{"id":126895,"date":"2026-08-16T03:18:49","date_gmt":"2026-08-16T00:18:49","guid":{"rendered":"https:\/\/gahzly.com\/?post_type=product&#038;p=126895"},"modified":"2026-08-17T03:56:51","modified_gmt":"2026-08-17T00:56:51","slug":"%d9%82%d8%a7%d8%b7%d8%b9-%d8%aa%d9%81%d8%a7%d8%b6%d9%84%d9%8a-%d8%b4%d9%86%d8%a7%d9%8a%d8%af%d8%b1-rcbo","status":"publish","type":"product","link":"https:\/\/gahzly.com\/en\/product\/%d9%82%d8%a7%d8%b7%d8%b9-%d8%aa%d9%81%d8%a7%d8%b6%d9%84%d9%8a-%d8%b4%d9%86%d8%a7%d9%8a%d8%af%d8%b1-rcbo\/","title":{"rendered":"\u0642\u0627\u0637\u0639 \u062a\u0641\u0627\u0636\u0644\u064a \u0634\u0646\u0627\u064a\u062f\u0631 RCBO"},"content":{"rendered":"<h2><strong>Comprehensive Guide to the Schneider Electric iC60H 32 A Type A RCBO: Advanced Residual-Current and Overcurrent Protection<\/strong><\/h2>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Modified differential coil and filters for decoding distorted current waveforms<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">The internal construction of this breaker features<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>a modified differential coil with precision filters capable of detecting and interpreting distorted current waveforms produced by control devices, phone chargers, and vehicle chargers<\/strong><\/b>, helping reduce nuisance tripping while accurately detecting genuine leakage currents on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Dual function and monitoring of line and neutral conductors<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">The breaker performs<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>a dual function, monitoring both the line and neutral conductors through its developed connection design<\/strong><\/b>, so both paths are disconnected when unsafe leakage occurs on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Thermal element for cable protection and magnetic tripping mechanism (C curve)<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">It also contains<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>a calibrated thermal element to protect cables against overload when the specified rating of 32 A is exceeded, together with a magnetic mechanism for instantaneous short-circuit tripping according to the C tripping curve<\/strong><\/b>, providing integrated conductor protection on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Enhanced personal protection and clear VisiTrip indicators<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">This breaker provides<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>enhanced protection against electric shock when leakage exceeds 30 mA, together with clear VisiTrip indication to simplify maintenance<\/strong><\/b>and identify the cause of tripping quickly on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Operating mechanism and functional interaction of the iC60H breaker<\/h3>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Smart detection of AC and pulsating DC leakage currents (Type A)<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">The advanced operating function of a Type A breaker lies in its ability to detect alternating-current (AC) earth leakage as well as pulsating direct-current (Pulsating DC) leakage produced by modern electronic equipment and nonlinear loads. As current passes through the line and neutral conductors, the electronic circuits and differential coil continuously compare the instantaneous balance; if leakage exceeds the specified value of 30 mA, the tripping mechanism is activated to interrupt the circuit rapidly.<\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Dual response to overload and short circuit<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">In addition to residual-current protection, the thermal section monitors the temperature rise caused by current above 32 A over a defined period, causing the bimetal element to bend and trip the circuit, while the magnetic section responds instantaneously to very high short-circuit currents according to the characteristics of the C tripping curve.<\/p>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Installation engineering and field wiring of the Schneider breaker<\/h3>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Mounting on DIN rail<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Installation begins by securely mounting the breaker on a standard DIN rail inside the main or sub-distribution board and verifying that the unit is mechanically stable.<\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Connecting conductors and incoming\/outgoing cables<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Supply and load cables for the 32 A circuit, including the line conductor and the dedicated neutral used for dual monitoring, are inserted into the designated terminals. The terminal screws are tightened to the specified torque to provide a stable connection and minimize heating on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Technical specifications and functions table<\/h3>\n<figure class=\"table\">\n<table style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-bottom: 32px;margin-top: 0px\">\n<thead style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<tr style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<th style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><strong style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-bottom: 0px;margin-top: 0px\">Technical specification<\/strong><\/th>\n<th style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><strong style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-bottom: 0px;margin-top: 0px\">Primary function<\/strong><\/th>\n<th style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><strong style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-bottom: 0px;margin-top: 0px\">Practical benefit to the user<\/strong><\/th>\n<\/tr>\n<\/thead>\n<tbody style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<tr style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>32 A rating (Type A &#8211; RCBO)<\/strong><\/span><\/b><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Combines overload, short-circuit, and earth-leakage protection in one unit<\/span><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Saves panel space while providing comprehensive protection for medium-current circuits<\/span><\/td>\n<\/tr>\n<tr style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Type A technology<\/strong><\/span><\/b><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Accurate detection of AC and pulsating DC leakage currents<\/span><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Effective protection with modern electronic equipment and vehicle chargers<\/span><\/td>\n<\/tr>\n<tr style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>30 mA residual-current sensitivity<\/strong><\/span><\/b><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Rapid response to earth-leakage currents that may endanger people<\/span><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Provides a high level of protection against electric shock<\/span><\/td>\n<\/tr>\n<tr style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Magnetic tripping curve (C)<\/strong><\/span><\/b><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Instantaneous tripping for short-circuit currents in the range of 5 to 10 times the rated current<\/span><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Suitable protection for standard residential and industrial feeders and wiring<\/span><\/td>\n<\/tr>\n<tr style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>VisiTrip visual indicator<\/strong><\/span><\/b><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Clearly indicates the reason for tripping, whether a residual-current fault or short circuit\/overload<\/span><\/td>\n<td style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px;padding: 8px 12px\"><span style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Reduces maintenance time and simplifies work for field technicians<\/span><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/figure>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Objective advantages and limitations<\/h3>\n<ul style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Comprehensive three-function protection<\/strong><\/b>(overload, short circuit, and earth leakage) in one compact unit on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Strong compatibility with electronic loads<\/strong><\/b>thanks to Type A architecture and filtering of distorted current waveforms.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Enhanced personal safety<\/strong><\/b>with 30 mA sensitivity for electric-shock protection.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Easy fault diagnosis<\/strong><\/b>through visible VisiTrip indicators.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">An integrated RCBO generally costs more than a conventional breaker used with a separate residual-current protection device.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">It requires a defined amount of width inside the distribution board compared with a standard single modular breaker.<\/p>\n<\/li>\n<\/ul>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Suitable and unsuitable applications<\/h3>\n<ul style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Protecting sensitive load circuits that include electronic equipment, phone chargers, and vehicle chargers on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Protecting high-use 32 A circuits, such as larger water heaters, air conditioners, or workshop subcircuits.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Residential and commercial installations requiring a high level of protection against electric shock and electrical fire.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Use as the single main incomer for an entire distribution board, where allocating residual-current protection to individual final circuits is often preferable to avoid a complete site outage when one branch develops leakage.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Applications exposed to extreme temperature variation or heavy moisture without a suitably rated IP-protected distribution enclosure.<\/p>\n<\/li>\n<\/ul>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Safe operation and installation method<\/h3>\n<ol style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\" start=\"1\">\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Complete Electrical Isolation:<\/strong><\/b>Disconnect the main supply to the distribution board and measure the voltage to confirm that it is fully de-energized before starting work on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Mechanical Mounting:<\/strong><\/b>Mount the breaker on the DIN rail in the distribution board at the position allocated to the 32 A circuit.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Electrical connection:<\/strong><\/b>Connect the incoming and outgoing cables and the neutral conductor to their designated terminals according to the circuit diagram, and tighten the terminal screws securely.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Testing and verification:<\/strong><\/b>Restore the supply and press the Test button on the breaker to verify operation of the residual-current tripping mechanism on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<\/ol>\n<blockquote style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Important safety notice: Do not exceed the maximum rated load of 32 A. Ensure that the neutral conductor is connected correctly so the electronic monitoring circuitry can operate as intended and the installation is not exposed to electrical hazards.<\/p>\n<\/blockquote>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Maintenance, cleaning, and extending service life<\/h3>\n<ul style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Periodic Test-button check:<\/strong><\/b>Press the Test button monthly to verify free mechanical operation and the response of the residual-current circuitry on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Checking connection tightness:<\/strong><\/b>Periodically inspect the terminal screws for loosening caused by thermal expansion or vibration.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>General panel cleanliness:<\/strong><\/b>Keep the distribution board free from dust and moisture to help the electronic components operate in suitable conditions.<\/p>\n<\/li>\n<\/ul>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Important advice before purchase<\/h3>\n<ul style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Verifying the appropriate current rating:<\/strong><\/b>Confirm from the load calculations that the intended circuit genuinely requires a 32 A rating before purchase on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Confirming the need for Type A protection:<\/strong><\/b>Choose a Type A breaker when the network includes modern electronic equipment and chargers requiring detection of pulsating DC leakage currents and improved immunity to nuisance tripping on site through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>.<\/p>\n<\/li>\n<li style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Use Genuine, Traceable Products:<\/strong><\/b>Choose genuine Schneider Electric products from the iC60H range through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>to obtain the specified architecture, reliability, and long-term safety performance.<\/p>\n<\/li>\n<\/ul>\n<h3 style=\"font-family: &#039;Google Sans&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Comprehensive conclusion<\/h3>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">The Schneider iC60H Type A 32 A RCBO (Schneider Electric iC60H RCBO Type A 32A) is an integrated protective device for modern electrical circuits. By combining electronic monitoring, a differential sensing coil for distorted current waveforms, dual line-and-neutral monitoring, thermal and magnetic protection with a C curve, 30 mA residual-current sensitivity, and VisiTrip indication, it provides coordinated protection for people, conductors, and connected equipment. Selecting the correct genuine product and sourcing it through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b>is an important step toward improving electrical protection, protecting equipment and property, and maintaining a professional and safe installation.<\/p>\n","protected":false},"excerpt":{"rendered":"<h2><strong>Comprehensive Guide to the Schneider Electric iC60H 32 A Type A RCBO: Advanced Residual-Current and Overcurrent Protection<\/strong><\/h2>\n<p><strong>Introduction to residual-current protection systems and their vital roles in modern power networks<\/strong>Modern electrical distribution networks, amid the growing use of complex electronic loads, require precise protection solutions that go beyond interrupting current during a short circuit to provide comprehensive protection against electric shock and distorted earth-leakage currents. The<strong>Schneider Electric iC60H 32 A Type A RCBO<\/strong>is an integrated engineering solution designed to provide reliable safety by combining the functions of a miniature circuit breaker (MCB) and a residual-current circuit breaker (RCCB) in one compact unit to protect installations through<strong>Gahzly<\/strong>.<\/p>\n<h3>Engineering and physical architecture of the Schneider iC60H (Type A)<\/h3>\n<p><strong>Integration of advanced electronic monitoring circuits in a compact enclosure<\/strong>The enclosure uses<strong>Schneider Electric 32 A Type A residual-current circuit breaker with overcurrent protection (RCBO)<\/strong>a rigid molded polymer body with additional internal depth for compatible control components and wiring.<strong>integrates advanced electronic monitoring circuits within a compact, robust enclosure for high reliability<\/strong>within the installation.<strong>Gahzly<\/strong>. This advanced architecture supports rapid response to electrical faults.<\/p>\n","protected":false},"featured_media":136435,"comment_status":"open","ping_status":"closed","template":"","meta":[],"product_brand":[13305],"product_cat":[15383],"product_tag":[],"class_list":["post-126895","product","type-product","status-publish","has-post-thumbnail","product_brand-schneider","product_cat-koataa-altsrb-alardy","first","instock","sale","shipping-taxable","purchasable","product-type-simple"],"_links":{"self":[{"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product\/126895","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product"}],"about":[{"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/types\/product"}],"replies":[{"embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/comments?post=126895"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/media\/136435"}],"wp:attachment":[{"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/media?parent=126895"}],"wp:term":[{"taxonomy":"product_brand","embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product_brand?post=126895"},{"taxonomy":"product_cat","embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product_cat?post=126895"},{"taxonomy":"product_tag","embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product_tag?post=126895"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}