{"id":128724,"date":"2026-08-16T04:06:44","date_gmt":"2026-08-16T01:06:44","guid":{"rendered":"https:\/\/gahzly.com\/?post_type=product&#038;p=128724"},"modified":"2026-08-17T04:03:10","modified_gmt":"2026-08-17T01:03:10","slug":"maxge-8","status":"publish","type":"product","link":"https:\/\/gahzly.com\/en\/product\/maxge-8\/","title":{"rendered":"Maxge"},"content":{"rendered":"<h2><strong>Comprehensive Guide and Electrical\/Physical Architecture of the Maxge Under-Voltage Release 220 VAC: Automatic Protection Against Undervoltage Conditions<\/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>Protecting motors and sensitive equipment against undervoltage<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">The primary purpose of this accessory is to protect motors and sensitive electronic loads against undervoltage conditions that can cause abnormal current, stalled operation, or unsafe restarting behavior when voltage returns. <b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>This helps protect motors and sensitive equipment against undervoltage-related damage at the site through the Gahzly platform<\/strong><\/b> and supports a stable operating environment when correctly selected and installed.<\/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>Field installation and connection of the Maxge undervoltage release<\/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>Internal installation within the breaker&#8217;s mechanical structure<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Begin installation by disconnecting all electrical supplies from the main breaker, whether an MCCB or air circuit breaker, and verifying the absence of voltage. Install the undervoltage release carefully in the breaker&#8217;s designated accessory cavity and make sure the mechanical mounting points match the manufacturer&#8217;s instructions at the 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>Connecting the 220 V AC monitoring circuit<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">Connect the (UVR) coil terminals to the 220 V AC supply\/monitoring circuit according to the approved wiring diagram. Tighten the terminals carefully to maintain a stable signal and avoid momentary interruptions that could cause nuisance tripping at the installation 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>Technical specifications and functions table<\/strong><\/b><\/p>\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>Nominal operating voltage (220V AC)<\/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\">Continuous monitoring of the AC supply voltage<\/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\">Engineered compatibility with standard control networks<\/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>Automatic trip threshold (35%-70%)<\/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\">Detecting severe undervoltage and issuing an immediate trip command<\/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\">Helping prevent motor and sensitive-equipment damage caused by undervoltage<\/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>Spring-opposed electromagnetic holding mechanism<\/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\">Maintaining the connected state while adequate voltage is present and releasing when voltage is lost<\/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\">Providing autonomous mechanical protection without dependence on software systems<\/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>Compatibility with MCCB and ACB circuit breakers<\/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\">Straightforward internal installation in compatible large Maxge breakers<\/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\">Adding advanced protective functionality to compatible standard breakers<\/span><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/figure>\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>Objective advantages and limitations<\/strong><\/b><\/p>\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>Critical electromechanical protection and tripping unit<\/strong><\/b> for large and molded-case circuit breakers 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>Continuous and immediate monitoring<\/strong><\/b> of the supply voltage with fast response when voltage falls below the safe threshold.<\/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>Effective protection for motors<\/strong><\/b> and sensitive equipment against undervoltage conditions and abnormal restarting current 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>High reliability<\/strong><\/b> in automatic mechanical tripping without requiring human intervention or complex external signals.<\/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\">Requires reasonably stable network voltage to reduce nuisance trips caused by brief transient dips.<\/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\">Requires careful selection and skilled installation when mounting internally and wiring the control circuit.<\/p>\n<\/li>\n<\/ul>\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>Suitable and unsuitable applications<\/strong><\/b><\/p>\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 large industrial motor feeders that are adversely affected by undervoltage 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 main and sub-distribution boards that supply electronic and sensitive loads 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\">Power systems in factories and high-rise buildings that require immediate safe tripping during severe undervoltage 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\">Not suitable for electrical networks with continuous unstable voltage fluctuation where repeated nuisance tripping would occur.<\/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\">Not suitable for simple electrical panels and circuits that do not require dedicated undervoltage protection.<\/p>\n<\/li>\n<\/ul>\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>Safe operation and installation method<\/strong><\/b><\/p>\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 from the breaker and verify the absence of voltage with measuring instruments before starting work at the 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> Place the undervoltage release in its designated cavity inside the breaker and secure it with the approved fasteners to ensure stable mounting.<\/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 220 V AC monitoring wires to the designated coil terminals and tighten them carefully.<\/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>Inspection and commissioning test:<\/strong><\/b> Perform a controlled voltage-reduction test to confirm that the release trips the breaker at the specified threshold at the installation 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 warning: never force the breaker to remain in the (ON) position while undervoltage or loss of supply persists at the (UVR) coil, because the release is designed to prevent breaker closing until the monitored voltage returns to a safe operating level.<\/p>\n<\/blockquote>\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>Maintenance, cleaning, and extending service life<\/strong><\/b><\/p>\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 inspection of electrical connections:<\/strong><\/b> Check that the monitoring-wire terminal screws remain tight to prevent contact resistance or signal interruption at the 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>Internal mechanical cleanliness:<\/strong><\/b> Keep the area around the release free from dust and deposits so the plunger and electromechanical parts can move freely.<\/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>Periodic performance test:<\/strong><\/b> Test release operation by simulating a controlled undervoltage condition to confirm accurate breaker tripping.<\/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>Monitor network-voltage stability:<\/strong><\/b> Check for severe or continuous fluctuations in the monitored supply voltage (220V AC) to reduce unnecessary operating stress on the coil.<\/p>\n<\/li>\n<\/ul>\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>Important advice before purchase<\/strong><\/b><\/p>\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>Confirm model compatibility:<\/strong><\/b> Verify that the undervoltage release is fully compatible with the type and model of your circuit breaker, such as a compatible Maxge MCCB or ACB, before purchasing at the 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>Selecting the operating voltage accurately:<\/strong><\/b> Confirm that the monitoring supply is exactly 220 V AC before selecting the release for the installation 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>Source genuine Maxge accessories through<b style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\"><strong>Gahzly<\/strong><\/b> to support product quality, correct calibration, and engineered safety.<\/p>\n<\/li>\n<\/ul>\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 conclusion<\/strong><\/b><\/p>\n<p style=\"font-family: &#039;Google Sans Text&#039;, sans-serif;line-height: 1.15;margin-top: 0px\">The Maxge Under-Voltage Release &#8211; UVR 220 VAC is a critical electromechanical protection accessory for compatible large and molded-case circuit breakers. By continuously monitoring the supply voltage and mechanically tripping the breaker when voltage falls below the permitted operating threshold, the release helps protect motors and sensitive equipment and supports network stability. Selecting the correct genuine accessory 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 strengthening preventive protection, reducing costly failures, and maintaining a safer and more stable operating environment.<\/p>\n","protected":false},"excerpt":{"rendered":"<h2><strong>Comprehensive Guide and Electrical\/Physical Architecture of the Maxge Under-Voltage Release 220 VAC: Automatic Protection Against Undervoltage Conditions<\/strong><\/h2>\n<p><strong>Introduction to the Maxge Under-Voltage Release &#8211; UVR 220 VAC and its engineering role<\/strong>In electrical power systems affected by voltage fluctuations and sudden disturbances, motors and sensitive equipment may require automatic protection against sustained undervoltage. The <strong>Under-Voltage Release &#8211; UVR 220 VAC from Maxge<\/strong>provides<strong>is a critical electromechanical protection and tripping accessory intended for compatible large circuit breakers and molded-case circuit breakers (MCCB)<\/strong>, available through<strong>Gahzly<\/strong>. This accessory helps provide automatic breaker tripping when the monitored supply falls below the operating range, supporting protection of electrical equipment against damaging undervoltage conditions.<strong>Electrical, physical, and operating architecture of the Maxge undervoltage release<\/strong><\/p>\n<p><strong>Continuous voltage monitoring and automatic-trip mechanism<\/strong> The undervoltage release operates by maintaining a magnetic field that holds the mechanical trip mechanism in the normal operating state. <strong>The coil continuously monitors the supply voltage at its nominal operating voltage of 220 V AC (220V AC)<\/strong>. While the voltage remains within the acceptable operating range, the magnetic core holds the release mechanism in position. <strong>If the voltage falls below the permitted threshold or is lost, typically within a manufacturer-defined range that may be around 35% to 70% of nominal voltage, the coil releases the mechanism and automatically trips the circuit breaker<\/strong>, preventing continued operation under severe undervoltage conditions at the site through <strong>Gahzly<\/strong>.<\/p>\n","protected":false},"featured_media":129602,"comment_status":"open","ping_status":"closed","template":"","meta":[],"product_brand":[12796],"product_cat":[15946],"product_tag":[],"class_list":["post-128724","product","type-product","status-publish","has-post-thumbnail","product_brand---en","product_cat-undervoltage-releases","first","instock","sale","shipping-taxable","purchasable","product-type-variable"],"_links":{"self":[{"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product\/128724","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=128724"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/media\/129602"}],"wp:attachment":[{"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/media?parent=128724"}],"wp:term":[{"taxonomy":"product_brand","embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product_brand?post=128724"},{"taxonomy":"product_cat","embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product_cat?post=128724"},{"taxonomy":"product_tag","embeddable":true,"href":"https:\/\/gahzly.com\/en\/wp-json\/wp\/v2\/product_tag?post=128724"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}