[Kunshan] the Importance of Heat Dissipation for UVLED Devices
2023-02-10
Tianhui
25
UVLED belongs to emerging products. For everyone, it may be more impressed with cold light sources. The quality and life of the equipment. Friends who have used laptops know that solid -state electronic devices will generate heat energy. The same is true for UVLED curing devices. Regarding the current UVLED production process on the market, the photoelectric conversion efficiency of UVLED lamp beads is also available to the topic. UVLED lamp beads can only convert 15-25% of electrical energy into optical energy. It becomes heat, so the UVLED curing device must install the cooling device to dissipate heat. Due to the current limitation of semiconductor light -emitting diode chip technology, the UVLED photoelectric conversion rate needs to be improved, especially the high -power LED lamp beads, because of its high power, about 60%of the electric energy Development, the photoelectric conversion rate will gradually increase), which requires end customers to do a good job of heat dissipation when using high -power UVLED sources to curing products to ensure that high -power UVLED lamp beads can work normally. Common cooling methods are currently three methods of cooling, cold and water cooling in the cooling method of UVLED curing equipment. It is worth noting that the higher the output energy of the UVLED curing device, the more calories generated. Therefore, while pursuing increasingly higher radiation energy, the control and elimination capacity of the UVLED curing equipment supplier is also very important. Natural cooling UVLED point light source wind -cold UVLED surface light source water -cold UVLED surface light sources with the improvement of UVLED and the increase of radiation energy, its requirements for the heat dissipation technology of the system also increased accordingly. Small power is generally selected from cold or cold. If it is a high -power light source, then use the water cooling method to reduce the temperature down. As a professional UVLED curing equipment manufacturer, Tianhui also has rich experience in this piece. Welcome to inquire.
UV LED technology has revolutionized the printing industry, offering a safe and efficient alternative to traditional printing methods. One of the most significant advantages of UV LED technology is its ability to produce high-quality prints with low-migration properties.
UV LED printing system is a cutting-edge technology that has revolutionized the printing industry by offering faster printing speeds, improved print quality, and increased energy efficiency. However, like any technology, it has its own pros and cons.
The quantity of framework suppliers, formulators, and OEM machine manufacturers supporting these applications extends alongside the rundown of functional UV LED utilizes. This consistent ascent empowers UV LED innovation's future in the business.
UV LED curing transforms inks, coatings, adhesives, and other photo-reactive materials into immediately fixed-in-place solids through polymerization using efficient electron ultraviolet (UV) light. In contrast, "drying" solidifies chemistry by absorption or evaporation.
The UV light utilized nowadays is traditionally produced by UV lamps based on mercury vapor for numerous industrial and medicinal uses. It has long been established that certain UV light waves have a severe germicidal effect, causing irreparable damage to DNA and RNA in microorganisms like viruses, bacteria, and fungi.
Considering how technology is reshaping the market, the printing sector is thriving more than ever. Businesses are currently creating new methods for printing ideas and enhancing collateral, demos, and other types of media.
The Coronavirus outbreak has significantly disrupted society's ability to function normally and people's daily lives by making them fearful of being touched by microorganisms.
Recently, some customers want to use UVLED coatings to apply on the product and put the reaction process in a special environment. Considering that workers cannot op...
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