The rapid increase in the demand for LED lighting terminals has led to the rapid increase in orders and shipments of many downstream LED lighting companies, as well as LED production equipment manufacturers, glue manufacturers, LED drive power plants and LED heat dissipation materials manufacturers. The downstream supporting supply chain enterprises have brought great market opportunities. Especially in the field of LED packaging and automated production equipment, in the current LED lighting market, the market demand has gradually increased in recent years. Zhao Yutao, general manager of Shenzhen Hyunshuo Optoelectronics, was very touched by this. Since the second half of last year, Hyun Shuo’s automated spectroscopic and tape machine equipment orders have soared. In the first half of this year, the shipment of automated spectroscopic tape equipment has reached 800-900 units, the remaining 600 orders are scheduled to the end of this year. As the demand for LED lighting market gradually enlarges and the demographic dividend gradually disappears, LED lighting enterprises with traditional manual production mode will face bottlenecks in development, and intelligent manufacturing will be the future development trend. Zhao Yutao said that the introduction of LED automated production lines can effectively solve the problem of ensuring product quality while further reducing production costs, enhancing product competitiveness, and making it easier to win customer recognition. Zhao Yutao introduced that the fully automated production line can effectively save labor costs and increase production capacity quickly. It is suitable for mass production, shortens delivery time, improves yield, and produces products with higher product security. In addition to LED packaging equipment manufacturers, domestic glue has formed a related supporting industrial chain under the stimulation of the rapid development of LED industry. Due to the high cost performance, the pace of replacing imported glue with domestic glue is accelerating. The role of the encapsulant is to protect the chip and gold wire from environmental influences, reduce refraction, and improve light efficiency. Ma Jing, deputy general manager of Kangmet Technology, believes that after 2011, domestic silica gel is gradually approaching imported products in terms of quality, and it has also occupied a part of the domestic high-end market with high cost performance. In the keynote speech, Ma Jing pointed out that LED domestic glue has gradually entered a mature stage from 2011 to 2012. Since 2013, the domestic LED silicone industry chain has basically formed, and the adoption rate of domestic packaging silica gel by LED packaging factory is increasing. High, in which the rapid decline in prices and increased cost pressure have played a big role in promoting it. From 2013 to 2014, domestic LED glue has been fully applied. As the market demand increases, we are also increasing R&D efforts and expanding production scale. In the future, with the popularization of applications, the localization rate of LED silica gel will be further improved. Upgrade, domestic glue will accelerate the replacement of Dow Corning, Shin-Etsu Chemical and other imported glue products. In terms of the cooling kit, Liu Shiming, deputy director of Kangrong Fine Ceramics Engineering Center, brought a new trend of ceramic thick film technology in LED application in the keynote speech of the summit. It is well known that LED lamps can only achieve stable luminous efficiency and quality under the good heat dissipation design, thereby reducing thermal attenuation and improving the life of products and peripheral components. In recent years, ceramic heat sinks have received wide attention in the industry due to their high insulation (15kV/mm), high thermal radiation (>0.95), high thermal conductivity, excellent electromagnetic compatibility, and thermal cycle stability. There are three main ways of heat conduction, convection and radiation. The ceramic material itself has a high emissivity (0.95) and a large microscopic specific surface area, which can promote the heat of the surface of the ceramic heat sink to the air to achieve the purpose of heat dissipation. Liu Shiming introduced at the meeting that the thermal conductivity of air is 0.03W/mk at 75 °C. If there is no convection, the air conduction heat is very small, and the radiation heat dissipation determines the overall heat dissipation effect. Therefore, in this case, ceramic materials have a unique heat dissipation advantage. In Liu Shiming's view, LED lamps use ceramic heat-dissipating materials instead of metal materials to obtain more stable quality, simplify the product system, reduce the system cost, and directly metal coating.
CCP Epoxy Resins
Cycloaliphatic Epoxy Resins, also known as CCP (Cycloaliphatic Epoxy Resin), are a type of high-performance epoxy resin. They are a subclass of epoxy resins that are based on cycloaliphatic compounds, which offer unique advantages over other types of epoxy resins.
CCP epoxy resins offer excellent mechanical properties, such as high strength, stiffness, and dimensional stability. They also have excellent chemical resistance and can withstand exposure to harsh chemicals, acids, and solvents. In addition, they have excellent electrical properties, including high dielectric strength and low dielectric constant.
CCP epoxy resins are commonly used in a wide range of applications, such as coatings, adhesives, laminates, and composites. They are particularly well-suited for applications that require high performance and durability, such as aerospace, marine, and electronic applications.
One of the unique advantages of CCP epoxy resins is their ability to cure at low temperatures. This makes them ideal for use in applications where high temperatures cannot be used, such as in the electronics industry. They can also be cured quickly, which can reduce processing times and increase productivity.
CCP epoxy resins are available in a variety of grades, each with its own unique properties and applications. They can be used alone or in combination with other resins to achieve specific performance characteristics.
In summary, CCP epoxy resins are a type of high-performance epoxy resin that offer excellent mechanical, chemical, and electrical properties. They are commonly used in applications that require high performance and durability, such as aerospace, marine, and electronic applications. They are unique in their ability to cure at low temperatures and quickly, making them ideal for use in the electronics industry.
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