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Ceramic PCB in LED lighting field: better substrate materials after technological upgrading
Release time:2022-12-01 14:51:10  Author:富力天晟  Reading volume:330

     

In recent years, the competition in the field of LED lighting has gradually extended from the low-end market to mid to high-end products, and there is a trend of white heat. While struggling in this bloodless world, manufacturers who rely on policy subsidies to make a fortune have to think about this question: If policy changes or the LED market starts to saturate, then what will the fate of the large number of LED related enterprises that have sprung up like mushrooms?

 

 

 

It's more about seeing the results of small and medium-sized enterprises that have been eliminated despite being reassured in the low-end market, rather than saying that the rabbit is dead and the fox is sad, which has made everyone feel a sense of urgency. From the feedback from reality, it can be seen that the market demand for LED lighting is still very high. Good pre-sales and after-sales service, scientific appearance design, and humanistic promotion are all bonus points for the product. However, what ultimately affects customers' choices is still the quality of the product itself.

 

 

 

In the high-end field of LED lighting, technological progress relies on high-performance basic material standards, such as ceramic PCBs, which are highly compliant. From the perspective of the material itself, ceramic PCBs use special ceramics, which have advantages such as high temperature resistance, high strength, and applicability to composite structures. In the field of PCBs, ceramic PCBs are particularly outstanding. Higher thermal conductivity, better matching thermal expansion with silicon chips, lower resistance and stable metal conductive layer... In these aspects, other organic material substrates unfortunately fall behind in comparison with the characteristics exhibited by ceramic substrates.

 

 

 

I believe everyone has already noticed that oxygen sensors need to reach the operating temperature before they can start working. Generally, the initial working temperature of oxygen sensors is 300 ℃. When operating at high speeds, the working temperature is usually between 500 ℃ and 800 ℃, so ordinary materials cannot withstand this temperature at all. So special ceramics became the most suitable choice, just like the son of heaven.

 

      

There was also a dark period for ceramic PCBs in China. Due to inferior technology compared to foreign countries, domestic manufacturers were more inclined to import foreign products. During this period, many manufacturers were also looking forward to trying ceramic PCBs. Although their performance may not be satisfactory, it is widely acknowledged that ceramic PCBs have great potential. At the moment when technology is perfect, domestically produced ceramic PCBs will surely showcase their talents in the related electronic field. Nowadays, with the efforts of technical personnel, the Sliton brand has taken the lead in completing technological innovation. The ceramic PCB uses exclusive patent technology, and its hardness has increased by more than ten times compared to the previous domestic ceramic PCB. The metal layer and ceramic are more closely combined, basically solving the shortcomings in the early stage. In recent years, the performance has been stable and very reliable, and the production volume has gradually increased. It is also a reflection of the increase in production in the high-end LED lighting field in China.

 

 

 

In short, for the mid to high end LED lighting field, the selection of high-performance material substrates has become a foregone conclusion. After technological upgrading, the optimal ceramic substrate proves itself with excellent performance, and will inevitably become an indispensable component of the emitting and heating LED high-end lighting field in the near future.


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