Analysis: Under what circumstances LED lights will be damaged

Due to the low carbon environmental protection, energy saving and long life of LED lighting, more and more people have abandoned traditional lamps and replaced them with LED lamps. However, people often use improper lighting in their daily lives, causing LED lamps to no longer 'longevity'. Then here, Fangtian Technology will analyze the causes of LED damage in daily life so that everyone can better prevent it.

One: a sudden rise in the supply voltage. There are many reasons why the power supply voltage suddenly rises. For example, the quality of the power supply or the improper use of the user may cause the power supply voltage to suddenly rise.

Two: A partial short circuit of the LED power supply path is usually caused by a short circuit of a component or a printed line or other wire in the line.

Three: A certain LED is damaged due to its own quality, thus forming a short circuit, and its original voltage drop is transferred to other LEDs.

Four: The heat dissipation of the lamp is not good. The temperature inside the luminaire is too high, which deteriorates the characteristics of the LED.

Five: The inside of the lamp is filled with water, and the water is electrically conductive. This leads to short circuit of the lamp line.

Sixth: At the time of assembly, there is no anti-static work, so that the inside of the LED has been damaged by static electricity. Despite the application of normal voltage and current values, it is extremely susceptible to LED damage.

Nickel And Nickel Alloys

Nickel is a versatile, highly corrosion resistant element that will alloy with most metals. Due to its corrosion resistance, nickel is used to maintain product purity in the processing of foods and synthetic fibers. It is highly resistant to various reducing chemicals and is unexcelled in resistance to caustic alkalies. In addition, nickel has good thermal, electrical and magnetostrictive properties. Relatively high thermal conductivity of this metal has lead to its frequent use for heat exchangers

Commercially pure or low-alloy nickel may contain very small amounts of alloying elements to absolutely none. By contrast nickel alloys contain significant amounts of added elements. Nickel and nickel alloys are both non-ferrous metals that are useful in a range of applications, most of which involve corrosion resistance and/or heat resistance.



Nickel Alloy alternatives to trademark [brand" names.

Alloy C276 alternative to Hastelloy C-276 and Hastelloy C
Alloy B-2 alternative to Hastelloy B-2
Alloy C-22 alternative to Hastelloy C-22
Alloy X alternative to Hastelloy X and Inconel HX
Alloy 20 alternative to Carpenter 20 and Incoloy 20
Alloy718 alternative to Inconel 718
Alloy 800 alternative to Incoloy 800
Alloy 800H/HT alternative to Incoloy 800H/HT
Alloy 400 alternative to Monel 400
Alloy K-500 alternative to Monel K-500
Alloy 625 alternative to Inconel 625
Alloy 600 alternative to Inconel 600
Alloy 601 alternative to Inconel 601


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