The Protection Application of Self Recovery Fuses in Sweepers
With the rapid development of modern technology, a large number of products can only be integrated into our daily lives, and the broom is one of them. As a smart home product, floor sweepers are not uncommon in first tier cities in China. The working principle of a floor sweeper is not too difficult to understand, mainly relying on the drive of internal small motors to provide power. Due to unstable voltage or jamming during operation, the motor may encounter problems such as rotor blockage, overload, or even burning out. So the internal motor must be designed with corresponding protection circuits to ensure its reliability and stability of operation.
There are many types of protection methods for small motors inside the sweeping machine. Previously, bimetallic temperature controllers were commonly used. When the motor was working, if the coil temperature increased, the circuit would be disconnected, and after the temperature decreased, it would be connected again. However, this method has a drawback, which is that after repeatedly connecting and disconnecting the power supply, the service life of the motor will be greatly reduced. In addition, some unscrupulous manufacturers try to save costs, Using aluminum or copper wires as coil wires, the motor heats up faster during operation, further shortening its service life. So, choosing the most protective material is the top priority. We suggest that you use PPTC as a protective device for small motors.
The PPTC self recovery fuse is very comprehensive in protecting the motor. It has a protective effect on both temperature and current above the set value, and its sensing speed for internal temperature and current changes in the motor is much faster than that of metal temperature controllers.
Once exceeding the limit is detected, PPTC will immediately activate the protection function, limiting the current of the motor circuit, in order to achieve the best protection purpose. PPTC will only self recover when the power supply is cut off or the fault is repaired, and continuous power supply will not self recover. This perfectly solves the potential danger of temperature reduction and repeated work burning the motor, while ensuring the accuracy of motor equipment protection.
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本文由三年不鸣转载自XC News,原文标题为:The Protection Application of Self Recovery Fuses in Sweepers.mini cooper fuse box symbols meaning,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
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Explanation of Parameters in the PPTC Specification for Self Healing Fuses
This is very simple. As long as you know the meaning represented by the parameters in the specification book, you can clearly and quickly view the PTC specification book for self recovery fuses.
What is A Self Recovery Fuse
Self recovery fuse is an overcurrent electronic protection component that uses a polymer organic polymer under high pressure, high temperature, and sulfurization reaction conditions.After mixing with conductive particle materials, it is processed through a special process. Habitually applying PPTC (Polymer Positive Temperature).
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What are the Standard Requirements for Self Restory Fuse Technology?
Self recovery fuse is a type of overcurrent electronic protection component, which is made by mixing conductive particle materials with polymer organic polymers under high pressure, high temperature, and vulcanization reaction conditions, and processed through special processes. What are the standard requirements for self restoring fuse technology? 1. The rated zero power resistance PPTC thermistor should be packaged in different levels according to the zero power resistance, and the resistance range should be indicated on the outer packaging.
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Rated voltage refers to the high voltage that can be withstood after the self recovery fuse is disconnected. The voltage borne by both ends of a self restoring fuse during the connection period is far less than its rated voltage. When selecting a self restoring fuse, it is generally required that its rated voltage be greater than the effective circuit voltage.
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