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The main components of the magnetic flap level gauge are made of stainless steel, giving it high reliability and safety, as well as a clearer display of the measured values. Used for detecting the liquid level of media in various equipment such as towers, tanks, vats, spherical vessels, and boilers. The level gauges in this series offer excellent sealing properties, are leak-proof, and are suitable for use in high-temperature, high-pressure, and corrosive environments. It overcomes the shortcomings of glass plate (tube) level gauges, such as poor indication clarity and susceptibility to breakage; it has no blind spots throughout the measurement process, offers clear displays, and has a wide measurement range. Features of magnetic flap level gauges: 1. When it is not suitable to make openings on the side of the container or when there is little space around it, this type of level gauge can be installed at the top or bottom of the container. 2. Suitable for liquid media with high viscosity. 3. The viewing direction of the display can be changed arbitrarily. 4. Install a level switch transmitter and control switch, which can be installed and adjusted at any time without shutting down the equipment. 5. In case of power failure, use the on-site switch. It is also unaffected, with high accuracy. 6. Add liquids of different colors every 10 minutes to make them easily distinguishable. Installation instructions for magnetic flap level gauges: 1. The linkage must not bend during installation; it should be inserted in a straight position. 2. As the float moves up and down with the liquid level (or interface), it drives the magnetic linkage to move as well. The magnets inside the magnetic linkage use the principle of magnetic coupling to activate the magnetic flap indicator, which then displays the liquid level or interface level in the process container in a clear and intuitive manner using red and blue colors (red for liquid, blue for gas). This allows for remote monitoring and automatic control. 3. It mainly consists of a main body, an on-site indicator, a remote transmitter, and upper and lower limit alarms, among other components. 4. After installation, use a magnet to guide the tilt column of the monitor so that values above zero display in white and values below zero display in red. With the continuous innovation of magnetic flap level gauges, their range of applications is also expanding, allowing them to be used in various industries. Due to long-term use, minor faults may inevitably occur; below are some simple methods for addressing these faults: 1. Status adjustment method: Generally, before the nature of the fault is determined, it is not advisable to touch the components in the circuit, especially those that can be adjusted. It should only be activated when necessary, unless measures have been taken in advance. Perhaps the faults will disappear sometimes after the change. 2. Isolation method: That is, by following the flowchart for fault detection, the area under investigation is gradually narrowed down; combined with signal comparison and component swapping, the location of the fault can be identified quickly. This method is relatively safe and reliable. Capacitor bypass method: This method can be used to determine the approximate location when abnormal conditions occur in the circuit. 3. Observation method: This involves using senses such as vision, smell, and touch to identify the location of any faults in the level gauge. 4. Elimination method: This involves removing the plug-in boards or components inside the instrument to determine the cause of the issue. If the instrument returns to normal after a certain plug-in board or component is removed, then it indicates that the fault lies there. 5. Tap and pressure method: This method can be used for testing instruments that perform poorly at times during operation. For more information, please visit the company’s official website at http://www.yb1518.com/. Please retain this link when reproducing the content! http://www.yb1518.com/uploadfiles/image/2010-11//201011191011384084.jpg