is made of equipment having 100 kVA of installed power, a stray current of 40 mA may flow through the ground resistance of the equipment.<\/span><\/span><\/span><\/p>\n<p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">Why are stray currents dangerous in IT systems, <b>because they may create dangerous touch voltages<\/b>.<\/span><\/span><\/span><\/p>\n<p style=\"text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">Therefore, hereafter is the language used to limit the risk related to stay currents in IT systems.<\/span><\/span><\/span><\/p>\n<p style=\"margin-top:0cm; margin-right:49.55pt; margin-bottom:.0001pt; margin-left:49.65pt; text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\"><i><span lang=\"EN-GB\"><span style=\"line-height:107%\">[IEC 60364-4-41] 411.6.2 Exposed-conductive-parts shall be earthed individually, in groups, or collectively. The following condition shall be fulfilled: In a.c. systems the following condition shall be fulfilled to limit the touch voltage to:<\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<p style=\"margin: 0cm 0cm 8pt; text-align: center;\"><span style=\"font-size:11pt\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\">&nbsp;<m:omath><\/m:omath><br \/><span style=\"font-size:11.0pt\"><span style=\"line-height:107%\"><span style=\"font-family:&quot;Calibri&quot;,sans-serif\"><img decoding=\"async\" src=\"data:image\/png;base64,iVBORw0KGgoAAAANSUhEUgAAAJkAAAAcCAIAAAD9Q4qGAAAAAXNSR0IArs4c6QAAAAlwSFlzAAAWJQAAFiUBSVIk8AAABIJJREFUaEPtWT122kAQFjkLduHnE4gTkDRUaelEaTfuXKZzAyXuaFPRGJ0ATuDnAukuysz+\/+8KCTvWk6pk37Kz832zM9+MJ03TZOM3CAR+DMKL0QlEYORyOHEwcjlyORwEhuPJ+C7DXJaryar8JnRLLuHW9jebrTZlfT1fNKNfDFq9mdkA\/Hy1na\/LzYpvBYBC+Gj+zTYCSc2Wst4NaehJ+FetCzwrX1dspTqsc1wpDsqunv\/JjIINbrVnA8nHVdRZ6zO8PyBIDKOK\/EdBzDbGT5Wo0j3spwhuX45nqnX1mpxO4qB5kWR8EjZSOK4ZLogcQJcXIkid1yKox+5hQRS9PiPTOpis9wqsWi\/r8zugen877fbS2\/2aGi0W83Y\/S9xds3y4XO4Xu6eHzp6Ve8i5+e9f8qD5AmPxde8tqtPbe9dly5fHU77edb+SPFzhsn77e7JQrT5g7Yr8UqP53U0iOanbJIe3T7umOR6382lnJjNCpYHGzR1mrvdzK1VRb\/68ZsVzn0xqswJCm44qMQmJ4Ok6rwYw6DtW4CGuZiBMlvts0R+HLIJoDjECj76700flCzNKtvbhoywOWyeqqrKagLIq0SGpmug5zEuu1WAbrirKB02KtE4qDN784trMq36oBNE9sSKVUHVBS6zxvjne9zIxQQtYUeQCerPCupVOTP9YPuIPPIWS7hWYOyHU9yhlV3BpqzjwpJPESuCSXSusSeJMUkESkTbxY+A2is9caCqB1oVLQR767GHS1lF2rFt7cIHeUXCpCbReME7g0iGcVch9et5FS\/d36e0nBJshLgO5Reti\/GLZBboJUJAYzqVJd1RqNz1o6rgRaqVFDialgeTKbkmFNYF6R+ZGMuqFQoh8RFbkuMqNiXG4JDEda3UGMXVWb5YoQAMlP644nVLC+BlqozYqdzqdb4\/Hptktsv1yMiFjmVYKM3Rtp8xJ8YJrJ5CSPiHpEvR0TTaJEdHPuLQ0bFidAZOP9880IC\/\/qFG1WWMiTYzIZjPQ0Y4dcZvT+cMWKd0tzi\/9ceqKcJ8X8o7kV6ePNwAti3SUWnOPatfRevsHAOStu9KEP3XgS8e0F9BjcaHhNoqrZBxCVBed77XIsF6zCXMfhzd2TrVXIiWfjOvEcDDgikPt5qRYKMIwovqxXgrFpulJX5mVOqwTl26jBBnpcScLKfGk7OHChmt33pMZIlvbRvdEB3EsgYWDkr8dEsSHAlS5CBOci5PW0OCEigNxbMbeJMsI6rV4CtU6TFVRt9UlFnDMqJe7gHxvSVTKdqKEZXOJrapbP0G6UFrQhL7NiFDfZcT75YjTDl\/r8VmE0WWjmdZm61GP7Sa0lwzI7Ro+J8dKYuGOvp+o\/\/\/3hjZ\/i0bFA6Mn6RBi2HIQGVUtUrSS0p+kYefbJJCP\/Y4\/o6589oZkLmECeIOTfXM0C11Jb5ofBR\/oPTgPh5LnOwgVEG1geWXOIz8bpu9hLymiFSkmEpVMbD3mLlYh6DyOZfTLJ8Jpvg1m1wTneOM3CASSc+wgvB22EyOXw+H3Hxq5gtKMw2peAAAAAElFTkSuQmCC\" style=\"width:102px; height:19px\" \/><\/span><\/span><\/span><\/span><\/span><\/span><\/p>\n<p style=\"margin-top:0cm; margin-right:49.55pt; margin-bottom:.0001pt; margin-left:49.65pt; text-align:justify; margin:0cm 0cm 8pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\"><i><span lang=\"EN-GB\"><span style=\"line-height:107%\">Where:<\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<ul style=\"list-style-type:square\">\n<li style=\"margin-top:0cm; margin-right:49.55pt; margin-bottom:.0001pt; text-align:justify; margin:0cm 0cm 0.0001pt 36pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\"><b><i><span lang=\"EN-GB\"><span style=\"line-height:107%\">R<sub>A<\/sub> <\/span><\/span><\/i><\/b><i><span lang=\"EN-GB\"><span style=\"line-height:107%\">is the sum of the resistance in \u2126 of the earth electrode and protective conductor for the exposed-conductive-parts; <\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top:0cm; margin-right:49.55pt; margin-bottom:.0001pt; text-align:justify; margin:0cm 0cm 8pt 36pt\"><span style=\"font-size:16px;\"><span style=\"line-height:107%\"><span style=\"font-family:Calibri,sans-serif\"><b><i><span lang=\"EN-GB\"><span style=\"line-height:107%\">I<sub>d<\/sub><\/span><\/span><\/i><\/b><i><span lang=\"EN-GB\"><span style=\"line-height:107%\"> is the fault current in A of the first fault of negligible impedance between a line conductor and an exposed-conductive-part. The value of Id takes account of leakage currents and the total earthing impedance of the electrical installation.<\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<\/ul>\n<\/div>            <\/div>\n        \n        \n                <div class=\"clear-both\"><\/div>\n        \n\n    <\/div>\n        <\/section>\n\n    \n\n\n\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:block\">\n\n    \n        \n        \n        \n        \n                <div class=\"clear-both\"><\/div>\n        \n\n    <\/div>\n        <\/section>\n\n    \n\n\n\n\n    \n        <section\n            data-name=\"Contenuto testuale con immagine\"\n            class=\"bow-gte-testo-media u-spacer-base\"\n            id=\"\"\n        >\n            \n<div class=\"o-text-media px-side-spacer sm:px-side-spacer-sm lg:px-side-spacer-tablet 2xl:px-side-spacer-desktop flex flex-wrap items-start md:block\">\n\n    \n        \n                    <div\n                class=\"h-auto mb-6 md:mb-4 lg:mb-8 xl:mb-9 float-left mr-6 md:mr-4 lg:mr-8 xl:mr-9  overflow-hidden shadow-content-image w-full md:w-1\/2\"\n            >\n                \r\n\r\n    \r\n        \r\n            \r\n                \r\n                    <picture\r\n                        class=\"\"\r\n                                            >\r\n                                                                                                        <source\r\n                                media=\"(max-width: 150px)\"\r\n                                width=\"150\"\r\n                                height=\"150\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Sesta-150x150.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 300px)\"\r\n                                width=\"300\"\r\n                                height=\"173\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Sesta-300x173.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 768px)\"\r\n                                width=\"768\"\r\n                                height=\"443\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Sesta-768x443.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                                <source\r\n                                media=\"(max-width: 1024px)\"\r\n                                width=\"1024\"\r\n                                height=\"590\"\r\n                                srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Sesta-1024x590.webp\"\r\n                                type=\"image\/webp\"\r\n                            \/>\r\n                                                                            <img\r\n                            class=\"a-image transparent border-image h-auto  w-full\"\r\n                                                        srcset=\"https:\/\/www.gt-engineering.it\/wp-content\/uploads\/2023\/01\/Sesta.webp\"\r\n                                                        title=\"Sesta\"\r\n                                                        type=\"image\/webp\"\r\n                        \/>\r\n                    <\/picture>\r\n\r\n                \r\n\r\n                    \r\n    \r\n            <\/div>\n        \n                    <div class=\"relative w-full\">\n                \n<div class=\"a-text font-text text-base normal mt-8 first:mt-0 space-y-4\">\n    <p style=\"margin-bottom: .0001pt; text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">Bottom line, why is an IT system safe? Because of 4 conditions to be satisfied:<\/span><\/span><\/span><\/p>\n<ul style=\"list-style-type: square;\">\n<li style=\"text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><b>All exposed conductive parts must be connected together.<\/b><\/span><\/span><\/span><\/li>\n<li style=\"text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><b>The first fault is detected<\/b> by, for example, an <b>Insulation Monitoring Device<\/b>.<\/span><\/span><\/span><\/li>\n<li style=\"text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">The fault current <b>shall not generate a dangerous touch voltage<\/b> (\u2264 50 Vac).<\/span><\/span><\/span><\/li>\n<li style=\"text-align: justify; margin: 0cm 0cm 8pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><b>A second fault on a different phase must be detected<\/b> and a short circuit current device must de-energise the devices. Hereafter the language used in the standard:<\/span><\/span><\/span><\/li>\n<\/ul>\n<blockquote>\n<p style=\"text-align: justify; margin: 0cm 49.55pt .0001pt 49.65pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">[IEC 60364-4-41] 411.6.4 After the occurrence of a first fault, conditions for automatic disconnection of supply, in the event of a second fault occurring on a different live conductor, shall be as follows: <\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 49.55pt .0001pt 49.65pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">a) Where exposed-conductive-parts are interconnected by a protective conductor collectively earthed to the same earthing system, the conditions similar to a TN system apply and the<\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 49.55pt .0001pt 49.65pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">following conditions shall be fulfilled where the neutral conductor is not distributed in a.c.systems [..]:<\/p>\n<p><\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<\/blockquote>\n<p style=\"margin: 0cm 0cm 8pt; text-align: center;\"><strong><span style=\"font-size: 11pt;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><span style=\"font-size: 11.0pt;\"><span style=\"line-height: 107%;\"><span style=\"font-family: 'Calibri',sans-serif;\"><img decoding=\"async\" style=\"width: 87px; height: 19px;\" src=\"data:image\/png;base64,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\" \/><\/span><\/span><\/span><\/span><\/span><\/span><\/strong><\/p>\n<p style=\"text-align: justify; margin: 0cm 49.55pt .0001pt 49.65pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">Where<\/span><\/span><\/i><\/span><\/span><\/span><\/p>\n<ul style=\"list-style-type: square;\">\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: .0001pt; text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">U is the nominal a.c. voltage in V between line conductors (normally 400 Vac in Europe);<\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: .0001pt; text-align: justify; margin: 0cm 0cm 0.0001pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">Zs is the impedance in \u2126 of the fault loop comprising the line conductor and the protective conductor of the circuit;<\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<li style=\"margin-top: 0cm; margin-right: 49.55pt; margin-bottom: .0001pt; text-align: justify; margin: 0cm 0cm 8pt 36pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><span lang=\"EN-GB\"><span style=\"line-height: 107%;\">Ia is the current in A causing operation of the protective device within the time required in 411.3.2.2 for TN systems or 411.3.2.3.<\/span><\/span><\/i><\/span><\/span><\/span><\/li>\n<\/ul>\n<p style=\"text-align: justify; margin: 0cm 0cm 8pt;\">\n<p style=\"text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">The formula may seem odd, why? If we write it in a different way it will become clearer:<\/span><\/span><\/span><\/p>\n<p style=\"margin: 0cm 0cm 8pt; text-align: center;\"><span style=\"font-size: 11pt;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\"><i><\/i><span style=\"font-size: 11.0pt;\"><span style=\"line-height: 107%;\"><span style=\"font-family: 'Calibri',sans-serif;\"><img decoding=\"async\" style=\"width: 67px; height: 37px;\" src=\"data:image\/png;base64,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\" \/><\/span><\/span><\/span><\/span><\/span><\/span><\/p>\n<p style=\"text-align: justify; margin: 0cm 0cm 8pt;\"><span style=\"font-size: 16px;\"><span style=\"line-height: 107%;\"><span style=\"font-family: Calibri,sans-serif;\">The issue is that Zs is not a normal fault loop current, but the fault loop current of 2 fault loops. The standard is than considering that \u201ceach fault loop current\u201d would be half the current going through the full loop. In essence, <b>It\u2019s a way to be conservative!<\/b><\/span><\/span><\/span><\/p>\n<\/div>            <\/div>\n        \n        \n                <div class=\"clear-both\"><\/div>\n        \n\n    <\/div>\n        <\/section>\n\n    \n","protected":false},"excerpt":{"rendered":"<p>In IT Systems, the neutral of the distribution transformer is ungrounded.<\/p>\n","protected":false},"author":1,"featured_media":32541,"parent":3792,"menu_order":5,"template":"","meta":{"_acf_changed":false,"footnotes":""},"normative-tecniche":[58],"class_list":["post-3862","normativa_tecnica","type-normativa_tecnica","status-publish","has-post-thumbnail","hentry","tipologia_normativa-en-iec-standards"],"acf":{"sottotitolo":"","allegati":null},"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>IT Systems<\/title>\n<meta name=\"description\" content=\"...\" \/>\n<meta name=\"robots\" content=\"index, follow, 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